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(js/css) Update generated files
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* AngularJS Material Design
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* https://github.com/angular/material
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* @license MIT
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* v1.1.7
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* v1.1.9
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*/
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P=k.$render;k.$render=function(){P(),f(),b(),v()},u.$observe("placeholder",k.$render),A&&A.label&&u.$observe("required",function(e){A.label.toggleClass("md-required",e&&!S)}),w.setLabelText=function(e){w.setIsPlaceholder(!e);var t=!1;if(u.mdSelectedText&&u.mdSelectedHtml)throw Error("md-select cannot have both `md-selected-text` and `md-selected-html`");if(u.mdSelectedText||u.mdSelectedHtml)e=d(u.mdSelectedText||u.mdSelectedHtml)(l),t=!0;else if(!e){var n=u.placeholder||(A&&A.label?A.label.text():"");e=n||"",t=!0}var o=x.children().eq(0);u.mdSelectedHtml?o.html(s.getTrustedHtml(e)):t?o.text(e):o.html(e)},w.setIsPlaceholder=function(e){e?(x.addClass("md-select-placeholder"),A&&A.label&&A.label.addClass("md-placeholder")):(x.removeClass("md-select-placeholder"),A&&A.label&&A.label.removeClass("md-placeholder"))},N||(m.on("focus",function(e){A&&A.setFocused(!0)}),m.on("blur",function(e){T&&(T=!1,H._mdSelectIsOpen&&e.stopImmediatePropagation()),H._mdSelectIsOpen||(A&&A.setFocused(!1),v())})),w.triggerClose=function(){d(u.mdOnClose)(l)},l.$$postDigest(function(){h(),f(),b()}),l.$watch(function(){return O.selectedLabels()},f);var L;u.$observe("ngMultiple",function(e){L&&L();var t=d(e);L=l.$watch(function(){return 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position:d,top:0,"z-index":2});else{var a=o.$element.data("$$sticky");a||(a=r(o),o.$element.data("$$sticky",a));var s=n||i(t.clone())(e),c=a.add(t,s);e.$on("$destroy",c)}}}e.$inject=["$mdConstant","$$rAF","$mdUtil","$compile"],t.module("material.components.sticky",["material.core","material.components.content"]).factory("$mdSticky",e)}(),function(){function e(e,n,o,i,r){return{restrict:"E",replace:!0,transclude:!0,template:'<div class="md-subheader _md"> <div class="md-subheader-inner"> <div class="md-subheader-content"></div> </div></div>',link:function(a,d,s,c,l){function m(e){return t.element(e[0].querySelector(".md-subheader-content"))}o(d),d.addClass("_md"),i.prefixer().removeAttribute(d,"ng-repeat");var u=d[0].outerHTML;s.$set("role","heading"),r.expect(d,"aria-level","2"),l(a,function(e){m(d).append(e)}),d.hasClass("md-no-sticky")||l(a,function(t){var o=n('<div class="md-subheader-wrapper" 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return o},scope:{minDate:"=mdMinDate",maxDate:"=mdMaxDate",dateFilter:"=mdDateFilter",_mode:"@mdMode",_currentView:"@mdCurrentView"},require:["ngModel","mdCalendar"],controller:n,controllerAs:"calendarCtrl",bindToController:!0,link:function(e,t,n,o){var i=o[0],r=o[1];r.configureNgModel(i)}}}function n(e,n,o,r,a,d,s,c,l){d(e),this.$element=e,this.$scope=n,this.dateUtil=o,this.$mdUtil=r,this.keyCode=a.KEY_CODE,this.$$rAF=s,this.$mdDateLocale=l,this.today=this.dateUtil.createDateAtMidnight(),this.ngModelCtrl=null,this.SELECTED_DATE_CLASS="md-calendar-selected-date",this.TODAY_CLASS="md-calendar-date-today",this.FOCUSED_DATE_CLASS="md-focus",this.id=i++,this.displayDate=null,this.selectedDate=null,this.firstRenderableDate=null,this.lastRenderableDate=null,this.isInitialized=!1,this.width=0,this.scrollbarWidth=0,c.tabindex||e.attr("tabindex","-1");var m,u=t.bind(this,this.handleKeyEvent);m=e.parent().hasClass("md-datepicker-calendar")?t.element(document.body):e,m.on("keydown",u),n.$on("$destroy",function(){m.off("keydown",u)}),1===t.version.major&&t.version.minor<=4&&this.$onInit()}n.$inject=["$element","$scope","$$mdDateUtil","$mdUtil","$mdConstant","$mdTheming","$$rAF","$attrs","$mdDateLocale"],t.module("material.components.datepicker").directive("mdCalendar",e);var o=340,i=0,r={day:"month",month:"year"};n.prototype.$onInit=function(){this._mode&&r.hasOwnProperty(this._mode)?(this.currentView=r[this._mode],this.mode=this._mode):(this.currentView=this._currentView||"month",this.mode=null);var e=this.$mdDateLocale;this.minDate&&this.minDate>e.firstRenderableDate?this.firstRenderableDate=this.minDate:this.firstRenderableDate=e.firstRenderableDate,this.maxDate&&this.maxDate<e.lastRenderableDate?this.lastRenderableDate=this.maxDate:this.lastRenderableDate=e.lastRenderableDate},n.prototype.configureNgModel=function(e){var 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t.$scope.$emit("md-calendar-close"),void(e.which==t.keyCode.TAB&&e.preventDefault());var n=t.getActionFromKeyEvent(e);n&&(e.preventDefault(),e.stopPropagation(),t.$scope.$broadcast("md-calendar-parent-action",n))})},n.prototype.hideVerticalScrollbar=function(e){function t(){var t=n.width||o,i=n.scrollbarWidth,a=e.calendarScroller;r.style.width=t+"px",a.style.width=t+i+"px",a.style.paddingRight=i+"px"}var n=this,i=e.$element[0],r=i.querySelector(".md-calendar-scroll-mask");n.width>0?t():n.$$rAF(function(){var o=e.calendarScroller;n.scrollbarWidth=o.offsetWidth-o.clientWidth,n.width=i.querySelector("table").offsetWidth,t()})},n.prototype.getDateId=function(e,t){if(!t)throw new Error("A namespace for the date id has to be specified.");return["md",this.id,t,e.getFullYear(),e.getMonth(),e.getDate()].join("-")},n.prototype.updateVirtualRepeat=function(){var e=this.$scope,t=e.$on("$md-resize-enable",function(){e.$$phase||e.$apply(),t()})}}()}(),function(){!function(){function 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width:o.width-1+"px",height:o.height-2+"px"}),d+u>p){if(p-u>0)d=p-u;else{d=c;var 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return this._$element[0].querySelector("._md-nav-button")},r.prototype.setSelected=function(e){this._selected=e},r.prototype.isSelected=function(){return this._selected},r.prototype.setFocused=function(e){this._focused=e,e&&this.getButtonEl().focus()},r.prototype.hasFocus=function(){return this._focused}}(),function(){function e(){return{definePreset:o,getAllPresets:i,clearPresets:r,$get:a()}}function o(e,t){if(!e||!t)throw new Error("mdPanelProvider: The panel preset definition is malformed. 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u.append('<span class="md-select-icon" aria-hidden="true"></span>'),u.addClass("md-select-value"),u[0].hasAttribute("id")||u.attr("id","select_value_label_"+o.nextUid());var p=c.find("md-content");if(p.length||c.append(t.element("<md-content>").append(c.contents())),p.attr("role","presentation"),m.mdOnOpen&&(c.find("md-content").prepend(t.element('<div> <md-progress-circular md-mode="indeterminate" ng-if="$$loadingAsyncDone === false" md-diameter="25px"></md-progress-circular></div>')),c.find("md-option").attr("ng-show","$$loadingAsyncDone")),m.name){var h=t.element('<select class="md-visually-hidden"></select>');h.attr({name:m.name,"aria-hidden":"true",tabindex:"-1"});var f=c.find("md-option");t.forEach(f,function(e){var n=t.element("<option>"+e.innerHTML+"</option>");e.hasAttribute("ng-value")?n.attr("ng-value",e.getAttribute("ng-value")):e.hasAttribute("value")&&n.attr("value",e.getAttribute("value")),h.append(n)}),h.append('<option ng-value="'+m.ngModel+'" 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y,M,T=!0,A=p[0],w=p[1],_=p[2],k=p[3],x=m.find("md-select-value"),N=t.isDefined(u.readonly),S=o.parseAttributeBoolean(u.mdNoAsterisk);if(S&&m.addClass("md-no-asterisk"),A){var D=A.isErrorGetter||function(){return _.$invalid&&(_.$touched||k&&k.$submitted)};if(A.input&&m.find("md-select-header").find("input")[0]!==A.input[0])throw new Error("<md-input-container> can only have *one* child <input>, <textarea> or <select> element!");A.input=m,A.label||a.expect(m,"aria-label",m.attr("placeholder")),c.$watch(D,A.setInvalid)}var I,H,O;E(),r(m),k&&t.isDefined(u.multiple)&&o.nextTick(function(){var e=_.$modelValue||_.$viewValue;e&&k.$setPristine()});var P=_.$render;_.$render=function(){P(),f(),b(),v()},u.$observe("placeholder",_.$render),A&&A.label&&u.$observe("required",function(e){A.label.toggleClass("md-required",e&&!S)}),w.setLabelText=function(e){w.setIsPlaceholder(!e);var t=!1;if(u.mdSelectedText&&u.mdSelectedHtml)throw Error("md-select cannot have both `md-selected-text` and `md-selected-html`");if(u.mdSelectedText||u.mdSelectedHtml)e=d(u.mdSelectedText||u.mdSelectedHtml)(c),t=!0;else if(!e){var n=u.placeholder||(A&&A.label?A.label.text():"");e=n||"",t=!0}var o=x.children().eq(0);u.mdSelectedHtml?o.html(s.getTrustedHtml(e)):t?o.text(e):o.html(e)},w.setIsPlaceholder=function(e){e?(x.addClass("md-select-placeholder"),A&&A.label&&A.label.addClass("md-placeholder")):(x.removeClass("md-select-placeholder"),A&&A.label&&A.label.removeClass("md-placeholder"))},N||(m.on("focus",function(e){A&&A.setFocused(!0)}),m.on("blur",function(e){T&&(T=!1,H._mdSelectIsOpen&&e.stopImmediatePropagation()),H._mdSelectIsOpen||(A&&A.setFocused(!1),v())})),w.triggerClose=function(){d(u.mdOnClose)(c)},c.$$postDigest(function(){h(),f(),b()}),c.$watch(function(){return O.selectedLabels()},f);var L;u.$observe("ngMultiple",function(e){L&&L();var t=d(e);L=c.$watch(function(){return t(c)},function(e,t){e===n&&t===n||(e?m.attr("multiple","multiple"):m.removeAttr("multiple"),m.attr("aria-multiselectable",e?"true":"false"),I&&(O.setMultiple(e),P=_.$render,_.$render=function(){P(),f(),b(),v()},_.$render()))})}),u.$observe("disabled",function(e){t.isString(e)&&(e=!0),y!==n&&y===e||(y=e,e?m.attr({"aria-disabled":"true"}).removeAttr("tabindex").off("click",C).off("keydoLine truncated
|
||||
}f.current&&u(f.current,e)}function c(e){if(f.current!==e){f.current&&(u(f.current,null),m(f.current,null)),e&&m(e,"active"),f.current=e;var t=f.items.indexOf(e);f.next=f.items[t+1],f.prev=f.items[t-1],m(f.next,"next"),m(f.prev,"prev")}}function m(e,t){e&&e.state!==t&&(e.state&&(e.clone.attr("sticky-prev-state",e.state),e.element.attr("sticky-prev-state",e.state)),e.clone.attr("sticky-state",t),e.element.attr("sticky-state",t),e.state=t)}function u(t,i){t&&(null===i||i===n?t.translateY&&(t.translateY=null,t.clone.css(e.CSS.TRANSFORM,"")):(t.translateY=i,o.bidi(t.clone,e.CSS.TRANSFORM,"translate3d("+t.left+"px,"+i+"px,0)","translateY("+i+"px)")))}var p=i.$element,h=t.throttle(d);a(p),p.on("$scrollstart",h),p.on("$scroll",l);var f;return f={prev:null,current:null,next:null,items:[],add:r,refreshElements:d}}function a(e){function n(){+o.now()-r>a?(i=!1,e.triggerHandler("$scrollend")):(e.triggerHandler("$scroll"),t.throttle(n))}var i,r,a=200;e.on("scroll touchmove",function(){i||(i=!0,t.throttle(n),e.triggerHandler("$scrollstart")),e.triggerHandler("$scroll"),r=+o.now()})}var d=o.checkStickySupport();return function(e,t,n){var o=t.controller("mdContent");if(o)if(d)t.css({position:d,top:0,"z-index":2});else{var a=o.$element.data("$$sticky");a||(a=r(o),o.$element.data("$$sticky",a));var s=n||i(t.clone())(e),l=a.add(t,s);e.$on("$destroy",l)}}}e.$inject=["$mdConstant","$$rAF","$mdUtil","$compile"],t.module("material.components.sticky",["material.core","material.components.content"]).factory("$mdSticky",e)}(),function(){function e(e,n,o,i,r){return{restrict:"E",replace:!0,transclude:!0,template:'<div class="md-subheader _md"> <div class="md-subheader-inner"> <div class="md-subheader-content"></div> </div></div>',link:function(a,d,s,l,c){function m(e){return t.element(e[0].querySelector(".md-subheader-content"))}o(d),d.addClass("_md"),i.prefixer().removeAttribute(d,"ng-repeat");var u=d[0].outerHTML;s.$set("role","heading"),r.expect(d,"aria-level","2"),c(a,function(e){m(d).append(e)}),d.hasClass("md-no-sticky")||c(a,function(t){var o=n('<div class="md-subheader-wrapper" aria-hidden="true">'+u+"</div>")(a);i.nextTick(function(){m(o).append(t)}),e(a,d,o)})}}}e.$inject=["$mdSticky","$compile","$mdTheming","$mdUtil","$mdAria"],t.module("material.components.subheader",["material.core","material.components.sticky"]).directive("mdSubheader",e)}(),function(){function e(e){function t(e){function t(t,i,r){var a=e(r[n]);i.on(o,function(e){var n=e.currentTarget;t.$applyAsync(function(){a(t,{$event:e,$target:{current:n}})})})}return{restrict:"A",link:t}}t.$inject=["$parse"];var n="md"+e,o="$md."+e.toLowerCase();return t}t.module("material.components.swipe",["material.core"]).directive("mdSwipeLeft",e("SwipeLeft")).directive("mdSwipeRight",e("SwipeRight")).directive("mdSwipeUp",e("SwipeUp")).directive("mdSwipeDown",e("SwipeDown"))}(),function(){function e(e,n,o,i,r,a,d){function s(e,s){var c=l.compile(e,s).post;return e.addClass("md-dragging"),function(e,s,l,m){function u(t){b&&b(e)||(t.stopPropagation(),s.addClass("md-dragging"),C={width:v.prop("offsetWidth")})}function p(e){if(C){e.stopPropagation(),e.srcEvent&&e.srcEvent.preventDefault();var t=e.pointer.distanceX/C.width,n=g.$viewValue?1+t:t;n=Math.max(0,Math.min(1,n)),v.css(o.CSS.TRANSFORM,"translate3d("+100*n+"%,0,0)"),C.translate=n}}function h(t){if(C){t.stopPropagation(),s.removeClass("md-dragging"),v.css(o.CSS.TRANSFORM,"");var n=g.$viewValue?C.translate<.5:C.translate>.5;n&&f(!g.$viewValue),C=null,e.skipToggle=!0,d(function(){e.skipToggle=!1},1)}}function f(t){e.$apply(function(){g.$setViewValue(t),g.$render()})}var g=(m[0],m[1]||n.fakeNgModel()),b=(m[2],null);null!=l.disabled?b=function(){return!0}:l.ngDisabled&&(b=i(l.ngDisabled));var v=t.element(s[0].querySelector(".md-thumb-container")),E=t.element(s[0].querySelector(".md-container")),$=t.element(s[0].querySelector(".md-label"));r(function(){s.removeClass("md-dragging")}),c(e,s,l,m),b&&e.$watch(b,function(e){s.attr("tabindex",e?-1:0)}),l.$observe("mdInvert",function(e){var t=n.parseAttributeBoolean(e);t?s.prepend($):s.prepend(E),s.toggleClass("md-inverted",t)}),a.register(E,"drag"),E.on("$md.dragstart",u).on("$md.drag",p).on("$md.dragend",h);var C}}var l=e[0];return{restrict:"E",priority:o.BEFORE_NG_ARIA,transclude:!0,template:'<div class="md-container"><div class="md-bar"></div><div class="md-thumb-container"><div class="md-thumb" md-ink-ripple md-ink-ripple-checkbox></div></div></div><div ng-transclude class="md-label"></div>',require:["^?mdInputContainer","?ngModel","?^form"],compile:s}}e.$inject=["mdCheckboxDirective","$mdUtil","$mdConstant","$parse","$$rAF","$mdGesture","$timeout"],t.module("material.components.switch",["material.core","material.components.checkbox"]).directive("mdSwitch",e)}(),function(){t.module("material.components.tabs",["material.core","material.components.icon"])}(),function(){function e(){function e(e,t){var o,i,r=e.canvas,a=n(e);for(o=0;o<a.length;o++)if(a[o]>=t){i=a[o];break}return
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}return f.when(o(n)||n).then(function(e){return e&&!t.isString(e)&&g.warn("md-autocomplete: Could not resolve display value to a string. 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|
||||
}(),function(){!function(){function e(){return{template:function(e,t){var n=t.hasOwnProperty("ngIf")?"":'ng-if="calendarCtrl.isInitialized"',o='<div ng-switch="calendarCtrl.currentView" '+n+'><md-calendar-year ng-switch-when="year"></md-calendar-year><md-calendar-month ng-switch-default></md-calendar-month></div>';return o},scope:{minDate:"=mdMinDate",maxDate:"=mdMaxDate",dateFilter:"=mdDateFilter",_mode:"@mdMode",_currentView:"@mdCurrentView"},require:["ngModel","mdCalendar"],controller:n,controllerAs:"calendarCtrl",bindToController:!0,link:function(e,t,n,o){var i=o[0],r=o[1];r.configureNgModel(i)}}}function n(e,n,o,r,a,d,s,l,c){d(e),this.$element=e,this.$scope=n,this.dateUtil=o,this.$mdUtil=r,this.keyCode=a.KEY_CODE,this.$$rAF=s,this.$mdDateLocale=c,this.today=this.dateUtil.createDateAtMidnight(),this.ngModelCtrl=null,this.SELECTED_DATE_CLASS="md-calendar-selected-date",this.TODAY_CLASS="md-calendar-date-today",this.FOCUSED_DATE_CLASS="md-focus",this.id=i++,this.displayDate=null,this.selectedDate=null,this.firstRenderableDate=null,this.lastRenderableDate=null,this.isInitialized=!1,this.width=0,this.scrollbarWidth=0,l.tabindex||e.attr("tabindex","-1");var m,u=t.bind(this,this.handleKeyEvent);m=e.parent().hasClass("md-datepicker-calendar")?t.element(document.body):e,m.on("keydown",u),n.$on("$destroy",function(){m.off("keydown",u)}),1===t.version.major&&t.version.minor<=4&&this.$onInit()}n.$inject=["$element","$scope","$$mdDateUtil","$mdUtil","$mdConstant","$mdTheming","$$rAF","$attrs","$mdDateLocale"],t.module("material.components.datepicker").directive("mdCalendar",e);var o=340,i=0,r={day:"month",month:"year"};n.prototype.$onInit=function(){this._mode&&r.hasOwnProperty(this._mode)?(this.currentView=r[this._mode],this.mode=this._mode):(this.currentView=this._currentView||"month",this.mode=null);var e=this.$mdDateLocale;this.minDate&&this.minDate>e.firstRenderableDate?this.firstRenderableDate=this.minDate:this.firstRenderableDate=e.firstRenderableDate,this.maxDate&&this.maxDate<e.lastRenderableDate?this.lastRenderableDate=this.maxDate:this.lastRenderableDate=e.lastRenderableDate},n.prototype.configureNgModel=function(e){var t=this;t.ngModelCtrl=e,t.$mdUtil.nextTick(function(){t.isInitialized=!0}),e.$render=function(){var e=this.$viewValue;t.$scope.$broadcast("md-calendar-parent-changed",e),t.selectedDate||(t.selectedDate=e),t.displayDate||(t.displayDate=t.selectedDate||t.today)}},n.prototype.setNgModelValue=function(e){var t=this.dateUtil.createDateAtMidnight(e);return this.focus(t),this.$scope.$emit("md-calendar-change",t),this.ngModelCtrl.$setViewValue(t),this.ngModelCtrl.$render(),t},n.prototype.setCurrentView=function(e,n){var o=this;o.$mdUtil.nextTick(function(){o.currentView=e,n&&(o.displayDate=t.isDate(n)?n:new Date(n))})},n.prototype.focus=function(e){if(this.dateUtil.isValidDate(e)){var t=this.$element[0].querySelector("."+this.FOCUSED_DATE_CLASS);t&&t.classList.remove(this.FOCUSED_DATE_CLASS);var n=this.getDateId(e,this.currentView),o=document.getElementById(n);o&&(o.classList.add(this.FOCUSED_DATE_CLASS),o.focus(),this.displayDate=e)}else{var i=this.$element[0].querySelector("[ng-switch]");i&&i.focus()}},n.prototype.changeSelectedDate=function(e){var t=this.SELECTED_DATE_CLASS,n=this.$element[0].querySelector("."+t);if(n&&(n.classList.remove(t),n.setAttribute("aria-selected","false")),e){var o=document.getElementById(this.getDateId(e,this.currentView));o&&(o.classList.add(t),o.setAttribute("aria-selected","true"))}this.selectedDate=e},n.prototype.getActionFromKeyEvent=function(e){var t=this.keyCode;switch(e.which){case t.ENTER:return"select";case t.RIGHT_ARROW:return"move-right";case t.LEFT_ARROW:return"move-left";case t.DOWN_ARROW:return e.metaKey?"move-page-down":"move-row-down";case t.UP_ARROW:return e.metaKey?"move-page-up":"move-row-up";case t.PAGE_DOWN:return"move-page-down";case t.PAGE_UP:return"move-page-up";case t.HOME:return"start";case t.END:return"end";default:return null}},n.prototype.handleKeyEvent=function(e){var t=this;this.$scope.$apply(function(){if(e.which==t.keyCode.ESCAPE||e.which==t.keyCode.TAB)return t.$scope.$emit("md-calendar-close"),void(e.which==t.keyCode.TAB&&e.preventDefault());var n=t.getActionFromKeyEvent(e);n&&(e.preventDefault(),e.stopPropagation(),t.$scope.$broadcast("md-calendar-parent-action",n))})},n.prototype.hideVerticalScrollbar=function(e){function t(){var t=n.width||o,i=n.scrollbarWidth,a=e.calendarScroller;r.style.width=t+"px",a.style.width=t+i+"px",a.style.paddingRight=i+"px"}var n=this,i=e.$element[0],r=i.querySelector(".md-calendar-scroll-mask");n.width>0?t():n.$$rAF(function(){var o=e.calendarScroller;n.scrollbarWidth=o.offsetWidth-o.clientWidth,n.width=i.querySelector("table").offsetWidth,t()})},n.prototype.getDateId=function(e,t){if(!t)throw new Error("A namespace for the date id has to be specified.");return["md",this.id,t,e.getFullYear(),e.getMonth(),e.getDate()].join("-")},n.prototype.updateVirtualRepeat=function(){var e=this.$scope,t=e.$on("$mdLine truncated
|
||||
if(this.inputMask.css({position:"absolute",left:this.leftMargin+"px",top:this.topMargin+"px",width:o.width-1+"px",height:o.height-2+"px"}),d+u>p){if(p-u>0)d=p-u;else{d=l;var h=this.$window.innerWidth/u;e.style.transform="scale("+h+")"}e.classList.add("md-datepicker-pos-adjusted")}r+m>c&&c-m>s&&(r=c-m,e.classList.add("md-datepicker-pos-adjusted")),e.style.left=d+"px",e.style.top=r+"px",document.body.appendChild(e),this.$$rAF(function(){e.classList.add("md-pane-open")})},o.prototype.detachCalendarPane=function(){this.$element.removeClass(a),this.mdInputContainer&&this.mdInputContainer.element.removeClass(a),t.element(document.body).removeClass("md-datepicker-is-showing"),this.calendarPane.classList.remove("md-pane-open"),this.calendarPane.classList.remove("md-datepicker-pos-adjusted"),this.isCalendarOpen&&this.$mdUtil.enableScrolling(),this.calendarPane.parentNode&&this.calendarPane.parentNode.removeChild(this.calendarPane)},o.prototype.openCalendarPane=function(t){if(!this.isCalendarOpen&&!this.isDisabled&&!this.inputFocusedOnWindowBlur){this.isCalendarOpen=this.isOpen=!0,this.calendarPaneOpenedFrom=t.target,this.$mdUtil.disableScrollAround(this.calendarPane),this.attachCalendarPane(),this.focusCalendar(),this.evalAttr("ngFocus");var n=this;this.$mdUtil.nextTick(function(){n.documentElement.on("click touchstart",n.bodyClickHandler)},!1),e.addEventListener(this.windowEventName,this.windowEventHandler)}},o.prototype.closeCalendarPane=function(){function t(){n.isCalendarOpen=n.isOpen=!1}if(this.isCalendarOpen){var n=this;n.detachCalendarPane(),n.ngModelCtrl.$setTouched(),n.evalAttr("ngBlur"),n.documentElement.off("click touchstart",n.bodyClickHandler),e.removeEventListener(n.windowEventName,n.windowEventHandler),n.calendarPaneOpenedFrom.focus(),n.calendarPaneOpenedFrom=null,n.openOnFocus?n.$mdUtil.nextTick(t):t()}},o.prototype.getCalendarCtrl=function(){return t.element(this.calendarPane.querySelector("md-calendar")).controller("mdCalendar")},o.prototype.focusCalendar=function(){var e=this;this.$mdUtil.nextTick(function(){e.getCalendarCtrl().focus()},!1)},o.prototype.setFocused=function(e){e||this.ngModelCtrl.$setTouched(),this.openOnFocus||this.evalAttr(e?"ngFocus":"ngBlur"),this.isFocused=e},o.prototype.handleBodyClick=function(e){if(this.isCalendarOpen){var t=this.$mdUtil.getClosest(e.target,"md-calendar");t||this.closeCalendarPane(),this.$scope.$digest()}},o.prototype.handleWindowBlur=function(){this.inputFocusedOnWindowBlur=document.activeElement===this.inputElement},o.prototype.evalAttr=function(e){this.$attrs[e]&&this.$scope.$parent.$eval(this.$attrs[e])},o.prototype.setModelValue=function(e){var t=this.$mdUtil.getModelOption(this.ngModelCtrl,"timezone");this.ngModelCtrl.$setViewValue(this.ngDateFilter(e,"yyyy-MM-dd",t))},o.prototype.onExternalChange=function(e){var t=this.$mdUtil.getModelOption(this.ngModelCtrl,"timezone");this.date=e,this.inputElement.value=this.locale.formatDate(e,t),this.mdInputContainer&&this.mdInputContainer.setHasValue(!!e),this.resizeInputElement(),this.updateErrorState()}}()}(),function(){function e(e,t,n,o){function i(o,i,r){function a(){r.mdSvgIcon||r.mdSvgSrc||(r.mdFontIcon&&i.addClass("md-font "+r.mdFontIcon),i.addClass(l))}function d(){if(!r.mdSvgIcon&&!r.mdSvgSrc){r.mdFontIcon&&(i.removeClass(s),i.addClass(r.mdFontIcon),s=r.mdFontIcon);var t=e.fontSet(r.mdFontSet);l!==t&&(i.removeClass(l),i.addClass(t),l=t)}}t(i);var s=r.mdFontIcon,l=e.fontSet(r.mdFontSet);a(),r.$observe("mdFontIcon",d),r.$observe("mdFontSet",d);var c=(i[0].getAttribute(r.$attr.mdSvgSrc),r.$normalize(r.$attr.mdSvgIcon||r.$attr.mdSvgSrc||""));if(r.role||(n.expect(i,"role","img"),r.role="img"),"img"===r.role&&!r.ariaHidden&&!n.hasAriaLabel(i)){var m;r.alt?n.expect(i,"aria-label",r.alt):n.parentHasAriaLabel(i,2)?n.expect(i,"aria-hidden","true"):(m=r.mdFontIcon||r.mdSvgIcon||i.text())?n.expect(i,"aria-label",m):n.expect(i,"aria-hidden","true")}c&&r.$observe(c,function(t){i.empty(),t&&e(t).then(function(e){i.empty(),i.append(e)})})}return{restrict:"E",link:i}}t.module("material.components.icon").directive("mdIcon",["$mdIcon","$mdTheming","$mdAria","$sce",e])}(),function(){function n(){}function o(e,t){this.url=e,this.viewBoxSize=t||r.defaultViewBoxSize}function i(n,o,i,r,a,d){function s(e){if(e=e||"",t.isString(e)||(e=d.getTrustedUrl(e)),E[e])return i.when(c(E[e]));if(C.test(e)||y.test(e))return h(e).then(m(e));e.indexOf(":")==-1&&(e="$default:"+e);var o=n[e]?u:p;return o(e).then(m(e))}function l(e){var o=t.isUndefined(e)||!(e&&e.length);if(o)return n.defaultFontSet;var i=e;return t.forEach(n.fontSets,function(t){t.alias==e&&(i=t.fontSet||i)}),i}function c(e){var n=e.clone(),o="_cache"+a.nextUid();return n.id&&(n.id+=o),t.forEach(n.querySelectorAll("[id]"),function(e){e.id+=o}),n}function m(e){return function(t){return E[e]=f(t)?t:new g(t,n[e]),E[e].clone()}}function u(e){var t=n[e];return h(t.url).then(function(e){return new g(e,t)})}function p(e){function t(t){var n=e.slice(e.lastIndexOf(":")+1),i=t.querySelLine truncated
|
||||
return{restrict:"E",scope:{value:"@",mdDiameter:"@",mdMode:"@"},template:'<svg xmlns="http://www.w3.org/2000/svg"><path fill="none"/></svg>',compile:function(e,n){if(e.attr({"aria-valuemin":0,"aria-valuemax":100,role:"progressbar"}),t.isUndefined(n.mdMode)){var o=n.hasOwnProperty("value")?f:g;n.$set("mdMode",o)}else n.$set("mdMode",n.mdMode.trim());return d}}}e.$inject=["$window","$mdProgressCircular","$mdTheming","$mdUtil","$interval","$log"],t.module("material.components.progressCircular").directive("mdProgressCircular",e)}(),function(){function e(){function e(e,t,n,o){return n*e/o+t}function n(e,t,n,o){var i=(e/=o)*e,r=i*e;return t+n*(6*r*i+-15*i*i+10*r)}var o={progressSize:50,strokeWidth:10,duration:100,easeFn:e,durationIndeterminate:1333,startIndeterminate:1,endIndeterminate:149,easeFnIndeterminate:n,easingPresets:{linearEase:e,materialEase:n}};return{configure:function(e){return o=t.extend(o,e||{})},$get:function(){return o}}}t.module("material.components.progressCircular").provider("$mdProgressCircular",e)}(),function(){function e(){function e(e,o,i,r){if(r){var a=r.getTabElementIndex(o),d=n(o,"md-tab-body").remove(),s=n(o,"md-tab-label").remove(),l=r.insertTab({scope:e,parent:e.$parent,index:a,element:o,template:d.html(),label:s.html()},a);e.select=e.select||t.noop,e.deselect=e.deselect||t.noop,e.$watch("active",function(e){e&&r.select(l.getIndex(),!0)}),e.$watch("disabled",function(){r.refreshIndex()}),e.$watch(function(){return r.getTabElementIndex(o)},function(e){l.index=e,r.updateTabOrder()}),e.$on("$destroy",function(){r.removeTab(l)})}}function n(e,n){for(var o=e[0].children,i=0,r=o.length;i<r;i++){var a=o[i];if(a.tagName===n.toUpperCase())return t.element(a)}return t.element()}return{require:"^?mdTabs",terminal:!0,compile:function(o,i){var r=n(o,"md-tab-label"),a=n(o,"md-tab-body");if(0===r.length&&(r=t.element("<md-tab-label></md-tab-label>"),i.label?r.text(i.label):r.append(o.contents()),0===a.length)){var d=o.contents().detach();a=t.element("<md-tab-body></md-tab-body>"),a.append(d)}return o.append(r),a.html()&&o.append(a),e},scope:{active:"=?mdActive",disabled:"=?ngDisabled",select:"&?mdOnSelect",deselect:"&?mdOnDeselect"}}}t.module("material.components.tabs").directive("mdTab",e)}(),function(){function e(){return{require:"^?mdTabs",link:function(e,t,n,o){o&&o.attachRipple(e,t)}}}t.module("material.components.tabs").directive("mdTabItem",e)}(),function(){function e(){return{terminal:!0}}t.module("material.components.tabs").directive("mdTabLabel",e)}(),function(){function e(e){return{restrict:"A",compile:function(t,n){var o=e(n.mdTabScroll,null,!0);return function(e,t){t.on("mousewheel",function(t){e.$apply(function(){o(e,{$event:t})})})}}}}e.$inject=["$parse"],t.module("material.components.tabs").directive("mdTabScroll",e)}(),function(){function e(e,o,i,r,a,d,s,l,c,m,u,p){function h(){E("stretchTabs",y),X("focusIndex",k,he.selectedIndex||0),X("offsetLeft",_,0),X("hasContent",w,!1),X("maxTabWidth",T,J()),X("shouldPaginate",A,!1),$("noInkBar",R),$("dynamicHeight",F),$("noPagination"),$("swipeContent"),$("noDisconnect"),$("autoselect"),$("noSelectClick"),$("centerTabs",M,!1),$("enableDisconnect"),he.scope=e,he.parent=e.$parent,he.tabs=[],he.lastSelectedIndex=null,he.hasFocus=!1,he.styleTabItemFocus=!1,he.shouldCenterTabs=Y(),he.tabContentPrefix="tab-content-",f()}function f(){he.selectedIndex=he.selectedIndex||0,g(),v(),b(),m(o),d.nextTick(function(){ge=j(),de(),oe(),se(),he.tabs[he.selectedIndex]&&he.tabs[he.selectedIndex].scope.select(),Ee=!0,Q()})}function g(){var e=l.$mdTabsTemplate,n=t.element(o[0].querySelector("md-tab-data"));n.html(e),c(n.contents())(he.parent),delete l.$mdTabsTemplate}function b(){t.element(i).on("resize",L),e.$on("$destroy",C)}function v(){e.$watch("$mdTabsCtrl.selectedIndex",x)}function E(e,t){var n=l.$normalize("md-"+e);t&&X(e,t),l.$observe(n,function(t){he[e]=t})}function $(e,t){function n(t){he[e]="false"!==t}var o=l.$normalize("md-"+e);t&&X(e,t),l.hasOwnProperty(o)&&n(l[o]),l.$observe(o,n)}function C(){ve=!0,t.element(i).off("resize",L)}function y(e){var n=j();t.element(n.wrapper).toggleClass("md-stretch-tabs",V()),se()}function M(e){he.shouldCenterTabs=Y()}function T(e,n){if(e!==n){var o=j();t.forEach(o.tabs,function(t){t.style.maxWidth=e+"px"}),t.forEach(o.dummies,function(t){t.style.maxWidth=e+"px"}),d.nextTick(he.updateInkBarStyles)}}function A(e,t){e!==t&&(he.maxTabWidth=J(),he.shouldCenterTabs=Y(),d.nextTick(function(){he.maxTabWidth=J(),oe(he.selectedIndex)}))}function w(e){o[e?"removeClass":"addClass"]("md-no-tab-content")}function _(n){var o=j(),i=(he.shouldCenterTabs||pe()?"":"-")+n+"px";i=i.replace("--",""),t.element(o.paging).css(r.CSS.TRANSFORM,"translate3d("+i+", 0, 0)"),e.$broadcast("$mdTabsPaginationChanged")}function k(e,t){e!==t&&j().tabs[e]&&(oe(),ne())}function x(t,n){t!==n&&(he.selectedIndex=G(t),he.lastSelectedIndex=n,he.updateInkBarStyles(),de(),oe(t),e.$broadcast("$mdTabsChanged"),he.tabs[n]&&he.tabs[n].scope.deselect(),he.tabs[t]&&he.Line truncated
|
||||
}()}(window,window.angular),window.ngMaterial={version:{full:"1.1.9"}};
|
||||
+7126
-8243
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Load diff
+75
-77
@@ -85,87 +85,87 @@
|
||||
"@uirouter/angularjs/src/index.ts"
|
||||
],
|
||||
"sourcesContent": [
|
||||
"/**\n * @hidden\n * @module ng1\n */ /** */\ndeclare var angular;\nimport * as ng_from_import from 'angular';\nconst ng_from_global = angular;\n\nexport const ng = ng_from_import && ng_from_import.module ? ng_from_import : ng_from_global;\n",
|
||||
"/**\n * Higher order functions\n *\n * These utility functions are exported, but are subject to change without notice.\n *\n * @module common_hof\n */ /** */\n\nimport { Predicate } from './common';\n/**\n * Returns a new function for [Partial Application](https://en.wikipedia.org/wiki/Partial_application) of the original function.\n *\n * Given a function with N parameters, returns a new function that supports partial application.\n * The new function accepts anywhere from 1 to N parameters. When that function is called with M parameters,\n * where M is less than N, it returns a new function that accepts the remaining parameters. It continues to\n * accept more parameters until all N parameters have been supplied.\n *\n *\n * This contrived example uses a partially applied function as an predicate, which returns true\n * if an object is found in both arrays.\n * @example\n * ```\n * // returns true if an object is in both of the two arrays\n * function inBoth(array1, array2, object) {\n * return array1.indexOf(object) !== -1 &&\n * array2.indexOf(object) !== 1;\n * }\n * let obj1, obj2, obj3, obj4, obj5, obj6, obj7\n * let foos = [obj1, obj3]\n * let bars = [obj3, obj4, obj5]\n *\n * // A curried \"copy\" of inBoth\n * let curriedInBoth = curry(inBoth);\n * // Partially apply both the array1 and array2\n * let inFoosAndBars = curriedInBoth(foos, bars);\n *\n * // Supply the final argument; since all arguments are\n * // supplied, the original inBoth function is then called.\n * let obj1InBoth = inFoosAndBars(obj1); // false\n *\n * // Use the inFoosAndBars as a predicate.\n * // Filter, on each iteration, supplies the final argument\n * let allObjs = [ obj1, obj2, obj3, obj4, obj5, obj6, obj7 ];\n * let foundInBoth = allObjs.filter(inFoosAndBars); // [ obj3 ]\n *\n * ```\n *\n * Stolen from: http://stackoverflow.com/questions/4394747/javascript-curry-function\n *\n * @param fn\n * @returns {*|function(): (*|any)}\n */\nexport function curry(fn: Function): Function {\n const initial_args = [].slice.apply(arguments, [1]);\n const func_args_length = fn.length;\n\n function curried(args: any[]) {\n if (args.length >= func_args_length) return fn.apply(null, args);\n return function() {\n return curried(args.concat([].slice.apply(arguments)));\n };\n }\n return curried(initial_args);\n}\n\n/**\n * Given a varargs list of functions, returns a function that composes the argument functions, right-to-left\n * given: f(x), g(x), h(x)\n * let composed = compose(f,g,h)\n * then, composed is: f(g(h(x)))\n */\nexport function compose() {\n const args = arguments;\n const start = args.length - 1;\n return function() {\n let i = start,\n result = args[start].apply(this, arguments);\n while (i--) result = args[i].call(this, result);\n return result;\n };\n}\n\n/**\n * Given a varargs list of functions, returns a function that is composes the argument functions, left-to-right\n * given: f(x), g(x), h(x)\n * let piped = pipe(f,g,h);\n * then, piped is: h(g(f(x)))\n */\nexport function pipe(...funcs: Function[]): (obj: any) => any {\n return compose.apply(null, [].slice.call(arguments).reverse());\n}\n\n/**\n * Given a property name, returns a function that returns that property from an object\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = prop(\"name\");\n * getName(obj) === \"blarg\"\n */\nexport const prop = (name: string) => (obj: any) => obj && obj[name];\n\n/**\n * Given a property name and a value, returns a function that returns a boolean based on whether\n * the passed object has a property that matches the value\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = propEq(\"name\", \"blarg\");\n * getName(obj) === true\n */\nexport const propEq = curry((name: string, _val: any, obj: any) => obj && obj[name] === _val);\n\n/**\n * Given a dotted property name, returns a function that returns a nested property from an object, or undefined\n * let obj = { id: 1, nestedObj: { foo: 1, name: \"blarg\" }, };\n * let getName = prop(\"nestedObj.name\");\n * getName(obj) === \"blarg\"\n * let propNotFound = prop(\"this.property.doesnt.exist\");\n * propNotFound(obj) === undefined\n */\nexport const parse = (name: string) => pipe.apply(null, name.split('.').map(prop));\n\n/**\n * Given a function that returns a truthy or falsey value, returns a\n * function that returns the opposite (falsey or truthy) value given the same inputs\n */\nexport const not: (fn: Predicate<any>) => Predicate<any> = (fn: Predicate<any>) => (...args: any[]) =>\n !fn.apply(null, args);\n\n/**\n * Given two functions that return truthy or falsey values, returns a function that returns truthy\n * if both functions return truthy for the given arguments\n */\nexport function and(fn1: Predicate<any>, fn2: Predicate<any>): Predicate<any> {\n return (...args: any[]) => fn1.apply(null, args) && fn2.apply(null, args);\n}\n\n/**\n * Given two functions that return truthy or falsey valuLine truncated
|
||||
"/**\n * @coreapi\n * @module core\n */\n/**\n * Matches state names using glob-like pattern strings.\n *\n * Globs can be used in specific APIs including:\n *\n * - [[StateService.is]]\n * - [[StateService.includes]]\n * - The first argument to Hook Registration functions like [[TransitionService.onStart]]\n * - [[HookMatchCriteria]] and [[HookMatchCriterion]]\n *\n * A `Glob` string is a pattern which matches state names.\n * Nested state names are split into segments (separated by a dot) when processing.\n * The state named `foo.bar.baz` is split into three segments ['foo', 'bar', 'baz']\n *\n * Globs work according to the following rules:\n *\n * ### Exact match:\n *\n * The glob `'A.B'` matches the state named exactly `'A.B'`.\n *\n * | Glob |Matches states named|Does not match state named|\n * |:------------|:--------------------|:---------------------|\n * | `'A'` | `'A'` | `'B'` , `'A.C'` |\n * | `'A.B'` | `'A.B'` | `'A'` , `'A.B.C'` |\n * | `'foo'` | `'foo'` | `'FOO'` , `'foo.bar'`|\n *\n * ### Single star (`*`)\n *\n * A single star (`*`) is a wildcard that matches exactly one segment.\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:---------------------|:--------------------------|\n * | `'*'` | `'A'` , `'Z'` | `'A.B'` , `'Z.Y.X'` |\n * | `'A.*'` | `'A.B'` , `'A.C'` | `'A'` , `'A.B.C'` |\n * | `'A.*.*'` | `'A.B.C'` , `'A.X.Y'`| `'A'`, `'A.B'` , `'Z.Y.X'`|\n *\n * ### Double star (`**`)\n *\n * A double star (`'**'`) is a wildcard that matches *zero or more segments*\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:----------------------------------------------|:----------------------------------|\n * | `'**'` | `'A'` , `'A.B'`, `'Z.Y.X'` | (matches all states) |\n * | `'A.**'` | `'A'` , `'A.B'` , `'A.C.X'` | `'Z.Y.X'` |\n * | `'**.X'` | `'X'` , `'A.X'` , `'Z.Y.X'` | `'A'` , `'A.login.Z'` |\n * | `'A.**.X'` | `'A.X'` , `'A.B.X'` , `'A.B.C.X'` | `'A'` , `'A.B.C'` |\n *\n */\nexport class Glob {\n text: string;\n glob: Array<string>;\n regexp: RegExp;\n\n /** Returns true if the string has glob-like characters in it */\n static is(text: string) {\n return !!/[!,*]+/.exec(text);\n }\n\n /** Returns a glob from the string, or null if the string isn't Glob-like */\n static fromString(text: string) {\n return Glob.is(text) ? new Glob(text) : null;\n }\n\n constructor(text: string) {\n this.text = text;\n this.glob = text.split('.');\n\n const regexpString = this.text\n .split('.')\n .map(seg => {\n if (seg === '**') return '(?:|(?:\\\\.[^.]*)*)';\n if (seg === '*') return '\\\\.[^.]*';\n return '\\\\.' + seg;\n })\n .join('');\n\n this.regexp = new RegExp('^' + regexpString + '$');\n }\n\n matches(name: string) {\n return this.regexp.test('.' + name);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** for typedoc */\nimport { StateDeclaration, _ViewDeclaration, _StateDeclaration, LazyLoadResult } from './interface';\nimport { defaults, values, find, inherit } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { Param } from '../params/param';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { TargetState } from './targetState';\nimport { Transition } from '../transition/transition';\nimport { Glob } from '../common/glob';\nimport { isObject, isFunction } from '../common/predicates';\n\n/**\n * Internal representation of a UI-Router state.\n *\n * Instances of this class are created when a [[StateDeclaration]] is registered with the [[StateRegistry]].\n *\n * A registered [[StateDeclaration]] is augmented with a getter ([[StateDeclaration.$$state]]) which returns the corresponding [[StateObject]] object.\n *\n * This class prototypally inherits from the corresponding [[StateDeclaration]].\n * Each of its own properties (i.e., `hasOwnProperty`) are built using builders from the [[StateBuilder]].\n */\nexport class StateObject {\n /** The parent [[StateObject]] */\n public parent: StateObject;\n\n /** The name used to register the state */\n public name: string;\n\n /** Prototypally inherits from [[StateDeclaration.abstract]] */\n public abstract: boolean;\n\n /** Prototypally inherits from [[StateDeclaration.resolve]] */\n public resolve: { [key: string]: string | any[] | Function } | any[];\n\n /** A list of [[Resolvable]] objects. The internal representation of [[resolve]]. */\n public resolvables: Resolvable[];\n\n /** Prototypally inherits from [[StateDeclaration.resolvePolicy]] */\n public resolvePolicy: any;\n\n /** A compiled URLMatcher which detects when the state's URL is matched */\n public url: UrlMatcher;\n\n /** The parameters for the state, built from the URL and [[StateDeclaration.params]] */\n public params: { [key: string]: Param };\n\n /**\n * The views for the state.\n * Note: `@uirouter/core` does not register a builder for views.\n * The framework specific code should register a `views` builder.\n */\n public views: { [key: string]: _ViewDeclaration };\n\n /**\n * The original [[StateDeclaration]] used to build this [[StateObject]].\n * Note: `this` object also prototypally inherits from the `self` declaration object.\n */\n public self: StateDeclaration;\n\n /** The nearest parent [[StateObject]] which has a URL */\n public navigable: StateObject;\n\n /** The parent [[StateObject]] objects from this state up to the root */\n public path: StateObject[];\n\n /**\n * Prototypally inherits from [[StateDeclaration.data]]\n * Note: This is the only field on the [[StateDeclaration]] which is mutated.\n * The definition object's `data` field is replaced with a new object\n * which prototypally inherits from the parent state definition's `data` field.\n */\n public data: any;\n\n /**\n * An object containing the parent States' names as keys and\n * true as their values.\n */\n public includes: { [name: string]: boolean };\n\n /** Prototypally inherits from [[StateDeclaration.onExit]] */\n public onExit: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onRetain]] */\n public onRetain: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onEnter]] */\n public onEnter: TransitionStateHookFn;\n\n /** Prototypally inherits from [[StateDeclaration.lazyLoad]] */\n public lazyLoad: (transition: Transition, state: StateDeclaration) => Promise<LazyLoadResult>;\n\n /** Prototypally inherits from [[StateDeclaration.redirectTo]] */\n redirectTo:\n | string\n | (($transition$: Transition) => TargetState)\n | { state: string | StateDeclaration; params: { [key: string]: any } };\n\n /** @hidden */\n __stateObjectCache: {\n /** Might be null */\n nameGlob?: Glob;\n };\n\n /**\n * Create a state object to put the private/internal implementation details onto.\n * The object's prototype chain looks like:\n * (Internal State Object) -> (Copy of State.prototype) -> (State Declaration object) -> (State Declaration's prototype...)\n *\n * @param stateDecl the user-supplied State Declaration\n * @returns {StateObject} an internal State object\n */\n static create(stateDecl: _StateDeclaration): StateObject {\n stateDecl = StateObject.isStateClass(stateDecl) ? new stateDecl() : stateDecl;\n\n const state = inherit(inherit(stateDecl, StateObject.prototype)) as StateObject;\n stateDecl.$$state = () => state;\n state.self = stateDecl;\n state.__stateObjectCache = {\n nameGlob: Glob.fromString(state.name), // might return null\n };\n return state;\n }\n\n /** Predicate which returns true if the object is an class with @State() decorator */\n static iLine truncated
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"/** Predicates\n *\n * These predicates return true/false based on the input.\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_predicates\n */\n/** */\nimport { and, not, pipe, prop, or } from './hof';\nimport { Predicate } from './common'; // has or is using\nimport { StateObject } from '../state/stateObject';\n\nconst toStr = Object.prototype.toString;\nconst tis = (t: string) => (x: any) => typeof x === t;\nexport const isUndefined = tis('undefined');\nexport const isDefined = not(isUndefined);\nexport const isNull = (o: any) => o === null;\nexport const isNullOrUndefined = or(isNull, isUndefined);\nexport const isFunction: (x: any) => x is Function = <any>tis('function');\nexport const isNumber: (x: any) => x is number = <any>tis('number');\nexport const isString = <(x: any) => x is string>tis('string');\nexport const isObject = (x: any) => x !== null && typeof x === 'object';\nexport const isArray = Array.isArray;\nexport const isDate: (x: any) => x is Date = <any>((x: any) => toStr.call(x) === '[object Date]');\nexport const isRegExp: (x: any) => x is RegExp = <any>((x: any) => toStr.call(x) === '[object RegExp]');\nexport const isState: (x: any) => x is StateObject = StateObject.isState;\n\n/**\n * Predicate which checks if a value is injectable\n *\n * A value is \"injectable\" if it is a function, or if it is an ng1 array-notation-style array\n * where all the elements in the array are Strings, except the last one, which is a Function\n */\nexport function isInjectable(val: any) {\n if (isArray(val) && val.length) {\n const head = val.slice(0, -1),\n tail = val.slice(-1);\n return !(head.filter(not(isString)).length || tail.filter(not(isFunction)).length);\n }\n return isFunction(val);\n}\n\n/**\n * Predicate which checks if a value looks like a Promise\n *\n * It is probably a Promise if it's an object, and it has a `then` property which is a Function\n */\nexport const isPromise = <(x: any) => x is Promise<any>>and(isObject, pipe(prop('then'), isFunction));\n",
|
||||
"/**\n * @hidden\n * @module ng1\n */ /** */\ndeclare var angular;\nimport * as ng_from_import from 'angular';\nconst ng_from_global = angular;\n\nexport const ng = (ng_from_import && ng_from_import.module) ? ng_from_import : ng_from_global;\n",
|
||||
"/**\n * Higher order functions\n *\n * These utility functions are exported, but are subject to change without notice.\n *\n * @module common_hof\n */ /** */\n\nimport { Predicate } from './common';\n/**\n * Returns a new function for [Partial Application](https://en.wikipedia.org/wiki/Partial_application) of the original function.\n *\n * Given a function with N parameters, returns a new function that supports partial application.\n * The new function accepts anywhere from 1 to N parameters. When that function is called with M parameters,\n * where M is less than N, it returns a new function that accepts the remaining parameters. It continues to\n * accept more parameters until all N parameters have been supplied.\n *\n *\n * This contrived example uses a partially applied function as an predicate, which returns true\n * if an object is found in both arrays.\n * @example\n * ```\n * // returns true if an object is in both of the two arrays\n * function inBoth(array1, array2, object) {\n * return array1.indexOf(object) !== -1 &&\n * array2.indexOf(object) !== 1;\n * }\n * let obj1, obj2, obj3, obj4, obj5, obj6, obj7\n * let foos = [obj1, obj3]\n * let bars = [obj3, obj4, obj5]\n *\n * // A curried \"copy\" of inBoth\n * let curriedInBoth = curry(inBoth);\n * // Partially apply both the array1 and array2\n * let inFoosAndBars = curriedInBoth(foos, bars);\n *\n * // Supply the final argument; since all arguments are\n * // supplied, the original inBoth function is then called.\n * let obj1InBoth = inFoosAndBars(obj1); // false\n *\n * // Use the inFoosAndBars as a predicate.\n * // Filter, on each iteration, supplies the final argument\n * let allObjs = [ obj1, obj2, obj3, obj4, obj5, obj6, obj7 ];\n * let foundInBoth = allObjs.filter(inFoosAndBars); // [ obj3 ]\n *\n * ```\n *\n * Stolen from: http://stackoverflow.com/questions/4394747/javascript-curry-function\n *\n * @param fn\n * @returns {*|function(): (*|any)}\n */\nexport function curry(fn: Function): Function {\n const initial_args = [].slice.apply(arguments, [1]);\n const func_args_length = fn.length;\n\n function curried(args: any[]) {\n if (args.length >= func_args_length)\n return fn.apply(null, args);\n return function () {\n return curried(args.concat([].slice.apply(arguments)));\n };\n }\n return curried(initial_args);\n}\n\n\n\n/**\n * Given a varargs list of functions, returns a function that composes the argument functions, right-to-left\n * given: f(x), g(x), h(x)\n * let composed = compose(f,g,h)\n * then, composed is: f(g(h(x)))\n */\nexport function compose() {\n const args = arguments;\n const start = args.length - 1;\n return function() {\n let i = start, result = args[start].apply(this, arguments);\n while (i--) result = args[i].call(this, result);\n return result;\n };\n}\n\n/**\n * Given a varargs list of functions, returns a function that is composes the argument functions, left-to-right\n * given: f(x), g(x), h(x)\n * let piped = pipe(f,g,h);\n * then, piped is: h(g(f(x)))\n */\nexport function pipe(...funcs: Function[]): (obj: any) => any {\n return compose.apply(null, [].slice.call(arguments).reverse());\n}\n\n/**\n * Given a property name, returns a function that returns that property from an object\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = prop(\"name\");\n * getName(obj) === \"blarg\"\n */\nexport const prop = (name: string) =>\n (obj: any) => obj && obj[name];\n\n/**\n * Given a property name and a value, returns a function that returns a boolean based on whether\n * the passed object has a property that matches the value\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = propEq(\"name\", \"blarg\");\n * getName(obj) === true\n */\nexport const propEq = curry((name: string, _val: any, obj: any) => obj && obj[name] === _val);\n\n/**\n * Given a dotted property name, returns a function that returns a nested property from an object, or undefined\n * let obj = { id: 1, nestedObj: { foo: 1, name: \"blarg\" }, };\n * let getName = prop(\"nestedObj.name\");\n * getName(obj) === \"blarg\"\n * let propNotFound = prop(\"this.property.doesnt.exist\");\n * propNotFound(obj) === undefined\n */\nexport const parse = (name: string) =>\n pipe.apply(null, name.split('.').map(prop));\n\n/**\n * Given a function that returns a truthy or falsey value, returns a\n * function that returns the opposite (falsey or truthy) value given the same inputs\n */\nexport const not: (fn: Predicate<any>) => Predicate<any> = (fn: Predicate<any>) =>\n (...args: any[]) => !fn.apply(null, args);\n\n/**\n * Given two functions that return truthy or falsey values, returns a function that returns truthy\n * if both functions return truthy for the given arguments\n */\nexport function and(fn1: Predicate<any>, fn2: Predicate<any>): Predicate<any> {\n return (...args: any[]) => fn1.apply(null, args) && fn2.apply(null, args);\n}\n\n/**\n * Given two functions that return trutLine truncated
|
||||
"/**\n * @coreapi\n * @module core\n */\n/**\n * Matches state names using glob-like pattern strings.\n *\n * Globs can be used in specific APIs including:\n *\n * - [[StateService.is]]\n * - [[StateService.includes]]\n * - The first argument to Hook Registration functions like [[TransitionService.onStart]]\n * - [[HookMatchCriteria]] and [[HookMatchCriterion]]\n *\n * A `Glob` string is a pattern which matches state names.\n * Nested state names are split into segments (separated by a dot) when processing.\n * The state named `foo.bar.baz` is split into three segments ['foo', 'bar', 'baz']\n *\n * Globs work according to the following rules:\n *\n * ### Exact match:\n *\n * The glob `'A.B'` matches the state named exactly `'A.B'`.\n *\n * | Glob |Matches states named|Does not match state named|\n * |:------------|:--------------------|:---------------------|\n * | `'A'` | `'A'` | `'B'` , `'A.C'` |\n * | `'A.B'` | `'A.B'` | `'A'` , `'A.B.C'` |\n * | `'foo'` | `'foo'` | `'FOO'` , `'foo.bar'`|\n *\n * ### Single star (`*`)\n *\n * A single star (`*`) is a wildcard that matches exactly one segment.\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:---------------------|:--------------------------|\n * | `'*'` | `'A'` , `'Z'` | `'A.B'` , `'Z.Y.X'` |\n * | `'A.*'` | `'A.B'` , `'A.C'` | `'A'` , `'A.B.C'` |\n * | `'A.*.*'` | `'A.B.C'` , `'A.X.Y'`| `'A'`, `'A.B'` , `'Z.Y.X'`|\n *\n * ### Double star (`**`)\n *\n * A double star (`'**'`) is a wildcard that matches *zero or more segments*\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:----------------------------------------------|:----------------------------------|\n * | `'**'` | `'A'` , `'A.B'`, `'Z.Y.X'` | (matches all states) |\n * | `'A.**'` | `'A'` , `'A.B'` , `'A.C.X'` | `'Z.Y.X'` |\n * | `'**.X'` | `'X'` , `'A.X'` , `'Z.Y.X'` | `'A'` , `'A.login.Z'` |\n * | `'A.**.X'` | `'A.X'` , `'A.B.X'` , `'A.B.C.X'` | `'A'` , `'A.B.C'` |\n *\n */\nexport class Glob {\n text: string;\n glob: Array<string>;\n regexp: RegExp;\n\n /** Returns true if the string has glob-like characters in it */\n static is(text: string) {\n return !!/[!,*]+/.exec(text);\n }\n\n /** Returns a glob from the string, or null if the string isn't Glob-like */\n static fromString(text: string) {\n return Glob.is(text) ? new Glob(text) : null;\n }\n\n constructor(text: string) {\n this.text = text;\n this.glob = text.split('.');\n\n const regexpString = this.text.split('.')\n .map(seg => {\n if (seg === '**') return '(?:|(?:\\\\.[^.]*)*)';\n if (seg === '*') return '\\\\.[^.]*';\n return '\\\\.' + seg;\n }).join('');\n\n this.regexp = new RegExp('^' + regexpString + '$');\n }\n\n matches(name: string) {\n return this.regexp.test('.' + name);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** for typedoc */\nimport { StateDeclaration, _ViewDeclaration, _StateDeclaration, LazyLoadResult } from './interface';\nimport { defaults, values, find, inherit } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { Param } from '../params/param';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { TargetState } from './targetState';\nimport { Transition } from '../transition/transition';\nimport { Glob } from '../common/glob';\nimport { isObject, isFunction } from '../common/predicates';\n\n/**\n * Internal representation of a UI-Router state.\n *\n * Instances of this class are created when a [[StateDeclaration]] is registered with the [[StateRegistry]].\n *\n * A registered [[StateDeclaration]] is augmented with a getter ([[StateDeclaration.$$state]]) which returns the corresponding [[StateObject]] object.\n *\n * This class prototypally inherits from the corresponding [[StateDeclaration]].\n * Each of its own properties (i.e., `hasOwnProperty`) are built using builders from the [[StateBuilder]].\n */\nexport class StateObject {\n /** The parent [[StateObject]] */\n public parent: StateObject;\n\n /** The name used to register the state */\n public name: string;\n\n /** Prototypally inherits from [[StateDeclaration.abstract]] */\n public abstract: boolean;\n\n /** Prototypally inherits from [[StateDeclaration.resolve]] */\n public resolve: ({ [key: string]: (string|any[]|Function) }|any[]);\n\n /** A list of [[Resolvable]] objects. The internal representation of [[resolve]]. */\n public resolvables: Resolvable[];\n\n /** Prototypally inherits from [[StateDeclaration.resolvePolicy]] */\n public resolvePolicy: any;\n\n /** A compiled URLMatcher which detects when the state's URL is matched */\n public url: UrlMatcher;\n\n /** The parameters for the state, built from the URL and [[StateDeclaration.params]] */\n public params: { [key: string]: Param };\n\n /**\n * The views for the state.\n * Note: `@uirouter/core` does not register a builder for views.\n * The framework specific code should register a `views` builder.\n */\n public views: { [key: string]: _ViewDeclaration; };\n\n /**\n * The original [[StateDeclaration]] used to build this [[StateObject]].\n * Note: `this` object also prototypally inherits from the `self` declaration object.\n */\n public self: StateDeclaration;\n\n /** The nearest parent [[StateObject]] which has a URL */\n public navigable: StateObject;\n\n /** The parent [[StateObject]] objects from this state up to the root */\n public path: StateObject[];\n\n /**\n * Prototypally inherits from [[StateDeclaration.data]]\n * Note: This is the only field on the [[StateDeclaration]] which is mutated.\n * The definition object's `data` field is replaced with a new object\n * which prototypally inherits from the parent state definition's `data` field.\n */\n public data: any;\n\n /**\n * An object containing the parent States' names as keys and\n * true as their values.\n */\n public includes: { [name: string]: boolean };\n\n /** Prototypally inherits from [[StateDeclaration.onExit]] */\n public onExit: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onRetain]] */\n public onRetain: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onEnter]] */\n public onEnter: TransitionStateHookFn;\n\n /** Prototypally inherits from [[StateDeclaration.lazyLoad]] */\n public lazyLoad: (transition: Transition, state: StateDeclaration) => Promise<LazyLoadResult>;\n\n /** Prototypally inherits from [[StateDeclaration.redirectTo]] */\n redirectTo: (\n string |\n (($transition$: Transition) => TargetState) |\n { state: (string|StateDeclaration), params: { [key: string]: any }}\n );\n\n /** @hidden */\n __stateObjectCache: {\n /** Might be null */\n nameGlob?: Glob,\n };\n\n /**\n * Create a state object to put the private/internal implementation details onto.\n * The object's prototype chain looks like:\n * (Internal State Object) -> (Copy of State.prototype) -> (State Declaration object) -> (State Declaration's prototype...)\n *\n * @param stateDecl the user-supplied State Declaration\n * @returns {StateObject} an internal State object\n */\n static create(stateDecl: _StateDeclaration): StateObject {\n stateDecl = StateObject.isStateClass(stateDecl) ? new stateDecl() : stateDecl;\n\n const state = inherit(inherit(stateDecl, StateObject.prototype)) as StateObject;\n stateDecl.$$state = () => state;\n state.self = stateDecl;\n state.__stateObjectCache = {\n nameGlob: Glob.fromString(state.name), // might return null\n };\n return state;\n }\n\n /** Predicate which returns true if the object is an class with @State() decorator */\n Line truncated
|
||||
"/** Predicates\n *\n * These predicates return true/false based on the input.\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_predicates\n */\n/** */\nimport { and, not, pipe, prop, or } from './hof';\nimport { Predicate } from './common'; // has or is using\nimport { StateObject } from '../state/stateObject';\n\nconst toStr = Object.prototype.toString;\nconst tis = (t: string) => (x: any) => typeof(x) === t;\nexport const isUndefined = tis('undefined');\nexport const isDefined = not(isUndefined);\nexport const isNull = (o: any) => o === null;\nexport const isNullOrUndefined = or(isNull, isUndefined);\nexport const isFunction: (x: any) => x is Function = <any> tis('function');\nexport const isNumber: (x: any) => x is number = <any> tis('number');\nexport const isString = <(x: any) => x is string> tis('string');\nexport const isObject = (x: any) => x !== null && typeof x === 'object';\nexport const isArray = Array.isArray;\nexport const isDate: (x: any) => x is Date = <any> ((x: any) => toStr.call(x) === '[object Date]');\nexport const isRegExp: (x: any) => x is RegExp = <any> ((x: any) => toStr.call(x) === '[object RegExp]');\nexport const isState: (x: any) => x is StateObject = StateObject.isState;\n\n/**\n * Predicate which checks if a value is injectable\n *\n * A value is \"injectable\" if it is a function, or if it is an ng1 array-notation-style array\n * where all the elements in the array are Strings, except the last one, which is a Function\n */\nexport function isInjectable(val: any) {\n if (isArray(val) && val.length) {\n const head = val.slice(0, -1), tail = val.slice(-1);\n return !(head.filter(not(isString)).length || tail.filter(not(isFunction)).length);\n }\n return isFunction(val);\n}\n\n/**\n * Predicate which checks if a value looks like a Promise\n *\n * It is probably a Promise if it's an object, and it has a `then` property which is a Function\n */\nexport const isPromise = <(x: any) => x is Promise<any>> and(isObject, pipe(prop('then'), isFunction));\n\n",
|
||||
"/**\n * This module is a stub for core services such as Dependency Injection or Browser Location.\n * Core services may be implemented by a specific framework, such as ng1 or ng2, or be pure javascript.\n *\n * @module common\n */\n/** for typedoc */\nimport { IInjectable, Obj } from './common';\nimport { Disposable } from '../interface';\nimport { UrlParts } from '../url/interface';\n\nexport let notImplemented = (fnname: string) => () => {\n throw new Error(`${fnname}(): No coreservices implementation for UI-Router is loaded.`);\n};\n\nconst services: CoreServices = {\n $q: undefined,\n $injector: undefined,\n};\n\nexport interface $QLikeDeferred {\n resolve: (val?: any) => void;\n reject: (reason?: any) => void;\n promise: Promise<any>;\n}\n\nexport interface $QLike {\n when<T>(value?: T | PromiseLike<T>): Promise<T>;\n reject<T>(reason: any): Promise<T>;\n defer(): $QLikeDeferred;\n all(promises: { [key: string]: Promise<any> }): Promise<any>;\n all(promises: Promise<any>[]): Promise<any[]>;\n}\n\nexport interface $InjectorLike {\n strictDi?: boolean;\n get(token: any): any;\n get<T>(token: any): T;\n has(token: any): boolean;\n invoke(fn: IInjectable, context?: any, locals?: Obj): any;\n annotate(fn: IInjectable, strictDi?: boolean): any[];\n}\n\nexport interface CoreServices {\n $q: $QLike;\n $injector: $InjectorLike;\n}\n\nexport interface LocationServices extends Disposable {\n /**\n * Gets the current url string\n *\n * The URL is normalized using the internal [[path]]/[[search]]/[[hash]] values.\n *\n * For example, the URL may be stored in the hash ([[HashLocationServices]]) or\n * have a base HREF prepended ([[PushStateLocationServices]]).\n *\n * The raw URL in the browser might be:\n *\n * ```\n * http://mysite.com/somepath/index.html#/internal/path/123?param1=foo#anchor\n * ```\n *\n * or\n *\n * ```\n * http://mysite.com/basepath/internal/path/123?param1=foo#anchor\n * ```\n *\n * then this method returns:\n *\n * ```\n * /internal/path/123?param1=foo#anchor\n * ```\n *\n *\n * #### Example:\n * ```js\n * locationServices.url(); // \"/some/path?query=value#anchor\"\n * ```\n *\n * @returns the current value of the url, as a string.\n */\n url(): string;\n\n /**\n * Updates the url, or gets the current url\n *\n * Updates the url, changing it to the value in `newurl`\n *\n * #### Example:\n * ```js\n * locationServices.url(\"/some/path?query=value#anchor\", true);\n * ```\n *\n * @param newurl The new value for the URL.\n * This url should reflect only the new internal [[path]], [[search]], and [[hash]] values.\n * It should not include the protocol, site, port, or base path of an absolute HREF.\n * @param replace When true, replaces the current history entry (instead of appending it) with this new url\n * @param state The history's state object, i.e., pushState (if the LocationServices implementation supports it)\n * @return the url (after potentially being processed)\n */\n url(newurl: string, replace?: boolean, state?: any): string;\n\n /**\n * Gets the path part of the current url\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `/some/path`\n *\n * @return the path portion of the url\n */\n path(): string;\n\n /**\n * Gets the search part of the current url as an object\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `{ query: 'value' }`\n *\n * @return the search (querystring) portion of the url, as an object\n */\n search(): { [key: string]: any };\n\n /**\n * Gets the hash part of the current url\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `anchor`\n *\n * @return the hash (anchor) portion of the url\n */\n hash(): string;\n\n /**\n * Registers a url change handler\n *\n * #### Example:\n * ```js\n * let deregisterFn = locationServices.onChange((evt) => console.log(\"url change\", evt));\n * ```\n *\n * @param callback a function that will be called when the url is changing\n * @return a function that de-registers the callback\n */\n onChange(callback: Function): Function;\n}\n\n/**\n * This service returns the location configuration\n *\n * This service returns information about the location configuration.\n * This service is primarily used when building URLs (e.g., for `hrefs`)\n */\nexport interface LocationConfig extends Disposable {\n /**\n * Gets the port, e.g., `80`\n *\n * @return the port number\n */\n port(): number;\n /**\n * Gets the protocol, e.g., `http`\n *\n * @return the protocol\n */\n protocol(): string;\n /**\n * Gets the host, e.g., `localhost`\n *\n * @return the protocol\n */\n host(): string;\n /**\n * Gets the base Href, e.g., `http://localhost/approot/`\n *\n * @return the application's base href\n */\n baseHref(): striLine truncated
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"/**\n * Random utility functions used in the UI-Router code\n *\n * These functions are exported, but are subject to change without notice.\n *\n * @preferred\n * @module common\n */\n/** for typedoc */\nimport { isFunction, isString, isArray, isRegExp, isDate } from './predicates';\nimport { all, any, prop, curry, not } from './hof';\nimport { services } from './coreservices';\nimport { StateObject } from '../state/stateObject';\n\ndeclare const global;\nexport const root: any =\n (typeof self === 'object' && self.self === self && self) ||\n (typeof global === 'object' && global.global === global && global) ||\n this;\nconst angular = root.angular || {};\n\nexport const fromJson = angular.fromJson || JSON.parse.bind(JSON);\nexport const toJson = angular.toJson || JSON.stringify.bind(JSON);\nexport const forEach = angular.forEach || _forEach;\nexport const extend = Object.assign || _extend;\nexport const equals = angular.equals || _equals;\nexport function identity(x: any) {\n return x;\n}\nexport function noop(): any {}\n\nexport type Mapper<X, T> = (x: X, key?: string | number) => T;\nexport interface TypedMap<T> {\n [key: string]: T;\n}\nexport type Predicate<X> = (x?: X) => boolean;\n/**\n * An ng1-style injectable\n *\n * This could be a (non-minified) function such as:\n * ```js\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an explicitly annotated function (minify safe)\n * ```js\n * injectableFunction.$inject = [ 'SomeDependency' ];\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an array style annotated function (minify safe)\n * ```js\n * ['SomeDependency', function injectableFunction(SomeDependency) {\n *\n * }];\n * ```\n *\n * @publicapi\n */\nexport type IInjectable = Function | any[];\n\nexport interface Obj extends Object {\n [key: string]: any;\n}\n\n/**\n * Builds proxy functions on the `to` object which pass through to the `from` object.\n *\n * For each key in `fnNames`, creates a proxy function on the `to` object.\n * The proxy function calls the real function on the `from` object.\n *\n *\n * #### Example:\n * This example creates an new class instance whose functions are prebound to the new'd object.\n * ```js\n * class Foo {\n * constructor(data) {\n * // Binds all functions from Foo.prototype to 'this',\n * // then copies them to 'this'\n * bindFunctions(Foo.prototype, this, this);\n * this.data = data;\n * }\n *\n * log() {\n * console.log(this.data);\n * }\n * }\n *\n * let myFoo = new Foo([1,2,3]);\n * var logit = myFoo.log;\n * logit(); // logs [1, 2, 3] from the myFoo 'this' instance\n * ```\n *\n * #### Example:\n * This example creates a bound version of a service function, and copies it to another object\n * ```\n *\n * var SomeService = {\n * this.data = [3, 4, 5];\n * this.log = function() {\n * console.log(this.data);\n * }\n * }\n *\n * // Constructor fn\n * function OtherThing() {\n * // Binds all functions from SomeService to SomeService,\n * // then copies them to 'this'\n * bindFunctions(SomeService, this, SomeService);\n * }\n *\n * let myOtherThing = new OtherThing();\n * myOtherThing.log(); // logs [3, 4, 5] from SomeService's 'this'\n * ```\n *\n * @param source A function that returns the source object which contains the original functions to be bound\n * @param target A function that returns the target object which will receive the bound functions\n * @param bind A function that returns the object which the functions will be bound to\n * @param fnNames The function names which will be bound (Defaults to all the functions found on the 'from' object)\n * @param latebind If true, the binding of the function is delayed until the first time it's invoked\n */\nexport function createProxyFunctions(\n source: Function,\n target: Obj,\n bind: Function,\n fnNames?: string[],\n latebind = false,\n): Obj {\n const bindFunction = fnName => source()[fnName].bind(bind());\n\n const makeLateRebindFn = fnName =>\n function lateRebindFunction() {\n target[fnName] = bindFunction(fnName);\n return target[fnName].apply(null, arguments);\n };\n\n fnNames = fnNames || Object.keys(source());\n\n return fnNames.reduce((acc, name) => {\n acc[name] = latebind ? makeLateRebindFn(name) : bindFunction(name);\n return acc;\n }, target);\n}\n\n/**\n * prototypal inheritance helper.\n * Creates a new object which has `parent` object as its prototype, and then copies the properties from `extra` onto it\n */\nexport const inherit = (parent: Obj, extra?: Obj) => extend(Object.create(parent), extra);\n\n/** Given an array, returns true if the object is found in the array, (using indexOf) */\nexport const inArray: typeof _inArray = curry(_inArray) as any;\nexport function _inArray(array: any[], obj: any): boolean;\nexport function _inArray(array: any[]): (obj: any) => boolean;\nexport function _inArray(array, obj?): any {\n return array.indexOf(obj)Line truncated
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"/** @module common */\nimport { pushTo } from './common';\n\nexport class Queue<T> {\n private _evictListeners: ((item: T) => void)[] = [];\n public onEvict = pushTo(this._evictListeners);\n\n constructor(private _items: T[] = [], private _limit: number = null) {}\n\n enqueue(item: T) {\n const items = this._items;\n items.push(item);\n if (this._limit && items.length > this._limit) this.evict();\n return item;\n }\n\n evict(): T {\n const item: T = this._items.shift();\n this._evictListeners.forEach(fn => fn(item));\n return item;\n }\n\n dequeue(): T {\n if (this.size()) return this._items.splice(0, 1)[0];\n }\n\n clear(): Array<T> {\n const current = this._items;\n this._items = [];\n return current;\n }\n\n size(): number {\n return this._items.length;\n }\n\n remove(item: T) {\n const idx = this._items.indexOf(item);\n return idx > -1 && this._items.splice(idx, 1)[0];\n }\n\n peekTail(): T {\n return this._items[this._items.length - 1];\n }\n\n peekHead(): T {\n if (this.size()) return this._items[0];\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n'use strict';\nimport { extend, silentRejection } from '../common/common';\nimport { stringify } from '../common/strings';\nimport { is } from '../common/hof';\n\nenum RejectType {\n /**\n * A new transition superseded this one.\n *\n * While this transition was running, a new transition started.\n * This transition is cancelled because it was superseded by new transition.\n */\n SUPERSEDED = 2,\n\n /**\n * The transition was aborted\n *\n * The transition was aborted by a hook which returned `false`\n */\n ABORTED = 3,\n\n /**\n * The transition was invalid\n *\n * The transition was never started because it was invalid\n */\n INVALID = 4,\n\n /**\n * The transition was ignored\n *\n * The transition was ignored because it would have no effect.\n *\n * Either:\n *\n * - The transition is targeting the current state and parameter values\n * - The transition is targeting the same state and parameter values as the currently running transition.\n */\n IGNORED = 5,\n\n /**\n * The transition errored.\n *\n * This generally means a hook threw an error or returned a rejected promise\n */\n ERROR = 6,\n}\n\nexport { RejectType };\n\n/** @hidden */\nlet id = 0;\n\nexport class Rejection {\n /** @hidden */\n $id = id++;\n /**\n * The type of the rejection.\n *\n * This value is an number representing the type of transition rejection.\n * If using Typescript, this is a Typescript enum.\n *\n * - [[RejectType.SUPERSEDED]] (`2`)\n * - [[RejectType.ABORTED]] (`3`)\n * - [[RejectType.INVALID]] (`4`)\n * - [[RejectType.IGNORED]] (`5`)\n * - [[RejectType.ERROR]] (`6`)\n *\n */\n type: RejectType;\n\n /**\n * A message describing the rejection\n */\n message: string;\n\n /**\n * A detail object\n *\n * This value varies based on the mechanism for rejecting the transition.\n * For example, if an error was thrown from a hook, the `detail` will be the `Error` object.\n * If a hook returned a rejected promise, the `detail` will be the rejected value.\n */\n detail: any;\n\n /**\n * Indicates if the transition was redirected.\n *\n * When a transition is redirected, the rejection [[type]] will be [[RejectType.SUPERSEDED]] and this flag will be true.\n */\n redirected: boolean;\n\n /** Returns true if the obj is a rejected promise created from the `asPromise` factory */\n static isRejectionPromise(obj: any): boolean {\n return obj && typeof obj.then === 'function' && is(Rejection)(obj._transitionRejection);\n }\n\n /** Returns a Rejection due to transition superseded */\n static superseded(detail?: any, options?: any): Rejection {\n const message = 'The transition has been superseded by a different transition';\n const rejection = new Rejection(RejectType.SUPERSEDED, message, detail);\n if (options && options.redirected) {\n rejection.redirected = true;\n }\n return rejection;\n }\n\n /** Returns a Rejection due to redirected transition */\n static redirected(detail?: any): Rejection {\n return Rejection.superseded(detail, { redirected: true });\n }\n\n /** Returns a Rejection due to invalid transition */\n static invalid(detail?: any): Rejection {\n const message = 'This transition is invalid';\n return new Rejection(RejectType.INVALID, message, detail);\n }\n\n /** Returns a Rejection due to ignored transition */\n static ignored(detail?: any): Rejection {\n const message = 'The transition was ignored';\n return new Rejection(RejectType.IGNORED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static aborted(detail?: any): Rejection {\n const message = 'The transition has been aborted';\n return new Rejection(RejectType.ABORTED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static errored(detail?: any): Rejection {\n const message = 'The transition errored';\n return new Rejection(RejectType.ERROR, message, detail);\n }\n\n /**\n * Returns a Rejection\n *\n * Normalizes a value as a Rejection.\n * If the value is already a Rejection, returns it.\n * Otherwise, wraps and returns the value as a Rejection (Rejection type: ERROR).\n *\n * @returns `detail` if it is already a `Rejection`, else returns an ERROR Rejection.\n */\n static normalize(detail?: Rejection | Error | any): Rejection {\n return is(Rejection)(detail) ? detail : Rejection.errored(detail);\n }\n\n constructor(type: number, message?: string, detail?: any) {\n this.type = type;\n this.message = message;\n this.detail = detail;\n }\n\n toString() {\n const detailString = (d: any) => (d && d.toString !== Object.prototype.toString ? d.toString() : stringify(d));\n const detail = detailString(this.detail);\n const { $id, type, message } = this;\n return `Transition Rejection($id: ${$id} type: ${type}, Line truncated
|
||||
"/**\n * # Transition tracing (debug)\n *\n * Enable transition tracing to print transition information to the console,\n * in order to help debug your application.\n * Tracing logs detailed information about each Transition to your console.\n *\n * To enable tracing, import the [[Trace]] singleton and enable one or more categories.\n *\n * ### ES6\n * ```js\n * import {trace} from \"@uirouter/core\";\n * trace.enable(1, 5); // TRANSITION and VIEWCONFIG\n * ```\n *\n * ### CJS\n * ```js\n * let trace = require(\"@uirouter/core\").trace;\n * trace.enable(\"TRANSITION\", \"VIEWCONFIG\");\n * ```\n *\n * ### Globals\n * ```js\n * let trace = window[\"@uirouter/core\"].trace;\n * trace.enable(); // Trace everything (very verbose)\n * ```\n *\n * ### Angular 1:\n * ```js\n * app.run($trace => $trace.enable());\n * ```\n *\n * @coreapi\n * @module trace\n */\n/* tslint:disable:no-console */\nimport { parse } from '../common/hof';\nimport { isFunction, isNumber } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { ViewTuple } from '../view';\nimport { ActiveUIView, ViewConfig, ViewContext } from '../view/interface';\nimport { stringify, functionToString, maxLength, padString } from './strings';\nimport { Resolvable } from '../resolve/resolvable';\nimport { PathNode } from '../path/pathNode';\nimport { PolicyWhen } from '../resolve/interface';\nimport { TransitionHook } from '../transition/transitionHook';\nimport { HookResult } from '../transition/interface';\nimport { StateObject } from '../state/stateObject';\n\n/** @hidden */\nfunction uiViewString(uiview: ActiveUIView) {\n if (!uiview) return 'ui-view (defunct)';\n const state = uiview.creationContext ? uiview.creationContext.name || '(root)' : '(none)';\n return `[ui-view#${uiview.id} ${uiview.$type}:${uiview.fqn} (${uiview.name}@${state})]`;\n}\n\n/** @hidden */\nconst viewConfigString = (viewConfig: ViewConfig) => {\n const view = viewConfig.viewDecl;\n const state = view.$context.name || '(root)';\n return `[View#${viewConfig.$id} from '${state}' state]: target ui-view: '${view.$uiViewName}@${\n view.$uiViewContextAnchor\n }'`;\n};\n\n/** @hidden */\nfunction normalizedCat(input: Category | string): string {\n return isNumber(input) ? Category[input] : Category[Category[input]];\n}\n\n/** @hidden */\nconst consoleLog = Function.prototype.bind.call(console.log, console);\n\n/** @hidden */\nconst consoletable = isFunction(console.table) ? console.table.bind(console) : consoleLog.bind(console);\n\n/**\n * Trace categories Enum\n *\n * Enable or disable a category using [[Trace.enable]] or [[Trace.disable]]\n *\n * `trace.enable(Category.TRANSITION)`\n *\n * These can also be provided using a matching string, or position ordinal\n *\n * `trace.enable(\"TRANSITION\")`\n *\n * `trace.enable(1)`\n */\nenum Category {\n RESOLVE,\n TRANSITION,\n HOOK,\n UIVIEW,\n VIEWCONFIG,\n}\n\nexport { Category };\n\n/** @hidden */\nconst _tid = parse('$id');\n\n/** @hidden */\nconst _rid = parse('router.$id');\n\n/** @hidden */\nconst transLbl = trans => `Transition #${_tid(trans)}-${_rid(trans)}`;\n\n/**\n * Prints UI-Router Transition trace information to the console.\n */\nexport class Trace {\n /** @hidden */\n approximateDigests: number;\n\n /** @hidden */\n private _enabled: { [key: string]: boolean } = {};\n\n /** @hidden */\n constructor() {\n this.approximateDigests = 0;\n }\n\n /** @hidden */\n private _set(enabled: boolean, categories: Category[]) {\n if (!categories.length) {\n categories = <any>Object.keys(Category)\n .map(k => parseInt(k, 10))\n .filter(k => !isNaN(k))\n .map(key => Category[key]);\n }\n categories.map(normalizedCat).forEach(category => (this._enabled[category] = enabled));\n }\n\n /**\n * Enables a trace [[Category]]\n *\n * ```js\n * trace.enable(\"TRANSITION\");\n * ```\n *\n * @param categories categories to enable. If `categories` is omitted, all categories are enabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n enable(...categories: (Category | string | number)[]);\n enable(...categories: any[]) {\n this._set(true, categories);\n }\n /**\n * Disables a trace [[Category]]\n *\n * ```js\n * trace.disable(\"VIEWCONFIG\");\n * ```\n *\n * @param categories categories to disable. If `categories` is omitted, all categories are disabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n disable(...categories: (Category | string | number)[]);\n disable(...categories: any[]) {\n this._set(false, categories);\n }\n\n /**\n * Retrieves the enabled stateus of a [[Category]]\n *\n * ```js\n * trace.enabled(\"VIEWCONFIG\"); // true or false\n * ```\n *\n * @returns boolean true if the category is enabled\n */\n enabled(category: Category | string | number): boolean {\n return !!this._enabled[normalizeLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { StateDeclaration } from '../state/interface';\nimport { Predicate } from '../common/common';\n\nimport { Transition } from './transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TargetState } from '../state/targetState';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * The TransitionOptions object can be used to change the behavior of a transition.\n *\n * It is passed as the third argument to [[StateService.go]], [[StateService.transitionTo]].\n * It can also be used with a `uiSref`.\n */\nexport interface TransitionOptions {\n /**\n * This option changes how the Transition interacts with the browser's location bar (URL).\n *\n * - If `true`, it will update the url in the location bar.\n * - If `false`, it will not update the url in the location bar.\n * - If it is the string `\"replace\"`, it will update the url and also replace the last history record.\n *\n * @default `true`\n */\n location?: boolean | string;\n\n /**\n * When transitioning to relative path (e.g '`^`'), this option defines which state to be relative from.\n * @default `$state.current`\n */\n relative?: string | StateDeclaration | StateObject;\n\n /**\n * This option sets whether or not the transition's parameter values should be inherited from\n * the current parameter values.\n *\n * - If `true`, it will inherit parameter values from the current parameter values.\n * - If `false`, only the parameters which are provided to `transitionTo` will be used.\n *\n * @default `false`\n */\n inherit?: boolean;\n\n /**\n * @deprecated\n */\n notify?: boolean;\n\n /**\n * This option may be used to force states which are currently active to reload.\n *\n * During a normal transition, a state is \"retained\" if:\n * - It was previously active\n * - The state's parameter values have not changed\n * - All the parent states' parameter values have not changed\n *\n * Forcing a reload of a state will cause it to be exited and entered, which will:\n * - Refetch that state's resolve data\n * - Exit the state (onExit hook)\n * - Re-enter the state (onEnter hook)\n * - Re-render the views (controllers and templates)\n *\n * - When `true`, the destination state (and all parent states) will be reloaded.\n * - When it is a string and is the name of a state, or when it is a State object,\n * that state and any children states will be reloaded.\n *\n * @default `false`\n */\n reload?: boolean | string | StateDeclaration | StateObject;\n /**\n * You can define your own Transition Options inside this property and use them, e.g., from a Transition Hook\n */\n custom?: any;\n /** @internalapi */\n reloadState?: StateObject;\n /** @internalapi\n * If this transition is a redirect, this property should be the original Transition (which was redirected to this one)\n */\n redirectedFrom?: Transition;\n /** @internalapi */\n current?: () => Transition;\n /** @internalapi */\n source?: 'sref' | 'url' | 'redirect' | 'otherwise' | 'unknown';\n}\n\n/** @internalapi */\nexport interface TransitionHookOptions {\n current?: () => Transition; // path?\n transition?: Transition;\n hookType?: string;\n target?: any;\n traceData?: any;\n bind?: any;\n stateHook?: boolean;\n}\n\n/**\n * TreeChanges encapsulates the various Paths that are involved in a Transition.\n *\n * Get a TreeChanges object using [[Transition.treeChanges]]\n *\n * A UI-Router Transition is from one Path in a State Tree to another Path. For a given Transition,\n * this object stores the \"to\" and \"from\" paths, as well as subsets of those: the \"retained\",\n * \"exiting\" and \"entering\" paths.\n *\n * Each path in TreeChanges is an array of [[PathNode]] objects. Each PathNode in the array corresponds to a portion\n * of a nested state.\n *\n * For example, if you had a nested state named `foo.bar.baz`, it would have three\n * portions, `foo, bar, baz`. If you transitioned **to** `foo.bar.baz` and inspected the [[TreeChanges.to]]\n * Path, you would find a node in the array for each portion: `foo`, `bar`, and `baz`.\n *\n * ---\n *\n * @todo show visual state tree\n */\nexport interface TreeChanges {\n /** @nodoc */\n [key: string]: PathNode[];\n\n /** The path of nodes in the state tree that the transition is coming *from* */\n from: PathNode[];\n\n /** The path of nodes in the state tree that the transition is going *to* */\n to: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining.\n *\n * These nodes are neither exited, nor entered.\n * Before and after the transition is successful, these nodes are active.\n */\n retained: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining with updated \"to params\" applied.\n *\n * These nodes are neither exiteLine truncated
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"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateDeclaration, StateOrName, TargetStateDef } from './interface';\nimport { TransitionOptions } from '../transition/interface';\nimport { StateObject } from './stateObject';\nimport { isString } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { extend } from '../common';\nimport { StateRegistry } from './stateRegistry';\nimport { RawParams } from '../params';\n\n/**\n * Encapsulate the target (destination) state/params/options of a [[Transition]].\n *\n * This class is frequently used to redirect a transition to a new destination.\n *\n * See:\n *\n * - [[HookResult]]\n * - [[TransitionHookFn]]\n * - [[TransitionService.onStart]]\n *\n * To create a `TargetState`, use [[StateService.target]].\n *\n * ---\n *\n * This class wraps:\n *\n * 1) an identifier for a state\n * 2) a set of parameters\n * 3) and transition options\n * 4) the registered state object (the [[StateDeclaration]])\n *\n * Many UI-Router APIs such as [[StateService.go]] take a [[StateOrName]] argument which can\n * either be a *state object* (a [[StateDeclaration]] or [[StateObject]]) or a *state name* (a string).\n * The `TargetState` class normalizes those options.\n *\n * A `TargetState` may be valid (the state being targeted exists in the registry)\n * or invalid (the state being targeted is not registered).\n */\nexport class TargetState {\n private _definition: StateObject;\n private _params: RawParams;\n private _options: TransitionOptions;\n\n /** Returns true if the object has a state property that might be a state or state name */\n static isDef = (obj): obj is TargetStateDef => obj && obj.state && (isString(obj.state) || isString(obj.state.name));\n\n /**\n * The TargetState constructor\n *\n * Note: Do not construct a `TargetState` manually.\n * To create a `TargetState`, use the [[StateService.target]] factory method.\n *\n * @param _stateRegistry The StateRegistry to use to look up the _definition\n * @param _identifier An identifier for a state.\n * Either a fully-qualified state name, or the object used to define the state.\n * @param _params Parameters for the target state\n * @param _options Transition options.\n *\n * @internalapi\n */\n constructor(\n private _stateRegistry: StateRegistry,\n private _identifier: StateOrName,\n _params?: RawParams,\n _options?: TransitionOptions,\n ) {\n this._identifier = _identifier;\n this._params = extend({}, _params || {});\n this._options = extend({}, _options || {});\n this._definition = _stateRegistry.matcher.find(_identifier, this._options.relative);\n }\n\n /** The name of the state this object targets */\n name(): string {\n return (this._definition && this._definition.name) || <string>this._identifier;\n }\n\n /** The identifier used when creating this TargetState */\n identifier(): StateOrName {\n return this._identifier;\n }\n\n /** The target parameter values */\n params(): RawParams {\n return this._params;\n }\n\n /** The internal state object (if it was found) */\n $state(): StateObject {\n return this._definition;\n }\n\n /** The internal state declaration (if it was found) */\n state(): StateDeclaration {\n return this._definition && this._definition.self;\n }\n\n /** The target options */\n options() {\n return this._options;\n }\n\n /** True if the target state was found */\n exists(): boolean {\n return !!(this._definition && this._definition.self);\n }\n\n /** True if the object is valid */\n valid(): boolean {\n return !this.error();\n }\n\n /** If the object is invalid, returns the reason why */\n error(): string {\n const base = <any>this.options().relative;\n if (!this._definition && !!base) {\n const stateName = base.name ? base.name : base;\n return `Could not resolve '${this.name()}' from state '${stateName}'`;\n }\n if (!this._definition) return `No such state '${this.name()}'`;\n if (!this._definition.self) return `State '${this.name()}' has an invalid definition`;\n }\n\n toString() {\n return `'${this.name()}'${stringify(this.params())}`;\n }\n\n /**\n * Returns a copy of this TargetState which targets a different state.\n * The new TargetState has the same parameter values and transition options.\n *\n * @param state The new state that should be targeted\n */\n withState(state: StateOrName): TargetState {\n return new TargetState(this._stateRegistry, state, this._params, this._options);\n }\n\n /**\n * Returns a copy of this TargetState, using the specified parameter values.\n *\n * @param params the new parameter values to use\n * @param replace When false (default) the new parameter values will be merged with the current values.\n * When true the parameter values will be used instead of the current values.\n */\n withParams(params: RawParams, replace =Line truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { TransitionHookOptions, HookResult, TransitionHookPhase } from './interface';\nimport { defaults, noop, silentRejection } from '../common/common';\nimport { fnToString, maxLength } from '../common/strings';\nimport { isPromise } from '../common/predicates';\nimport { is, parse } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { Rejection } from './rejectFactory';\nimport { TargetState } from '../state/targetState';\nimport { Transition } from './transition';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\nimport { StateDeclaration } from '../state/interface';\n\nconst defaultOptions: TransitionHookOptions = {\n current: noop,\n transition: null,\n traceData: {},\n bind: null,\n};\n\nexport type GetResultHandler = (hook: TransitionHook) => ResultHandler;\nexport type GetErrorHandler = (hook: TransitionHook) => ErrorHandler;\n\nexport type ResultHandler = (result: HookResult) => Promise<HookResult>;\nexport type ErrorHandler = (error: any) => Promise<any>;\n\n/** @hidden */\nexport class TransitionHook {\n type: TransitionEventType;\n\n /**\n * These GetResultHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetResultHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static HANDLE_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) =>\n hook.handleHookResult(result);\n\n /**\n * If the result is a promise rejection, log it.\n * Otherwise, ignore the result.\n */\n static LOG_REJECTED_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) => {\n isPromise(result) && result.catch(err => hook.logError(Rejection.normalize(err)));\n return undefined;\n };\n\n /**\n * These GetErrorHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetErrorHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static LOG_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => hook.logError(error);\n\n static REJECT_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => silentRejection(error);\n\n static THROW_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => {\n throw error;\n };\n\n /**\n * Chains together an array of TransitionHooks.\n *\n * Given a list of [[TransitionHook]] objects, chains them together.\n * Each hook is invoked after the previous one completes.\n *\n * #### Example:\n * ```js\n * var hooks: TransitionHook[] = getHooks();\n * let promise: Promise<any> = TransitionHook.chain(hooks);\n *\n * promise.then(handleSuccess, handleError);\n * ```\n *\n * @param hooks the list of hooks to chain together\n * @param waitFor if provided, the chain is `.then()`'ed off this promise\n * @returns a `Promise` for sequentially invoking the hooks (in order)\n */\n static chain(hooks: TransitionHook[], waitFor?: Promise<any>): Promise<any> {\n // Chain the next hook off the previous\n const createHookChainR = (prev: Promise<any>, nextHook: TransitionHook) => prev.then(() => nextHook.invokeHook());\n return hooks.reduce(createHookChainR, waitFor || services.$q.when());\n }\n\n /**\n * Invokes all the provided TransitionHooks, in order.\n * Each hook's return value is checked.\n * If any hook returns a promise, then the rest of the hooks are chained off that promise, and the promise is returned.\n * If no hook returns a promise, then all hooks are processed synchronously.\n *\n * @param hooks the list of TransitionHooks to invoke\n * @param doneCallback a callback that is invoked after all the hooks have successfully completed\n *\n * @returns a promise for the async result, or the result of the callback\n */\n static invokeHooks<T>(hooks: TransitionHook[], doneCallback: (result?: HookResult) => T): Promise<any> | T {\n for (let idx = 0; idx < hooks.length; idx++) {\n const hookResult = hooks[idx].invokeHook();\n\n if (isPromise(hookResult)) {\n const remainingHooks = hooks.slice(idx + 1);\n\n return TransitionHook.chain(remainingHooks, hookResult).then(doneCallback);\n }\n }\n\n return doneCallback();\n }\n\n /**\n * Run all TransitionHooks, ignoring their return value.\n */\n static runAllHooks(hooks: TransitionHook[]): void {\n hooks.forEach(hook => hook.invokeHook());\n }\n\n constructor(\n private transition: Transition,\n private stateContext: StateDeclaration,\n private registeredHook: RegisteredHook,\n private options: TransitionHookOptions,\n ) {\n this.options = defaults(options, defaultOptions);\n this.type = registeredHook.eventType;\n }\n\n private isSuperseded = () => this.type.hookPhase === TransitionHookPhase.RUN && !this.options.transition.isActive();\n\n logError(err): any {\n Line truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { isString, isFunction, Glob, extend, removeFrom, tail, values, identity, mapObj } from '../common';\nimport { PathNode } from '../path/pathNode';\nimport {\n TransitionStateHookFn,\n TransitionHookFn,\n TransitionHookPhase, // has or is using\n TransitionHookScope,\n IHookRegistry,\n PathType,\n} from './interface';\n\nimport {\n HookRegOptions,\n HookMatchCriteria,\n TreeChanges,\n HookMatchCriterion,\n IMatchingNodes,\n HookFn,\n} from './interface';\nimport { StateObject } from '../state/stateObject';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionService } from './transitionService';\n\n/**\n * Determines if the given state matches the matchCriteria\n *\n * @hidden\n *\n * @param state a State Object to test against\n * @param criterion\n * - If a string, matchState uses the string as a glob-matcher against the state name\n * - If an array (of strings), matchState uses each string in the array as a glob-matchers against the state name\n * and returns a positive match if any of the globs match.\n * - If a function, matchState calls the function with the state and returns true if the function's result is truthy.\n * @returns {boolean}\n */\nexport function matchState(state: StateObject, criterion: HookMatchCriterion) {\n const toMatch = isString(criterion) ? [criterion] : criterion;\n\n function matchGlobs(_state: StateObject) {\n const globStrings = <string[]>toMatch;\n for (let i = 0; i < globStrings.length; i++) {\n const glob = new Glob(globStrings[i]);\n\n if ((glob && glob.matches(_state.name)) || (!glob && globStrings[i] === _state.name)) {\n return true;\n }\n }\n return false;\n }\n\n const matchFn = <any>(isFunction(toMatch) ? toMatch : matchGlobs);\n return !!matchFn(state);\n}\n\n/**\n * @internalapi\n * The registration data for a registered transition hook\n */\nexport class RegisteredHook {\n priority: number;\n bind: any;\n invokeCount = 0;\n invokeLimit: number;\n _deregistered = false;\n\n constructor(\n public tranSvc: TransitionService,\n public eventType: TransitionEventType,\n public callback: HookFn,\n public matchCriteria: HookMatchCriteria,\n public removeHookFromRegistry: (hook: RegisteredHook) => void,\n options: HookRegOptions = {} as any,\n ) {\n this.priority = options.priority || 0;\n this.bind = options.bind || null;\n this.invokeLimit = options.invokeLimit;\n }\n\n /**\n * Gets the matching [[PathNode]]s\n *\n * Given an array of [[PathNode]]s, and a [[HookMatchCriterion]], returns an array containing\n * the [[PathNode]]s that the criteria matches, or `null` if there were no matching nodes.\n *\n * Returning `null` is significant to distinguish between the default\n * \"match-all criterion value\" of `true` compared to a `() => true` function,\n * when the nodes is an empty array.\n *\n * This is useful to allow a transition match criteria of `entering: true`\n * to still match a transition, even when `entering === []`. Contrast that\n * with `entering: (state) => true` which only matches when a state is actually\n * being entered.\n */\n private _matchingNodes(nodes: PathNode[], criterion: HookMatchCriterion): PathNode[] {\n if (criterion === true) return nodes;\n const matching = nodes.filter(node => matchState(node.state, criterion));\n return matching.length ? matching : null;\n }\n\n /**\n * Gets the default match criteria (all `true`)\n *\n * Returns an object which has all the criteria match paths as keys and `true` as values, i.e.:\n *\n * ```js\n * {\n * to: true,\n * from: true,\n * entering: true,\n * exiting: true,\n * retained: true,\n * }\n */\n private _getDefaultMatchCriteria(): HookMatchCriteria {\n return mapObj(this.tranSvc._pluginapi._getPathTypes(), () => true);\n }\n\n /**\n * Gets matching nodes as [[IMatchingNodes]]\n *\n * Create a IMatchingNodes object from the TransitionHookTypes that is roughly equivalent to:\n *\n * ```js\n * let matches: IMatchingNodes = {\n * to: _matchingNodes([tail(treeChanges.to)], mc.to),\n * from: _matchingNodes([tail(treeChanges.from)], mc.from),\n * exiting: _matchingNodes(treeChanges.exiting, mc.exiting),\n * retained: _matchingNodes(treeChanges.retained, mc.retained),\n * entering: _matchingNodes(treeChanges.entering, mc.entering),\n * };\n * ```\n */\n private _getMatchingNodes(treeChanges: TreeChanges): IMatchingNodes {\n const criteria = extend(this._getDefaultMatchCriteria(), this.matchCriteria);\n const paths: PathType[] = values(this.tranSvc._pluginapi._getPathTypes());\n\n return paths.reduce(\n (mn: IMatchingNodes, pathtype: PathType) => {\n // STATE scope criteria matches against every node in the path.\n // TRANSITION scope criteria mLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n\nimport { extend, tail, assertPredicate, unnestR, identity } from '../common/common';\nimport { isArray } from '../common/predicates';\n\nimport {\n TransitionOptions,\n TransitionHookOptions,\n IHookRegistry,\n TreeChanges,\n IMatchingNodes,\n TransitionHookPhase,\n TransitionHookScope,\n} from './interface';\n\nimport { Transition } from './transition';\nimport { TransitionHook } from './transitionHook';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TransitionService } from './transitionService';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * This class returns applicable TransitionHooks for a specific Transition instance.\n *\n * Hooks ([[RegisteredHook]]) may be registered globally, e.g., $transitions.onEnter(...), or locally, e.g.\n * myTransition.onEnter(...). The HookBuilder finds matching RegisteredHooks (where the match criteria is\n * determined by the type of hook)\n *\n * The HookBuilder also converts RegisteredHooks objects to TransitionHook objects, which are used to run a Transition.\n *\n * The HookBuilder constructor is given the $transitions service and a Transition instance. Thus, a HookBuilder\n * instance may only be used for one specific Transition object. (side note: the _treeChanges accessor is private\n * in the Transition class, so we must also provide the Transition's _treeChanges)\n *\n */\nexport class HookBuilder {\n constructor(private transition: Transition) {}\n\n buildHooksForPhase(phase: TransitionHookPhase): TransitionHook[] {\n const $transitions = this.transition.router.transitionService;\n return $transitions._pluginapi\n ._getEvents(phase)\n .map(type => this.buildHooks(type))\n .reduce(unnestR, [])\n .filter(identity);\n }\n\n /**\n * Returns an array of newly built TransitionHook objects.\n *\n * - Finds all RegisteredHooks registered for the given `hookType` which matched the transition's [[TreeChanges]].\n * - Finds [[PathNode]] (or `PathNode[]`) to use as the TransitionHook context(s)\n * - For each of the [[PathNode]]s, creates a TransitionHook\n *\n * @param hookType the type of the hook registration function, e.g., 'onEnter', 'onFinish'.\n */\n buildHooks(hookType: TransitionEventType): TransitionHook[] {\n const transition = this.transition;\n const treeChanges = transition.treeChanges();\n\n // Find all the matching registered hooks for a given hook type\n const matchingHooks = this.getMatchingHooks(hookType, treeChanges);\n if (!matchingHooks) return [];\n\n const baseHookOptions = <TransitionHookOptions>{\n transition: transition,\n current: transition.options().current,\n };\n\n const makeTransitionHooks = (hook: RegisteredHook) => {\n // Fetch the Nodes that caused this hook to match.\n const matches: IMatchingNodes = hook.matches(treeChanges);\n // Select the PathNode[] that will be used as TransitionHook context objects\n const matchingNodes: PathNode[] = matches[hookType.criteriaMatchPath.name];\n\n // Return an array of HookTuples\n return matchingNodes.map(node => {\n const _options = extend(\n {\n bind: hook.bind,\n traceData: { hookType: hookType.name, context: node },\n },\n baseHookOptions,\n );\n\n const state = hookType.criteriaMatchPath.scope === TransitionHookScope.STATE ? node.state.self : null;\n const transitionHook = new TransitionHook(transition, state, hook, _options);\n return <HookTuple>{ hook, node, transitionHook };\n });\n };\n\n return matchingHooks\n .map(makeTransitionHooks)\n .reduce(unnestR, [])\n .sort(tupleSort(hookType.reverseSort))\n .map(tuple => tuple.transitionHook);\n }\n\n /**\n * Finds all RegisteredHooks from:\n * - The Transition object instance hook registry\n * - The TransitionService ($transitions) global hook registry\n *\n * which matched:\n * - the eventType\n * - the matchCriteria (to, from, exiting, retained, entering)\n *\n * @returns an array of matched [[RegisteredHook]]s\n */\n public getMatchingHooks(hookType: TransitionEventType, treeChanges: TreeChanges): RegisteredHook[] {\n const isCreate = hookType.hookPhase === TransitionHookPhase.CREATE;\n\n // Instance and Global hook registries\n const $transitions = this.transition.router.transitionService;\n const registries = isCreate ? [$transitions] : [this.transition, $transitions];\n\n return registries\n .map((reg: IHookRegistry) => reg.getHooks(hookType.name)) // Get named hooks from registries\n .filter(assertPredicate(isArray, `broken event named: ${hookType.name}`)) // Sanity check\n .reduce(unnestR, []) // Un-nest RegisteredHook[][] to RegisteredHook[] arraLine truncated
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"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, filter, map } from '../common/common';\nimport { isArray, isDefined } from '../common/predicates';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * An internal class which implements [[ParamTypeDefinition]].\n *\n * A [[ParamTypeDefinition]] is a plain javascript object used to register custom parameter types.\n * When a param type definition is registered, an instance of this class is created internally.\n *\n * This class has naive implementations for all the [[ParamTypeDefinition]] methods.\n *\n * Used by [[UrlMatcher]] when matching or formatting URLs, or comparing and validating parameter values.\n *\n * #### Example:\n * ```js\n * var paramTypeDef = {\n * decode: function(val) { return parseInt(val, 10); },\n * encode: function(val) { return val && val.toString(); },\n * equals: function(a, b) { return this.is(a) && a === b; },\n * is: function(val) { return angular.isNumber(val) && isFinite(val) && val % 1 === 0; },\n * pattern: /\\d+/\n * }\n *\n * var paramType = new ParamType(paramTypeDef);\n * ```\n * @internalapi\n */\nexport class ParamType implements ParamTypeDefinition {\n /** @inheritdoc */\n pattern: RegExp = /.*/;\n /** The name/id of the parameter type */\n name: string;\n /** @inheritdoc */\n raw: boolean;\n /** @inheritdoc */\n dynamic: boolean;\n /** @inheritdoc */\n inherit = true;\n\n /**\n * @param def A configuration object which contains the custom type definition. The object's\n * properties will override the default methods and/or pattern in `ParamType`'s public interface.\n * @returns a new ParamType object\n */\n constructor(def: ParamTypeDefinition) {\n extend(this, def);\n }\n\n // consider these four methods to be \"abstract methods\" that should be overridden\n /** @inheritdoc */\n is(val: any, key?: string): boolean {\n return true;\n }\n /** @inheritdoc */\n encode(val: any, key?: string): string | string[] {\n return val;\n }\n /** @inheritdoc */\n decode(val: string, key?: string): any {\n return val;\n }\n /** @inheritdoc */\n equals(a: any, b: any): boolean {\n // tslint:disable-next-line:triple-equals\n return a == b;\n }\n\n $subPattern() {\n const sub = this.pattern.toString();\n return sub.substr(1, sub.length - 2);\n }\n\n toString() {\n return `{ParamType:${this.name}}`;\n }\n\n /** Given an encoded string, or a decoded object, returns a decoded object */\n $normalize(val: any) {\n return this.is(val) ? val : this.decode(val);\n }\n\n /**\n * Wraps an existing custom ParamType as an array of ParamType, depending on 'mode'.\n * e.g.:\n * - urlmatcher pattern \"/path?{queryParam[]:int}\"\n * - url: \"/path?queryParam=1&queryParam=2\n * - $stateParams.queryParam will be [1, 2]\n * if `mode` is \"auto\", then\n * - url: \"/path?queryParam=1 will create $stateParams.queryParam: 1\n * - url: \"/path?queryParam=1&queryParam=2 will create $stateParams.queryParam: [1, 2]\n */\n $asArray(mode: boolean | 'auto', isSearch: boolean) {\n if (!mode) return this;\n if (mode === 'auto' && !isSearch) throw new Error(\"'auto' array mode is for query parameters only\");\n return new (<any>ArrayType)(this, mode);\n }\n}\n\n/**\n * Wraps up a `ParamType` object to handle array values.\n * @internalapi\n */\nfunction ArrayType(type: ParamType, mode: boolean | 'auto') {\n // Wrap non-array value as array\n function arrayWrap(val: any): any[] {\n return isArray(val) ? val : isDefined(val) ? [val] : [];\n }\n\n // Unwrap array value for \"auto\" mode. Return undefined for empty array.\n function arrayUnwrap(val: any) {\n switch (val.length) {\n case 0:\n return undefined;\n case 1:\n return mode === 'auto' ? val[0] : val;\n default:\n return val;\n }\n }\n\n // Wraps type (.is/.encode/.decode) functions to operate on each value of an array\n function arrayHandler(callback: (x: any) => any, allTruthyMode?: boolean) {\n return function handleArray(val: any) {\n if (isArray(val) && val.length === 0) return val;\n const arr = arrayWrap(val);\n const result = map(arr, callback);\n return allTruthyMode === true ? filter(result, x => !x).length === 0 : arrayUnwrap(result);\n };\n }\n\n // Wraps type (.equals) functions to operate on each value of an array\n function arrayEqualsHandler(callback: (l: any, r: any) => boolean) {\n return function handleArray(val1: any, val2: any) {\n const left = arrayWrap(val1),\n right = arrayWrap(val2);\n if (left.length !== right.length) return false;\n for (let i = 0; i < left.length; i++) {\n if (!callback(left[i], right[i])) return false;\n }\n return true;\n };\n }\n\n ['encode', 'decode', 'equals', '$normalize'].forEach(name => {\n const paramTypeFn = type[name].bind(type);\n const wrapperFn: Function = name === 'equalLine truncated
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"/**\n * @coreapi\n * @module params\n */ /** for typedoc */\nimport { extend, filter, map, allTrueR } from '../common/common';\nimport { prop } from '../common/hof';\nimport { isInjectable, isDefined, isString, isArray, isUndefined } from '../common/predicates';\nimport { RawParams, ParamDeclaration } from '../params/interface';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypes } from './paramTypes';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\n\n/** @hidden */\nconst hasOwn = Object.prototype.hasOwnProperty;\n\n/** @hidden */\nconst isShorthand = (cfg: ParamDeclaration) =>\n ['value', 'type', 'squash', 'array', 'dynamic'].filter(hasOwn.bind(cfg || {})).length === 0;\n\n/** @internalapi */\nenum DefType {\n PATH,\n SEARCH,\n CONFIG,\n}\nexport { DefType };\n\n/** @hidden */\nfunction unwrapShorthand(cfg: ParamDeclaration): ParamDeclaration {\n cfg = (isShorthand(cfg) && ({ value: cfg } as any)) || cfg;\n\n getStaticDefaultValue['__cacheable'] = true;\n function getStaticDefaultValue() {\n return cfg.value;\n }\n\n return extend(cfg, {\n $$fn: isInjectable(cfg.value) ? cfg.value : getStaticDefaultValue,\n });\n}\n\n/** @hidden */\nfunction getType(cfg: ParamDeclaration, urlType: ParamType, location: DefType, id: string, paramTypes: ParamTypes) {\n if (cfg.type && urlType && urlType.name !== 'string') throw new Error(`Param '${id}' has two type configurations.`);\n if (cfg.type && urlType && urlType.name === 'string' && paramTypes.type(cfg.type as string))\n return paramTypes.type(cfg.type as string);\n if (urlType) return urlType;\n if (!cfg.type) {\n const type =\n location === DefType.CONFIG\n ? 'any'\n : location === DefType.PATH\n ? 'path'\n : location === DefType.SEARCH\n ? 'query'\n : 'string';\n return paramTypes.type(type);\n }\n return cfg.type instanceof ParamType ? cfg.type : paramTypes.type(cfg.type as string);\n}\n\n/**\n * @internalapi\n * returns false, true, or the squash value to indicate the \"default parameter url squash policy\".\n */\nfunction getSquashPolicy(config: ParamDeclaration, isOptional: boolean, defaultPolicy: boolean | string) {\n const squash = config.squash;\n if (!isOptional || squash === false) return false;\n if (!isDefined(squash) || squash == null) return defaultPolicy;\n if (squash === true || isString(squash)) return squash;\n throw new Error(`Invalid squash policy: '${squash}'. Valid policies: false, true, or arbitrary string`);\n}\n\n/** @internalapi */\nfunction getReplace(config: ParamDeclaration, arrayMode: boolean, isOptional: boolean, squash: string | boolean) {\n const defaultPolicy = [\n { from: '', to: isOptional || arrayMode ? undefined : '' },\n { from: null, to: isOptional || arrayMode ? undefined : '' },\n ];\n\n const replace = isArray(config.replace) ? config.replace : [];\n if (isString(squash)) replace.push({ from: squash, to: undefined });\n\n const configuredKeys = map(replace, prop('from'));\n return filter(defaultPolicy, item => configuredKeys.indexOf(item.from) === -1).concat(replace);\n}\n\n/** @internalapi */\nexport class Param {\n id: string;\n type: ParamType;\n location: DefType;\n isOptional: boolean;\n dynamic: boolean;\n raw: boolean;\n squash: boolean | string;\n replace: [{ to: any; from: any }];\n inherit: boolean;\n array: boolean;\n config: any;\n /** Cache the default value if it is a static value */\n _defaultValueCache: {\n defaultValue: any;\n };\n\n static values(params: Param[], values: RawParams = {}): RawParams {\n const paramValues = {} as RawParams;\n for (const param of params) {\n paramValues[param.id] = param.value(values[param.id]);\n }\n return paramValues;\n }\n\n /**\n * Finds [[Param]] objects which have different param values\n *\n * Filters a list of [[Param]] objects to only those whose parameter values differ in two param value objects\n *\n * @param params: The list of Param objects to filter\n * @param values1: The first set of parameter values\n * @param values2: the second set of parameter values\n *\n * @returns any Param objects whose values were different between values1 and values2\n */\n static changed(params: Param[], values1: RawParams = {}, values2: RawParams = {}): Param[] {\n return params.filter(param => !param.type.equals(values1[param.id], values2[param.id]));\n }\n\n /**\n * Checks if two param value objects are equal (for a set of [[Param]] objects)\n *\n * @param params The list of [[Param]] objects to check\n * @param values1 The first set of param values\n * @param values2 The second set of param values\n *\n * @returns true if the param values in values1 and values2 are equal\n */\n static equals(params: Param[], values1 = {}, values2 = {}): boolean {\n return Param.changed(params, values1, values2).length === 0;Line truncated
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"/** @module path */ /** for typedoc */\nimport { extend, applyPairs, find, allTrueR, pairs, arrayTuples } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\n\n/**\n * @internalapi\n *\n * A node in a [[TreeChanges]] path\n *\n * For a [[TreeChanges]] path, this class holds the stateful information for a single node in the path.\n * Each PathNode corresponds to a state being entered, exited, or retained.\n * The stateful information includes parameter values and resolve data.\n */\nexport class PathNode {\n /** The state being entered, exited, or retained */\n public state: StateObject;\n /** The parameters declared on the state */\n public paramSchema: Param[];\n /** The parameter values that belong to the state */\n public paramValues: { [key: string]: any };\n /** The individual (stateful) resolvable objects that belong to the state */\n public resolvables: Resolvable[];\n /** The state's declared view configuration objects */\n public views: ViewConfig[];\n\n /**\n * Returns a clone of the PathNode\n * @deprecated use instance method `node.clone()`\n */\n static clone = (node: PathNode) => node.clone();\n\n /** Creates a copy of a PathNode */\n constructor(node: PathNode);\n /** Creates a new (empty) PathNode for a State */\n constructor(state: StateObject);\n constructor(stateOrNode: any) {\n if (stateOrNode instanceof PathNode) {\n const node: PathNode = stateOrNode;\n this.state = node.state;\n this.paramSchema = node.paramSchema.slice();\n this.paramValues = extend({}, node.paramValues);\n this.resolvables = node.resolvables.slice();\n this.views = node.views && node.views.slice();\n } else {\n const state: StateObject = stateOrNode;\n this.state = state;\n this.paramSchema = state.parameters({ inherit: false });\n this.paramValues = {};\n this.resolvables = state.resolvables.map(res => res.clone());\n }\n }\n\n clone() {\n return new PathNode(this);\n }\n\n /** Sets [[paramValues]] for the node, from the values of an object hash */\n applyRawParams(params: RawParams): PathNode {\n const getParamVal = (paramDef: Param) => [paramDef.id, paramDef.value(params[paramDef.id])];\n this.paramValues = this.paramSchema.reduce((memo, pDef) => applyPairs(memo, getParamVal(pDef)), {});\n return this;\n }\n\n /** Gets a specific [[Param]] metadata that belongs to the node */\n parameter(name: string): Param {\n return find(this.paramSchema, propEq('id', name));\n }\n\n /**\n * @returns true if the state and parameter values for another PathNode are\n * equal to the state and param values for this PathNode\n */\n equals(node: PathNode, paramsFn?: GetParamsFn): boolean {\n const diff = this.diff(node, paramsFn);\n return diff && diff.length === 0;\n }\n\n /**\n * Finds Params with different parameter values on another PathNode.\n *\n * Given another node (of the same state), finds the parameter values which differ.\n * Returns the [[Param]] (schema objects) whose parameter values differ.\n *\n * Given another node for a different state, returns `false`\n *\n * @param node The node to compare to\n * @param paramsFn A function that returns which parameters should be compared.\n * @returns The [[Param]]s which differ, or null if the two nodes are for different states\n */\n diff(node: PathNode, paramsFn?: GetParamsFn): Param[] | false {\n if (this.state !== node.state) return false;\n\n const params: Param[] = paramsFn ? paramsFn(this) : this.paramSchema;\n return Param.changed(params, this.paramValues, node.paramValues);\n }\n}\n\n/** @hidden */\nexport type GetParamsFn = (pathNode: PathNode) => Param[];\n",
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"/** @module path */ /** for typedoc */\n\nimport {\n extend,\n find,\n pick,\n omit,\n tail,\n mergeR,\n values,\n unnestR,\n Predicate,\n inArray,\n arrayTuples,\n} from '../common/common';\nimport { prop, propEq, not } from '../common/hof';\n\nimport { RawParams } from '../params/interface';\nimport { TreeChanges } from '../transition/interface';\nimport { ViewConfig } from '../view/interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { GetParamsFn, PathNode } from './pathNode';\nimport { ViewService } from '../view/view';\nimport { Param } from '../params/param';\nimport { StateRegistry } from '../state';\n\n/**\n * This class contains functions which convert TargetStates, Nodes and paths from one type to another.\n */\nexport class PathUtils {\n /** Given a PathNode[], create an TargetState */\n static makeTargetState(registry: StateRegistry, path: PathNode[]): TargetState {\n const state = tail(path).state;\n return new TargetState(registry, state, path.map(prop('paramValues')).reduce(mergeR, {}), {});\n }\n\n static buildPath(targetState: TargetState) {\n const toParams = targetState.params();\n return targetState.$state().path.map(state => new PathNode(state).applyRawParams(toParams));\n }\n\n /** Given a fromPath: PathNode[] and a TargetState, builds a toPath: PathNode[] */\n static buildToPath(fromPath: PathNode[], targetState: TargetState): PathNode[] {\n const toPath: PathNode[] = PathUtils.buildPath(targetState);\n if (targetState.options().inherit) {\n return PathUtils.inheritParams(fromPath, toPath, Object.keys(targetState.params()));\n }\n return toPath;\n }\n\n /**\n * Creates ViewConfig objects and adds to nodes.\n *\n * On each [[PathNode]], creates ViewConfig objects from the views: property of the node's state\n */\n static applyViewConfigs($view: ViewService, path: PathNode[], states: StateObject[]) {\n // Only apply the viewConfigs to the nodes for the given states\n path.filter(node => inArray(states, node.state)).forEach(node => {\n const viewDecls: _ViewDeclaration[] = values(node.state.views || {});\n const subPath = PathUtils.subPath(path, n => n === node);\n const viewConfigs: ViewConfig[][] = viewDecls.map(view => $view.createViewConfig(subPath, view));\n node.views = viewConfigs.reduce(unnestR, []);\n });\n }\n\n /**\n * Given a fromPath and a toPath, returns a new to path which inherits parameters from the fromPath\n *\n * For a parameter in a node to be inherited from the from path:\n * - The toPath's node must have a matching node in the fromPath (by state).\n * - The parameter name must not be found in the toKeys parameter array.\n *\n * Note: the keys provided in toKeys are intended to be those param keys explicitly specified by some\n * caller, for instance, $state.transitionTo(..., toParams). If a key was found in toParams,\n * it is not inherited from the fromPath.\n */\n static inheritParams(fromPath: PathNode[], toPath: PathNode[], toKeys: string[] = []): PathNode[] {\n function nodeParamVals(path: PathNode[], state: StateObject): RawParams {\n const node: PathNode = find(path, propEq('state', state));\n return extend({}, node && node.paramValues);\n }\n\n const noInherit = fromPath\n .map(node => node.paramSchema)\n .reduce(unnestR, [])\n .filter(param => !param.inherit)\n .map(prop('id'));\n\n /**\n * Given an [[PathNode]] \"toNode\", return a new [[PathNode]] with param values inherited from the\n * matching node in fromPath. Only inherit keys that aren't found in \"toKeys\" from the node in \"fromPath\"\"\n */\n function makeInheritedParamsNode(toNode: PathNode): PathNode {\n // All param values for the node (may include default key/vals, when key was not found in toParams)\n let toParamVals = extend({}, toNode && toNode.paramValues);\n // limited to only those keys found in toParams\n const incomingParamVals = pick(toParamVals, toKeys);\n toParamVals = omit(toParamVals, toKeys);\n const fromParamVals = omit(nodeParamVals(fromPath, toNode.state) || {}, noInherit);\n // extend toParamVals with any fromParamVals, then override any of those those with incomingParamVals\n const ownParamVals: RawParams = extend(toParamVals, fromParamVals, incomingParamVals);\n return new PathNode(toNode.state).applyRawParams(ownParamVals);\n }\n\n // The param keys specified by the incoming toParams\n return <PathNode[]>toPath.map(makeInheritedParamsNode);\n }\n\n static nonDynamicParams = (node: PathNode): Param[] =>\n node.state.parameters({ inherit: false }).filter(param => !param.dynamic);\n\n /**\n * Computes the tree changes (entering, exiting) between a fromPath and toPath.\n */\n static treeChanges(fromPath: PathNLine truncated
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"/**\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { extend, equals, inArray, identity } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { trace } from '../common/trace';\nimport { ResolvePolicy, ResolvableLiteral, resolvePolicies } from './interface';\n\nimport { ResolveContext } from './resolveContext';\nimport { stringify } from '../common/strings';\nimport { isFunction, isObject } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { isNullOrUndefined } from '../common/predicates';\n\n// TODO: explicitly make this user configurable\nexport let defaultResolvePolicy: ResolvePolicy = {\n when: 'LAZY',\n async: 'WAIT',\n};\n\n/**\n * The basic building block for the resolve system.\n *\n * Resolvables encapsulate a state's resolve's resolveFn, the resolveFn's declared dependencies, the wrapped (.promise),\n * and the unwrapped-when-complete (.data) result of the resolveFn.\n *\n * Resolvable.get() either retrieves the Resolvable's existing promise, or else invokes resolve() (which invokes the\n * resolveFn) and returns the resulting promise.\n *\n * Resolvable.get() and Resolvable.resolve() both execute within a context path, which is passed as the first\n * parameter to those fns.\n */\nexport class Resolvable implements ResolvableLiteral {\n token: any;\n policy: ResolvePolicy;\n resolveFn: Function;\n deps: any[];\n\n data: any;\n resolved = false;\n promise: Promise<any> = undefined;\n\n static fromData = (token: any, data: any) => new Resolvable(token, () => data, null, null, data);\n\n /** This constructor creates a Resolvable copy */\n constructor(resolvable: Resolvable);\n\n /** This constructor creates a new Resolvable from the plain old [[ResolvableLiteral]] javascript object */\n constructor(resolvable: ResolvableLiteral);\n\n /**\n * This constructor creates a new `Resolvable`\n *\n * #### Example:\n * ```js\n * var resolvable1 = new Resolvable('mytoken', http => http.get('foo.json').toPromise(), [Http]);\n *\n * var resolvable2 = new Resolvable(UserService, dep => new UserService(dep.data), [SomeDependency]);\n *\n * var resolvable1Clone = new Resolvable(resolvable1);\n * ```\n *\n * @param token The new resolvable's injection token, such as `\"userList\"` (a string) or `UserService` (a class).\n * When this token is used during injection, the resolved value will be injected.\n * @param resolveFn The function that returns the resolved value, or a promise for the resolved value\n * @param deps An array of dependencies, which will be injected into the `resolveFn`\n * @param policy the [[ResolvePolicy]] defines when and how the Resolvable is processed\n * @param data Pre-resolved data. If the resolve value is already known, it may be provided here.\n */\n constructor(token: any, resolveFn: Function, deps?: any[], policy?: ResolvePolicy, data?: any);\n constructor(arg1: any, resolveFn?: Function, deps?: any[], policy?: ResolvePolicy, data?: any) {\n if (arg1 instanceof Resolvable) {\n extend(this, arg1);\n } else if (isFunction(resolveFn)) {\n if (isNullOrUndefined(arg1)) throw new Error('new Resolvable(): token argument is required');\n if (!isFunction(resolveFn)) throw new Error('new Resolvable(): resolveFn argument must be a function');\n\n this.token = arg1;\n this.policy = policy;\n this.resolveFn = resolveFn;\n this.deps = deps || [];\n\n this.data = data;\n this.resolved = data !== undefined;\n this.promise = this.resolved ? services.$q.when(this.data) : undefined;\n } else if (isObject(arg1) && arg1.token && (arg1.hasOwnProperty('resolveFn') || arg1.hasOwnProperty('data'))) {\n const literal = <ResolvableLiteral>arg1;\n return new Resolvable(literal.token, literal.resolveFn, literal.deps, literal.policy, literal.data);\n }\n }\n\n getPolicy(state: StateObject): ResolvePolicy {\n const thisPolicy = this.policy || {};\n const statePolicy = (state && state.resolvePolicy) || {};\n return {\n when: thisPolicy.when || statePolicy.when || defaultResolvePolicy.when,\n async: thisPolicy.async || statePolicy.async || defaultResolvePolicy.async,\n };\n }\n\n /**\n * Asynchronously resolve this Resolvable's data\n *\n * Given a ResolveContext that this Resolvable is found in:\n * Wait for this Resolvable's dependencies, then invoke this Resolvable's function\n * and update the Resolvable's state\n */\n resolve(resolveContext: ResolveContext, trans?: Transition) {\n const $q = services.$q;\n\n // Gets all dependencies from ResolveContext and wait for them to be resolved\n const getResolvableDependencies = () =>\n $q.all(resolveContext.getDependencies(this).map(resolvable => resolvable.get(resolveContext, trans))) as PrLine truncated
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"/**\n * # The Resolve subsystem\n *\n * This subsystem is an asynchronous, hierarchical Dependency Injection system.\n *\n * Typically, resolve is configured on a state using a [[StateDeclaration.resolve]] declaration.\n *\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { Resolvable } from './resolvable';\n\n/**\n * An interface which is similar to an Angular 2 `Provider`\n */\nexport interface ProviderLike {\n provide: any;\n useClass?: any;\n useFactory?: Function;\n useValue?: any;\n useExisting?: any;\n deps?: any[];\n}\n\n/**\n * A plain object used to describe a [[Resolvable]]\n *\n * These objects may be used in the [[StateDeclaration.resolve]] array to declare\n * async data that the state or substates require.\n *\n * #### Example:\n * ```js\n *\n * var state = {\n * name: 'main',\n * resolve: [\n * { token: 'myData', deps: [MyDataApi], resolveFn: (myDataApi) => myDataApi.getData() },\n * ],\n * }\n * ```\n */\nexport interface ResolvableLiteral {\n /**\n * A Dependency Injection token\n *\n * This Resolvable's DI token.\n * The Resolvable will be injectable elsewhere using the token.\n */\n token: any;\n\n /**\n * A function which fetches the Resolvable's data\n *\n * A function which returns one of:\n *\n * - The resolved value (synchronously)\n * - A promise for the resolved value\n * - An Observable of the resolved value(s)\n *\n * This function will be provided the dependencies listed in [[deps]] as its arguments.\n * The resolve system will asynchronously fetch the dependencies before invoking this function.\n */\n resolveFn: Function;\n\n /**\n * Defines the Resolve Policy\n *\n * A policy that defines when to invoke the resolve,\n * and whether to wait for async and unwrap the data\n */\n policy?: ResolvePolicy;\n\n /**\n * The Dependency Injection tokens\n *\n * This is an array of Dependency Injection tokens for the dependencies of the [[resolveFn]].\n *\n * The DI tokens are references to other `Resolvables`, or to other\n * services from the native DI system.\n */\n deps?: any[];\n\n /** Pre-resolved data. */\n data?: any;\n}\n\n/**\n * Defines how a resolve is processed during a transition\n *\n * This object is the [[StateDeclaration.resolvePolicy]] property.\n *\n * #### Example:\n * ```js\n * // Fetched when the resolve's state is being entered.\n * // Wait for the promise to resolve.\n * var policy1 = { when: \"LAZY\", async: \"WAIT\" }\n *\n * // Fetched when the Transition is starting.\n * // Do not wait for the returned promise to resolve.\n * // Inject the raw promise/value\n * var policy2 = { when: \"EAGER\", async: \"NOWAIT\" }\n * ```\n *\n * The policy for a given Resolvable is merged from three sources (highest priority first):\n *\n * - 1) Individual resolve definition\n * - 2) State definition\n * - 3) Global default\n *\n * #### Example:\n * ```js\n * // Wait for an Observable to emit one item.\n * // Since `wait` is not specified, it uses the `wait`\n * // policy defined on the state, or the global default\n * // if no `wait` policy is defined on the state\n * var myResolvablePolicy = { async: \"RXWAIT\" }\n * ```\n */\nexport interface ResolvePolicy {\n /**\n * Defines when a Resolvable is resolved (fetched) during a transition\n *\n * - `LAZY` (default)\n * - Resolved as the resolve's state is being entered\n * - `EAGER`\n * - Resolved as the transition is starting\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched when each state is entered.\n * All of `main` resolves are processed before fetching `main.home` resolves.\n * ```js\n * var state = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n *\n * var state = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n * ```\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched at the same time when the transition starts.\n * This happens earlier in the lifecycle than when states are entered.\n * All of the `main` and `main.home` resolves are fetched as soon as possible.\n * ```js\n * var mainState = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n *\n * var homeState = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n * ```\n */\n when?: PolicyWhen;\n\n /**\n * Determines the unwrapping behavior of asynchronous resolve values.\n *\n * - `WAIT` (default)\n * - If a promise is returned from the resolveFn, wait for the promise before proceeding\n * - The unwrapped value from the promise\n * - `NOWAIT`\n * - If a promise is returned from the resolve, do not wait for thLine truncated
|
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"/** @module resolve */\n/** for typedoc */\nimport { find, tail, uniqR, unnestR, inArray } from '../common/common';\nimport { propEq, not } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services, $InjectorLike } from '../common/coreservices';\nimport { resolvePolicies, PolicyWhen, ResolvePolicy } from './interface';\nimport { PathNode } from '../path/pathNode';\nimport { Resolvable } from './resolvable';\nimport { StateObject } from '../state/stateObject';\nimport { PathUtils } from '../path/pathUtils';\nimport { stringify } from '../common/strings';\nimport { Transition } from '../transition/transition';\nimport { UIInjector } from '../interface';\nimport { isUndefined } from '../common';\n\nconst whens = resolvePolicies.when;\nconst ALL_WHENS = [whens.EAGER, whens.LAZY];\nconst EAGER_WHENS = [whens.EAGER];\n\n// tslint:disable-next-line:no-inferrable-types\nexport const NATIVE_INJECTOR_TOKEN: string = 'Native Injector';\n\n/**\n * Encapsulates Dependency Injection for a path of nodes\n *\n * UI-Router states are organized as a tree.\n * A nested state has a path of ancestors to the root of the tree.\n * When a state is being activated, each element in the path is wrapped as a [[PathNode]].\n * A `PathNode` is a stateful object that holds things like parameters and resolvables for the state being activated.\n *\n * The ResolveContext closes over the [[PathNode]]s, and provides DI for the last node in the path.\n */\nexport class ResolveContext {\n _injector: UIInjector;\n\n constructor(private _path: PathNode[]) {}\n\n /** Gets all the tokens found in the resolve context, de-duplicated */\n getTokens(): any[] {\n return this._path.reduce((acc, node) => acc.concat(node.resolvables.map(r => r.token)), []).reduce(uniqR, []);\n }\n\n /**\n * Gets the Resolvable that matches the token\n *\n * Gets the last Resolvable that matches the token in this context, or undefined.\n * Throws an error if it doesn't exist in the ResolveContext\n */\n getResolvable(token: any): Resolvable {\n const matching = this._path\n .map(node => node.resolvables)\n .reduce(unnestR, [])\n .filter((r: Resolvable) => r.token === token);\n return tail(matching);\n }\n\n /** Returns the [[ResolvePolicy]] for the given [[Resolvable]] */\n getPolicy(resolvable: Resolvable): ResolvePolicy {\n const node = this.findNode(resolvable);\n return resolvable.getPolicy(node.state);\n }\n\n /**\n * Returns a ResolveContext that includes a portion of this one\n *\n * Given a state, this method creates a new ResolveContext from this one.\n * The new context starts at the first node (root) and stops at the node for the `state` parameter.\n *\n * #### Why\n *\n * When a transition is created, the nodes in the \"To Path\" are injected from a ResolveContext.\n * A ResolveContext closes over a path of [[PathNode]]s and processes the resolvables.\n * The \"To State\" can inject values from its own resolvables, as well as those from all its ancestor state's (node's).\n * This method is used to create a narrower context when injecting ancestor nodes.\n *\n * @example\n * `let ABCD = new ResolveContext([A, B, C, D]);`\n *\n * Given a path `[A, B, C, D]`, where `A`, `B`, `C` and `D` are nodes for states `a`, `b`, `c`, `d`:\n * When injecting `D`, `D` should have access to all resolvables from `A`, `B`, `C`, `D`.\n * However, `B` should only be able to access resolvables from `A`, `B`.\n *\n * When resolving for the `B` node, first take the full \"To Path\" Context `[A,B,C,D]` and limit to the subpath `[A,B]`.\n * `let AB = ABCD.subcontext(a)`\n */\n subContext(state: StateObject): ResolveContext {\n return new ResolveContext(PathUtils.subPath(this._path, node => node.state === state));\n }\n\n /**\n * Adds Resolvables to the node that matches the state\n *\n * This adds a [[Resolvable]] (generally one created on the fly; not declared on a [[StateDeclaration.resolve]] block).\n * The resolvable is added to the node matching the `state` parameter.\n *\n * These new resolvables are not automatically fetched.\n * The calling code should either fetch them, fetch something that depends on them,\n * or rely on [[resolvePath]] being called when some state is being entered.\n *\n * Note: each resolvable's [[ResolvePolicy]] is merged with the state's policy, and the global default.\n *\n * @param newResolvables the new Resolvables\n * @param state Used to find the node to put the resolvable on\n */\n addResolvables(newResolvables: Resolvable[], state: StateObject) {\n const node = <PathNode>find(this._path, propEq('state', state));\n const keys = newResolvables.map(r => r.token);\n node.resolvables = node.resolvables.filter(r => keys.indexOf(r.token) === -1).concat(newResolvables);\n }\n\n /**\n * Returns a promise for an array of resolved path Element promises\n *\n * @param when\n * @param tLine truncated
|
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { stringify } from '../common/strings';\nimport { map, find, extend, mergeR, tail, omit, arrayTuples, unnestR, identity, anyTrueR } from '../common/common';\nimport { isObject, isUndefined } from '../common/predicates';\nimport { prop, propEq, val, not, is } from '../common/hof';\nimport { StateDeclaration, StateOrName } from '../state/interface';\nimport {\n TransitionOptions,\n TreeChanges,\n IHookRegistry,\n TransitionHookPhase,\n RegisteredHooks,\n HookRegOptions,\n HookMatchCriteria,\n TransitionStateHookFn,\n TransitionHookFn,\n} from './interface'; // has or is using\nimport { TransitionHook } from './transitionHook';\nimport { matchState, makeEvent, RegisteredHook } from './hookRegistry';\nimport { HookBuilder } from './hookBuilder';\nimport { PathNode } from '../path/pathNode';\nimport { PathUtils } from '../path/pathUtils';\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { RawParams } from '../params/interface';\nimport { ResolvableLiteral } from '../resolve/interface';\nimport { Rejection } from './rejectFactory';\n\n/** @hidden */\nconst stateSelf: (_state: StateObject) => StateDeclaration = prop('self');\n\n/**\n * Represents a transition between two states.\n *\n * When navigating to a state, we are transitioning **from** the current state **to** the new state.\n *\n * This object contains all contextual information about the to/from states, parameters, resolves.\n * It has information about all states being entered and exited as a result of the transition.\n */\nexport class Transition implements IHookRegistry {\n /** @hidden */\n static diToken = Transition;\n\n /**\n * A unique identifier for the transition.\n *\n * This is an auto incrementing integer, starting from `0`.\n */\n $id: number;\n\n /**\n * A reference to the [[UIRouter]] instance\n *\n * This reference can be used to access the router services, such as the [[StateService]]\n */\n router: UIRouter;\n\n /** @hidden */\n private _deferred = services.$q.defer();\n /**\n * This promise is resolved or rejected based on the outcome of the Transition.\n *\n * When the transition is successful, the promise is resolved\n * When the transition is unsuccessful, the promise is rejected with the [[Rejection]] or javascript error\n */\n promise: Promise<any> = this._deferred.promise;\n /**\n * A boolean which indicates if the transition was successful\n *\n * After a successful transition, this value is set to true.\n * After an unsuccessful transition, this value is set to false.\n *\n * The value will be undefined if the transition is not complete\n */\n success: boolean;\n /** @hidden */\n _aborted: boolean;\n /** @hidden */\n private _error: Rejection;\n\n /** @hidden Holds the hook registration functions such as those passed to Transition.onStart() */\n _registeredHooks: RegisteredHooks = {};\n\n /** @hidden */\n private _options: TransitionOptions;\n /** @hidden */\n private _treeChanges: TreeChanges;\n /** @hidden */\n private _targetState: TargetState;\n /** @hidden */\n private _hookBuilder = new HookBuilder(this);\n\n /** @hidden */\n onBefore(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onStart(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onExit(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onRetain(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onEnter(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onFinish(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onSuccess(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onError(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n\n /** @hidden\n * Creates the transition-level hook registration functions\n * (which can then be used to register hooks)\n */\n private createTransitionHookRLine truncated
|
||||
"/**\n * Functions that manipulate strings\n *\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_strings\n */ /** */\n\nimport { isString, isArray, isDefined, isNull, isPromise, isInjectable, isObject } from './predicates';\nimport { Rejection } from '../transition/rejectFactory';\nimport { IInjectable, identity, Obj, tail, pushR } from './common';\nimport { pattern, is, not, val, invoke } from './hof';\nimport { Transition } from '../transition/transition';\nimport { Resolvable } from '../resolve/resolvable';\n\n/**\n * Returns a string shortened to a maximum length\n *\n * If the string is already less than the `max` length, return the string.\n * Else return the string, shortened to `max - 3` and append three dots (\"...\").\n *\n * @param max the maximum length of the string to return\n * @param str the input string\n */\nexport function maxLength(max: number, str: string) {\n if (str.length <= max) return str;\n return str.substr(0, max - 3) + '...';\n}\n\n/**\n * Returns a string, with spaces added to the end, up to a desired str length\n *\n * If the string is already longer than the desired length, return the string.\n * Else returns the string, with extra spaces on the end, such that it reaches `length` characters.\n *\n * @param length the desired length of the string to return\n * @param str the input string\n */\nexport function padString(length: number, str: string) {\n while (str.length < length) str += ' ';\n return str;\n}\n\nexport function kebobString(camelCase: string) {\n return camelCase\n .replace(/^([A-Z])/, $1 => $1.toLowerCase()) // replace first char\n .replace(/([A-Z])/g, $1 => '-' + $1.toLowerCase()); // replace rest\n}\n\nfunction _toJson(obj: Obj) {\n return JSON.stringify(obj);\n}\n\nfunction _fromJson(json: string) {\n return isString(json) ? JSON.parse(json) : json;\n}\n\nfunction promiseToString(p: Promise<any>) {\n return `Promise(${JSON.stringify(p)})`;\n}\n\nexport function functionToString(fn: Function) {\n const fnStr = fnToString(fn);\n const namedFunctionMatch = fnStr.match(/^(function [^ ]+\\([^)]*\\))/);\n const toStr = namedFunctionMatch ? namedFunctionMatch[1] : fnStr;\n\n const fnName = fn['name'] || '';\n if (fnName && toStr.match(/function \\(/)) {\n return 'function ' + fnName + toStr.substr(9);\n }\n return toStr;\n}\n\nexport function fnToString(fn: IInjectable) {\n const _fn = isArray(fn) ? fn.slice(-1)[0] : fn;\n return (_fn && _fn.toString()) || 'undefined';\n}\n\nlet stringifyPatternFn: (val: any) => string = null;\nconst stringifyPattern = function(value: any) {\n const isRejection = Rejection.isRejectionPromise;\n\n stringifyPatternFn =\n <any>stringifyPatternFn ||\n pattern([\n [not(isDefined), val('undefined')],\n [isNull, val('null')],\n [isPromise, val('[Promise]')],\n [isRejection, (x: any) => x._transitionRejection.toString()],\n [is(Rejection), invoke('toString')],\n [is(Transition), invoke('toString')],\n [is(Resolvable), invoke('toString')],\n [isInjectable, functionToString],\n [val(true), identity],\n ]);\n\n return stringifyPatternFn(value);\n};\n\nexport function stringify(o: any) {\n const seen: any[] = [];\n\n function format(value: any) {\n if (isObject(value)) {\n if (seen.indexOf(value) !== -1) return '[circular ref]';\n seen.push(value);\n }\n return stringifyPattern(value);\n }\n\n return JSON.stringify(o, (key, value) => format(value)).replace(/\\\\\"/g, '\"');\n}\n\n/** Returns a function that splits a string on a character or substring */\nexport const beforeAfterSubstr = (char: string) => (str: string): string[] => {\n if (!str) return ['', ''];\n const idx = str.indexOf(char);\n if (idx === -1) return [str, ''];\n return [str.substr(0, idx), str.substr(idx + 1)];\n};\n\nexport const hostRegex = new RegExp('^(?:[a-z]+:)?//[^/]+/');\nexport const stripLastPathElement = (str: string) => str.replace(/\\/[^/]*$/, '');\nexport const splitHash = beforeAfterSubstr('#');\nexport const splitQuery = beforeAfterSubstr('?');\nexport const splitEqual = beforeAfterSubstr('=');\nexport const trimHashVal = (str: string) => (str ? str.replace(/^#/, '') : '');\n\n/**\n * Splits on a delimiter, but returns the delimiters in the array\n *\n * #### Example:\n * ```js\n * var splitOnSlashes = splitOnDelim('/');\n * splitOnSlashes(\"/foo\"); // [\"/\", \"foo\"]\n * splitOnSlashes(\"/foo/\"); // [\"/\", \"foo\", \"/\"]\n * ```\n */\nexport function splitOnDelim(delim: string) {\n const re = new RegExp('(' + delim + ')', 'g');\n return (str: string) => str.split(re).filter(identity);\n}\n\n/**\n * Reduce fn that joins neighboring strings\n *\n * Given an array of strings, returns a new array\n * where all neighboring strings have been joined.\n *\n * #### Example:\n * ```js\n * let arr = [\"foo\", \"bar\", 1, \"baz\", \"\", \"qux\" ];\n * arr.reduce(joinNeighborsR, []) // [\"foobLine truncated
|
||||
"/**\n * Random utility functions used in the UI-Router code\n *\n * These functions are exported, but are subject to change without notice.\n *\n * @preferred\n * @module common\n */\n/** for typedoc */\nimport { isFunction, isString, isArray, isRegExp, isDate } from './predicates';\nimport { all, any, prop, curry, not } from './hof';\nimport { services } from './coreservices';\nimport { StateObject } from '../state/stateObject';\n\ndeclare const global;\nexport const root: any = (typeof self === 'object' && self.self === self && self) ||\n (typeof global === 'object' && global.global === global && global) || this;\nconst angular = root.angular || {};\n\nexport const fromJson = angular.fromJson || JSON.parse.bind(JSON);\nexport const toJson = angular.toJson || JSON.stringify.bind(JSON);\nexport const forEach = angular.forEach || _forEach;\nexport const extend = Object.assign || _extend;\nexport const equals = angular.equals || _equals;\nexport function identity(x: any) { return x; }\nexport function noop(): any {}\n\nexport type Mapper<X, T> = (x: X, key?: (string|number)) => T;\nexport interface TypedMap<T> { [key: string]: T; }\nexport type Predicate<X> = (x?: X) => boolean;\n/**\n * An ng1-style injectable\n *\n * This could be a (non-minified) function such as:\n * ```js\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an explicitly annotated function (minify safe)\n * ```js\n * injectableFunction.$inject = [ 'SomeDependency' ];\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an array style annotated function (minify safe)\n * ```js\n * ['SomeDependency', function injectableFunction(SomeDependency) {\n *\n * }];\n * ```\n *\n * @publicapi\n */\nexport type IInjectable = (Function|any[]);\n\nexport interface Obj extends Object {\n [key: string]: any;\n}\n\n/**\n * Builds proxy functions on the `to` object which pass through to the `from` object.\n *\n * For each key in `fnNames`, creates a proxy function on the `to` object.\n * The proxy function calls the real function on the `from` object.\n *\n *\n * #### Example:\n * This example creates an new class instance whose functions are prebound to the new'd object.\n * ```js\n * class Foo {\n * constructor(data) {\n * // Binds all functions from Foo.prototype to 'this',\n * // then copies them to 'this'\n * bindFunctions(Foo.prototype, this, this);\n * this.data = data;\n * }\n *\n * log() {\n * console.log(this.data);\n * }\n * }\n *\n * let myFoo = new Foo([1,2,3]);\n * var logit = myFoo.log;\n * logit(); // logs [1, 2, 3] from the myFoo 'this' instance\n * ```\n *\n * #### Example:\n * This example creates a bound version of a service function, and copies it to another object\n * ```\n *\n * var SomeService = {\n * this.data = [3, 4, 5];\n * this.log = function() {\n * console.log(this.data);\n * }\n * }\n *\n * // Constructor fn\n * function OtherThing() {\n * // Binds all functions from SomeService to SomeService,\n * // then copies them to 'this'\n * bindFunctions(SomeService, this, SomeService);\n * }\n *\n * let myOtherThing = new OtherThing();\n * myOtherThing.log(); // logs [3, 4, 5] from SomeService's 'this'\n * ```\n *\n * @param source A function that returns the source object which contains the original functions to be bound\n * @param target A function that returns the target object which will receive the bound functions\n * @param bind A function that returns the object which the functions will be bound to\n * @param fnNames The function names which will be bound (Defaults to all the functions found on the 'from' object)\n * @param latebind If true, the binding of the function is delayed until the first time it's invoked\n */\nexport function createProxyFunctions(source: Function, target: Obj, bind: Function, fnNames?: string[], latebind = false): Obj {\n const bindFunction = (fnName) =>\n source()[fnName].bind(bind());\n\n const makeLateRebindFn = fnName => function lateRebindFunction() {\n target[fnName] = bindFunction(fnName);\n return target[fnName].apply(null, arguments);\n };\n\n fnNames = fnNames || Object.keys(source());\n\n return fnNames.reduce((acc, name) => {\n acc[name] = latebind ? makeLateRebindFn(name) : bindFunction(name);\n return acc;\n }, target);\n}\n\n\n/**\n * prototypal inheritance helper.\n * Creates a new object which has `parent` object as its prototype, and then copies the properties from `extra` onto it\n */\nexport const inherit = (parent: Obj, extra?: Obj) =>\n extend(Object.create(parent), extra);\n\n/** Given an array, returns true if the object is found in the array, (using indexOf) */\nexport const inArray: typeof _inArray = curry(_inArray) as any;\nexport function _inArray(array: any[], obj: any): boolean;\nexport function _inArray(array: any[]): (obj: any) => boolean;\nexport function _inArray(array, obj?): any {\n return array.indexOf(obj) !== -1;\n}\n\n/**\n * GivenLine truncated
|
||||
"/** @module common */\nimport { pushTo } from './common';\n\nexport class Queue<T> {\n private _evictListeners: ((item: T) => void)[] = [];\n public onEvict = pushTo(this._evictListeners);\n\n constructor(private _items: T[] = [], private _limit: number = null) { }\n\n enqueue(item: T) {\n const items = this._items;\n items.push(item);\n if (this._limit && items.length > this._limit) this.evict();\n return item;\n }\n\n evict(): T {\n const item: T = this._items.shift();\n this._evictListeners.forEach(fn => fn(item));\n return item;\n }\n\n dequeue(): T {\n if (this.size())\n return this._items.splice(0, 1)[0];\n }\n\n clear(): Array<T> {\n const current = this._items;\n this._items = [];\n return current;\n }\n\n size(): number {\n return this._items.length;\n }\n\n remove(item: T) {\n const idx = this._items.indexOf(item);\n return idx > -1 && this._items.splice(idx, 1)[0];\n }\n\n peekTail(): T {\n return this._items[this._items.length - 1];\n }\n\n peekHead(): T {\n if (this.size())\n return this._items[0];\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n'use strict';\nimport { extend, silentRejection } from '../common/common';\nimport { stringify } from '../common/strings';\nimport { is } from '../common/hof';\n\nexport enum RejectType {\n SUPERSEDED = 2, ABORTED = 3, INVALID = 4, IGNORED = 5, ERROR = 6,\n}\n\n/** @hidden */\nlet id = 0;\n\nexport class Rejection {\n $id = id++;\n type: number;\n message: string;\n detail: any;\n redirected: boolean;\n\n /** Returns true if the obj is a rejected promise created from the `asPromise` factory */\n static isRejectionPromise(obj: any): boolean {\n return obj && (typeof obj.then === 'function') && is(Rejection)(obj._transitionRejection);\n }\n\n /** Returns a Rejection due to transition superseded */\n static superseded(detail?: any, options?: any): Rejection {\n const message = 'The transition has been superseded by a different transition';\n const rejection = new Rejection(RejectType.SUPERSEDED, message, detail);\n if (options && options.redirected) {\n rejection.redirected = true;\n }\n return rejection;\n }\n\n /** Returns a Rejection due to redirected transition */\n static redirected(detail?: any): Rejection {\n return Rejection.superseded(detail, { redirected: true });\n }\n\n /** Returns a Rejection due to invalid transition */\n static invalid(detail?: any): Rejection {\n const message = 'This transition is invalid';\n return new Rejection(RejectType.INVALID, message, detail);\n }\n\n /** Returns a Rejection due to ignored transition */\n static ignored(detail?: any): Rejection {\n const message = 'The transition was ignored';\n return new Rejection(RejectType.IGNORED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static aborted(detail?: any): Rejection {\n const message = 'The transition has been aborted';\n return new Rejection(RejectType.ABORTED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static errored(detail?: any): Rejection {\n const message = 'The transition errored';\n return new Rejection(RejectType.ERROR, message, detail);\n }\n\n /**\n * Returns a Rejection\n *\n * Normalizes a value as a Rejection.\n * If the value is already a Rejection, returns it.\n * Otherwise, wraps and returns the value as a Rejection (Rejection type: ERROR).\n *\n * @returns `detail` if it is already a `Rejection`, else returns an ERROR Rejection.\n */\n static normalize(detail?: Rejection | Error | any): Rejection {\n return is(Rejection)(detail) ? detail : Rejection.errored(detail);\n }\n\n constructor(type: number, message?: string, detail?: any) {\n this.type = type;\n this.message = message;\n this.detail = detail;\n }\n\n toString() {\n const detailString = (d: any) =>\n d && d.toString !== Object.prototype.toString ? d.toString() : stringify(d);\n const detail = detailString(this.detail);\n const { $id, type, message } = this;\n return `Transition Rejection($id: ${$id} type: ${type}, message: ${message}, detail: ${detail})`;\n }\n\n toPromise(): Promise<any> {\n return extend(silentRejection(this), { _transitionRejection: this });\n }\n}\n",
|
||||
"/**\n * # Transition tracing (debug)\n *\n * Enable transition tracing to print transition information to the console,\n * in order to help debug your application.\n * Tracing logs detailed information about each Transition to your console.\n *\n * To enable tracing, import the [[Trace]] singleton and enable one or more categories.\n *\n * ### ES6\n * ```js\n * import {trace} from \"ui-router-ng2\"; // or \"angular-ui-router\"\n * trace.enable(1, 5); // TRANSITION and VIEWCONFIG\n * ```\n *\n * ### CJS\n * ```js\n * let trace = require(\"angular-ui-router\").trace; // or \"ui-router-ng2\"\n * trace.enable(\"TRANSITION\", \"VIEWCONFIG\");\n * ```\n *\n * ### Globals\n * ```js\n * let trace = window[\"angular-ui-router\"].trace; // or \"ui-router-ng2\"\n * trace.enable(); // Trace everything (very verbose)\n * ```\n *\n * ### Angular 1:\n * ```js\n * app.run($trace => $trace.enable());\n * ```\n *\n * @coreapi\n * @module trace\n */\n/* tslint:disable:no-console */\nimport { parse } from '../common/hof';\nimport { isFunction, isNumber } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { ViewTuple } from '../view';\nimport { ActiveUIView, ViewConfig, ViewContext } from '../view/interface';\nimport { stringify, functionToString, maxLength, padString } from './strings';\nimport { Resolvable } from '../resolve/resolvable';\nimport { PathNode } from '../path/pathNode';\nimport { PolicyWhen } from '../resolve/interface';\nimport { TransitionHook } from '../transition/transitionHook';\nimport { HookResult } from '../transition/interface';\nimport { StateObject } from '../state/stateObject';\n\n/** @hidden */\nfunction uiViewString (uiview: ActiveUIView) {\n if (!uiview) return 'ui-view (defunct)';\n const state = uiview.creationContext ? uiview.creationContext.name || '(root)' : '(none)';\n return `[ui-view#${uiview.id} ${uiview.$type}:${uiview.fqn} (${uiview.name}@${state})]`;\n}\n\n/** @hidden */\nconst viewConfigString = (viewConfig: ViewConfig) => {\n const view = viewConfig.viewDecl;\n const state = view.$context.name || '(root)';\n return `[View#${viewConfig.$id} from '${state}' state]: target ui-view: '${view.$uiViewName}@${view.$uiViewContextAnchor}'`;\n};\n\n/** @hidden */\nfunction normalizedCat(input: Category|string): string {\n return isNumber(input) ? Category[input] : Category[Category[input]];\n}\n\n/** @hidden */\nconst consoleLog = Function.prototype.bind.call(console.log, console);\n\n/** @hidden */\nconst consoletable = isFunction(console.table) ? console.table.bind(console) : consoleLog.bind(console);\n\n\n/**\n * Trace categories Enum\n *\n * Enable or disable a category using [[Trace.enable]] or [[Trace.disable]]\n *\n * `trace.enable(Category.TRANSITION)`\n *\n * These can also be provided using a matching string, or position ordinal\n *\n * `trace.enable(\"TRANSITION\")`\n *\n * `trace.enable(1)`\n */\nexport enum Category {\n RESOLVE, TRANSITION, HOOK, UIVIEW, VIEWCONFIG,\n}\n\n/** @hidden */\nconst _tid = parse('$id');\n\n/** @hidden */\nconst _rid = parse('router.$id');\n\n/** @hidden */\nconst transLbl = (trans) => `Transition #${_tid(trans)}-${_rid(trans)}`;\n\n/**\n * Prints UI-Router Transition trace information to the console.\n */\nexport class Trace {\n /** @hidden */\n approximateDigests: number;\n\n /** @hidden */\n private _enabled: { [key: string]: boolean } = {};\n\n /** @hidden */\n constructor() {\n this.approximateDigests = 0;\n }\n\n /** @hidden */\n private _set(enabled: boolean, categories: Category[]) {\n if (!categories.length) {\n categories = <any> Object.keys(Category)\n .map(k => parseInt(k, 10))\n .filter(k => !isNaN(k))\n .map(key => Category[key]);\n }\n categories.map(normalizedCat).forEach(category => this._enabled[category] = enabled);\n }\n\n /**\n * Enables a trace [[Category]]\n *\n * ```js\n * trace.enable(\"TRANSITION\");\n * ```\n *\n * @param categories categories to enable. If `categories` is omitted, all categories are enabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n enable(...categories: (Category|string|number)[]);\n enable(...categories: any[]) { this._set(true, categories); }\n /**\n * Disables a trace [[Category]]\n *\n * ```js\n * trace.disable(\"VIEWCONFIG\");\n * ```\n *\n * @param categories categories to disable. If `categories` is omitted, all categories are disabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n disable(...categories: (Category|string|number)[]);\n disable(...categories: any[]) { this._set(false, categories); }\n\n /**\n * Retrieves the enabled stateus of a [[Category]]\n *\n * ```js\n * trace.enabled(\"VIEWCONFIG\"); // true or false\n * ```\n *\n * @returns boolean true if the category is enabled\n */\n enabled(category: (Category|string|number)): boolean {\n rLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { StateDeclaration } from '../state/interface';\nimport { Predicate } from '../common/common';\n\nimport { Transition } from './transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TargetState } from '../state/targetState';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * The TransitionOptions object can be used to change the behavior of a transition.\n *\n * It is passed as the third argument to [[StateService.go]], [[StateService.transitionTo]].\n * It can also be used with a `uiSref`.\n */\nexport interface TransitionOptions {\n /**\n * This option changes how the Transition interacts with the browser's location bar (URL).\n *\n * - If `true`, it will update the url in the location bar.\n * - If `false`, it will not update the url in the location bar.\n * - If it is the string `\"replace\"`, it will update the url and also replace the last history record.\n *\n * @default `true`\n */\n location ?: (boolean|string);\n\n /**\n * When transitioning to relative path (e.g '`^`'), this option defines which state to be relative from.\n * @default `$state.current`\n */\n relative ?: (string|StateDeclaration|StateObject);\n\n /**\n * This option sets whether or not the transition's parameter values should be inherited from\n * the current parameter values.\n *\n * - If `true`, it will inherit parameter values from the current parameter values.\n * - If `false`, only the parameters which are provided to `transitionTo` will be used.\n *\n * @default `false`\n */\n inherit ?: boolean;\n\n /**\n * @deprecated\n */\n notify ?: boolean;\n\n /**\n * This option may be used to force states which are currently active to reload.\n *\n * During a normal transition, a state is \"retained\" if:\n * - It was previously active\n * - The state's parameter values have not changed\n * - All the parent states' parameter values have not changed\n *\n * Forcing a reload of a state will cause it to be exited and entered, which will:\n * - Refetch that state's resolve data\n * - Exit the state (onExit hook)\n * - Re-enter the state (onEnter hook)\n * - Re-render the views (controllers and templates)\n *\n * - When `true`, the destination state (and all parent states) will be reloaded.\n * - When it is a string and is the name of a state, or when it is a State object,\n * that state and any children states will be reloaded.\n *\n * @default `false`\n */\n reload ?: (boolean|string|StateDeclaration|StateObject);\n /**\n * You can define your own Transition Options inside this property and use them, e.g., from a Transition Hook\n */\n custom ?: any;\n /** @internalapi */\n reloadState ?: (StateObject);\n /** @internalapi\n * If this transition is a redirect, this property should be the original Transition (which was redirected to this one)\n */\n redirectedFrom?: Transition;\n /** @internalapi */\n current ?: () => Transition;\n /** @internalapi */\n source ?: 'sref' | 'url' | 'redirect' | 'otherwise' | 'unknown';\n}\n\n/** @internalapi */\nexport interface TransitionHookOptions {\n current ?: () => Transition; // path?\n transition ?: Transition;\n hookType ?: string;\n target ?: any;\n traceData ?: any;\n bind ?: any;\n stateHook ?: boolean;\n}\n\n/**\n * TreeChanges encapsulates the various Paths that are involved in a Transition.\n *\n * Get a TreeChanges object using [[Transition.treeChanges]]\n *\n * A UI-Router Transition is from one Path in a State Tree to another Path. For a given Transition,\n * this object stores the \"to\" and \"from\" paths, as well as subsets of those: the \"retained\",\n * \"exiting\" and \"entering\" paths.\n *\n * Each path in TreeChanges is an array of [[PathNode]] objects. Each PathNode in the array corresponds to a portion\n * of a nested state.\n *\n * For example, if you had a nested state named `foo.bar.baz`, it would have three\n * portions, `foo, bar, baz`. If you transitioned **to** `foo.bar.baz` and inspected the [[TreeChanges.to]]\n * Path, you would find a node in the array for each portion: `foo`, `bar`, and `baz`.\n *\n * ---\n *\n * @todo show visual state tree\n */\nexport interface TreeChanges {\n /** @nodoc */\n [key: string]: PathNode[];\n\n /** The path of nodes in the state tree that the transition is coming *from* */\n from: PathNode[];\n\n /** The path of nodes in the state tree that the transition is going *to* */\n to: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining.\n *\n * These nodes are neither exited, nor entered.\n * Before and after the transition is successful, these nodes are active.\n */\n retained: PathNode[];\n\n /**\n * The pathLine truncated
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"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateDeclaration, StateOrName, TargetStateDef } from './interface';\nimport { TransitionOptions } from '../transition/interface';\nimport { StateObject } from './stateObject';\nimport { isString } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { extend } from '../common';\nimport { StateRegistry } from './stateRegistry';\nimport { RawParams } from '../params';\n\n/**\n * Encapsulate the target (destination) state/params/options of a [[Transition]].\n *\n * This class is frequently used to redirect a transition to a new destination.\n *\n * See:\n *\n * - [[HookResult]]\n * - [[TransitionHookFn]]\n * - [[TransitionService.onStart]]\n *\n * To create a `TargetState`, use [[StateService.target]].\n *\n * ---\n *\n * This class wraps:\n *\n * 1) an identifier for a state\n * 2) a set of parameters\n * 3) and transition options\n * 4) the registered state object (the [[StateDeclaration]])\n *\n * Many UI-Router APIs such as [[StateService.go]] take a [[StateOrName]] argument which can\n * either be a *state object* (a [[StateDeclaration]] or [[StateObject]]) or a *state name* (a string).\n * The `TargetState` class normalizes those options.\n *\n * A `TargetState` may be valid (the state being targeted exists in the registry)\n * or invalid (the state being targeted is not registered).\n */\nexport class TargetState {\n private _definition: StateObject;\n private _params: RawParams;\n private _options: TransitionOptions;\n\n /** Returns true if the object has a state property that might be a state or state name */\n static isDef = (obj): obj is TargetStateDef =>\n obj && obj.state && (isString(obj.state) || isString(obj.state.name));\n\n /**\n * The TargetState constructor\n *\n * Note: Do not construct a `TargetState` manually.\n * To create a `TargetState`, use the [[StateService.target]] factory method.\n *\n * @param _stateRegistry The StateRegistry to use to look up the _definition\n * @param _identifier An identifier for a state.\n * Either a fully-qualified state name, or the object used to define the state.\n * @param _params Parameters for the target state\n * @param _options Transition options.\n *\n * @internalapi\n */\n constructor(\n private _stateRegistry: StateRegistry,\n private _identifier: StateOrName,\n _params?: RawParams,\n _options?: TransitionOptions,\n ) {\n this._identifier = _identifier;\n this._params = extend({}, _params || {});\n this._options = extend({}, _options || {});\n this._definition = _stateRegistry.matcher.find(_identifier, this._options.relative);\n }\n\n /** The name of the state this object targets */\n name(): string {\n return this._definition && this._definition.name || <string> this._identifier;\n }\n\n /** The identifier used when creating this TargetState */\n identifier(): StateOrName {\n return this._identifier;\n }\n\n /** The target parameter values */\n params(): RawParams {\n return this._params;\n }\n\n /** The internal state object (if it was found) */\n $state(): StateObject {\n return this._definition;\n }\n\n /** The internal state declaration (if it was found) */\n state(): StateDeclaration {\n return this._definition && this._definition.self;\n }\n\n /** The target options */\n options() {\n return this._options;\n }\n\n /** True if the target state was found */\n exists(): boolean {\n return !!(this._definition && this._definition.self);\n }\n\n /** True if the object is valid */\n valid(): boolean {\n return !this.error();\n }\n\n /** If the object is invalid, returns the reason why */\n error(): string {\n const base = <any> this.options().relative;\n if (!this._definition && !!base) {\n const stateName = base.name ? base.name : base;\n return `Could not resolve '${this.name()}' from state '${stateName}'`;\n }\n if (!this._definition)\n return `No such state '${this.name()}'`;\n if (!this._definition.self)\n return `State '${this.name()}' has an invalid definition`;\n }\n\n toString() {\n return `'${this.name()}'${stringify(this.params())}`;\n }\n\n /**\n * Returns a copy of this TargetState which targets a different state.\n * The new TargetState has the same parameter values and transition options.\n *\n * @param state The new state that should be targeted\n */\n withState(state: StateOrName): TargetState {\n return new TargetState(this._stateRegistry, state, this._params, this._options);\n }\n\n /**\n * Returns a copy of this TargetState, using the specified parameter values.\n *\n * @param params the new parameter values to use\n * @param replace When false (default) the new parameter values will be merged with the current values.\n * When true the parameter values will be used instead of the current values.\n */\n withParams(params: RLine truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { TransitionHookOptions, HookResult, TransitionHookPhase } from './interface';\nimport { defaults, noop, silentRejection } from '../common/common';\nimport { fnToString, maxLength } from '../common/strings';\nimport { isPromise } from '../common/predicates';\nimport { is, parse } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { Rejection } from './rejectFactory';\nimport { TargetState } from '../state/targetState';\nimport { Transition } from './transition';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\nimport { StateDeclaration } from '../state/interface';\n\nconst defaultOptions: TransitionHookOptions = {\n current: noop,\n transition: null,\n traceData: {},\n bind: null,\n};\n\nexport type GetResultHandler = (hook: TransitionHook) => ResultHandler;\nexport type GetErrorHandler = (hook: TransitionHook) => ErrorHandler;\n\nexport type ResultHandler = (result: HookResult) => Promise<HookResult>;\nexport type ErrorHandler = (error: any) => Promise<any>;\n\n/** @hidden */\nexport class TransitionHook {\n type: TransitionEventType;\n\n /**\n * These GetResultHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetResultHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static HANDLE_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) =>\n hook.handleHookResult(result);\n\n /**\n * If the result is a promise rejection, log it.\n * Otherwise, ignore the result.\n */\n static LOG_REJECTED_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) => {\n isPromise(result) && result.catch(err =>\n hook.logError(Rejection.normalize(err)));\n return undefined;\n }\n\n /**\n * These GetErrorHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetErrorHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static LOG_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) =>\n hook.logError(error);\n\n static REJECT_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) =>\n silentRejection(error);\n\n static THROW_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => {\n throw error;\n }\n\n /**\n * Chains together an array of TransitionHooks.\n *\n * Given a list of [[TransitionHook]] objects, chains them together.\n * Each hook is invoked after the previous one completes.\n *\n * #### Example:\n * ```js\n * var hooks: TransitionHook[] = getHooks();\n * let promise: Promise<any> = TransitionHook.chain(hooks);\n *\n * promise.then(handleSuccess, handleError);\n * ```\n *\n * @param hooks the list of hooks to chain together\n * @param waitFor if provided, the chain is `.then()`'ed off this promise\n * @returns a `Promise` for sequentially invoking the hooks (in order)\n */\n static chain(hooks: TransitionHook[], waitFor?: Promise<any>): Promise<any> {\n // Chain the next hook off the previous\n const createHookChainR = (prev: Promise<any>, nextHook: TransitionHook) =>\n prev.then(() => nextHook.invokeHook());\n return hooks.reduce(createHookChainR, waitFor || services.$q.when());\n }\n\n\n /**\n * Invokes all the provided TransitionHooks, in order.\n * Each hook's return value is checked.\n * If any hook returns a promise, then the rest of the hooks are chained off that promise, and the promise is returned.\n * If no hook returns a promise, then all hooks are processed synchronously.\n *\n * @param hooks the list of TransitionHooks to invoke\n * @param doneCallback a callback that is invoked after all the hooks have successfully completed\n *\n * @returns a promise for the async result, or the result of the callback\n */\n static invokeHooks<T>(hooks: TransitionHook[], doneCallback: (result?: HookResult) => T): Promise<any> | T {\n for (let idx = 0; idx < hooks.length; idx++) {\n const hookResult = hooks[idx].invokeHook();\n\n if (isPromise(hookResult)) {\n const remainingHooks = hooks.slice(idx + 1);\n\n return TransitionHook.chain(remainingHooks, hookResult)\n .then(doneCallback);\n }\n }\n\n return doneCallback();\n }\n\n /**\n * Run all TransitionHooks, ignoring their return value.\n */\n static runAllHooks(hooks: TransitionHook[]): void {\n hooks.forEach(hook => hook.invokeHook());\n }\n\n constructor(private transition: Transition,\n private stateContext: StateDeclaration,\n private registeredHook: RegisteredHook,\n private options: TransitionHookOptions) {\n this.options = defaults(options, defaultOptions);\n this.type = registeredHook.eventType;\n }\n\n private isSuperseded = () =>\n this.type.hookPhase === TranLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { isString, isFunction, Glob, extend, removeFrom, tail, values, identity, mapObj } from '../common';\nimport { PathNode } from '../path/pathNode';\nimport {\n TransitionStateHookFn, TransitionHookFn, TransitionHookPhase, // has or is using\n TransitionHookScope, IHookRegistry, PathType,\n} from './interface';\n\nimport { HookRegOptions, HookMatchCriteria, TreeChanges, HookMatchCriterion, IMatchingNodes, HookFn } from './interface';\nimport { StateObject } from '../state/stateObject';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionService } from './transitionService';\n\n/**\n * Determines if the given state matches the matchCriteria\n *\n * @hidden\n *\n * @param state a State Object to test against\n * @param criterion\n * - If a string, matchState uses the string as a glob-matcher against the state name\n * - If an array (of strings), matchState uses each string in the array as a glob-matchers against the state name\n * and returns a positive match if any of the globs match.\n * - If a function, matchState calls the function with the state and returns true if the function's result is truthy.\n * @returns {boolean}\n */\nexport function matchState(state: StateObject, criterion: HookMatchCriterion) {\n const toMatch = isString(criterion) ? [criterion] : criterion;\n\n function matchGlobs(_state: StateObject) {\n const globStrings = <string[]> toMatch;\n for (let i = 0; i < globStrings.length; i++) {\n const glob = new Glob(globStrings[i]);\n\n if ((glob && glob.matches(_state.name)) || (!glob && globStrings[i] === _state.name)) {\n return true;\n }\n }\n return false;\n }\n\n const matchFn = <any> (isFunction(toMatch) ? toMatch : matchGlobs);\n return !!matchFn(state);\n}\n\n/**\n * @internalapi\n * The registration data for a registered transition hook\n */\nexport class RegisteredHook {\n priority: number;\n bind: any;\n invokeCount = 0;\n invokeLimit: number;\n _deregistered = false;\n\n constructor(public tranSvc: TransitionService,\n public eventType: TransitionEventType,\n public callback: HookFn,\n public matchCriteria: HookMatchCriteria,\n public removeHookFromRegistry: (hook: RegisteredHook) => void,\n options: HookRegOptions = {} as any) {\n this.priority = options.priority || 0;\n this.bind = options.bind || null;\n this.invokeLimit = options.invokeLimit;\n }\n\n /**\n * Gets the matching [[PathNode]]s\n *\n * Given an array of [[PathNode]]s, and a [[HookMatchCriterion]], returns an array containing\n * the [[PathNode]]s that the criteria matches, or `null` if there were no matching nodes.\n *\n * Returning `null` is significant to distinguish between the default\n * \"match-all criterion value\" of `true` compared to a `() => true` function,\n * when the nodes is an empty array.\n *\n * This is useful to allow a transition match criteria of `entering: true`\n * to still match a transition, even when `entering === []`. Contrast that\n * with `entering: (state) => true` which only matches when a state is actually\n * being entered.\n */\n private _matchingNodes(nodes: PathNode[], criterion: HookMatchCriterion): PathNode[] {\n if (criterion === true) return nodes;\n const matching = nodes.filter(node => matchState(node.state, criterion));\n return matching.length ? matching : null;\n }\n\n /**\n * Gets the default match criteria (all `true`)\n *\n * Returns an object which has all the criteria match paths as keys and `true` as values, i.e.:\n *\n * ```js\n * {\n * to: true,\n * from: true,\n * entering: true,\n * exiting: true,\n * retained: true,\n * }\n */\n private _getDefaultMatchCriteria(): HookMatchCriteria {\n return mapObj(this.tranSvc._pluginapi._getPathTypes(), () => true);\n }\n\n /**\n * Gets matching nodes as [[IMatchingNodes]]\n *\n * Create a IMatchingNodes object from the TransitionHookTypes that is roughly equivalent to:\n *\n * ```js\n * let matches: IMatchingNodes = {\n * to: _matchingNodes([tail(treeChanges.to)], mc.to),\n * from: _matchingNodes([tail(treeChanges.from)], mc.from),\n * exiting: _matchingNodes(treeChanges.exiting, mc.exiting),\n * retained: _matchingNodes(treeChanges.retained, mc.retained),\n * entering: _matchingNodes(treeChanges.entering, mc.entering),\n * };\n * ```\n */\n private _getMatchingNodes(treeChanges: TreeChanges): IMatchingNodes {\n const criteria = extend(this._getDefaultMatchCriteria(), this.matchCriteria);\n const paths: PathType[] = values(this.tranSvc._pluginapi._getPathTypes());\n\n return paths.reduce((mn: IMatchingNodes, pathtype: PathType) => {\n // STATE scope criteria matches against every node in the path.\n // TRANSITION scope criteria matcLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n\nimport { extend, tail, assertPredicate, unnestR, identity } from '../common/common';\nimport { isArray } from '../common/predicates';\n\nimport {\n TransitionOptions, TransitionHookOptions, IHookRegistry, TreeChanges, IMatchingNodes,\n TransitionHookPhase, TransitionHookScope,\n} from './interface';\n\nimport { Transition } from './transition';\nimport { TransitionHook } from './transitionHook';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TransitionService } from './transitionService';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * This class returns applicable TransitionHooks for a specific Transition instance.\n *\n * Hooks ([[RegisteredHook]]) may be registered globally, e.g., $transitions.onEnter(...), or locally, e.g.\n * myTransition.onEnter(...). The HookBuilder finds matching RegisteredHooks (where the match criteria is\n * determined by the type of hook)\n *\n * The HookBuilder also converts RegisteredHooks objects to TransitionHook objects, which are used to run a Transition.\n *\n * The HookBuilder constructor is given the $transitions service and a Transition instance. Thus, a HookBuilder\n * instance may only be used for one specific Transition object. (side note: the _treeChanges accessor is private\n * in the Transition class, so we must also provide the Transition's _treeChanges)\n *\n */\nexport class HookBuilder {\n constructor(private transition: Transition) { }\n\n buildHooksForPhase(phase: TransitionHookPhase): TransitionHook[] {\n const $transitions = this.transition.router.transitionService;\n return $transitions._pluginapi._getEvents(phase)\n .map(type => this.buildHooks(type))\n .reduce(unnestR, [])\n .filter(identity);\n }\n\n /**\n * Returns an array of newly built TransitionHook objects.\n *\n * - Finds all RegisteredHooks registered for the given `hookType` which matched the transition's [[TreeChanges]].\n * - Finds [[PathNode]] (or `PathNode[]`) to use as the TransitionHook context(s)\n * - For each of the [[PathNode]]s, creates a TransitionHook\n *\n * @param hookType the type of the hook registration function, e.g., 'onEnter', 'onFinish'.\n */\n buildHooks(hookType: TransitionEventType): TransitionHook[] {\n const transition = this.transition;\n const treeChanges = transition.treeChanges();\n\n // Find all the matching registered hooks for a given hook type\n const matchingHooks = this.getMatchingHooks(hookType, treeChanges);\n if (!matchingHooks) return [];\n\n const baseHookOptions = <TransitionHookOptions> {\n transition: transition,\n current: transition.options().current,\n };\n\n const makeTransitionHooks = (hook: RegisteredHook) => {\n // Fetch the Nodes that caused this hook to match.\n const matches: IMatchingNodes = hook.matches(treeChanges);\n // Select the PathNode[] that will be used as TransitionHook context objects\n const matchingNodes: PathNode[] = matches[hookType.criteriaMatchPath.name];\n\n // Return an array of HookTuples\n return matchingNodes.map(node => {\n const _options = extend({\n bind: hook.bind,\n traceData: { hookType: hookType.name, context: node },\n }, baseHookOptions);\n\n const state = hookType.criteriaMatchPath.scope === TransitionHookScope.STATE ? node.state.self : null;\n const transitionHook = new TransitionHook(transition, state, hook, _options);\n return <HookTuple> { hook, node, transitionHook };\n });\n };\n\n return matchingHooks.map(makeTransitionHooks)\n .reduce(unnestR, [])\n .sort(tupleSort(hookType.reverseSort))\n .map(tuple => tuple.transitionHook);\n }\n\n /**\n * Finds all RegisteredHooks from:\n * - The Transition object instance hook registry\n * - The TransitionService ($transitions) global hook registry\n *\n * which matched:\n * - the eventType\n * - the matchCriteria (to, from, exiting, retained, entering)\n *\n * @returns an array of matched [[RegisteredHook]]s\n */\n public getMatchingHooks(hookType: TransitionEventType, treeChanges: TreeChanges): RegisteredHook[] {\n const isCreate = hookType.hookPhase === TransitionHookPhase.CREATE;\n\n // Instance and Global hook registries\n const $transitions = this.transition.router.transitionService;\n const registries = isCreate ? [ $transitions ] : [ this.transition, $transitions ];\n\n return registries.map((reg: IHookRegistry) => reg.getHooks(hookType.name)) // Get named hooks from registries\n .filter(assertPredicate(isArray, `broken event named: ${hookType.name}`)) // Sanity check\n .reduce(unnestR, []) // Un-nest RegisteredHook[][] to RegLine truncated
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"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, filter, map } from '../common/common';\nimport { isArray, isDefined } from '../common/predicates';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * An internal class which implements [[ParamTypeDefinition]].\n *\n * A [[ParamTypeDefinition]] is a plain javascript object used to register custom parameter types.\n * When a param type definition is registered, an instance of this class is created internally.\n *\n * This class has naive implementations for all the [[ParamTypeDefinition]] methods.\n *\n * Used by [[UrlMatcher]] when matching or formatting URLs, or comparing and validating parameter values.\n *\n * #### Example:\n * ```js\n * var paramTypeDef = {\n * decode: function(val) { return parseInt(val, 10); },\n * encode: function(val) { return val && val.toString(); },\n * equals: function(a, b) { return this.is(a) && a === b; },\n * is: function(val) { return angular.isNumber(val) && isFinite(val) && val % 1 === 0; },\n * pattern: /\\d+/\n * }\n *\n * var paramType = new ParamType(paramTypeDef);\n * ```\n * @internalapi\n */\nexport class ParamType implements ParamTypeDefinition {\n /** @inheritdoc */\n pattern: RegExp = /.*/;\n /** The name/id of the parameter type */\n name: string;\n /** @inheritdoc */\n raw: boolean;\n /** @inheritdoc */\n dynamic: boolean;\n /** @inheritdoc */\n inherit = true;\n\n /**\n * @param def A configuration object which contains the custom type definition. The object's\n * properties will override the default methods and/or pattern in `ParamType`'s public interface.\n * @returns a new ParamType object\n */\n constructor(def: ParamTypeDefinition) {\n extend(this, def);\n }\n\n\n // consider these four methods to be \"abstract methods\" that should be overridden\n /** @inheritdoc */\n is(val: any, key?: string): boolean { return true; }\n /** @inheritdoc */\n encode(val: any, key?: string): (string|string[]) { return val; }\n /** @inheritdoc */\n decode(val: string, key?: string): any { return val; }\n /** @inheritdoc */\n equals(a: any, b: any): boolean { return a == b; } // tslint:disable-line:triple-equals\n\n\n $subPattern() {\n const sub = this.pattern.toString();\n return sub.substr(1, sub.length - 2);\n }\n\n toString() {\n return `{ParamType:${this.name}}`;\n }\n\n /** Given an encoded string, or a decoded object, returns a decoded object */\n $normalize(val: any) {\n return this.is(val) ? val : this.decode(val);\n }\n\n /**\n * Wraps an existing custom ParamType as an array of ParamType, depending on 'mode'.\n * e.g.:\n * - urlmatcher pattern \"/path?{queryParam[]:int}\"\n * - url: \"/path?queryParam=1&queryParam=2\n * - $stateParams.queryParam will be [1, 2]\n * if `mode` is \"auto\", then\n * - url: \"/path?queryParam=1 will create $stateParams.queryParam: 1\n * - url: \"/path?queryParam=1&queryParam=2 will create $stateParams.queryParam: [1, 2]\n */\n $asArray(mode: (boolean|'auto'), isSearch: boolean) {\n if (!mode) return this;\n if (mode === 'auto' && !isSearch) throw new Error(\"'auto' array mode is for query parameters only\");\n return new (<any> ArrayType)(this, mode);\n }\n}\n\n/**\n * Wraps up a `ParamType` object to handle array values.\n * @internalapi\n */\nfunction ArrayType(type: ParamType, mode: (boolean|'auto')) {\n // Wrap non-array value as array\n function arrayWrap(val: any): any[] {\n return isArray(val) ? val : (isDefined(val) ? [ val ] : []);\n }\n\n // Unwrap array value for \"auto\" mode. Return undefined for empty array.\n function arrayUnwrap(val: any) {\n switch (val.length) {\n case 0: return undefined;\n case 1: return mode === 'auto' ? val[0] : val;\n default: return val;\n }\n }\n\n // Wraps type (.is/.encode/.decode) functions to operate on each value of an array\n function arrayHandler(callback: (x: any) => any, allTruthyMode?: boolean) {\n return function handleArray(val: any) {\n if (isArray(val) && val.length === 0) return val;\n const arr = arrayWrap(val);\n const result = map(arr, callback);\n return (allTruthyMode === true) ? filter(result, x => !x).length === 0 : arrayUnwrap(result);\n };\n }\n\n // Wraps type (.equals) functions to operate on each value of an array\n function arrayEqualsHandler(callback: (l: any, r: any) => boolean) {\n return function handleArray(val1: any, val2: any) {\n const left = arrayWrap(val1), right = arrayWrap(val2);\n if (left.length !== right.length) return false;\n for (let i = 0; i < left.length; i++) {\n if (!callback(left[i], right[i])) return false;\n }\n return true;\n };\n }\n\n ['encode', 'decode', 'equals', '$normalize'].forEach(name => {\n const paramTypeFn = type[name].bind(type);\n const wrapperFn: Function = name === 'equals' ? arrayEqualsHandler : arrayHandler;\n this[name] = wrapperFnLine truncated
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"/**\n * @coreapi\n * @module params\n */ /** for typedoc */\nimport { extend, filter, map, allTrueR } from '../common/common';\nimport { prop } from '../common/hof';\nimport { isInjectable, isDefined, isString, isArray, isUndefined } from '../common/predicates';\nimport { RawParams, ParamDeclaration } from '../params/interface';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypes } from './paramTypes';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\n\n/** @hidden */\nconst hasOwn = Object.prototype.hasOwnProperty;\n\n/** @hidden */\nconst isShorthand = (cfg: ParamDeclaration) =>\n ['value', 'type', 'squash', 'array', 'dynamic'].filter(hasOwn.bind(cfg || {})).length === 0;\n\n/** @internalapi */\nexport enum DefType {\n PATH,\n SEARCH,\n CONFIG,\n}\n\n/** @hidden */\nfunction unwrapShorthand(cfg: ParamDeclaration): ParamDeclaration {\n cfg = isShorthand(cfg) && { value: cfg } as any || cfg;\n\n getStaticDefaultValue['__cacheable'] = true;\n function getStaticDefaultValue() {\n return cfg.value;\n }\n\n return extend(cfg, {\n $$fn: isInjectable(cfg.value) ? cfg.value : getStaticDefaultValue,\n });\n}\n\n/** @hidden */\nfunction getType(cfg: ParamDeclaration, urlType: ParamType, location: DefType, id: string, paramTypes: ParamTypes) {\n if (cfg.type && urlType && urlType.name !== 'string') throw new Error(`Param '${id}' has two type configurations.`);\n if (cfg.type && urlType && urlType.name === 'string' && paramTypes.type(cfg.type as string)) return paramTypes.type(cfg.type as string);\n if (urlType) return urlType;\n if (!cfg.type) {\n const type = location === DefType.CONFIG ? 'any' :\n location === DefType.PATH ? 'path' :\n location === DefType.SEARCH ? 'query' : 'string';\n return paramTypes.type(type);\n }\n return cfg.type instanceof ParamType ? cfg.type : paramTypes.type(cfg.type as string);\n}\n\n/**\n * @internalapi\n * returns false, true, or the squash value to indicate the \"default parameter url squash policy\".\n */\nfunction getSquashPolicy(config: ParamDeclaration, isOptional: boolean, defaultPolicy: (boolean|string)) {\n const squash = config.squash;\n if (!isOptional || squash === false) return false;\n if (!isDefined(squash) || squash == null) return defaultPolicy;\n if (squash === true || isString(squash)) return squash;\n throw new Error(`Invalid squash policy: '${squash}'. Valid policies: false, true, or arbitrary string`);\n}\n\n/** @internalapi */\nfunction getReplace(config: ParamDeclaration, arrayMode: boolean, isOptional: boolean, squash: (string|boolean)) {\n const defaultPolicy = [\n { from: '', to: (isOptional || arrayMode ? undefined : '') },\n { from: null, to: (isOptional || arrayMode ? undefined : '') },\n ];\n\n const replace = isArray(config.replace) ? config.replace : [];\n if (isString(squash)) replace.push({ from: squash, to: undefined });\n\n const configuredKeys = map(replace, prop('from'));\n return filter(defaultPolicy, item => configuredKeys.indexOf(item.from) === -1).concat(replace);\n}\n\n\n/** @internalapi */\nexport class Param {\n id: string;\n type: ParamType;\n location: DefType;\n isOptional: boolean;\n dynamic: boolean;\n raw: boolean;\n squash: (boolean|string);\n replace: [{ to: any, from: any }];\n inherit: boolean;\n array: boolean;\n config: any;\n /** Cache the default value if it is a static value */\n _defaultValueCache: {\n defaultValue: any,\n };\n\n static values(params: Param[], values: RawParams = {}): RawParams {\n const paramValues = {} as RawParams;\n for (const param of params) {\n paramValues[param.id] = param.value(values[param.id]);\n }\n return paramValues;\n }\n\n /**\n * Finds [[Param]] objects which have different param values\n *\n * Filters a list of [[Param]] objects to only those whose parameter values differ in two param value objects\n *\n * @param params: The list of Param objects to filter\n * @param values1: The first set of parameter values\n * @param values2: the second set of parameter values\n *\n * @returns any Param objects whose values were different between values1 and values2\n */\n static changed(params: Param[], values1: RawParams = {}, values2: RawParams = {}): Param[] {\n return params.filter(param => !param.type.equals(values1[param.id], values2[param.id]));\n }\n\n /**\n * Checks if two param value objects are equal (for a set of [[Param]] objects)\n *\n * @param params The list of [[Param]] objects to check\n * @param values1 The first set of param values\n * @param values2 The second set of param values\n *\n * @returns true if the param values in values1 and values2 are equal\n */\n static equals(params: Param[], values1 = {}, values2 = {}): boolean {\n return Param.changed(params, values1, values2).length === 0;\n }\n\n /** Returns true if a the parameter values are valid, accorLine truncated
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"/** @module path */ /** for typedoc */\nimport { extend, applyPairs, find, allTrueR, pairs, arrayTuples } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\n\n/**\n * @internalapi\n *\n * A node in a [[TreeChanges]] path\n *\n * For a [[TreeChanges]] path, this class holds the stateful information for a single node in the path.\n * Each PathNode corresponds to a state being entered, exited, or retained.\n * The stateful information includes parameter values and resolve data.\n */\nexport class PathNode {\n /** The state being entered, exited, or retained */\n public state: StateObject;\n /** The parameters declared on the state */\n public paramSchema: Param[];\n /** The parameter values that belong to the state */\n public paramValues: { [key: string]: any };\n /** The individual (stateful) resolvable objects that belong to the state */\n public resolvables: Resolvable[];\n /** The state's declared view configuration objects */\n public views: ViewConfig[];\n\n /**\n * Returns a clone of the PathNode\n * @deprecated use instance method `node.clone()`\n */\n static clone = (node: PathNode) => node.clone();\n\n /** Creates a copy of a PathNode */\n constructor(node: PathNode);\n /** Creates a new (empty) PathNode for a State */\n constructor(state: StateObject);\n constructor(stateOrNode: any) {\n if (stateOrNode instanceof PathNode) {\n const node: PathNode = stateOrNode;\n this.state = node.state;\n this.paramSchema = node.paramSchema.slice();\n this.paramValues = extend({}, node.paramValues);\n this.resolvables = node.resolvables.slice();\n this.views = node.views && node.views.slice();\n } else {\n const state: StateObject = stateOrNode;\n this.state = state;\n this.paramSchema = state.parameters({ inherit: false });\n this.paramValues = {};\n this.resolvables = state.resolvables.map(res => res.clone());\n }\n }\n\n clone() {\n return new PathNode(this);\n }\n\n /** Sets [[paramValues]] for the node, from the values of an object hash */\n applyRawParams(params: RawParams): PathNode {\n const getParamVal = (paramDef: Param) => [ paramDef.id, paramDef.value(params[paramDef.id]) ];\n this.paramValues = this.paramSchema.reduce((memo, pDef) => applyPairs(memo, getParamVal(pDef)), {});\n return this;\n }\n\n /** Gets a specific [[Param]] metadata that belongs to the node */\n parameter(name: string): Param {\n return find(this.paramSchema, propEq('id', name));\n }\n\n /**\n * @returns true if the state and parameter values for another PathNode are\n * equal to the state and param values for this PathNode\n */\n equals(node: PathNode, paramsFn?: GetParamsFn): boolean {\n const diff = this.diff(node, paramsFn);\n return diff && diff.length === 0;\n }\n\n /**\n * Finds Params with different parameter values on another PathNode.\n *\n * Given another node (of the same state), finds the parameter values which differ.\n * Returns the [[Param]] (schema objects) whose parameter values differ.\n *\n * Given another node for a different state, returns `false`\n *\n * @param node The node to compare to\n * @param paramsFn A function that returns which parameters should be compared.\n * @returns The [[Param]]s which differ, or null if the two nodes are for different states\n */\n diff(node: PathNode, paramsFn?: GetParamsFn): Param[] | false {\n if (this.state !== node.state) return false;\n\n const params: Param[] = paramsFn ? paramsFn(this) : this.paramSchema;\n return Param.changed(params, this.paramValues, node.paramValues);\n }\n}\n\n/** @hidden */\nexport type GetParamsFn = (pathNode: PathNode) => Param[];\n",
|
||||
"/** @module path */ /** for typedoc */\n\nimport {\n extend, find, pick, omit, tail, mergeR, values, unnestR, Predicate, inArray, arrayTuples,\n} from '../common/common';\nimport { prop, propEq, not } from '../common/hof';\n\nimport { RawParams } from '../params/interface';\nimport { TreeChanges } from '../transition/interface';\nimport { ViewConfig } from '../view/interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { GetParamsFn, PathNode } from './pathNode';\nimport { ViewService } from '../view/view';\nimport { Param } from '../params/param';\nimport { StateRegistry } from '../state';\n\n/**\n * This class contains functions which convert TargetStates, Nodes and paths from one type to another.\n */\nexport class PathUtils {\n /** Given a PathNode[], create an TargetState */\n static makeTargetState(registry: StateRegistry, path: PathNode[]): TargetState {\n const state = tail(path).state;\n return new TargetState(registry, state, path.map(prop('paramValues')).reduce(mergeR, {}), {});\n }\n\n static buildPath(targetState: TargetState) {\n const toParams = targetState.params();\n return targetState.$state().path.map(state => new PathNode(state).applyRawParams(toParams));\n }\n\n /** Given a fromPath: PathNode[] and a TargetState, builds a toPath: PathNode[] */\n static buildToPath(fromPath: PathNode[], targetState: TargetState): PathNode[] {\n const toPath: PathNode[] = PathUtils.buildPath(targetState);\n if (targetState.options().inherit) {\n return PathUtils.inheritParams(fromPath, toPath, Object.keys(targetState.params()));\n }\n return toPath;\n }\n\n /**\n * Creates ViewConfig objects and adds to nodes.\n *\n * On each [[PathNode]], creates ViewConfig objects from the views: property of the node's state\n */\n static applyViewConfigs($view: ViewService, path: PathNode[], states: StateObject[]) {\n // Only apply the viewConfigs to the nodes for the given states\n path.filter(node => inArray(states, node.state)).forEach(node => {\n const viewDecls: _ViewDeclaration[] = values(node.state.views || {});\n const subPath = PathUtils.subPath(path, n => n === node);\n const viewConfigs: ViewConfig[][] = viewDecls.map(view => $view.createViewConfig(subPath, view));\n node.views = viewConfigs.reduce(unnestR, []);\n });\n }\n\n /**\n * Given a fromPath and a toPath, returns a new to path which inherits parameters from the fromPath\n *\n * For a parameter in a node to be inherited from the from path:\n * - The toPath's node must have a matching node in the fromPath (by state).\n * - The parameter name must not be found in the toKeys parameter array.\n *\n * Note: the keys provided in toKeys are intended to be those param keys explicitly specified by some\n * caller, for instance, $state.transitionTo(..., toParams). If a key was found in toParams,\n * it is not inherited from the fromPath.\n */\n static inheritParams(fromPath: PathNode[], toPath: PathNode[], toKeys: string[] = []): PathNode[] {\n function nodeParamVals(path: PathNode[], state: StateObject): RawParams {\n const node: PathNode = find(path, propEq('state', state));\n return extend({}, node && node.paramValues);\n }\n\n const noInherit = fromPath.map(node => node.paramSchema)\n .reduce(unnestR, [])\n .filter(param => !param.inherit)\n .map(prop('id'));\n\n /**\n * Given an [[PathNode]] \"toNode\", return a new [[PathNode]] with param values inherited from the\n * matching node in fromPath. Only inherit keys that aren't found in \"toKeys\" from the node in \"fromPath\"\"\n */\n function makeInheritedParamsNode(toNode: PathNode): PathNode {\n // All param values for the node (may include default key/vals, when key was not found in toParams)\n let toParamVals = extend({}, toNode && toNode.paramValues);\n // limited to only those keys found in toParams\n const incomingParamVals = pick(toParamVals, toKeys);\n toParamVals = omit(toParamVals, toKeys);\n const fromParamVals = omit(nodeParamVals(fromPath, toNode.state) || {}, noInherit);\n // extend toParamVals with any fromParamVals, then override any of those those with incomingParamVals\n const ownParamVals: RawParams = extend(toParamVals, fromParamVals, incomingParamVals);\n return new PathNode(toNode.state).applyRawParams(ownParamVals);\n }\n\n // The param keys specified by the incoming toParams\n return <PathNode[]> toPath.map(makeInheritedParamsNode);\n }\n\n static nonDynamicParams = (node: PathNode): Param[] =>\n node.state.parameters({ inherit: false })\n .filter(param => !param.dynamic);\n\n /**\n * Computes the tree changes (entering, exiting) between a fromPath and toPath.\n */\n static treeChanges(fromPath: PathNode[], toPath: PaLine truncated
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"/**\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { extend, equals, inArray, identity } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { trace } from '../common/trace';\nimport { ResolvePolicy, ResolvableLiteral, resolvePolicies } from './interface';\n\nimport { ResolveContext } from './resolveContext';\nimport { stringify } from '../common/strings';\nimport { isFunction, isObject } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { isNullOrUndefined } from '../common/predicates';\n\n\n// TODO: explicitly make this user configurable\nexport let defaultResolvePolicy: ResolvePolicy = {\n when: 'LAZY',\n async: 'WAIT',\n};\n\n/**\n * The basic building block for the resolve system.\n *\n * Resolvables encapsulate a state's resolve's resolveFn, the resolveFn's declared dependencies, the wrapped (.promise),\n * and the unwrapped-when-complete (.data) result of the resolveFn.\n *\n * Resolvable.get() either retrieves the Resolvable's existing promise, or else invokes resolve() (which invokes the\n * resolveFn) and returns the resulting promise.\n *\n * Resolvable.get() and Resolvable.resolve() both execute within a context path, which is passed as the first\n * parameter to those fns.\n */\nexport class Resolvable implements ResolvableLiteral {\n token: any;\n policy: ResolvePolicy;\n resolveFn: Function;\n deps: any[];\n\n data: any;\n resolved = false;\n promise: Promise<any> = undefined;\n\n static fromData = (token: any, data: any) =>\n new Resolvable(token, () => data, null, null, data);\n\n /** This constructor creates a Resolvable copy */\n constructor(resolvable: Resolvable)\n\n /** This constructor creates a new Resolvable from the plain old [[ResolvableLiteral]] javascript object */\n constructor(resolvable: ResolvableLiteral)\n\n /**\n * This constructor creates a new `Resolvable`\n *\n * #### Example:\n * ```js\n * var resolvable1 = new Resolvable('mytoken', http => http.get('foo.json').toPromise(), [Http]);\n *\n * var resolvable2 = new Resolvable(UserService, dep => new UserService(dep.data), [SomeDependency]);\n *\n * var resolvable1Clone = new Resolvable(resolvable1);\n * ```\n *\n * @param token The new resolvable's injection token, such as `\"userList\"` (a string) or `UserService` (a class).\n * When this token is used during injection, the resolved value will be injected.\n * @param resolveFn The function that returns the resolved value, or a promise for the resolved value\n * @param deps An array of dependencies, which will be injected into the `resolveFn`\n * @param policy the [[ResolvePolicy]] defines when and how the Resolvable is processed\n * @param data Pre-resolved data. If the resolve value is already known, it may be provided here.\n */\n constructor(token: any, resolveFn: Function, deps?: any[], policy?: ResolvePolicy, data?: any)\n constructor(arg1: any, resolveFn?: Function, deps?: any[], policy?: ResolvePolicy, data?: any) {\n if (arg1 instanceof Resolvable) {\n extend(this, arg1);\n } else if (isFunction(resolveFn)) {\n if (isNullOrUndefined(arg1)) throw new Error('new Resolvable(): token argument is required');\n if (!isFunction(resolveFn)) throw new Error('new Resolvable(): resolveFn argument must be a function');\n\n this.token = arg1;\n this.policy = policy;\n this.resolveFn = resolveFn;\n this.deps = deps || [];\n\n this.data = data;\n this.resolved = data !== undefined;\n this.promise = this.resolved ? services.$q.when(this.data) : undefined;\n } else if (isObject(arg1) && arg1.token && (arg1.hasOwnProperty('resolveFn') || arg1.hasOwnProperty('data'))) {\n const literal = <ResolvableLiteral> arg1;\n return new Resolvable(literal.token, literal.resolveFn, literal.deps, literal.policy, literal.data);\n }\n }\n\n getPolicy(state: StateObject): ResolvePolicy {\n const thisPolicy = this.policy || {};\n const statePolicy = state && state.resolvePolicy || {};\n return {\n when: thisPolicy.when || statePolicy.when || defaultResolvePolicy.when,\n async: thisPolicy.async || statePolicy.async || defaultResolvePolicy.async,\n };\n }\n\n /**\n * Asynchronously resolve this Resolvable's data\n *\n * Given a ResolveContext that this Resolvable is found in:\n * Wait for this Resolvable's dependencies, then invoke this Resolvable's function\n * and update the Resolvable's state\n */\n resolve(resolveContext: ResolveContext, trans?: Transition) {\n const $q = services.$q;\n\n // Gets all dependencies from ResolveContext and wait for them to be resolved\n const getResolvableDependencies = () =>\n $q.all(resolveContext.getDependencies(this).map(resolvable =>\n resolvable.get(resolveConteLine truncated
|
||||
"/**\n * # The Resolve subsystem\n *\n * This subsystem is an asynchronous, hierarchical Dependency Injection system.\n *\n * Typically, resolve is configured on a state using a [[StateDeclaration.resolve]] declaration.\n *\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { Resolvable } from './resolvable';\n\n/**\n * An interface which is similar to an Angular 2 `Provider`\n */\nexport interface ProviderLike {\n provide: any,\n useClass?: any,\n useFactory?: Function,\n useValue?: any,\n useExisting?: any,\n deps?: any[]\n}\n\n/**\n * A plain object used to describe a [[Resolvable]]\n *\n * These objects may be used in the [[StateDeclaration.resolve]] array to declare\n * async data that the state or substates require.\n *\n * #### Example:\n * ```js\n *\n * var state = {\n * name: 'main',\n * resolve: [\n * { token: 'myData', deps: [MyDataApi], resolveFn: (myDataApi) => myDataApi.getData() },\n * ],\n * }\n * ```\n */\nexport interface ResolvableLiteral {\n /**\n * A Dependency Injection token\n *\n * This Resolvable's DI token.\n * The Resolvable will be injectable elsewhere using the token.\n */\n token: any;\n\n /**\n * A function which fetches the Resolvable's data\n *\n * A function which returns one of:\n *\n * - The resolved value (synchronously)\n * - A promise for the resolved value\n * - An Observable of the resolved value(s)\n *\n * This function will be provided the dependencies listed in [[deps]] as its arguments.\n * The resolve system will asynchronously fetch the dependencies before invoking this function.\n */\n resolveFn: Function;\n\n /**\n * Defines the Resolve Policy\n *\n * A policy that defines when to invoke the resolve,\n * and whether to wait for async and unwrap the data\n */\n policy?: ResolvePolicy;\n\n /**\n * The Dependency Injection tokens\n *\n * This is an array of Dependency Injection tokens for the dependencies of the [[resolveFn]].\n *\n * The DI tokens are references to other `Resolvables`, or to other\n * services from the native DI system.\n */\n deps?: any[];\n\n /** Pre-resolved data. */\n data?: any\n}\n\n/**\n * Defines how a resolve is processed during a transition\n *\n * This object is the [[StateDeclaration.resolvePolicy]] property.\n *\n * #### Example:\n * ```js\n * // Fetched when the resolve's state is being entered.\n * // Wait for the promise to resolve.\n * var policy1 = { when: \"LAZY\", async: \"WAIT\" }\n *\n * // Fetched when the Transition is starting.\n * // Do not wait for the returned promise to resolve.\n * // Inject the raw promise/value\n * var policy2 = { when: \"EAGER\", async: \"NOWAIT\" }\n * ```\n *\n * The policy for a given Resolvable is merged from three sources (highest priority first):\n *\n * - 1) Individual resolve definition\n * - 2) State definition\n * - 3) Global default\n *\n * #### Example:\n * ```js\n * // Wait for an Observable to emit one item.\n * // Since `wait` is not specified, it uses the `wait`\n * // policy defined on the state, or the global default\n * // if no `wait` policy is defined on the state\n * var myResolvablePolicy = { async: \"RXWAIT\" }\n * ```\n */\nexport interface ResolvePolicy {\n /**\n * Defines when a Resolvable is resolved (fetched) during a transition\n *\n * - `LAZY` (default)\n * - Resolved as the resolve's state is being entered\n * - `EAGER`\n * - Resolved as the transition is starting\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched when each state is entered.\n * All of `main` resolves are processed before fetching `main.home` resolves.\n * ```js\n * var state = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n *\n * var state = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n * ```\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched at the same time when the transition starts.\n * This happens earlier in the lifecycle than when states are entered.\n * All of the `main` and `main.home` resolves are fetched as soon as possible.\n * ```js\n * var mainState = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n *\n * var homeState = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n * ```\n */\n when?: PolicyWhen;\n\n /**\n * Determines the unwrapping behavior of asynchronous resolve values.\n *\n * - `WAIT` (default)\n * - If a promise is returned from the resolveFn, wait for the promise before proceeding\n * - The unwrapped value from the promise\n * - `NOWAIT`\n * - If a promise is returned from the resolve, do not wait for the Line truncated
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"/** @module resolve */\n/** for typedoc */\nimport { find, tail, uniqR, unnestR, inArray } from '../common/common';\nimport { propEq, not } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services, $InjectorLike } from '../common/coreservices';\nimport { resolvePolicies, PolicyWhen, ResolvePolicy } from './interface';\nimport { PathNode } from '../path/pathNode';\nimport { Resolvable } from './resolvable';\nimport { StateObject } from '../state/stateObject';\nimport { PathUtils } from '../path/pathUtils';\nimport { stringify } from '../common/strings';\nimport { Transition } from '../transition/transition';\nimport { UIInjector } from '../interface';\nimport { isUndefined } from '../common';\n\nconst whens = resolvePolicies.when;\nconst ALL_WHENS = [whens.EAGER, whens.LAZY];\nconst EAGER_WHENS = [whens.EAGER];\n\n// tslint:disable-next-line:no-inferrable-types\nexport const NATIVE_INJECTOR_TOKEN: string = 'Native Injector';\n\n/**\n * Encapsulates Dependency Injection for a path of nodes\n *\n * UI-Router states are organized as a tree.\n * A nested state has a path of ancestors to the root of the tree.\n * When a state is being activated, each element in the path is wrapped as a [[PathNode]].\n * A `PathNode` is a stateful object that holds things like parameters and resolvables for the state being activated.\n *\n * The ResolveContext closes over the [[PathNode]]s, and provides DI for the last node in the path.\n */\nexport class ResolveContext {\n _injector: UIInjector;\n\n constructor(private _path: PathNode[]) { }\n\n /** Gets all the tokens found in the resolve context, de-duplicated */\n getTokens(): any[] {\n return this._path.reduce((acc, node) => acc.concat(node.resolvables.map(r => r.token)), []).reduce(uniqR, []);\n }\n\n /**\n * Gets the Resolvable that matches the token\n *\n * Gets the last Resolvable that matches the token in this context, or undefined.\n * Throws an error if it doesn't exist in the ResolveContext\n */\n getResolvable(token: any): Resolvable {\n const matching = this._path.map(node => node.resolvables)\n .reduce(unnestR, [])\n .filter((r: Resolvable) => r.token === token);\n return tail(matching);\n }\n\n /** Returns the [[ResolvePolicy]] for the given [[Resolvable]] */\n getPolicy(resolvable: Resolvable): ResolvePolicy {\n const node = this.findNode(resolvable);\n return resolvable.getPolicy(node.state);\n }\n\n /**\n * Returns a ResolveContext that includes a portion of this one\n *\n * Given a state, this method creates a new ResolveContext from this one.\n * The new context starts at the first node (root) and stops at the node for the `state` parameter.\n *\n * #### Why\n *\n * When a transition is created, the nodes in the \"To Path\" are injected from a ResolveContext.\n * A ResolveContext closes over a path of [[PathNode]]s and processes the resolvables.\n * The \"To State\" can inject values from its own resolvables, as well as those from all its ancestor state's (node's).\n * This method is used to create a narrower context when injecting ancestor nodes.\n *\n * @example\n * `let ABCD = new ResolveContext([A, B, C, D]);`\n *\n * Given a path `[A, B, C, D]`, where `A`, `B`, `C` and `D` are nodes for states `a`, `b`, `c`, `d`:\n * When injecting `D`, `D` should have access to all resolvables from `A`, `B`, `C`, `D`.\n * However, `B` should only be able to access resolvables from `A`, `B`.\n *\n * When resolving for the `B` node, first take the full \"To Path\" Context `[A,B,C,D]` and limit to the subpath `[A,B]`.\n * `let AB = ABCD.subcontext(a)`\n */\n subContext(state: StateObject): ResolveContext {\n return new ResolveContext(PathUtils.subPath(this._path, node => node.state === state));\n }\n\n /**\n * Adds Resolvables to the node that matches the state\n *\n * This adds a [[Resolvable]] (generally one created on the fly; not declared on a [[StateDeclaration.resolve]] block).\n * The resolvable is added to the node matching the `state` parameter.\n *\n * These new resolvables are not automatically fetched.\n * The calling code should either fetch them, fetch something that depends on them,\n * or rely on [[resolvePath]] being called when some state is being entered.\n *\n * Note: each resolvable's [[ResolvePolicy]] is merged with the state's policy, and the global default.\n *\n * @param newResolvables the new Resolvables\n * @param state Used to find the node to put the resolvable on\n */\n addResolvables(newResolvables: Resolvable[], state: StateObject) {\n const node = <PathNode> find(this._path, propEq('state', state));\n const keys = newResolvables.map(r => r.token);\n node.resolvables = node.resolvables.filter(r => keys.indexOf(r.token) === -1).concat(newResolvables);\n }\n\n /**\n * Returns a promise for an array of resolved path Element promises\n *\n * @param when\n * @param traLine truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { stringify } from '../common/strings';\nimport { map, find, extend, mergeR, tail, omit, arrayTuples, unnestR, identity, anyTrueR } from '../common/common';\nimport { isObject, isUndefined } from '../common/predicates';\nimport { prop, propEq, val, not, is } from '../common/hof';\nimport { StateDeclaration, StateOrName } from '../state/interface';\nimport {\n TransitionOptions, TreeChanges, IHookRegistry, TransitionHookPhase, RegisteredHooks, HookRegOptions,\n HookMatchCriteria, TransitionStateHookFn, TransitionHookFn,\n} from './interface'; // has or is using\nimport { TransitionHook } from './transitionHook';\nimport { matchState, makeEvent, RegisteredHook } from './hookRegistry';\nimport { HookBuilder } from './hookBuilder';\nimport { PathNode } from '../path/pathNode';\nimport { PathUtils } from '../path/pathUtils';\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { RawParams } from '../params/interface';\nimport { ResolvableLiteral } from '../resolve/interface';\n\n/** @hidden */\nconst stateSelf: (_state: StateObject) => StateDeclaration = prop('self');\n\n/**\n * Represents a transition between two states.\n *\n * When navigating to a state, we are transitioning **from** the current state **to** the new state.\n *\n * This object contains all contextual information about the to/from states, parameters, resolves.\n * It has information about all states being entered and exited as a result of the transition.\n */\nexport class Transition implements IHookRegistry {\n\n /** @hidden */\n static diToken = Transition;\n\n /**\n * A unique identifier for the transition.\n *\n * This is an auto incrementing integer, starting from `0`.\n */\n $id: number;\n\n /**\n * A reference to the [[UIRouter]] instance\n *\n * This reference can be used to access the router services, such as the [[StateService]]\n */\n router: UIRouter;\n\n /** @hidden */\n private _deferred = services.$q.defer();\n /**\n * This promise is resolved or rejected based on the outcome of the Transition.\n *\n * When the transition is successful, the promise is resolved\n * When the transition is unsuccessful, the promise is rejected with the [[Rejection]] or javascript error\n */\n promise: Promise<any> = this._deferred.promise;\n /**\n * A boolean which indicates if the transition was successful\n *\n * After a successful transition, this value is set to true.\n * After an unsuccessful transition, this value is set to false.\n *\n * The value will be undefined if the transition is not complete\n */\n success: boolean;\n /** @hidden */\n _aborted: boolean;\n /** @hidden */\n private _error: any;\n\n /** @hidden Holds the hook registration functions such as those passed to Transition.onStart() */\n _registeredHooks: RegisteredHooks = { };\n\n /** @hidden */\n private _options: TransitionOptions;\n /** @hidden */\n private _treeChanges: TreeChanges;\n /** @hidden */\n private _targetState: TargetState;\n /** @hidden */\n private _hookBuilder = new HookBuilder(this);\n\n\n /** @hidden */\n onBefore(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onStart(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onExit(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onRetain(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onEnter(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onFinish(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onSuccess(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onError(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n\n /** @hidden\n * Creates the transition-level hook registration functions\n * (which can then be used to register hooks)\n */\n private createTransitionHookRegFns() {\n this.router.transitionService._pluginapi._getEvents()\n .filter(type => type.hookPhase !== TransitionHookPhaseLine truncated
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||||
"/**\n * Functions that manipulate strings\n *\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_strings\n */ /** */\n\nimport { isString, isArray, isDefined, isNull, isPromise, isInjectable, isObject } from './predicates';\nimport { Rejection } from '../transition/rejectFactory';\nimport { IInjectable, identity, Obj, tail, pushR } from './common';\nimport { pattern, is, not, val, invoke } from './hof';\nimport { Transition } from '../transition/transition';\nimport { Resolvable } from '../resolve/resolvable';\n\n/**\n * Returns a string shortened to a maximum length\n *\n * If the string is already less than the `max` length, return the string.\n * Else return the string, shortened to `max - 3` and append three dots (\"...\").\n *\n * @param max the maximum length of the string to return\n * @param str the input string\n */\nexport function maxLength(max: number, str: string) {\n if (str.length <= max) return str;\n return str.substr(0, max - 3) + '...';\n}\n\n/**\n * Returns a string, with spaces added to the end, up to a desired str length\n *\n * If the string is already longer than the desired length, return the string.\n * Else returns the string, with extra spaces on the end, such that it reaches `length` characters.\n *\n * @param length the desired length of the string to return\n * @param str the input string\n */\nexport function padString(length: number, str: string) {\n while (str.length < length) str += ' ';\n return str;\n}\n\nexport function kebobString(camelCase: string) {\n return camelCase\n .replace(/^([A-Z])/, $1 => $1.toLowerCase()) // replace first char\n .replace(/([A-Z])/g, $1 => '-' + $1.toLowerCase()); // replace rest\n}\n\nfunction _toJson(obj: Obj) {\n return JSON.stringify(obj);\n}\n\nfunction _fromJson(json: string) {\n return isString(json) ? JSON.parse(json) : json;\n}\n\n\nfunction promiseToString(p: Promise<any>) {\n return `Promise(${JSON.stringify(p)})`;\n}\n\nexport function functionToString(fn: Function) {\n const fnStr = fnToString(fn);\n const namedFunctionMatch = fnStr.match(/^(function [^ ]+\\([^)]*\\))/);\n const toStr = namedFunctionMatch ? namedFunctionMatch[1] : fnStr;\n\n const fnName = fn['name'] || '';\n if (fnName && toStr.match(/function \\(/)) {\n return 'function ' + fnName + toStr.substr(9);\n }\n return toStr;\n}\n\nexport function fnToString(fn: IInjectable) {\n const _fn = isArray(fn) ? fn.slice(-1)[0] : fn;\n return _fn && _fn.toString() || 'undefined';\n}\n\nlet stringifyPatternFn: (val: any) => string = null;\nconst stringifyPattern = function(value: any) {\n const isRejection = Rejection.isRejectionPromise;\n\n stringifyPatternFn = <any> stringifyPatternFn || pattern([\n [not(isDefined), val('undefined')],\n [isNull, val('null')],\n [isPromise, val('[Promise]')],\n [isRejection, (x: any) => x._transitionRejection.toString()],\n [is(Rejection), invoke('toString')],\n [is(Transition), invoke('toString')],\n [is(Resolvable), invoke('toString')],\n [isInjectable, functionToString],\n [val(true), identity],\n ]);\n\n return stringifyPatternFn(value);\n};\n\nexport function stringify(o: any) {\n const seen: any[] = [];\n\n function format(value: any) {\n if (isObject(value)) {\n if (seen.indexOf(value) !== -1) return '[circular ref]';\n seen.push(value);\n }\n return stringifyPattern(value);\n }\n\n return JSON.stringify(o, (key, value) => format(value)).replace(/\\\\\"/g, '\"');\n}\n\n/** Returns a function that splits a string on a character or substring */\nexport const beforeAfterSubstr = (char: string) => (str: string): string[] => {\n if (!str) return ['', ''];\n const idx = str.indexOf(char);\n if (idx === -1) return [str, ''];\n return [str.substr(0, idx), str.substr(idx + 1)];\n};\n\nexport const hostRegex = new RegExp('^(?:[a-z]+:)?//[^/]+/');\nexport const stripLastPathElement = (str: string) => str.replace(/\\/[^/]*$/, '');\nexport const splitHash = beforeAfterSubstr('#');\nexport const splitQuery = beforeAfterSubstr('?');\nexport const splitEqual = beforeAfterSubstr('=');\nexport const trimHashVal = (str: string) => str ? str.replace(/^#/, '') : '';\n\n/**\n * Splits on a delimiter, but returns the delimiters in the array\n *\n * #### Example:\n * ```js\n * var splitOnSlashes = splitOnDelim('/');\n * splitOnSlashes(\"/foo\"); // [\"/\", \"foo\"]\n * splitOnSlashes(\"/foo/\"); // [\"/\", \"foo\", \"/\"]\n * ```\n */\nexport function splitOnDelim(delim: string) {\n const re = new RegExp('(' + delim + ')', 'g');\n return (str: string) =>\n str.split(re).filter(identity);\n}\n\n\n/**\n * Reduce fn that joins neighboring strings\n *\n * Given an array of strings, returns a new array\n * where all neighboring strings have been joined.\n *\n * #### Example:\n * ```js\n * let arr = [\"foo\", \"bar\", 1, \"baz\", \"\", \"qux\" ];\n * arr.reduce(joinNeighborsR,Line truncated
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||||
"/** @module common */ /** for typedoc */\nexport * from './common';\nexport * from './coreservices';\nexport * from './glob';\nexport * from './hof';\nexport * from './predicates';\nexport * from './queue';\nexport * from './strings';\nexport * from './trace';\n",
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||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { fromJson, toJson, identity, equals, inherit, map, extend, pick } from '../common/common';\nimport { isDefined, isNullOrUndefined } from '../common/predicates';\nimport { is } from '../common/hof';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * A registry for parameter types.\n *\n * This registry manages the built-in (and custom) parameter types.\n *\n * The built-in parameter types are:\n *\n * - [[string]]\n * - [[path]]\n * - [[query]]\n * - [[hash]]\n * - [[int]]\n * - [[bool]]\n * - [[date]]\n * - [[json]]\n * - [[any]]\n */\nexport class ParamTypes {\n /**\n * Built-in parameter type: `string`\n *\n * This parameter type coerces values to strings.\n * It matches anything (`new RegExp(\".*\")`) in the URL\n */\n static string: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `path`\n *\n * This parameter type is the default type for path parameters.\n * A path parameter is any parameter declared in the path portion of a url\n *\n * - `/foo/:param1/:param2`: two path parameters\n *\n * This parameter type behaves exactly like the [[string]] type with one exception.\n * When matching parameter values in the URL, the `path` type does not match forward slashes `/`.\n *\n * #### Angular 1 note:\n * In ng1, this type is overridden with one that pre-encodes slashes as `~2F` instead of `%2F`.\n * For more details about this angular 1 behavior, see: https://github.com/angular-ui/ui-router/issues/2598\n */\n static path: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `query`\n *\n * This parameter type is the default type for query/search parameters.\n * It behaves the same as the [[string]] parameter type.\n *\n * A query parameter is any parameter declared in the query/search portion of a url\n *\n * - `/bar?param2`: a query parameter\n */\n static query: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `hash`\n *\n * This parameter type is used for the `#` parameter (the hash)\n * It behaves the same as the [[string]] parameter type.\n * @coreapi\n */\n static hash: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `int`\n *\n * This parameter type serializes javascript integers (`number`s which represent an integer) to the URL.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'user',\n * url: '/user/{id:int}'\n * });\n * ```\n * ```js\n * $state.go('user', { id: 1298547 });\n * ```\n *\n * The URL will serialize to: `/user/1298547`.\n *\n * When the parameter value is read, it will be the `number` `1298547`, not the string `\"1298547\"`.\n */\n static int: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `bool`\n *\n * This parameter type serializes `true`/`false` as `1`/`0`\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'inbox',\n * url: '/inbox?{unread:bool}'\n * });\n * ```\n * ```js\n * $state.go('inbox', { unread: true });\n * ```\n *\n * The URL will serialize to: `/inbox?unread=1`.\n *\n * Conversely, if the url is `/inbox?unread=0`, the value of the `unread` parameter will be a `false`.\n */\n static bool: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `date`\n *\n * This parameter type can be used to serialize Javascript dates as parameter values.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'search',\n * url: '/search?{start:date}'\n * });\n * ```\n * ```js\n * $state.go('search', { start: new Date(2000, 0, 1) });\n * ```\n *\n * The URL will serialize to: `/search?start=2000-01-01`.\n *\n * Conversely, if the url is `/search?start=2016-12-25`, the value of the `start` parameter will be a `Date` object where:\n *\n * - `date.getFullYear() === 2016`\n * - `date.getMonth() === 11` (month is 0-based)\n * - `date.getDate() === 25`\n */\n static date: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `json`\n *\n * This parameter type can be used to serialize javascript objects into the URL using JSON serialization.\n *\n * #### Example:\n * This example serializes an plain javascript object to the URL\n * ```js\n * .state({\n * name: 'map',\n * url: '/map/{coords:json}'\n * });\n * ```\n * ```js\n * $state.go('map', { coords: { x: 10399.2, y: 49071 });\n * ```\n *\n * The URL will serialize to: `/map/%7B%22x%22%3A10399.2%2C%22y%22%3A49071%7D`\n */\n static json: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `any`\n *\n * This parameter type is used by default for url-less parameters (parameters that do not appear in the URL).\n * This type does not encode or decode.\n * It is compared using a deep `equals` comparison.\n *\n * #### Example:\n * This example definLine truncated
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||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, ancestors, Obj } from '../common/common';\nimport { StateObject } from '../state/stateObject';\n\n/** @internalapi */\nexport class StateParams {\n [key: string]: any;\n\n constructor(params: Obj = {}) {\n extend(this, params);\n }\n\n /**\n * Merges a set of parameters with all parameters inherited between the common parents of the\n * current state and a given destination state.\n *\n * @param {Object} newParams The set of parameters which will be composited with inherited params.\n * @param {Object} $current Internal definition of object representing the current state.\n * @param {Object} $to Internal definition of object representing state to transition to.\n */\n $inherit(newParams: Obj, $current: StateObject, $to: StateObject) {\n let parentParams: string[];\n const parents = ancestors($current, $to),\n inherited: Obj = {},\n inheritList: string[] = [];\n\n for (const i in parents) {\n if (!parents[i] || !parents[i].params) continue;\n parentParams = Object.keys(parents[i].params);\n if (!parentParams.length) continue;\n\n for (const j in parentParams) {\n if (inheritList.indexOf(parentParams[j]) >= 0) continue;\n inheritList.push(parentParams[j]);\n inherited[parentParams[j]] = this[parentParams[j]];\n }\n }\n return extend({}, inherited, newParams);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { fromJson, toJson, identity, equals, inherit, map, extend, pick } from '../common/common';\nimport { isDefined, isNullOrUndefined } from '../common/predicates';\nimport { is } from '../common/hof';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * A registry for parameter types.\n *\n * This registry manages the built-in (and custom) parameter types.\n *\n * The built-in parameter types are:\n *\n * - [[string]]\n * - [[path]]\n * - [[query]]\n * - [[hash]]\n * - [[int]]\n * - [[bool]]\n * - [[date]]\n * - [[json]]\n * - [[any]]\n */\nexport class ParamTypes {\n /**\n * Built-in parameter type: `string`\n *\n * This parameter type coerces values to strings.\n * It matches anything (`new RegExp(\".*\")`) in the URL\n */\n static string: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `path`\n *\n * This parameter type is the default type for path parameters.\n * A path parameter is any parameter declared in the path portion of a url\n *\n * - `/foo/:param1/:param2`: two path parameters\n *\n * This parameter type behaves exactly like the [[string]] type with one exception.\n * When matching parameter values in the URL, the `path` type does not match forward slashes `/`.\n *\n * #### Angular 1 note:\n * In ng1, this type is overridden with one that pre-encodes slashes as `~2F` instead of `%2F`.\n * For more details about this angular 1 behavior, see: https://github.com/angular-ui/ui-router/issues/2598\n */\n static path: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `query`\n *\n * This parameter type is the default type for query/search parameters.\n * It behaves the same as the [[string]] parameter type.\n *\n * A query parameter is any parameter declared in the query/search portion of a url\n *\n * - `/bar?param2`: a query parameter\n */\n static query: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `hash`\n *\n * This parameter type is used for the `#` parameter (the hash)\n * It behaves the same as the [[string]] parameter type.\n * @coreapi\n */\n static hash: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `int`\n *\n * This parameter type serializes javascript integers (`number`s which represent an integer) to the URL.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'user',\n * url: '/user/{id:int}'\n * });\n * ```\n * ```js\n * $state.go('user', { id: 1298547 });\n * ```\n *\n * The URL will serialize to: `/user/1298547`.\n *\n * When the parameter value is read, it will be the `number` `1298547`, not the string `\"1298547\"`.\n */\n static int: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `bool`\n *\n * This parameter type serializes `true`/`false` as `1`/`0`\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'inbox',\n * url: '/inbox?{unread:bool}'\n * });\n * ```\n * ```js\n * $state.go('inbox', { unread: true });\n * ```\n *\n * The URL will serialize to: `/inbox?unread=1`.\n *\n * Conversely, if the url is `/inbox?unread=0`, the value of the `unread` parameter will be a `false`.\n */\n static bool: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `date`\n *\n * This parameter type can be used to serialize Javascript dates as parameter values.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'search',\n * url: '/search?{start:date}'\n * });\n * ```\n * ```js\n * $state.go('search', { start: new Date(2000, 0, 1) });\n * ```\n *\n * The URL will serialize to: `/search?start=2000-01-01`.\n *\n * Conversely, if the url is `/search?start=2016-12-25`, the value of the `start` parameter will be a `Date` object where:\n *\n * - `date.getFullYear() === 2016`\n * - `date.getMonth() === 11` (month is 0-based)\n * - `date.getDate() === 25`\n */\n static date: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `json`\n *\n * This parameter type can be used to serialize javascript objects into the URL using JSON serialization.\n *\n * #### Example:\n * This example serializes an plain javascript object to the URL\n * ```js\n * .state({\n * name: 'map',\n * url: '/map/{coords:json}'\n * });\n * ```\n * ```js\n * $state.go('map', { coords: { x: 10399.2, y: 49071 });\n * ```\n *\n * The URL will serialize to: `/map/%7B%22x%22%3A10399.2%2C%22y%22%3A49071%7D`\n */\n static json: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `any`\n *\n * This parameter type is used by default for url-less parameters (parameters that do not appear in the URL).\n * This type does not encode or decode.\n * It is compared using a deep `equals` comparison.\n *\n * #### Example:\n * This example definLine truncated
|
||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, ancestors, Obj } from '../common/common';\nimport { StateObject } from '../state/stateObject';\n\n/** @internalapi */\nexport class StateParams {\n [key: string]: any;\n\n constructor(params: Obj = {}) {\n extend(this, params);\n }\n\n /**\n * Merges a set of parameters with all parameters inherited between the common parents of the\n * current state and a given destination state.\n *\n * @param {Object} newParams The set of parameters which will be composited with inherited params.\n * @param {Object} $current Internal definition of object representing the current state.\n * @param {Object} $to Internal definition of object representing state to transition to.\n */\n $inherit(newParams: Obj, $current: StateObject, $to: StateObject) {\n let parentParams: string[];\n const parents = ancestors($current, $to),\n inherited: Obj = {},\n inheritList: string[] = [];\n\n for (const i in parents) {\n if (!parents[i] || !parents[i].params) continue;\n parentParams = Object.keys(parents[i].params);\n if (!parentParams.length) continue;\n\n for (const j in parentParams) {\n if (inheritList.indexOf(parentParams[j]) >= 0) continue;\n inheritList.push(parentParams[j]);\n inherited[parentParams[j]] = this[parentParams[j]];\n }\n }\n return extend({}, inherited, newParams);\n }\n}\n\n",
|
||||
"/** @module path */ /** for typedoc */\nexport * from './pathNode';\nexport * from './pathUtils';\n",
|
||||
"/** @module resolve */ /** for typedoc */\nexport * from './interface';\nexport * from './resolvable';\nexport * from './resolveContext';\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { Obj, omit, noop, extend, inherit, values, applyPairs, tail, mapObj, identity } from '../common/common';\nimport { isDefined, isFunction, isString, isArray } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { prop, pattern, is, pipe, val } from '../common/hof';\nimport { StateDeclaration } from './interface';\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { Param } from '../params/param';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { services } from '../common/coreservices';\nimport { ResolvePolicy } from '../resolve/interface';\nimport { ParamFactory } from '../url/interface';\n\nconst parseUrl = (url: string): any => {\n if (!isString(url)) return false;\n const root = url.charAt(0) === '^';\n return { val: root ? url.substring(1) : url, root };\n};\n\nexport type BuilderFunction = (state: StateObject, parent?: BuilderFunction) => any;\n\ninterface Builders {\n [key: string]: BuilderFunction[];\n\n name: BuilderFunction[];\n parent: BuilderFunction[];\n data: BuilderFunction[];\n url: BuilderFunction[];\n navigable: BuilderFunction[];\n params: BuilderFunction[];\n views: BuilderFunction[];\n path: BuilderFunction[];\n includes: BuilderFunction[];\n resolvables: BuilderFunction[];\n}\n\nfunction nameBuilder(state: StateObject) {\n return state.name;\n}\n\nfunction selfBuilder(state: StateObject) {\n state.self.$$state = () => state;\n return state.self;\n}\n\nfunction dataBuilder(state: StateObject) {\n if (state.parent && state.parent.data) {\n state.data = state.self.data = inherit(state.parent.data, state.data);\n }\n return state.data;\n}\n\nconst getUrlBuilder = ($urlMatcherFactoryProvider: UrlMatcherFactory, root: () => StateObject) =>\n function urlBuilder(state: StateObject) {\n const stateDec: StateDeclaration = <any>state;\n\n // For future states, i.e., states whose name ends with `.**`,\n // match anything that starts with the url prefix\n if (stateDec && stateDec.url && stateDec.name && stateDec.name.match(/\\.\\*\\*$/)) {\n stateDec.url += '{remainder:any}'; // match any path (.*)\n }\n\n const parsed = parseUrl(stateDec.url),\n parent = state.parent;\n const url = !parsed\n ? stateDec.url\n : $urlMatcherFactoryProvider.compile(parsed.val, {\n params: state.params || {},\n paramMap: function(paramConfig: any, isSearch: boolean) {\n if (stateDec.reloadOnSearch === false && isSearch)\n paramConfig = extend(paramConfig || {}, { dynamic: true });\n return paramConfig;\n },\n });\n\n if (!url) return null;\n if (!$urlMatcherFactoryProvider.isMatcher(url)) throw new Error(`Invalid url '${url}' in state '${state}'`);\n return parsed && parsed.root ? url : ((parent && parent.navigable) || root()).url.append(<UrlMatcher>url);\n };\n\nconst getNavigableBuilder = (isRoot: (state: StateObject) => boolean) =>\n function navigableBuilder(state: StateObject) {\n return !isRoot(state) && state.url ? state : state.parent ? state.parent.navigable : null;\n };\n\nconst getParamsBuilder = (paramFactory: ParamFactory) =>\n function paramsBuilder(state: StateObject): { [key: string]: Param } {\n const makeConfigParam = (config: any, id: string) => paramFactory.fromConfig(id, null, config);\n const urlParams: Param[] = (state.url && state.url.parameters({ inherit: false })) || [];\n const nonUrlParams: Param[] = values(mapObj(omit(state.params || {}, urlParams.map(prop('id'))), makeConfigParam));\n return urlParams\n .concat(nonUrlParams)\n .map(p => [p.id, p])\n .reduce(applyPairs, {});\n };\n\nfunction pathBuilder(state: StateObject) {\n return state.parent ? state.parent.path.concat(state) : /*root*/ [state];\n}\n\nfunction includesBuilder(state: StateObject) {\n const includes = state.parent ? extend({}, state.parent.includes) : {};\n includes[state.name] = true;\n return includes;\n}\n\n/**\n * This is a [[StateBuilder.builder]] function for the `resolve:` block on a [[StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * validates the `resolve` property and converts it to a [[Resolvable]] array.\n *\n * resolve: input value can be:\n *\n * {\n * // analyzed but not injected\n * myFooResolve: function() { return \"myFooData\"; },\n *\n * // function.toString() parsed, \"DependencyName\" dep as string (not min-safe)\n * myBarResolve: function(DependencyName) { return DependencyName.fetchSomethingAsPromise() },\n *\n * // Array split; \"DependencyName\" dep as string\n * myBazResolve: [ \"DependencyName\", function(dep) { return dep.fetchSomethingAsPromise() },\n *\n *Line truncated
|
||||
"/** @module state */ /** for typedoc */\nimport { isString } from '../common/predicates';\nimport { StateOrName } from './interface';\nimport { StateObject } from './stateObject';\nimport { values } from '../common/common';\n\nexport class StateMatcher {\n constructor(private _states: { [key: string]: StateObject }) {}\n\n isRelative(stateName: string) {\n stateName = stateName || '';\n return stateName.indexOf('.') === 0 || stateName.indexOf('^') === 0;\n }\n\n find(stateOrName: StateOrName, base?: StateOrName, matchGlob = true): StateObject {\n if (!stateOrName && stateOrName !== '') return undefined;\n const isStr = isString(stateOrName);\n let name: string = isStr ? stateOrName : (<any>stateOrName).name;\n\n if (this.isRelative(name)) name = this.resolvePath(name, base);\n const state = this._states[name];\n\n if (state && (isStr || (!isStr && (state === stateOrName || state.self === stateOrName)))) {\n return state;\n } else if (isStr && matchGlob) {\n const _states = values(this._states);\n const matches = _states.filter(\n _state => _state.__stateObjectCache.nameGlob && _state.__stateObjectCache.nameGlob.matches(name),\n );\n\n if (matches.length > 1) {\n // tslint:disable-next-line:no-console\n console.log(\n `stateMatcher.find: Found multiple matches for ${name} using glob: `,\n matches.map(match => match.name),\n );\n }\n return matches[0];\n }\n return undefined;\n }\n\n resolvePath(name: string, base: StateOrName) {\n if (!base) throw new Error(`No reference point given for path '${name}'`);\n\n const baseState: StateObject = this.find(base);\n\n const splitName = name.split('.');\n const pathLength = splitName.length;\n let i = 0,\n current = baseState;\n\n for (; i < pathLength; i++) {\n if (splitName[i] === '' && i === 0) {\n current = baseState;\n continue;\n }\n if (splitName[i] === '^') {\n if (!current.parent) throw new Error(`Path '${name}' not valid for state '${baseState.name}'`);\n current = current.parent;\n continue;\n }\n break;\n }\n const relName = splitName.slice(i).join('.');\n return current.name + (current.name && relName ? '.' : '') + relName;\n }\n}\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { inArray } from '../common/common';\nimport { isString } from '../common/predicates';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { StateObject } from './stateObject';\nimport { StateBuilder } from './stateBuilder';\nimport { StateRegistryListener, StateRegistry } from './stateRegistry';\nimport { Disposable } from '../interface';\nimport { UrlRouter } from '../url/urlRouter';\nimport { prop } from '../common/hof';\nimport { StateMatcher } from './stateMatcher';\n\n/** @internalapi */\nexport class StateQueueManager implements Disposable {\n queue: StateObject[];\n matcher: StateMatcher;\n\n constructor(\n private $registry: StateRegistry,\n private $urlRouter: UrlRouter,\n public states: { [key: string]: StateObject },\n public builder: StateBuilder,\n public listeners: StateRegistryListener[],\n ) {\n this.queue = [];\n this.matcher = $registry.matcher;\n }\n\n /** @internalapi */\n dispose() {\n this.queue = [];\n }\n\n register(stateDecl: _StateDeclaration) {\n const queue = this.queue;\n const state = StateObject.create(stateDecl);\n const name = state.name;\n\n if (!isString(name)) throw new Error('State must have a valid name');\n if (this.states.hasOwnProperty(name) || inArray(queue.map(prop('name')), name))\n throw new Error(`State '${name}' is already defined`);\n\n queue.push(state);\n this.flush();\n\n return state;\n }\n\n flush() {\n const { queue, states, builder } = this;\n const registered: StateObject[] = [], // states that got registered\n orphans: StateObject[] = [], // states that don't yet have a parent registered\n previousQueueLength = {}; // keep track of how long the queue when an orphan was first encountered\n const getState = name => this.states.hasOwnProperty(name) && this.states[name];\n const notifyListeners = () => {\n if (registered.length) {\n this.listeners.forEach(listener => listener('registered', registered.map(s => s.self)));\n }\n };\n\n while (queue.length > 0) {\n const state: StateObject = queue.shift();\n const name = state.name;\n const result: StateObject = builder.build(state);\n const orphanIdx: number = orphans.indexOf(state);\n\n if (result) {\n const existingState = getState(name);\n if (existingState && existingState.name === name) {\n throw new Error(`State '${name}' is already defined`);\n }\n\n const existingFutureState = getState(name + '.**');\n if (existingFutureState) {\n // Remove future state of the same name\n this.$registry.deregister(existingFutureState);\n }\n\n states[name] = state;\n this.attachRoute(state);\n if (orphanIdx >= 0) orphans.splice(orphanIdx, 1);\n registered.push(state);\n continue;\n }\n\n const prev = previousQueueLength[name];\n previousQueueLength[name] = queue.length;\n if (orphanIdx >= 0 && prev === queue.length) {\n // Wait until two consecutive iterations where no additional states were dequeued successfully.\n // throw new Error(`Cannot register orphaned state '${name}'`);\n queue.push(state);\n notifyListeners();\n return states;\n } else if (orphanIdx < 0) {\n orphans.push(state);\n }\n\n queue.push(state);\n }\n\n notifyListeners();\n return states;\n }\n\n attachRoute(state: StateObject) {\n if (state.abstract || !state.url) return;\n\n this.$urlRouter.rule(this.$urlRouter.urlRuleFactory.create(state));\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { StateBuilder } from './stateBuilder';\nimport { StateQueueManager } from './stateQueueManager';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { BuilderFunction } from './stateBuilder';\nimport { StateOrName } from './interface';\nimport { removeFrom } from '../common/common';\nimport { UIRouter } from '../router';\nimport { propEq } from '../common/hof';\n\n/**\n * The signature for the callback function provided to [[StateRegistry.onStatesChanged]].\n *\n * This callback receives two parameters:\n *\n * @param event a string; either \"registered\" or \"deregistered\"\n * @param states the list of [[StateDeclaration]]s that were registered (or deregistered).\n */\nexport type StateRegistryListener = (event: 'registered' | 'deregistered', states: StateDeclaration[]) => void;\n\nexport class StateRegistry {\n private _root: StateObject;\n private states: { [key: string]: StateObject } = {};\n\n matcher: StateMatcher;\n private builder: StateBuilder;\n stateQueue: StateQueueManager;\n\n listeners: StateRegistryListener[] = [];\n\n /** @internalapi */\n constructor(private _router: UIRouter) {\n this.matcher = new StateMatcher(this.states);\n this.builder = new StateBuilder(this.matcher, _router.urlMatcherFactory);\n this.stateQueue = new StateQueueManager(this, _router.urlRouter, this.states, this.builder, this.listeners);\n this._registerRoot();\n }\n\n /** @internalapi */\n private _registerRoot() {\n const rootStateDef: StateDeclaration = {\n name: '',\n url: '^',\n views: null,\n params: {\n '#': { value: null, type: 'hash', dynamic: true },\n },\n abstract: true,\n };\n\n const _root = (this._root = this.stateQueue.register(rootStateDef));\n _root.navigable = null;\n }\n\n /** @internalapi */\n dispose() {\n this.stateQueue.dispose();\n this.listeners = [];\n this.get().forEach(state => this.get(state) && this.deregister(state));\n }\n\n /**\n * Listen for a State Registry events\n *\n * Adds a callback that is invoked when states are registered or deregistered with the StateRegistry.\n *\n * #### Example:\n * ```js\n * let allStates = registry.get();\n *\n * // Later, invoke deregisterFn() to remove the listener\n * let deregisterFn = registry.onStatesChanged((event, states) => {\n * switch(event) {\n * case: 'registered':\n * states.forEach(state => allStates.push(state));\n * break;\n * case: 'deregistered':\n * states.forEach(state => {\n * let idx = allStates.indexOf(state);\n * if (idx !== -1) allStates.splice(idx, 1);\n * });\n * break;\n * }\n * });\n * ```\n *\n * @param listener a callback function invoked when the registered states changes.\n * The function receives two parameters, `event` and `state`.\n * See [[StateRegistryListener]]\n * @return a function that deregisters the listener\n */\n onStatesChanged(listener: StateRegistryListener): () => void {\n this.listeners.push(listener);\n return function deregisterListener() {\n removeFrom(this.listeners)(listener);\n }.bind(this);\n }\n\n /**\n * Gets the implicit root state\n *\n * Gets the root of the state tree.\n * The root state is implicitly created by UI-Router.\n * Note: this returns the internal [[StateObject]] representation, not a [[StateDeclaration]]\n *\n * @return the root [[StateObject]]\n */\n root() {\n return this._root;\n }\n\n /**\n * Adds a state to the registry\n *\n * Registers a [[StateDeclaration]] or queues it for registration.\n *\n * Note: a state will be queued if the state's parent isn't yet registered.\n *\n * @param stateDefinition the definition of the state to register.\n * @returns the internal [[StateObject]] object.\n * If the state was successfully registered, then the object is fully built (See: [[StateBuilder]]).\n * If the state was only queued, then the object is not fully built.\n */\n register(stateDefinition: _StateDeclaration): StateObject {\n return this.stateQueue.register(stateDefinition);\n }\n\n /** @hidden */\n private _deregisterTree(state: StateObject) {\n const all = this.get().map(s => s.$$state());\n const getChildren = (states: StateObject[]) => {\n const _children = all.filter(s => states.indexOf(s.parent) !== -1);\n return _children.length === 0 ? _children : _children.concat(getChildren(_children));\n };\n\n const children = getChildren([state]);\n const deregistered: StateObject[] = [state].concat(children).reverse();\n\n deregistered.forEach(_state => {\n const $ur = this._router.urlRouter;\n // Remove URL rule\n $ur\n .rules()\n Line truncated
|
||||
"/**\n * @coreapi\n * @module url\n */\n/** for typedoc */\nimport {\n map,\n defaults,\n inherit,\n identity,\n unnest,\n tail,\n find,\n Obj,\n pairs,\n allTrueR,\n unnestR,\n arrayTuples,\n} from '../common/common';\nimport { prop, propEq } from '../common/hof';\nimport { isArray, isString, isDefined } from '../common/predicates';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { RawParams } from '../params/interface';\nimport { ParamFactory } from './interface';\nimport { joinNeighborsR, splitOnDelim } from '../common/strings';\n\n/** @hidden */\nfunction quoteRegExp(str: any, param?: any) {\n let surroundPattern = ['', ''],\n result = str.replace(/[\\\\\\[\\]\\^$*+?.()|{}]/g, '\\\\$&');\n if (!param) return result;\n\n switch (param.squash) {\n case false:\n surroundPattern = ['(', ')' + (param.isOptional ? '?' : '')];\n break;\n case true:\n result = result.replace(/\\/$/, '');\n surroundPattern = ['(?:/(', ')|/)?'];\n break;\n default:\n surroundPattern = [`(${param.squash}|`, ')?'];\n break;\n }\n return result + surroundPattern[0] + param.type.pattern.source + surroundPattern[1];\n}\n\n/** @hidden */\nconst memoizeTo = (obj: Obj, _prop: string, fn: Function) => (obj[_prop] = obj[_prop] || fn());\n\n/** @hidden */\nconst splitOnSlash = splitOnDelim('/');\n\n/** @hidden */\ninterface UrlMatcherCache {\n segments?: any[];\n weights?: number[];\n path?: UrlMatcher[];\n parent?: UrlMatcher;\n pattern?: RegExp;\n}\n\n/**\n * Matches URLs against patterns.\n *\n * Matches URLs against patterns and extracts named parameters from the path or the search\n * part of the URL.\n *\n * A URL pattern consists of a path pattern, optionally followed by '?' and a list of search (query)\n * parameters. Multiple search parameter names are separated by '&'. Search parameters\n * do not influence whether or not a URL is matched, but their values are passed through into\n * the matched parameters returned by [[UrlMatcher.exec]].\n *\n * - *Path parameters* are defined using curly brace placeholders (`/somepath/{param}`)\n * or colon placeholders (`/somePath/:param`).\n *\n * - *A parameter RegExp* may be defined for a param after a colon\n * (`/somePath/{param:[a-zA-Z0-9]+}`) in a curly brace placeholder.\n * The regexp must match for the url to be matched.\n * Should the regexp itself contain curly braces, they must be in matched pairs or escaped with a backslash.\n *\n * Note: a RegExp parameter will encode its value using either [[ParamTypes.path]] or [[ParamTypes.query]].\n *\n * - *Custom parameter types* may also be specified after a colon (`/somePath/{param:int}`) in curly brace parameters.\n * See [[UrlMatcherFactory.type]] for more information.\n *\n * - *Catch-all parameters* are defined using an asterisk placeholder (`/somepath/*catchallparam`).\n * A catch-all * parameter value will contain the remainder of the URL.\n *\n * ---\n *\n * Parameter names may contain only word characters (latin letters, digits, and underscore) and\n * must be unique within the pattern (across both path and search parameters).\n * A path parameter matches any number of characters other than '/'. For catch-all\n * placeholders the path parameter matches any number of characters.\n *\n * Examples:\n *\n * * `'/hello/'` - Matches only if the path is exactly '/hello/'. There is no special treatment for\n * trailing slashes, and patterns have to match the entire path, not just a prefix.\n * * `'/user/:id'` - Matches '/user/bob' or '/user/1234!!!' or even '/user/' but not '/user' or\n * '/user/bob/details'. The second path segment will be captured as the parameter 'id'.\n * * `'/user/{id}'` - Same as the previous example, but using curly brace syntax.\n * * `'/user/{id:[^/]*}'` - Same as the previous example.\n * * `'/user/{id:[0-9a-fA-F]{1,8}}'` - Similar to the previous example, but only matches if the id\n * parameter consists of 1 to 8 hex digits.\n * * `'/files/{path:.*}'` - Matches any URL starting with '/files/' and captures the rest of the\n * path into the parameter 'path'.\n * * `'/files/*path'` - ditto.\n * * `'/calendar/{start:date}'` - Matches \"/calendar/2014-11-12\" (because the pattern defined\n * in the built-in `date` ParamType matches `2014-11-12`) and provides a Date object in $stateParams.start\n *\n */\nexport class UrlMatcher {\n /** @hidden */\n static nameValidator: RegExp = /^\\w+([-.]+\\w+)*(?:\\[\\])?$/;\n\n /** @hidden */\n private _cache: UrlMatcherCache = { path: [this] };\n /** @hidden */\n private _children: UrlMatcher[] = [];\n /** @hidden */\n private _params: Param[] = [];\n /** @hidden */\n private _segments: string[] = [];\n /** @hidden */\n private _compiled: string[] = [];\n\n /** The pattern that was passed into the constructor */\n public pattern: string;\n\n /** @hidden */\n static encodeDashes(str: string) {\n // Replace dashLine truncated
|
||||
"/**\n * @internalapi\n * @module url\n */ /** for typedoc */\nimport { forEach, extend } from '../common/common';\nimport { isObject, isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { ParamTypeDefinition } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { ParamType } from '../params/paramType';\nimport { ParamFactory, UrlMatcherConfig } from './interface';\n\n/**\n * Factory for [[UrlMatcher]] instances.\n *\n * The factory is available to ng1 services as\n * `$urlMatcherFactory` or ng1 providers as `$urlMatcherFactoryProvider`.\n */\nexport class UrlMatcherFactory implements Disposable, UrlMatcherConfig {\n /** @hidden */ paramTypes = new ParamTypes();\n /** @hidden */ _isCaseInsensitive = false;\n /** @hidden */ _isStrictMode = true;\n /** @hidden */ _defaultSquashPolicy: boolean | string = false;\n\n /** @internalapi Creates a new [[Param]] for a given location (DefType) */\n paramFactory: ParamFactory = {\n /** Creates a new [[Param]] from a CONFIG block */\n fromConfig: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.CONFIG, this),\n\n /** Creates a new [[Param]] from a url PATH */\n fromPath: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.PATH, this),\n\n /** Creates a new [[Param]] from a url SEARCH */\n fromSearch: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.SEARCH, this),\n };\n\n constructor() {\n extend(this, { UrlMatcher, Param });\n }\n\n /** @inheritdoc */\n caseInsensitive(value?: boolean): boolean {\n return (this._isCaseInsensitive = isDefined(value) ? value : this._isCaseInsensitive);\n }\n\n /** @inheritdoc */\n strictMode(value?: boolean): boolean {\n return (this._isStrictMode = isDefined(value) ? value : this._isStrictMode);\n }\n\n /** @inheritdoc */\n defaultSquashPolicy(value?: boolean | string) {\n if (isDefined(value) && value !== true && value !== false && !isString(value))\n throw new Error(`Invalid squash policy: ${value}. Valid policies: false, true, arbitrary-string`);\n return (this._defaultSquashPolicy = isDefined(value) ? value : this._defaultSquashPolicy);\n }\n\n /** @hidden */\n private _getConfig = config =>\n extend({ strict: this._isStrictMode, caseInsensitive: this._isCaseInsensitive }, config);\n\n /**\n * Creates a [[UrlMatcher]] for the specified pattern.\n *\n * @param pattern The URL pattern.\n * @param config The config object hash.\n * @returns The UrlMatcher.\n */\n compile(pattern: string, config?: { [key: string]: any }) {\n return new UrlMatcher(pattern, this.paramTypes, this.paramFactory, this._getConfig(config));\n }\n\n /**\n * Returns true if the specified object is a [[UrlMatcher]], or false otherwise.\n *\n * @param object The object to perform the type check against.\n * @returns `true` if the object matches the `UrlMatcher` interface, by\n * implementing all the same methods.\n */\n isMatcher(object: any): boolean {\n // TODO: typeof?\n if (!isObject(object)) return false;\n let result = true;\n\n forEach(UrlMatcher.prototype, (val, name) => {\n if (isFunction(val)) result = result && (isDefined(object[name]) && isFunction(object[name]));\n });\n return result;\n }\n\n /**\n * Creates and registers a custom [[ParamType]] object\n *\n * A [[ParamType]] can be used to generate URLs with typed parameters.\n *\n * @param name The type name.\n * @param definition The type definition. See [[ParamTypeDefinition]] for information on the values accepted.\n * @param definitionFn A function that is injected before the app runtime starts.\n * The result of this function should be a [[ParamTypeDefinition]].\n * The result is merged into the existing `definition`.\n * See [[ParamType]] for information on the values accepted.\n *\n * @returns - if a type was registered: the [[UrlMatcherFactory]]\n * - if only the `name` parameter was specified: the currently registered [[ParamType]] object, or undefined\n *\n * Note: Register custom types *before using them* in a state definition.\n *\n * See [[ParamTypeDefinition]] for examples\n */\n type(name: string, definition?: ParamTypeDefinition, definitionFn?: () => ParamTypeDefinition) {\n const type = this.paramTypes.type(name, definition, definitionFn);\n return !isDefined(definition) ? type : this;\n }\n\n /** @hidden */\n $get() {\n this.paramTypes.enqueue = false;\n this.paramTypes._flushTypeQueue();\n return this;\n }\n\n /** @internalapi */\n dispose() {\n this.paramTypes.dispose();\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\nimport { UrlMatcher } from './urlMatcher';\nimport { isString, isDefined, isFunction, isState } from '../common/predicates';\nimport { UIRouter } from '../router';\nimport { identity, extend } from '../common/common';\nimport { is, pattern } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport {\n UrlRule,\n UrlRuleMatchFn,\n UrlRuleHandlerFn,\n UrlRuleType,\n UrlParts,\n MatcherUrlRule,\n StateRule,\n RegExpRule,\n} from './interface';\n\n/**\n * Creates a [[UrlRule]]\n *\n * Creates a [[UrlRule]] from a:\n *\n * - `string`\n * - [[UrlMatcher]]\n * - `RegExp`\n * - [[StateObject]]\n * @internalapi\n */\nexport class UrlRuleFactory {\n static isUrlRule = obj => obj && ['type', 'match', 'handler'].every(key => isDefined(obj[key]));\n\n constructor(public router: UIRouter) {}\n\n compile(str: string) {\n return this.router.urlMatcherFactory.compile(str);\n }\n\n create(\n what: string | UrlMatcher | StateObject | RegExp | UrlRuleMatchFn,\n handler?: string | UrlRuleHandlerFn,\n ): UrlRule {\n const makeRule = pattern([\n [isString, (_what: string) => makeRule(this.compile(_what))],\n [is(UrlMatcher), (_what: UrlMatcher) => this.fromUrlMatcher(_what, handler)],\n [isState, (_what: StateObject) => this.fromState(_what, this.router)],\n [is(RegExp), (_what: RegExp) => this.fromRegExp(_what, handler)],\n [isFunction, (_what: UrlRuleMatchFn) => new BaseUrlRule(_what, handler as UrlRuleHandlerFn)],\n ]);\n\n const rule = makeRule(what);\n if (!rule) throw new Error(\"invalid 'what' in when()\");\n return rule;\n }\n\n /**\n * A UrlRule which matches based on a UrlMatcher\n *\n * The `handler` may be either a `string`, a [[UrlRuleHandlerFn]] or another [[UrlMatcher]]\n *\n * ## Handler as a function\n *\n * If `handler` is a function, the function is invoked with:\n *\n * - matched parameter values ([[RawParams]] from [[UrlMatcher.exec]])\n * - url: the current Url ([[UrlParts]])\n * - router: the router object ([[UIRouter]])\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, match => \"/home/\" + match.fooId + \"/\" + match.barId);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n *\n * ## Handler as UrlMatcher\n *\n * If `handler` is a UrlMatcher, the handler matcher is used to create the new url.\n * The `handler` UrlMatcher is formatted using the matched param from the first matcher.\n * The url is replaced with the result.\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var handler = $umf.compile(\"/home/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, handler);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n */\n fromUrlMatcher(urlMatcher: UrlMatcher, handler: string | UrlMatcher | UrlRuleHandlerFn): MatcherUrlRule {\n let _handler: UrlRuleHandlerFn = handler as any;\n if (isString(handler)) handler = this.router.urlMatcherFactory.compile(handler);\n if (is(UrlMatcher)(handler)) _handler = (match: RawParams) => (handler as UrlMatcher).format(match);\n\n function matchUrlParamters(url: UrlParts): RawParams {\n const params = urlMatcher.exec(url.path, url.search, url.hash);\n return urlMatcher.validates(params) && params;\n }\n\n // Prioritize URLs, lowest to highest:\n // - Some optional URL parameters, but none matched\n // - No optional parameters in URL\n // - Some optional parameters, some matched\n // - Some optional parameters, all matched\n function matchPriority(params: RawParams): number {\n const optional = urlMatcher.parameters().filter(param => param.isOptional);\n if (!optional.length) return 0.000001;\n const matched = optional.filter(param => params[param.id]);\n return matched.length / optional.length;\n }\n\n const details = { urlMatcher, matchPriority, type: 'URLMATCHER' };\n return extend(new BaseUrlRule(matchUrlParamters, _handler), details) as MatcherUrlRule;\n }\n\n /**\n * A UrlRule which matches a state by its url\n *\n * #### Example:\n * ```js\n * var rule = factory.fromState($state.get('foo'), router);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match);\n * // Starts a transition to 'foo' with params: { fooId: '123', barId: '456' }\n * ```\n */\n fromState(state: StateObject, router: UIRouter): StateRule {\n /**\n * Handles match by transitioning to matched state\n *\n * First Line truncated
|
||||
"/**\n * @internalapi\n * @module url\n */\n/** for typedoc */\nimport { createProxyFunctions, extend, removeFrom } from '../common/common';\nimport { isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { RawParams } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { is, pattern, val } from '../common/hof';\nimport { UrlRuleFactory } from './urlRule';\nimport { TargetState } from '../state/targetState';\nimport {\n MatcherUrlRule,\n MatchResult,\n UrlParts,\n UrlRule,\n UrlRuleHandlerFn,\n UrlRuleMatchFn,\n UrlRulesApi,\n UrlSyncApi,\n} from './interface';\nimport { TargetStateDef } from '../state/interface';\nimport { stripLastPathElement } from '../common';\n\n/** @hidden */\nfunction appendBasePath(url: string, isHtml5: boolean, absolute: boolean, baseHref: string): string {\n if (baseHref === '/') return url;\n if (isHtml5) return stripLastPathElement(baseHref) + url;\n if (absolute) return baseHref.slice(1) + url;\n return url;\n}\n\n/** @hidden */\nconst prioritySort = (a: UrlRule, b: UrlRule) => (b.priority || 0) - (a.priority || 0);\n\n/** @hidden */\nconst typeSort = (a: UrlRule, b: UrlRule) => {\n const weights = { STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1 };\n return (weights[a.type] || 0) - (weights[b.type] || 0);\n};\n\n/** @hidden */\nconst urlMatcherSort = (a: MatcherUrlRule, b: MatcherUrlRule) =>\n !a.urlMatcher || !b.urlMatcher ? 0 : UrlMatcher.compare(a.urlMatcher, b.urlMatcher);\n\n/** @hidden */\nconst idSort = (a: UrlRule, b: UrlRule) => {\n // Identically sorted STATE and URLMATCHER best rule will be chosen by `matchPriority` after each rule matches the URL\n const useMatchPriority = { STATE: true, URLMATCHER: true };\n const equal = useMatchPriority[a.type] && useMatchPriority[b.type];\n return equal ? 0 : (a.$id || 0) - (b.$id || 0);\n};\n\n/**\n * Default rule priority sorting function.\n *\n * Sorts rules by:\n *\n * - Explicit priority (set rule priority using [[UrlRulesApi.when]])\n * - Rule type (STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1)\n * - `UrlMatcher` specificity ([[UrlMatcher.compare]]): works for STATE and URLMATCHER types to pick the most specific rule.\n * - Rule registration order (for rule types other than STATE and URLMATCHER)\n * - Equally sorted State and UrlMatcher rules will each match the URL.\n * Then, the *best* match is chosen based on how many parameter values were matched.\n *\n * @coreapi\n */\nlet defaultRuleSortFn: (a: UrlRule, b: UrlRule) => number;\ndefaultRuleSortFn = (a, b) => {\n let cmp = prioritySort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = typeSort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = urlMatcherSort(a as MatcherUrlRule, b as MatcherUrlRule);\n if (cmp !== 0) return cmp;\n\n return idSort(a, b);\n};\n\n/**\n * Updates URL and responds to URL changes\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class updates the URL when the state changes.\n * It also responds to changes in the URL.\n */\nexport class UrlRouter implements UrlRulesApi, UrlSyncApi, Disposable {\n /** used to create [[UrlRule]] objects for common cases */\n public urlRuleFactory: UrlRuleFactory;\n\n /** @hidden */ private _router: UIRouter;\n /** @hidden */ private location: string;\n /** @hidden */ private _sortFn = defaultRuleSortFn;\n /** @hidden */ private _stopFn: Function;\n /** @hidden */ _rules: UrlRule[] = [];\n /** @hidden */ private _otherwiseFn: UrlRule;\n /** @hidden */ interceptDeferred = false;\n /** @hidden */ private _id = 0;\n /** @hidden */ private _sorted = false;\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this.urlRuleFactory = new UrlRuleFactory(router);\n createProxyFunctions(val(UrlRouter.prototype), this, val(this));\n }\n\n /** @internalapi */\n dispose() {\n this.listen(false);\n this._rules = [];\n delete this._otherwiseFn;\n }\n\n /** @inheritdoc */\n sort(compareFn?: (a: UrlRule, b: UrlRule) => number) {\n this._rules = this.stableSort(this._rules, (this._sortFn = compareFn || this._sortFn));\n this._sorted = true;\n }\n\n private ensureSorted() {\n this._sorted || this.sort();\n }\n\n private stableSort(arr, compareFn) {\n const arrOfWrapper = arr.map((elem, idx) => ({ elem, idx }));\n\n arrOfWrapper.sort((wrapperA, wrapperB) => {\n const cmpDiff = compareFn(wrapperA.elem, wrapperB.elem);\n return cmpDiff === 0 ? wrapperA.idx - wrapperB.idx : cmpDiff;\n });\n\n return arrOfWrapper.map(wrapper => wrapper.elem);\n }\n\n /**\n * Given a URL, check all rules and return the best [[MatchResult]]\n * @param url\n * @returns {MatchResult}\n */\n match(urlLine truncated
|
||||
"/**\n * @coreapi\n * @module view\n */ /** for typedoc */\nimport { equals, applyPairs, removeFrom, TypedMap, inArray } from '../common/common';\nimport { curry, prop } from '../common/hof';\nimport { isString, isArray } from '../common/predicates';\nimport { trace } from '../common/trace';\nimport { PathNode } from '../path/pathNode';\nimport { ActiveUIView, ViewContext, ViewConfig } from './interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nexport type ViewConfigFactory = (path: PathNode[], decl: _ViewDeclaration) => ViewConfig | ViewConfig[];\n\nexport interface ViewServicePluginAPI {\n _rootViewContext(context?: ViewContext): ViewContext;\n _viewConfigFactory(viewType: string, factory: ViewConfigFactory);\n _registeredUIViews(): ActiveUIView[];\n _activeViewConfigs(): ViewConfig[];\n _onSync(listener: ViewSyncListener): Function;\n}\n\n// A uiView and its matching viewConfig\nexport interface ViewTuple {\n uiView: ActiveUIView;\n viewConfig: ViewConfig;\n}\n\nexport interface ViewSyncListener {\n (viewTuples: ViewTuple[]): void;\n}\n\n/**\n * The View service\n *\n * This service pairs existing `ui-view` components (which live in the DOM)\n * with view configs (from the state declaration objects: [[StateDeclaration.views]]).\n *\n * - After a successful Transition, the views from the newly entered states are activated via [[activateViewConfig]].\n * The views from exited states are deactivated via [[deactivateViewConfig]].\n * (See: the [[registerActivateViews]] Transition Hook)\n *\n * - As `ui-view` components pop in and out of existence, they register themselves using [[registerUIView]].\n *\n * - When the [[sync]] function is called, the registered `ui-view`(s) ([[ActiveUIView]])\n * are configured with the matching [[ViewConfig]](s)\n *\n */\nexport class ViewService {\n private _uiViews: ActiveUIView[] = [];\n private _viewConfigs: ViewConfig[] = [];\n private _rootContext: ViewContext;\n private _viewConfigFactories: { [key: string]: ViewConfigFactory } = {};\n private _listeners: ViewSyncListener[] = [];\n\n public _pluginapi: ViewServicePluginAPI = {\n _rootViewContext: this._rootViewContext.bind(this),\n _viewConfigFactory: this._viewConfigFactory.bind(this),\n _registeredUIViews: () => this._uiViews,\n _activeViewConfigs: () => this._viewConfigs,\n _onSync: (listener: ViewSyncListener) => {\n this._listeners.push(listener);\n return () => removeFrom(this._listeners, listener);\n },\n };\n\n /**\n * Given a ui-view and a ViewConfig, determines if they \"match\".\n *\n * A ui-view has a fully qualified name (fqn) and a context object. The fqn is built from its overall location in\n * the DOM, describing its nesting relationship to any parent ui-view tags it is nested inside of.\n *\n * A ViewConfig has a target ui-view name and a context anchor. The ui-view name can be a simple name, or\n * can be a segmented ui-view path, describing a portion of a ui-view fqn.\n *\n * In order for a ui-view to match ViewConfig, ui-view's $type must match the ViewConfig's $type\n *\n * If the ViewConfig's target ui-view name is a simple name (no dots), then a ui-view matches if:\n * - the ui-view's name matches the ViewConfig's target name\n * - the ui-view's context matches the ViewConfig's anchor\n *\n * If the ViewConfig's target ui-view name is a segmented name (with dots), then a ui-view matches if:\n * - There exists a parent ui-view where:\n * - the parent ui-view's name matches the first segment (index 0) of the ViewConfig's target name\n * - the parent ui-view's context matches the ViewConfig's anchor\n * - And the remaining segments (index 1..n) of the ViewConfig's target name match the tail of the ui-view's fqn\n *\n * Example:\n *\n * DOM:\n * <ui-view> <!-- created in the root context (name: \"\") -->\n * <ui-view name=\"foo\"> <!-- created in the context named: \"A\" -->\n * <ui-view> <!-- created in the context named: \"A.B\" -->\n * <ui-view name=\"bar\"> <!-- created in the context named: \"A.B.C\" -->\n * </ui-view>\n * </ui-view>\n * </ui-view>\n * </ui-view>\n *\n * uiViews: [\n * { fqn: \"$default\", creationContext: { name: \"\" } },\n * { fqn: \"$default.foo\", creationContext: { name: \"A\" } },\n * { fqn: \"$default.foo.$default\", creationContext: { name: \"A.B\" } }\n * { fqn: \"$default.foo.$default.bar\", creationContext: { name: \"A.B.C\" } }\n * ]\n *\n * These four view configs all match the ui-view with the fqn: \"$default.foo.$default.bar\":\n *\n * - ViewConfig1: { uiViewName: \"bar\", uiViewContextAnchor: \"A.B.C\" }\n * - ViewConfig2: { uiViewName: \"$default.bar\", uiViewContextAnchor: \"A.B\" }\n * - ViewConfig3: { uiViewName: \"foo.$dLine truncated
|
||||
"/** @module state */ /** for typedoc */\nimport { Obj, omit, noop, extend, inherit, values, applyPairs, tail, mapObj, identity } from '../common/common';\nimport { isDefined, isFunction, isString, isArray } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { prop, pattern, is, pipe, val } from '../common/hof';\nimport { StateDeclaration } from './interface';\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { Param } from '../params/param';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { services } from '../common/coreservices';\nimport { ResolvePolicy } from '../resolve/interface';\nimport { ParamFactory } from '../url/interface';\n\nconst parseUrl = (url: string): any => {\n if (!isString(url)) return false;\n const root = url.charAt(0) === '^';\n return { val: root ? url.substring(1) : url, root };\n};\n\nexport type BuilderFunction = (state: StateObject, parent?: BuilderFunction) => any;\n\ninterface Builders {\n [key: string]: BuilderFunction[];\n\n name: BuilderFunction[];\n parent: BuilderFunction[];\n data: BuilderFunction[];\n url: BuilderFunction[];\n navigable: BuilderFunction[];\n params: BuilderFunction[];\n views: BuilderFunction[];\n path: BuilderFunction[];\n includes: BuilderFunction[];\n resolvables: BuilderFunction[];\n}\n\n\nfunction nameBuilder(state: StateObject) {\n return state.name;\n}\n\nfunction selfBuilder(state: StateObject) {\n state.self.$$state = () => state;\n return state.self;\n}\n\nfunction dataBuilder(state: StateObject) {\n if (state.parent && state.parent.data) {\n state.data = state.self.data = inherit(state.parent.data, state.data);\n }\n return state.data;\n}\n\nconst getUrlBuilder = ($urlMatcherFactoryProvider: UrlMatcherFactory, root: () => StateObject) =>\nfunction urlBuilder(state: StateObject) {\n const stateDec: StateDeclaration = <any> state;\n\n // For future states, i.e., states whose name ends with `.**`,\n // match anything that starts with the url prefix\n if (stateDec && stateDec.url && stateDec.name && stateDec.name.match(/\\.\\*\\*$/)) {\n stateDec.url += '{remainder:any}'; // match any path (.*)\n }\n\n const parsed = parseUrl(stateDec.url), parent = state.parent;\n const url = !parsed ? stateDec.url : $urlMatcherFactoryProvider.compile(parsed.val, {\n params: state.params || {},\n paramMap: function (paramConfig: any, isSearch: boolean) {\n if (stateDec.reloadOnSearch === false && isSearch) paramConfig = extend(paramConfig || {}, { dynamic: true });\n return paramConfig;\n },\n });\n\n if (!url) return null;\n if (!$urlMatcherFactoryProvider.isMatcher(url)) throw new Error(`Invalid url '${url}' in state '${state}'`);\n return (parsed && parsed.root) ? url : ((parent && parent.navigable) || root()).url.append(<UrlMatcher> url);\n};\n\nconst getNavigableBuilder = (isRoot: (state: StateObject) => boolean) =>\nfunction navigableBuilder(state: StateObject) {\n return !isRoot(state) && state.url ? state : (state.parent ? state.parent.navigable : null);\n};\n\nconst getParamsBuilder = (paramFactory: ParamFactory) =>\nfunction paramsBuilder(state: StateObject): { [key: string]: Param } {\n const makeConfigParam = (config: any, id: string) => paramFactory.fromConfig(id, null, config);\n const urlParams: Param[] = (state.url && state.url.parameters({ inherit: false })) || [];\n const nonUrlParams: Param[] = values(mapObj(omit(state.params || {}, urlParams.map(prop('id'))), makeConfigParam));\n return urlParams.concat(nonUrlParams).map(p => [p.id, p]).reduce(applyPairs, {});\n};\n\nfunction pathBuilder(state: StateObject) {\n return state.parent ? state.parent.path.concat(state) : /*root*/ [state];\n}\n\nfunction includesBuilder(state: StateObject) {\n const includes = state.parent ? extend({}, state.parent.includes) : {};\n includes[state.name] = true;\n return includes;\n}\n\n/**\n * This is a [[StateBuilder.builder]] function for the `resolve:` block on a [[StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * validates the `resolve` property and converts it to a [[Resolvable]] array.\n *\n * resolve: input value can be:\n *\n * {\n * // analyzed but not injected\n * myFooResolve: function() { return \"myFooData\"; },\n *\n * // function.toString() parsed, \"DependencyName\" dep as string (not min-safe)\n * myBarResolve: function(DependencyName) { return DependencyName.fetchSomethingAsPromise() },\n *\n * // Array split; \"DependencyName\" dep as string\n * myBazResolve: [ \"DependencyName\", function(dep) { return dep.fetchSomethingAsPromise() },\n *\n * // Array split; DependencyType dep as token (compared using ===)\n * myQuxResolve: [ DependencyType, function(dep) { return deLine truncated
|
||||
"/** @module state */ /** for typedoc */\nimport { isString } from '../common/predicates';\nimport { StateOrName } from './interface';\nimport { StateObject } from './stateObject';\nimport { values } from '../common/common';\n\nexport class StateMatcher {\n constructor (private _states: { [key: string]: StateObject }) { }\n\n isRelative(stateName: string) {\n stateName = stateName || '';\n return stateName.indexOf('.') === 0 || stateName.indexOf('^') === 0;\n }\n\n\n find(stateOrName: StateOrName, base?: StateOrName, matchGlob = true): StateObject {\n if (!stateOrName && stateOrName !== '') return undefined;\n const isStr = isString(stateOrName);\n let name: string = isStr ? stateOrName : (<any>stateOrName).name;\n\n if (this.isRelative(name)) name = this.resolvePath(name, base);\n const state = this._states[name];\n\n if (state && (isStr || (!isStr && (state === stateOrName || state.self === stateOrName)))) {\n return state;\n } else if (isStr && matchGlob) {\n const _states = values(this._states);\n const matches = _states.filter(_state =>\n _state.__stateObjectCache.nameGlob &&\n _state.__stateObjectCache.nameGlob.matches(name),\n );\n\n if (matches.length > 1) {\n // tslint:disable-next-line:no-console\n console.log(`stateMatcher.find: Found multiple matches for ${name} using glob: `, matches.map(match => match.name));\n }\n return matches[0];\n }\n return undefined;\n }\n\n resolvePath(name: string, base: StateOrName) {\n if (!base) throw new Error(`No reference point given for path '${name}'`);\n\n const baseState: StateObject = this.find(base);\n\n const splitName = name.split('.');\n const pathLength = splitName.length;\n let i = 0, current = baseState;\n\n for (; i < pathLength; i++) {\n if (splitName[i] === '' && i === 0) {\n current = baseState;\n continue;\n }\n if (splitName[i] === '^') {\n if (!current.parent) throw new Error(`Path '${name}' not valid for state '${baseState.name}'`);\n current = current.parent;\n continue;\n }\n break;\n }\n const relName = splitName.slice(i).join('.');\n return current.name + (current.name && relName ? '.' : '') + relName;\n }\n}\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { inArray } from '../common/common';\nimport { isString } from '../common/predicates';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { StateObject } from './stateObject';\nimport { StateBuilder } from './stateBuilder';\nimport { StateRegistryListener, StateRegistry } from './stateRegistry';\nimport { Disposable } from '../interface';\nimport { UrlRouter } from '../url/urlRouter';\nimport { prop } from '../common/hof';\nimport { StateMatcher } from './stateMatcher';\n\n/** @internalapi */\nexport class StateQueueManager implements Disposable {\n queue: StateObject[];\n matcher: StateMatcher;\n\n constructor(\n private $registry: StateRegistry,\n private $urlRouter: UrlRouter,\n public states: { [key: string]: StateObject; },\n public builder: StateBuilder,\n public listeners: StateRegistryListener[]) {\n this.queue = [];\n this.matcher = $registry.matcher;\n }\n\n /** @internalapi */\n dispose() {\n this.queue = [];\n }\n\n register(stateDecl: _StateDeclaration) {\n const queue = this.queue;\n const state = StateObject.create(stateDecl);\n const name = state.name;\n\n if (!isString(name)) throw new Error('State must have a valid name');\n if (this.states.hasOwnProperty(name) || inArray(queue.map(prop('name')), name))\n throw new Error(`State '${name}' is already defined`);\n\n queue.push(state);\n this.flush();\n\n return state;\n }\n\n flush() {\n const { queue, states, builder } = this;\n const registered: StateObject[] = [], // states that got registered\n orphans: StateObject[] = [], // states that don't yet have a parent registered\n previousQueueLength = {}; // keep track of how long the queue when an orphan was first encountered\n const getState = (name) =>\n this.states.hasOwnProperty(name) && this.states[name];\n\n while (queue.length > 0) {\n const state: StateObject = queue.shift();\n const name = state.name;\n const result: StateObject = builder.build(state);\n const orphanIdx: number = orphans.indexOf(state);\n\n if (result) {\n const existingState = getState(name);\n if (existingState && existingState.name === name) {\n throw new Error(`State '${name}' is already defined`);\n }\n\n const existingFutureState = getState(name + '.**');\n if (existingFutureState) {\n // Remove future state of the same name\n this.$registry.deregister(existingFutureState);\n }\n\n states[name] = state;\n this.attachRoute(state);\n if (orphanIdx >= 0) orphans.splice(orphanIdx, 1);\n registered.push(state);\n continue;\n }\n\n const prev = previousQueueLength[name];\n previousQueueLength[name] = queue.length;\n if (orphanIdx >= 0 && prev === queue.length) {\n // Wait until two consecutive iterations where no additional states were dequeued successfully.\n // throw new Error(`Cannot register orphaned state '${name}'`);\n queue.push(state);\n return states;\n } else if (orphanIdx < 0) {\n orphans.push(state);\n }\n\n queue.push(state);\n }\n\n if (registered.length) {\n this.listeners.forEach(listener => listener('registered', registered.map(s => s.self)));\n }\n\n return states;\n }\n\n attachRoute(state: StateObject) {\n if (state.abstract || !state.url) return;\n\n this.$urlRouter.rule(this.$urlRouter.urlRuleFactory.create(state));\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { StateBuilder } from './stateBuilder';\nimport { StateQueueManager } from './stateQueueManager';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { BuilderFunction } from './stateBuilder';\nimport { StateOrName } from './interface';\nimport { removeFrom } from '../common/common';\nimport { UIRouter } from '../router';\nimport { propEq } from '../common/hof';\n\n/**\n * The signature for the callback function provided to [[StateRegistry.onStatesChanged]].\n *\n * This callback receives two parameters:\n *\n * @param event a string; either \"registered\" or \"deregistered\"\n * @param states the list of [[StateDeclaration]]s that were registered (or deregistered).\n */\nexport type StateRegistryListener = (event: 'registered'|'deregistered', states: StateDeclaration[]) => void;\n\nexport class StateRegistry {\n private _root: StateObject;\n private states: { [key: string]: StateObject } = {};\n\n matcher: StateMatcher;\n private builder: StateBuilder;\n stateQueue: StateQueueManager;\n\n listeners: StateRegistryListener[] = [];\n\n /** @internalapi */\n constructor(private _router: UIRouter) {\n this.matcher = new StateMatcher(this.states);\n this.builder = new StateBuilder(this.matcher, _router.urlMatcherFactory);\n this.stateQueue = new StateQueueManager(this, _router.urlRouter, this.states, this.builder, this.listeners);\n this._registerRoot();\n }\n\n /** @internalapi */\n private _registerRoot() {\n const rootStateDef: StateDeclaration = {\n name: '',\n url: '^',\n views: null,\n params: {\n '#': { value: null, type: 'hash', dynamic: true },\n },\n abstract: true,\n };\n\n const _root = this._root = this.stateQueue.register(rootStateDef);\n _root.navigable = null;\n }\n\n /** @internalapi */\n dispose() {\n this.stateQueue.dispose();\n this.listeners = [];\n this.get().forEach(state => this.get(state) && this.deregister(state));\n }\n\n /**\n * Listen for a State Registry events\n *\n * Adds a callback that is invoked when states are registered or deregistered with the StateRegistry.\n *\n * #### Example:\n * ```js\n * let allStates = registry.get();\n *\n * // Later, invoke deregisterFn() to remove the listener\n * let deregisterFn = registry.onStatesChanged((event, states) => {\n * switch(event) {\n * case: 'registered':\n * states.forEach(state => allStates.push(state));\n * break;\n * case: 'deregistered':\n * states.forEach(state => {\n * let idx = allStates.indexOf(state);\n * if (idx !== -1) allStates.splice(idx, 1);\n * });\n * break;\n * }\n * });\n * ```\n *\n * @param listener a callback function invoked when the registered states changes.\n * The function receives two parameters, `event` and `state`.\n * See [[StateRegistryListener]]\n * @return a function that deregisters the listener\n */\n onStatesChanged(listener: StateRegistryListener): () => void {\n this.listeners.push(listener);\n return function deregisterListener() {\n removeFrom(this.listeners)(listener);\n }.bind(this);\n }\n\n /**\n * Gets the implicit root state\n *\n * Gets the root of the state tree.\n * The root state is implicitly created by UI-Router.\n * Note: this returns the internal [[StateObject]] representation, not a [[StateDeclaration]]\n *\n * @return the root [[StateObject]]\n */\n root() {\n return this._root;\n }\n\n /**\n * Adds a state to the registry\n *\n * Registers a [[StateDeclaration]] or queues it for registration.\n *\n * Note: a state will be queued if the state's parent isn't yet registered.\n *\n * @param stateDefinition the definition of the state to register.\n * @returns the internal [[StateObject]] object.\n * If the state was successfully registered, then the object is fully built (See: [[StateBuilder]]).\n * If the state was only queued, then the object is not fully built.\n */\n register(stateDefinition: _StateDeclaration): StateObject {\n return this.stateQueue.register(stateDefinition);\n }\n\n /** @hidden */\n private _deregisterTree(state: StateObject) {\n const all = this.get().map(s => s.$$state());\n const getChildren = (states: StateObject[]) => {\n const _children = all.filter(s => states.indexOf(s.parent) !== -1);\n return _children.length === 0 ? _children : _children.concat(getChildren(_children));\n };\n\n const children = getChildren([state]);\n const deregistered: StateObject[] = [state].concat(children).reverse();\n\n deregistered.forEach(_state => {\n const $ur = this._router.urlRouter;\n // Remove URL rule\n $ur.rules().filter(propEq('state', Line truncated
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||||
"/**\n * @coreapi\n * @module url\n */\n/** for typedoc */\nimport {\n map, defaults, inherit, identity, unnest, tail, find, Obj, pairs, allTrueR, unnestR, arrayTuples,\n} from '../common/common';\nimport { prop, propEq } from '../common/hof';\nimport { isArray, isString, isDefined } from '../common/predicates';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { RawParams } from '../params/interface';\nimport { ParamFactory } from './interface';\nimport { joinNeighborsR, splitOnDelim } from '../common/strings';\n\n/** @hidden */\nfunction quoteRegExp(str: any, param?: any) {\n let surroundPattern = ['', ''], result = str.replace(/[\\\\\\[\\]\\^$*+?.()|{}]/g, '\\\\$&');\n if (!param) return result;\n\n switch (param.squash) {\n case false:\n surroundPattern = ['(', ')' + (param.isOptional ? '?' : '')]; break;\n case true:\n result = result.replace(/\\/$/, '');\n surroundPattern = ['(?:\\/(', ')|\\/)?'];\n break;\n default:\n surroundPattern = [`(${param.squash}|`, ')?']; break;\n }\n return result + surroundPattern[0] + param.type.pattern.source + surroundPattern[1];\n}\n\n/** @hidden */\nconst memoizeTo = (obj: Obj, _prop: string, fn: Function) =>\n obj[_prop] = obj[_prop] || fn();\n\n/** @hidden */\nconst splitOnSlash = splitOnDelim('/');\n\n/** @hidden */\ninterface UrlMatcherCache {\n segments?: any[];\n weights?: number[];\n path?: UrlMatcher[];\n parent?: UrlMatcher;\n pattern?: RegExp;\n}\n\n/**\n * Matches URLs against patterns.\n *\n * Matches URLs against patterns and extracts named parameters from the path or the search\n * part of the URL.\n *\n * A URL pattern consists of a path pattern, optionally followed by '?' and a list of search (query)\n * parameters. Multiple search parameter names are separated by '&'. Search parameters\n * do not influence whether or not a URL is matched, but their values are passed through into\n * the matched parameters returned by [[UrlMatcher.exec]].\n *\n * - *Path parameters* are defined using curly brace placeholders (`/somepath/{param}`)\n * or colon placeholders (`/somePath/:param`).\n *\n * - *A parameter RegExp* may be defined for a param after a colon\n * (`/somePath/{param:[a-zA-Z0-9]+}`) in a curly brace placeholder.\n * The regexp must match for the url to be matched.\n * Should the regexp itself contain curly braces, they must be in matched pairs or escaped with a backslash.\n *\n * Note: a RegExp parameter will encode its value using either [[ParamTypes.path]] or [[ParamTypes.query]].\n *\n * - *Custom parameter types* may also be specified after a colon (`/somePath/{param:int}`) in curly brace parameters.\n * See [[UrlMatcherFactory.type]] for more information.\n *\n * - *Catch-all parameters* are defined using an asterisk placeholder (`/somepath/*catchallparam`).\n * A catch-all * parameter value will contain the remainder of the URL.\n *\n * ---\n *\n * Parameter names may contain only word characters (latin letters, digits, and underscore) and\n * must be unique within the pattern (across both path and search parameters).\n * A path parameter matches any number of characters other than '/'. For catch-all\n * placeholders the path parameter matches any number of characters.\n *\n * Examples:\n *\n * * `'/hello/'` - Matches only if the path is exactly '/hello/'. There is no special treatment for\n * trailing slashes, and patterns have to match the entire path, not just a prefix.\n * * `'/user/:id'` - Matches '/user/bob' or '/user/1234!!!' or even '/user/' but not '/user' or\n * '/user/bob/details'. The second path segment will be captured as the parameter 'id'.\n * * `'/user/{id}'` - Same as the previous example, but using curly brace syntax.\n * * `'/user/{id:[^/]*}'` - Same as the previous example.\n * * `'/user/{id:[0-9a-fA-F]{1,8}}'` - Similar to the previous example, but only matches if the id\n * parameter consists of 1 to 8 hex digits.\n * * `'/files/{path:.*}'` - Matches any URL starting with '/files/' and captures the rest of the\n * path into the parameter 'path'.\n * * `'/files/*path'` - ditto.\n * * `'/calendar/{start:date}'` - Matches \"/calendar/2014-11-12\" (because the pattern defined\n * in the built-in `date` ParamType matches `2014-11-12`) and provides a Date object in $stateParams.start\n *\n */\nexport class UrlMatcher {\n /** @hidden */\n static nameValidator: RegExp = /^\\w+([-.]+\\w+)*(?:\\[\\])?$/;\n\n /** @hidden */\n private _cache: UrlMatcherCache = { path: [this] };\n /** @hidden */\n private _children: UrlMatcher[] = [];\n /** @hidden */\n private _params: Param[] = [];\n /** @hidden */\n private _segments: string[] = [];\n /** @hidden */\n private _compiled: string[] = [];\n\n /** The pattern that was passed into the constructor */\n public pattern: string;\n\n /** @hidden */\n static encodeDashes(str: string) { // Replace dashes with encoded \"\\-\"\n returnLine truncated
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||||
"/**\n * @internalapi\n * @module url\n */ /** for typedoc */\nimport { forEach, extend } from '../common/common';\nimport { isObject, isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { ParamTypeDefinition } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { ParamType } from '../params/paramType';\nimport { ParamFactory, UrlMatcherConfig } from './interface';\n\n/**\n * Factory for [[UrlMatcher]] instances.\n *\n * The factory is available to ng1 services as\n * `$urlMatcherFactory` or ng1 providers as `$urlMatcherFactoryProvider`.\n */\nexport class UrlMatcherFactory implements Disposable, UrlMatcherConfig {\n /** @hidden */ paramTypes = new ParamTypes();\n /** @hidden */ _isCaseInsensitive = false;\n /** @hidden */ _isStrictMode = true;\n /** @hidden */ _defaultSquashPolicy: (boolean|string) = false;\n\n /** @internalapi Creates a new [[Param]] for a given location (DefType) */\n paramFactory: ParamFactory = {\n /** Creates a new [[Param]] from a CONFIG block */\n fromConfig: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.CONFIG, this),\n\n /** Creates a new [[Param]] from a url PATH */\n fromPath: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.PATH, this),\n\n /** Creates a new [[Param]] from a url SEARCH */\n fromSearch: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.SEARCH, this),\n };\n\n constructor() {\n extend(this, { UrlMatcher, Param });\n }\n\n /** @inheritdoc */\n caseInsensitive(value?: boolean): boolean {\n return this._isCaseInsensitive = isDefined(value) ? value : this._isCaseInsensitive;\n }\n\n /** @inheritdoc */\n strictMode(value?: boolean): boolean {\n return this._isStrictMode = isDefined(value) ? value : this._isStrictMode;\n }\n\n /** @inheritdoc */\n defaultSquashPolicy(value?: (boolean|string)) {\n if (isDefined(value) && value !== true && value !== false && !isString(value))\n throw new Error(`Invalid squash policy: ${value}. Valid policies: false, true, arbitrary-string`);\n return this._defaultSquashPolicy = isDefined(value) ? value : this._defaultSquashPolicy;\n }\n\n /** @hidden */\n private _getConfig = (config) =>\n extend({ strict: this._isStrictMode, caseInsensitive: this._isCaseInsensitive }, config);\n\n /**\n * Creates a [[UrlMatcher]] for the specified pattern.\n *\n * @param pattern The URL pattern.\n * @param config The config object hash.\n * @returns The UrlMatcher.\n */\n compile(pattern: string, config?: { [key: string]: any }) {\n return new UrlMatcher(pattern, this.paramTypes, this.paramFactory, this._getConfig(config));\n }\n\n /**\n * Returns true if the specified object is a [[UrlMatcher]], or false otherwise.\n *\n * @param object The object to perform the type check against.\n * @returns `true` if the object matches the `UrlMatcher` interface, by\n * implementing all the same methods.\n */\n isMatcher(object: any): boolean {\n // TODO: typeof?\n if (!isObject(object)) return false;\n let result = true;\n\n forEach(UrlMatcher.prototype, (val, name) => {\n if (isFunction(val)) result = result && (isDefined(object[name]) && isFunction(object[name]));\n });\n return result;\n }\n\n /**\n * Creates and registers a custom [[ParamType]] object\n *\n * A [[ParamType]] can be used to generate URLs with typed parameters.\n *\n * @param name The type name.\n * @param definition The type definition. See [[ParamTypeDefinition]] for information on the values accepted.\n * @param definitionFn A function that is injected before the app runtime starts.\n * The result of this function should be a [[ParamTypeDefinition]].\n * The result is merged into the existing `definition`.\n * See [[ParamType]] for information on the values accepted.\n *\n * @returns - if a type was registered: the [[UrlMatcherFactory]]\n * - if only the `name` parameter was specified: the currently registered [[ParamType]] object, or undefined\n *\n * Note: Register custom types *before using them* in a state definition.\n *\n * See [[ParamTypeDefinition]] for examples\n */\n type(name: string, definition?: ParamTypeDefinition, definitionFn?: () => ParamTypeDefinition) {\n const type = this.paramTypes.type(name, definition, definitionFn);\n return !isDefined(definition) ? type : this;\n }\n\n /** @hidden */\n $get() {\n this.paramTypes.enqueue = false;\n this.paramTypes._flushTypeQueue();\n return this;\n }\n\n /** @internalapi */\n dispose() {\n this.paramTypes.dispose();\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\nimport { UrlMatcher } from './urlMatcher';\nimport { isString, isDefined, isFunction, isState } from '../common/predicates';\nimport { UIRouter } from '../router';\nimport { identity, extend } from '../common/common';\nimport { is, pattern } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport {\n UrlRule, UrlRuleMatchFn, UrlRuleHandlerFn, UrlRuleType, UrlParts, MatcherUrlRule, StateRule, RegExpRule,\n} from './interface';\n\n/**\n * Creates a [[UrlRule]]\n *\n * Creates a [[UrlRule]] from a:\n *\n * - `string`\n * - [[UrlMatcher]]\n * - `RegExp`\n * - [[StateObject]]\n * @internalapi\n */\nexport class UrlRuleFactory {\n static isUrlRule = obj =>\n obj && ['type', 'match', 'handler'].every(key => isDefined(obj[key]));\n\n constructor(public router: UIRouter) { }\n\n compile(str: string) {\n return this.router.urlMatcherFactory.compile(str);\n }\n\n create(what: string|UrlMatcher|StateObject|RegExp|UrlRuleMatchFn, handler?: string|UrlRuleHandlerFn): UrlRule {\n const makeRule = pattern([\n [isString, (_what: string) => makeRule(this.compile(_what))],\n [is(UrlMatcher), (_what: UrlMatcher) => this.fromUrlMatcher(_what, handler)],\n [isState, (_what: StateObject) => this.fromState(_what, this.router)],\n [is(RegExp), (_what: RegExp) => this.fromRegExp(_what, handler)],\n [isFunction, (_what: UrlRuleMatchFn) => new BaseUrlRule(_what, handler as UrlRuleHandlerFn)],\n ]);\n\n const rule = makeRule(what);\n if (!rule) throw new Error(\"invalid 'what' in when()\");\n return rule;\n }\n\n /**\n * A UrlRule which matches based on a UrlMatcher\n *\n * The `handler` may be either a `string`, a [[UrlRuleHandlerFn]] or another [[UrlMatcher]]\n *\n * ## Handler as a function\n *\n * If `handler` is a function, the function is invoked with:\n *\n * - matched parameter values ([[RawParams]] from [[UrlMatcher.exec]])\n * - url: the current Url ([[UrlParts]])\n * - router: the router object ([[UIRouter]])\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, match => \"/home/\" + match.fooId + \"/\" + match.barId);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n *\n * ## Handler as UrlMatcher\n *\n * If `handler` is a UrlMatcher, the handler matcher is used to create the new url.\n * The `handler` UrlMatcher is formatted using the matched param from the first matcher.\n * The url is replaced with the result.\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var handler = $umf.compile(\"/home/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, handler);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n */\n fromUrlMatcher(urlMatcher: UrlMatcher, handler: string|UrlMatcher|UrlRuleHandlerFn): MatcherUrlRule {\n let _handler: UrlRuleHandlerFn = handler as any;\n if (isString(handler)) handler = this.router.urlMatcherFactory.compile(handler);\n if (is(UrlMatcher)(handler)) _handler = (match: RawParams) => (handler as UrlMatcher).format(match);\n\n function matchUrlParamters(url: UrlParts): RawParams {\n const params = urlMatcher.exec(url.path, url.search, url.hash);\n return urlMatcher.validates(params) && params;\n }\n\n // Prioritize URLs, lowest to highest:\n // - Some optional URL parameters, but none matched\n // - No optional parameters in URL\n // - Some optional parameters, some matched\n // - Some optional parameters, all matched\n function matchPriority(params: RawParams): number {\n const optional = urlMatcher.parameters().filter(param => param.isOptional);\n if (!optional.length) return 0.000001;\n const matched = optional.filter(param => params[param.id]);\n return matched.length / optional.length;\n }\n\n const details = { urlMatcher, matchPriority, type: 'URLMATCHER' };\n return extend(new BaseUrlRule(matchUrlParamters, _handler), details) as MatcherUrlRule;\n }\n\n\n /**\n * A UrlRule which matches a state by its url\n *\n * #### Example:\n * ```js\n * var rule = factory.fromState($state.get('foo'), router);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match);\n * // Starts a transition to 'foo' with params: { fooId: '123', barId: '456' }\n * ```\n */\n fromState(state: StateObject, router: UIRouter): StateRule {\n /**\n * Handles match by transitioning to matched state\n *\n * FirLine truncated
|
||||
"/**\n * @internalapi\n * @module url\n */\n/** for typedoc */\nimport { createProxyFunctions, extend, removeFrom } from '../common/common';\nimport { isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { RawParams } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { is, pattern, val } from '../common/hof';\nimport { UrlRuleFactory } from './urlRule';\nimport { TargetState } from '../state/targetState';\nimport { MatcherUrlRule, MatchResult, UrlParts, UrlRule, UrlRuleHandlerFn, UrlRuleMatchFn, UrlRulesApi, UrlSyncApi } from './interface';\nimport { TargetStateDef } from '../state/interface';\nimport { stripLastPathElement } from '../common';\n\n/** @hidden */\nfunction appendBasePath(url: string, isHtml5: boolean, absolute: boolean, baseHref: string): string {\n if (baseHref === '/') return url;\n if (isHtml5) return stripLastPathElement(baseHref) + url;\n if (absolute) return baseHref.slice(1) + url;\n return url;\n}\n\n/** @hidden */\nconst prioritySort = (a: UrlRule, b: UrlRule) =>\n (b.priority || 0) - (a.priority || 0);\n\n/** @hidden */\nconst typeSort = (a: UrlRule, b: UrlRule) => {\n const weights = { 'STATE': 4, 'URLMATCHER': 4, 'REGEXP': 3, 'RAW': 2, 'OTHER': 1 };\n return (weights[a.type] || 0) - (weights[b.type] || 0);\n};\n\n/** @hidden */\nconst urlMatcherSort = (a: MatcherUrlRule, b: MatcherUrlRule) =>\n !a.urlMatcher || !b.urlMatcher ? 0 : UrlMatcher.compare(a.urlMatcher, b.urlMatcher);\n\n/** @hidden */\nconst idSort = (a: UrlRule, b: UrlRule) => {\n // Identically sorted STATE and URLMATCHER best rule will be chosen by `matchPriority` after each rule matches the URL\n const useMatchPriority = { STATE: true, URLMATCHER: true };\n const equal = useMatchPriority[a.type] && useMatchPriority[b.type];\n return equal ? 0 : (a.$id || 0) - (b.$id || 0);\n};\n\n/**\n * Default rule priority sorting function.\n *\n * Sorts rules by:\n *\n * - Explicit priority (set rule priority using [[UrlRulesApi.when]])\n * - Rule type (STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1)\n * - `UrlMatcher` specificity ([[UrlMatcher.compare]]): works for STATE and URLMATCHER types to pick the most specific rule.\n * - Rule registration order (for rule types other than STATE and URLMATCHER)\n * - Equally sorted State and UrlMatcher rules will each match the URL.\n * Then, the *best* match is chosen based on how many parameter values were matched.\n *\n * @coreapi\n */\nlet defaultRuleSortFn: (a: UrlRule, b: UrlRule) => number;\ndefaultRuleSortFn = (a, b) => {\n let cmp = prioritySort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = typeSort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = urlMatcherSort(a as MatcherUrlRule, b as MatcherUrlRule);\n if (cmp !== 0) return cmp;\n\n return idSort(a, b);\n};\n\n/**\n * Updates URL and responds to URL changes\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class updates the URL when the state changes.\n * It also responds to changes in the URL.\n */\nexport class UrlRouter implements UrlRulesApi, UrlSyncApi, Disposable {\n /** used to create [[UrlRule]] objects for common cases */\n public urlRuleFactory: UrlRuleFactory;\n\n /** @hidden */ private _router: UIRouter;\n /** @hidden */ private location: string;\n /** @hidden */ private _sortFn = defaultRuleSortFn;\n /** @hidden */ private _stopFn: Function;\n /** @hidden */ _rules: UrlRule[] = [];\n /** @hidden */ private _otherwiseFn: UrlRule;\n /** @hidden */ interceptDeferred = false;\n /** @hidden */ private _id = 0;\n /** @hidden */ private _sorted = false;\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this.urlRuleFactory = new UrlRuleFactory(router);\n createProxyFunctions(val(UrlRouter.prototype), this, val(this));\n }\n\n /** @internalapi */\n dispose() {\n this.listen(false);\n this._rules = [];\n delete this._otherwiseFn;\n }\n\n /** @inheritdoc */\n sort(compareFn?: (a: UrlRule, b: UrlRule) => number) {\n this._rules = this.stableSort(this._rules, this._sortFn = compareFn || this._sortFn);\n this._sorted = true;\n }\n\n private ensureSorted() {\n this._sorted || this.sort();\n }\n\n private stableSort(arr, compareFn) {\n const arrOfWrapper = arr.map((elem, idx) => ({ elem, idx }));\n\n arrOfWrapper.sort((wrapperA, wrapperB) => {\n const cmpDiff = compareFn(wrapperA.elem, wrapperB.elem);\n return cmpDiff === 0\n ? wrapperA.idx - wrapperB.idx\n : cmpDiff;\n });\n\n return arrOfWrapper.map(wrapper => wrapper.elem);\n }\n\n /**\n * Given a URL, check all rules and return the best [[MatchResult]]\n * @param url\n * @returns {MatchResult}\n */\n match(Line truncated
|
||||
"/**\n * @coreapi\n * @module view\n */ /** for typedoc */\nimport { equals, applyPairs, removeFrom, TypedMap, inArray } from '../common/common';\nimport { curry, prop } from '../common/hof';\nimport { isString, isArray } from '../common/predicates';\nimport { trace } from '../common/trace';\nimport { PathNode } from '../path/pathNode';\nimport { ActiveUIView, ViewContext, ViewConfig } from './interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nexport type ViewConfigFactory = (path: PathNode[], decl: _ViewDeclaration) => ViewConfig|ViewConfig[];\n\nexport interface ViewServicePluginAPI {\n _rootViewContext(context?: ViewContext): ViewContext;\n _viewConfigFactory(viewType: string, factory: ViewConfigFactory);\n _registeredUIViews(): ActiveUIView[];\n _activeViewConfigs(): ViewConfig[];\n _onSync(listener: ViewSyncListener): Function;\n}\n\n// A uiView and its matching viewConfig\nexport interface ViewTuple {\n uiView: ActiveUIView;\n viewConfig: ViewConfig;\n}\n\nexport interface ViewSyncListener {\n (viewTuples: ViewTuple[]): void;\n}\n\n/**\n * The View service\n *\n * This service pairs existing `ui-view` components (which live in the DOM)\n * with view configs (from the state declaration objects: [[StateDeclaration.views]]).\n *\n * - After a successful Transition, the views from the newly entered states are activated via [[activateViewConfig]].\n * The views from exited states are deactivated via [[deactivateViewConfig]].\n * (See: the [[registerActivateViews]] Transition Hook)\n *\n * - As `ui-view` components pop in and out of existence, they register themselves using [[registerUIView]].\n *\n * - When the [[sync]] function is called, the registered `ui-view`(s) ([[ActiveUIView]])\n * are configured with the matching [[ViewConfig]](s)\n *\n */\nexport class ViewService {\n private _uiViews: ActiveUIView[] = [];\n private _viewConfigs: ViewConfig[] = [];\n private _rootContext: ViewContext;\n private _viewConfigFactories: { [key: string]: ViewConfigFactory } = {};\n private _listeners: ViewSyncListener[] = [];\n\n public _pluginapi: ViewServicePluginAPI = {\n _rootViewContext: this._rootViewContext.bind(this),\n _viewConfigFactory: this._viewConfigFactory.bind(this),\n _registeredUIViews: () => this._uiViews,\n _activeViewConfigs: () => this._viewConfigs,\n _onSync: (listener: ViewSyncListener) => {\n this._listeners.push(listener);\n return () => removeFrom(this._listeners, listener);\n },\n };\n\n /**\n * Given a ui-view and a ViewConfig, determines if they \"match\".\n *\n * A ui-view has a fully qualified name (fqn) and a context object. The fqn is built from its overall location in\n * the DOM, describing its nesting relationship to any parent ui-view tags it is nested inside of.\n *\n * A ViewConfig has a target ui-view name and a context anchor. The ui-view name can be a simple name, or\n * can be a segmented ui-view path, describing a portion of a ui-view fqn.\n *\n * In order for a ui-view to match ViewConfig, ui-view's $type must match the ViewConfig's $type\n *\n * If the ViewConfig's target ui-view name is a simple name (no dots), then a ui-view matches if:\n * - the ui-view's name matches the ViewConfig's target name\n * - the ui-view's context matches the ViewConfig's anchor\n *\n * If the ViewConfig's target ui-view name is a segmented name (with dots), then a ui-view matches if:\n * - There exists a parent ui-view where:\n * - the parent ui-view's name matches the first segment (index 0) of the ViewConfig's target name\n * - the parent ui-view's context matches the ViewConfig's anchor\n * - And the remaining segments (index 1..n) of the ViewConfig's target name match the tail of the ui-view's fqn\n *\n * Example:\n *\n * DOM:\n * <ui-view> <!-- created in the root context (name: \"\") -->\n * <ui-view name=\"foo\"> <!-- created in the context named: \"A\" -->\n * <ui-view> <!-- created in the context named: \"A.B\" -->\n * <ui-view name=\"bar\"> <!-- created in the context named: \"A.B.C\" -->\n * </ui-view>\n * </ui-view>\n * </ui-view>\n * </ui-view>\n *\n * uiViews: [\n * { fqn: \"$default\", creationContext: { name: \"\" } },\n * { fqn: \"$default.foo\", creationContext: { name: \"A\" } },\n * { fqn: \"$default.foo.$default\", creationContext: { name: \"A.B\" } }\n * { fqn: \"$default.foo.$default.bar\", creationContext: { name: \"A.B.C\" } }\n * ]\n *\n * These four view configs all match the ui-view with the fqn: \"$default.foo.$default.bar\":\n *\n * - ViewConfig1: { uiViewName: \"bar\", uiViewContextAnchor: \"A.B.C\" }\n * - ViewConfig2: { uiViewName: \"$default.bar\", uiViewContextAnchor: \"A.B\" }\n * - ViewConfig3: { uiViewName: \"foo.$defLine truncated
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { StateParams } from './params/stateParams';\nimport { StateDeclaration } from './state/interface';\nimport { StateObject } from './state/stateObject';\nimport { Transition } from './transition/transition';\nimport { Queue } from './common/queue';\nimport { Disposable } from './interface';\n\n/**\n * Global router state\n *\n * This is where we hold the global mutable state such as current state, current\n * params, current transition, etc.\n */\nexport class UIRouterGlobals implements Disposable {\n /**\n * Current parameter values\n *\n * The parameter values from the latest successful transition\n */\n params: StateParams = new StateParams();\n\n /**\n * Current state\n *\n * The to-state from the latest successful transition\n */\n current: StateDeclaration;\n\n /**\n * Current state (internal object)\n *\n * The to-state from the latest successful transition\n * @internalapi\n */\n $current: StateObject;\n\n /**\n * The current started/running transition.\n * This transition has reached at least the onStart phase, but is not yet complete\n */\n transition: Transition;\n\n /** @internalapi */\n lastStartedTransitionId = -1;\n\n /** @internalapi */\n transitionHistory = new Queue<Transition>([], 1);\n\n /** @internalapi */\n successfulTransitions = new Queue<Transition>([], 1);\n\n dispose() {\n this.transitionHistory.clear();\n this.successfulTransitions.clear();\n this.transition = null;\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\n\nimport { UIRouter } from '../router';\nimport { LocationServices, notImplemented, LocationConfig } from '../common/coreservices';\nimport { noop, createProxyFunctions } from '../common/common';\nimport { UrlConfigApi, UrlSyncApi, UrlRulesApi, UrlParts, MatchResult } from './interface';\n\n/** @hidden */\nconst makeStub = (keys: string[]): any =>\n keys.reduce((acc, key) => ((acc[key] = notImplemented(key)), acc), { dispose: noop });\n\n/** @hidden */\nconst locationServicesFns = ['url', 'path', 'search', 'hash', 'onChange'];\n/** @hidden */\nconst locationConfigFns = ['port', 'protocol', 'host', 'baseHref', 'html5Mode', 'hashPrefix'];\n/** @hidden */\nconst umfFns = ['type', 'caseInsensitive', 'strictMode', 'defaultSquashPolicy'];\n/** @hidden */\nconst rulesFns = ['sort', 'when', 'initial', 'otherwise', 'rules', 'rule', 'removeRule'];\n/** @hidden */\nconst syncFns = ['deferIntercept', 'listen', 'sync', 'match'];\n\n/**\n * API for URL management\n */\nexport class UrlService implements LocationServices, UrlSyncApi {\n /** @hidden */\n static locationServiceStub: LocationServices = makeStub(locationServicesFns);\n /** @hidden */\n static locationConfigStub: LocationConfig = makeStub(locationConfigFns);\n\n /**\n * A nested API for managing URL rules and rewrites\n *\n * See: [[UrlRulesApi]] for details\n */\n rules: UrlRulesApi;\n\n /**\n * A nested API to configure the URL and retrieve URL information\n *\n * See: [[UrlConfigApi]] for details\n */\n config: UrlConfigApi;\n\n /** @hidden */\n private router: UIRouter;\n\n /** @hidden */\n constructor(router: UIRouter, lateBind = true) {\n this.router = router;\n this.rules = {} as any;\n this.config = {} as any;\n\n // proxy function calls from UrlService to the LocationService/LocationConfig\n const locationServices = () => router.locationService;\n createProxyFunctions(locationServices, this, locationServices, locationServicesFns, lateBind);\n\n const locationConfig = () => router.locationConfig;\n createProxyFunctions(locationConfig, this.config, locationConfig, locationConfigFns, lateBind);\n\n const umf = () => router.urlMatcherFactory;\n createProxyFunctions(umf, this.config, umf, umfFns);\n\n const urlRouter = () => router.urlRouter;\n createProxyFunctions(urlRouter, this.rules, urlRouter, rulesFns);\n createProxyFunctions(urlRouter, this, urlRouter, syncFns);\n }\n\n /** @inheritdoc */\n url(): string;\n /** @inheritdoc */\n url(newurl: string, replace?: boolean, state?): void;\n url(newurl?, replace?, state?): any {\n return;\n }\n /** @inheritdoc */\n path(): string {\n return;\n }\n /** @inheritdoc */\n search(): { [key: string]: any } {\n return;\n }\n /** @inheritdoc */\n hash(): string {\n return;\n }\n /** @inheritdoc */\n onChange(callback: Function): Function {\n return;\n }\n\n /**\n * Returns the current URL parts\n *\n * This method returns the current URL components as a [[UrlParts]] object.\n *\n * @returns the current url parts\n */\n parts(): UrlParts {\n return { path: this.path(), search: this.search(), hash: this.hash() };\n }\n\n dispose() {}\n\n /** @inheritdoc */\n sync(evt?) {\n return;\n }\n /** @inheritdoc */\n listen(enabled?: boolean): Function {\n return;\n }\n /** @inheritdoc */\n deferIntercept(defer?: boolean) {\n return;\n }\n /** @inheritdoc */\n match(urlParts: UrlParts): MatchResult {\n return;\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { UrlMatcherFactory } from './url/urlMatcherFactory';\nimport { UrlRouter } from './url/urlRouter';\nimport { TransitionService } from './transition/transitionService';\nimport { ViewService } from './view/view';\nimport { StateRegistry } from './state/stateRegistry';\nimport { StateService } from './state/stateService';\nimport { UIRouterGlobals } from './globals';\nimport { UIRouterPlugin, Disposable } from './interface';\nimport { values, removeFrom } from './common/common';\nimport { isFunction } from './common/predicates';\nimport { UrlService } from './url/urlService';\nimport { LocationServices, LocationConfig } from './common/coreservices';\nimport { Trace, trace } from './common/trace';\n\n/** @hidden */\nlet _routerInstance = 0;\n\n/**\n * The master class used to instantiate an instance of UI-Router.\n *\n * UI-Router (for each specific framework) will create an instance of this class during bootstrap.\n * This class instantiates and wires the UI-Router services together.\n *\n * After a new instance of the UIRouter class is created, it should be configured for your app.\n * For instance, app states should be registered with the [[UIRouter.stateRegistry]].\n *\n * ---\n *\n * Normally the framework code will bootstrap UI-Router.\n * If you are bootstrapping UIRouter manually, tell it to monitor the URL by calling\n * [[UrlService.listen]] then [[UrlService.sync]].\n */\nexport class UIRouter {\n /** @hidden */ $id = _routerInstance++;\n /** @hidden */ _disposed = false;\n /** @hidden */ private _disposables: Disposable[] = [];\n\n /** Provides trace information to the console */\n trace: Trace = trace;\n\n /** Provides services related to ui-view synchronization */\n viewService = new ViewService();\n\n /** Global router state */\n globals: UIRouterGlobals = new UIRouterGlobals();\n\n /** Provides services related to Transitions */\n transitionService: TransitionService = new TransitionService(this);\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlMatcherFactory: UrlMatcherFactory = new UrlMatcherFactory();\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlRouter: UrlRouter = new UrlRouter(this);\n\n /** Provides a registry for states, and related registration services */\n stateRegistry: StateRegistry = new StateRegistry(this);\n\n /** Provides services related to states */\n stateService = new StateService(this);\n\n /** Provides services related to the URL */\n urlService: UrlService = new UrlService(this);\n\n /** @hidden plugin instances are registered here */\n private _plugins: { [key: string]: UIRouterPlugin } = {};\n\n /** Registers an object to be notified when the router is disposed */\n disposable(disposable: Disposable) {\n this._disposables.push(disposable);\n }\n\n /**\n * Disposes this router instance\n *\n * When called, clears resources retained by the router by calling `dispose(this)` on all\n * registered [[disposable]] objects.\n *\n * Or, if a `disposable` object is provided, calls `dispose(this)` on that object only.\n *\n * @param disposable (optional) the disposable to dispose\n */\n dispose(disposable?: any): void {\n if (disposable && isFunction(disposable.dispose)) {\n disposable.dispose(this);\n return undefined;\n }\n\n this._disposed = true;\n this._disposables.slice().forEach(d => {\n try {\n typeof d.dispose === 'function' && d.dispose(this);\n removeFrom(this._disposables, d);\n } catch (ignored) {}\n });\n }\n\n /**\n * Creates a new `UIRouter` object\n *\n * @param locationService a [[LocationServices]] implementation\n * @param locationConfig a [[LocationConfig]] implementation\n * @internalapi\n */\n constructor(\n public locationService: LocationServices = UrlService.locationServiceStub,\n public locationConfig: LocationConfig = UrlService.locationConfigStub,\n ) {\n this.viewService._pluginapi._rootViewContext(this.stateRegistry.root());\n this.globals.$current = this.stateRegistry.root();\n this.globals.current = this.globals.$current.self;\n\n this.disposable(this.globals);\n this.disposable(this.stateService);\n this.disposable(this.stateRegistry);\n this.disposable(this.transitionService);\n this.disposable(this.urlRouter);\n this.disposable(locationService);\n this.disposable(locationConfig);\n }\n\n /** Add plugin (as ES6 class) */\n plugin<T extends UIRouterPlugin>(plugin: { new (router: UIRouter, options?: any): T }, options?: any): T;\n /** Add plugin (as javascript constructor function) */\n plugin<T extends UIRouterPlugin>(plugin: { (router: UIRouter, options?: any): void }, options?: any): T;\n /** Add plugin (as javascript factory function) */\n plugin<T extends UIRouterPlugin>(plLine truncated
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { UIRouter } from '../router';\nimport { TransitionService } from '../transition/transitionService';\nimport { Resolvable } from '../resolve';\nimport { extend, inArray, map, mapObj, uniqR, unnestR, values } from '../common';\nimport { PathNode } from '../path';\nimport { TreeChanges } from '../transition';\n\nfunction addCoreResolvables(trans: Transition) {\n trans.addResolvable(Resolvable.fromData(UIRouter, trans.router), '');\n trans.addResolvable(Resolvable.fromData(Transition, trans), '');\n trans.addResolvable(Resolvable.fromData('$transition$', trans), '');\n trans.addResolvable(Resolvable.fromData('$stateParams', trans.params()), '');\n\n trans.entering().forEach(state => {\n trans.addResolvable(Resolvable.fromData('$state$', state), state);\n });\n}\n\nexport const registerAddCoreResolvables = (transitionService: TransitionService) =>\n transitionService.onCreate({}, addCoreResolvables);\n\nconst TRANSITION_TOKENS = ['$transition$', Transition];\nconst isTransition = inArray(TRANSITION_TOKENS);\n\n// References to Transition in the treeChanges pathnodes makes all\n// previous Transitions reachable in memory, causing a memory leak\n// This function removes resolves for '$transition$' and `Transition` from the treeChanges.\n// Do not use this on current transitions, only on old ones.\nexport const treeChangesCleanup = (trans: Transition) => {\n const nodes = values(trans.treeChanges())\n .reduce(unnestR, [])\n .reduce(uniqR, []);\n\n // If the resolvable is a Transition, return a new resolvable with null data\n const replaceTransitionWithNull = (r: Resolvable): Resolvable => {\n return isTransition(r.token) ? Resolvable.fromData(r.token, null) : r;\n };\n\n nodes.forEach((node: PathNode) => {\n node.resolvables = node.resolvables.map(replaceTransitionWithNull);\n });\n};\n",
|
||||
"/** @module hooks */ /** */\nimport { isString, isFunction } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { services } from '../common/coreservices';\nimport { TargetState } from '../state/targetState';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\n\n/**\n * A [[TransitionHookFn]] that redirects to a different state or params\n *\n * Registered using `transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectHook);`\n *\n * See [[StateDeclaration.redirectTo]]\n */\nconst redirectToHook: TransitionHookFn = (trans: Transition) => {\n const redirect = trans.to().redirectTo;\n if (!redirect) return;\n\n const $state = trans.router.stateService;\n\n function handleResult(result: any) {\n if (!result) return;\n if (result instanceof TargetState) return result;\n if (isString(result)) return $state.target(<any>result, trans.params(), trans.options());\n if (result['state'] || result['params'])\n return $state.target(result['state'] || trans.to(), result['params'] || trans.params(), trans.options());\n }\n\n if (isFunction(redirect)) {\n return services.$q.when(redirect(trans)).then(handleResult);\n }\n return handleResult(redirect);\n};\n\nexport const registerRedirectToHook = (transitionService: TransitionService) =>\n transitionService.onStart({ to: state => !!state.redirectTo }, redirectToHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { StateDeclaration } from '../state/interface';\nimport { StateObject } from '../state/stateObject';\n\n/**\n * A factory which creates an onEnter, onExit or onRetain transition hook function\n *\n * The returned function invokes the (for instance) state.onEnter hook when the\n * state is being entered.\n *\n * @hidden\n */\nfunction makeEnterExitRetainHook(hookName: string): TransitionStateHookFn {\n return (transition: Transition, state: StateDeclaration) => {\n const _state: StateObject = state.$$state();\n const hookFn: TransitionStateHookFn = _state[hookName];\n return hookFn(transition, state);\n };\n}\n\n/**\n * The [[TransitionStateHookFn]] for onExit\n *\n * When the state is being exited, the state's .onExit function is invoked.\n *\n * Registered using `transitionService.onExit({ exiting: (state) => !!state.onExit }, onExitHook);`\n *\n * See: [[IHookRegistry.onExit]]\n */\nconst onExitHook: TransitionStateHookFn = makeEnterExitRetainHook('onExit');\nexport const registerOnExitHook = (transitionService: TransitionService) =>\n transitionService.onExit({ exiting: state => !!state.onExit }, onExitHook);\n\n/**\n * The [[TransitionStateHookFn]] for onRetain\n *\n * When the state was already entered, and is not being exited or re-entered, the state's .onRetain function is invoked.\n *\n * Registered using `transitionService.onRetain({ retained: (state) => !!state.onRetain }, onRetainHook);`\n *\n * See: [[IHookRegistry.onRetain]]\n */\nconst onRetainHook: TransitionStateHookFn = makeEnterExitRetainHook('onRetain');\nexport const registerOnRetainHook = (transitionService: TransitionService) =>\n transitionService.onRetain({ retained: state => !!state.onRetain }, onRetainHook);\n\n/**\n * The [[TransitionStateHookFn]] for onEnter\n *\n * When the state is being entered, the state's .onEnter function is invoked.\n *\n * Registered using `transitionService.onEnter({ entering: (state) => !!state.onEnter }, onEnterHook);`\n *\n * See: [[IHookRegistry.onEnter]]\n */\nconst onEnterHook: TransitionStateHookFn = makeEnterExitRetainHook('onEnter');\nexport const registerOnEnterHook = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: state => !!state.onEnter }, onEnterHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { noop } from '../common/common';\nimport { Transition } from '../transition/transition';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { TransitionStateHookFn, TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\nimport { val } from '../common/hof';\nimport { StateDeclaration } from '../state/interface';\n\nexport const RESOLVE_HOOK_PRIORITY = 1000;\n\n/**\n * A [[TransitionHookFn]] which resolves all EAGER Resolvables in the To Path\n *\n * Registered using `transitionService.onStart({}, eagerResolvePath, { priority: 1000 });`\n *\n * When a Transition starts, this hook resolves all the EAGER Resolvables, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst eagerResolvePath: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to).resolvePath('EAGER', trans).then(noop);\n\nexport const registerEagerResolvePath = (transitionService: TransitionService) =>\n transitionService.onStart({}, eagerResolvePath, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves all LAZY Resolvables for the state (and all its ancestors) in the To Path\n *\n * Registered using `transitionService.onEnter({ entering: () => true }, lazyResolveState, { priority: 1000 });`\n *\n * When a State is being entered, this hook resolves all the Resolvables for this state, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst lazyResolveState: TransitionStateHookFn = (trans: Transition, state: StateDeclaration) =>\n new ResolveContext(trans.treeChanges().to)\n .subContext(state.$$state())\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerLazyResolveState = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: val(true) }, lazyResolveState, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves any dynamically added (LAZY or EAGER) Resolvables.\n *\n * Registered using `transitionService.onFinish({}, eagerResolvePath, { priority: 1000 });`\n *\n * After all entering states have been entered, this hook resolves any remaining Resolvables.\n * These are typically dynamic resolves which were added by some Transition Hook using [[Transition.addResolvable]].\n *\n * See [[StateDeclaration.resolve]]\n */\nconst resolveRemaining: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to).resolvePath('LAZY', trans).then(noop);\n\nexport const registerResolveRemaining = (transitionService: TransitionService) =>\n transitionService.onFinish({}, resolveRemaining, { priority: RESOLVE_HOOK_PRIORITY });\n",
|
||||
"/** @module hooks */ /** for typedoc */\nimport { noop } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { Transition } from '../transition/transition';\nimport { ViewService } from '../view/view';\nimport { ViewConfig } from '../view/interface';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which waits for the views to load\n *\n * Registered using `transitionService.onStart({}, loadEnteringViews);`\n *\n * Allows the views to do async work in [[ViewConfig.load]] before the transition continues.\n * In angular 1, this includes loading the templates.\n */\nconst loadEnteringViews: TransitionHookFn = (transition: Transition) => {\n const $q = services.$q;\n const enteringViews = transition.views('entering');\n if (!enteringViews.length) return;\n return $q.all(enteringViews.map(view => $q.when(view.load()))).then(noop);\n};\n\nexport const registerLoadEnteringViews = (transitionService: TransitionService) =>\n transitionService.onFinish({}, loadEnteringViews);\n\n/**\n * A [[TransitionHookFn]] which activates the new views when a transition is successful.\n *\n * Registered using `transitionService.onSuccess({}, activateViews);`\n *\n * After a transition is complete, this hook deactivates the old views from the previous state,\n * and activates the new views from the destination state.\n *\n * See [[ViewService]]\n */\nconst activateViews: TransitionHookFn = (transition: Transition) => {\n const enteringViews = transition.views('entering');\n const exitingViews = transition.views('exiting');\n if (!enteringViews.length && !exitingViews.length) return;\n\n const $view: ViewService = transition.router.viewService;\n\n exitingViews.forEach((vc: ViewConfig) => $view.deactivateViewConfig(vc));\n enteringViews.forEach((vc: ViewConfig) => $view.activateViewConfig(vc));\n\n $view.sync();\n};\n\nexport const registerActivateViews = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, activateViews);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { Transition } from '../transition/transition';\nimport { copy } from '../common/common';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates global UI-Router state\n *\n * Registered using `transitionService.onBefore({}, updateGlobalState);`\n *\n * Before a [[Transition]] starts, updates the global value of \"the current transition\" ([[Globals.transition]]).\n * After a successful [[Transition]], updates the global values of \"the current state\"\n * ([[Globals.current]] and [[Globals.$current]]) and \"the current param values\" ([[Globals.params]]).\n *\n * See also the deprecated properties:\n * [[StateService.transition]], [[StateService.current]], [[StateService.params]]\n */\nconst updateGlobalState = (trans: Transition) => {\n const globals = trans.router.globals;\n\n const transitionSuccessful = () => {\n globals.successfulTransitions.enqueue(trans);\n globals.$current = trans.$to();\n globals.current = globals.$current.self;\n\n copy(trans.params(), globals.params);\n };\n\n const clearCurrentTransition = () => {\n // Do not clear globals.transition if a different transition has started in the meantime\n if (globals.transition === trans) globals.transition = null;\n };\n\n trans.onSuccess({}, transitionSuccessful, { priority: 10000 });\n trans.promise.then(clearCurrentTransition, clearCurrentTransition);\n};\n\nexport const registerUpdateGlobalState = (transitionService: TransitionService) =>\n transitionService.onCreate({}, updateGlobalState);\n",
|
||||
"/** @module hooks */ /** */\nimport { UrlRouter } from '../url/urlRouter';\nimport { StateService } from '../state/stateService';\nimport { Transition } from '../transition/transition';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates the URL after a successful transition\n *\n * Registered using `transitionService.onSuccess({}, updateUrl);`\n */\nconst updateUrl: TransitionHookFn = (transition: Transition) => {\n const options = transition.options();\n const $state: StateService = transition.router.stateService;\n const $urlRouter: UrlRouter = transition.router.urlRouter;\n\n // Dont update the url in these situations:\n // The transition was triggered by a URL sync (options.source === 'url')\n // The user doesn't want the url to update (options.location === false)\n // The destination state, and all parents have no navigable url\n if (options.source !== 'url' && options.location && $state.$current.navigable) {\n const urlOptions = { replace: options.location === 'replace' };\n $urlRouter.push($state.$current.navigable.url, $state.params, urlOptions);\n }\n\n $urlRouter.update(true);\n};\n\nexport const registerUpdateUrl = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, updateUrl, { priority: 9999 });\n",
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\nimport { StateDeclaration, LazyLoadResult } from '../state/interface';\nimport { services } from '../common/coreservices';\nimport { StateRule } from '../url/interface';\n\n/**\n * A [[TransitionHookFn]] that performs lazy loading\n *\n * When entering a state \"abc\" which has a `lazyLoad` function defined:\n * - Invoke the `lazyLoad` function (unless it is already in process)\n * - Flag the hook function as \"in process\"\n * - The function should return a promise (that resolves when lazy loading is complete)\n * - Wait for the promise to settle\n * - If the promise resolves to a [[LazyLoadResult]], then register those states\n * - Flag the hook function as \"not in process\"\n * - If the hook was successful\n * - Remove the `lazyLoad` function from the state declaration\n * - If all the hooks were successful\n * - Retry the transition (by returning a TargetState)\n *\n * ```\n * .state('abc', {\n * component: 'fooComponent',\n * lazyLoad: () => System.import('./fooComponent')\n * });\n * ```\n *\n * See [[StateDeclaration.lazyLoad]]\n */\nconst lazyLoadHook: TransitionHookFn = (transition: Transition) => {\n const router = transition.router;\n\n function retryTransition() {\n if (transition.originalTransition().options().source !== 'url') {\n // The original transition was not triggered via url sync\n // The lazy state should be loaded now, so re-try the original transition\n const orig = transition.targetState();\n return router.stateService.target(orig.identifier(), orig.params(), orig.options());\n }\n\n // The original transition was triggered via url sync\n // Run the URL rules and find the best match\n const $url = router.urlService;\n const result = $url.match($url.parts());\n const rule = result && result.rule;\n\n // If the best match is a state, redirect the transition (instead\n // of calling sync() which supersedes the current transition)\n if (rule && rule.type === 'STATE') {\n const state = (rule as StateRule).state;\n const params = result.match;\n return router.stateService.target(state, params, transition.options());\n }\n\n // No matching state found, so let .sync() choose the best non-state match/otherwise\n router.urlService.sync();\n }\n\n const promises = transition\n .entering()\n .filter(state => !!state.$$state().lazyLoad)\n .map(state => lazyLoadState(transition, state));\n\n return services.$q.all(promises).then(retryTransition);\n};\n\nexport const registerLazyLoadHook = (transitionService: TransitionService) =>\n transitionService.onBefore({ entering: state => !!state.lazyLoad }, lazyLoadHook);\n\n/**\n * Invokes a state's lazy load function\n *\n * @param transition a Transition context\n * @param state the state to lazy load\n * @returns A promise for the lazy load result\n */\nexport function lazyLoadState(transition: Transition, state: StateDeclaration): Promise<LazyLoadResult> {\n const lazyLoadFn = state.$$state().lazyLoad;\n\n // Store/get the lazy load promise on/from the hookfn so it doesn't get re-invoked\n let promise = lazyLoadFn['_promise'];\n if (!promise) {\n const success = result => {\n delete state.lazyLoad;\n delete state.$$state().lazyLoad;\n delete lazyLoadFn['_promise'];\n return result;\n };\n\n const error = err => {\n delete lazyLoadFn['_promise'];\n return services.$q.reject(err);\n };\n\n promise = lazyLoadFn['_promise'] = services.$q\n .when(lazyLoadFn(transition, state))\n .then(updateStateRegistry)\n .then(success, error);\n }\n\n /** Register any lazy loaded state definitions */\n function updateStateRegistry(result: LazyLoadResult) {\n if (result && Array.isArray(result.states)) {\n result.states.forEach(_state => transition.router.stateRegistry.register(_state));\n }\n return result;\n }\n\n return promise;\n}\n",
|
||||
"/** @module transition */ /** */\nimport { TransitionHookPhase, PathType } from './interface';\nimport { GetErrorHandler, GetResultHandler, TransitionHook } from './transitionHook';\n/**\n * This class defines a type of hook, such as `onBefore` or `onEnter`.\n * Plugins can define custom hook types, such as sticky states does for `onInactive`.\n *\n * @interalapi\n */\nexport class TransitionEventType {\n /* tslint:disable:no-inferrable-types */\n constructor(\n public name: string,\n public hookPhase: TransitionHookPhase,\n public hookOrder: number,\n public criteriaMatchPath: PathType,\n public reverseSort: boolean = false,\n public getResultHandler: GetResultHandler = TransitionHook.HANDLE_RESULT,\n public getErrorHandler: GetErrorHandler = TransitionHook.REJECT_ERROR,\n public synchronous: boolean = false,\n ) {}\n}\n",
|
||||
"/** @module hooks */ /** */\n\nimport { trace } from '../common/trace';\nimport { Rejection } from '../transition/rejectFactory';\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that skips a transition if it should be ignored\n *\n * This hook is invoked at the end of the onBefore phase.\n *\n * If the transition should be ignored (because no parameter or states changed)\n * then the transition is ignored and not processed.\n */\nfunction ignoredHook(trans: Transition) {\n const ignoredReason = trans._ignoredReason();\n if (!ignoredReason) return;\n\n trace.traceTransitionIgnored(trans);\n\n const pending = trans.router.globals.transition;\n\n // The user clicked a link going back to the *current state* ('A')\n // However, there is also a pending transition in flight (to 'B')\n // Abort the transition to 'B' because the user now wants to be back at 'A'.\n if (ignoredReason === 'SameAsCurrent' && pending) {\n pending.abort();\n }\n\n return Rejection.ignored().toPromise();\n}\n\nexport const registerIgnoredTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, ignoredHook, { priority: -9999 });\n",
|
||||
"/** @module hooks */ /** */\n\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that rejects the Transition if it is invalid\n *\n * This hook is invoked at the end of the onBefore phase.\n * If the transition is invalid (for example, param values do not validate)\n * then the transition is rejected.\n */\nfunction invalidTransitionHook(trans: Transition) {\n if (!trans.valid()) {\n throw new Error(trans.error().toString());\n }\n}\n\nexport const registerInvalidTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, invalidTransitionHook, { priority: -10000 });\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport {\n IHookRegistry,\n TransitionOptions,\n TransitionHookScope,\n TransitionHookPhase,\n TransitionCreateHookFn,\n HookMatchCriteria,\n HookRegOptions,\n PathTypes,\n PathType,\n RegisteredHooks,\n TransitionHookFn,\n TransitionStateHookFn,\n} from './interface';\nimport { Transition } from './transition';\nimport { makeEvent, RegisteredHook } from './hookRegistry';\nimport { TargetState } from '../state/targetState';\nimport { PathNode } from '../path/pathNode';\nimport { ViewService } from '../view/view';\nimport { UIRouter } from '../router';\nimport { registerAddCoreResolvables, treeChangesCleanup } from '../hooks/coreResolvables';\nimport { registerRedirectToHook } from '../hooks/redirectTo';\nimport { registerOnExitHook, registerOnRetainHook, registerOnEnterHook } from '../hooks/onEnterExitRetain';\nimport { registerEagerResolvePath, registerLazyResolveState, registerResolveRemaining } from '../hooks/resolve';\nimport { registerLoadEnteringViews, registerActivateViews } from '../hooks/views';\nimport { registerUpdateGlobalState } from '../hooks/updateGlobals';\nimport { registerUpdateUrl } from '../hooks/url';\nimport { registerLazyLoadHook } from '../hooks/lazyLoad';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionHook, GetResultHandler, GetErrorHandler } from './transitionHook';\nimport { isDefined } from '../common/predicates';\nimport { removeFrom, values, createProxyFunctions } from '../common/common';\nimport { Disposable } from '../interface'; // has or is using\nimport { val } from '../common/hof';\nimport { registerIgnoredTransitionHook } from '../hooks/ignoredTransition';\nimport { registerInvalidTransitionHook } from '../hooks/invalidTransition';\n\n/**\n * The default [[Transition]] options.\n *\n * Include this object when applying custom defaults:\n * let reloadOpts = { reload: true, notify: true }\n * let options = defaults(theirOpts, customDefaults, defaultOptions);\n */\nexport let defaultTransOpts: TransitionOptions = {\n location: true,\n relative: null,\n inherit: false,\n notify: true,\n reload: false,\n custom: {},\n current: () => null,\n source: 'unknown',\n};\n\n/**\n * Plugin API for Transition Service\n * @internalapi\n */\nexport interface TransitionServicePluginAPI {\n /**\n * Adds a Path to be used as a criterion against a TreeChanges path\n *\n * For example: the `exiting` path in [[HookMatchCriteria]] is a STATE scoped path.\n * It was defined by calling `defineTreeChangesCriterion('exiting', TransitionHookScope.STATE)`\n * Each state in the exiting path is checked against the criteria and returned as part of the match.\n *\n * Another example: the `to` path in [[HookMatchCriteria]] is a TRANSITION scoped path.\n * It was defined by calling `defineTreeChangesCriterion('to', TransitionHookScope.TRANSITION)`\n * Only the tail of the `to` path is checked against the criteria and returned as part of the match.\n */\n _definePathType(name: string, hookScope: TransitionHookScope);\n\n /**\n * Gets a Path definition used as a criterion against a TreeChanges path\n */\n _getPathTypes(): PathTypes;\n\n /**\n * Defines a transition hook type and returns a transition hook registration\n * function (which can then be used to register hooks of this type).\n */\n _defineEvent(\n name: string,\n hookPhase: TransitionHookPhase,\n hookOrder: number,\n criteriaMatchPath: PathType,\n reverseSort?: boolean,\n getResultHandler?: GetResultHandler,\n getErrorHandler?: GetErrorHandler,\n rejectIfSuperseded?: boolean,\n );\n\n /**\n * Returns the known event types, such as `onBefore`\n * If a phase argument is provided, returns only events for the given phase.\n */\n _getEvents(phase?: TransitionHookPhase): TransitionEventType[];\n\n /** Returns the hooks registered for the given hook name */\n getHooks(hookName: string): RegisteredHook[];\n}\n\n/**\n * This class provides services related to Transitions.\n *\n * - Most importantly, it allows global Transition Hooks to be registered.\n * - It allows the default transition error handler to be set.\n * - It also has a factory function for creating new [[Transition]] objects, (used internally by the [[StateService]]).\n *\n * At bootstrap, [[UIRouter]] creates a single instance (singleton) of this class.\n */\nexport class TransitionService implements IHookRegistry, Disposable {\n /** @hidden */\n _transitionCount = 0;\n\n /** @hidden */\n public $view: ViewService;\n\n /** @hidden The transition hook types, such as `onEnter`, `onStart`, etc */\n private _eventTypes: TransitionEventType[] = [];\n /** @hidden The registered transition hooks */\n _registeredHooks = {} as RegisteredHooks;\n /** @hidden The paths on a criteria object */\n private _criteriaPaths = {} as PathTypes;\n /** @hidden */\n private _router: UIRouter;\n\n /** @inteLine truncated
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** */\nimport {\n createProxyFunctions,\n defaults,\n extend,\n inArray,\n noop,\n removeFrom,\n silenceUncaughtInPromise,\n silentRejection,\n} from '../common/common';\nimport { isDefined, isObject, isString } from '../common/predicates';\nimport { Queue } from '../common/queue';\nimport { services } from '../common/coreservices';\n\nimport { PathUtils } from '../path/pathUtils';\nimport { PathNode } from '../path/pathNode';\n\nimport { HookResult, TransitionOptions } from '../transition/interface';\nimport { defaultTransOpts } from '../transition/transitionService';\nimport { Rejection, RejectType } from '../transition/rejectFactory';\nimport { Transition } from '../transition/transition';\n\nimport { HrefOptions, LazyLoadResult, StateDeclaration, StateOrName, TransitionPromise } from './interface';\nimport { StateObject } from './stateObject';\nimport { TargetState } from './targetState';\n\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Glob } from '../common/glob';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { lazyLoadState } from '../hooks/lazyLoad';\nimport { not, val } from '../common/hof';\nimport { StateParams } from '../params/stateParams';\n\nexport type OnInvalidCallback = (toState?: TargetState, fromState?: TargetState, injector?: UIInjector) => HookResult;\n\n/**\n * Provides state related service functions\n *\n * This class provides services related to ui-router states.\n * An instance of this class is located on the global [[UIRouter]] object.\n */\nexport class StateService {\n /** @internalapi */\n invalidCallbacks: OnInvalidCallback[] = [];\n\n /**\n * The [[Transition]] currently in progress (or null)\n *\n * This is a passthrough through to [[UIRouterGlobals.transition]]\n */\n get transition() {\n return this.router.globals.transition;\n }\n /**\n * The latest successful state parameters\n *\n * This is a passthrough through to [[UIRouterGlobals.params]]\n */\n get params(): StateParams {\n return this.router.globals.params;\n }\n /**\n * The current [[StateDeclaration]]\n *\n * This is a passthrough through to [[UIRouterGlobals.current]]\n */\n get current() {\n return this.router.globals.current;\n }\n /**\n * The current [[StateObject]]\n *\n * This is a passthrough through to [[UIRouterGlobals.$current]]\n */\n get $current() {\n return this.router.globals.$current;\n }\n\n /** @internalapi */\n constructor(private router: UIRouter) {\n const getters = ['current', '$current', 'params', 'transition'];\n const boundFns = Object.keys(StateService.prototype).filter(not(inArray(getters)));\n createProxyFunctions(val(StateService.prototype), this, val(this), boundFns);\n }\n\n /** @internalapi */\n dispose() {\n this.defaultErrorHandler(noop);\n this.invalidCallbacks = [];\n }\n\n /**\n * Handler for when [[transitionTo]] is called with an invalid state.\n *\n * Invokes the [[onInvalid]] callbacks, in natural order.\n * Each callback's return value is checked in sequence until one of them returns an instance of TargetState.\n * The results of the callbacks are wrapped in $q.when(), so the callbacks may return promises.\n *\n * If a callback returns an TargetState, then it is used as arguments to $state.transitionTo() and the result returned.\n *\n * @internalapi\n */\n private _handleInvalidTargetState(fromPath: PathNode[], toState: TargetState) {\n const fromState = PathUtils.makeTargetState(this.router.stateRegistry, fromPath);\n const globals = this.router.globals;\n const latestThing = () => globals.transitionHistory.peekTail();\n const latest = latestThing();\n const callbackQueue = new Queue<OnInvalidCallback>(this.invalidCallbacks.slice());\n const injector = new ResolveContext(fromPath).injector();\n\n const checkForRedirect = (result: HookResult) => {\n if (!(result instanceof TargetState)) {\n return;\n }\n\n let target = <TargetState>result;\n // Recreate the TargetState, in case the state is now defined.\n target = this.target(target.identifier(), target.params(), target.options());\n\n if (!target.valid()) {\n return Rejection.invalid(target.error()).toPromise();\n }\n\n if (latestThing() !== latest) {\n return Rejection.superseded().toPromise();\n }\n\n return this.transitionTo(target.identifier(), target.params(), target.options());\n };\n\n function invokeNextCallback() {\n const nextCallback = callbackQueue.dequeue();\n if (nextCallback === undefined) return Rejection.invalid(toState.error()).toPromise();\n\n const callbackResult = services.$q.when(nextCallback(toState, fromState, injector));\n return callbackResult.then(checkForRedirect).Line truncated
|
||||
"/**\n * # Transition subsystem\n *\n * This module contains APIs related to a Transition.\n *\n * See:\n * - [[TransitionService]]\n * - [[Transition]]\n * - [[HookFn]], [[TransitionHookFn]], [[TransitionStateHookFn]], [[HookMatchCriteria]], [[HookResult]]\n *\n * @coreapi\n * @preferred\n * @module transition\n */ /** for typedoc */\nexport * from './interface';\nexport * from './hookBuilder';\nexport * from './hookRegistry';\nexport * from './rejectFactory';\nexport * from './transition';\nexport * from './transitionHook';\nexport * from './transitionEventType';\nexport * from './transitionService';\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isArray, isObject, $QLike } from '../common/index';\n\n/**\n * An angular1-like promise api\n *\n * This object implements four methods similar to the\n * [angular 1 promise api](https://docs.angularjs.org/api/ng/service/$q)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This API provides native ES6 promise support wrapped as a $q-like API.\n * Internally, UI-Router uses this $q object to perform promise operations.\n * The `angular-ui-router` (ui-router for angular 1) uses the $q API provided by angular.\n *\n * $q-like promise api\n */\nexport const $q = {\n /** Normalizes a value as a promise */\n when: val => new Promise((resolve, reject) => resolve(val)),\n\n /** Normalizes a value as a promise rejection */\n reject: val =>\n new Promise((resolve, reject) => {\n reject(val);\n }),\n\n /** @returns a deferred object, which has `resolve` and `reject` functions */\n defer: () => {\n const deferred: any = {};\n deferred.promise = new Promise((resolve, reject) => {\n deferred.resolve = resolve;\n deferred.reject = reject;\n });\n return deferred;\n },\n\n /** Like Promise.all(), but also supports object key/promise notation like $q */\n all: (promises: { [key: string]: Promise<any> } | Promise<any>[]) => {\n if (isArray(promises)) {\n return Promise.all(promises);\n }\n\n if (isObject(promises)) {\n // Convert promises map to promises array.\n // When each promise resolves, map it to a tuple { key: key, val: val }\n const chain = Object.keys(promises).map(key => promises[key].then(val => ({ key, val })));\n\n // Then wait for all promises to resolve, and convert them back to an object\n return $q.all(chain).then(values =>\n values.reduce((acc, tuple) => {\n acc[tuple.key] = tuple.val;\n return acc;\n }, {}),\n );\n }\n },\n} as $QLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n extend,\n assertPredicate,\n isFunction,\n isArray,\n isInjectable,\n $InjectorLike,\n IInjectable,\n} from '../common/index';\n\n// globally available injectables\nconst globals = {};\nconst STRIP_COMMENTS = /((\\/\\/.*$)|(\\/\\*[\\s\\S]*?\\*\\/))/gm;\nconst ARGUMENT_NAMES = /([^\\s,]+)/g;\n\n/**\n * A basic angular1-like injector api\n *\n * This object implements four methods similar to the\n * [angular 1 dependency injector](https://docs.angularjs.org/api/auto/service/$injector)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This object provides a naive implementation of a globally scoped dependency injection system.\n * It supports the following DI approaches:\n *\n * ### Function parameter names\n *\n * A function's `.toString()` is called, and the parameter names are parsed.\n * This only works when the parameter names aren't \"mangled\" by a minifier such as UglifyJS.\n *\n * ```js\n * function injectedFunction(FooService, BarService) {\n * // FooService and BarService are injected\n * }\n * ```\n *\n * ### Function annotation\n *\n * A function may be annotated with an array of dependency names as the `$inject` property.\n *\n * ```js\n * injectedFunction.$inject = [ 'FooService', 'BarService' ];\n * function injectedFunction(fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }\n * ```\n *\n * ### Array notation\n *\n * An array provides the names of the dependencies to inject (as strings).\n * The function is the last element of the array.\n *\n * ```js\n * [ 'FooService', 'BarService', function (fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }]\n * ```\n *\n * @type {$InjectorLike}\n */\nexport const $injector = {\n /** Gets an object from DI based on a string token */\n get: name => globals[name],\n\n /** Returns true if an object named `name` exists in global DI */\n has: name => $injector.get(name) != null,\n\n /**\n * Injects a function\n *\n * @param fn the function to inject\n * @param context the function's `this` binding\n * @param locals An object with additional DI tokens and values, such as `{ someToken: { foo: 1 } }`\n */\n invoke: (fn: IInjectable, context?, locals?) => {\n const all = extend({}, globals, locals || {});\n const params = $injector.annotate(fn);\n const ensureExist = assertPredicate(\n (key: string) => all.hasOwnProperty(key),\n key => `DI can't find injectable: '${key}'`,\n );\n const args = params.filter(ensureExist).map(x => all[x]);\n if (isFunction(fn)) return fn.apply(context, args);\n else return (fn as any[]).slice(-1)[0].apply(context, args);\n },\n\n /**\n * Returns a function's dependencies\n *\n * Analyzes a function (or array) and returns an array of DI tokens that the function requires.\n * @return an array of `string`s\n */\n annotate: (fn: IInjectable): any[] => {\n if (!isInjectable(fn)) throw new Error(`Not an injectable function: ${fn}`);\n if (fn && (fn as any).$inject) return (fn as any).$inject;\n if (isArray(fn)) return fn.slice(0, -1);\n const fnStr = fn.toString().replace(STRIP_COMMENTS, '');\n const result = fnStr.slice(fnStr.indexOf('(') + 1, fnStr.indexOf(')')).match(ARGUMENT_NAMES);\n return result || [];\n },\n} as $InjectorLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n LocationConfig,\n LocationServices,\n identity,\n unnestR,\n isArray,\n splitEqual,\n splitHash,\n splitQuery,\n} from '../common';\nimport { UIRouter } from '../router';\n\nexport const keyValsToObjectR = (accum, [key, val]) => {\n if (!accum.hasOwnProperty(key)) {\n accum[key] = val;\n } else if (isArray(accum[key])) {\n accum[key].push(val);\n } else {\n accum[key] = [accum[key], val];\n }\n return accum;\n};\n\nexport const getParams = (queryString: string): any =>\n queryString\n .split('&')\n .filter(identity)\n .map(splitEqual)\n .reduce(keyValsToObjectR, {});\n\nexport function parseUrl(url: string) {\n const orEmptyString = x => x || '';\n const [beforehash, hash] = splitHash(url).map(orEmptyString);\n const [path, search] = splitQuery(beforehash).map(orEmptyString);\n\n return { path, search, hash, url };\n}\n\nexport const buildUrl = (loc: LocationServices) => {\n const path = loc.path();\n const searchObject = loc.search();\n const hash = loc.hash();\n\n const search = Object.keys(searchObject)\n .map(key => {\n const param = searchObject[key];\n const vals = isArray(param) ? param : [param];\n return vals.map(val => key + '=' + val);\n })\n .reduce(unnestR, [])\n .join('&');\n\n return path + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n};\n\nexport function locationPluginFactory(\n name: string,\n isHtml5: boolean,\n serviceClass: { new (uiRouter?: UIRouter): LocationServices },\n configurationClass: { new (uiRouter?: UIRouter, isHtml5?: boolean): LocationConfig },\n) {\n return function(uiRouter: UIRouter) {\n const service = (uiRouter.locationService = new serviceClass(uiRouter));\n const configuration = (uiRouter.locationConfig = new configurationClass(uiRouter, isHtml5));\n\n function dispose(router: UIRouter) {\n router.dispose(service);\n router.dispose(configuration);\n }\n\n return { name, service, configuration, dispose };\n };\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */ /** */\n\nimport { deregAll, isDefined, LocationServices, removeFrom, root } from '../common';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { HistoryLike, LocationLike } from './interface';\nimport { buildUrl, getParams, parseUrl } from './utils';\n\n/** A base `LocationServices` */\nexport abstract class BaseLocationServices implements LocationServices, Disposable {\n private _listeners: Function[] = [];\n _location: LocationLike;\n _history: HistoryLike;\n\n _listener = evt => this._listeners.forEach(cb => cb(evt));\n\n constructor(router: UIRouter, public fireAfterUpdate: boolean) {\n this._location = root.location;\n this._history = root.history;\n }\n\n /**\n * This should return the current internal URL representation.\n *\n * The internal URL includes only the portion that UI-Router matches.\n * It does not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n */\n protected abstract _get(): string;\n\n /**\n * This should set the current URL.\n *\n * The `url` param should include only the portion that UI-Router matches on.\n * It should not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n *\n * However, after this function completes, the browser URL should reflect the entire (fully qualified)\n * HREF including those data.\n */\n protected abstract _set(state: any, title: string, url: string, replace: boolean);\n\n hash = () => parseUrl(this._get()).hash;\n path = () => parseUrl(this._get()).path;\n search = () => getParams(parseUrl(this._get()).search);\n\n url(url?: string, replace = true): string {\n if (isDefined(url) && url !== this._get()) {\n this._set(null, null, url, replace);\n\n if (this.fireAfterUpdate) {\n this._listeners.forEach(cb => cb({ url }));\n }\n }\n\n return buildUrl(this);\n }\n\n onChange(cb: EventListener) {\n this._listeners.push(cb);\n return () => removeFrom(this._listeners, cb);\n }\n\n dispose(router: UIRouter) {\n deregAll(this._listeners);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { root, trimHashVal } from '../common';\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\n\n/** A `LocationServices` that uses the browser hash \"#\" to get/set the current location */\nexport class HashLocationService extends BaseLocationServices {\n constructor(router: UIRouter) {\n super(router, false);\n root.addEventListener('hashchange', this._listener, false);\n }\n\n _get() {\n return trimHashVal(this._location.hash);\n }\n _set(state: any, title: string, url: string, replace: boolean) {\n this._location.hash = url;\n }\n\n dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('hashchange', this._listener);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\n\nimport { UIRouter } from '../router';\nimport { LocationServices, notImplemented, LocationConfig } from '../common/coreservices';\nimport { noop, createProxyFunctions } from '../common/common';\nimport { UrlConfigApi, UrlSyncApi, UrlRulesApi, UrlParts, MatchResult } from './interface';\n\n/** @hidden */\nconst makeStub = (keys: string[]): any =>\n keys.reduce((acc, key) => (acc[key] = notImplemented(key), acc), { dispose: noop });\n\n/* tslint:disable:align */\n/** @hidden */ const locationServicesFns = ['url', 'path', 'search', 'hash', 'onChange'];\n/** @hidden */ const locationConfigFns = ['port', 'protocol', 'host', 'baseHref', 'html5Mode', 'hashPrefix'];\n/** @hidden */ const umfFns = ['type', 'caseInsensitive', 'strictMode', 'defaultSquashPolicy'];\n/** @hidden */ const rulesFns = ['sort', 'when', 'initial', 'otherwise', 'rules', 'rule', 'removeRule'];\n/** @hidden */ const syncFns = ['deferIntercept', 'listen', 'sync', 'match'];\n/* tslint:enable:align */\n\n/**\n * API for URL management\n */\nexport class UrlService implements LocationServices, UrlSyncApi {\n /** @hidden */\n static locationServiceStub: LocationServices = makeStub(locationServicesFns);\n /** @hidden */\n static locationConfigStub: LocationConfig = makeStub(locationConfigFns);\n\n /**\n * A nested API for managing URL rules and rewrites\n *\n * See: [[UrlRulesApi]] for details\n */\n rules: UrlRulesApi;\n\n /**\n * A nested API to configure the URL and retrieve URL information\n *\n * See: [[UrlConfigApi]] for details\n */\n config: UrlConfigApi;\n\n /** @hidden */\n private router: UIRouter;\n\n /** @hidden */\n constructor(router: UIRouter, lateBind = true) {\n this.router = router;\n this.rules = {} as any;\n this.config = {} as any;\n\n // proxy function calls from UrlService to the LocationService/LocationConfig\n const locationServices = () => router.locationService;\n createProxyFunctions(locationServices, this, locationServices, locationServicesFns, lateBind);\n\n const locationConfig = () => router.locationConfig;\n createProxyFunctions(locationConfig, this.config, locationConfig, locationConfigFns, lateBind);\n\n const umf = () => router.urlMatcherFactory;\n createProxyFunctions(umf, this.config, umf, umfFns);\n\n const urlRouter = () => router.urlRouter;\n createProxyFunctions(urlRouter, this.rules, urlRouter, rulesFns);\n createProxyFunctions(urlRouter, this, urlRouter, syncFns);\n }\n\n /** @inheritdoc */\n url(): string;\n /** @inheritdoc */\n url(newurl: string, replace?: boolean, state?): void;\n url(newurl?, replace?, state?): any { return; }\n /** @inheritdoc */\n path(): string { return; }\n /** @inheritdoc */\n search(): { [key: string]: any } { return; }\n /** @inheritdoc */\n hash(): string { return; }\n /** @inheritdoc */\n onChange(callback: Function): Function { return; }\n\n\n /**\n * Returns the current URL parts\n *\n * This method returns the current URL components as a [[UrlParts]] object.\n *\n * @returns the current url parts\n */\n parts(): UrlParts {\n return { path: this.path(), search: this.search(), hash: this.hash() };\n }\n\n dispose() { }\n\n /** @inheritdoc */\n sync(evt?) { return; }\n /** @inheritdoc */\n listen(enabled?: boolean): Function { return; }\n /** @inheritdoc */\n deferIntercept(defer?: boolean) { return; }\n /** @inheritdoc */\n match(urlParts: UrlParts): MatchResult { return; }\n\n}\n",
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { UrlMatcherFactory } from './url/urlMatcherFactory';\nimport { UrlRouter } from './url/urlRouter';\nimport { TransitionService } from './transition/transitionService';\nimport { ViewService } from './view/view';\nimport { StateRegistry } from './state/stateRegistry';\nimport { StateService } from './state/stateService';\nimport { UIRouterGlobals } from './globals';\nimport { UIRouterPlugin, Disposable } from './interface';\nimport { values, removeFrom } from './common/common';\nimport { isFunction } from './common/predicates';\nimport { UrlService } from './url/urlService';\nimport { LocationServices, LocationConfig } from './common/coreservices';\nimport { Trace, trace } from './common/trace';\n\n/** @hidden */\nlet _routerInstance = 0;\n\n/**\n * The master class used to instantiate an instance of UI-Router.\n *\n * UI-Router (for each specific framework) will create an instance of this class during bootstrap.\n * This class instantiates and wires the UI-Router services together.\n *\n * After a new instance of the UIRouter class is created, it should be configured for your app.\n * For instance, app states should be registered with the [[UIRouter.stateRegistry]].\n *\n * ---\n *\n * Normally the framework code will bootstrap UI-Router.\n * If you are bootstrapping UIRouter manually, tell it to monitor the URL by calling\n * [[UrlService.listen]] then [[UrlService.sync]].\n */\nexport class UIRouter {\n /** @hidden */ $id = _routerInstance++;\n /** @hidden */ _disposed = false;\n /** @hidden */ private _disposables: Disposable[] = [];\n\n /** Provides trace information to the console */\n trace: Trace = trace;\n\n /** Provides services related to ui-view synchronization */\n viewService = new ViewService();\n\n /** Global router state */\n globals: UIRouterGlobals = new UIRouterGlobals();\n\n /** Provides services related to Transitions */\n transitionService: TransitionService = new TransitionService(this);\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlMatcherFactory: UrlMatcherFactory = new UrlMatcherFactory();\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlRouter: UrlRouter = new UrlRouter(this);\n\n /** Provides a registry for states, and related registration services */\n stateRegistry: StateRegistry = new StateRegistry(this);\n\n /** Provides services related to states */\n stateService = new StateService(this);\n\n /** Provides services related to the URL */\n urlService: UrlService = new UrlService(this);\n\n /** @hidden plugin instances are registered here */\n private _plugins: { [key: string]: UIRouterPlugin } = {};\n\n\n /** Registers an object to be notified when the router is disposed */\n disposable(disposable: Disposable) {\n this._disposables.push(disposable);\n }\n\n /**\n * Disposes this router instance\n *\n * When called, clears resources retained by the router by calling `dispose(this)` on all\n * registered [[disposable]] objects.\n *\n * Or, if a `disposable` object is provided, calls `dispose(this)` on that object only.\n *\n * @param disposable (optional) the disposable to dispose\n */\n dispose(disposable?: any): void {\n if (disposable && isFunction(disposable.dispose)) {\n disposable.dispose(this);\n return undefined;\n }\n\n this._disposed = true;\n this._disposables.slice().forEach(d => {\n try {\n typeof d.dispose === 'function' && d.dispose(this);\n removeFrom(this._disposables, d);\n } catch (ignored) {}\n });\n }\n\n /**\n * Creates a new `UIRouter` object\n *\n * @param locationService a [[LocationServices]] implementation\n * @param locationConfig a [[LocationConfig]] implementation\n * @internalapi\n */\n constructor(\n public locationService: LocationServices = UrlService.locationServiceStub,\n public locationConfig: LocationConfig = UrlService.locationConfigStub,\n ) {\n\n this.viewService._pluginapi._rootViewContext(this.stateRegistry.root());\n this.globals.$current = this.stateRegistry.root();\n this.globals.current = this.globals.$current.self;\n\n this.disposable(this.globals);\n this.disposable(this.stateService);\n this.disposable(this.stateRegistry);\n this.disposable(this.transitionService);\n this.disposable(this.urlRouter);\n this.disposable(locationService);\n this.disposable(locationConfig);\n }\n\n /** Add plugin (as ES6 class) */\n plugin<T extends UIRouterPlugin>(plugin: { new(router: UIRouter, options?: any): T }, options?: any): T;\n /** Add plugin (as javascript constructor function) */\n plugin<T extends UIRouterPlugin>(plugin: { (router: UIRouter, options?: any): void }, options?: any): T;\n /** Add plugin (as javascript factory function) */\n plugin<T extends UIRouterPluLine truncated
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { UIRouter } from '../router';\nimport { TransitionService } from '../transition/transitionService';\nimport { Resolvable } from '../resolve';\nimport { extend, inArray, map, mapObj, uniqR, unnestR, values } from '../common';\nimport { PathNode } from '../path';\nimport { TreeChanges } from \"../transition\";\n\nfunction addCoreResolvables(trans: Transition) {\n trans.addResolvable(Resolvable.fromData(UIRouter, trans.router), '');\n trans.addResolvable(Resolvable.fromData(Transition, trans), '');\n trans.addResolvable(Resolvable.fromData('$transition$', trans), '');\n trans.addResolvable(Resolvable.fromData('$stateParams', trans.params()), '');\n\n trans.entering().forEach(state => {\n trans.addResolvable(Resolvable.fromData('$state$', state), state);\n });\n}\n\nexport const registerAddCoreResolvables = (transitionService: TransitionService) =>\n transitionService.onCreate({}, addCoreResolvables);\n\nconst TRANSITION_TOKENS = ['$transition$', Transition];\nconst isTransition = inArray(TRANSITION_TOKENS);\n\n// References to Transition in the treeChanges pathnodes makes all\n// previous Transitions reachable in memory, causing a memory leak\n// This function removes resolves for '$transition$' and `Transition` from the treeChanges.\n// Do not use this on current transitions, only on old ones.\nexport const treeChangesCleanup = (trans: Transition) => {\n const nodes = values(trans.treeChanges()).reduce(unnestR, []).reduce(uniqR, []);\n\n // If the resolvable is a Transition, return a new resolvable with null data\n const replaceTransitionWithNull = (r: Resolvable): Resolvable => {\n return isTransition(r.token) ? Resolvable.fromData(r.token, null) : r;\n };\n\n nodes.forEach((node: PathNode) => {\n node.resolvables = node.resolvables.map(replaceTransitionWithNull);\n });\n};\n",
|
||||
"/** @module hooks */ /** */\nimport { isString, isFunction } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { services } from '../common/coreservices';\nimport { TargetState } from '../state/targetState';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\n\n/**\n * A [[TransitionHookFn]] that redirects to a different state or params\n *\n * Registered using `transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectHook);`\n *\n * See [[StateDeclaration.redirectTo]]\n */\nconst redirectToHook: TransitionHookFn = (trans: Transition) => {\n const redirect = trans.to().redirectTo;\n if (!redirect) return;\n\n const $state = trans.router.stateService;\n\n function handleResult(result: any) {\n if (!result) return;\n if (result instanceof TargetState) return result;\n if (isString(result)) return $state.target(<any> result, trans.params(), trans.options());\n if (result['state'] || result['params'])\n return $state.target(result['state'] || trans.to(), result['params'] || trans.params(), trans.options());\n }\n\n if (isFunction(redirect)) {\n return services.$q.when(redirect(trans)).then(handleResult);\n }\n return handleResult(redirect);\n};\n\nexport const registerRedirectToHook = (transitionService: TransitionService) =>\n transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectToHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { StateDeclaration } from '../state/interface';\nimport { StateObject } from '../state/stateObject';\n\n/**\n * A factory which creates an onEnter, onExit or onRetain transition hook function\n *\n * The returned function invokes the (for instance) state.onEnter hook when the\n * state is being entered.\n *\n * @hidden\n */\nfunction makeEnterExitRetainHook(hookName: string): TransitionStateHookFn {\n return (transition: Transition, state: StateDeclaration) => {\n const _state: StateObject = state.$$state();\n const hookFn: TransitionStateHookFn = _state[hookName];\n return hookFn(transition, state);\n };\n}\n\n/**\n * The [[TransitionStateHookFn]] for onExit\n *\n * When the state is being exited, the state's .onExit function is invoked.\n *\n * Registered using `transitionService.onExit({ exiting: (state) => !!state.onExit }, onExitHook);`\n *\n * See: [[IHookRegistry.onExit]]\n */\nconst onExitHook: TransitionStateHookFn = makeEnterExitRetainHook('onExit');\nexport const registerOnExitHook = (transitionService: TransitionService) =>\n transitionService.onExit({ exiting: state => !!state.onExit }, onExitHook);\n\n/**\n * The [[TransitionStateHookFn]] for onRetain\n *\n * When the state was already entered, and is not being exited or re-entered, the state's .onRetain function is invoked.\n *\n * Registered using `transitionService.onRetain({ retained: (state) => !!state.onRetain }, onRetainHook);`\n *\n * See: [[IHookRegistry.onRetain]]\n */\nconst onRetainHook: TransitionStateHookFn = makeEnterExitRetainHook('onRetain');\nexport const registerOnRetainHook = (transitionService: TransitionService) =>\n transitionService.onRetain({ retained: state => !!state.onRetain }, onRetainHook);\n\n/**\n * The [[TransitionStateHookFn]] for onEnter\n *\n * When the state is being entered, the state's .onEnter function is invoked.\n *\n * Registered using `transitionService.onEnter({ entering: (state) => !!state.onEnter }, onEnterHook);`\n *\n * See: [[IHookRegistry.onEnter]]\n */\nconst onEnterHook: TransitionStateHookFn = makeEnterExitRetainHook('onEnter');\nexport const registerOnEnterHook = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: state => !!state.onEnter }, onEnterHook);\n\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { noop } from '../common/common';\nimport { Transition } from '../transition/transition';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { TransitionStateHookFn, TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\nimport { val } from '../common/hof';\nimport { StateDeclaration } from '../state/interface';\n\nexport const RESOLVE_HOOK_PRIORITY = 1000;\n\n/**\n * A [[TransitionHookFn]] which resolves all EAGER Resolvables in the To Path\n *\n * Registered using `transitionService.onStart({}, eagerResolvePath, { priority: 1000 });`\n *\n * When a Transition starts, this hook resolves all the EAGER Resolvables, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst eagerResolvePath: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to)\n .resolvePath('EAGER', trans)\n .then(noop);\n\nexport const registerEagerResolvePath = (transitionService: TransitionService) =>\n transitionService.onStart({}, eagerResolvePath, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves all LAZY Resolvables for the state (and all its ancestors) in the To Path\n *\n * Registered using `transitionService.onEnter({ entering: () => true }, lazyResolveState, { priority: 1000 });`\n *\n * When a State is being entered, this hook resolves all the Resolvables for this state, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst lazyResolveState: TransitionStateHookFn = (trans: Transition, state: StateDeclaration) =>\n new ResolveContext(trans.treeChanges().to)\n .subContext(state.$$state())\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerLazyResolveState = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: val(true) }, lazyResolveState, { priority: RESOLVE_HOOK_PRIORITY });\n\n\n/**\n * A [[TransitionHookFn]] which resolves any dynamically added (LAZY or EAGER) Resolvables.\n *\n * Registered using `transitionService.onFinish({}, eagerResolvePath, { priority: 1000 });`\n *\n * After all entering states have been entered, this hook resolves any remaining Resolvables.\n * These are typically dynamic resolves which were added by some Transition Hook using [[Transition.addResolvable]].\n *\n * See [[StateDeclaration.resolve]]\n */\nconst resolveRemaining: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to)\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerResolveRemaining = (transitionService: TransitionService) =>\n transitionService.onFinish({}, resolveRemaining, { priority: RESOLVE_HOOK_PRIORITY });\n",
|
||||
"/** @module hooks */ /** for typedoc */\nimport { noop } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { Transition } from '../transition/transition';\nimport { ViewService } from '../view/view';\nimport { ViewConfig } from '../view/interface';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n\n/**\n * A [[TransitionHookFn]] which waits for the views to load\n *\n * Registered using `transitionService.onStart({}, loadEnteringViews);`\n *\n * Allows the views to do async work in [[ViewConfig.load]] before the transition continues.\n * In angular 1, this includes loading the templates.\n */\nconst loadEnteringViews: TransitionHookFn = (transition: Transition) => {\n const $q = services.$q;\n const enteringViews = transition.views('entering');\n if (!enteringViews.length) return;\n return $q.all(enteringViews.map(view => $q.when(view.load()))).then(noop);\n};\n\nexport const registerLoadEnteringViews = (transitionService: TransitionService) =>\n transitionService.onFinish({}, loadEnteringViews);\n\n/**\n * A [[TransitionHookFn]] which activates the new views when a transition is successful.\n *\n * Registered using `transitionService.onSuccess({}, activateViews);`\n *\n * After a transition is complete, this hook deactivates the old views from the previous state,\n * and activates the new views from the destination state.\n *\n * See [[ViewService]]\n */\nconst activateViews: TransitionHookFn = (transition: Transition) => {\n const enteringViews = transition.views('entering');\n const exitingViews = transition.views('exiting');\n if (!enteringViews.length && !exitingViews.length) return;\n\n const $view: ViewService = transition.router.viewService;\n\n exitingViews.forEach((vc: ViewConfig) => $view.deactivateViewConfig(vc));\n enteringViews.forEach((vc: ViewConfig) => $view.activateViewConfig(vc));\n\n $view.sync();\n};\n\nexport const registerActivateViews = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, activateViews);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { Transition } from '../transition/transition';\nimport { copy } from '../common/common';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates global UI-Router state\n *\n * Registered using `transitionService.onBefore({}, updateGlobalState);`\n *\n * Before a [[Transition]] starts, updates the global value of \"the current transition\" ([[Globals.transition]]).\n * After a successful [[Transition]], updates the global values of \"the current state\"\n * ([[Globals.current]] and [[Globals.$current]]) and \"the current param values\" ([[Globals.params]]).\n *\n * See also the deprecated properties:\n * [[StateService.transition]], [[StateService.current]], [[StateService.params]]\n */\nconst updateGlobalState = (trans: Transition) => {\n const globals = trans.router.globals;\n\n const transitionSuccessful = () => {\n globals.successfulTransitions.enqueue(trans);\n globals.$current = trans.$to();\n globals.current = globals.$current.self;\n\n copy(trans.params(), globals.params);\n };\n\n const clearCurrentTransition = () => {\n // Do not clear globals.transition if a different transition has started in the meantime\n if (globals.transition === trans) globals.transition = null;\n };\n\n trans.onSuccess({}, transitionSuccessful, { priority: 10000 });\n trans.promise.then(clearCurrentTransition, clearCurrentTransition);\n};\n\nexport const registerUpdateGlobalState = (transitionService: TransitionService) =>\n transitionService.onCreate({}, updateGlobalState);\n",
|
||||
"/** @module hooks */ /** */\nimport { UrlRouter } from '../url/urlRouter';\nimport { StateService } from '../state/stateService';\nimport { Transition } from '../transition/transition';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates the URL after a successful transition\n *\n * Registered using `transitionService.onSuccess({}, updateUrl);`\n */\nconst updateUrl: TransitionHookFn = (transition: Transition) => {\n const options = transition.options();\n const $state: StateService = transition.router.stateService;\n const $urlRouter: UrlRouter = transition.router.urlRouter;\n\n // Dont update the url in these situations:\n // The transition was triggered by a URL sync (options.source === 'url')\n // The user doesn't want the url to update (options.location === false)\n // The destination state, and all parents have no navigable url\n if (options.source !== 'url' && options.location && $state.$current.navigable) {\n const urlOptions = { replace: options.location === 'replace' };\n $urlRouter.push($state.$current.navigable.url, $state.params, urlOptions);\n }\n\n $urlRouter.update(true);\n};\n\nexport const registerUpdateUrl = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, updateUrl, { priority: 9999 });\n",
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\nimport { StateDeclaration, LazyLoadResult } from '../state/interface';\nimport { services } from '../common/coreservices';\nimport { StateRule } from '../url/interface';\n\n/**\n * A [[TransitionHookFn]] that performs lazy loading\n *\n * When entering a state \"abc\" which has a `lazyLoad` function defined:\n * - Invoke the `lazyLoad` function (unless it is already in process)\n * - Flag the hook function as \"in process\"\n * - The function should return a promise (that resolves when lazy loading is complete)\n * - Wait for the promise to settle\n * - If the promise resolves to a [[LazyLoadResult]], then register those states\n * - Flag the hook function as \"not in process\"\n * - If the hook was successful\n * - Remove the `lazyLoad` function from the state declaration\n * - If all the hooks were successful\n * - Retry the transition (by returning a TargetState)\n *\n * ```\n * .state('abc', {\n * component: 'fooComponent',\n * lazyLoad: () => System.import('./fooComponent')\n * });\n * ```\n *\n * See [[StateDeclaration.lazyLoad]]\n */\nconst lazyLoadHook: TransitionHookFn = (transition: Transition) => {\n const router = transition.router;\n\n function retryTransition() {\n if (transition.originalTransition().options().source !== 'url') {\n // The original transition was not triggered via url sync\n // The lazy state should be loaded now, so re-try the original transition\n const orig = transition.targetState();\n return router.stateService.target(orig.identifier(), orig.params(), orig.options());\n }\n\n // The original transition was triggered via url sync\n // Run the URL rules and find the best match\n const $url = router.urlService;\n const result = $url.match($url.parts());\n const rule = result && result.rule;\n\n // If the best match is a state, redirect the transition (instead\n // of calling sync() which supersedes the current transition)\n if (rule && rule.type === 'STATE') {\n const state = (rule as StateRule).state;\n const params = result.match;\n return router.stateService.target(state, params, transition.options());\n }\n\n // No matching state found, so let .sync() choose the best non-state match/otherwise\n router.urlService.sync();\n }\n\n const promises = transition.entering()\n .filter(state => !!state.$$state().lazyLoad)\n .map(state => lazyLoadState(transition, state));\n\n return services.$q.all(promises).then(retryTransition);\n};\n\nexport const registerLazyLoadHook = (transitionService: TransitionService) =>\n transitionService.onBefore({ entering: (state) => !!state.lazyLoad }, lazyLoadHook);\n\n\n/**\n * Invokes a state's lazy load function\n *\n * @param transition a Transition context\n * @param state the state to lazy load\n * @returns A promise for the lazy load result\n */\nexport function lazyLoadState(transition: Transition, state: StateDeclaration): Promise<LazyLoadResult> {\n const lazyLoadFn = state.$$state().lazyLoad;\n\n // Store/get the lazy load promise on/from the hookfn so it doesn't get re-invoked\n let promise = lazyLoadFn['_promise'];\n if (!promise) {\n const success = (result) => {\n delete state.lazyLoad;\n delete state.$$state().lazyLoad;\n delete lazyLoadFn['_promise'];\n return result;\n };\n\n const error = (err) => {\n delete lazyLoadFn['_promise'];\n return services.$q.reject(err);\n };\n\n promise = lazyLoadFn['_promise'] =\n services.$q.when(lazyLoadFn(transition, state))\n .then(updateStateRegistry)\n .then(success, error);\n }\n\n /** Register any lazy loaded state definitions */\n function updateStateRegistry(result: LazyLoadResult) {\n if (result && Array.isArray(result.states)) {\n result.states.forEach(_state => transition.router.stateRegistry.register(_state));\n }\n return result;\n }\n\n return promise;\n}\n",
|
||||
"/** @module transition */ /** */\nimport { TransitionHookPhase, PathType } from './interface';\nimport { GetErrorHandler, GetResultHandler, TransitionHook } from './transitionHook';\n/**\n * This class defines a type of hook, such as `onBefore` or `onEnter`.\n * Plugins can define custom hook types, such as sticky states does for `onInactive`.\n *\n * @interalapi\n */\nexport class TransitionEventType {\n /* tslint:disable:no-inferrable-types */\n constructor(public name: string,\n public hookPhase: TransitionHookPhase,\n public hookOrder: number,\n public criteriaMatchPath: PathType,\n public reverseSort: boolean = false,\n public getResultHandler: GetResultHandler = TransitionHook.HANDLE_RESULT,\n public getErrorHandler: GetErrorHandler = TransitionHook.REJECT_ERROR,\n public synchronous: boolean = false,\n ) { }\n}\n",
|
||||
"/** @module hooks */ /** */\n\nimport { trace } from '../common/trace';\nimport { Rejection } from '../transition/rejectFactory';\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that skips a transition if it should be ignored\n *\n * This hook is invoked at the end of the onBefore phase.\n *\n * If the transition should be ignored (because no parameter or states changed)\n * then the transition is ignored and not processed.\n */\nfunction ignoredHook(trans: Transition) {\n const ignoredReason = trans._ignoredReason();\n if (!ignoredReason) return;\n\n trace.traceTransitionIgnored(trans);\n\n const pending = trans.router.globals.transition;\n\n // The user clicked a link going back to the *current state* ('A')\n // However, there is also a pending transition in flight (to 'B')\n // Abort the transition to 'B' because the user now wants to be back at 'A'.\n if (ignoredReason === 'SameAsCurrent' && pending) {\n pending.abort();\n }\n\n return Rejection.ignored().toPromise();\n}\n\nexport const registerIgnoredTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, ignoredHook, { priority: -9999 });\n",
|
||||
"/** @module hooks */ /** */\n\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that rejects the Transition if it is invalid\n *\n * This hook is invoked at the end of the onBefore phase.\n * If the transition is invalid (for example, param values do not validate)\n * then the transition is rejected.\n */\nfunction invalidTransitionHook(trans: Transition) {\n if (!trans.valid()) {\n throw new Error(trans.error());\n }\n}\n\nexport const registerInvalidTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, invalidTransitionHook, { priority: -10000 });\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport {\n IHookRegistry, TransitionOptions, TransitionHookScope, TransitionHookPhase, TransitionCreateHookFn, HookMatchCriteria,\n HookRegOptions, PathTypes, PathType, RegisteredHooks, TransitionHookFn, TransitionStateHookFn,\n} from './interface';\nimport { Transition } from './transition';\nimport { makeEvent, RegisteredHook } from './hookRegistry';\nimport { TargetState } from '../state/targetState';\nimport { PathNode } from '../path/pathNode';\nimport { ViewService } from '../view/view';\nimport { UIRouter } from '../router';\nimport { registerAddCoreResolvables, treeChangesCleanup } from '../hooks/coreResolvables';\nimport { registerRedirectToHook } from '../hooks/redirectTo';\nimport { registerOnExitHook, registerOnRetainHook, registerOnEnterHook } from '../hooks/onEnterExitRetain';\nimport { registerEagerResolvePath, registerLazyResolveState, registerResolveRemaining } from '../hooks/resolve';\nimport { registerLoadEnteringViews, registerActivateViews } from '../hooks/views';\nimport { registerUpdateGlobalState } from '../hooks/updateGlobals';\nimport { registerUpdateUrl } from '../hooks/url';\nimport { registerLazyLoadHook } from '../hooks/lazyLoad';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionHook, GetResultHandler, GetErrorHandler } from './transitionHook';\nimport { isDefined } from '../common/predicates';\nimport { removeFrom, values, createProxyFunctions } from '../common/common';\nimport { Disposable } from '../interface'; // has or is using\nimport { val } from '../common/hof';\nimport { registerIgnoredTransitionHook } from '../hooks/ignoredTransition';\nimport { registerInvalidTransitionHook } from '../hooks/invalidTransition';\n\n/**\n * The default [[Transition]] options.\n *\n * Include this object when applying custom defaults:\n * let reloadOpts = { reload: true, notify: true }\n * let options = defaults(theirOpts, customDefaults, defaultOptions);\n */\nexport let defaultTransOpts: TransitionOptions = {\n location : true,\n relative : null,\n inherit : false,\n notify : true,\n reload : false,\n custom : {},\n current : () => null,\n source : 'unknown',\n};\n\n\n/**\n * Plugin API for Transition Service\n * @internalapi\n */\nexport interface TransitionServicePluginAPI {\n /**\n * Adds a Path to be used as a criterion against a TreeChanges path\n *\n * For example: the `exiting` path in [[HookMatchCriteria]] is a STATE scoped path.\n * It was defined by calling `defineTreeChangesCriterion('exiting', TransitionHookScope.STATE)`\n * Each state in the exiting path is checked against the criteria and returned as part of the match.\n *\n * Another example: the `to` path in [[HookMatchCriteria]] is a TRANSITION scoped path.\n * It was defined by calling `defineTreeChangesCriterion('to', TransitionHookScope.TRANSITION)`\n * Only the tail of the `to` path is checked against the criteria and returned as part of the match.\n */\n _definePathType(name: string, hookScope: TransitionHookScope);\n\n /**\n * Gets a Path definition used as a criterion against a TreeChanges path\n */\n _getPathTypes(): PathTypes;\n\n /**\n * Defines a transition hook type and returns a transition hook registration\n * function (which can then be used to register hooks of this type).\n */\n _defineEvent(name: string,\n hookPhase: TransitionHookPhase,\n hookOrder: number,\n criteriaMatchPath: PathType,\n reverseSort?: boolean,\n getResultHandler?: GetResultHandler,\n getErrorHandler?: GetErrorHandler,\n rejectIfSuperseded?: boolean);\n\n /**\n * Returns the known event types, such as `onBefore`\n * If a phase argument is provided, returns only events for the given phase.\n */\n _getEvents(phase?: TransitionHookPhase): TransitionEventType[];\n\n /** Returns the hooks registered for the given hook name */\n getHooks(hookName: string): RegisteredHook[];\n}\n\n/**\n * This class provides services related to Transitions.\n *\n * - Most importantly, it allows global Transition Hooks to be registered.\n * - It allows the default transition error handler to be set.\n * - It also has a factory function for creating new [[Transition]] objects, (used internally by the [[StateService]]).\n *\n * At bootstrap, [[UIRouter]] creates a single instance (singleton) of this class.\n */\nexport class TransitionService implements IHookRegistry, Disposable {\n /** @hidden */\n _transitionCount = 0;\n\n /** @hidden */\n public $view: ViewService;\n\n /** @hidden The transition hook types, such as `onEnter`, `onStart`, etc */\n private _eventTypes: TransitionEventType[] = [];\n /** @hidden The registered transition hooks */\n _registeredHooks = { } as RegisteredHooks;\n /** @hidden The paths on a criteria object */\n private _criteriaPaths Line truncated
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** */\nimport { createProxyFunctions, defaults, extend, inArray, noop, removeFrom, silenceUncaughtInPromise, silentRejection } from '../common/common';\nimport { isDefined, isObject, isString } from '../common/predicates';\nimport { Queue } from '../common/queue';\nimport { services } from '../common/coreservices';\n\nimport { PathUtils } from '../path/pathUtils';\nimport { PathNode } from '../path/pathNode';\n\nimport { HookResult, TransitionOptions } from '../transition/interface';\nimport { defaultTransOpts } from '../transition/transitionService';\nimport { Rejection, RejectType } from '../transition/rejectFactory';\nimport { Transition } from '../transition/transition';\n\nimport { HrefOptions, LazyLoadResult, StateDeclaration, StateOrName, TransitionPromise } from './interface';\nimport { StateObject } from './stateObject';\nimport { TargetState } from './targetState';\n\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Glob } from '../common/glob';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { lazyLoadState } from '../hooks/lazyLoad';\nimport { not, val } from '../common/hof';\nimport { StateParams } from '../params/stateParams';\n\nexport type OnInvalidCallback =\n (toState?: TargetState, fromState?: TargetState, injector?: UIInjector) => HookResult;\n\n/**\n * Provides state related service functions\n *\n * This class provides services related to ui-router states.\n * An instance of this class is located on the global [[UIRouter]] object.\n */\nexport class StateService {\n /** @internalapi */\n invalidCallbacks: OnInvalidCallback[] = [];\n\n /**\n * The [[Transition]] currently in progress (or null)\n *\n * This is a passthrough through to [[UIRouterGlobals.transition]]\n */\n get transition() { return this.router.globals.transition; }\n /**\n * The latest successful state parameters\n *\n * This is a passthrough through to [[UIRouterGlobals.params]]\n */\n get params(): StateParams { return this.router.globals.params; }\n /**\n * The current [[StateDeclaration]]\n *\n * This is a passthrough through to [[UIRouterGlobals.current]]\n */\n get current() { return this.router.globals.current; }\n /**\n * The current [[StateObject]]\n *\n * This is a passthrough through to [[UIRouterGlobals.$current]]\n */\n get $current() { return this.router.globals.$current; }\n\n /** @internalapi */\n constructor(private router: UIRouter) {\n const getters = ['current', '$current', 'params', 'transition'];\n const boundFns = Object.keys(StateService.prototype).filter(not(inArray(getters)));\n createProxyFunctions(val(StateService.prototype), this, val(this), boundFns);\n }\n\n /** @internalapi */\n dispose() {\n this.defaultErrorHandler(noop);\n this.invalidCallbacks = [];\n }\n\n /**\n * Handler for when [[transitionTo]] is called with an invalid state.\n *\n * Invokes the [[onInvalid]] callbacks, in natural order.\n * Each callback's return value is checked in sequence until one of them returns an instance of TargetState.\n * The results of the callbacks are wrapped in $q.when(), so the callbacks may return promises.\n *\n * If a callback returns an TargetState, then it is used as arguments to $state.transitionTo() and the result returned.\n *\n * @internalapi\n */\n private _handleInvalidTargetState(fromPath: PathNode[], toState: TargetState) {\n const fromState = PathUtils.makeTargetState(this.router.stateRegistry, fromPath);\n const globals = this.router.globals;\n const latestThing = () => globals.transitionHistory.peekTail();\n const latest = latestThing();\n const callbackQueue = new Queue<OnInvalidCallback>(this.invalidCallbacks.slice());\n const injector = new ResolveContext(fromPath).injector();\n\n const checkForRedirect = (result: HookResult) => {\n if (!(result instanceof TargetState)) {\n return;\n }\n\n let target = <TargetState> result;\n // Recreate the TargetState, in case the state is now defined.\n target = this.target(target.identifier(), target.params(), target.options());\n\n if (!target.valid()) {\n return Rejection.invalid(target.error()).toPromise();\n }\n\n if (latestThing() !== latest) {\n return Rejection.superseded().toPromise();\n }\n\n return this.transitionTo(target.identifier(), target.params(), target.options());\n };\n\n function invokeNextCallback() {\n const nextCallback = callbackQueue.dequeue();\n if (nextCallback === undefined) return Rejection.invalid(toState.error()).toPromise();\n\n const callbackResult = services.$q.when(nextCallback(toState, fromState, injector));\n return callbackResult.then(checkForRedirect).then(result => result || invokeNextCallback());\n Line truncated
|
||||
"/**\n * # Transition subsystem\n *\n * This module contains APIs related to a Transition.\n *\n * See:\n * - [[TransitionService]]\n * - [[Transition]]\n * - [[HookFn]], [[TransitionHookFn]], [[TransitionStateHookFn]], [[HookMatchCriteria]], [[HookResult]]\n *\n * @coreapi\n * @preferred\n * @module transition\n */ /** for typedoc */\nexport * from './interface';\nexport * from './hookBuilder';\nexport * from './hookRegistry';\nexport * from './rejectFactory';\nexport * from './transition';\nexport * from './transitionHook';\nexport * from './transitionEventType';\nexport * from './transitionService';\n\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isArray, isObject, $QLike } from '../common/index';\n\n/**\n * An angular1-like promise api\n *\n * This object implements four methods similar to the\n * [angular 1 promise api](https://docs.angularjs.org/api/ng/service/$q)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This API provides native ES6 promise support wrapped as a $q-like API.\n * Internally, UI-Router uses this $q object to perform promise operations.\n * The `angular-ui-router` (ui-router for angular 1) uses the $q API provided by angular.\n *\n * $q-like promise api\n */\nexport const $q = {\n /** Normalizes a value as a promise */\n when: (val) => new Promise((resolve, reject) => resolve(val)),\n\n /** Normalizes a value as a promise rejection */\n reject: (val) => new Promise((resolve, reject) => { reject(val); }),\n\n /** @returns a deferred object, which has `resolve` and `reject` functions */\n defer: () => {\n const deferred: any = {};\n deferred.promise = new Promise((resolve, reject) => {\n deferred.resolve = resolve;\n deferred.reject = reject;\n });\n return deferred;\n },\n\n /** Like Promise.all(), but also supports object key/promise notation like $q */\n all: (promises: { [key: string]: Promise<any> } | Promise<any>[]) => {\n if (isArray(promises)) {\n return Promise.all(promises);\n }\n\n if (isObject(promises)) {\n // Convert promises map to promises array.\n // When each promise resolves, map it to a tuple { key: key, val: val }\n const chain = Object.keys(promises)\n .map(key => promises[key].then(val => ({ key, val })));\n\n // Then wait for all promises to resolve, and convert them back to an object\n return $q.all(chain).then(values =>\n values.reduce((acc, tuple) => { acc[tuple.key] = tuple.val; return acc; }, {}));\n }\n },\n} as $QLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n extend, assertPredicate, isFunction, isArray, isInjectable, $InjectorLike, IInjectable,\n} from '../common/index';\n\n// globally available injectables\nconst globals = {};\nconst STRIP_COMMENTS = /((\\/\\/.*$)|(\\/\\*[\\s\\S]*?\\*\\/))/mg;\nconst ARGUMENT_NAMES = /([^\\s,]+)/g;\n\n/**\n * A basic angular1-like injector api\n *\n * This object implements four methods similar to the\n * [angular 1 dependency injector](https://docs.angularjs.org/api/auto/service/$injector)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This object provides a naive implementation of a globally scoped dependency injection system.\n * It supports the following DI approaches:\n *\n * ### Function parameter names\n *\n * A function's `.toString()` is called, and the parameter names are parsed.\n * This only works when the parameter names aren't \"mangled\" by a minifier such as UglifyJS.\n *\n * ```js\n * function injectedFunction(FooService, BarService) {\n * // FooService and BarService are injected\n * }\n * ```\n *\n * ### Function annotation\n *\n * A function may be annotated with an array of dependency names as the `$inject` property.\n *\n * ```js\n * injectedFunction.$inject = [ 'FooService', 'BarService' ];\n * function injectedFunction(fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }\n * ```\n *\n * ### Array notation\n *\n * An array provides the names of the dependencies to inject (as strings).\n * The function is the last element of the array.\n *\n * ```js\n * [ 'FooService', 'BarService', function (fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }]\n * ```\n *\n * @type {$InjectorLike}\n */\nexport const $injector = {\n /** Gets an object from DI based on a string token */\n get: name => globals[name],\n\n /** Returns true if an object named `name` exists in global DI */\n has: (name) => $injector.get(name) != null,\n\n /**\n * Injects a function\n *\n * @param fn the function to inject\n * @param context the function's `this` binding\n * @param locals An object with additional DI tokens and values, such as `{ someToken: { foo: 1 } }`\n */\n invoke: (fn: IInjectable, context?, locals?) => {\n const all = extend({}, globals, locals || {});\n const params = $injector.annotate(fn);\n const ensureExist = assertPredicate((key: string) => all.hasOwnProperty(key), key => `DI can't find injectable: '${key}'`);\n const args = params.filter(ensureExist).map(x => all[x]);\n if (isFunction(fn)) return fn.apply(context, args);\n else return (fn as any[]).slice(-1)[0].apply(context, args);\n },\n\n /**\n * Returns a function's dependencies\n *\n * Analyzes a function (or array) and returns an array of DI tokens that the function requires.\n * @return an array of `string`s\n */\n annotate: (fn: IInjectable): any[] => {\n if (!isInjectable(fn)) throw new Error(`Not an injectable function: ${fn}`);\n if (fn && (fn as any).$inject) return (fn as any).$inject;\n if (isArray(fn)) return fn.slice(0, -1);\n const fnStr = fn.toString().replace(STRIP_COMMENTS, '');\n const result = fnStr.slice(fnStr.indexOf('(') + 1, fnStr.indexOf(')')).match(ARGUMENT_NAMES);\n return result || [];\n },\n} as $InjectorLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n LocationConfig, LocationServices, identity, unnestR, isArray, splitEqual, splitHash, splitQuery,\n} from '../common';\nimport { UIRouter } from '../router';\n\nexport const keyValsToObjectR = (accum, [key, val]) => {\n if (!accum.hasOwnProperty(key)) {\n accum[key] = val;\n } else if (isArray(accum[key])) {\n accum[key].push(val);\n } else {\n accum[key] = [accum[key], val];\n }\n return accum;\n};\n\nexport const getParams = (queryString: string): any =>\n queryString.split('&').filter(identity).map(splitEqual).reduce(keyValsToObjectR, {});\n\nexport function parseUrl(url: string) {\n const orEmptyString = x => x || '';\n const [beforehash, hash] = splitHash(url).map(orEmptyString);\n const [path, search] = splitQuery(beforehash).map(orEmptyString);\n\n return { path, search, hash, url };\n}\n\nexport const buildUrl = (loc: LocationServices) => {\n const path = loc.path();\n const searchObject = loc.search();\n const hash = loc.hash();\n\n const search = Object.keys(searchObject).map(key => {\n const param = searchObject[key];\n const vals = isArray(param) ? param : [param];\n return vals.map(val => key + '=' + val);\n }).reduce(unnestR, []).join('&');\n\n return path + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n};\n\nexport function locationPluginFactory(\n name: string,\n isHtml5: boolean,\n serviceClass: { new(uiRouter?: UIRouter): LocationServices },\n configurationClass: { new(uiRouter?: UIRouter, isHtml5?: boolean): LocationConfig },\n) {\n return function(uiRouter: UIRouter) {\n const service = uiRouter.locationService = new serviceClass(uiRouter);\n const configuration = uiRouter.locationConfig = new configurationClass(uiRouter, isHtml5);\n\n function dispose(router: UIRouter) {\n router.dispose(service);\n router.dispose(configuration);\n }\n\n return { name, service, configuration, dispose };\n };\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */ /** */\n\nimport { deregAll, isDefined, LocationServices, removeFrom, root } from '../common';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { HistoryLike, LocationLike } from './interface';\nimport { buildUrl, getParams, parseUrl } from './utils';\n\n/** A base `LocationServices` */\nexport abstract class BaseLocationServices implements LocationServices, Disposable {\n private _listeners: Function[] = [];\n _location: LocationLike;\n _history: HistoryLike;\n\n _listener = evt => this._listeners.forEach(cb => cb(evt));\n\n constructor(router: UIRouter, public fireAfterUpdate: boolean) {\n this._location = root.location;\n this._history = root.history;\n }\n\n /**\n * This should return the current internal URL representation.\n *\n * The internal URL includes only the portion that UI-Router matches.\n * It does not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n */\n protected abstract _get(): string;\n\n /**\n * This should set the current URL.\n *\n * The `url` param should include only the portion that UI-Router matches on.\n * It should not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n *\n * However, after this function completes, the browser URL should reflect the entire (fully qualified)\n * HREF including those data.\n */\n protected abstract _set(state: any, title: string, url: string, replace: boolean);\n\n hash = () => parseUrl(this._get()).hash;\n path = () => parseUrl(this._get()).path;\n search = () => getParams(parseUrl(this._get()).search);\n\n url(url?: string, replace = true): string {\n if (isDefined(url) && url !== this._get()) {\n this._set(null, null, url, replace);\n\n if (this.fireAfterUpdate) {\n this._listeners.forEach(cb => cb({ url }));\n }\n }\n\n return buildUrl(this);\n }\n\n onChange(cb: EventListener) {\n this._listeners.push(cb);\n return () => removeFrom(this._listeners, cb);\n }\n\n dispose(router: UIRouter) {\n deregAll(this._listeners);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { root, trimHashVal } from '../common';\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\n\n/** A `LocationServices` that uses the browser hash \"#\" to get/set the current location */\nexport class HashLocationService extends BaseLocationServices {\n constructor(router: UIRouter) {\n super(router, false);\n root.addEventListener('hashchange', this._listener, false);\n }\n\n _get() {\n return trimHashVal(this._location.hash);\n }\n _set(state: any, title: string, url: string, replace: boolean) {\n this._location.hash = url;\n }\n\n dispose (router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('hashchange', this._listener);\n }\n}\n\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BaseLocationServices } from './baseLocationService';\nimport { UIRouter } from '../router';\n\n/** A `LocationServices` that gets/sets the current location from an in-memory object */\nexport class MemoryLocationService extends BaseLocationServices {\n _url: string;\n\n constructor(router: UIRouter) {\n super(router, true);\n }\n\n _get() {\n return this._url;\n }\n\n _set(state: any, title: string, url: string, replace: boolean) {\n this._url = url;\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\nimport { LocationConfig, root, splitHash, splitQuery, stripLastPathElement } from '../common';\n\n/**\n * A `LocationServices` that gets/sets the current location using the browser's `location` and `history` apis\n *\n * Uses `history.pushState` and `history.replaceState`\n */\nexport class PushStateLocationService extends BaseLocationServices {\n _config: LocationConfig;\n\n constructor(router: UIRouter) {\n super(router, true);\n this._config = router.urlService.config;\n root.addEventListener('popstate', this._listener, false);\n }\n\n /**\n * Gets the base prefix without:\n * - trailing slash\n * - trailing filename\n * - protocol and hostname\n *\n * If <base href='/base/'>, this returns '/base'.\n * If <base href='/foo/base/'>, this returns '/foo/base'.\n * If <base href='/base/index.html'>, this returns '/base'.\n * If <base href='http://localhost:8080/base/index.html'>, this returns '/base'.\n * If <base href='/base'>, this returns ''.\n * If <base href='http://localhost:8080'>, this returns ''.\n * If <base href='http://localhost:8080/'>, this returns ''.\n *\n * See: https://html.spec.whatwg.org/dev/semantics.html#the-base-element\n */\n private _getBasePrefix() {\n return stripLastPathElement(this._config.baseHref());\n }\n\n protected _get() {\n let { pathname, hash, search } = this._location;\n search = splitQuery(search)[1]; // strip ? if found\n hash = splitHash(hash)[1]; // strip # if found\n\n const basePrefix = this._getBasePrefix();\n const exactBaseHrefMatch = pathname === this._config.baseHref();\n const startsWithBase = pathname.substr(0, basePrefix.length) === basePrefix;\n pathname = exactBaseHrefMatch ? '/' : startsWithBase ? pathname.substring(basePrefix.length) : pathname;\n\n return pathname + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n }\n\n protected _set(state: any, title: string, url: string, replace: boolean) {\n const basePrefix = this._getBasePrefix();\n const slash = url && url[0] !== '/' ? '/' : '';\n const fullUrl = url === '' || url === '/' ? this._config.baseHref() : basePrefix + slash + url;\n\n if (replace) {\n this._history.replaceState(state, title, fullUrl);\n } else {\n this._history.pushState(state, title, fullUrl);\n }\n }\n\n public dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('popstate', this._listener);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { LocationConfig } from '../common/coreservices';\nimport { isDefined } from '../common/predicates';\nimport { noop } from '../common/common';\n\n/** A `LocationConfig` mock that gets/sets all config from an in-memory object */\nexport class MemoryLocationConfig implements LocationConfig {\n dispose = noop;\n\n _baseHref = '';\n _port = 80;\n _protocol = 'http';\n _host = 'localhost';\n _hashPrefix = '';\n\n port = () => this._port;\n protocol = () => this._protocol;\n host = () => this._host;\n baseHref = () => this._baseHref;\n html5Mode = () => false;\n hashPrefix = (newval?) => (isDefined(newval) ? (this._hashPrefix = newval) : this._hashPrefix);\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isDefined } from '../common/predicates';\nimport { LocationConfig } from '../common/coreservices';\n\n/** A `LocationConfig` that delegates to the browser's `location` object */\nexport class BrowserLocationConfig implements LocationConfig {\n private _baseHref = undefined;\n private _hashPrefix = '';\n\n constructor(router?, private _isHtml5 = false) {}\n\n port(): number {\n if (location.port) {\n return Number(location.port);\n }\n\n return this.protocol() === 'https' ? 443 : 80;\n }\n\n protocol(): string {\n return location.protocol.replace(/:/g, '');\n }\n\n host(): string {\n return location.hostname;\n }\n\n html5Mode(): boolean {\n return this._isHtml5;\n }\n\n hashPrefix(): string;\n hashPrefix(newprefix?: string): string {\n return isDefined(newprefix) ? (this._hashPrefix = newprefix) : this._hashPrefix;\n }\n\n baseHref(href?: string): string {\n return isDefined(href)\n ? (this._baseHref = href)\n : isDefined(this._baseHref) ? this._baseHref : this.applyDocumentBaseHref();\n }\n\n applyDocumentBaseHref() {\n const baseTag: HTMLBaseElement = document.getElementsByTagName('base')[0];\n return (this._baseHref = baseTag ? baseTag.href.substr(location.origin.length) : location.pathname || '/');\n }\n\n dispose() {}\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BrowserLocationConfig } from './browserLocationConfig';\nimport { HashLocationService } from './hashLocationService';\nimport { locationPluginFactory } from './utils';\nimport { LocationPlugin, ServicesPlugin } from './interface';\nimport { UIRouter } from '../router';\nimport { PushStateLocationService } from './pushStateLocationService';\nimport { MemoryLocationService } from './memoryLocationService';\nimport { MemoryLocationConfig } from './memoryLocationConfig';\nimport { $injector } from './injector';\nimport { $q } from './q';\nimport { services } from '../common/coreservices';\n\nexport function servicesPlugin(router: UIRouter): ServicesPlugin {\n services.$injector = $injector;\n services.$q = $q;\n\n return { name: 'vanilla.services', $q, $injector, dispose: () => null };\n}\n\n/** A `UIRouterPlugin` uses the browser hash to get/set the current location */\nexport const hashLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.hashBangLocation',\n false,\n HashLocationService,\n BrowserLocationConfig,\n);\n\n/** A `UIRouterPlugin` that gets/sets the current location using the browser's `location` and `history` apis */\nexport const pushStateLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.pushStateLocation',\n true,\n PushStateLocationService,\n BrowserLocationConfig,\n);\n\n/** A `UIRouterPlugin` that gets/sets the current location from an in-memory object */\nexport const memoryLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.memoryLocation',\n false,\n MemoryLocationService,\n MemoryLocationConfig,\n);\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\nimport { LocationConfig, root, splitHash, splitQuery, stripLastPathElement } from '../common';\n\n/**\n * A `LocationServices` that gets/sets the current location using the browser's `location` and `history` apis\n *\n * Uses `history.pushState` and `history.replaceState`\n */\nexport class PushStateLocationService extends BaseLocationServices {\n _config: LocationConfig;\n\n constructor(router: UIRouter) {\n super(router, true);\n this._config = router.urlService.config;\n root.addEventListener('popstate', this._listener, false);\n }\n\n /**\n * Gets the base prefix without:\n * - trailing slash\n * - trailing filename\n * - protocol and hostname\n *\n * If <base href='/base/'>, this returns '/base'.\n * If <base href='/foo/base/'>, this returns '/foo/base'.\n * If <base href='/base/index.html'>, this returns '/base'.\n * If <base href='http://localhost:8080/base/index.html'>, this returns '/base'.\n * If <base href='/base'>, this returns ''.\n * If <base href='http://localhost:8080'>, this returns ''.\n * If <base href='http://localhost:8080/'>, this returns ''.\n *\n * See: https://html.spec.whatwg.org/dev/semantics.html#the-base-element\n */\n private _getBasePrefix() {\n return stripLastPathElement(this._config.baseHref());\n }\n\n protected _get() {\n let { pathname, hash, search } = this._location;\n search = splitQuery(search)[1]; // strip ? if found\n hash = splitHash(hash)[1]; // strip # if found\n\n const basePrefix = this._getBasePrefix();\n const exactBaseHrefMatch = pathname === this._config.baseHref();\n const startsWithBase = pathname.substr(0, basePrefix.length) === basePrefix;\n pathname = exactBaseHrefMatch ? '/' : startsWithBase ? pathname.substring(basePrefix.length) : pathname;\n\n return pathname + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n }\n\n protected _set(state: any, title: string, url: string, replace: boolean) {\n const basePrefix = this._getBasePrefix();\n const slash = url && url[0] !== '/' ? '/' : '';\n const fullUrl = (url === '' || url === '/') ? this._config.baseHref() : basePrefix + slash + url;\n\n if (replace) {\n this._history.replaceState(state, title, fullUrl);\n } else {\n this._history.pushState(state, title, fullUrl);\n }\n }\n\n public dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('popstate', this._listener);\n }\n}\n\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { LocationConfig } from '../common/coreservices';\nimport { isDefined } from '../common/predicates';\nimport { noop } from '../common/common';\n\n/** A `LocationConfig` mock that gets/sets all config from an in-memory object */\nexport class MemoryLocationConfig implements LocationConfig {\n dispose = noop;\n\n _baseHref = '';\n _port = 80;\n _protocol = 'http';\n _host = 'localhost';\n _hashPrefix = '';\n\n port = () => this._port;\n protocol = () => this._protocol;\n host = () => this._host;\n baseHref = () => this._baseHref;\n html5Mode = () => false;\n hashPrefix = (newval?) => isDefined(newval) ? this._hashPrefix = newval : this._hashPrefix;\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isDefined } from '../common/predicates';\nimport { LocationConfig } from '../common/coreservices';\n\n/** A `LocationConfig` that delegates to the browser's `location` object */\nexport class BrowserLocationConfig implements LocationConfig {\n private _baseHref = undefined;\n private _hashPrefix = '';\n\n constructor(router?, private _isHtml5 = false) { }\n\n port(): number {\n if (location.port) {\n return Number(location.port);\n }\n\n return this.protocol() === 'https' ? 443 : 80;\n }\n\n protocol(): string {\n return location.protocol.replace(/:/g, '');\n }\n\n host(): string {\n return location.hostname;\n }\n\n html5Mode(): boolean {\n return this._isHtml5;\n }\n\n hashPrefix(): string;\n hashPrefix(newprefix?: string): string {\n return isDefined(newprefix) ? this._hashPrefix = newprefix : this._hashPrefix;\n }\n\n baseHref(href?: string): string {\n return isDefined(href) ? this._baseHref = href :\n isDefined(this._baseHref) ? this._baseHref : this.applyDocumentBaseHref();\n }\n\n applyDocumentBaseHref() {\n const baseTag: HTMLBaseElement = document.getElementsByTagName('base')[0];\n return this._baseHref = baseTag ? baseTag.href.substr(location.origin.length) : location.pathname || '/';\n }\n\n dispose() {}\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BrowserLocationConfig } from './browserLocationConfig';\nimport { HashLocationService } from './hashLocationService';\nimport { locationPluginFactory } from './utils';\nimport { LocationPlugin, ServicesPlugin } from './interface';\nimport { UIRouter } from '../router';\nimport { PushStateLocationService } from './pushStateLocationService';\nimport { MemoryLocationService } from './memoryLocationService';\nimport { MemoryLocationConfig } from './memoryLocationConfig';\nimport { $injector } from './injector';\nimport { $q } from './q';\nimport { services } from '../common/coreservices';\n\nexport function servicesPlugin(router: UIRouter): ServicesPlugin {\n services.$injector = $injector;\n services.$q = $q;\n\n return { name: 'vanilla.services', $q, $injector, dispose: () => null };\n}\n\n/** A `UIRouterPlugin` uses the browser hash to get/set the current location */\nexport const hashLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.hashBangLocation', false, HashLocationService, BrowserLocationConfig);\n\n/** A `UIRouterPlugin` that gets/sets the current location using the browser's `location` and `history` apis */\nexport const pushStateLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.pushStateLocation', true, PushStateLocationService, BrowserLocationConfig);\n\n/** A `UIRouterPlugin` that gets/sets the current location from an in-memory object */\nexport const memoryLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.memoryLocation', false, MemoryLocationService, MemoryLocationConfig);\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nexport * from './vanilla/index';\n",
|
||||
"/**\n * # Core classes and interfaces\n *\n * The classes and interfaces that are core to ui-router and do not belong\n * to a more specific subsystem (such as resolve).\n *\n * @coreapi\n * @preferred\n * @module core\n */ /** for typedoc */\n\n// Need to import or export at least one concrete something\nimport { noop } from './common/common';\nimport { UIRouter } from './router';\n\n/**\n * An interface for getting values from dependency injection.\n *\n * This is primarily used to get resolve values for a given token.\n * An instance of the `UIInjector` can be retrieved from the current transition using [[Transition.injector]].\n *\n * ---\n *\n * If no resolve is found for a token, then it will delegate to the native injector.\n * The native injector may be Angular 1 `$injector`, Angular 2 `Injector`, or a simple polyfill.\n *\n * In Angular 2, the native injector might be the root Injector,\n * or it might be a lazy loaded `NgModule` injector scoped to a lazy load state tree.\n */\nexport interface UIInjector {\n /**\n * Gets a value from the injector.\n *\n * For a given token, returns the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this throws an error.\n *\n * #### Example:\n * ```js\n * var myResolve = injector.get('myResolve');\n * ```\n *\n * #### ng1 Example:\n * ```js\n * // Fetch StateService\n * injector.get('$state').go('home');\n * ```\n *\n * #### ng2 Example:\n * ```js\n * import {StateService} from \"ui-router-ng2\";\n * // Fetch StateService\n * injector.get(StateService).go('home');\n * ```\n *\n * #### Typescript Example:\n * ```js\n * var stringArray = injector.get<string[]>('myStringArray');\n * ```\n *\n * ### `NOWAIT` policy\n *\n * When using [[ResolvePolicy.async]] === `NOWAIT`, the value returned from `get()` is a promise for the result.\n * The promise is not automatically unwrapped.\n *\n * @param token the key for the value to get. May be a string, a class, or any arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n get(token: any): any;\n /** Gets a value as type `T` (generics parameter) */\n get<T>(token: any): T;\n\n /**\n * Asynchronously gets a value from the injector\n *\n * For a given token, returns a promise for the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this triggers the resolve to load.\n *\n * #### Example:\n * ```js\n * return injector.getAsync('myResolve').then(value => {\n * if (value === 'declined') return false;\n * });\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return a Promise for the Dependency Injection value that matches the token\n */\n getAsync(token: any): Promise<any>;\n /** Asynchronously gets a value as type `T` (generics parameter) */\n getAsync<T>(token: any): Promise<T>;\n\n /**\n * Gets a value from the native injector\n *\n * Returns a value from the native injector, bypassing anything in the [[ResolveContext]].\n *\n * Example:\n * ```js\n * let someThing = injector.getNative(SomeToken);\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n getNative(token: any): any;\n getNative<T>(token: any): T;\n}\n\n/** @internalapi */\nexport interface UIRouterPlugin extends Disposable {\n name: string;\n}\n\n/** @internalapi */\nexport abstract class UIRouterPluginBase implements UIRouterPlugin, Disposable {\n abstract name: string;\n dispose(router: UIRouter) {}\n}\n\n/** @internalapi */\nexport interface Disposable {\n /** Instructs the Disposable to clean up any resources */\n dispose(router?: UIRouter);\n}\n",
|
||||
"/**\n * # Core classes and interfaces\n *\n * The classes and interfaces that are core to ui-router and do not belong\n * to a more specific subsystem (such as resolve).\n *\n * @coreapi\n * @preferred\n * @module core\n */ /** for typedoc */\n\n// Need to import or export at least one concrete something\nimport { noop } from './common/common';\nimport { UIRouter } from './router';\n\n/**\n * An interface for getting values from dependency injection.\n *\n * This is primarily used to get resolve values for a given token.\n * An instance of the `UIInjector` can be retrieved from the current transition using [[Transition.injector]].\n *\n * ---\n *\n * If no resolve is found for a token, then it will delegate to the native injector.\n * The native injector may be Angular 1 `$injector`, Angular 2 `Injector`, or a simple polyfill.\n *\n * In Angular 2, the native injector might be the root Injector,\n * or it might be a lazy loaded `NgModule` injector scoped to a lazy load state tree.\n */\nexport interface UIInjector {\n /**\n * Gets a value from the injector.\n *\n * For a given token, returns the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this throws an error.\n *\n * #### Example:\n * ```js\n * var myResolve = injector.get('myResolve');\n * ```\n *\n * #### ng1 Example:\n * ```js\n * // Fetch StateService\n * injector.get('$state').go('home');\n * ```\n *\n * #### ng2 Example:\n * ```js\n * import {StateService} from \"ui-router-ng2\";\n * // Fetch StateService\n * injector.get(StateService).go('home');\n * ```\n *\n * #### Typescript Example:\n * ```js\n * var stringArray = injector.get<string[]>('myStringArray');\n * ```\n *\n * ### `NOWAIT` policy\n *\n * When using [[ResolvePolicy.async]] === `NOWAIT`, the value returned from `get()` is a promise for the result.\n * The promise is not automatically unwrapped.\n *\n * @param token the key for the value to get. May be a string, a class, or any arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n get(token: any): any;\n /** Gets a value as type `T` (generics parameter) */\n get<T>(token: any): T;\n\n /**\n * Asynchronously gets a value from the injector\n *\n * For a given token, returns a promise for the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this triggers the resolve to load.\n *\n * #### Example:\n * ```js\n * return injector.getAsync('myResolve').then(value => {\n * if (value === 'declined') return false;\n * });\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return a Promise for the Dependency Injection value that matches the token\n */\n getAsync(token: any): Promise<any>;\n /** Asynchronously gets a value as type `T` (generics parameter) */\n getAsync<T>(token: any): Promise<T>;\n\n /**\n * Gets a value from the native injector\n *\n * Returns a value from the native injector, bypassing anything in the [[ResolveContext]].\n *\n * Example:\n * ```js\n * let someThing = injector.getNative(SomeToken);\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n getNative(token: any): any;\n getNative<T>(token: any): T;\n}\n\n/** @internalapi */\nexport interface UIRouterPlugin extends Disposable {\n name: string;\n}\n\n/** @internalapi */\nexport abstract class UIRouterPluginBase implements UIRouterPlugin, Disposable {\n abstract name: string;\n dispose(router: UIRouter) { }\n}\n\n/** @internalapi */\nexport interface Disposable {\n /** Instructs the Disposable to clean up any resources */\n dispose(router?: UIRouter);\n}\n",
|
||||
"/**\n * @coreapi\n * @module common\n */ /** */\n\nexport * from './common/index';\nexport * from './params/index';\nexport * from './path/index';\nexport * from './resolve/index';\nexport * from './state/index';\nexport * from './transition/index';\nexport * from './url/index';\nexport * from './view/index';\nexport * from './globals';\n\nexport * from './router';\nexport * from './vanilla';\nexport * from './interface';\n",
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from '../angular';\nimport {\n StateObject,\n pick,\n forEach,\n tail,\n extend,\n isArray,\n isInjectable,\n isDefined,\n isString,\n services,\n trace,\n ViewConfig,\n ViewService,\n ViewConfigFactory,\n PathNode,\n ResolveContext,\n Resolvable,\n IInjectable,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration } from '../interface';\nimport { TemplateFactory } from '../templateFactory';\nimport IInjectorService = angular.auto.IInjectorService;\n\nexport function getNg1ViewConfigFactory(): ViewConfigFactory {\n let templateFactory: TemplateFactory = null;\n return (path, view) => {\n templateFactory = templateFactory || services.$injector.get('$templateFactory');\n return [new Ng1ViewConfig(path, view, templateFactory)];\n };\n}\n\nconst hasAnyKey = (keys, obj) => keys.reduce((acc, key) => acc || isDefined(obj[key]), false);\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `views`.\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * handles the `views` property with logic specific to @uirouter/angularjs (ng1).\n *\n * If no `views: {}` property exists on the [[StateDeclaration]], then it creates the `views` object\n * and applies the state-level configuration to a view named `$default`.\n */\nexport function ng1ViewsBuilder(state: StateObject) {\n // Do not process root state\n if (!state.parent) return {};\n\n const tplKeys = ['templateProvider', 'templateUrl', 'template', 'notify', 'async'],\n ctrlKeys = ['controller', 'controllerProvider', 'controllerAs', 'resolveAs'],\n compKeys = ['component', 'bindings', 'componentProvider'],\n nonCompKeys = tplKeys.concat(ctrlKeys),\n allViewKeys = compKeys.concat(nonCompKeys);\n\n // Do not allow a state to have both state-level props and also a `views: {}` property.\n // A state without a `views: {}` property can declare properties for the `$default` view as properties of the state.\n // However, the `$default` approach should not be mixed with a separate `views: ` block.\n if (isDefined(state.views) && hasAnyKey(allViewKeys, state)) {\n throw new Error(\n `State '${state.name}' has a 'views' object. ` +\n `It cannot also have \"view properties\" at the state level. ` +\n `Move the following properties into a view (in the 'views' object): ` +\n ` ${allViewKeys.filter(key => isDefined(state[key])).join(', ')}`,\n );\n }\n\n const views: { [key: string]: Ng1ViewDeclaration } = {},\n viewsObject = state.views || { $default: pick(state, allViewKeys) };\n\n forEach(viewsObject, function(config: Ng1ViewDeclaration, name: string) {\n // Account for views: { \"\": { template... } }\n name = name || '$default';\n // Account for views: { header: \"headerComponent\" }\n if (isString(config)) config = { component: <string>config };\n\n // Make a shallow copy of the config object\n config = extend({}, config);\n\n // Do not allow a view to mix props for component-style view with props for template/controller-style view\n if (hasAnyKey(compKeys, config) && hasAnyKey(nonCompKeys, config)) {\n throw new Error(\n `Cannot combine: ${compKeys.join('|')} with: ${nonCompKeys.join('|')} in stateview: '${name}@${state.name}'`,\n );\n }\n\n config.resolveAs = config.resolveAs || '$resolve';\n config.$type = 'ng1';\n config.$context = state;\n config.$name = name;\n\n const normalized = ViewService.normalizeUIViewTarget(config.$context, config.$name);\n config.$uiViewName = normalized.uiViewName;\n config.$uiViewContextAnchor = normalized.uiViewContextAnchor;\n\n views[name] = config;\n });\n return views;\n}\n\nlet id = 0;\nexport class Ng1ViewConfig implements ViewConfig {\n $id = id++;\n loaded = false;\n controller: Function; // actually IInjectable|string\n template: string;\n component: string;\n locals: any; // TODO: delete me\n\n constructor(public path: PathNode[], public viewDecl: Ng1ViewDeclaration, public factory: TemplateFactory) {}\n\n load() {\n const $q = services.$q;\n const context = new ResolveContext(this.path);\n const params = this.path.reduce((acc, node) => extend(acc, node.paramValues), {});\n\n const promises: any = {\n template: $q.when(this.factory.fromConfig(this.viewDecl, params, context)),\n controller: $q.when(this.getController(context)),\n };\n\n return $q.all(promises).then(results => {\n trace.traceViewServiceEvent('Loaded', this);\n this.controller = results.controller;\n extend(this, results.template); // Either { template: \"tpl\" } or { component: \"cmpName\" }\n return this;\n });\n }\n\n getTemplate = (uiView, context: ResolveContext) =>\n this.component\n ? this.factory.makeComponentTemplate(uiView, context, this.component, this.viewDecl.bindings)\n : this.template;\n\n /**\n *Line truncated
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"/** @module view */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport { IAugmentedJQuery } from 'angular';\nimport {\n isArray,\n isDefined,\n isFunction,\n isObject,\n services,\n Obj,\n IInjectable,\n tail,\n kebobString,\n unnestR,\n ResolveContext,\n Resolvable,\n RawParams,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration, TemplateFactoryProvider } from './interface';\n\n/**\n * Service which manages loading of templates from a ViewConfig.\n */\nexport class TemplateFactory implements TemplateFactoryProvider {\n /** @hidden */ private _useHttp = angular.version.minor < 3;\n /** @hidden */ private $templateRequest;\n /** @hidden */ private $templateCache;\n /** @hidden */ private $http;\n\n /** @hidden */ $get = [\n '$http',\n '$templateCache',\n '$injector',\n ($http, $templateCache, $injector) => {\n this.$templateRequest = $injector.has && $injector.has('$templateRequest') && $injector.get('$templateRequest');\n this.$http = $http;\n this.$templateCache = $templateCache;\n return this;\n },\n ];\n\n /** @hidden */\n useHttpService(value: boolean) {\n this._useHttp = value;\n }\n\n /**\n * Creates a template from a configuration object.\n *\n * @param config Configuration object for which to load a template.\n * The following properties are search in the specified order, and the first one\n * that is defined is used to create the template:\n *\n * @param params Parameters to pass to the template function.\n * @param context The resolve context associated with the template's view\n *\n * @return {string|object} The template html as a string, or a promise for\n * that string,or `null` if no template is configured.\n */\n fromConfig(\n config: Ng1ViewDeclaration,\n params: any,\n context: ResolveContext,\n ): Promise<{ template?: string; component?: string }> {\n const defaultTemplate = '<ui-view></ui-view>';\n\n const asTemplate = result => services.$q.when(result).then(str => ({ template: str }));\n const asComponent = result => services.$q.when(result).then(str => ({ component: str }));\n\n return isDefined(config.template)\n ? asTemplate(this.fromString(config.template, params))\n : isDefined(config.templateUrl)\n ? asTemplate(this.fromUrl(config.templateUrl, params))\n : isDefined(config.templateProvider)\n ? asTemplate(this.fromProvider(config.templateProvider, params, context))\n : isDefined(config.component)\n ? asComponent(config.component)\n : isDefined(config.componentProvider)\n ? asComponent(this.fromComponentProvider(config.componentProvider, params, context))\n : asTemplate(defaultTemplate);\n }\n\n /**\n * Creates a template from a string or a function returning a string.\n *\n * @param template html template as a string or function that returns an html template as a string.\n * @param params Parameters to pass to the template function.\n *\n * @return {string|object} The template html as a string, or a promise for that\n * string.\n */\n fromString(template: string | Function, params?: RawParams) {\n return isFunction(template) ? (<any>template)(params) : template;\n }\n\n /**\n * Loads a template from the a URL via `$http` and `$templateCache`.\n *\n * @param {string|Function} url url of the template to load, or a function\n * that returns a url.\n * @param {Object} params Parameters to pass to the url function.\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromUrl(url: string | Function, params: any) {\n if (isFunction(url)) url = (<any>url)(params);\n if (url == null) return null;\n\n if (this._useHttp) {\n return this.$http\n .get(url, { cache: this.$templateCache, headers: { Accept: 'text/html' } })\n .then(function(response) {\n return response.data;\n });\n }\n\n return this.$templateRequest(url);\n }\n\n /**\n * Creates a template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromProvider(provider: IInjectable, params: any, context: ResolveContext) {\n const deps = services.$injector.annotate(provider);\n const providerFn = isArray(provider) ? tail(<any[]>provider) : provider;\n const resolvable = new Resolvable('', <Function>providerFn, deps);\n return resolvable.get(context);\n }\n\n /**\n * Creates a component's template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {strinLine truncated
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"/** @module ng1 */ /** for typedoc */\nimport {\n val,\n isObject,\n createProxyFunctions,\n BuilderFunction,\n StateRegistry,\n StateService,\n OnInvalidCallback,\n} from '@uirouter/core';\nimport { Ng1StateDeclaration } from './interface';\n\n/**\n * The Angular 1 `StateProvider`\n *\n * The `$stateProvider` works similar to Angular's v1 router, but it focuses purely\n * on state.\n *\n * A state corresponds to a \"place\" in the application in terms of the overall UI and\n * navigation. A state describes (via the controller / template / view properties) what\n * the UI looks like and does at that place.\n *\n * States often have things in common, and the primary way of factoring out these\n * commonalities in this model is via the state hierarchy, i.e. parent/child states aka\n * nested states.\n *\n * The `$stateProvider` provides interfaces to declare these states for your app.\n */\nexport class StateProvider {\n constructor(private stateRegistry: StateRegistry, private stateService: StateService) {\n createProxyFunctions(val(StateProvider.prototype), this, val(this));\n }\n\n /**\n * Decorates states when they are registered\n *\n * Allows you to extend (carefully) or override (at your own peril) the\n * `stateBuilder` object used internally by [[StateRegistry]].\n * This can be used to add custom functionality to ui-router,\n * for example inferring templateUrl based on the state name.\n *\n * When passing only a name, it returns the current (original or decorated) builder\n * function that matches `name`.\n *\n * The builder functions that can be decorated are listed below. Though not all\n * necessarily have a good use case for decoration, that is up to you to decide.\n *\n * In addition, users can attach custom decorators, which will generate new\n * properties within the state's internal definition. There is currently no clear\n * use-case for this beyond accessing internal states (i.e. $state.$current),\n * however, expect this to become increasingly relevant as we introduce additional\n * meta-programming features.\n *\n * **Warning**: Decorators should not be interdependent because the order of\n * execution of the builder functions in non-deterministic. Builder functions\n * should only be dependent on the state definition object and super function.\n *\n *\n * Existing builder functions and current return values:\n *\n * - **parent** `{object}` - returns the parent state object.\n * - **data** `{object}` - returns state data, including any inherited data that is not\n * overridden by own values (if any).\n * - **url** `{object}` - returns a {@link ui.router.util.type:UrlMatcher UrlMatcher}\n * or `null`.\n * - **navigable** `{object}` - returns closest ancestor state that has a URL (aka is\n * navigable).\n * - **params** `{object}` - returns an array of state params that are ensured to\n * be a super-set of parent's params.\n * - **views** `{object}` - returns a views object where each key is an absolute view\n * name (i.e. \"viewName@stateName\") and each value is the config object\n * (template, controller) for the view. Even when you don't use the views object\n * explicitly on a state config, one is still created for you internally.\n * So by decorating this builder function you have access to decorating template\n * and controller properties.\n * - **ownParams** `{object}` - returns an array of params that belong to the state,\n * not including any params defined by ancestor states.\n * - **path** `{string}` - returns the full path from the root down to this state.\n * Needed for state activation.\n * - **includes** `{object}` - returns an object that includes every state that\n * would pass a `$state.includes()` test.\n *\n * #### Example:\n * Override the internal 'views' builder with a function that takes the state\n * definition, and a reference to the internal function being overridden:\n * ```js\n * $stateProvider.decorator('views', function (state, parent) {\n * let result = {},\n * views = parent(state);\n *\n * angular.forEach(views, function (config, name) {\n * let autoName = (state.name + '.' + name).replace('.', '/');\n * config.templateUrl = config.templateUrl || '/partials/' + autoName + '.html';\n * result[name] = config;\n * });\n * return result;\n * });\n *\n * $stateProvider.state('home', {\n * views: {\n * 'contact.list': { controller: 'ListController' },\n * 'contact.item': { controller: 'ItemController' }\n * }\n * });\n * ```\n *\n *\n * ```js\n * // Auto-populates list and item views with /partials/home/contact/list.html,\n * // and /partials/home/contact/item.html, respectively.\n * $state.go('home');\n * ```\n *\n * @param {string} name The name of the builder function to decorate.\n * @param {object} func A function thLine truncated
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"/** @module ng1 */ /** */\nimport {\n StateObject,\n TransitionStateHookFn,\n HookResult,\n Transition,\n services,\n ResolveContext,\n extend,\n BuilderFunction,\n} from '@uirouter/core';\nimport { getLocals } from '../services';\nimport { Ng1StateDeclaration } from '../interface';\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `onEnter`, `onExit`,\n * `onRetain` callback hooks on a [[Ng1StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * ensures that those hooks are injectable for @uirouter/angularjs (ng1).\n */\nexport const getStateHookBuilder = (hookName: 'onEnter' | 'onExit' | 'onRetain') =>\n function stateHookBuilder(stateObject: StateObject, parentFn: BuilderFunction): TransitionStateHookFn {\n const hook = stateObject[hookName];\n const pathname = hookName === 'onExit' ? 'from' : 'to';\n\n function decoratedNg1Hook(trans: Transition, state: Ng1StateDeclaration): HookResult {\n const resolveContext = new ResolveContext(trans.treeChanges(pathname));\n const subContext = resolveContext.subContext(state.$$state());\n const locals = extend(getLocals(subContext), { $state$: state, $transition$: trans });\n return services.$injector.invoke(hook, this, locals);\n }\n\n return hook ? decoratedNg1Hook : undefined;\n };\n",
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"/**\n * @internalapi\n * @module ng1\n */ /** */\nimport { LocationConfig, LocationServices, UIRouter, ParamType, isDefined } from '@uirouter/core';\nimport { val, createProxyFunctions, removeFrom, isObject } from '@uirouter/core';\nimport { ILocationService, ILocationProvider } from 'angular';\n\n/**\n * Implements UI-Router LocationServices and LocationConfig using Angular 1's $location service\n */\nexport class Ng1LocationServices implements LocationConfig, LocationServices {\n private $locationProvider: ILocationProvider;\n private $location: ILocationService;\n private $sniffer;\n\n path;\n search;\n hash;\n hashPrefix;\n port;\n protocol;\n host;\n baseHref;\n\n // .onChange() registry\n private _urlListeners: Function[] = [];\n\n /**\n * Applys ng1-specific path parameter encoding\n *\n * The Angular 1 `$location` service is a bit weird.\n * It doesn't allow slashes to be encoded/decoded bi-directionally.\n *\n * See the writeup at https://github.com/angular-ui/ui-router/issues/2598\n *\n * This code patches the `path` parameter type so it encoded/decodes slashes as ~2F\n *\n * @param router\n */\n static monkeyPatchPathParameterType(router: UIRouter) {\n const pathType: ParamType = router.urlMatcherFactory.type('path');\n\n pathType.encode = (x: any) =>\n x != null ? x.toString().replace(/(~|\\/)/g, m => ({ '~': '~~', '/': '~2F' }[m])) : x;\n\n pathType.decode = (x: string) =>\n x != null ? x.toString().replace(/(~~|~2F)/g, m => ({ '~~': '~', '~2F': '/' }[m])) : x;\n }\n\n dispose() {}\n\n constructor($locationProvider: ILocationProvider) {\n this.$locationProvider = $locationProvider;\n const _lp = val($locationProvider);\n createProxyFunctions(_lp, this, _lp, ['hashPrefix']);\n }\n\n onChange(callback: Function) {\n this._urlListeners.push(callback);\n return () => removeFrom(this._urlListeners)(callback);\n }\n\n html5Mode() {\n let html5Mode: any = this.$locationProvider.html5Mode();\n html5Mode = isObject(html5Mode) ? html5Mode.enabled : html5Mode;\n return html5Mode && this.$sniffer.history;\n }\n\n url(newUrl?: string, replace = false, state?) {\n if (isDefined(newUrl)) this.$location.url(newUrl);\n if (replace) this.$location.replace();\n if (state) this.$location.state(state);\n return this.$location.url();\n }\n\n _runtimeServices($rootScope, $location: ILocationService, $sniffer, $browser) {\n this.$location = $location;\n this.$sniffer = $sniffer;\n\n // Bind $locationChangeSuccess to the listeners registered in LocationService.onChange\n $rootScope.$on('$locationChangeSuccess', evt => this._urlListeners.forEach(fn => fn(evt)));\n const _loc = val($location);\n const _browser = val($browser);\n\n // Bind these LocationService functions to $location\n createProxyFunctions(_loc, this, _loc, ['replace', 'path', 'search', 'hash']);\n // Bind these LocationConfig functions to $location\n createProxyFunctions(_loc, this, _loc, ['port', 'protocol', 'host']);\n // Bind these LocationConfig functions to $browser\n createProxyFunctions(_browser, this, _browser, ['baseHref']);\n }\n}\n",
|
||||
"/** @module url */ /** */\nimport {\n UIRouter,\n UrlRouter,\n LocationServices,\n $InjectorLike,\n BaseUrlRule,\n UrlRuleHandlerFn,\n UrlMatcher,\n IInjectable,\n} from '@uirouter/core';\nimport { services, isString, isFunction, isArray, identity } from '@uirouter/core';\n\nexport interface RawNg1RuleFunction {\n ($injector: $InjectorLike, $location: LocationServices): string | void;\n}\n\n/**\n * Manages rules for client-side URL\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class manages the router rules for what to do when the URL changes.\n *\n * This provider remains for backwards compatibility.\n *\n * @deprecated\n */\nexport class UrlRouterProvider {\n /** @hidden */ _router: UIRouter;\n /** @hidden */ _urlRouter: UrlRouter;\n\n static injectableHandler(router: UIRouter, handler): UrlRuleHandlerFn {\n return match => services.$injector.invoke(handler, null, { $match: match, $stateParams: router.globals.params });\n }\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this._urlRouter = router.urlRouter;\n }\n\n /** @hidden */\n $get() {\n const urlRouter = this._urlRouter;\n urlRouter.update(true);\n if (!urlRouter.interceptDeferred) urlRouter.listen();\n return urlRouter;\n }\n\n /**\n * Registers a url handler function.\n *\n * Registers a low level url handler (a `rule`).\n * A rule detects specific URL patterns and returns a redirect, or performs some action.\n *\n * If a rule returns a string, the URL is replaced with the string, and all rules are fired again.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // Here's an example of how you might allow case insensitive urls\n * $urlRouterProvider.rule(function ($injector, $location) {\n * var path = $location.path(),\n * normalized = path.toLowerCase();\n *\n * if (path !== normalized) {\n * return normalized;\n * }\n * });\n * });\n * ```\n *\n * @param ruleFn\n * Handler function that takes `$injector` and `$location` services as arguments.\n * You can use them to detect a url and return a different url as a string.\n *\n * @return [[UrlRouterProvider]] (`this`)\n */\n rule(ruleFn: RawNg1RuleFunction): UrlRouterProvider {\n if (!isFunction(ruleFn)) throw new Error(\"'rule' must be a function\");\n\n const match = () => ruleFn(services.$injector, this._router.locationService);\n\n const rule = new BaseUrlRule(match, identity);\n this._urlRouter.rule(rule);\n return this;\n }\n\n /**\n * Defines the path or behavior to use when no url can be matched.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // if the path doesn't match any of the urls you configured\n * // otherwise will take care of routing the user to the\n * // specified url\n * $urlRouterProvider.otherwise('/index');\n *\n * // Example of using function rule as param\n * $urlRouterProvider.otherwise(function ($injector, $location) {\n * return '/a/valid/url';\n * });\n * });\n * ```\n *\n * @param rule\n * The url path you want to redirect to or a function rule that returns the url path or performs a `$state.go()`.\n * The function version is passed two params: `$injector` and `$location` services, and should return a url string.\n *\n * @return {object} `$urlRouterProvider` - `$urlRouterProvider` instance\n */\n otherwise(rule: string | RawNg1RuleFunction): UrlRouterProvider {\n const urlRouter = this._urlRouter;\n\n if (isString(rule)) {\n urlRouter.otherwise(rule);\n } else if (isFunction(rule)) {\n urlRouter.otherwise(() => rule(services.$injector, this._router.locationService));\n } else {\n throw new Error(\"'rule' must be a string or function\");\n }\n\n return this;\n }\n\n /**\n * Registers a handler for a given url matching.\n *\n * If the handler is a string, it is\n * treated as a redirect, and is interpolated according to the syntax of match\n * (i.e. like `String.replace()` for `RegExp`, or like a `UrlMatcher` pattern otherwise).\n *\n * If the handler is a function, it is injectable.\n * It gets invoked if `$location` matches.\n * You have the option of inject the match object as `$match`.\n *\n * The handler can return\n *\n * - **falsy** to indicate that the rule didn't match after all, then `$urlRouter`\n * will continue trying to find another one that matches.\n * - **string** which is treated as a redirect and passed to `$location.url()`\n * - **void** or any **truthy**Line truncated
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"/**\n * # Angular 1 types\n *\n * UI-Router core provides various Typescript types which you can use for code completion and validating parameter values, etc.\n * The customizations to the core types for Angular UI-Router are documented here.\n *\n * The optional [[$resolve]] service is also documented here.\n *\n * @module ng1\n * @preferred\n */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport {\n IRootScopeService,\n IQService,\n ILocationService,\n ILocationProvider,\n IHttpService,\n ITemplateCacheService,\n} from 'angular';\nimport {\n services,\n applyPairs,\n isString,\n trace,\n extend,\n UIRouter,\n StateService,\n UrlRouter,\n UrlMatcherFactory,\n ResolveContext,\n unnestR,\n TypedMap,\n} from '@uirouter/core';\nimport { ng1ViewsBuilder, getNg1ViewConfigFactory } from './statebuilders/views';\nimport { TemplateFactory } from './templateFactory';\nimport { StateProvider } from './stateProvider';\nimport { getStateHookBuilder } from './statebuilders/onEnterExitRetain';\nimport { Ng1LocationServices } from './locationServices';\nimport { UrlRouterProvider } from './urlRouterProvider';\nimport IInjectorService = angular.auto.IInjectorService; // tslint:disable-line\n\nangular.module('ui.router.angular1', []);\nconst mod_init = angular.module('ui.router.init', []);\nconst mod_util = angular.module('ui.router.util', ['ng', 'ui.router.init']);\nconst mod_rtr = angular.module('ui.router.router', ['ui.router.util']);\nconst mod_state = angular.module('ui.router.state', ['ui.router.router', 'ui.router.util', 'ui.router.angular1']);\nconst mod_main = angular.module('ui.router', ['ui.router.init', 'ui.router.state', 'ui.router.angular1']);\nlet mod_cmpt = angular.module('ui.router.compat', ['ui.router']); // tslint:disable-line\n\ndeclare module '@uirouter/core/lib/router' {\n interface UIRouter {\n // tslint:disable-line:no-shadowed-variable\n /** @hidden */\n stateProvider: StateProvider;\n /** @hidden */\n urlRouterProvider: UrlRouterProvider;\n }\n}\n\nlet router: UIRouter = null;\n\n$uiRouterProvider.$inject = ['$locationProvider'];\n/** This angular 1 provider instantiates a Router and exposes its services via the angular injector */\nfunction $uiRouterProvider($locationProvider: ILocationProvider) {\n // Create a new instance of the Router when the $uiRouterProvider is initialized\n router = this.router = new UIRouter();\n router.stateProvider = new StateProvider(router.stateRegistry, router.stateService);\n\n // Apply ng1 specific StateBuilder code for `views`, `resolve`, and `onExit/Retain/Enter` properties\n router.stateRegistry.decorator('views', ng1ViewsBuilder);\n router.stateRegistry.decorator('onExit', getStateHookBuilder('onExit'));\n router.stateRegistry.decorator('onRetain', getStateHookBuilder('onRetain'));\n router.stateRegistry.decorator('onEnter', getStateHookBuilder('onEnter'));\n\n router.viewService._pluginapi._viewConfigFactory('ng1', getNg1ViewConfigFactory());\n\n const ng1LocationService = (router.locationService = router.locationConfig = new Ng1LocationServices(\n $locationProvider,\n ));\n\n Ng1LocationServices.monkeyPatchPathParameterType(router);\n\n // backwards compat: also expose router instance as $uiRouterProvider.router\n router['router'] = router;\n router['$get'] = $get;\n $get.$inject = ['$location', '$browser', '$sniffer', '$rootScope', '$http', '$templateCache'];\n function $get(\n $location: ILocationService,\n $browser: any,\n $sniffer: any,\n $rootScope: ng.IScope,\n $http: IHttpService,\n $templateCache: ITemplateCacheService,\n ) {\n ng1LocationService._runtimeServices($rootScope, $location, $sniffer, $browser);\n delete router['router'];\n delete router['$get'];\n return router;\n }\n return router;\n}\n\nconst getProviderFor = serviceName => [\n '$uiRouterProvider',\n $urp => {\n const service = $urp.router[serviceName];\n service['$get'] = () => service;\n return service;\n },\n];\n\n// This effectively calls $get() on `$uiRouterProvider` to trigger init (when ng enters runtime)\nrunBlock.$inject = ['$injector', '$q', '$uiRouter'];\nfunction runBlock($injector: IInjectorService, $q: IQService, $uiRouter: UIRouter) {\n services.$injector = $injector;\n services.$q = <any>$q;\n\n // The $injector is now available.\n // Find any resolvables that had dependency annotation deferred\n $uiRouter.stateRegistry\n .get()\n .map(x => x.$$state().resolvables)\n .reduce(unnestR, [])\n .filter(x => x.deps === 'deferred')\n .forEach(resolvable => (resolvable.deps = $injector.annotate(resolvable.resolveFn, $injector.strictDi)));\n}\n\n// $urlRouter service and $urlRouterProvider\nconst getUrlRouterProvider = (uiRouter: UIRouter) => (uiRouter.urlRouterProvider = new UrlRouterProvider(uiRouter));\n\n// $state service and $stateProvider\n// $urlRouter service and $urlRouterProvider\nconst getStateProvider = () => extend(router.stLine truncated
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"/**\n * # Angular 1 injectable services\n *\n * This is a list of the objects which can be injected using angular's injector.\n *\n * There are three different kind of injectable objects:\n *\n * ## **Provider** objects\n * #### injectable into a `.config()` block during configtime\n *\n * - [[$uiRouterProvider]]: The UI-Router instance\n * - [[$stateProvider]]: State registration\n * - [[$transitionsProvider]]: Transition hooks\n * - [[$urlServiceProvider]]: All URL related public APIs\n *\n * - [[$uiViewScrollProvider]]: Disable ui-router view scrolling\n * - [[$urlRouterProvider]]: (deprecated) Url matching rules\n * - [[$urlMatcherFactoryProvider]]: (deprecated) Url parsing config\n *\n * ## **Service** objects\n * #### injectable globally during runtime\n *\n * - [[$uiRouter]]: The UI-Router instance\n * - [[$trace]]: Enable transition trace/debug\n * - [[$transitions]]: Transition hooks\n * - [[$state]]: Imperative state related APIs\n * - [[$stateRegistry]]: State registration\n * - [[$urlService]]: All URL related public APIs\n * - [[$uiRouterGlobals]]: Global variables\n * - [[$uiViewScroll]]: Scroll an element into view\n *\n * - [[$stateParams]]: (deprecated) Global state param values\n * - [[$urlRouter]]: (deprecated) URL synchronization\n * - [[$urlMatcherFactory]]: (deprecated) URL parsing config\n *\n * ## **Per-Transition** objects\n *\n * - These kind of objects are injectable into:\n * - Resolves ([[Ng1StateDeclaration.resolve]]),\n * - Transition Hooks ([[TransitionService.onStart]], etc),\n * - Routed Controllers ([[Ng1ViewDeclaration.controller]])\n *\n * #### Different instances are injected based on the [[Transition]]\n *\n * - [[$transition$]]: The current Transition object\n * - [[$stateParams]]: State param values for pending Transition (deprecated)\n * - Any resolve data defined using [[Ng1StateDeclaration.resolve]]\n *\n * @ng1api\n * @preferred\n * @module injectables\n */ /** */\n/* tslint:disable:prefer-const */\nimport { StateProvider } from './stateProvider';\nimport {\n StateService,\n TransitionService,\n Transition,\n UrlRouter,\n UrlMatcherFactory,\n StateParams,\n StateRegistry,\n UIRouterGlobals,\n UIRouter,\n Trace,\n UrlService,\n} from '@uirouter/core';\nimport { UIViewScrollProvider } from './viewScroll';\nimport { UrlRouterProvider } from './urlRouterProvider';\n\n/**\n * The current (or pending) State Parameters\n *\n * An injectable global **Service Object** which holds the state parameters for the latest **SUCCESSFUL** transition.\n *\n * The values are not updated until *after* a `Transition` successfully completes.\n *\n * **Also:** an injectable **Per-Transition Object** object which holds the pending state parameters for the pending `Transition` currently running.\n *\n * ### Deprecation warning:\n *\n * The value injected for `$stateParams` is different depending on where it is injected.\n *\n * - When injected into an angular service, the object injected is the global **Service Object** with the parameter values for the latest successful `Transition`.\n * - When injected into transition hooks, resolves, or view controllers, the object is the **Per-Transition Object** with the parameter values for the running `Transition`.\n *\n * Because of these confusing details, this service is deprecated.\n *\n * ### Instead of using the global `$stateParams` service object,\n * inject [[$uiRouterGlobals]] and use [[UIRouterGlobals.params]]\n *\n * ```js\n * MyService.$inject = ['$uiRouterGlobals'];\n * function MyService($uiRouterGlobals) {\n * return {\n * paramValues: function () {\n * return $uiRouterGlobals.params;\n * }\n * }\n * }\n * ```\n *\n * ### Instead of using the per-transition `$stateParams` object,\n * inject the current `Transition` (as [[$transition$]]) and use [[Transition.params]]\n *\n * ```js\n * MyController.$inject = ['$transition$'];\n * function MyController($transition$) {\n * var username = $transition$.params().username;\n * // .. do something with username\n * }\n * ```\n *\n * ---\n *\n * This object can be injected into other services.\n *\n * #### Deprecated Example:\n * ```js\n * SomeService.$inject = ['$http', '$stateParams'];\n * function SomeService($http, $stateParams) {\n * return {\n * getUser: function() {\n * return $http.get('/api/users/' + $stateParams.username);\n * }\n * }\n * };\n * angular.service('SomeService', SomeService);\n * ```\n * @deprecated\n */\nlet $stateParams: StateParams;\n\n/**\n * Global UI-Router variables\n *\n * The router global state as a **Service Object** (injectable during runtime).\n *\n * This object contains globals such as the current state and current parameter values.\n */\nlet $uiRouterGlobals: UIRouterGlobals;\n\n/**\n * The UI-Router instance\n *\n * The [[UIRouter]] singleton (the router instance) as a **Service Object** (injectable during runtime).\n *\n * This object is the UI-Router singleton instance, created by angular Line truncated
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"/**\n * # Angular 1 Directives\n *\n * These are the directives included in UI-Router for Angular 1.\n * These directives are used in templates to create viewports and link/navigate to states.\n *\n * @ng1api\n * @preferred\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IAugmentedJQuery, ITimeoutService, IScope, IInterpolateService } from 'angular';\n\nimport {\n Obj,\n extend,\n forEach,\n tail,\n isString,\n isObject,\n isArray,\n parse,\n noop,\n unnestR,\n identity,\n uniqR,\n inArray,\n removeFrom,\n RawParams,\n PathNode,\n StateOrName,\n StateService,\n StateDeclaration,\n UIRouter,\n} from '@uirouter/core';\nimport { UIViewData } from './viewDirective';\nimport EventHandler = JQuery.EventHandler;\n\n/** @hidden Used for typedoc */\nexport interface ng1_directive {} // tslint:disable-line:class-name\n\n/** @hidden */\nfunction parseStateRef(ref: string) {\n let parsed;\n const paramsOnly = ref.match(/^\\s*({[^}]*})\\s*$/);\n if (paramsOnly) ref = '(' + paramsOnly[1] + ')';\n\n parsed = ref.replace(/\\n/g, ' ').match(/^\\s*([^(]*?)\\s*(\\((.*)\\))?\\s*$/);\n if (!parsed || parsed.length !== 4) throw new Error(\"Invalid state ref '\" + ref + \"'\");\n return { state: parsed[1] || null, paramExpr: parsed[3] || null };\n}\n\n/** @hidden */\nfunction stateContext(el: IAugmentedJQuery) {\n const $uiView: UIViewData = (el.parent() as IAugmentedJQuery).inheritedData('$uiView');\n const path: PathNode[] = parse('$cfg.path')($uiView);\n return path ? tail(path).state.name : undefined;\n}\n\n/** @hidden */\nfunction processedDef($state: StateService, $element: IAugmentedJQuery, def: Def): Def {\n const uiState = def.uiState || $state.current.name;\n const uiStateOpts = extend(defaultOpts($element, $state), def.uiStateOpts || {});\n const href = $state.href(uiState, def.uiStateParams, uiStateOpts);\n return { uiState, uiStateParams: def.uiStateParams, uiStateOpts, href };\n}\n\n/** @hidden */\ninterface TypeInfo {\n attr: string;\n isAnchor: boolean;\n clickable: boolean;\n}\n\n/** @hidden */\nfunction getTypeInfo(el: IAugmentedJQuery): TypeInfo {\n // SVGAElement does not use the href attribute, but rather the 'xlinkHref' attribute.\n const isSvg = Object.prototype.toString.call(el.prop('href')) === '[object SVGAnimatedString]';\n const isForm = el[0].nodeName === 'FORM';\n\n return {\n attr: isForm ? 'action' : isSvg ? 'xlink:href' : 'href',\n isAnchor: el.prop('tagName').toUpperCase() === 'A',\n clickable: !isForm,\n };\n}\n\n/** @hidden */\nfunction clickHook(\n el: IAugmentedJQuery,\n $state: StateService,\n $timeout: ITimeoutService,\n type: TypeInfo,\n getDef: () => Def,\n) {\n return function(e: JQueryMouseEventObject) {\n const button = e.which || e.button,\n target = getDef();\n\n if (!(button > 1 || e.ctrlKey || e.metaKey || e.shiftKey || el.attr('target'))) {\n // HACK: This is to allow ng-clicks to be processed before the transition is initiated:\n const transition = $timeout(function() {\n $state.go(target.uiState, target.uiStateParams, target.uiStateOpts);\n });\n e.preventDefault();\n\n // if the state has no URL, ignore one preventDefault from the <a> directive.\n let ignorePreventDefaultCount = type.isAnchor && !target.href ? 1 : 0;\n\n e.preventDefault = function() {\n if (ignorePreventDefaultCount-- <= 0) $timeout.cancel(transition);\n };\n }\n };\n}\n\n/** @hidden */\nfunction defaultOpts(el: IAugmentedJQuery, $state: StateService) {\n return {\n relative: stateContext(el) || $state.$current,\n inherit: true,\n source: 'sref',\n };\n}\n\n/** @hidden */\nfunction bindEvents(element: IAugmentedJQuery, scope: IScope, hookFn: EventHandler<any>, uiStateOpts: any): void {\n let events;\n\n if (uiStateOpts) {\n events = uiStateOpts.events;\n }\n\n if (!isArray(events)) {\n events = ['click'];\n }\n\n const on = element.on ? 'on' : 'bind';\n for (const event of events) {\n element[on](event, hookFn);\n }\n\n scope.$on('$destroy', function() {\n const off = element.off ? 'off' : 'unbind';\n for (const event of events) {\n element[off](event, hookFn);\n }\n });\n}\n\n/**\n * `ui-sref`: A directive for linking to a state\n *\n * A directive which links to a state (and optionally, parameters).\n * When clicked, this directive activates the linked state with the supplied parameter values.\n *\n * ### Linked State\n * The attribute value of the `ui-sref` is the name of the state to link to.\n *\n * #### Example:\n * This will activate the `home` state when the link is clicked.\n * ```html\n * <a ui-sref=\"home\">Home</a>\n * ```\n *\n * ### Relative Links\n * You can also use relative state paths within `ui-sref`, just like a relative path passed to `$state.go()` ([[StateService.go]]).\n * You just need to be aware that the path is relative to the state that *created* the link.\nLine truncated
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"/** @module ng1 */ /** for typedoc */\n\nimport { ng as angular } from './angular';\nimport { Obj, StateService, StateOrName } from '@uirouter/core';\n\n/**\n * `isState` Filter: truthy if the current state is the parameter\n *\n * Translates to [[StateService.is]] `$state.is(\"stateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'stateName' | isState\">show if state is 'stateName'</div>\n * ```\n */\n$IsStateFilter.$inject = ['$state'];\nexport function $IsStateFilter($state: StateService) {\n const isFilter: any = function(state: StateOrName, params: Obj, options?: { relative?: StateOrName }) {\n return $state.is(state, params, options);\n };\n isFilter.$stateful = true;\n return isFilter;\n}\n\n/**\n * `includedByState` Filter: truthy if the current state includes the parameter\n *\n * Translates to [[StateService.includes]]` $state.is(\"fullOrPartialStateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'fullOrPartialStateName' | includedByState\">show if state includes 'fullOrPartialStateName'</div>\n * ```\n */\n$IncludedByStateFilter.$inject = ['$state'];\nexport function $IncludedByStateFilter($state: StateService) {\n const includesFilter: any = function(state: StateOrName, params: Obj, options: { relative?: StateOrName }) {\n return $state.includes(state, params, options);\n };\n includesFilter.$stateful = true;\n return includesFilter;\n}\n\nangular\n .module('ui.router.state')\n .filter('isState', $IsStateFilter)\n .filter('includedByState', $IncludedByStateFilter);\n",
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"/**\n * @ng1api\n * @module directives\n */\n\nimport {\n $QLike,\n ActiveUIView,\n extend,\n filter,\n HookRegOptions,\n isDefined,\n isFunction,\n isString,\n kebobString,\n noop,\n Obj,\n Param,\n parse,\n PathNode,\n ResolveContext,\n StateDeclaration,\n tail,\n trace,\n Transition,\n TransitionService,\n TypedMap,\n unnestR,\n ViewService,\n} from '@uirouter/core';\nimport { IAugmentedJQuery, IInterpolateService, IScope, ITimeoutService, ITranscludeFunction } from 'angular';\nimport { ng as angular } from '../angular';\nimport { Ng1Controller, Ng1StateDeclaration } from '../interface';\nimport { getLocals } from '../services';\nimport { Ng1ViewConfig } from '../statebuilders/views';\nimport { ng1_directive } from './stateDirectives';\n\n/** @hidden */\nexport type UIViewData = {\n $cfg: Ng1ViewConfig;\n $uiView: ActiveUIView;\n};\n\n/** @hidden */\nexport type UIViewAnimData = {\n $animEnter: Promise<any>;\n $animLeave: Promise<any>;\n $$animLeave: { resolve: () => any }; // \"deferred\"\n};\n\n/**\n * `ui-view`: A viewport directive which is filled in by a view from the active state.\n *\n * ### Attributes\n *\n * - `name`: (Optional) A view name.\n * The name should be unique amongst the other views in the same state.\n * You can have views of the same name that live in different states.\n * The ui-view can be targeted in a View using the name ([[Ng1StateDeclaration.views]]).\n *\n * - `autoscroll`: an expression. When it evaluates to true, the `ui-view` will be scrolled into view when it is activated.\n * Uses [[$uiViewScroll]] to do the scrolling.\n *\n * - `onload`: Expression to evaluate whenever the view updates.\n *\n * #### Example:\n * A view can be unnamed or named.\n * ```html\n * <!-- Unnamed -->\n * <div ui-view></div>\n *\n * <!-- Named -->\n * <div ui-view=\"viewName\"></div>\n *\n * <!-- Named (different style) -->\n * <ui-view name=\"viewName\"></ui-view>\n * ```\n *\n * You can only have one unnamed view within any template (or root html). If you are only using a\n * single view and it is unnamed then you can populate it like so:\n *\n * ```html\n * <div ui-view></div>\n * $stateProvider.state(\"home\", {\n * template: \"<h1>HELLO!</h1>\"\n * })\n * ```\n *\n * The above is a convenient shortcut equivalent to specifying your view explicitly with the\n * [[Ng1StateDeclaration.views]] config property, by name, in this case an empty name:\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * But typically you'll only use the views property if you name your view or have more than one view\n * in the same template. There's not really a compelling reason to name a view if its the only one,\n * but you could if you wanted, like so:\n *\n * ```html\n * <div ui-view=\"main\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"main\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * Really though, you'll use views to set up multiple views:\n *\n * ```html\n * <div ui-view></div>\n * <div ui-view=\"chart\"></div>\n * <div ui-view=\"data\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * },\n * \"chart\": {\n * template: \"<chart_thing/>\"\n * },\n * \"data\": {\n * template: \"<data_thing/>\"\n * }\n * }\n * })\n * ```\n *\n * #### Examples for `autoscroll`:\n * ```html\n * <!-- If autoscroll present with no expression,\n * then scroll ui-view into view -->\n * <ui-view autoscroll/>\n *\n * <!-- If autoscroll present with valid expression,\n * then scroll ui-view into view if expression evaluates to true -->\n * <ui-view autoscroll='true'/>\n * <ui-view autoscroll='false'/>\n * <ui-view autoscroll='scopeVariable'/>\n * ```\n *\n * Resolve data:\n *\n * The resolved data from the state's `resolve` block is placed on the scope as `$resolve` (this\n * can be customized using [[Ng1ViewDeclaration.resolveAs]]). This can be then accessed from the template.\n *\n * Note that when `controllerAs` is being used, `$resolve` is set on the controller instance *after* the\n * controller is instantiated. The `$onInit()` hook can be used to perform initialization code which\n * depends on `$resolve` data.\n *\n * #### Example:\n * ```js\n * $stateProvider.state('home', {\n * template: '<my-component user=\"$resolve.user\"></my-component>',\n * resolve: {\n * user: function(UserService) { return UserService.fetchUser(); }\n * }\n * });\n * ```\n */\nexport let uiView: ng1_directive;\nuiView = [\n '$view',\n '$animate',\n '$uiViewScroll',\n '$interpolate',\n '$q',\n function $ViewDirective(\n $view: ViewService,\n $animate: any,\n $uiViewScroll: any,\n $interpolate: IInterpolateService,\n $q: $QLike,\n ) {\n function getLine truncated
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"/** @module ng1 */ /** */\nimport { ng as angular } from './angular';\nimport { IServiceProviderFactory } from 'angular';\nimport IAnchorScrollService = angular.IAnchorScrollService;\nimport ITimeoutService = angular.ITimeoutService;\n\nexport interface UIViewScrollProvider {\n /**\n * Uses standard anchorScroll behavior\n *\n * Reverts [[$uiViewScroll]] back to using the core [`$anchorScroll`](http://docs.angularjs.org/api/ng.$anchorScroll)\n * service for scrolling based on the url anchor.\n */\n useAnchorScroll(): void;\n}\n\n/** @hidden */\nfunction $ViewScrollProvider() {\n let useAnchorScroll = false;\n\n this.useAnchorScroll = function() {\n useAnchorScroll = true;\n };\n\n this.$get = [\n '$anchorScroll',\n '$timeout',\n function($anchorScroll: IAnchorScrollService, $timeout: ITimeoutService): Function {\n if (useAnchorScroll) {\n return $anchorScroll;\n }\n\n return function($element: JQuery) {\n return $timeout(\n function() {\n $element[0].scrollIntoView();\n },\n 0,\n false,\n );\n };\n },\n ];\n}\n\nangular.module('ui.router.state').provider('$uiViewScroll', <IServiceProviderFactory>$ViewScrollProvider);\n",
|
||||
"/**\n * Main entry point for angular 1.x build\n * @module ng1\n */ /** */\n\nexport * from './interface';\nexport * from './services';\nexport * from './statebuilders/views';\nexport * from './stateProvider';\nexport * from './urlRouterProvider';\n\nimport './injectables';\nimport './directives/stateDirectives';\nimport './stateFilters';\nimport './directives/viewDirective';\nimport './viewScroll';\n\nexport default 'ui.router';\n\nimport * as core from '@uirouter/core';\nexport { core };\nexport * from '@uirouter/core';\n"
|
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"/** @module ng1 */ /** */\nimport { ng as angular } from '../angular';\nimport {\n StateObject, pick, forEach, tail, extend,\n isArray, isInjectable, isDefined, isString, services, trace,\n ViewConfig, ViewService, ViewConfigFactory, PathNode, ResolveContext, Resolvable, IInjectable,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration } from '../interface';\nimport { TemplateFactory } from '../templateFactory';\nimport IInjectorService = angular.auto.IInjectorService;\n\nexport function getNg1ViewConfigFactory(): ViewConfigFactory {\n let templateFactory: TemplateFactory = null;\n return (path, view) => {\n templateFactory = templateFactory || services.$injector.get('$templateFactory');\n return [new Ng1ViewConfig(path, view, templateFactory)];\n };\n}\n\nconst hasAnyKey = (keys, obj) =>\n keys.reduce((acc, key) => acc || isDefined(obj[key]), false);\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `views`.\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * handles the `views` property with logic specific to @uirouter/angularjs (ng1).\n *\n * If no `views: {}` property exists on the [[StateDeclaration]], then it creates the `views` object\n * and applies the state-level configuration to a view named `$default`.\n */\nexport function ng1ViewsBuilder(state: StateObject) {\n // Do not process root state\n if (!state.parent) return {};\n\n const tplKeys = ['templateProvider', 'templateUrl', 'template', 'notify', 'async'],\n ctrlKeys = ['controller', 'controllerProvider', 'controllerAs', 'resolveAs'],\n compKeys = ['component', 'bindings', 'componentProvider'],\n nonCompKeys = tplKeys.concat(ctrlKeys),\n allViewKeys = compKeys.concat(nonCompKeys);\n\n // Do not allow a state to have both state-level props and also a `views: {}` property.\n // A state without a `views: {}` property can declare properties for the `$default` view as properties of the state.\n // However, the `$default` approach should not be mixed with a separate `views: ` block.\n if (isDefined(state.views) && hasAnyKey(allViewKeys, state)) {\n throw new Error(`State '${state.name}' has a 'views' object. ` +\n `It cannot also have \"view properties\" at the state level. ` +\n `Move the following properties into a view (in the 'views' object): ` +\n ` ${allViewKeys.filter(key => isDefined(state[key])).join(', ')}`);\n }\n\n const views: { [key: string]: Ng1ViewDeclaration } = {},\n viewsObject = state.views || { '$default': pick(state, allViewKeys) };\n\n forEach(viewsObject, function (config: Ng1ViewDeclaration, name: string) {\n // Account for views: { \"\": { template... } }\n name = name || '$default';\n // Account for views: { header: \"headerComponent\" }\n if (isString(config)) config = { component: <string> config };\n\n // Make a shallow copy of the config object\n config = extend({}, config);\n\n // Do not allow a view to mix props for component-style view with props for template/controller-style view\n if (hasAnyKey(compKeys, config) && hasAnyKey(nonCompKeys, config)) {\n throw new Error(`Cannot combine: ${compKeys.join('|')} with: ${nonCompKeys.join('|')} in stateview: '${name}@${state.name}'`);\n }\n\n config.resolveAs = config.resolveAs || '$resolve';\n config.$type = 'ng1';\n config.$context = state;\n config.$name = name;\n\n const normalized = ViewService.normalizeUIViewTarget(config.$context, config.$name);\n config.$uiViewName = normalized.uiViewName;\n config.$uiViewContextAnchor = normalized.uiViewContextAnchor;\n\n views[name] = config;\n });\n return views;\n}\n\nlet id = 0;\nexport class Ng1ViewConfig implements ViewConfig {\n $id = id++;\n loaded = false;\n controller: Function; // actually IInjectable|string\n template: string;\n component: string;\n locals: any; // TODO: delete me\n\n constructor(public path: PathNode[], public viewDecl: Ng1ViewDeclaration, public factory: TemplateFactory) { }\n\n load() {\n const $q = services.$q;\n const context = new ResolveContext(this.path);\n const params = this.path.reduce((acc, node) => extend(acc, node.paramValues), {});\n\n const promises: any = {\n template: $q.when(this.factory.fromConfig(this.viewDecl, params, context)),\n controller: $q.when(this.getController(context)),\n };\n\n return $q.all(promises).then((results) => {\n trace.traceViewServiceEvent('Loaded', this);\n this.controller = results.controller;\n extend(this, results.template); // Either { template: \"tpl\" } or { component: \"cmpName\" }\n return this;\n });\n }\n\n getTemplate = (uiView, context: ResolveContext) =>\n this.component ? this.factory.makeComponentTemplate(uiView, context, this.component, this.viewDecl.bindings) : this.template;\n\n /**\n * Gets the controller for a view configuration.\n *\n * @returLine truncated
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"/** @module view */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport { IAugmentedJQuery } from 'angular';\nimport {\n isArray, isDefined, isFunction, isObject, services, Obj, IInjectable, tail, kebobString, unnestR, ResolveContext,\n Resolvable, RawParams,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration, TemplateFactoryProvider } from './interface';\n\n/**\n * Service which manages loading of templates from a ViewConfig.\n */\nexport class TemplateFactory implements TemplateFactoryProvider {\n /** @hidden */ private _useHttp = angular.version.minor < 3;\n /** @hidden */ private $templateRequest;\n /** @hidden */ private $templateCache;\n /** @hidden */ private $http;\n\n /** @hidden */ $get = ['$http', '$templateCache', '$injector', ($http, $templateCache, $injector) => {\n this.$templateRequest = $injector.has && $injector.has('$templateRequest') && $injector.get('$templateRequest');\n this.$http = $http;\n this.$templateCache = $templateCache;\n return this;\n }];\n\n /** @hidden */\n useHttpService(value: boolean) {\n this._useHttp = value;\n }\n\n /**\n * Creates a template from a configuration object.\n *\n * @param config Configuration object for which to load a template.\n * The following properties are search in the specified order, and the first one\n * that is defined is used to create the template:\n *\n * @param params Parameters to pass to the template function.\n * @param context The resolve context associated with the template's view\n *\n * @return {string|object} The template html as a string, or a promise for\n * that string,or `null` if no template is configured.\n */\n fromConfig(config: Ng1ViewDeclaration, params: any, context: ResolveContext): Promise<{ template?: string, component?: string }> {\n const defaultTemplate = '<ui-view></ui-view>';\n\n const asTemplate = (result) => services.$q.when(result).then(str => ({ template: str }));\n const asComponent = (result) => services.$q.when(result).then(str => ({ component: str }));\n\n return (\n isDefined(config.template) ? asTemplate(this.fromString(config.template, params)) :\n isDefined(config.templateUrl) ? asTemplate(this.fromUrl(config.templateUrl, params)) :\n isDefined(config.templateProvider) ? asTemplate(this.fromProvider(config.templateProvider, params, context)) :\n isDefined(config.component) ? asComponent(config.component) :\n isDefined(config.componentProvider) ? asComponent(this.fromComponentProvider(config.componentProvider, params, context)) :\n asTemplate(defaultTemplate)\n );\n }\n\n /**\n * Creates a template from a string or a function returning a string.\n *\n * @param template html template as a string or function that returns an html template as a string.\n * @param params Parameters to pass to the template function.\n *\n * @return {string|object} The template html as a string, or a promise for that\n * string.\n */\n fromString(template: (string | Function), params?: RawParams) {\n return isFunction(template) ? (<any> template)(params) : template;\n }\n\n /**\n * Loads a template from the a URL via `$http` and `$templateCache`.\n *\n * @param {string|Function} url url of the template to load, or a function\n * that returns a url.\n * @param {Object} params Parameters to pass to the url function.\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromUrl(url: (string | Function), params: any) {\n if (isFunction(url)) url = (<any> url)(params);\n if (url == null) return null;\n\n if (this._useHttp) {\n return this.$http.get(url, { cache: this.$templateCache, headers: { Accept: 'text/html' } })\n .then(function (response) {\n return response.data;\n });\n }\n\n return this.$templateRequest(url);\n }\n\n /**\n * Creates a template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromProvider(provider: IInjectable, params: any, context: ResolveContext) {\n const deps = services.$injector.annotate(provider);\n const providerFn = isArray(provider) ? tail(<any[]> provider) : provider;\n const resolvable = new Resolvable('', <Function> providerFn, deps);\n return resolvable.get(context);\n }\n\n /**\n * Creates a component's template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string} The template html as a string: \"<component-name input1='::$resolve.foo'></component-name>\".\n *Line truncated
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"/** @module ng1 */ /** for typedoc */\nimport {\n val, isObject, createProxyFunctions, BuilderFunction, StateRegistry, StateService, OnInvalidCallback,\n} from '@uirouter/core';\nimport { Ng1StateDeclaration } from './interface';\n\n/**\n * The Angular 1 `StateProvider`\n *\n * The `$stateProvider` works similar to Angular's v1 router, but it focuses purely\n * on state.\n *\n * A state corresponds to a \"place\" in the application in terms of the overall UI and\n * navigation. A state describes (via the controller / template / view properties) what\n * the UI looks like and does at that place.\n *\n * States often have things in common, and the primary way of factoring out these\n * commonalities in this model is via the state hierarchy, i.e. parent/child states aka\n * nested states.\n *\n * The `$stateProvider` provides interfaces to declare these states for your app.\n */\nexport class StateProvider {\n constructor(private stateRegistry: StateRegistry, private stateService: StateService) {\n createProxyFunctions(val(StateProvider.prototype), this, val(this));\n }\n\n /**\n * Decorates states when they are registered\n *\n * Allows you to extend (carefully) or override (at your own peril) the\n * `stateBuilder` object used internally by [[StateRegistry]].\n * This can be used to add custom functionality to ui-router,\n * for example inferring templateUrl based on the state name.\n *\n * When passing only a name, it returns the current (original or decorated) builder\n * function that matches `name`.\n *\n * The builder functions that can be decorated are listed below. Though not all\n * necessarily have a good use case for decoration, that is up to you to decide.\n *\n * In addition, users can attach custom decorators, which will generate new\n * properties within the state's internal definition. There is currently no clear\n * use-case for this beyond accessing internal states (i.e. $state.$current),\n * however, expect this to become increasingly relevant as we introduce additional\n * meta-programming features.\n *\n * **Warning**: Decorators should not be interdependent because the order of\n * execution of the builder functions in non-deterministic. Builder functions\n * should only be dependent on the state definition object and super function.\n *\n *\n * Existing builder functions and current return values:\n *\n * - **parent** `{object}` - returns the parent state object.\n * - **data** `{object}` - returns state data, including any inherited data that is not\n * overridden by own values (if any).\n * - **url** `{object}` - returns a {@link ui.router.util.type:UrlMatcher UrlMatcher}\n * or `null`.\n * - **navigable** `{object}` - returns closest ancestor state that has a URL (aka is\n * navigable).\n * - **params** `{object}` - returns an array of state params that are ensured to\n * be a super-set of parent's params.\n * - **views** `{object}` - returns a views object where each key is an absolute view\n * name (i.e. \"viewName@stateName\") and each value is the config object\n * (template, controller) for the view. Even when you don't use the views object\n * explicitly on a state config, one is still created for you internally.\n * So by decorating this builder function you have access to decorating template\n * and controller properties.\n * - **ownParams** `{object}` - returns an array of params that belong to the state,\n * not including any params defined by ancestor states.\n * - **path** `{string}` - returns the full path from the root down to this state.\n * Needed for state activation.\n * - **includes** `{object}` - returns an object that includes every state that\n * would pass a `$state.includes()` test.\n *\n * #### Example:\n * Override the internal 'views' builder with a function that takes the state\n * definition, and a reference to the internal function being overridden:\n * ```js\n * $stateProvider.decorator('views', function (state, parent) {\n * let result = {},\n * views = parent(state);\n *\n * angular.forEach(views, function (config, name) {\n * let autoName = (state.name + '.' + name).replace('.', '/');\n * config.templateUrl = config.templateUrl || '/partials/' + autoName + '.html';\n * result[name] = config;\n * });\n * return result;\n * });\n *\n * $stateProvider.state('home', {\n * views: {\n * 'contact.list': { controller: 'ListController' },\n * 'contact.item': { controller: 'ItemController' }\n * }\n * });\n * ```\n *\n *\n * ```js\n * // Auto-populates list and item views with /partials/home/contact/list.html,\n * // and /partials/home/contact/item.html, respectively.\n * $state.go('home');\n * ```\n *\n * @param {string} name The name of the builder function to decorate.\n * @param {object} func A function that is responsiblLine truncated
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"/** @module ng1 */ /** */\nimport {\n StateObject, TransitionStateHookFn, HookResult, Transition, services, ResolveContext, extend, BuilderFunction,\n} from '@uirouter/core';\nimport { getLocals } from '../services';\nimport { Ng1StateDeclaration } from '../interface';\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `onEnter`, `onExit`,\n * `onRetain` callback hooks on a [[Ng1StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * ensures that those hooks are injectable for @uirouter/angularjs (ng1).\n */\nexport const getStateHookBuilder = (hookName: 'onEnter'|'onExit'|'onRetain') =>\nfunction stateHookBuilder(stateObject: StateObject, parentFn: BuilderFunction): TransitionStateHookFn {\n const hook = stateObject[hookName];\n const pathname = hookName === 'onExit' ? 'from' : 'to';\n\n function decoratedNg1Hook(trans: Transition, state: Ng1StateDeclaration): HookResult {\n const resolveContext = new ResolveContext(trans.treeChanges(pathname));\n const subContext = resolveContext.subContext(state.$$state());\n const locals = extend(getLocals(subContext), { $state$: state, $transition$: trans });\n return services.$injector.invoke(hook, this, locals);\n }\n\n return hook ? decoratedNg1Hook : undefined;\n};\n",
|
||||
"/**\n * @internalapi\n * @module ng1\n */ /** */\nimport { LocationConfig, LocationServices, UIRouter, ParamType, isDefined } from '@uirouter/core';\nimport { val, createProxyFunctions, removeFrom, isObject } from '@uirouter/core';\nimport { ILocationService, ILocationProvider } from 'angular';\n\n/**\n * Implements UI-Router LocationServices and LocationConfig using Angular 1's $location service\n */\nexport class Ng1LocationServices implements LocationConfig, LocationServices {\n private $locationProvider: ILocationProvider;\n private $location: ILocationService;\n private $sniffer;\n\n path;\n search;\n hash;\n hashPrefix;\n port;\n protocol;\n host;\n baseHref;\n\n // .onChange() registry\n private _urlListeners: Function[] = [];\n\n /**\n * Applys ng1-specific path parameter encoding\n *\n * The Angular 1 `$location` service is a bit weird.\n * It doesn't allow slashes to be encoded/decoded bi-directionally.\n *\n * See the writeup at https://github.com/angular-ui/ui-router/issues/2598\n *\n * This code patches the `path` parameter type so it encoded/decodes slashes as ~2F\n *\n * @param router\n */\n static monkeyPatchPathParameterType(router: UIRouter) {\n const pathType: ParamType = router.urlMatcherFactory.type('path');\n\n pathType.encode = (x: any) =>\n x != null ? x.toString().replace(/(~|\\/)/g, m => ({ '~': '~~', '/': '~2F' }[m])) : x;\n\n pathType.decode = (x: string) =>\n x != null ? x.toString().replace(/(~~|~2F)/g, m => ({ '~~': '~', '~2F': '/' }[m])) : x;\n\n }\n\n dispose() { }\n\n constructor($locationProvider: ILocationProvider) {\n this.$locationProvider = $locationProvider;\n const _lp = val($locationProvider);\n createProxyFunctions(_lp, this, _lp, ['hashPrefix']);\n }\n\n onChange(callback: Function) {\n this._urlListeners.push(callback);\n return () => removeFrom(this._urlListeners)(callback);\n }\n\n html5Mode() {\n let html5Mode: any = this.$locationProvider.html5Mode();\n html5Mode = isObject(html5Mode) ? html5Mode.enabled : html5Mode;\n return html5Mode && this.$sniffer.history;\n }\n\n url(newUrl?: string, replace = false, state?) {\n if (isDefined(newUrl)) this.$location.url(newUrl);\n if (replace) this.$location.replace();\n if (state) this.$location.state(state);\n return this.$location.url();\n }\n\n _runtimeServices($rootScope, $location: ILocationService, $sniffer, $browser) {\n this.$location = $location;\n this.$sniffer = $sniffer;\n\n // Bind $locationChangeSuccess to the listeners registered in LocationService.onChange\n $rootScope.$on('$locationChangeSuccess', evt => this._urlListeners.forEach(fn => fn(evt)));\n const _loc = val($location);\n const _browser = val($browser);\n\n // Bind these LocationService functions to $location\n createProxyFunctions(_loc, this, _loc, ['replace', 'path', 'search', 'hash']);\n // Bind these LocationConfig functions to $location\n createProxyFunctions(_loc, this, _loc, ['port', 'protocol', 'host']);\n // Bind these LocationConfig functions to $browser\n createProxyFunctions(_browser, this, _browser, ['baseHref']);\n }\n}\n",
|
||||
"/** @module url */ /** */\nimport {\n UIRouter, UrlRouter, LocationServices, $InjectorLike, BaseUrlRule, UrlRuleHandlerFn, UrlMatcher,\n IInjectable,\n} from '@uirouter/core';\nimport { services, isString, isFunction, isArray, identity } from '@uirouter/core';\n\nexport interface RawNg1RuleFunction {\n ($injector: $InjectorLike, $location: LocationServices): string|void;\n}\n\n/**\n * Manages rules for client-side URL\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class manages the router rules for what to do when the URL changes.\n *\n * This provider remains for backwards compatibility.\n *\n * @deprecated\n */\nexport class UrlRouterProvider {\n /** @hidden */ _router: UIRouter;\n /** @hidden */ _urlRouter: UrlRouter;\n\n static injectableHandler(router: UIRouter, handler): UrlRuleHandlerFn {\n return match =>\n services.$injector.invoke(handler, null, { $match: match, $stateParams: router.globals.params });\n }\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this._urlRouter = router.urlRouter;\n }\n\n /** @hidden */\n $get() {\n const urlRouter = this._urlRouter;\n urlRouter.update(true);\n if (!urlRouter.interceptDeferred) urlRouter.listen();\n return urlRouter;\n }\n\n /**\n * Registers a url handler function.\n *\n * Registers a low level url handler (a `rule`).\n * A rule detects specific URL patterns and returns a redirect, or performs some action.\n *\n * If a rule returns a string, the URL is replaced with the string, and all rules are fired again.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // Here's an example of how you might allow case insensitive urls\n * $urlRouterProvider.rule(function ($injector, $location) {\n * var path = $location.path(),\n * normalized = path.toLowerCase();\n *\n * if (path !== normalized) {\n * return normalized;\n * }\n * });\n * });\n * ```\n *\n * @param ruleFn\n * Handler function that takes `$injector` and `$location` services as arguments.\n * You can use them to detect a url and return a different url as a string.\n *\n * @return [[UrlRouterProvider]] (`this`)\n */\n rule(ruleFn: RawNg1RuleFunction): UrlRouterProvider {\n if (!isFunction(ruleFn)) throw new Error(\"'rule' must be a function\");\n\n const match = () =>\n ruleFn(services.$injector, this._router.locationService);\n\n const rule = new BaseUrlRule(match, identity);\n this._urlRouter.rule(rule);\n return this;\n }\n\n /**\n * Defines the path or behavior to use when no url can be matched.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // if the path doesn't match any of the urls you configured\n * // otherwise will take care of routing the user to the\n * // specified url\n * $urlRouterProvider.otherwise('/index');\n *\n * // Example of using function rule as param\n * $urlRouterProvider.otherwise(function ($injector, $location) {\n * return '/a/valid/url';\n * });\n * });\n * ```\n *\n * @param rule\n * The url path you want to redirect to or a function rule that returns the url path or performs a `$state.go()`.\n * The function version is passed two params: `$injector` and `$location` services, and should return a url string.\n *\n * @return {object} `$urlRouterProvider` - `$urlRouterProvider` instance\n */\n otherwise(rule: string | RawNg1RuleFunction): UrlRouterProvider {\n const urlRouter = this._urlRouter;\n\n if (isString(rule)) {\n urlRouter.otherwise(rule);\n } else if (isFunction(rule)) {\n urlRouter.otherwise(() => rule(services.$injector, this._router.locationService));\n } else {\n throw new Error(\"'rule' must be a string or function\");\n }\n\n return this;\n }\n\n /**\n * Registers a handler for a given url matching.\n *\n * If the handler is a string, it is\n * treated as a redirect, and is interpolated according to the syntax of match\n * (i.e. like `String.replace()` for `RegExp`, or like a `UrlMatcher` pattern otherwise).\n *\n * If the handler is a function, it is injectable.\n * It gets invoked if `$location` matches.\n * You have the option of inject the match object as `$match`.\n *\n * The handler can return\n *\n * - **falsy** to indicate that the rule didn't match after all, then `$urlRouter`\n * will continue trying to find another one that matches.\n * - **string** which is treated as a redirect and passed to `$location.url()`\n * - **void** or any **truthyLine truncated
|
||||
"/**\n * # Angular 1 types\n *\n * UI-Router core provides various Typescript types which you can use for code completion and validating parameter values, etc.\n * The customizations to the core types for Angular UI-Router are documented here.\n *\n * The optional [[$resolve]] service is also documented here.\n *\n * @module ng1\n * @preferred\n */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport {\n IRootScopeService, IQService, ILocationService, ILocationProvider, IHttpService, ITemplateCacheService,\n} from 'angular';\nimport {\n services, applyPairs, isString, trace, extend, UIRouter, StateService, UrlRouter, UrlMatcherFactory, ResolveContext,\n unnestR, TypedMap,\n} from '@uirouter/core';\nimport { ng1ViewsBuilder, getNg1ViewConfigFactory } from './statebuilders/views';\nimport { TemplateFactory } from './templateFactory';\nimport { StateProvider } from './stateProvider';\nimport { getStateHookBuilder } from './statebuilders/onEnterExitRetain';\nimport { Ng1LocationServices } from './locationServices';\nimport { UrlRouterProvider } from './urlRouterProvider';\nimport IInjectorService = angular.auto.IInjectorService; // tslint:disable-line\n\nangular.module('ui.router.angular1', []);\nconst mod_init = angular.module('ui.router.init', []);\nconst mod_util = angular.module('ui.router.util', ['ng', 'ui.router.init']);\nconst mod_rtr = angular.module('ui.router.router', ['ui.router.util']);\nconst mod_state = angular.module('ui.router.state', ['ui.router.router', 'ui.router.util', 'ui.router.angular1']);\nconst mod_main = angular.module('ui.router', ['ui.router.init', 'ui.router.state', 'ui.router.angular1']);\nlet mod_cmpt = angular.module('ui.router.compat', ['ui.router']); // tslint:disable-line\n\ndeclare module '@uirouter/core/lib/router' {\n interface UIRouter { // tslint:disable-line:no-shadowed-variable\n /** @hidden */\n stateProvider: StateProvider;\n /** @hidden */\n urlRouterProvider: UrlRouterProvider;\n }\n}\n\nlet router: UIRouter = null;\n\n$uiRouterProvider.$inject = ['$locationProvider'];\n/** This angular 1 provider instantiates a Router and exposes its services via the angular injector */\nfunction $uiRouterProvider($locationProvider: ILocationProvider) {\n\n // Create a new instance of the Router when the $uiRouterProvider is initialized\n router = this.router = new UIRouter();\n router.stateProvider = new StateProvider(router.stateRegistry, router.stateService);\n\n // Apply ng1 specific StateBuilder code for `views`, `resolve`, and `onExit/Retain/Enter` properties\n router.stateRegistry.decorator('views', ng1ViewsBuilder);\n router.stateRegistry.decorator('onExit', getStateHookBuilder('onExit'));\n router.stateRegistry.decorator('onRetain', getStateHookBuilder('onRetain'));\n router.stateRegistry.decorator('onEnter', getStateHookBuilder('onEnter'));\n\n router.viewService._pluginapi._viewConfigFactory('ng1', getNg1ViewConfigFactory());\n\n const ng1LocationService = router.locationService = router.locationConfig = new Ng1LocationServices($locationProvider);\n\n Ng1LocationServices.monkeyPatchPathParameterType(router);\n\n // backwards compat: also expose router instance as $uiRouterProvider.router\n router['router'] = router;\n router['$get'] = $get;\n $get.$inject = ['$location', '$browser', '$sniffer', '$rootScope', '$http', '$templateCache'];\n function $get($location: ILocationService, $browser: any, $sniffer: any, $rootScope: ng.IScope, $http: IHttpService, $templateCache: ITemplateCacheService) {\n ng1LocationService._runtimeServices($rootScope, $location, $sniffer, $browser);\n delete router['router'];\n delete router['$get'];\n return router;\n }\n return router;\n}\n\nconst getProviderFor = (serviceName) => [ '$uiRouterProvider', ($urp) => {\n const service = $urp.router[serviceName];\n service['$get'] = () => service;\n return service;\n}];\n\n// This effectively calls $get() on `$uiRouterProvider` to trigger init (when ng enters runtime)\nrunBlock.$inject = ['$injector', '$q', '$uiRouter'];\nfunction runBlock($injector: IInjectorService, $q: IQService, $uiRouter: UIRouter) {\n services.$injector = $injector;\n services.$q = <any> $q;\n\n // The $injector is now available.\n // Find any resolvables that had dependency annotation deferred\n $uiRouter.stateRegistry.get()\n .map(x => x.$$state().resolvables)\n .reduce(unnestR, [])\n .filter(x => x.deps === 'deferred')\n .forEach(resolvable => resolvable.deps = $injector.annotate(resolvable.resolveFn, $injector.strictDi));\n}\n\n// $urlRouter service and $urlRouterProvider\nconst getUrlRouterProvider = (uiRouter: UIRouter) =>\n uiRouter.urlRouterProvider = new UrlRouterProvider(uiRouter);\n\n// $state service and $stateProvider\n// $urlRouter service and $urlRouterProvider\nconst getStateProvider = () =>\n extend(router.stateProvider, { $get: () => router.stateService });\n\nwatchDigests.$inject = ['Line truncated
|
||||
"/**\n * # Angular 1 injectable services\n *\n * This is a list of the objects which can be injected using angular's injector.\n *\n * There are three different kind of injectable objects:\n *\n * ## **Provider** objects\n * #### injectable into a `.config()` block during configtime\n *\n * - [[$uiRouterProvider]]: The UI-Router instance\n * - [[$stateProvider]]: State registration\n * - [[$transitionsProvider]]: Transition hooks\n * - [[$urlServiceProvider]]: All URL related public APIs\n *\n * - [[$uiViewScrollProvider]]: Disable ui-router view scrolling\n * - [[$urlRouterProvider]]: (deprecated) Url matching rules\n * - [[$urlMatcherFactoryProvider]]: (deprecated) Url parsing config\n *\n * ## **Service** objects\n * #### injectable globally during runtime\n *\n * - [[$uiRouter]]: The UI-Router instance\n * - [[$trace]]: Enable transition trace/debug\n * - [[$transitions]]: Transition hooks\n * - [[$state]]: Imperative state related APIs\n * - [[$stateRegistry]]: State registration\n * - [[$urlService]]: All URL related public APIs\n * - [[$uiRouterGlobals]]: Global variables\n * - [[$uiViewScroll]]: Scroll an element into view\n *\n * - [[$stateParams]]: (deprecated) Global state param values\n * - [[$urlRouter]]: (deprecated) URL synchronization\n * - [[$urlMatcherFactory]]: (deprecated) URL parsing config\n *\n * ## **Per-Transition** objects\n *\n * - These kind of objects are injectable into:\n * - Resolves ([[Ng1StateDeclaration.resolve]]),\n * - Transition Hooks ([[TransitionService.onStart]], etc),\n * - Routed Controllers ([[Ng1ViewDeclaration.controller]])\n *\n * #### Different instances are injected based on the [[Transition]]\n *\n * - [[$transition$]]: The current Transition object\n * - [[$stateParams]]: State param values for pending Transition (deprecated)\n * - Any resolve data defined using [[Ng1StateDeclaration.resolve]]\n *\n * @ng1api\n * @preferred\n * @module injectables\n */ /** */\n/* tslint:disable:prefer-const */\nimport { StateProvider } from './stateProvider';\nimport {\n StateService, TransitionService, Transition, UrlRouter, UrlMatcherFactory,\n StateParams, StateRegistry, UIRouterGlobals, UIRouter, Trace, UrlService,\n} from '@uirouter/core';\nimport { UIViewScrollProvider } from './viewScroll';\nimport { UrlRouterProvider } from './urlRouterProvider';\n\n/**\n * The current (or pending) State Parameters\n *\n * An injectable global **Service Object** which holds the state parameters for the latest **SUCCESSFUL** transition.\n *\n * The values are not updated until *after* a `Transition` successfully completes.\n *\n * **Also:** an injectable **Per-Transition Object** object which holds the pending state parameters for the pending `Transition` currently running.\n *\n * ### Deprecation warning:\n *\n * The value injected for `$stateParams` is different depending on where it is injected.\n *\n * - When injected into an angular service, the object injected is the global **Service Object** with the parameter values for the latest successful `Transition`.\n * - When injected into transition hooks, resolves, or view controllers, the object is the **Per-Transition Object** with the parameter values for the running `Transition`.\n *\n * Because of these confusing details, this service is deprecated.\n *\n * ### Instead of using the global `$stateParams` service object,\n * inject [[$uiRouterGlobals]] and use [[UIRouterGlobals.params]]\n *\n * ```js\n * MyService.$inject = ['$uiRouterGlobals'];\n * function MyService($uiRouterGlobals) {\n * return {\n * paramValues: function () {\n * return $uiRouterGlobals.params;\n * }\n * }\n * }\n * ```\n *\n * ### Instead of using the per-transition `$stateParams` object,\n * inject the current `Transition` (as [[$transition$]]) and use [[Transition.params]]\n *\n * ```js\n * MyController.$inject = ['$transition$'];\n * function MyController($transition$) {\n * var username = $transition$.params().username;\n * // .. do something with username\n * }\n * ```\n *\n * ---\n *\n * This object can be injected into other services.\n *\n * #### Deprecated Example:\n * ```js\n * SomeService.$inject = ['$http', '$stateParams'];\n * function SomeService($http, $stateParams) {\n * return {\n * getUser: function() {\n * return $http.get('/api/users/' + $stateParams.username);\n * }\n * }\n * };\n * angular.service('SomeService', SomeService);\n * ```\n * @deprecated\n */\nlet $stateParams: StateParams;\n\n/**\n * Global UI-Router variables\n *\n * The router global state as a **Service Object** (injectable during runtime).\n *\n * This object contains globals such as the current state and current parameter values.\n */\nlet $uiRouterGlobals: UIRouterGlobals;\n\n/**\n * The UI-Router instance\n *\n * The [[UIRouter]] singleton (the router instance) as a **Service Object** (injectable during runtime).\n *\n * This object is the UI-Router singleton instance, created by angular dependency injection duLine truncated
|
||||
"/**\n * # Angular 1 Directives\n *\n * These are the directives included in UI-Router for Angular 1.\n * These directives are used in templates to create viewports and link/navigate to states.\n *\n * @ng1api\n * @preferred\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IAugmentedJQuery, ITimeoutService, IScope, IInterpolateService } from 'angular';\n\nimport {\n Obj, extend, forEach, tail, isString, isObject, isArray, parse, noop, unnestR, identity, uniqR, inArray, removeFrom,\n RawParams, PathNode, StateOrName, StateService, StateDeclaration, UIRouter,\n} from '@uirouter/core';\nimport { UIViewData } from './viewDirective';\nimport EventHandler = JQuery.EventHandler;\n\n/** @hidden Used for typedoc */\nexport interface ng1_directive {} // tslint:disable-line:class-name\n\n/** @hidden */\nfunction parseStateRef(ref: string) {\n let parsed;\n const paramsOnly = ref.match(/^\\s*({[^}]*})\\s*$/);\n if (paramsOnly) ref = '(' + paramsOnly[1] + ')';\n\n parsed = ref.replace(/\\n/g, ' ').match(/^\\s*([^(]*?)\\s*(\\((.*)\\))?\\s*$/);\n if (!parsed || parsed.length !== 4) throw new Error(\"Invalid state ref '\" + ref + \"'\");\n return { state: parsed[1] || null, paramExpr: parsed[3] || null };\n}\n\n/** @hidden */\nfunction stateContext(el: IAugmentedJQuery) {\n const $uiView: UIViewData = (el.parent() as IAugmentedJQuery).inheritedData('$uiView');\n const path: PathNode[] = parse('$cfg.path')($uiView);\n return path ? tail(path).state.name : undefined;\n}\n\n/** @hidden */\nfunction processedDef($state: StateService, $element: IAugmentedJQuery, def: Def): Def {\n const uiState = def.uiState || $state.current.name;\n const uiStateOpts = extend(defaultOpts($element, $state), def.uiStateOpts || {});\n const href = $state.href(uiState, def.uiStateParams, uiStateOpts);\n return { uiState, uiStateParams: def.uiStateParams, uiStateOpts, href };\n}\n\n/** @hidden */\ninterface TypeInfo {\n attr: string;\n isAnchor: boolean;\n clickable: boolean;\n}\n\n/** @hidden */\nfunction getTypeInfo(el: IAugmentedJQuery): TypeInfo {\n // SVGAElement does not use the href attribute, but rather the 'xlinkHref' attribute.\n const isSvg = Object.prototype.toString.call(el.prop('href')) === '[object SVGAnimatedString]';\n const isForm = el[0].nodeName === 'FORM';\n\n return {\n attr: isForm ? 'action' : (isSvg ? 'xlink:href' : 'href'),\n isAnchor: el.prop('tagName').toUpperCase() === 'A',\n clickable: !isForm,\n };\n}\n\n/** @hidden */\nfunction clickHook(el: IAugmentedJQuery, $state: StateService, $timeout: ITimeoutService, type: TypeInfo, getDef: () => Def) {\n return function (e: JQueryMouseEventObject) {\n const button = e.which || e.button, target = getDef();\n\n if (!(button > 1 || e.ctrlKey || e.metaKey || e.shiftKey || el.attr('target'))) {\n // HACK: This is to allow ng-clicks to be processed before the transition is initiated:\n const transition = $timeout(function () {\n $state.go(target.uiState, target.uiStateParams, target.uiStateOpts);\n });\n e.preventDefault();\n\n // if the state has no URL, ignore one preventDefault from the <a> directive.\n let ignorePreventDefaultCount = type.isAnchor && !target.href ? 1 : 0;\n\n e.preventDefault = function () {\n if (ignorePreventDefaultCount-- <= 0) $timeout.cancel(transition);\n };\n }\n };\n}\n\n/** @hidden */\nfunction defaultOpts(el: IAugmentedJQuery, $state: StateService) {\n return {\n relative: stateContext(el) || $state.$current,\n inherit: true,\n source: 'sref',\n };\n}\n\n/** @hidden */\nfunction bindEvents(element: IAugmentedJQuery, scope: IScope, hookFn: EventHandler<any>, uiStateOpts: any): void {\n let events;\n\n if (uiStateOpts) {\n events = uiStateOpts.events;\n }\n\n if (!isArray(events)) {\n events = ['click'];\n }\n\n const on = element.on ? 'on' : 'bind';\n for (const event of events) {\n element[on](event, hookFn);\n }\n\n scope.$on('$destroy', function() {\n const off = element.off ? 'off' : 'unbind';\n for (const event of events) {\n element[off](event, hookFn);\n }\n });\n}\n\n/**\n * `ui-sref`: A directive for linking to a state\n *\n * A directive which links to a state (and optionally, parameters).\n * When clicked, this directive activates the linked state with the supplied parameter values.\n *\n * ### Linked State\n * The attribute value of the `ui-sref` is the name of the state to link to.\n *\n * #### Example:\n * This will activate the `home` state when the link is clicked.\n * ```html\n * <a ui-sref=\"home\">Home</a>\n * ```\n *\n * ### Relative Links\n * You can also use relative state paths within `ui-sref`, just like a relative path passed to `$state.go()` ([[StateService.go]]).\n * You just need to be aware that the path is relative to the state that *created* the link.\n * This allows a state to create a relative `ui-sref` which always targLine truncated
|
||||
"/** @module ng1 */ /** for typedoc */\n\nimport { ng as angular } from './angular';\nimport { Obj, StateService, StateOrName } from '@uirouter/core';\n\n/**\n * `isState` Filter: truthy if the current state is the parameter\n *\n * Translates to [[StateService.is]] `$state.is(\"stateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'stateName' | isState\">show if state is 'stateName'</div>\n * ```\n */\n$IsStateFilter.$inject = ['$state'];\nexport function $IsStateFilter($state: StateService) {\n const isFilter: any = function(state: StateOrName, params: Obj, options?: { relative?: StateOrName }) {\n return $state.is(state, params, options);\n };\n isFilter.$stateful = true;\n return isFilter;\n}\n\n/**\n * `includedByState` Filter: truthy if the current state includes the parameter\n *\n * Translates to [[StateService.includes]]` $state.is(\"fullOrPartialStateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'fullOrPartialStateName' | includedByState\">show if state includes 'fullOrPartialStateName'</div>\n * ```\n */\n$IncludedByStateFilter.$inject = ['$state'];\nexport function $IncludedByStateFilter($state: StateService) {\n const includesFilter: any = function(state: StateOrName, params: Obj, options: { relative?: StateOrName }) {\n return $state.includes(state, params, options);\n };\n includesFilter.$stateful = true;\n return includesFilter;\n}\n\nangular.module('ui.router.state')\n .filter('isState', $IsStateFilter)\n .filter('includedByState', $IncludedByStateFilter);\n",
|
||||
"/**\n * @ng1api\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IInterpolateService, IScope, ITranscludeFunction, IAugmentedJQuery, ITimeoutService } from 'angular';\n\nimport {\n extend, unnestR, filter, tail, isDefined, isFunction, isString, trace, parse,\n ActiveUIView, TransitionService, ResolveContext, Transition, PathNode, StateDeclaration,\n Param, kebobString, HookRegOptions, ViewService, $QLike, Obj, TypedMap, noop,\n} from '@uirouter/core';\nimport { Ng1ViewConfig } from '../statebuilders/views';\nimport { Ng1Controller, Ng1StateDeclaration } from '../interface';\nimport { getLocals } from '../services';\nimport { ng1_directive } from './stateDirectives';\n\n/** @hidden */\nexport type UIViewData = {\n $cfg: Ng1ViewConfig;\n $uiView: ActiveUIView;\n};\n\n/** @hidden */\nexport type UIViewAnimData = {\n $animEnter: Promise<any>;\n $animLeave: Promise<any>;\n $$animLeave: { resolve: () => any; } // \"deferred\"\n};\n\n/**\n * `ui-view`: A viewport directive which is filled in by a view from the active state.\n *\n * ### Attributes\n *\n * - `name`: (Optional) A view name.\n * The name should be unique amongst the other views in the same state.\n * You can have views of the same name that live in different states.\n * The ui-view can be targeted in a View using the name ([[Ng1StateDeclaration.views]]).\n *\n * - `autoscroll`: an expression. When it evaluates to true, the `ui-view` will be scrolled into view when it is activated.\n * Uses [[$uiViewScroll]] to do the scrolling.\n *\n * - `onload`: Expression to evaluate whenever the view updates.\n *\n * #### Example:\n * A view can be unnamed or named.\n * ```html\n * <!-- Unnamed -->\n * <div ui-view></div>\n *\n * <!-- Named -->\n * <div ui-view=\"viewName\"></div>\n *\n * <!-- Named (different style) -->\n * <ui-view name=\"viewName\"></ui-view>\n * ```\n *\n * You can only have one unnamed view within any template (or root html). If you are only using a\n * single view and it is unnamed then you can populate it like so:\n *\n * ```html\n * <div ui-view></div>\n * $stateProvider.state(\"home\", {\n * template: \"<h1>HELLO!</h1>\"\n * })\n * ```\n *\n * The above is a convenient shortcut equivalent to specifying your view explicitly with the\n * [[Ng1StateDeclaration.views]] config property, by name, in this case an empty name:\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * But typically you'll only use the views property if you name your view or have more than one view\n * in the same template. There's not really a compelling reason to name a view if its the only one,\n * but you could if you wanted, like so:\n *\n * ```html\n * <div ui-view=\"main\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"main\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * Really though, you'll use views to set up multiple views:\n *\n * ```html\n * <div ui-view></div>\n * <div ui-view=\"chart\"></div>\n * <div ui-view=\"data\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * },\n * \"chart\": {\n * template: \"<chart_thing/>\"\n * },\n * \"data\": {\n * template: \"<data_thing/>\"\n * }\n * }\n * })\n * ```\n *\n * #### Examples for `autoscroll`:\n * ```html\n * <!-- If autoscroll present with no expression,\n * then scroll ui-view into view -->\n * <ui-view autoscroll/>\n *\n * <!-- If autoscroll present with valid expression,\n * then scroll ui-view into view if expression evaluates to true -->\n * <ui-view autoscroll='true'/>\n * <ui-view autoscroll='false'/>\n * <ui-view autoscroll='scopeVariable'/>\n * ```\n *\n * Resolve data:\n *\n * The resolved data from the state's `resolve` block is placed on the scope as `$resolve` (this\n * can be customized using [[Ng1ViewDeclaration.resolveAs]]). This can be then accessed from the template.\n *\n * Note that when `controllerAs` is being used, `$resolve` is set on the controller instance *after* the\n * controller is instantiated. The `$onInit()` hook can be used to perform initialization code which\n * depends on `$resolve` data.\n *\n * #### Example:\n * ```js\n * $stateProvider.state('home', {\n * template: '<my-component user=\"$resolve.user\"></my-component>',\n * resolve: {\n * user: function(UserService) { return UserService.fetchUser(); }\n * }\n * });\n * ```\n */\nexport let uiView: ng1_directive;\nuiView = ['$view', '$animate', '$uiViewScroll', '$interpolate', '$q',\nfunction $ViewDirective($view: ViewService, $animate: any, $uiViewScroll: any, $interpolate: IInterpolateService, $q: $QLike) {\n\n function getRenderer(attrs: Obj, scope: IScope) {\n return {\n enter: function(element: Line truncated
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from './angular';\nimport { IServiceProviderFactory } from 'angular';\nimport IAnchorScrollService = angular.IAnchorScrollService;\nimport ITimeoutService = angular.ITimeoutService;\n\nexport interface UIViewScrollProvider {\n /**\n * Uses standard anchorScroll behavior\n *\n * Reverts [[$uiViewScroll]] back to using the core [`$anchorScroll`](http://docs.angularjs.org/api/ng.$anchorScroll)\n * service for scrolling based on the url anchor.\n */\n useAnchorScroll(): void;\n}\n\n\n/** @hidden */\nfunction $ViewScrollProvider() {\n\n let useAnchorScroll = false;\n\n this.useAnchorScroll = function () {\n useAnchorScroll = true;\n };\n\n this.$get = ['$anchorScroll', '$timeout', function ($anchorScroll: IAnchorScrollService, $timeout: ITimeoutService): Function {\n if (useAnchorScroll) {\n return $anchorScroll;\n }\n\n return function ($element: JQuery) {\n return $timeout(function () {\n $element[0].scrollIntoView();\n }, 0, false);\n };\n }];\n}\n\nangular.module('ui.router.state').provider('$uiViewScroll', <IServiceProviderFactory> $ViewScrollProvider);\n",
|
||||
"/**\n * Main entry point for angular 1.x build\n * @module ng1\n */ /** */\n\nexport * from './interface';\nexport * from './services';\nexport * from './statebuilders/views';\nexport * from './stateProvider';\nexport * from './urlRouterProvider';\n\nimport './injectables';\nimport './directives/stateDirectives';\nimport './stateFilters';\nimport './directives/viewDirective';\nimport './viewScroll';\n\nexport default 'ui.router';\n\nimport * as core from '@uirouter/core';\nexport { core };\nexport * from '@uirouter/core';\n\n"
|
||||
],
|
||||
"names": [
|
||||
"ng_from_import.module",
|
||||
@@ -184,9 +184,7 @@
|
||||
"pattern",
|
||||
"parseUrl",
|
||||
"__extends",
|
||||
"id",
|
||||
"$q",
|
||||
"$injector"
|
||||
"id"
|
||||
],
|
||||
"mappings": 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|
||||
+2
-6004
File diff suppressed because it is too large.
Load diff
+75
-78
@@ -78,80 +78,80 @@
|
||||
"@uirouter/angularjs/src/index.ts"
|
||||
],
|
||||
"sourcesContent": [
|
||||
"/**\n * @hidden\n * @module ng1\n */ /** */\ndeclare var angular;\nimport * as ng_from_import from 'angular';\nconst ng_from_global = angular;\n\nexport const ng = ng_from_import && ng_from_import.module ? ng_from_import : ng_from_global;\n",
|
||||
"/**\n * Higher order functions\n *\n * These utility functions are exported, but are subject to change without notice.\n *\n * @module common_hof\n */ /** */\n\nimport { Predicate } from './common';\n/**\n * Returns a new function for [Partial Application](https://en.wikipedia.org/wiki/Partial_application) of the original function.\n *\n * Given a function with N parameters, returns a new function that supports partial application.\n * The new function accepts anywhere from 1 to N parameters. When that function is called with M parameters,\n * where M is less than N, it returns a new function that accepts the remaining parameters. It continues to\n * accept more parameters until all N parameters have been supplied.\n *\n *\n * This contrived example uses a partially applied function as an predicate, which returns true\n * if an object is found in both arrays.\n * @example\n * ```\n * // returns true if an object is in both of the two arrays\n * function inBoth(array1, array2, object) {\n * return array1.indexOf(object) !== -1 &&\n * array2.indexOf(object) !== 1;\n * }\n * let obj1, obj2, obj3, obj4, obj5, obj6, obj7\n * let foos = [obj1, obj3]\n * let bars = [obj3, obj4, obj5]\n *\n * // A curried \"copy\" of inBoth\n * let curriedInBoth = curry(inBoth);\n * // Partially apply both the array1 and array2\n * let inFoosAndBars = curriedInBoth(foos, bars);\n *\n * // Supply the final argument; since all arguments are\n * // supplied, the original inBoth function is then called.\n * let obj1InBoth = inFoosAndBars(obj1); // false\n *\n * // Use the inFoosAndBars as a predicate.\n * // Filter, on each iteration, supplies the final argument\n * let allObjs = [ obj1, obj2, obj3, obj4, obj5, obj6, obj7 ];\n * let foundInBoth = allObjs.filter(inFoosAndBars); // [ obj3 ]\n *\n * ```\n *\n * Stolen from: http://stackoverflow.com/questions/4394747/javascript-curry-function\n *\n * @param fn\n * @returns {*|function(): (*|any)}\n */\nexport function curry(fn: Function): Function {\n const initial_args = [].slice.apply(arguments, [1]);\n const func_args_length = fn.length;\n\n function curried(args: any[]) {\n if (args.length >= func_args_length) return fn.apply(null, args);\n return function() {\n return curried(args.concat([].slice.apply(arguments)));\n };\n }\n return curried(initial_args);\n}\n\n/**\n * Given a varargs list of functions, returns a function that composes the argument functions, right-to-left\n * given: f(x), g(x), h(x)\n * let composed = compose(f,g,h)\n * then, composed is: f(g(h(x)))\n */\nexport function compose() {\n const args = arguments;\n const start = args.length - 1;\n return function() {\n let i = start,\n result = args[start].apply(this, arguments);\n while (i--) result = args[i].call(this, result);\n return result;\n };\n}\n\n/**\n * Given a varargs list of functions, returns a function that is composes the argument functions, left-to-right\n * given: f(x), g(x), h(x)\n * let piped = pipe(f,g,h);\n * then, piped is: h(g(f(x)))\n */\nexport function pipe(...funcs: Function[]): (obj: any) => any {\n return compose.apply(null, [].slice.call(arguments).reverse());\n}\n\n/**\n * Given a property name, returns a function that returns that property from an object\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = prop(\"name\");\n * getName(obj) === \"blarg\"\n */\nexport const prop = (name: string) => (obj: any) => obj && obj[name];\n\n/**\n * Given a property name and a value, returns a function that returns a boolean based on whether\n * the passed object has a property that matches the value\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = propEq(\"name\", \"blarg\");\n * getName(obj) === true\n */\nexport const propEq = curry((name: string, _val: any, obj: any) => obj && obj[name] === _val);\n\n/**\n * Given a dotted property name, returns a function that returns a nested property from an object, or undefined\n * let obj = { id: 1, nestedObj: { foo: 1, name: \"blarg\" }, };\n * let getName = prop(\"nestedObj.name\");\n * getName(obj) === \"blarg\"\n * let propNotFound = prop(\"this.property.doesnt.exist\");\n * propNotFound(obj) === undefined\n */\nexport const parse = (name: string) => pipe.apply(null, name.split('.').map(prop));\n\n/**\n * Given a function that returns a truthy or falsey value, returns a\n * function that returns the opposite (falsey or truthy) value given the same inputs\n */\nexport const not: (fn: Predicate<any>) => Predicate<any> = (fn: Predicate<any>) => (...args: any[]) =>\n !fn.apply(null, args);\n\n/**\n * Given two functions that return truthy or falsey values, returns a function that returns truthy\n * if both functions return truthy for the given arguments\n */\nexport function and(fn1: Predicate<any>, fn2: Predicate<any>): Predicate<any> {\n return (...args: any[]) => fn1.apply(null, args) && fn2.apply(null, args);\n}\n\n/**\n * Given two functions that return truthy or falsey valuLine truncated
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"/**\n * @coreapi\n * @module core\n */\n/**\n * Matches state names using glob-like pattern strings.\n *\n * Globs can be used in specific APIs including:\n *\n * - [[StateService.is]]\n * - [[StateService.includes]]\n * - The first argument to Hook Registration functions like [[TransitionService.onStart]]\n * - [[HookMatchCriteria]] and [[HookMatchCriterion]]\n *\n * A `Glob` string is a pattern which matches state names.\n * Nested state names are split into segments (separated by a dot) when processing.\n * The state named `foo.bar.baz` is split into three segments ['foo', 'bar', 'baz']\n *\n * Globs work according to the following rules:\n *\n * ### Exact match:\n *\n * The glob `'A.B'` matches the state named exactly `'A.B'`.\n *\n * | Glob |Matches states named|Does not match state named|\n * |:------------|:--------------------|:---------------------|\n * | `'A'` | `'A'` | `'B'` , `'A.C'` |\n * | `'A.B'` | `'A.B'` | `'A'` , `'A.B.C'` |\n * | `'foo'` | `'foo'` | `'FOO'` , `'foo.bar'`|\n *\n * ### Single star (`*`)\n *\n * A single star (`*`) is a wildcard that matches exactly one segment.\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:---------------------|:--------------------------|\n * | `'*'` | `'A'` , `'Z'` | `'A.B'` , `'Z.Y.X'` |\n * | `'A.*'` | `'A.B'` , `'A.C'` | `'A'` , `'A.B.C'` |\n * | `'A.*.*'` | `'A.B.C'` , `'A.X.Y'`| `'A'`, `'A.B'` , `'Z.Y.X'`|\n *\n * ### Double star (`**`)\n *\n * A double star (`'**'`) is a wildcard that matches *zero or more segments*\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:----------------------------------------------|:----------------------------------|\n * | `'**'` | `'A'` , `'A.B'`, `'Z.Y.X'` | (matches all states) |\n * | `'A.**'` | `'A'` , `'A.B'` , `'A.C.X'` | `'Z.Y.X'` |\n * | `'**.X'` | `'X'` , `'A.X'` , `'Z.Y.X'` | `'A'` , `'A.login.Z'` |\n * | `'A.**.X'` | `'A.X'` , `'A.B.X'` , `'A.B.C.X'` | `'A'` , `'A.B.C'` |\n *\n */\nexport class Glob {\n text: string;\n glob: Array<string>;\n regexp: RegExp;\n\n /** Returns true if the string has glob-like characters in it */\n static is(text: string) {\n return !!/[!,*]+/.exec(text);\n }\n\n /** Returns a glob from the string, or null if the string isn't Glob-like */\n static fromString(text: string) {\n return Glob.is(text) ? new Glob(text) : null;\n }\n\n constructor(text: string) {\n this.text = text;\n this.glob = text.split('.');\n\n const regexpString = this.text\n .split('.')\n .map(seg => {\n if (seg === '**') return '(?:|(?:\\\\.[^.]*)*)';\n if (seg === '*') return '\\\\.[^.]*';\n return '\\\\.' + seg;\n })\n .join('');\n\n this.regexp = new RegExp('^' + regexpString + '$');\n }\n\n matches(name: string) {\n return this.regexp.test('.' + name);\n }\n}\n",
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"/**\n * @coreapi\n * @module state\n */\n/** for typedoc */\nimport { StateDeclaration, _ViewDeclaration, _StateDeclaration, LazyLoadResult } from './interface';\nimport { defaults, values, find, inherit } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { Param } from '../params/param';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { TargetState } from './targetState';\nimport { Transition } from '../transition/transition';\nimport { Glob } from '../common/glob';\nimport { isObject, isFunction } from '../common/predicates';\n\n/**\n * Internal representation of a UI-Router state.\n *\n * Instances of this class are created when a [[StateDeclaration]] is registered with the [[StateRegistry]].\n *\n * A registered [[StateDeclaration]] is augmented with a getter ([[StateDeclaration.$$state]]) which returns the corresponding [[StateObject]] object.\n *\n * This class prototypally inherits from the corresponding [[StateDeclaration]].\n * Each of its own properties (i.e., `hasOwnProperty`) are built using builders from the [[StateBuilder]].\n */\nexport class StateObject {\n /** The parent [[StateObject]] */\n public parent: StateObject;\n\n /** The name used to register the state */\n public name: string;\n\n /** Prototypally inherits from [[StateDeclaration.abstract]] */\n public abstract: boolean;\n\n /** Prototypally inherits from [[StateDeclaration.resolve]] */\n public resolve: { [key: string]: string | any[] | Function } | any[];\n\n /** A list of [[Resolvable]] objects. The internal representation of [[resolve]]. */\n public resolvables: Resolvable[];\n\n /** Prototypally inherits from [[StateDeclaration.resolvePolicy]] */\n public resolvePolicy: any;\n\n /** A compiled URLMatcher which detects when the state's URL is matched */\n public url: UrlMatcher;\n\n /** The parameters for the state, built from the URL and [[StateDeclaration.params]] */\n public params: { [key: string]: Param };\n\n /**\n * The views for the state.\n * Note: `@uirouter/core` does not register a builder for views.\n * The framework specific code should register a `views` builder.\n */\n public views: { [key: string]: _ViewDeclaration };\n\n /**\n * The original [[StateDeclaration]] used to build this [[StateObject]].\n * Note: `this` object also prototypally inherits from the `self` declaration object.\n */\n public self: StateDeclaration;\n\n /** The nearest parent [[StateObject]] which has a URL */\n public navigable: StateObject;\n\n /** The parent [[StateObject]] objects from this state up to the root */\n public path: StateObject[];\n\n /**\n * Prototypally inherits from [[StateDeclaration.data]]\n * Note: This is the only field on the [[StateDeclaration]] which is mutated.\n * The definition object's `data` field is replaced with a new object\n * which prototypally inherits from the parent state definition's `data` field.\n */\n public data: any;\n\n /**\n * An object containing the parent States' names as keys and\n * true as their values.\n */\n public includes: { [name: string]: boolean };\n\n /** Prototypally inherits from [[StateDeclaration.onExit]] */\n public onExit: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onRetain]] */\n public onRetain: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onEnter]] */\n public onEnter: TransitionStateHookFn;\n\n /** Prototypally inherits from [[StateDeclaration.lazyLoad]] */\n public lazyLoad: (transition: Transition, state: StateDeclaration) => Promise<LazyLoadResult>;\n\n /** Prototypally inherits from [[StateDeclaration.redirectTo]] */\n redirectTo:\n | string\n | (($transition$: Transition) => TargetState)\n | { state: string | StateDeclaration; params: { [key: string]: any } };\n\n /** @hidden */\n __stateObjectCache: {\n /** Might be null */\n nameGlob?: Glob;\n };\n\n /**\n * Create a state object to put the private/internal implementation details onto.\n * The object's prototype chain looks like:\n * (Internal State Object) -> (Copy of State.prototype) -> (State Declaration object) -> (State Declaration's prototype...)\n *\n * @param stateDecl the user-supplied State Declaration\n * @returns {StateObject} an internal State object\n */\n static create(stateDecl: _StateDeclaration): StateObject {\n stateDecl = StateObject.isStateClass(stateDecl) ? new stateDecl() : stateDecl;\n\n const state = inherit(inherit(stateDecl, StateObject.prototype)) as StateObject;\n stateDecl.$$state = () => state;\n state.self = stateDecl;\n state.__stateObjectCache = {\n nameGlob: Glob.fromString(state.name), // might return null\n };\n return state;\n }\n\n /** Predicate which returns true if the object is an class with @State() decorator */\n static iLine truncated
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"/** Predicates\n *\n * These predicates return true/false based on the input.\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_predicates\n */\n/** */\nimport { and, not, pipe, prop, or } from './hof';\nimport { Predicate } from './common'; // has or is using\nimport { StateObject } from '../state/stateObject';\n\nconst toStr = Object.prototype.toString;\nconst tis = (t: string) => (x: any) => typeof x === t;\nexport const isUndefined = tis('undefined');\nexport const isDefined = not(isUndefined);\nexport const isNull = (o: any) => o === null;\nexport const isNullOrUndefined = or(isNull, isUndefined);\nexport const isFunction: (x: any) => x is Function = <any>tis('function');\nexport const isNumber: (x: any) => x is number = <any>tis('number');\nexport const isString = <(x: any) => x is string>tis('string');\nexport const isObject = (x: any) => x !== null && typeof x === 'object';\nexport const isArray = Array.isArray;\nexport const isDate: (x: any) => x is Date = <any>((x: any) => toStr.call(x) === '[object Date]');\nexport const isRegExp: (x: any) => x is RegExp = <any>((x: any) => toStr.call(x) === '[object RegExp]');\nexport const isState: (x: any) => x is StateObject = StateObject.isState;\n\n/**\n * Predicate which checks if a value is injectable\n *\n * A value is \"injectable\" if it is a function, or if it is an ng1 array-notation-style array\n * where all the elements in the array are Strings, except the last one, which is a Function\n */\nexport function isInjectable(val: any) {\n if (isArray(val) && val.length) {\n const head = val.slice(0, -1),\n tail = val.slice(-1);\n return !(head.filter(not(isString)).length || tail.filter(not(isFunction)).length);\n }\n return isFunction(val);\n}\n\n/**\n * Predicate which checks if a value looks like a Promise\n *\n * It is probably a Promise if it's an object, and it has a `then` property which is a Function\n */\nexport const isPromise = <(x: any) => x is Promise<any>>and(isObject, pipe(prop('then'), isFunction));\n",
|
||||
"/**\n * @hidden\n * @module ng1\n */ /** */\ndeclare var angular;\nimport * as ng_from_import from 'angular';\nconst ng_from_global = angular;\n\nexport const ng = (ng_from_import && ng_from_import.module) ? ng_from_import : ng_from_global;\n",
|
||||
"/**\n * Higher order functions\n *\n * These utility functions are exported, but are subject to change without notice.\n *\n * @module common_hof\n */ /** */\n\nimport { Predicate } from './common';\n/**\n * Returns a new function for [Partial Application](https://en.wikipedia.org/wiki/Partial_application) of the original function.\n *\n * Given a function with N parameters, returns a new function that supports partial application.\n * The new function accepts anywhere from 1 to N parameters. When that function is called with M parameters,\n * where M is less than N, it returns a new function that accepts the remaining parameters. It continues to\n * accept more parameters until all N parameters have been supplied.\n *\n *\n * This contrived example uses a partially applied function as an predicate, which returns true\n * if an object is found in both arrays.\n * @example\n * ```\n * // returns true if an object is in both of the two arrays\n * function inBoth(array1, array2, object) {\n * return array1.indexOf(object) !== -1 &&\n * array2.indexOf(object) !== 1;\n * }\n * let obj1, obj2, obj3, obj4, obj5, obj6, obj7\n * let foos = [obj1, obj3]\n * let bars = [obj3, obj4, obj5]\n *\n * // A curried \"copy\" of inBoth\n * let curriedInBoth = curry(inBoth);\n * // Partially apply both the array1 and array2\n * let inFoosAndBars = curriedInBoth(foos, bars);\n *\n * // Supply the final argument; since all arguments are\n * // supplied, the original inBoth function is then called.\n * let obj1InBoth = inFoosAndBars(obj1); // false\n *\n * // Use the inFoosAndBars as a predicate.\n * // Filter, on each iteration, supplies the final argument\n * let allObjs = [ obj1, obj2, obj3, obj4, obj5, obj6, obj7 ];\n * let foundInBoth = allObjs.filter(inFoosAndBars); // [ obj3 ]\n *\n * ```\n *\n * Stolen from: http://stackoverflow.com/questions/4394747/javascript-curry-function\n *\n * @param fn\n * @returns {*|function(): (*|any)}\n */\nexport function curry(fn: Function): Function {\n const initial_args = [].slice.apply(arguments, [1]);\n const func_args_length = fn.length;\n\n function curried(args: any[]) {\n if (args.length >= func_args_length)\n return fn.apply(null, args);\n return function () {\n return curried(args.concat([].slice.apply(arguments)));\n };\n }\n return curried(initial_args);\n}\n\n\n\n/**\n * Given a varargs list of functions, returns a function that composes the argument functions, right-to-left\n * given: f(x), g(x), h(x)\n * let composed = compose(f,g,h)\n * then, composed is: f(g(h(x)))\n */\nexport function compose() {\n const args = arguments;\n const start = args.length - 1;\n return function() {\n let i = start, result = args[start].apply(this, arguments);\n while (i--) result = args[i].call(this, result);\n return result;\n };\n}\n\n/**\n * Given a varargs list of functions, returns a function that is composes the argument functions, left-to-right\n * given: f(x), g(x), h(x)\n * let piped = pipe(f,g,h);\n * then, piped is: h(g(f(x)))\n */\nexport function pipe(...funcs: Function[]): (obj: any) => any {\n return compose.apply(null, [].slice.call(arguments).reverse());\n}\n\n/**\n * Given a property name, returns a function that returns that property from an object\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = prop(\"name\");\n * getName(obj) === \"blarg\"\n */\nexport const prop = (name: string) =>\n (obj: any) => obj && obj[name];\n\n/**\n * Given a property name and a value, returns a function that returns a boolean based on whether\n * the passed object has a property that matches the value\n * let obj = { foo: 1, name: \"blarg\" };\n * let getName = propEq(\"name\", \"blarg\");\n * getName(obj) === true\n */\nexport const propEq = curry((name: string, _val: any, obj: any) => obj && obj[name] === _val);\n\n/**\n * Given a dotted property name, returns a function that returns a nested property from an object, or undefined\n * let obj = { id: 1, nestedObj: { foo: 1, name: \"blarg\" }, };\n * let getName = prop(\"nestedObj.name\");\n * getName(obj) === \"blarg\"\n * let propNotFound = prop(\"this.property.doesnt.exist\");\n * propNotFound(obj) === undefined\n */\nexport const parse = (name: string) =>\n pipe.apply(null, name.split('.').map(prop));\n\n/**\n * Given a function that returns a truthy or falsey value, returns a\n * function that returns the opposite (falsey or truthy) value given the same inputs\n */\nexport const not: (fn: Predicate<any>) => Predicate<any> = (fn: Predicate<any>) =>\n (...args: any[]) => !fn.apply(null, args);\n\n/**\n * Given two functions that return truthy or falsey values, returns a function that returns truthy\n * if both functions return truthy for the given arguments\n */\nexport function and(fn1: Predicate<any>, fn2: Predicate<any>): Predicate<any> {\n return (...args: any[]) => fn1.apply(null, args) && fn2.apply(null, args);\n}\n\n/**\n * Given two functions that return trutLine truncated
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"/**\n * @coreapi\n * @module core\n */\n/**\n * Matches state names using glob-like pattern strings.\n *\n * Globs can be used in specific APIs including:\n *\n * - [[StateService.is]]\n * - [[StateService.includes]]\n * - The first argument to Hook Registration functions like [[TransitionService.onStart]]\n * - [[HookMatchCriteria]] and [[HookMatchCriterion]]\n *\n * A `Glob` string is a pattern which matches state names.\n * Nested state names are split into segments (separated by a dot) when processing.\n * The state named `foo.bar.baz` is split into three segments ['foo', 'bar', 'baz']\n *\n * Globs work according to the following rules:\n *\n * ### Exact match:\n *\n * The glob `'A.B'` matches the state named exactly `'A.B'`.\n *\n * | Glob |Matches states named|Does not match state named|\n * |:------------|:--------------------|:---------------------|\n * | `'A'` | `'A'` | `'B'` , `'A.C'` |\n * | `'A.B'` | `'A.B'` | `'A'` , `'A.B.C'` |\n * | `'foo'` | `'foo'` | `'FOO'` , `'foo.bar'`|\n *\n * ### Single star (`*`)\n *\n * A single star (`*`) is a wildcard that matches exactly one segment.\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:---------------------|:--------------------------|\n * | `'*'` | `'A'` , `'Z'` | `'A.B'` , `'Z.Y.X'` |\n * | `'A.*'` | `'A.B'` , `'A.C'` | `'A'` , `'A.B.C'` |\n * | `'A.*.*'` | `'A.B.C'` , `'A.X.Y'`| `'A'`, `'A.B'` , `'Z.Y.X'`|\n *\n * ### Double star (`**`)\n *\n * A double star (`'**'`) is a wildcard that matches *zero or more segments*\n *\n * | Glob |Matches states named |Does not match state named |\n * |:------------|:----------------------------------------------|:----------------------------------|\n * | `'**'` | `'A'` , `'A.B'`, `'Z.Y.X'` | (matches all states) |\n * | `'A.**'` | `'A'` , `'A.B'` , `'A.C.X'` | `'Z.Y.X'` |\n * | `'**.X'` | `'X'` , `'A.X'` , `'Z.Y.X'` | `'A'` , `'A.login.Z'` |\n * | `'A.**.X'` | `'A.X'` , `'A.B.X'` , `'A.B.C.X'` | `'A'` , `'A.B.C'` |\n *\n */\nexport class Glob {\n text: string;\n glob: Array<string>;\n regexp: RegExp;\n\n /** Returns true if the string has glob-like characters in it */\n static is(text: string) {\n return !!/[!,*]+/.exec(text);\n }\n\n /** Returns a glob from the string, or null if the string isn't Glob-like */\n static fromString(text: string) {\n return Glob.is(text) ? new Glob(text) : null;\n }\n\n constructor(text: string) {\n this.text = text;\n this.glob = text.split('.');\n\n const regexpString = this.text.split('.')\n .map(seg => {\n if (seg === '**') return '(?:|(?:\\\\.[^.]*)*)';\n if (seg === '*') return '\\\\.[^.]*';\n return '\\\\.' + seg;\n }).join('');\n\n this.regexp = new RegExp('^' + regexpString + '$');\n }\n\n matches(name: string) {\n return this.regexp.test('.' + name);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** for typedoc */\nimport { StateDeclaration, _ViewDeclaration, _StateDeclaration, LazyLoadResult } from './interface';\nimport { defaults, values, find, inherit } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { Param } from '../params/param';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { TargetState } from './targetState';\nimport { Transition } from '../transition/transition';\nimport { Glob } from '../common/glob';\nimport { isObject, isFunction } from '../common/predicates';\n\n/**\n * Internal representation of a UI-Router state.\n *\n * Instances of this class are created when a [[StateDeclaration]] is registered with the [[StateRegistry]].\n *\n * A registered [[StateDeclaration]] is augmented with a getter ([[StateDeclaration.$$state]]) which returns the corresponding [[StateObject]] object.\n *\n * This class prototypally inherits from the corresponding [[StateDeclaration]].\n * Each of its own properties (i.e., `hasOwnProperty`) are built using builders from the [[StateBuilder]].\n */\nexport class StateObject {\n /** The parent [[StateObject]] */\n public parent: StateObject;\n\n /** The name used to register the state */\n public name: string;\n\n /** Prototypally inherits from [[StateDeclaration.abstract]] */\n public abstract: boolean;\n\n /** Prototypally inherits from [[StateDeclaration.resolve]] */\n public resolve: ({ [key: string]: (string|any[]|Function) }|any[]);\n\n /** A list of [[Resolvable]] objects. The internal representation of [[resolve]]. */\n public resolvables: Resolvable[];\n\n /** Prototypally inherits from [[StateDeclaration.resolvePolicy]] */\n public resolvePolicy: any;\n\n /** A compiled URLMatcher which detects when the state's URL is matched */\n public url: UrlMatcher;\n\n /** The parameters for the state, built from the URL and [[StateDeclaration.params]] */\n public params: { [key: string]: Param };\n\n /**\n * The views for the state.\n * Note: `@uirouter/core` does not register a builder for views.\n * The framework specific code should register a `views` builder.\n */\n public views: { [key: string]: _ViewDeclaration; };\n\n /**\n * The original [[StateDeclaration]] used to build this [[StateObject]].\n * Note: `this` object also prototypally inherits from the `self` declaration object.\n */\n public self: StateDeclaration;\n\n /** The nearest parent [[StateObject]] which has a URL */\n public navigable: StateObject;\n\n /** The parent [[StateObject]] objects from this state up to the root */\n public path: StateObject[];\n\n /**\n * Prototypally inherits from [[StateDeclaration.data]]\n * Note: This is the only field on the [[StateDeclaration]] which is mutated.\n * The definition object's `data` field is replaced with a new object\n * which prototypally inherits from the parent state definition's `data` field.\n */\n public data: any;\n\n /**\n * An object containing the parent States' names as keys and\n * true as their values.\n */\n public includes: { [name: string]: boolean };\n\n /** Prototypally inherits from [[StateDeclaration.onExit]] */\n public onExit: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onRetain]] */\n public onRetain: TransitionStateHookFn;\n /** Prototypally inherits from [[StateDeclaration.onEnter]] */\n public onEnter: TransitionStateHookFn;\n\n /** Prototypally inherits from [[StateDeclaration.lazyLoad]] */\n public lazyLoad: (transition: Transition, state: StateDeclaration) => Promise<LazyLoadResult>;\n\n /** Prototypally inherits from [[StateDeclaration.redirectTo]] */\n redirectTo: (\n string |\n (($transition$: Transition) => TargetState) |\n { state: (string|StateDeclaration), params: { [key: string]: any }}\n );\n\n /** @hidden */\n __stateObjectCache: {\n /** Might be null */\n nameGlob?: Glob,\n };\n\n /**\n * Create a state object to put the private/internal implementation details onto.\n * The object's prototype chain looks like:\n * (Internal State Object) -> (Copy of State.prototype) -> (State Declaration object) -> (State Declaration's prototype...)\n *\n * @param stateDecl the user-supplied State Declaration\n * @returns {StateObject} an internal State object\n */\n static create(stateDecl: _StateDeclaration): StateObject {\n stateDecl = StateObject.isStateClass(stateDecl) ? new stateDecl() : stateDecl;\n\n const state = inherit(inherit(stateDecl, StateObject.prototype)) as StateObject;\n stateDecl.$$state = () => state;\n state.self = stateDecl;\n state.__stateObjectCache = {\n nameGlob: Glob.fromString(state.name), // might return null\n };\n return state;\n }\n\n /** Predicate which returns true if the object is an class with @State() decorator */\n Line truncated
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"/** Predicates\n *\n * These predicates return true/false based on the input.\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_predicates\n */\n/** */\nimport { and, not, pipe, prop, or } from './hof';\nimport { Predicate } from './common'; // has or is using\nimport { StateObject } from '../state/stateObject';\n\nconst toStr = Object.prototype.toString;\nconst tis = (t: string) => (x: any) => typeof(x) === t;\nexport const isUndefined = tis('undefined');\nexport const isDefined = not(isUndefined);\nexport const isNull = (o: any) => o === null;\nexport const isNullOrUndefined = or(isNull, isUndefined);\nexport const isFunction: (x: any) => x is Function = <any> tis('function');\nexport const isNumber: (x: any) => x is number = <any> tis('number');\nexport const isString = <(x: any) => x is string> tis('string');\nexport const isObject = (x: any) => x !== null && typeof x === 'object';\nexport const isArray = Array.isArray;\nexport const isDate: (x: any) => x is Date = <any> ((x: any) => toStr.call(x) === '[object Date]');\nexport const isRegExp: (x: any) => x is RegExp = <any> ((x: any) => toStr.call(x) === '[object RegExp]');\nexport const isState: (x: any) => x is StateObject = StateObject.isState;\n\n/**\n * Predicate which checks if a value is injectable\n *\n * A value is \"injectable\" if it is a function, or if it is an ng1 array-notation-style array\n * where all the elements in the array are Strings, except the last one, which is a Function\n */\nexport function isInjectable(val: any) {\n if (isArray(val) && val.length) {\n const head = val.slice(0, -1), tail = val.slice(-1);\n return !(head.filter(not(isString)).length || tail.filter(not(isFunction)).length);\n }\n return isFunction(val);\n}\n\n/**\n * Predicate which checks if a value looks like a Promise\n *\n * It is probably a Promise if it's an object, and it has a `then` property which is a Function\n */\nexport const isPromise = <(x: any) => x is Promise<any>> and(isObject, pipe(prop('then'), isFunction));\n\n",
|
||||
"/**\n * This module is a stub for core services such as Dependency Injection or Browser Location.\n * Core services may be implemented by a specific framework, such as ng1 or ng2, or be pure javascript.\n *\n * @module common\n */\n/** for typedoc */\nimport { IInjectable, Obj } from './common';\nimport { Disposable } from '../interface';\nimport { UrlParts } from '../url/interface';\n\nexport let notImplemented = (fnname: string) => () => {\n throw new Error(`${fnname}(): No coreservices implementation for UI-Router is loaded.`);\n};\n\nconst services: CoreServices = {\n $q: undefined,\n $injector: undefined,\n};\n\nexport interface $QLikeDeferred {\n resolve: (val?: any) => void;\n reject: (reason?: any) => void;\n promise: Promise<any>;\n}\n\nexport interface $QLike {\n when<T>(value?: T | PromiseLike<T>): Promise<T>;\n reject<T>(reason: any): Promise<T>;\n defer(): $QLikeDeferred;\n all(promises: { [key: string]: Promise<any> }): Promise<any>;\n all(promises: Promise<any>[]): Promise<any[]>;\n}\n\nexport interface $InjectorLike {\n strictDi?: boolean;\n get(token: any): any;\n get<T>(token: any): T;\n has(token: any): boolean;\n invoke(fn: IInjectable, context?: any, locals?: Obj): any;\n annotate(fn: IInjectable, strictDi?: boolean): any[];\n}\n\nexport interface CoreServices {\n $q: $QLike;\n $injector: $InjectorLike;\n}\n\nexport interface LocationServices extends Disposable {\n /**\n * Gets the current url string\n *\n * The URL is normalized using the internal [[path]]/[[search]]/[[hash]] values.\n *\n * For example, the URL may be stored in the hash ([[HashLocationServices]]) or\n * have a base HREF prepended ([[PushStateLocationServices]]).\n *\n * The raw URL in the browser might be:\n *\n * ```\n * http://mysite.com/somepath/index.html#/internal/path/123?param1=foo#anchor\n * ```\n *\n * or\n *\n * ```\n * http://mysite.com/basepath/internal/path/123?param1=foo#anchor\n * ```\n *\n * then this method returns:\n *\n * ```\n * /internal/path/123?param1=foo#anchor\n * ```\n *\n *\n * #### Example:\n * ```js\n * locationServices.url(); // \"/some/path?query=value#anchor\"\n * ```\n *\n * @returns the current value of the url, as a string.\n */\n url(): string;\n\n /**\n * Updates the url, or gets the current url\n *\n * Updates the url, changing it to the value in `newurl`\n *\n * #### Example:\n * ```js\n * locationServices.url(\"/some/path?query=value#anchor\", true);\n * ```\n *\n * @param newurl The new value for the URL.\n * This url should reflect only the new internal [[path]], [[search]], and [[hash]] values.\n * It should not include the protocol, site, port, or base path of an absolute HREF.\n * @param replace When true, replaces the current history entry (instead of appending it) with this new url\n * @param state The history's state object, i.e., pushState (if the LocationServices implementation supports it)\n * @return the url (after potentially being processed)\n */\n url(newurl: string, replace?: boolean, state?: any): string;\n\n /**\n * Gets the path part of the current url\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `/some/path`\n *\n * @return the path portion of the url\n */\n path(): string;\n\n /**\n * Gets the search part of the current url as an object\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `{ query: 'value' }`\n *\n * @return the search (querystring) portion of the url, as an object\n */\n search(): { [key: string]: any };\n\n /**\n * Gets the hash part of the current url\n *\n * If the current URL is `/some/path?query=value#anchor`, this returns `anchor`\n *\n * @return the hash (anchor) portion of the url\n */\n hash(): string;\n\n /**\n * Registers a url change handler\n *\n * #### Example:\n * ```js\n * let deregisterFn = locationServices.onChange((evt) => console.log(\"url change\", evt));\n * ```\n *\n * @param callback a function that will be called when the url is changing\n * @return a function that de-registers the callback\n */\n onChange(callback: Function): Function;\n}\n\n/**\n * This service returns the location configuration\n *\n * This service returns information about the location configuration.\n * This service is primarily used when building URLs (e.g., for `hrefs`)\n */\nexport interface LocationConfig extends Disposable {\n /**\n * Gets the port, e.g., `80`\n *\n * @return the port number\n */\n port(): number;\n /**\n * Gets the protocol, e.g., `http`\n *\n * @return the protocol\n */\n protocol(): string;\n /**\n * Gets the host, e.g., `localhost`\n *\n * @return the protocol\n */\n host(): string;\n /**\n * Gets the base Href, e.g., `http://localhost/approot/`\n *\n * @return the application's base href\n */\n baseHref(): striLine truncated
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||||
"/**\n * Random utility functions used in the UI-Router code\n *\n * These functions are exported, but are subject to change without notice.\n *\n * @preferred\n * @module common\n */\n/** for typedoc */\nimport { isFunction, isString, isArray, isRegExp, isDate } from './predicates';\nimport { all, any, prop, curry, not } from './hof';\nimport { services } from './coreservices';\nimport { StateObject } from '../state/stateObject';\n\ndeclare const global;\nexport const root: any =\n (typeof self === 'object' && self.self === self && self) ||\n (typeof global === 'object' && global.global === global && global) ||\n this;\nconst angular = root.angular || {};\n\nexport const fromJson = angular.fromJson || JSON.parse.bind(JSON);\nexport const toJson = angular.toJson || JSON.stringify.bind(JSON);\nexport const forEach = angular.forEach || _forEach;\nexport const extend = Object.assign || _extend;\nexport const equals = angular.equals || _equals;\nexport function identity(x: any) {\n return x;\n}\nexport function noop(): any {}\n\nexport type Mapper<X, T> = (x: X, key?: string | number) => T;\nexport interface TypedMap<T> {\n [key: string]: T;\n}\nexport type Predicate<X> = (x?: X) => boolean;\n/**\n * An ng1-style injectable\n *\n * This could be a (non-minified) function such as:\n * ```js\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an explicitly annotated function (minify safe)\n * ```js\n * injectableFunction.$inject = [ 'SomeDependency' ];\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an array style annotated function (minify safe)\n * ```js\n * ['SomeDependency', function injectableFunction(SomeDependency) {\n *\n * }];\n * ```\n *\n * @publicapi\n */\nexport type IInjectable = Function | any[];\n\nexport interface Obj extends Object {\n [key: string]: any;\n}\n\n/**\n * Builds proxy functions on the `to` object which pass through to the `from` object.\n *\n * For each key in `fnNames`, creates a proxy function on the `to` object.\n * The proxy function calls the real function on the `from` object.\n *\n *\n * #### Example:\n * This example creates an new class instance whose functions are prebound to the new'd object.\n * ```js\n * class Foo {\n * constructor(data) {\n * // Binds all functions from Foo.prototype to 'this',\n * // then copies them to 'this'\n * bindFunctions(Foo.prototype, this, this);\n * this.data = data;\n * }\n *\n * log() {\n * console.log(this.data);\n * }\n * }\n *\n * let myFoo = new Foo([1,2,3]);\n * var logit = myFoo.log;\n * logit(); // logs [1, 2, 3] from the myFoo 'this' instance\n * ```\n *\n * #### Example:\n * This example creates a bound version of a service function, and copies it to another object\n * ```\n *\n * var SomeService = {\n * this.data = [3, 4, 5];\n * this.log = function() {\n * console.log(this.data);\n * }\n * }\n *\n * // Constructor fn\n * function OtherThing() {\n * // Binds all functions from SomeService to SomeService,\n * // then copies them to 'this'\n * bindFunctions(SomeService, this, SomeService);\n * }\n *\n * let myOtherThing = new OtherThing();\n * myOtherThing.log(); // logs [3, 4, 5] from SomeService's 'this'\n * ```\n *\n * @param source A function that returns the source object which contains the original functions to be bound\n * @param target A function that returns the target object which will receive the bound functions\n * @param bind A function that returns the object which the functions will be bound to\n * @param fnNames The function names which will be bound (Defaults to all the functions found on the 'from' object)\n * @param latebind If true, the binding of the function is delayed until the first time it's invoked\n */\nexport function createProxyFunctions(\n source: Function,\n target: Obj,\n bind: Function,\n fnNames?: string[],\n latebind = false,\n): Obj {\n const bindFunction = fnName => source()[fnName].bind(bind());\n\n const makeLateRebindFn = fnName =>\n function lateRebindFunction() {\n target[fnName] = bindFunction(fnName);\n return target[fnName].apply(null, arguments);\n };\n\n fnNames = fnNames || Object.keys(source());\n\n return fnNames.reduce((acc, name) => {\n acc[name] = latebind ? makeLateRebindFn(name) : bindFunction(name);\n return acc;\n }, target);\n}\n\n/**\n * prototypal inheritance helper.\n * Creates a new object which has `parent` object as its prototype, and then copies the properties from `extra` onto it\n */\nexport const inherit = (parent: Obj, extra?: Obj) => extend(Object.create(parent), extra);\n\n/** Given an array, returns true if the object is found in the array, (using indexOf) */\nexport const inArray: typeof _inArray = curry(_inArray) as any;\nexport function _inArray(array: any[], obj: any): boolean;\nexport function _inArray(array: any[]): (obj: any) => boolean;\nexport function _inArray(array, obj?): any {\n return array.indexOf(obj)Line truncated
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||||
"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n'use strict';\nimport { extend, silentRejection } from '../common/common';\nimport { stringify } from '../common/strings';\nimport { is } from '../common/hof';\n\nenum RejectType {\n /**\n * A new transition superseded this one.\n *\n * While this transition was running, a new transition started.\n * This transition is cancelled because it was superseded by new transition.\n */\n SUPERSEDED = 2,\n\n /**\n * The transition was aborted\n *\n * The transition was aborted by a hook which returned `false`\n */\n ABORTED = 3,\n\n /**\n * The transition was invalid\n *\n * The transition was never started because it was invalid\n */\n INVALID = 4,\n\n /**\n * The transition was ignored\n *\n * The transition was ignored because it would have no effect.\n *\n * Either:\n *\n * - The transition is targeting the current state and parameter values\n * - The transition is targeting the same state and parameter values as the currently running transition.\n */\n IGNORED = 5,\n\n /**\n * The transition errored.\n *\n * This generally means a hook threw an error or returned a rejected promise\n */\n ERROR = 6,\n}\n\nexport { RejectType };\n\n/** @hidden */\nlet id = 0;\n\nexport class Rejection {\n /** @hidden */\n $id = id++;\n /**\n * The type of the rejection.\n *\n * This value is an number representing the type of transition rejection.\n * If using Typescript, this is a Typescript enum.\n *\n * - [[RejectType.SUPERSEDED]] (`2`)\n * - [[RejectType.ABORTED]] (`3`)\n * - [[RejectType.INVALID]] (`4`)\n * - [[RejectType.IGNORED]] (`5`)\n * - [[RejectType.ERROR]] (`6`)\n *\n */\n type: RejectType;\n\n /**\n * A message describing the rejection\n */\n message: string;\n\n /**\n * A detail object\n *\n * This value varies based on the mechanism for rejecting the transition.\n * For example, if an error was thrown from a hook, the `detail` will be the `Error` object.\n * If a hook returned a rejected promise, the `detail` will be the rejected value.\n */\n detail: any;\n\n /**\n * Indicates if the transition was redirected.\n *\n * When a transition is redirected, the rejection [[type]] will be [[RejectType.SUPERSEDED]] and this flag will be true.\n */\n redirected: boolean;\n\n /** Returns true if the obj is a rejected promise created from the `asPromise` factory */\n static isRejectionPromise(obj: any): boolean {\n return obj && typeof obj.then === 'function' && is(Rejection)(obj._transitionRejection);\n }\n\n /** Returns a Rejection due to transition superseded */\n static superseded(detail?: any, options?: any): Rejection {\n const message = 'The transition has been superseded by a different transition';\n const rejection = new Rejection(RejectType.SUPERSEDED, message, detail);\n if (options && options.redirected) {\n rejection.redirected = true;\n }\n return rejection;\n }\n\n /** Returns a Rejection due to redirected transition */\n static redirected(detail?: any): Rejection {\n return Rejection.superseded(detail, { redirected: true });\n }\n\n /** Returns a Rejection due to invalid transition */\n static invalid(detail?: any): Rejection {\n const message = 'This transition is invalid';\n return new Rejection(RejectType.INVALID, message, detail);\n }\n\n /** Returns a Rejection due to ignored transition */\n static ignored(detail?: any): Rejection {\n const message = 'The transition was ignored';\n return new Rejection(RejectType.IGNORED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static aborted(detail?: any): Rejection {\n const message = 'The transition has been aborted';\n return new Rejection(RejectType.ABORTED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static errored(detail?: any): Rejection {\n const message = 'The transition errored';\n return new Rejection(RejectType.ERROR, message, detail);\n }\n\n /**\n * Returns a Rejection\n *\n * Normalizes a value as a Rejection.\n * If the value is already a Rejection, returns it.\n * Otherwise, wraps and returns the value as a Rejection (Rejection type: ERROR).\n *\n * @returns `detail` if it is already a `Rejection`, else returns an ERROR Rejection.\n */\n static normalize(detail?: Rejection | Error | any): Rejection {\n return is(Rejection)(detail) ? detail : Rejection.errored(detail);\n }\n\n constructor(type: number, message?: string, detail?: any) {\n this.type = type;\n this.message = message;\n this.detail = detail;\n }\n\n toString() {\n const detailString = (d: any) => (d && d.toString !== Object.prototype.toString ? d.toString() : stringify(d));\n const detail = detailString(this.detail);\n const { $id, type, message } = this;\n return `Transition Rejection($id: ${$id} type: ${type}, Line truncated
|
||||
"/** @module common */\nimport { pushTo } from './common';\n\nexport class Queue<T> {\n private _evictListeners: ((item: T) => void)[] = [];\n public onEvict = pushTo(this._evictListeners);\n\n constructor(private _items: T[] = [], private _limit: number = null) {}\n\n enqueue(item: T) {\n const items = this._items;\n items.push(item);\n if (this._limit && items.length > this._limit) this.evict();\n return item;\n }\n\n evict(): T {\n const item: T = this._items.shift();\n this._evictListeners.forEach(fn => fn(item));\n return item;\n }\n\n dequeue(): T {\n if (this.size()) return this._items.splice(0, 1)[0];\n }\n\n clear(): Array<T> {\n const current = this._items;\n this._items = [];\n return current;\n }\n\n size(): number {\n return this._items.length;\n }\n\n remove(item: T) {\n const idx = this._items.indexOf(item);\n return idx > -1 && this._items.splice(idx, 1)[0];\n }\n\n peekTail(): T {\n return this._items[this._items.length - 1];\n }\n\n peekHead(): T {\n if (this.size()) return this._items[0];\n }\n}\n",
|
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"/**\n * # Transition tracing (debug)\n *\n * Enable transition tracing to print transition information to the console,\n * in order to help debug your application.\n * Tracing logs detailed information about each Transition to your console.\n *\n * To enable tracing, import the [[Trace]] singleton and enable one or more categories.\n *\n * ### ES6\n * ```js\n * import {trace} from \"@uirouter/core\";\n * trace.enable(1, 5); // TRANSITION and VIEWCONFIG\n * ```\n *\n * ### CJS\n * ```js\n * let trace = require(\"@uirouter/core\").trace;\n * trace.enable(\"TRANSITION\", \"VIEWCONFIG\");\n * ```\n *\n * ### Globals\n * ```js\n * let trace = window[\"@uirouter/core\"].trace;\n * trace.enable(); // Trace everything (very verbose)\n * ```\n *\n * ### Angular 1:\n * ```js\n * app.run($trace => $trace.enable());\n * ```\n *\n * @coreapi\n * @module trace\n */\n/* tslint:disable:no-console */\nimport { parse } from '../common/hof';\nimport { isFunction, isNumber } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { ViewTuple } from '../view';\nimport { ActiveUIView, ViewConfig, ViewContext } from '../view/interface';\nimport { stringify, functionToString, maxLength, padString } from './strings';\nimport { Resolvable } from '../resolve/resolvable';\nimport { PathNode } from '../path/pathNode';\nimport { PolicyWhen } from '../resolve/interface';\nimport { TransitionHook } from '../transition/transitionHook';\nimport { HookResult } from '../transition/interface';\nimport { StateObject } from '../state/stateObject';\n\n/** @hidden */\nfunction uiViewString(uiview: ActiveUIView) {\n if (!uiview) return 'ui-view (defunct)';\n const state = uiview.creationContext ? uiview.creationContext.name || '(root)' : '(none)';\n return `[ui-view#${uiview.id} ${uiview.$type}:${uiview.fqn} (${uiview.name}@${state})]`;\n}\n\n/** @hidden */\nconst viewConfigString = (viewConfig: ViewConfig) => {\n const view = viewConfig.viewDecl;\n const state = view.$context.name || '(root)';\n return `[View#${viewConfig.$id} from '${state}' state]: target ui-view: '${view.$uiViewName}@${\n view.$uiViewContextAnchor\n }'`;\n};\n\n/** @hidden */\nfunction normalizedCat(input: Category | string): string {\n return isNumber(input) ? Category[input] : Category[Category[input]];\n}\n\n/** @hidden */\nconst consoleLog = Function.prototype.bind.call(console.log, console);\n\n/** @hidden */\nconst consoletable = isFunction(console.table) ? console.table.bind(console) : consoleLog.bind(console);\n\n/**\n * Trace categories Enum\n *\n * Enable or disable a category using [[Trace.enable]] or [[Trace.disable]]\n *\n * `trace.enable(Category.TRANSITION)`\n *\n * These can also be provided using a matching string, or position ordinal\n *\n * `trace.enable(\"TRANSITION\")`\n *\n * `trace.enable(1)`\n */\nenum Category {\n RESOLVE,\n TRANSITION,\n HOOK,\n UIVIEW,\n VIEWCONFIG,\n}\n\nexport { Category };\n\n/** @hidden */\nconst _tid = parse('$id');\n\n/** @hidden */\nconst _rid = parse('router.$id');\n\n/** @hidden */\nconst transLbl = trans => `Transition #${_tid(trans)}-${_rid(trans)}`;\n\n/**\n * Prints UI-Router Transition trace information to the console.\n */\nexport class Trace {\n /** @hidden */\n approximateDigests: number;\n\n /** @hidden */\n private _enabled: { [key: string]: boolean } = {};\n\n /** @hidden */\n constructor() {\n this.approximateDigests = 0;\n }\n\n /** @hidden */\n private _set(enabled: boolean, categories: Category[]) {\n if (!categories.length) {\n categories = <any>Object.keys(Category)\n .map(k => parseInt(k, 10))\n .filter(k => !isNaN(k))\n .map(key => Category[key]);\n }\n categories.map(normalizedCat).forEach(category => (this._enabled[category] = enabled));\n }\n\n /**\n * Enables a trace [[Category]]\n *\n * ```js\n * trace.enable(\"TRANSITION\");\n * ```\n *\n * @param categories categories to enable. If `categories` is omitted, all categories are enabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n enable(...categories: (Category | string | number)[]);\n enable(...categories: any[]) {\n this._set(true, categories);\n }\n /**\n * Disables a trace [[Category]]\n *\n * ```js\n * trace.disable(\"VIEWCONFIG\");\n * ```\n *\n * @param categories categories to disable. If `categories` is omitted, all categories are disabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n disable(...categories: (Category | string | number)[]);\n disable(...categories: any[]) {\n this._set(false, categories);\n }\n\n /**\n * Retrieves the enabled stateus of a [[Category]]\n *\n * ```js\n * trace.enabled(\"VIEWCONFIG\"); // true or false\n * ```\n *\n * @returns boolean true if the category is enabled\n */\n enabled(category: Category | string | number): boolean {\n return !!this._enabled[normalizeLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { StateDeclaration } from '../state/interface';\nimport { Predicate } from '../common/common';\n\nimport { Transition } from './transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TargetState } from '../state/targetState';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * The TransitionOptions object can be used to change the behavior of a transition.\n *\n * It is passed as the third argument to [[StateService.go]], [[StateService.transitionTo]].\n * It can also be used with a `uiSref`.\n */\nexport interface TransitionOptions {\n /**\n * This option changes how the Transition interacts with the browser's location bar (URL).\n *\n * - If `true`, it will update the url in the location bar.\n * - If `false`, it will not update the url in the location bar.\n * - If it is the string `\"replace\"`, it will update the url and also replace the last history record.\n *\n * @default `true`\n */\n location?: boolean | string;\n\n /**\n * When transitioning to relative path (e.g '`^`'), this option defines which state to be relative from.\n * @default `$state.current`\n */\n relative?: string | StateDeclaration | StateObject;\n\n /**\n * This option sets whether or not the transition's parameter values should be inherited from\n * the current parameter values.\n *\n * - If `true`, it will inherit parameter values from the current parameter values.\n * - If `false`, only the parameters which are provided to `transitionTo` will be used.\n *\n * @default `false`\n */\n inherit?: boolean;\n\n /**\n * @deprecated\n */\n notify?: boolean;\n\n /**\n * This option may be used to force states which are currently active to reload.\n *\n * During a normal transition, a state is \"retained\" if:\n * - It was previously active\n * - The state's parameter values have not changed\n * - All the parent states' parameter values have not changed\n *\n * Forcing a reload of a state will cause it to be exited and entered, which will:\n * - Refetch that state's resolve data\n * - Exit the state (onExit hook)\n * - Re-enter the state (onEnter hook)\n * - Re-render the views (controllers and templates)\n *\n * - When `true`, the destination state (and all parent states) will be reloaded.\n * - When it is a string and is the name of a state, or when it is a State object,\n * that state and any children states will be reloaded.\n *\n * @default `false`\n */\n reload?: boolean | string | StateDeclaration | StateObject;\n /**\n * You can define your own Transition Options inside this property and use them, e.g., from a Transition Hook\n */\n custom?: any;\n /** @internalapi */\n reloadState?: StateObject;\n /** @internalapi\n * If this transition is a redirect, this property should be the original Transition (which was redirected to this one)\n */\n redirectedFrom?: Transition;\n /** @internalapi */\n current?: () => Transition;\n /** @internalapi */\n source?: 'sref' | 'url' | 'redirect' | 'otherwise' | 'unknown';\n}\n\n/** @internalapi */\nexport interface TransitionHookOptions {\n current?: () => Transition; // path?\n transition?: Transition;\n hookType?: string;\n target?: any;\n traceData?: any;\n bind?: any;\n stateHook?: boolean;\n}\n\n/**\n * TreeChanges encapsulates the various Paths that are involved in a Transition.\n *\n * Get a TreeChanges object using [[Transition.treeChanges]]\n *\n * A UI-Router Transition is from one Path in a State Tree to another Path. For a given Transition,\n * this object stores the \"to\" and \"from\" paths, as well as subsets of those: the \"retained\",\n * \"exiting\" and \"entering\" paths.\n *\n * Each path in TreeChanges is an array of [[PathNode]] objects. Each PathNode in the array corresponds to a portion\n * of a nested state.\n *\n * For example, if you had a nested state named `foo.bar.baz`, it would have three\n * portions, `foo, bar, baz`. If you transitioned **to** `foo.bar.baz` and inspected the [[TreeChanges.to]]\n * Path, you would find a node in the array for each portion: `foo`, `bar`, and `baz`.\n *\n * ---\n *\n * @todo show visual state tree\n */\nexport interface TreeChanges {\n /** @nodoc */\n [key: string]: PathNode[];\n\n /** The path of nodes in the state tree that the transition is coming *from* */\n from: PathNode[];\n\n /** The path of nodes in the state tree that the transition is going *to* */\n to: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining.\n *\n * These nodes are neither exited, nor entered.\n * Before and after the transition is successful, these nodes are active.\n */\n retained: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining with updated \"to params\" applied.\n *\n * These nodes are neither exiteLine truncated
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"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateDeclaration, StateOrName, TargetStateDef } from './interface';\nimport { TransitionOptions } from '../transition/interface';\nimport { StateObject } from './stateObject';\nimport { isString } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { extend } from '../common';\nimport { StateRegistry } from './stateRegistry';\nimport { RawParams } from '../params';\n\n/**\n * Encapsulate the target (destination) state/params/options of a [[Transition]].\n *\n * This class is frequently used to redirect a transition to a new destination.\n *\n * See:\n *\n * - [[HookResult]]\n * - [[TransitionHookFn]]\n * - [[TransitionService.onStart]]\n *\n * To create a `TargetState`, use [[StateService.target]].\n *\n * ---\n *\n * This class wraps:\n *\n * 1) an identifier for a state\n * 2) a set of parameters\n * 3) and transition options\n * 4) the registered state object (the [[StateDeclaration]])\n *\n * Many UI-Router APIs such as [[StateService.go]] take a [[StateOrName]] argument which can\n * either be a *state object* (a [[StateDeclaration]] or [[StateObject]]) or a *state name* (a string).\n * The `TargetState` class normalizes those options.\n *\n * A `TargetState` may be valid (the state being targeted exists in the registry)\n * or invalid (the state being targeted is not registered).\n */\nexport class TargetState {\n private _definition: StateObject;\n private _params: RawParams;\n private _options: TransitionOptions;\n\n /** Returns true if the object has a state property that might be a state or state name */\n static isDef = (obj): obj is TargetStateDef => obj && obj.state && (isString(obj.state) || isString(obj.state.name));\n\n /**\n * The TargetState constructor\n *\n * Note: Do not construct a `TargetState` manually.\n * To create a `TargetState`, use the [[StateService.target]] factory method.\n *\n * @param _stateRegistry The StateRegistry to use to look up the _definition\n * @param _identifier An identifier for a state.\n * Either a fully-qualified state name, or the object used to define the state.\n * @param _params Parameters for the target state\n * @param _options Transition options.\n *\n * @internalapi\n */\n constructor(\n private _stateRegistry: StateRegistry,\n private _identifier: StateOrName,\n _params?: RawParams,\n _options?: TransitionOptions,\n ) {\n this._identifier = _identifier;\n this._params = extend({}, _params || {});\n this._options = extend({}, _options || {});\n this._definition = _stateRegistry.matcher.find(_identifier, this._options.relative);\n }\n\n /** The name of the state this object targets */\n name(): string {\n return (this._definition && this._definition.name) || <string>this._identifier;\n }\n\n /** The identifier used when creating this TargetState */\n identifier(): StateOrName {\n return this._identifier;\n }\n\n /** The target parameter values */\n params(): RawParams {\n return this._params;\n }\n\n /** The internal state object (if it was found) */\n $state(): StateObject {\n return this._definition;\n }\n\n /** The internal state declaration (if it was found) */\n state(): StateDeclaration {\n return this._definition && this._definition.self;\n }\n\n /** The target options */\n options() {\n return this._options;\n }\n\n /** True if the target state was found */\n exists(): boolean {\n return !!(this._definition && this._definition.self);\n }\n\n /** True if the object is valid */\n valid(): boolean {\n return !this.error();\n }\n\n /** If the object is invalid, returns the reason why */\n error(): string {\n const base = <any>this.options().relative;\n if (!this._definition && !!base) {\n const stateName = base.name ? base.name : base;\n return `Could not resolve '${this.name()}' from state '${stateName}'`;\n }\n if (!this._definition) return `No such state '${this.name()}'`;\n if (!this._definition.self) return `State '${this.name()}' has an invalid definition`;\n }\n\n toString() {\n return `'${this.name()}'${stringify(this.params())}`;\n }\n\n /**\n * Returns a copy of this TargetState which targets a different state.\n * The new TargetState has the same parameter values and transition options.\n *\n * @param state The new state that should be targeted\n */\n withState(state: StateOrName): TargetState {\n return new TargetState(this._stateRegistry, state, this._params, this._options);\n }\n\n /**\n * Returns a copy of this TargetState, using the specified parameter values.\n *\n * @param params the new parameter values to use\n * @param replace When false (default) the new parameter values will be merged with the current values.\n * When true the parameter values will be used instead of the current values.\n */\n withParams(params: RawParams, replace =Line truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { TransitionHookOptions, HookResult, TransitionHookPhase } from './interface';\nimport { defaults, noop, silentRejection } from '../common/common';\nimport { fnToString, maxLength } from '../common/strings';\nimport { isPromise } from '../common/predicates';\nimport { is, parse } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { Rejection } from './rejectFactory';\nimport { TargetState } from '../state/targetState';\nimport { Transition } from './transition';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\nimport { StateDeclaration } from '../state/interface';\n\nconst defaultOptions: TransitionHookOptions = {\n current: noop,\n transition: null,\n traceData: {},\n bind: null,\n};\n\nexport type GetResultHandler = (hook: TransitionHook) => ResultHandler;\nexport type GetErrorHandler = (hook: TransitionHook) => ErrorHandler;\n\nexport type ResultHandler = (result: HookResult) => Promise<HookResult>;\nexport type ErrorHandler = (error: any) => Promise<any>;\n\n/** @hidden */\nexport class TransitionHook {\n type: TransitionEventType;\n\n /**\n * These GetResultHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetResultHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static HANDLE_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) =>\n hook.handleHookResult(result);\n\n /**\n * If the result is a promise rejection, log it.\n * Otherwise, ignore the result.\n */\n static LOG_REJECTED_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) => {\n isPromise(result) && result.catch(err => hook.logError(Rejection.normalize(err)));\n return undefined;\n };\n\n /**\n * These GetErrorHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetErrorHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static LOG_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => hook.logError(error);\n\n static REJECT_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => silentRejection(error);\n\n static THROW_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => {\n throw error;\n };\n\n /**\n * Chains together an array of TransitionHooks.\n *\n * Given a list of [[TransitionHook]] objects, chains them together.\n * Each hook is invoked after the previous one completes.\n *\n * #### Example:\n * ```js\n * var hooks: TransitionHook[] = getHooks();\n * let promise: Promise<any> = TransitionHook.chain(hooks);\n *\n * promise.then(handleSuccess, handleError);\n * ```\n *\n * @param hooks the list of hooks to chain together\n * @param waitFor if provided, the chain is `.then()`'ed off this promise\n * @returns a `Promise` for sequentially invoking the hooks (in order)\n */\n static chain(hooks: TransitionHook[], waitFor?: Promise<any>): Promise<any> {\n // Chain the next hook off the previous\n const createHookChainR = (prev: Promise<any>, nextHook: TransitionHook) => prev.then(() => nextHook.invokeHook());\n return hooks.reduce(createHookChainR, waitFor || services.$q.when());\n }\n\n /**\n * Invokes all the provided TransitionHooks, in order.\n * Each hook's return value is checked.\n * If any hook returns a promise, then the rest of the hooks are chained off that promise, and the promise is returned.\n * If no hook returns a promise, then all hooks are processed synchronously.\n *\n * @param hooks the list of TransitionHooks to invoke\n * @param doneCallback a callback that is invoked after all the hooks have successfully completed\n *\n * @returns a promise for the async result, or the result of the callback\n */\n static invokeHooks<T>(hooks: TransitionHook[], doneCallback: (result?: HookResult) => T): Promise<any> | T {\n for (let idx = 0; idx < hooks.length; idx++) {\n const hookResult = hooks[idx].invokeHook();\n\n if (isPromise(hookResult)) {\n const remainingHooks = hooks.slice(idx + 1);\n\n return TransitionHook.chain(remainingHooks, hookResult).then(doneCallback);\n }\n }\n\n return doneCallback();\n }\n\n /**\n * Run all TransitionHooks, ignoring their return value.\n */\n static runAllHooks(hooks: TransitionHook[]): void {\n hooks.forEach(hook => hook.invokeHook());\n }\n\n constructor(\n private transition: Transition,\n private stateContext: StateDeclaration,\n private registeredHook: RegisteredHook,\n private options: TransitionHookOptions,\n ) {\n this.options = defaults(options, defaultOptions);\n this.type = registeredHook.eventType;\n }\n\n private isSuperseded = () => this.type.hookPhase === TransitionHookPhase.RUN && !this.options.transition.isActive();\n\n logError(err): any {\n Line truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { isString, isFunction, Glob, extend, removeFrom, tail, values, identity, mapObj } from '../common';\nimport { PathNode } from '../path/pathNode';\nimport {\n TransitionStateHookFn,\n TransitionHookFn,\n TransitionHookPhase, // has or is using\n TransitionHookScope,\n IHookRegistry,\n PathType,\n} from './interface';\n\nimport {\n HookRegOptions,\n HookMatchCriteria,\n TreeChanges,\n HookMatchCriterion,\n IMatchingNodes,\n HookFn,\n} from './interface';\nimport { StateObject } from '../state/stateObject';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionService } from './transitionService';\n\n/**\n * Determines if the given state matches the matchCriteria\n *\n * @hidden\n *\n * @param state a State Object to test against\n * @param criterion\n * - If a string, matchState uses the string as a glob-matcher against the state name\n * - If an array (of strings), matchState uses each string in the array as a glob-matchers against the state name\n * and returns a positive match if any of the globs match.\n * - If a function, matchState calls the function with the state and returns true if the function's result is truthy.\n * @returns {boolean}\n */\nexport function matchState(state: StateObject, criterion: HookMatchCriterion) {\n const toMatch = isString(criterion) ? [criterion] : criterion;\n\n function matchGlobs(_state: StateObject) {\n const globStrings = <string[]>toMatch;\n for (let i = 0; i < globStrings.length; i++) {\n const glob = new Glob(globStrings[i]);\n\n if ((glob && glob.matches(_state.name)) || (!glob && globStrings[i] === _state.name)) {\n return true;\n }\n }\n return false;\n }\n\n const matchFn = <any>(isFunction(toMatch) ? toMatch : matchGlobs);\n return !!matchFn(state);\n}\n\n/**\n * @internalapi\n * The registration data for a registered transition hook\n */\nexport class RegisteredHook {\n priority: number;\n bind: any;\n invokeCount = 0;\n invokeLimit: number;\n _deregistered = false;\n\n constructor(\n public tranSvc: TransitionService,\n public eventType: TransitionEventType,\n public callback: HookFn,\n public matchCriteria: HookMatchCriteria,\n public removeHookFromRegistry: (hook: RegisteredHook) => void,\n options: HookRegOptions = {} as any,\n ) {\n this.priority = options.priority || 0;\n this.bind = options.bind || null;\n this.invokeLimit = options.invokeLimit;\n }\n\n /**\n * Gets the matching [[PathNode]]s\n *\n * Given an array of [[PathNode]]s, and a [[HookMatchCriterion]], returns an array containing\n * the [[PathNode]]s that the criteria matches, or `null` if there were no matching nodes.\n *\n * Returning `null` is significant to distinguish between the default\n * \"match-all criterion value\" of `true` compared to a `() => true` function,\n * when the nodes is an empty array.\n *\n * This is useful to allow a transition match criteria of `entering: true`\n * to still match a transition, even when `entering === []`. Contrast that\n * with `entering: (state) => true` which only matches when a state is actually\n * being entered.\n */\n private _matchingNodes(nodes: PathNode[], criterion: HookMatchCriterion): PathNode[] {\n if (criterion === true) return nodes;\n const matching = nodes.filter(node => matchState(node.state, criterion));\n return matching.length ? matching : null;\n }\n\n /**\n * Gets the default match criteria (all `true`)\n *\n * Returns an object which has all the criteria match paths as keys and `true` as values, i.e.:\n *\n * ```js\n * {\n * to: true,\n * from: true,\n * entering: true,\n * exiting: true,\n * retained: true,\n * }\n */\n private _getDefaultMatchCriteria(): HookMatchCriteria {\n return mapObj(this.tranSvc._pluginapi._getPathTypes(), () => true);\n }\n\n /**\n * Gets matching nodes as [[IMatchingNodes]]\n *\n * Create a IMatchingNodes object from the TransitionHookTypes that is roughly equivalent to:\n *\n * ```js\n * let matches: IMatchingNodes = {\n * to: _matchingNodes([tail(treeChanges.to)], mc.to),\n * from: _matchingNodes([tail(treeChanges.from)], mc.from),\n * exiting: _matchingNodes(treeChanges.exiting, mc.exiting),\n * retained: _matchingNodes(treeChanges.retained, mc.retained),\n * entering: _matchingNodes(treeChanges.entering, mc.entering),\n * };\n * ```\n */\n private _getMatchingNodes(treeChanges: TreeChanges): IMatchingNodes {\n const criteria = extend(this._getDefaultMatchCriteria(), this.matchCriteria);\n const paths: PathType[] = values(this.tranSvc._pluginapi._getPathTypes());\n\n return paths.reduce(\n (mn: IMatchingNodes, pathtype: PathType) => {\n // STATE scope criteria matches against every node in the path.\n // TRANSITION scope criteria mLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n\nimport { extend, tail, assertPredicate, unnestR, identity } from '../common/common';\nimport { isArray } from '../common/predicates';\n\nimport {\n TransitionOptions,\n TransitionHookOptions,\n IHookRegistry,\n TreeChanges,\n IMatchingNodes,\n TransitionHookPhase,\n TransitionHookScope,\n} from './interface';\n\nimport { Transition } from './transition';\nimport { TransitionHook } from './transitionHook';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TransitionService } from './transitionService';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * This class returns applicable TransitionHooks for a specific Transition instance.\n *\n * Hooks ([[RegisteredHook]]) may be registered globally, e.g., $transitions.onEnter(...), or locally, e.g.\n * myTransition.onEnter(...). The HookBuilder finds matching RegisteredHooks (where the match criteria is\n * determined by the type of hook)\n *\n * The HookBuilder also converts RegisteredHooks objects to TransitionHook objects, which are used to run a Transition.\n *\n * The HookBuilder constructor is given the $transitions service and a Transition instance. Thus, a HookBuilder\n * instance may only be used for one specific Transition object. (side note: the _treeChanges accessor is private\n * in the Transition class, so we must also provide the Transition's _treeChanges)\n *\n */\nexport class HookBuilder {\n constructor(private transition: Transition) {}\n\n buildHooksForPhase(phase: TransitionHookPhase): TransitionHook[] {\n const $transitions = this.transition.router.transitionService;\n return $transitions._pluginapi\n ._getEvents(phase)\n .map(type => this.buildHooks(type))\n .reduce(unnestR, [])\n .filter(identity);\n }\n\n /**\n * Returns an array of newly built TransitionHook objects.\n *\n * - Finds all RegisteredHooks registered for the given `hookType` which matched the transition's [[TreeChanges]].\n * - Finds [[PathNode]] (or `PathNode[]`) to use as the TransitionHook context(s)\n * - For each of the [[PathNode]]s, creates a TransitionHook\n *\n * @param hookType the type of the hook registration function, e.g., 'onEnter', 'onFinish'.\n */\n buildHooks(hookType: TransitionEventType): TransitionHook[] {\n const transition = this.transition;\n const treeChanges = transition.treeChanges();\n\n // Find all the matching registered hooks for a given hook type\n const matchingHooks = this.getMatchingHooks(hookType, treeChanges);\n if (!matchingHooks) return [];\n\n const baseHookOptions = <TransitionHookOptions>{\n transition: transition,\n current: transition.options().current,\n };\n\n const makeTransitionHooks = (hook: RegisteredHook) => {\n // Fetch the Nodes that caused this hook to match.\n const matches: IMatchingNodes = hook.matches(treeChanges);\n // Select the PathNode[] that will be used as TransitionHook context objects\n const matchingNodes: PathNode[] = matches[hookType.criteriaMatchPath.name];\n\n // Return an array of HookTuples\n return matchingNodes.map(node => {\n const _options = extend(\n {\n bind: hook.bind,\n traceData: { hookType: hookType.name, context: node },\n },\n baseHookOptions,\n );\n\n const state = hookType.criteriaMatchPath.scope === TransitionHookScope.STATE ? node.state.self : null;\n const transitionHook = new TransitionHook(transition, state, hook, _options);\n return <HookTuple>{ hook, node, transitionHook };\n });\n };\n\n return matchingHooks\n .map(makeTransitionHooks)\n .reduce(unnestR, [])\n .sort(tupleSort(hookType.reverseSort))\n .map(tuple => tuple.transitionHook);\n }\n\n /**\n * Finds all RegisteredHooks from:\n * - The Transition object instance hook registry\n * - The TransitionService ($transitions) global hook registry\n *\n * which matched:\n * - the eventType\n * - the matchCriteria (to, from, exiting, retained, entering)\n *\n * @returns an array of matched [[RegisteredHook]]s\n */\n public getMatchingHooks(hookType: TransitionEventType, treeChanges: TreeChanges): RegisteredHook[] {\n const isCreate = hookType.hookPhase === TransitionHookPhase.CREATE;\n\n // Instance and Global hook registries\n const $transitions = this.transition.router.transitionService;\n const registries = isCreate ? [$transitions] : [this.transition, $transitions];\n\n return registries\n .map((reg: IHookRegistry) => reg.getHooks(hookType.name)) // Get named hooks from registries\n .filter(assertPredicate(isArray, `broken event named: ${hookType.name}`)) // Sanity check\n .reduce(unnestR, []) // Un-nest RegisteredHook[][] to RegisteredHook[] arraLine truncated
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"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, filter, map } from '../common/common';\nimport { isArray, isDefined } from '../common/predicates';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * An internal class which implements [[ParamTypeDefinition]].\n *\n * A [[ParamTypeDefinition]] is a plain javascript object used to register custom parameter types.\n * When a param type definition is registered, an instance of this class is created internally.\n *\n * This class has naive implementations for all the [[ParamTypeDefinition]] methods.\n *\n * Used by [[UrlMatcher]] when matching or formatting URLs, or comparing and validating parameter values.\n *\n * #### Example:\n * ```js\n * var paramTypeDef = {\n * decode: function(val) { return parseInt(val, 10); },\n * encode: function(val) { return val && val.toString(); },\n * equals: function(a, b) { return this.is(a) && a === b; },\n * is: function(val) { return angular.isNumber(val) && isFinite(val) && val % 1 === 0; },\n * pattern: /\\d+/\n * }\n *\n * var paramType = new ParamType(paramTypeDef);\n * ```\n * @internalapi\n */\nexport class ParamType implements ParamTypeDefinition {\n /** @inheritdoc */\n pattern: RegExp = /.*/;\n /** The name/id of the parameter type */\n name: string;\n /** @inheritdoc */\n raw: boolean;\n /** @inheritdoc */\n dynamic: boolean;\n /** @inheritdoc */\n inherit = true;\n\n /**\n * @param def A configuration object which contains the custom type definition. The object's\n * properties will override the default methods and/or pattern in `ParamType`'s public interface.\n * @returns a new ParamType object\n */\n constructor(def: ParamTypeDefinition) {\n extend(this, def);\n }\n\n // consider these four methods to be \"abstract methods\" that should be overridden\n /** @inheritdoc */\n is(val: any, key?: string): boolean {\n return true;\n }\n /** @inheritdoc */\n encode(val: any, key?: string): string | string[] {\n return val;\n }\n /** @inheritdoc */\n decode(val: string, key?: string): any {\n return val;\n }\n /** @inheritdoc */\n equals(a: any, b: any): boolean {\n // tslint:disable-next-line:triple-equals\n return a == b;\n }\n\n $subPattern() {\n const sub = this.pattern.toString();\n return sub.substr(1, sub.length - 2);\n }\n\n toString() {\n return `{ParamType:${this.name}}`;\n }\n\n /** Given an encoded string, or a decoded object, returns a decoded object */\n $normalize(val: any) {\n return this.is(val) ? val : this.decode(val);\n }\n\n /**\n * Wraps an existing custom ParamType as an array of ParamType, depending on 'mode'.\n * e.g.:\n * - urlmatcher pattern \"/path?{queryParam[]:int}\"\n * - url: \"/path?queryParam=1&queryParam=2\n * - $stateParams.queryParam will be [1, 2]\n * if `mode` is \"auto\", then\n * - url: \"/path?queryParam=1 will create $stateParams.queryParam: 1\n * - url: \"/path?queryParam=1&queryParam=2 will create $stateParams.queryParam: [1, 2]\n */\n $asArray(mode: boolean | 'auto', isSearch: boolean) {\n if (!mode) return this;\n if (mode === 'auto' && !isSearch) throw new Error(\"'auto' array mode is for query parameters only\");\n return new (<any>ArrayType)(this, mode);\n }\n}\n\n/**\n * Wraps up a `ParamType` object to handle array values.\n * @internalapi\n */\nfunction ArrayType(type: ParamType, mode: boolean | 'auto') {\n // Wrap non-array value as array\n function arrayWrap(val: any): any[] {\n return isArray(val) ? val : isDefined(val) ? [val] : [];\n }\n\n // Unwrap array value for \"auto\" mode. Return undefined for empty array.\n function arrayUnwrap(val: any) {\n switch (val.length) {\n case 0:\n return undefined;\n case 1:\n return mode === 'auto' ? val[0] : val;\n default:\n return val;\n }\n }\n\n // Wraps type (.is/.encode/.decode) functions to operate on each value of an array\n function arrayHandler(callback: (x: any) => any, allTruthyMode?: boolean) {\n return function handleArray(val: any) {\n if (isArray(val) && val.length === 0) return val;\n const arr = arrayWrap(val);\n const result = map(arr, callback);\n return allTruthyMode === true ? filter(result, x => !x).length === 0 : arrayUnwrap(result);\n };\n }\n\n // Wraps type (.equals) functions to operate on each value of an array\n function arrayEqualsHandler(callback: (l: any, r: any) => boolean) {\n return function handleArray(val1: any, val2: any) {\n const left = arrayWrap(val1),\n right = arrayWrap(val2);\n if (left.length !== right.length) return false;\n for (let i = 0; i < left.length; i++) {\n if (!callback(left[i], right[i])) return false;\n }\n return true;\n };\n }\n\n ['encode', 'decode', 'equals', '$normalize'].forEach(name => {\n const paramTypeFn = type[name].bind(type);\n const wrapperFn: Function = name === 'equalLine truncated
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"/**\n * @coreapi\n * @module params\n */ /** for typedoc */\nimport { extend, filter, map, allTrueR } from '../common/common';\nimport { prop } from '../common/hof';\nimport { isInjectable, isDefined, isString, isArray, isUndefined } from '../common/predicates';\nimport { RawParams, ParamDeclaration } from '../params/interface';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypes } from './paramTypes';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\n\n/** @hidden */\nconst hasOwn = Object.prototype.hasOwnProperty;\n\n/** @hidden */\nconst isShorthand = (cfg: ParamDeclaration) =>\n ['value', 'type', 'squash', 'array', 'dynamic'].filter(hasOwn.bind(cfg || {})).length === 0;\n\n/** @internalapi */\nenum DefType {\n PATH,\n SEARCH,\n CONFIG,\n}\nexport { DefType };\n\n/** @hidden */\nfunction unwrapShorthand(cfg: ParamDeclaration): ParamDeclaration {\n cfg = (isShorthand(cfg) && ({ value: cfg } as any)) || cfg;\n\n getStaticDefaultValue['__cacheable'] = true;\n function getStaticDefaultValue() {\n return cfg.value;\n }\n\n return extend(cfg, {\n $$fn: isInjectable(cfg.value) ? cfg.value : getStaticDefaultValue,\n });\n}\n\n/** @hidden */\nfunction getType(cfg: ParamDeclaration, urlType: ParamType, location: DefType, id: string, paramTypes: ParamTypes) {\n if (cfg.type && urlType && urlType.name !== 'string') throw new Error(`Param '${id}' has two type configurations.`);\n if (cfg.type && urlType && urlType.name === 'string' && paramTypes.type(cfg.type as string))\n return paramTypes.type(cfg.type as string);\n if (urlType) return urlType;\n if (!cfg.type) {\n const type =\n location === DefType.CONFIG\n ? 'any'\n : location === DefType.PATH\n ? 'path'\n : location === DefType.SEARCH\n ? 'query'\n : 'string';\n return paramTypes.type(type);\n }\n return cfg.type instanceof ParamType ? cfg.type : paramTypes.type(cfg.type as string);\n}\n\n/**\n * @internalapi\n * returns false, true, or the squash value to indicate the \"default parameter url squash policy\".\n */\nfunction getSquashPolicy(config: ParamDeclaration, isOptional: boolean, defaultPolicy: boolean | string) {\n const squash = config.squash;\n if (!isOptional || squash === false) return false;\n if (!isDefined(squash) || squash == null) return defaultPolicy;\n if (squash === true || isString(squash)) return squash;\n throw new Error(`Invalid squash policy: '${squash}'. Valid policies: false, true, or arbitrary string`);\n}\n\n/** @internalapi */\nfunction getReplace(config: ParamDeclaration, arrayMode: boolean, isOptional: boolean, squash: string | boolean) {\n const defaultPolicy = [\n { from: '', to: isOptional || arrayMode ? undefined : '' },\n { from: null, to: isOptional || arrayMode ? undefined : '' },\n ];\n\n const replace = isArray(config.replace) ? config.replace : [];\n if (isString(squash)) replace.push({ from: squash, to: undefined });\n\n const configuredKeys = map(replace, prop('from'));\n return filter(defaultPolicy, item => configuredKeys.indexOf(item.from) === -1).concat(replace);\n}\n\n/** @internalapi */\nexport class Param {\n id: string;\n type: ParamType;\n location: DefType;\n isOptional: boolean;\n dynamic: boolean;\n raw: boolean;\n squash: boolean | string;\n replace: [{ to: any; from: any }];\n inherit: boolean;\n array: boolean;\n config: any;\n /** Cache the default value if it is a static value */\n _defaultValueCache: {\n defaultValue: any;\n };\n\n static values(params: Param[], values: RawParams = {}): RawParams {\n const paramValues = {} as RawParams;\n for (const param of params) {\n paramValues[param.id] = param.value(values[param.id]);\n }\n return paramValues;\n }\n\n /**\n * Finds [[Param]] objects which have different param values\n *\n * Filters a list of [[Param]] objects to only those whose parameter values differ in two param value objects\n *\n * @param params: The list of Param objects to filter\n * @param values1: The first set of parameter values\n * @param values2: the second set of parameter values\n *\n * @returns any Param objects whose values were different between values1 and values2\n */\n static changed(params: Param[], values1: RawParams = {}, values2: RawParams = {}): Param[] {\n return params.filter(param => !param.type.equals(values1[param.id], values2[param.id]));\n }\n\n /**\n * Checks if two param value objects are equal (for a set of [[Param]] objects)\n *\n * @param params The list of [[Param]] objects to check\n * @param values1 The first set of param values\n * @param values2 The second set of param values\n *\n * @returns true if the param values in values1 and values2 are equal\n */\n static equals(params: Param[], values1 = {}, values2 = {}): boolean {\n return Param.changed(params, values1, values2).length === 0;Line truncated
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||||
"/** @module path */ /** for typedoc */\nimport { extend, applyPairs, find, allTrueR, pairs, arrayTuples } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\n\n/**\n * @internalapi\n *\n * A node in a [[TreeChanges]] path\n *\n * For a [[TreeChanges]] path, this class holds the stateful information for a single node in the path.\n * Each PathNode corresponds to a state being entered, exited, or retained.\n * The stateful information includes parameter values and resolve data.\n */\nexport class PathNode {\n /** The state being entered, exited, or retained */\n public state: StateObject;\n /** The parameters declared on the state */\n public paramSchema: Param[];\n /** The parameter values that belong to the state */\n public paramValues: { [key: string]: any };\n /** The individual (stateful) resolvable objects that belong to the state */\n public resolvables: Resolvable[];\n /** The state's declared view configuration objects */\n public views: ViewConfig[];\n\n /**\n * Returns a clone of the PathNode\n * @deprecated use instance method `node.clone()`\n */\n static clone = (node: PathNode) => node.clone();\n\n /** Creates a copy of a PathNode */\n constructor(node: PathNode);\n /** Creates a new (empty) PathNode for a State */\n constructor(state: StateObject);\n constructor(stateOrNode: any) {\n if (stateOrNode instanceof PathNode) {\n const node: PathNode = stateOrNode;\n this.state = node.state;\n this.paramSchema = node.paramSchema.slice();\n this.paramValues = extend({}, node.paramValues);\n this.resolvables = node.resolvables.slice();\n this.views = node.views && node.views.slice();\n } else {\n const state: StateObject = stateOrNode;\n this.state = state;\n this.paramSchema = state.parameters({ inherit: false });\n this.paramValues = {};\n this.resolvables = state.resolvables.map(res => res.clone());\n }\n }\n\n clone() {\n return new PathNode(this);\n }\n\n /** Sets [[paramValues]] for the node, from the values of an object hash */\n applyRawParams(params: RawParams): PathNode {\n const getParamVal = (paramDef: Param) => [paramDef.id, paramDef.value(params[paramDef.id])];\n this.paramValues = this.paramSchema.reduce((memo, pDef) => applyPairs(memo, getParamVal(pDef)), {});\n return this;\n }\n\n /** Gets a specific [[Param]] metadata that belongs to the node */\n parameter(name: string): Param {\n return find(this.paramSchema, propEq('id', name));\n }\n\n /**\n * @returns true if the state and parameter values for another PathNode are\n * equal to the state and param values for this PathNode\n */\n equals(node: PathNode, paramsFn?: GetParamsFn): boolean {\n const diff = this.diff(node, paramsFn);\n return diff && diff.length === 0;\n }\n\n /**\n * Finds Params with different parameter values on another PathNode.\n *\n * Given another node (of the same state), finds the parameter values which differ.\n * Returns the [[Param]] (schema objects) whose parameter values differ.\n *\n * Given another node for a different state, returns `false`\n *\n * @param node The node to compare to\n * @param paramsFn A function that returns which parameters should be compared.\n * @returns The [[Param]]s which differ, or null if the two nodes are for different states\n */\n diff(node: PathNode, paramsFn?: GetParamsFn): Param[] | false {\n if (this.state !== node.state) return false;\n\n const params: Param[] = paramsFn ? paramsFn(this) : this.paramSchema;\n return Param.changed(params, this.paramValues, node.paramValues);\n }\n}\n\n/** @hidden */\nexport type GetParamsFn = (pathNode: PathNode) => Param[];\n",
|
||||
"/** @module path */ /** for typedoc */\n\nimport {\n extend,\n find,\n pick,\n omit,\n tail,\n mergeR,\n values,\n unnestR,\n Predicate,\n inArray,\n arrayTuples,\n} from '../common/common';\nimport { prop, propEq, not } from '../common/hof';\n\nimport { RawParams } from '../params/interface';\nimport { TreeChanges } from '../transition/interface';\nimport { ViewConfig } from '../view/interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { GetParamsFn, PathNode } from './pathNode';\nimport { ViewService } from '../view/view';\nimport { Param } from '../params/param';\nimport { StateRegistry } from '../state';\n\n/**\n * This class contains functions which convert TargetStates, Nodes and paths from one type to another.\n */\nexport class PathUtils {\n /** Given a PathNode[], create an TargetState */\n static makeTargetState(registry: StateRegistry, path: PathNode[]): TargetState {\n const state = tail(path).state;\n return new TargetState(registry, state, path.map(prop('paramValues')).reduce(mergeR, {}), {});\n }\n\n static buildPath(targetState: TargetState) {\n const toParams = targetState.params();\n return targetState.$state().path.map(state => new PathNode(state).applyRawParams(toParams));\n }\n\n /** Given a fromPath: PathNode[] and a TargetState, builds a toPath: PathNode[] */\n static buildToPath(fromPath: PathNode[], targetState: TargetState): PathNode[] {\n const toPath: PathNode[] = PathUtils.buildPath(targetState);\n if (targetState.options().inherit) {\n return PathUtils.inheritParams(fromPath, toPath, Object.keys(targetState.params()));\n }\n return toPath;\n }\n\n /**\n * Creates ViewConfig objects and adds to nodes.\n *\n * On each [[PathNode]], creates ViewConfig objects from the views: property of the node's state\n */\n static applyViewConfigs($view: ViewService, path: PathNode[], states: StateObject[]) {\n // Only apply the viewConfigs to the nodes for the given states\n path.filter(node => inArray(states, node.state)).forEach(node => {\n const viewDecls: _ViewDeclaration[] = values(node.state.views || {});\n const subPath = PathUtils.subPath(path, n => n === node);\n const viewConfigs: ViewConfig[][] = viewDecls.map(view => $view.createViewConfig(subPath, view));\n node.views = viewConfigs.reduce(unnestR, []);\n });\n }\n\n /**\n * Given a fromPath and a toPath, returns a new to path which inherits parameters from the fromPath\n *\n * For a parameter in a node to be inherited from the from path:\n * - The toPath's node must have a matching node in the fromPath (by state).\n * - The parameter name must not be found in the toKeys parameter array.\n *\n * Note: the keys provided in toKeys are intended to be those param keys explicitly specified by some\n * caller, for instance, $state.transitionTo(..., toParams). If a key was found in toParams,\n * it is not inherited from the fromPath.\n */\n static inheritParams(fromPath: PathNode[], toPath: PathNode[], toKeys: string[] = []): PathNode[] {\n function nodeParamVals(path: PathNode[], state: StateObject): RawParams {\n const node: PathNode = find(path, propEq('state', state));\n return extend({}, node && node.paramValues);\n }\n\n const noInherit = fromPath\n .map(node => node.paramSchema)\n .reduce(unnestR, [])\n .filter(param => !param.inherit)\n .map(prop('id'));\n\n /**\n * Given an [[PathNode]] \"toNode\", return a new [[PathNode]] with param values inherited from the\n * matching node in fromPath. Only inherit keys that aren't found in \"toKeys\" from the node in \"fromPath\"\"\n */\n function makeInheritedParamsNode(toNode: PathNode): PathNode {\n // All param values for the node (may include default key/vals, when key was not found in toParams)\n let toParamVals = extend({}, toNode && toNode.paramValues);\n // limited to only those keys found in toParams\n const incomingParamVals = pick(toParamVals, toKeys);\n toParamVals = omit(toParamVals, toKeys);\n const fromParamVals = omit(nodeParamVals(fromPath, toNode.state) || {}, noInherit);\n // extend toParamVals with any fromParamVals, then override any of those those with incomingParamVals\n const ownParamVals: RawParams = extend(toParamVals, fromParamVals, incomingParamVals);\n return new PathNode(toNode.state).applyRawParams(ownParamVals);\n }\n\n // The param keys specified by the incoming toParams\n return <PathNode[]>toPath.map(makeInheritedParamsNode);\n }\n\n static nonDynamicParams = (node: PathNode): Param[] =>\n node.state.parameters({ inherit: false }).filter(param => !param.dynamic);\n\n /**\n * Computes the tree changes (entering, exiting) between a fromPath and toPath.\n */\n static treeChanges(fromPath: PathNLine truncated
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||||
"/**\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { extend, equals, inArray, identity } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { trace } from '../common/trace';\nimport { ResolvePolicy, ResolvableLiteral, resolvePolicies } from './interface';\n\nimport { ResolveContext } from './resolveContext';\nimport { stringify } from '../common/strings';\nimport { isFunction, isObject } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { isNullOrUndefined } from '../common/predicates';\n\n// TODO: explicitly make this user configurable\nexport let defaultResolvePolicy: ResolvePolicy = {\n when: 'LAZY',\n async: 'WAIT',\n};\n\n/**\n * The basic building block for the resolve system.\n *\n * Resolvables encapsulate a state's resolve's resolveFn, the resolveFn's declared dependencies, the wrapped (.promise),\n * and the unwrapped-when-complete (.data) result of the resolveFn.\n *\n * Resolvable.get() either retrieves the Resolvable's existing promise, or else invokes resolve() (which invokes the\n * resolveFn) and returns the resulting promise.\n *\n * Resolvable.get() and Resolvable.resolve() both execute within a context path, which is passed as the first\n * parameter to those fns.\n */\nexport class Resolvable implements ResolvableLiteral {\n token: any;\n policy: ResolvePolicy;\n resolveFn: Function;\n deps: any[];\n\n data: any;\n resolved = false;\n promise: Promise<any> = undefined;\n\n static fromData = (token: any, data: any) => new Resolvable(token, () => data, null, null, data);\n\n /** This constructor creates a Resolvable copy */\n constructor(resolvable: Resolvable);\n\n /** This constructor creates a new Resolvable from the plain old [[ResolvableLiteral]] javascript object */\n constructor(resolvable: ResolvableLiteral);\n\n /**\n * This constructor creates a new `Resolvable`\n *\n * #### Example:\n * ```js\n * var resolvable1 = new Resolvable('mytoken', http => http.get('foo.json').toPromise(), [Http]);\n *\n * var resolvable2 = new Resolvable(UserService, dep => new UserService(dep.data), [SomeDependency]);\n *\n * var resolvable1Clone = new Resolvable(resolvable1);\n * ```\n *\n * @param token The new resolvable's injection token, such as `\"userList\"` (a string) or `UserService` (a class).\n * When this token is used during injection, the resolved value will be injected.\n * @param resolveFn The function that returns the resolved value, or a promise for the resolved value\n * @param deps An array of dependencies, which will be injected into the `resolveFn`\n * @param policy the [[ResolvePolicy]] defines when and how the Resolvable is processed\n * @param data Pre-resolved data. If the resolve value is already known, it may be provided here.\n */\n constructor(token: any, resolveFn: Function, deps?: any[], policy?: ResolvePolicy, data?: any);\n constructor(arg1: any, resolveFn?: Function, deps?: any[], policy?: ResolvePolicy, data?: any) {\n if (arg1 instanceof Resolvable) {\n extend(this, arg1);\n } else if (isFunction(resolveFn)) {\n if (isNullOrUndefined(arg1)) throw new Error('new Resolvable(): token argument is required');\n if (!isFunction(resolveFn)) throw new Error('new Resolvable(): resolveFn argument must be a function');\n\n this.token = arg1;\n this.policy = policy;\n this.resolveFn = resolveFn;\n this.deps = deps || [];\n\n this.data = data;\n this.resolved = data !== undefined;\n this.promise = this.resolved ? services.$q.when(this.data) : undefined;\n } else if (isObject(arg1) && arg1.token && (arg1.hasOwnProperty('resolveFn') || arg1.hasOwnProperty('data'))) {\n const literal = <ResolvableLiteral>arg1;\n return new Resolvable(literal.token, literal.resolveFn, literal.deps, literal.policy, literal.data);\n }\n }\n\n getPolicy(state: StateObject): ResolvePolicy {\n const thisPolicy = this.policy || {};\n const statePolicy = (state && state.resolvePolicy) || {};\n return {\n when: thisPolicy.when || statePolicy.when || defaultResolvePolicy.when,\n async: thisPolicy.async || statePolicy.async || defaultResolvePolicy.async,\n };\n }\n\n /**\n * Asynchronously resolve this Resolvable's data\n *\n * Given a ResolveContext that this Resolvable is found in:\n * Wait for this Resolvable's dependencies, then invoke this Resolvable's function\n * and update the Resolvable's state\n */\n resolve(resolveContext: ResolveContext, trans?: Transition) {\n const $q = services.$q;\n\n // Gets all dependencies from ResolveContext and wait for them to be resolved\n const getResolvableDependencies = () =>\n $q.all(resolveContext.getDependencies(this).map(resolvable => resolvable.get(resolveContext, trans))) as PrLine truncated
|
||||
"/**\n * # The Resolve subsystem\n *\n * This subsystem is an asynchronous, hierarchical Dependency Injection system.\n *\n * Typically, resolve is configured on a state using a [[StateDeclaration.resolve]] declaration.\n *\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { Resolvable } from './resolvable';\n\n/**\n * An interface which is similar to an Angular 2 `Provider`\n */\nexport interface ProviderLike {\n provide: any;\n useClass?: any;\n useFactory?: Function;\n useValue?: any;\n useExisting?: any;\n deps?: any[];\n}\n\n/**\n * A plain object used to describe a [[Resolvable]]\n *\n * These objects may be used in the [[StateDeclaration.resolve]] array to declare\n * async data that the state or substates require.\n *\n * #### Example:\n * ```js\n *\n * var state = {\n * name: 'main',\n * resolve: [\n * { token: 'myData', deps: [MyDataApi], resolveFn: (myDataApi) => myDataApi.getData() },\n * ],\n * }\n * ```\n */\nexport interface ResolvableLiteral {\n /**\n * A Dependency Injection token\n *\n * This Resolvable's DI token.\n * The Resolvable will be injectable elsewhere using the token.\n */\n token: any;\n\n /**\n * A function which fetches the Resolvable's data\n *\n * A function which returns one of:\n *\n * - The resolved value (synchronously)\n * - A promise for the resolved value\n * - An Observable of the resolved value(s)\n *\n * This function will be provided the dependencies listed in [[deps]] as its arguments.\n * The resolve system will asynchronously fetch the dependencies before invoking this function.\n */\n resolveFn: Function;\n\n /**\n * Defines the Resolve Policy\n *\n * A policy that defines when to invoke the resolve,\n * and whether to wait for async and unwrap the data\n */\n policy?: ResolvePolicy;\n\n /**\n * The Dependency Injection tokens\n *\n * This is an array of Dependency Injection tokens for the dependencies of the [[resolveFn]].\n *\n * The DI tokens are references to other `Resolvables`, or to other\n * services from the native DI system.\n */\n deps?: any[];\n\n /** Pre-resolved data. */\n data?: any;\n}\n\n/**\n * Defines how a resolve is processed during a transition\n *\n * This object is the [[StateDeclaration.resolvePolicy]] property.\n *\n * #### Example:\n * ```js\n * // Fetched when the resolve's state is being entered.\n * // Wait for the promise to resolve.\n * var policy1 = { when: \"LAZY\", async: \"WAIT\" }\n *\n * // Fetched when the Transition is starting.\n * // Do not wait for the returned promise to resolve.\n * // Inject the raw promise/value\n * var policy2 = { when: \"EAGER\", async: \"NOWAIT\" }\n * ```\n *\n * The policy for a given Resolvable is merged from three sources (highest priority first):\n *\n * - 1) Individual resolve definition\n * - 2) State definition\n * - 3) Global default\n *\n * #### Example:\n * ```js\n * // Wait for an Observable to emit one item.\n * // Since `wait` is not specified, it uses the `wait`\n * // policy defined on the state, or the global default\n * // if no `wait` policy is defined on the state\n * var myResolvablePolicy = { async: \"RXWAIT\" }\n * ```\n */\nexport interface ResolvePolicy {\n /**\n * Defines when a Resolvable is resolved (fetched) during a transition\n *\n * - `LAZY` (default)\n * - Resolved as the resolve's state is being entered\n * - `EAGER`\n * - Resolved as the transition is starting\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched when each state is entered.\n * All of `main` resolves are processed before fetching `main.home` resolves.\n * ```js\n * var state = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n *\n * var state = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n * ```\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched at the same time when the transition starts.\n * This happens earlier in the lifecycle than when states are entered.\n * All of the `main` and `main.home` resolves are fetched as soon as possible.\n * ```js\n * var mainState = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n *\n * var homeState = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n * ```\n */\n when?: PolicyWhen;\n\n /**\n * Determines the unwrapping behavior of asynchronous resolve values.\n *\n * - `WAIT` (default)\n * - If a promise is returned from the resolveFn, wait for the promise before proceeding\n * - The unwrapped value from the promise\n * - `NOWAIT`\n * - If a promise is returned from the resolve, do not wait for thLine truncated
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"/** @module resolve */\n/** for typedoc */\nimport { find, tail, uniqR, unnestR, inArray } from '../common/common';\nimport { propEq, not } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services, $InjectorLike } from '../common/coreservices';\nimport { resolvePolicies, PolicyWhen, ResolvePolicy } from './interface';\nimport { PathNode } from '../path/pathNode';\nimport { Resolvable } from './resolvable';\nimport { StateObject } from '../state/stateObject';\nimport { PathUtils } from '../path/pathUtils';\nimport { stringify } from '../common/strings';\nimport { Transition } from '../transition/transition';\nimport { UIInjector } from '../interface';\nimport { isUndefined } from '../common';\n\nconst whens = resolvePolicies.when;\nconst ALL_WHENS = [whens.EAGER, whens.LAZY];\nconst EAGER_WHENS = [whens.EAGER];\n\n// tslint:disable-next-line:no-inferrable-types\nexport const NATIVE_INJECTOR_TOKEN: string = 'Native Injector';\n\n/**\n * Encapsulates Dependency Injection for a path of nodes\n *\n * UI-Router states are organized as a tree.\n * A nested state has a path of ancestors to the root of the tree.\n * When a state is being activated, each element in the path is wrapped as a [[PathNode]].\n * A `PathNode` is a stateful object that holds things like parameters and resolvables for the state being activated.\n *\n * The ResolveContext closes over the [[PathNode]]s, and provides DI for the last node in the path.\n */\nexport class ResolveContext {\n _injector: UIInjector;\n\n constructor(private _path: PathNode[]) {}\n\n /** Gets all the tokens found in the resolve context, de-duplicated */\n getTokens(): any[] {\n return this._path.reduce((acc, node) => acc.concat(node.resolvables.map(r => r.token)), []).reduce(uniqR, []);\n }\n\n /**\n * Gets the Resolvable that matches the token\n *\n * Gets the last Resolvable that matches the token in this context, or undefined.\n * Throws an error if it doesn't exist in the ResolveContext\n */\n getResolvable(token: any): Resolvable {\n const matching = this._path\n .map(node => node.resolvables)\n .reduce(unnestR, [])\n .filter((r: Resolvable) => r.token === token);\n return tail(matching);\n }\n\n /** Returns the [[ResolvePolicy]] for the given [[Resolvable]] */\n getPolicy(resolvable: Resolvable): ResolvePolicy {\n const node = this.findNode(resolvable);\n return resolvable.getPolicy(node.state);\n }\n\n /**\n * Returns a ResolveContext that includes a portion of this one\n *\n * Given a state, this method creates a new ResolveContext from this one.\n * The new context starts at the first node (root) and stops at the node for the `state` parameter.\n *\n * #### Why\n *\n * When a transition is created, the nodes in the \"To Path\" are injected from a ResolveContext.\n * A ResolveContext closes over a path of [[PathNode]]s and processes the resolvables.\n * The \"To State\" can inject values from its own resolvables, as well as those from all its ancestor state's (node's).\n * This method is used to create a narrower context when injecting ancestor nodes.\n *\n * @example\n * `let ABCD = new ResolveContext([A, B, C, D]);`\n *\n * Given a path `[A, B, C, D]`, where `A`, `B`, `C` and `D` are nodes for states `a`, `b`, `c`, `d`:\n * When injecting `D`, `D` should have access to all resolvables from `A`, `B`, `C`, `D`.\n * However, `B` should only be able to access resolvables from `A`, `B`.\n *\n * When resolving for the `B` node, first take the full \"To Path\" Context `[A,B,C,D]` and limit to the subpath `[A,B]`.\n * `let AB = ABCD.subcontext(a)`\n */\n subContext(state: StateObject): ResolveContext {\n return new ResolveContext(PathUtils.subPath(this._path, node => node.state === state));\n }\n\n /**\n * Adds Resolvables to the node that matches the state\n *\n * This adds a [[Resolvable]] (generally one created on the fly; not declared on a [[StateDeclaration.resolve]] block).\n * The resolvable is added to the node matching the `state` parameter.\n *\n * These new resolvables are not automatically fetched.\n * The calling code should either fetch them, fetch something that depends on them,\n * or rely on [[resolvePath]] being called when some state is being entered.\n *\n * Note: each resolvable's [[ResolvePolicy]] is merged with the state's policy, and the global default.\n *\n * @param newResolvables the new Resolvables\n * @param state Used to find the node to put the resolvable on\n */\n addResolvables(newResolvables: Resolvable[], state: StateObject) {\n const node = <PathNode>find(this._path, propEq('state', state));\n const keys = newResolvables.map(r => r.token);\n node.resolvables = node.resolvables.filter(r => keys.indexOf(r.token) === -1).concat(newResolvables);\n }\n\n /**\n * Returns a promise for an array of resolved path Element promises\n *\n * @param when\n * @param tLine truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { stringify } from '../common/strings';\nimport { map, find, extend, mergeR, tail, omit, arrayTuples, unnestR, identity, anyTrueR } from '../common/common';\nimport { isObject, isUndefined } from '../common/predicates';\nimport { prop, propEq, val, not, is } from '../common/hof';\nimport { StateDeclaration, StateOrName } from '../state/interface';\nimport {\n TransitionOptions,\n TreeChanges,\n IHookRegistry,\n TransitionHookPhase,\n RegisteredHooks,\n HookRegOptions,\n HookMatchCriteria,\n TransitionStateHookFn,\n TransitionHookFn,\n} from './interface'; // has or is using\nimport { TransitionHook } from './transitionHook';\nimport { matchState, makeEvent, RegisteredHook } from './hookRegistry';\nimport { HookBuilder } from './hookBuilder';\nimport { PathNode } from '../path/pathNode';\nimport { PathUtils } from '../path/pathUtils';\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { RawParams } from '../params/interface';\nimport { ResolvableLiteral } from '../resolve/interface';\nimport { Rejection } from './rejectFactory';\n\n/** @hidden */\nconst stateSelf: (_state: StateObject) => StateDeclaration = prop('self');\n\n/**\n * Represents a transition between two states.\n *\n * When navigating to a state, we are transitioning **from** the current state **to** the new state.\n *\n * This object contains all contextual information about the to/from states, parameters, resolves.\n * It has information about all states being entered and exited as a result of the transition.\n */\nexport class Transition implements IHookRegistry {\n /** @hidden */\n static diToken = Transition;\n\n /**\n * A unique identifier for the transition.\n *\n * This is an auto incrementing integer, starting from `0`.\n */\n $id: number;\n\n /**\n * A reference to the [[UIRouter]] instance\n *\n * This reference can be used to access the router services, such as the [[StateService]]\n */\n router: UIRouter;\n\n /** @hidden */\n private _deferred = services.$q.defer();\n /**\n * This promise is resolved or rejected based on the outcome of the Transition.\n *\n * When the transition is successful, the promise is resolved\n * When the transition is unsuccessful, the promise is rejected with the [[Rejection]] or javascript error\n */\n promise: Promise<any> = this._deferred.promise;\n /**\n * A boolean which indicates if the transition was successful\n *\n * After a successful transition, this value is set to true.\n * After an unsuccessful transition, this value is set to false.\n *\n * The value will be undefined if the transition is not complete\n */\n success: boolean;\n /** @hidden */\n _aborted: boolean;\n /** @hidden */\n private _error: Rejection;\n\n /** @hidden Holds the hook registration functions such as those passed to Transition.onStart() */\n _registeredHooks: RegisteredHooks = {};\n\n /** @hidden */\n private _options: TransitionOptions;\n /** @hidden */\n private _treeChanges: TreeChanges;\n /** @hidden */\n private _targetState: TargetState;\n /** @hidden */\n private _hookBuilder = new HookBuilder(this);\n\n /** @hidden */\n onBefore(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onStart(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onExit(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onRetain(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onEnter(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onFinish(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onSuccess(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n /** @inheritdoc */\n onError(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function {\n return;\n }\n\n /** @hidden\n * Creates the transition-level hook registration functions\n * (which can then be used to register hooks)\n */\n private createTransitionHookRLine truncated
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"/**\n * Functions that manipulate strings\n *\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_strings\n */ /** */\n\nimport { isString, isArray, isDefined, isNull, isPromise, isInjectable, isObject } from './predicates';\nimport { Rejection } from '../transition/rejectFactory';\nimport { IInjectable, identity, Obj, tail, pushR } from './common';\nimport { pattern, is, not, val, invoke } from './hof';\nimport { Transition } from '../transition/transition';\nimport { Resolvable } from '../resolve/resolvable';\n\n/**\n * Returns a string shortened to a maximum length\n *\n * If the string is already less than the `max` length, return the string.\n * Else return the string, shortened to `max - 3` and append three dots (\"...\").\n *\n * @param max the maximum length of the string to return\n * @param str the input string\n */\nexport function maxLength(max: number, str: string) {\n if (str.length <= max) return str;\n return str.substr(0, max - 3) + '...';\n}\n\n/**\n * Returns a string, with spaces added to the end, up to a desired str length\n *\n * If the string is already longer than the desired length, return the string.\n * Else returns the string, with extra spaces on the end, such that it reaches `length` characters.\n *\n * @param length the desired length of the string to return\n * @param str the input string\n */\nexport function padString(length: number, str: string) {\n while (str.length < length) str += ' ';\n return str;\n}\n\nexport function kebobString(camelCase: string) {\n return camelCase\n .replace(/^([A-Z])/, $1 => $1.toLowerCase()) // replace first char\n .replace(/([A-Z])/g, $1 => '-' + $1.toLowerCase()); // replace rest\n}\n\nfunction _toJson(obj: Obj) {\n return JSON.stringify(obj);\n}\n\nfunction _fromJson(json: string) {\n return isString(json) ? JSON.parse(json) : json;\n}\n\nfunction promiseToString(p: Promise<any>) {\n return `Promise(${JSON.stringify(p)})`;\n}\n\nexport function functionToString(fn: Function) {\n const fnStr = fnToString(fn);\n const namedFunctionMatch = fnStr.match(/^(function [^ ]+\\([^)]*\\))/);\n const toStr = namedFunctionMatch ? namedFunctionMatch[1] : fnStr;\n\n const fnName = fn['name'] || '';\n if (fnName && toStr.match(/function \\(/)) {\n return 'function ' + fnName + toStr.substr(9);\n }\n return toStr;\n}\n\nexport function fnToString(fn: IInjectable) {\n const _fn = isArray(fn) ? fn.slice(-1)[0] : fn;\n return (_fn && _fn.toString()) || 'undefined';\n}\n\nlet stringifyPatternFn: (val: any) => string = null;\nconst stringifyPattern = function(value: any) {\n const isRejection = Rejection.isRejectionPromise;\n\n stringifyPatternFn =\n <any>stringifyPatternFn ||\n pattern([\n [not(isDefined), val('undefined')],\n [isNull, val('null')],\n [isPromise, val('[Promise]')],\n [isRejection, (x: any) => x._transitionRejection.toString()],\n [is(Rejection), invoke('toString')],\n [is(Transition), invoke('toString')],\n [is(Resolvable), invoke('toString')],\n [isInjectable, functionToString],\n [val(true), identity],\n ]);\n\n return stringifyPatternFn(value);\n};\n\nexport function stringify(o: any) {\n const seen: any[] = [];\n\n function format(value: any) {\n if (isObject(value)) {\n if (seen.indexOf(value) !== -1) return '[circular ref]';\n seen.push(value);\n }\n return stringifyPattern(value);\n }\n\n return JSON.stringify(o, (key, value) => format(value)).replace(/\\\\\"/g, '\"');\n}\n\n/** Returns a function that splits a string on a character or substring */\nexport const beforeAfterSubstr = (char: string) => (str: string): string[] => {\n if (!str) return ['', ''];\n const idx = str.indexOf(char);\n if (idx === -1) return [str, ''];\n return [str.substr(0, idx), str.substr(idx + 1)];\n};\n\nexport const hostRegex = new RegExp('^(?:[a-z]+:)?//[^/]+/');\nexport const stripLastPathElement = (str: string) => str.replace(/\\/[^/]*$/, '');\nexport const splitHash = beforeAfterSubstr('#');\nexport const splitQuery = beforeAfterSubstr('?');\nexport const splitEqual = beforeAfterSubstr('=');\nexport const trimHashVal = (str: string) => (str ? str.replace(/^#/, '') : '');\n\n/**\n * Splits on a delimiter, but returns the delimiters in the array\n *\n * #### Example:\n * ```js\n * var splitOnSlashes = splitOnDelim('/');\n * splitOnSlashes(\"/foo\"); // [\"/\", \"foo\"]\n * splitOnSlashes(\"/foo/\"); // [\"/\", \"foo\", \"/\"]\n * ```\n */\nexport function splitOnDelim(delim: string) {\n const re = new RegExp('(' + delim + ')', 'g');\n return (str: string) => str.split(re).filter(identity);\n}\n\n/**\n * Reduce fn that joins neighboring strings\n *\n * Given an array of strings, returns a new array\n * where all neighboring strings have been joined.\n *\n * #### Example:\n * ```js\n * let arr = [\"foo\", \"bar\", 1, \"baz\", \"\", \"qux\" ];\n * arr.reduce(joinNeighborsR, []) // [\"foobLine truncated
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"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { fromJson, toJson, identity, equals, inherit, map, extend, pick } from '../common/common';\nimport { isDefined, isNullOrUndefined } from '../common/predicates';\nimport { is } from '../common/hof';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * A registry for parameter types.\n *\n * This registry manages the built-in (and custom) parameter types.\n *\n * The built-in parameter types are:\n *\n * - [[string]]\n * - [[path]]\n * - [[query]]\n * - [[hash]]\n * - [[int]]\n * - [[bool]]\n * - [[date]]\n * - [[json]]\n * - [[any]]\n */\nexport class ParamTypes {\n /**\n * Built-in parameter type: `string`\n *\n * This parameter type coerces values to strings.\n * It matches anything (`new RegExp(\".*\")`) in the URL\n */\n static string: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `path`\n *\n * This parameter type is the default type for path parameters.\n * A path parameter is any parameter declared in the path portion of a url\n *\n * - `/foo/:param1/:param2`: two path parameters\n *\n * This parameter type behaves exactly like the [[string]] type with one exception.\n * When matching parameter values in the URL, the `path` type does not match forward slashes `/`.\n *\n * #### Angular 1 note:\n * In ng1, this type is overridden with one that pre-encodes slashes as `~2F` instead of `%2F`.\n * For more details about this angular 1 behavior, see: https://github.com/angular-ui/ui-router/issues/2598\n */\n static path: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `query`\n *\n * This parameter type is the default type for query/search parameters.\n * It behaves the same as the [[string]] parameter type.\n *\n * A query parameter is any parameter declared in the query/search portion of a url\n *\n * - `/bar?param2`: a query parameter\n */\n static query: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `hash`\n *\n * This parameter type is used for the `#` parameter (the hash)\n * It behaves the same as the [[string]] parameter type.\n * @coreapi\n */\n static hash: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `int`\n *\n * This parameter type serializes javascript integers (`number`s which represent an integer) to the URL.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'user',\n * url: '/user/{id:int}'\n * });\n * ```\n * ```js\n * $state.go('user', { id: 1298547 });\n * ```\n *\n * The URL will serialize to: `/user/1298547`.\n *\n * When the parameter value is read, it will be the `number` `1298547`, not the string `\"1298547\"`.\n */\n static int: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `bool`\n *\n * This parameter type serializes `true`/`false` as `1`/`0`\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'inbox',\n * url: '/inbox?{unread:bool}'\n * });\n * ```\n * ```js\n * $state.go('inbox', { unread: true });\n * ```\n *\n * The URL will serialize to: `/inbox?unread=1`.\n *\n * Conversely, if the url is `/inbox?unread=0`, the value of the `unread` parameter will be a `false`.\n */\n static bool: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `date`\n *\n * This parameter type can be used to serialize Javascript dates as parameter values.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'search',\n * url: '/search?{start:date}'\n * });\n * ```\n * ```js\n * $state.go('search', { start: new Date(2000, 0, 1) });\n * ```\n *\n * The URL will serialize to: `/search?start=2000-01-01`.\n *\n * Conversely, if the url is `/search?start=2016-12-25`, the value of the `start` parameter will be a `Date` object where:\n *\n * - `date.getFullYear() === 2016`\n * - `date.getMonth() === 11` (month is 0-based)\n * - `date.getDate() === 25`\n */\n static date: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `json`\n *\n * This parameter type can be used to serialize javascript objects into the URL using JSON serialization.\n *\n * #### Example:\n * This example serializes an plain javascript object to the URL\n * ```js\n * .state({\n * name: 'map',\n * url: '/map/{coords:json}'\n * });\n * ```\n * ```js\n * $state.go('map', { coords: { x: 10399.2, y: 49071 });\n * ```\n *\n * The URL will serialize to: `/map/%7B%22x%22%3A10399.2%2C%22y%22%3A49071%7D`\n */\n static json: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `any`\n *\n * This parameter type is used by default for url-less parameters (parameters that do not appear in the URL).\n * This type does not encode or decode.\n * It is compared using a deep `equals` comparison.\n *\n * #### Example:\n * This example definLine truncated
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||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, ancestors, Obj } from '../common/common';\nimport { StateObject } from '../state/stateObject';\n\n/** @internalapi */\nexport class StateParams {\n [key: string]: any;\n\n constructor(params: Obj = {}) {\n extend(this, params);\n }\n\n /**\n * Merges a set of parameters with all parameters inherited between the common parents of the\n * current state and a given destination state.\n *\n * @param {Object} newParams The set of parameters which will be composited with inherited params.\n * @param {Object} $current Internal definition of object representing the current state.\n * @param {Object} $to Internal definition of object representing state to transition to.\n */\n $inherit(newParams: Obj, $current: StateObject, $to: StateObject) {\n let parentParams: string[];\n const parents = ancestors($current, $to),\n inherited: Obj = {},\n inheritList: string[] = [];\n\n for (const i in parents) {\n if (!parents[i] || !parents[i].params) continue;\n parentParams = Object.keys(parents[i].params);\n if (!parentParams.length) continue;\n\n for (const j in parentParams) {\n if (inheritList.indexOf(parentParams[j]) >= 0) continue;\n inheritList.push(parentParams[j]);\n inherited[parentParams[j]] = this[parentParams[j]];\n }\n }\n return extend({}, inherited, newParams);\n }\n}\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { Obj, omit, noop, extend, inherit, values, applyPairs, tail, mapObj, identity } from '../common/common';\nimport { isDefined, isFunction, isString, isArray } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { prop, pattern, is, pipe, val } from '../common/hof';\nimport { StateDeclaration } from './interface';\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { Param } from '../params/param';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { services } from '../common/coreservices';\nimport { ResolvePolicy } from '../resolve/interface';\nimport { ParamFactory } from '../url/interface';\n\nconst parseUrl = (url: string): any => {\n if (!isString(url)) return false;\n const root = url.charAt(0) === '^';\n return { val: root ? url.substring(1) : url, root };\n};\n\nexport type BuilderFunction = (state: StateObject, parent?: BuilderFunction) => any;\n\ninterface Builders {\n [key: string]: BuilderFunction[];\n\n name: BuilderFunction[];\n parent: BuilderFunction[];\n data: BuilderFunction[];\n url: BuilderFunction[];\n navigable: BuilderFunction[];\n params: BuilderFunction[];\n views: BuilderFunction[];\n path: BuilderFunction[];\n includes: BuilderFunction[];\n resolvables: BuilderFunction[];\n}\n\nfunction nameBuilder(state: StateObject) {\n return state.name;\n}\n\nfunction selfBuilder(state: StateObject) {\n state.self.$$state = () => state;\n return state.self;\n}\n\nfunction dataBuilder(state: StateObject) {\n if (state.parent && state.parent.data) {\n state.data = state.self.data = inherit(state.parent.data, state.data);\n }\n return state.data;\n}\n\nconst getUrlBuilder = ($urlMatcherFactoryProvider: UrlMatcherFactory, root: () => StateObject) =>\n function urlBuilder(state: StateObject) {\n const stateDec: StateDeclaration = <any>state;\n\n // For future states, i.e., states whose name ends with `.**`,\n // match anything that starts with the url prefix\n if (stateDec && stateDec.url && stateDec.name && stateDec.name.match(/\\.\\*\\*$/)) {\n stateDec.url += '{remainder:any}'; // match any path (.*)\n }\n\n const parsed = parseUrl(stateDec.url),\n parent = state.parent;\n const url = !parsed\n ? stateDec.url\n : $urlMatcherFactoryProvider.compile(parsed.val, {\n params: state.params || {},\n paramMap: function(paramConfig: any, isSearch: boolean) {\n if (stateDec.reloadOnSearch === false && isSearch)\n paramConfig = extend(paramConfig || {}, { dynamic: true });\n return paramConfig;\n },\n });\n\n if (!url) return null;\n if (!$urlMatcherFactoryProvider.isMatcher(url)) throw new Error(`Invalid url '${url}' in state '${state}'`);\n return parsed && parsed.root ? url : ((parent && parent.navigable) || root()).url.append(<UrlMatcher>url);\n };\n\nconst getNavigableBuilder = (isRoot: (state: StateObject) => boolean) =>\n function navigableBuilder(state: StateObject) {\n return !isRoot(state) && state.url ? state : state.parent ? state.parent.navigable : null;\n };\n\nconst getParamsBuilder = (paramFactory: ParamFactory) =>\n function paramsBuilder(state: StateObject): { [key: string]: Param } {\n const makeConfigParam = (config: any, id: string) => paramFactory.fromConfig(id, null, config);\n const urlParams: Param[] = (state.url && state.url.parameters({ inherit: false })) || [];\n const nonUrlParams: Param[] = values(mapObj(omit(state.params || {}, urlParams.map(prop('id'))), makeConfigParam));\n return urlParams\n .concat(nonUrlParams)\n .map(p => [p.id, p])\n .reduce(applyPairs, {});\n };\n\nfunction pathBuilder(state: StateObject) {\n return state.parent ? state.parent.path.concat(state) : /*root*/ [state];\n}\n\nfunction includesBuilder(state: StateObject) {\n const includes = state.parent ? extend({}, state.parent.includes) : {};\n includes[state.name] = true;\n return includes;\n}\n\n/**\n * This is a [[StateBuilder.builder]] function for the `resolve:` block on a [[StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * validates the `resolve` property and converts it to a [[Resolvable]] array.\n *\n * resolve: input value can be:\n *\n * {\n * // analyzed but not injected\n * myFooResolve: function() { return \"myFooData\"; },\n *\n * // function.toString() parsed, \"DependencyName\" dep as string (not min-safe)\n * myBarResolve: function(DependencyName) { return DependencyName.fetchSomethingAsPromise() },\n *\n * // Array split; \"DependencyName\" dep as string\n * myBazResolve: [ \"DependencyName\", function(dep) { return dep.fetchSomethingAsPromise() },\n *\n *Line truncated
|
||||
"/** @module state */ /** for typedoc */\nimport { isString } from '../common/predicates';\nimport { StateOrName } from './interface';\nimport { StateObject } from './stateObject';\nimport { values } from '../common/common';\n\nexport class StateMatcher {\n constructor(private _states: { [key: string]: StateObject }) {}\n\n isRelative(stateName: string) {\n stateName = stateName || '';\n return stateName.indexOf('.') === 0 || stateName.indexOf('^') === 0;\n }\n\n find(stateOrName: StateOrName, base?: StateOrName, matchGlob = true): StateObject {\n if (!stateOrName && stateOrName !== '') return undefined;\n const isStr = isString(stateOrName);\n let name: string = isStr ? stateOrName : (<any>stateOrName).name;\n\n if (this.isRelative(name)) name = this.resolvePath(name, base);\n const state = this._states[name];\n\n if (state && (isStr || (!isStr && (state === stateOrName || state.self === stateOrName)))) {\n return state;\n } else if (isStr && matchGlob) {\n const _states = values(this._states);\n const matches = _states.filter(\n _state => _state.__stateObjectCache.nameGlob && _state.__stateObjectCache.nameGlob.matches(name),\n );\n\n if (matches.length > 1) {\n // tslint:disable-next-line:no-console\n console.log(\n `stateMatcher.find: Found multiple matches for ${name} using glob: `,\n matches.map(match => match.name),\n );\n }\n return matches[0];\n }\n return undefined;\n }\n\n resolvePath(name: string, base: StateOrName) {\n if (!base) throw new Error(`No reference point given for path '${name}'`);\n\n const baseState: StateObject = this.find(base);\n\n const splitName = name.split('.');\n const pathLength = splitName.length;\n let i = 0,\n current = baseState;\n\n for (; i < pathLength; i++) {\n if (splitName[i] === '' && i === 0) {\n current = baseState;\n continue;\n }\n if (splitName[i] === '^') {\n if (!current.parent) throw new Error(`Path '${name}' not valid for state '${baseState.name}'`);\n current = current.parent;\n continue;\n }\n break;\n }\n const relName = splitName.slice(i).join('.');\n return current.name + (current.name && relName ? '.' : '') + relName;\n }\n}\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { inArray } from '../common/common';\nimport { isString } from '../common/predicates';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { StateObject } from './stateObject';\nimport { StateBuilder } from './stateBuilder';\nimport { StateRegistryListener, StateRegistry } from './stateRegistry';\nimport { Disposable } from '../interface';\nimport { UrlRouter } from '../url/urlRouter';\nimport { prop } from '../common/hof';\nimport { StateMatcher } from './stateMatcher';\n\n/** @internalapi */\nexport class StateQueueManager implements Disposable {\n queue: StateObject[];\n matcher: StateMatcher;\n\n constructor(\n private $registry: StateRegistry,\n private $urlRouter: UrlRouter,\n public states: { [key: string]: StateObject },\n public builder: StateBuilder,\n public listeners: StateRegistryListener[],\n ) {\n this.queue = [];\n this.matcher = $registry.matcher;\n }\n\n /** @internalapi */\n dispose() {\n this.queue = [];\n }\n\n register(stateDecl: _StateDeclaration) {\n const queue = this.queue;\n const state = StateObject.create(stateDecl);\n const name = state.name;\n\n if (!isString(name)) throw new Error('State must have a valid name');\n if (this.states.hasOwnProperty(name) || inArray(queue.map(prop('name')), name))\n throw new Error(`State '${name}' is already defined`);\n\n queue.push(state);\n this.flush();\n\n return state;\n }\n\n flush() {\n const { queue, states, builder } = this;\n const registered: StateObject[] = [], // states that got registered\n orphans: StateObject[] = [], // states that don't yet have a parent registered\n previousQueueLength = {}; // keep track of how long the queue when an orphan was first encountered\n const getState = name => this.states.hasOwnProperty(name) && this.states[name];\n const notifyListeners = () => {\n if (registered.length) {\n this.listeners.forEach(listener => listener('registered', registered.map(s => s.self)));\n }\n };\n\n while (queue.length > 0) {\n const state: StateObject = queue.shift();\n const name = state.name;\n const result: StateObject = builder.build(state);\n const orphanIdx: number = orphans.indexOf(state);\n\n if (result) {\n const existingState = getState(name);\n if (existingState && existingState.name === name) {\n throw new Error(`State '${name}' is already defined`);\n }\n\n const existingFutureState = getState(name + '.**');\n if (existingFutureState) {\n // Remove future state of the same name\n this.$registry.deregister(existingFutureState);\n }\n\n states[name] = state;\n this.attachRoute(state);\n if (orphanIdx >= 0) orphans.splice(orphanIdx, 1);\n registered.push(state);\n continue;\n }\n\n const prev = previousQueueLength[name];\n previousQueueLength[name] = queue.length;\n if (orphanIdx >= 0 && prev === queue.length) {\n // Wait until two consecutive iterations where no additional states were dequeued successfully.\n // throw new Error(`Cannot register orphaned state '${name}'`);\n queue.push(state);\n notifyListeners();\n return states;\n } else if (orphanIdx < 0) {\n orphans.push(state);\n }\n\n queue.push(state);\n }\n\n notifyListeners();\n return states;\n }\n\n attachRoute(state: StateObject) {\n if (state.abstract || !state.url) return;\n\n this.$urlRouter.rule(this.$urlRouter.urlRuleFactory.create(state));\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { StateBuilder } from './stateBuilder';\nimport { StateQueueManager } from './stateQueueManager';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { BuilderFunction } from './stateBuilder';\nimport { StateOrName } from './interface';\nimport { removeFrom } from '../common/common';\nimport { UIRouter } from '../router';\nimport { propEq } from '../common/hof';\n\n/**\n * The signature for the callback function provided to [[StateRegistry.onStatesChanged]].\n *\n * This callback receives two parameters:\n *\n * @param event a string; either \"registered\" or \"deregistered\"\n * @param states the list of [[StateDeclaration]]s that were registered (or deregistered).\n */\nexport type StateRegistryListener = (event: 'registered' | 'deregistered', states: StateDeclaration[]) => void;\n\nexport class StateRegistry {\n private _root: StateObject;\n private states: { [key: string]: StateObject } = {};\n\n matcher: StateMatcher;\n private builder: StateBuilder;\n stateQueue: StateQueueManager;\n\n listeners: StateRegistryListener[] = [];\n\n /** @internalapi */\n constructor(private _router: UIRouter) {\n this.matcher = new StateMatcher(this.states);\n this.builder = new StateBuilder(this.matcher, _router.urlMatcherFactory);\n this.stateQueue = new StateQueueManager(this, _router.urlRouter, this.states, this.builder, this.listeners);\n this._registerRoot();\n }\n\n /** @internalapi */\n private _registerRoot() {\n const rootStateDef: StateDeclaration = {\n name: '',\n url: '^',\n views: null,\n params: {\n '#': { value: null, type: 'hash', dynamic: true },\n },\n abstract: true,\n };\n\n const _root = (this._root = this.stateQueue.register(rootStateDef));\n _root.navigable = null;\n }\n\n /** @internalapi */\n dispose() {\n this.stateQueue.dispose();\n this.listeners = [];\n this.get().forEach(state => this.get(state) && this.deregister(state));\n }\n\n /**\n * Listen for a State Registry events\n *\n * Adds a callback that is invoked when states are registered or deregistered with the StateRegistry.\n *\n * #### Example:\n * ```js\n * let allStates = registry.get();\n *\n * // Later, invoke deregisterFn() to remove the listener\n * let deregisterFn = registry.onStatesChanged((event, states) => {\n * switch(event) {\n * case: 'registered':\n * states.forEach(state => allStates.push(state));\n * break;\n * case: 'deregistered':\n * states.forEach(state => {\n * let idx = allStates.indexOf(state);\n * if (idx !== -1) allStates.splice(idx, 1);\n * });\n * break;\n * }\n * });\n * ```\n *\n * @param listener a callback function invoked when the registered states changes.\n * The function receives two parameters, `event` and `state`.\n * See [[StateRegistryListener]]\n * @return a function that deregisters the listener\n */\n onStatesChanged(listener: StateRegistryListener): () => void {\n this.listeners.push(listener);\n return function deregisterListener() {\n removeFrom(this.listeners)(listener);\n }.bind(this);\n }\n\n /**\n * Gets the implicit root state\n *\n * Gets the root of the state tree.\n * The root state is implicitly created by UI-Router.\n * Note: this returns the internal [[StateObject]] representation, not a [[StateDeclaration]]\n *\n * @return the root [[StateObject]]\n */\n root() {\n return this._root;\n }\n\n /**\n * Adds a state to the registry\n *\n * Registers a [[StateDeclaration]] or queues it for registration.\n *\n * Note: a state will be queued if the state's parent isn't yet registered.\n *\n * @param stateDefinition the definition of the state to register.\n * @returns the internal [[StateObject]] object.\n * If the state was successfully registered, then the object is fully built (See: [[StateBuilder]]).\n * If the state was only queued, then the object is not fully built.\n */\n register(stateDefinition: _StateDeclaration): StateObject {\n return this.stateQueue.register(stateDefinition);\n }\n\n /** @hidden */\n private _deregisterTree(state: StateObject) {\n const all = this.get().map(s => s.$$state());\n const getChildren = (states: StateObject[]) => {\n const _children = all.filter(s => states.indexOf(s.parent) !== -1);\n return _children.length === 0 ? _children : _children.concat(getChildren(_children));\n };\n\n const children = getChildren([state]);\n const deregistered: StateObject[] = [state].concat(children).reverse();\n\n deregistered.forEach(_state => {\n const $ur = this._router.urlRouter;\n // Remove URL rule\n $ur\n .rules()\n Line truncated
|
||||
"/**\n * @coreapi\n * @module url\n */\n/** for typedoc */\nimport {\n map,\n defaults,\n inherit,\n identity,\n unnest,\n tail,\n find,\n Obj,\n pairs,\n allTrueR,\n unnestR,\n arrayTuples,\n} from '../common/common';\nimport { prop, propEq } from '../common/hof';\nimport { isArray, isString, isDefined } from '../common/predicates';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { RawParams } from '../params/interface';\nimport { ParamFactory } from './interface';\nimport { joinNeighborsR, splitOnDelim } from '../common/strings';\n\n/** @hidden */\nfunction quoteRegExp(str: any, param?: any) {\n let surroundPattern = ['', ''],\n result = str.replace(/[\\\\\\[\\]\\^$*+?.()|{}]/g, '\\\\$&');\n if (!param) return result;\n\n switch (param.squash) {\n case false:\n surroundPattern = ['(', ')' + (param.isOptional ? '?' : '')];\n break;\n case true:\n result = result.replace(/\\/$/, '');\n surroundPattern = ['(?:/(', ')|/)?'];\n break;\n default:\n surroundPattern = [`(${param.squash}|`, ')?'];\n break;\n }\n return result + surroundPattern[0] + param.type.pattern.source + surroundPattern[1];\n}\n\n/** @hidden */\nconst memoizeTo = (obj: Obj, _prop: string, fn: Function) => (obj[_prop] = obj[_prop] || fn());\n\n/** @hidden */\nconst splitOnSlash = splitOnDelim('/');\n\n/** @hidden */\ninterface UrlMatcherCache {\n segments?: any[];\n weights?: number[];\n path?: UrlMatcher[];\n parent?: UrlMatcher;\n pattern?: RegExp;\n}\n\n/**\n * Matches URLs against patterns.\n *\n * Matches URLs against patterns and extracts named parameters from the path or the search\n * part of the URL.\n *\n * A URL pattern consists of a path pattern, optionally followed by '?' and a list of search (query)\n * parameters. Multiple search parameter names are separated by '&'. Search parameters\n * do not influence whether or not a URL is matched, but their values are passed through into\n * the matched parameters returned by [[UrlMatcher.exec]].\n *\n * - *Path parameters* are defined using curly brace placeholders (`/somepath/{param}`)\n * or colon placeholders (`/somePath/:param`).\n *\n * - *A parameter RegExp* may be defined for a param after a colon\n * (`/somePath/{param:[a-zA-Z0-9]+}`) in a curly brace placeholder.\n * The regexp must match for the url to be matched.\n * Should the regexp itself contain curly braces, they must be in matched pairs or escaped with a backslash.\n *\n * Note: a RegExp parameter will encode its value using either [[ParamTypes.path]] or [[ParamTypes.query]].\n *\n * - *Custom parameter types* may also be specified after a colon (`/somePath/{param:int}`) in curly brace parameters.\n * See [[UrlMatcherFactory.type]] for more information.\n *\n * - *Catch-all parameters* are defined using an asterisk placeholder (`/somepath/*catchallparam`).\n * A catch-all * parameter value will contain the remainder of the URL.\n *\n * ---\n *\n * Parameter names may contain only word characters (latin letters, digits, and underscore) and\n * must be unique within the pattern (across both path and search parameters).\n * A path parameter matches any number of characters other than '/'. For catch-all\n * placeholders the path parameter matches any number of characters.\n *\n * Examples:\n *\n * * `'/hello/'` - Matches only if the path is exactly '/hello/'. There is no special treatment for\n * trailing slashes, and patterns have to match the entire path, not just a prefix.\n * * `'/user/:id'` - Matches '/user/bob' or '/user/1234!!!' or even '/user/' but not '/user' or\n * '/user/bob/details'. The second path segment will be captured as the parameter 'id'.\n * * `'/user/{id}'` - Same as the previous example, but using curly brace syntax.\n * * `'/user/{id:[^/]*}'` - Same as the previous example.\n * * `'/user/{id:[0-9a-fA-F]{1,8}}'` - Similar to the previous example, but only matches if the id\n * parameter consists of 1 to 8 hex digits.\n * * `'/files/{path:.*}'` - Matches any URL starting with '/files/' and captures the rest of the\n * path into the parameter 'path'.\n * * `'/files/*path'` - ditto.\n * * `'/calendar/{start:date}'` - Matches \"/calendar/2014-11-12\" (because the pattern defined\n * in the built-in `date` ParamType matches `2014-11-12`) and provides a Date object in $stateParams.start\n *\n */\nexport class UrlMatcher {\n /** @hidden */\n static nameValidator: RegExp = /^\\w+([-.]+\\w+)*(?:\\[\\])?$/;\n\n /** @hidden */\n private _cache: UrlMatcherCache = { path: [this] };\n /** @hidden */\n private _children: UrlMatcher[] = [];\n /** @hidden */\n private _params: Param[] = [];\n /** @hidden */\n private _segments: string[] = [];\n /** @hidden */\n private _compiled: string[] = [];\n\n /** The pattern that was passed into the constructor */\n public pattern: string;\n\n /** @hidden */\n static encodeDashes(str: string) {\n // Replace dashLine truncated
|
||||
"/**\n * @internalapi\n * @module url\n */ /** for typedoc */\nimport { forEach, extend } from '../common/common';\nimport { isObject, isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { ParamTypeDefinition } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { ParamType } from '../params/paramType';\nimport { ParamFactory, UrlMatcherConfig } from './interface';\n\n/**\n * Factory for [[UrlMatcher]] instances.\n *\n * The factory is available to ng1 services as\n * `$urlMatcherFactory` or ng1 providers as `$urlMatcherFactoryProvider`.\n */\nexport class UrlMatcherFactory implements Disposable, UrlMatcherConfig {\n /** @hidden */ paramTypes = new ParamTypes();\n /** @hidden */ _isCaseInsensitive = false;\n /** @hidden */ _isStrictMode = true;\n /** @hidden */ _defaultSquashPolicy: boolean | string = false;\n\n /** @internalapi Creates a new [[Param]] for a given location (DefType) */\n paramFactory: ParamFactory = {\n /** Creates a new [[Param]] from a CONFIG block */\n fromConfig: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.CONFIG, this),\n\n /** Creates a new [[Param]] from a url PATH */\n fromPath: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.PATH, this),\n\n /** Creates a new [[Param]] from a url SEARCH */\n fromSearch: (id: string, type: ParamType, config: any) => new Param(id, type, config, DefType.SEARCH, this),\n };\n\n constructor() {\n extend(this, { UrlMatcher, Param });\n }\n\n /** @inheritdoc */\n caseInsensitive(value?: boolean): boolean {\n return (this._isCaseInsensitive = isDefined(value) ? value : this._isCaseInsensitive);\n }\n\n /** @inheritdoc */\n strictMode(value?: boolean): boolean {\n return (this._isStrictMode = isDefined(value) ? value : this._isStrictMode);\n }\n\n /** @inheritdoc */\n defaultSquashPolicy(value?: boolean | string) {\n if (isDefined(value) && value !== true && value !== false && !isString(value))\n throw new Error(`Invalid squash policy: ${value}. Valid policies: false, true, arbitrary-string`);\n return (this._defaultSquashPolicy = isDefined(value) ? value : this._defaultSquashPolicy);\n }\n\n /** @hidden */\n private _getConfig = config =>\n extend({ strict: this._isStrictMode, caseInsensitive: this._isCaseInsensitive }, config);\n\n /**\n * Creates a [[UrlMatcher]] for the specified pattern.\n *\n * @param pattern The URL pattern.\n * @param config The config object hash.\n * @returns The UrlMatcher.\n */\n compile(pattern: string, config?: { [key: string]: any }) {\n return new UrlMatcher(pattern, this.paramTypes, this.paramFactory, this._getConfig(config));\n }\n\n /**\n * Returns true if the specified object is a [[UrlMatcher]], or false otherwise.\n *\n * @param object The object to perform the type check against.\n * @returns `true` if the object matches the `UrlMatcher` interface, by\n * implementing all the same methods.\n */\n isMatcher(object: any): boolean {\n // TODO: typeof?\n if (!isObject(object)) return false;\n let result = true;\n\n forEach(UrlMatcher.prototype, (val, name) => {\n if (isFunction(val)) result = result && (isDefined(object[name]) && isFunction(object[name]));\n });\n return result;\n }\n\n /**\n * Creates and registers a custom [[ParamType]] object\n *\n * A [[ParamType]] can be used to generate URLs with typed parameters.\n *\n * @param name The type name.\n * @param definition The type definition. See [[ParamTypeDefinition]] for information on the values accepted.\n * @param definitionFn A function that is injected before the app runtime starts.\n * The result of this function should be a [[ParamTypeDefinition]].\n * The result is merged into the existing `definition`.\n * See [[ParamType]] for information on the values accepted.\n *\n * @returns - if a type was registered: the [[UrlMatcherFactory]]\n * - if only the `name` parameter was specified: the currently registered [[ParamType]] object, or undefined\n *\n * Note: Register custom types *before using them* in a state definition.\n *\n * See [[ParamTypeDefinition]] for examples\n */\n type(name: string, definition?: ParamTypeDefinition, definitionFn?: () => ParamTypeDefinition) {\n const type = this.paramTypes.type(name, definition, definitionFn);\n return !isDefined(definition) ? type : this;\n }\n\n /** @hidden */\n $get() {\n this.paramTypes.enqueue = false;\n this.paramTypes._flushTypeQueue();\n return this;\n }\n\n /** @internalapi */\n dispose() {\n this.paramTypes.dispose();\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\nimport { UrlMatcher } from './urlMatcher';\nimport { isString, isDefined, isFunction, isState } from '../common/predicates';\nimport { UIRouter } from '../router';\nimport { identity, extend } from '../common/common';\nimport { is, pattern } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport {\n UrlRule,\n UrlRuleMatchFn,\n UrlRuleHandlerFn,\n UrlRuleType,\n UrlParts,\n MatcherUrlRule,\n StateRule,\n RegExpRule,\n} from './interface';\n\n/**\n * Creates a [[UrlRule]]\n *\n * Creates a [[UrlRule]] from a:\n *\n * - `string`\n * - [[UrlMatcher]]\n * - `RegExp`\n * - [[StateObject]]\n * @internalapi\n */\nexport class UrlRuleFactory {\n static isUrlRule = obj => obj && ['type', 'match', 'handler'].every(key => isDefined(obj[key]));\n\n constructor(public router: UIRouter) {}\n\n compile(str: string) {\n return this.router.urlMatcherFactory.compile(str);\n }\n\n create(\n what: string | UrlMatcher | StateObject | RegExp | UrlRuleMatchFn,\n handler?: string | UrlRuleHandlerFn,\n ): UrlRule {\n const makeRule = pattern([\n [isString, (_what: string) => makeRule(this.compile(_what))],\n [is(UrlMatcher), (_what: UrlMatcher) => this.fromUrlMatcher(_what, handler)],\n [isState, (_what: StateObject) => this.fromState(_what, this.router)],\n [is(RegExp), (_what: RegExp) => this.fromRegExp(_what, handler)],\n [isFunction, (_what: UrlRuleMatchFn) => new BaseUrlRule(_what, handler as UrlRuleHandlerFn)],\n ]);\n\n const rule = makeRule(what);\n if (!rule) throw new Error(\"invalid 'what' in when()\");\n return rule;\n }\n\n /**\n * A UrlRule which matches based on a UrlMatcher\n *\n * The `handler` may be either a `string`, a [[UrlRuleHandlerFn]] or another [[UrlMatcher]]\n *\n * ## Handler as a function\n *\n * If `handler` is a function, the function is invoked with:\n *\n * - matched parameter values ([[RawParams]] from [[UrlMatcher.exec]])\n * - url: the current Url ([[UrlParts]])\n * - router: the router object ([[UIRouter]])\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, match => \"/home/\" + match.fooId + \"/\" + match.barId);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n *\n * ## Handler as UrlMatcher\n *\n * If `handler` is a UrlMatcher, the handler matcher is used to create the new url.\n * The `handler` UrlMatcher is formatted using the matched param from the first matcher.\n * The url is replaced with the result.\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var handler = $umf.compile(\"/home/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, handler);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n */\n fromUrlMatcher(urlMatcher: UrlMatcher, handler: string | UrlMatcher | UrlRuleHandlerFn): MatcherUrlRule {\n let _handler: UrlRuleHandlerFn = handler as any;\n if (isString(handler)) handler = this.router.urlMatcherFactory.compile(handler);\n if (is(UrlMatcher)(handler)) _handler = (match: RawParams) => (handler as UrlMatcher).format(match);\n\n function matchUrlParamters(url: UrlParts): RawParams {\n const params = urlMatcher.exec(url.path, url.search, url.hash);\n return urlMatcher.validates(params) && params;\n }\n\n // Prioritize URLs, lowest to highest:\n // - Some optional URL parameters, but none matched\n // - No optional parameters in URL\n // - Some optional parameters, some matched\n // - Some optional parameters, all matched\n function matchPriority(params: RawParams): number {\n const optional = urlMatcher.parameters().filter(param => param.isOptional);\n if (!optional.length) return 0.000001;\n const matched = optional.filter(param => params[param.id]);\n return matched.length / optional.length;\n }\n\n const details = { urlMatcher, matchPriority, type: 'URLMATCHER' };\n return extend(new BaseUrlRule(matchUrlParamters, _handler), details) as MatcherUrlRule;\n }\n\n /**\n * A UrlRule which matches a state by its url\n *\n * #### Example:\n * ```js\n * var rule = factory.fromState($state.get('foo'), router);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match);\n * // Starts a transition to 'foo' with params: { fooId: '123', barId: '456' }\n * ```\n */\n fromState(state: StateObject, router: UIRouter): StateRule {\n /**\n * Handles match by transitioning to matched state\n *\n * First Line truncated
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"/**\n * @internalapi\n * @module url\n */\n/** for typedoc */\nimport { createProxyFunctions, extend, removeFrom } from '../common/common';\nimport { isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { RawParams } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { is, pattern, val } from '../common/hof';\nimport { UrlRuleFactory } from './urlRule';\nimport { TargetState } from '../state/targetState';\nimport {\n MatcherUrlRule,\n MatchResult,\n UrlParts,\n UrlRule,\n UrlRuleHandlerFn,\n UrlRuleMatchFn,\n UrlRulesApi,\n UrlSyncApi,\n} from './interface';\nimport { TargetStateDef } from '../state/interface';\nimport { stripLastPathElement } from '../common';\n\n/** @hidden */\nfunction appendBasePath(url: string, isHtml5: boolean, absolute: boolean, baseHref: string): string {\n if (baseHref === '/') return url;\n if (isHtml5) return stripLastPathElement(baseHref) + url;\n if (absolute) return baseHref.slice(1) + url;\n return url;\n}\n\n/** @hidden */\nconst prioritySort = (a: UrlRule, b: UrlRule) => (b.priority || 0) - (a.priority || 0);\n\n/** @hidden */\nconst typeSort = (a: UrlRule, b: UrlRule) => {\n const weights = { STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1 };\n return (weights[a.type] || 0) - (weights[b.type] || 0);\n};\n\n/** @hidden */\nconst urlMatcherSort = (a: MatcherUrlRule, b: MatcherUrlRule) =>\n !a.urlMatcher || !b.urlMatcher ? 0 : UrlMatcher.compare(a.urlMatcher, b.urlMatcher);\n\n/** @hidden */\nconst idSort = (a: UrlRule, b: UrlRule) => {\n // Identically sorted STATE and URLMATCHER best rule will be chosen by `matchPriority` after each rule matches the URL\n const useMatchPriority = { STATE: true, URLMATCHER: true };\n const equal = useMatchPriority[a.type] && useMatchPriority[b.type];\n return equal ? 0 : (a.$id || 0) - (b.$id || 0);\n};\n\n/**\n * Default rule priority sorting function.\n *\n * Sorts rules by:\n *\n * - Explicit priority (set rule priority using [[UrlRulesApi.when]])\n * - Rule type (STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1)\n * - `UrlMatcher` specificity ([[UrlMatcher.compare]]): works for STATE and URLMATCHER types to pick the most specific rule.\n * - Rule registration order (for rule types other than STATE and URLMATCHER)\n * - Equally sorted State and UrlMatcher rules will each match the URL.\n * Then, the *best* match is chosen based on how many parameter values were matched.\n *\n * @coreapi\n */\nlet defaultRuleSortFn: (a: UrlRule, b: UrlRule) => number;\ndefaultRuleSortFn = (a, b) => {\n let cmp = prioritySort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = typeSort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = urlMatcherSort(a as MatcherUrlRule, b as MatcherUrlRule);\n if (cmp !== 0) return cmp;\n\n return idSort(a, b);\n};\n\n/**\n * Updates URL and responds to URL changes\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class updates the URL when the state changes.\n * It also responds to changes in the URL.\n */\nexport class UrlRouter implements UrlRulesApi, UrlSyncApi, Disposable {\n /** used to create [[UrlRule]] objects for common cases */\n public urlRuleFactory: UrlRuleFactory;\n\n /** @hidden */ private _router: UIRouter;\n /** @hidden */ private location: string;\n /** @hidden */ private _sortFn = defaultRuleSortFn;\n /** @hidden */ private _stopFn: Function;\n /** @hidden */ _rules: UrlRule[] = [];\n /** @hidden */ private _otherwiseFn: UrlRule;\n /** @hidden */ interceptDeferred = false;\n /** @hidden */ private _id = 0;\n /** @hidden */ private _sorted = false;\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this.urlRuleFactory = new UrlRuleFactory(router);\n createProxyFunctions(val(UrlRouter.prototype), this, val(this));\n }\n\n /** @internalapi */\n dispose() {\n this.listen(false);\n this._rules = [];\n delete this._otherwiseFn;\n }\n\n /** @inheritdoc */\n sort(compareFn?: (a: UrlRule, b: UrlRule) => number) {\n this._rules = this.stableSort(this._rules, (this._sortFn = compareFn || this._sortFn));\n this._sorted = true;\n }\n\n private ensureSorted() {\n this._sorted || this.sort();\n }\n\n private stableSort(arr, compareFn) {\n const arrOfWrapper = arr.map((elem, idx) => ({ elem, idx }));\n\n arrOfWrapper.sort((wrapperA, wrapperB) => {\n const cmpDiff = compareFn(wrapperA.elem, wrapperB.elem);\n return cmpDiff === 0 ? wrapperA.idx - wrapperB.idx : cmpDiff;\n });\n\n return arrOfWrapper.map(wrapper => wrapper.elem);\n }\n\n /**\n * Given a URL, check all rules and return the best [[MatchResult]]\n * @param url\n * @returns {MatchResult}\n */\n match(urlLine truncated
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||||
"/**\n * @coreapi\n * @module view\n */ /** for typedoc */\nimport { equals, applyPairs, removeFrom, TypedMap, inArray } from '../common/common';\nimport { curry, prop } from '../common/hof';\nimport { isString, isArray } from '../common/predicates';\nimport { trace } from '../common/trace';\nimport { PathNode } from '../path/pathNode';\nimport { ActiveUIView, ViewContext, ViewConfig } from './interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nexport type ViewConfigFactory = (path: PathNode[], decl: _ViewDeclaration) => ViewConfig | ViewConfig[];\n\nexport interface ViewServicePluginAPI {\n _rootViewContext(context?: ViewContext): ViewContext;\n _viewConfigFactory(viewType: string, factory: ViewConfigFactory);\n _registeredUIViews(): ActiveUIView[];\n _activeViewConfigs(): ViewConfig[];\n _onSync(listener: ViewSyncListener): Function;\n}\n\n// A uiView and its matching viewConfig\nexport interface ViewTuple {\n uiView: ActiveUIView;\n viewConfig: ViewConfig;\n}\n\nexport interface ViewSyncListener {\n (viewTuples: ViewTuple[]): void;\n}\n\n/**\n * The View service\n *\n * This service pairs existing `ui-view` components (which live in the DOM)\n * with view configs (from the state declaration objects: [[StateDeclaration.views]]).\n *\n * - After a successful Transition, the views from the newly entered states are activated via [[activateViewConfig]].\n * The views from exited states are deactivated via [[deactivateViewConfig]].\n * (See: the [[registerActivateViews]] Transition Hook)\n *\n * - As `ui-view` components pop in and out of existence, they register themselves using [[registerUIView]].\n *\n * - When the [[sync]] function is called, the registered `ui-view`(s) ([[ActiveUIView]])\n * are configured with the matching [[ViewConfig]](s)\n *\n */\nexport class ViewService {\n private _uiViews: ActiveUIView[] = [];\n private _viewConfigs: ViewConfig[] = [];\n private _rootContext: ViewContext;\n private _viewConfigFactories: { [key: string]: ViewConfigFactory } = {};\n private _listeners: ViewSyncListener[] = [];\n\n public _pluginapi: ViewServicePluginAPI = {\n _rootViewContext: this._rootViewContext.bind(this),\n _viewConfigFactory: this._viewConfigFactory.bind(this),\n _registeredUIViews: () => this._uiViews,\n _activeViewConfigs: () => this._viewConfigs,\n _onSync: (listener: ViewSyncListener) => {\n this._listeners.push(listener);\n return () => removeFrom(this._listeners, listener);\n },\n };\n\n /**\n * Given a ui-view and a ViewConfig, determines if they \"match\".\n *\n * A ui-view has a fully qualified name (fqn) and a context object. The fqn is built from its overall location in\n * the DOM, describing its nesting relationship to any parent ui-view tags it is nested inside of.\n *\n * A ViewConfig has a target ui-view name and a context anchor. The ui-view name can be a simple name, or\n * can be a segmented ui-view path, describing a portion of a ui-view fqn.\n *\n * In order for a ui-view to match ViewConfig, ui-view's $type must match the ViewConfig's $type\n *\n * If the ViewConfig's target ui-view name is a simple name (no dots), then a ui-view matches if:\n * - the ui-view's name matches the ViewConfig's target name\n * - the ui-view's context matches the ViewConfig's anchor\n *\n * If the ViewConfig's target ui-view name is a segmented name (with dots), then a ui-view matches if:\n * - There exists a parent ui-view where:\n * - the parent ui-view's name matches the first segment (index 0) of the ViewConfig's target name\n * - the parent ui-view's context matches the ViewConfig's anchor\n * - And the remaining segments (index 1..n) of the ViewConfig's target name match the tail of the ui-view's fqn\n *\n * Example:\n *\n * DOM:\n * <ui-view> <!-- created in the root context (name: \"\") -->\n * <ui-view name=\"foo\"> <!-- created in the context named: \"A\" -->\n * <ui-view> <!-- created in the context named: \"A.B\" -->\n * <ui-view name=\"bar\"> <!-- created in the context named: \"A.B.C\" -->\n * </ui-view>\n * </ui-view>\n * </ui-view>\n * </ui-view>\n *\n * uiViews: [\n * { fqn: \"$default\", creationContext: { name: \"\" } },\n * { fqn: \"$default.foo\", creationContext: { name: \"A\" } },\n * { fqn: \"$default.foo.$default\", creationContext: { name: \"A.B\" } }\n * { fqn: \"$default.foo.$default.bar\", creationContext: { name: \"A.B.C\" } }\n * ]\n *\n * These four view configs all match the ui-view with the fqn: \"$default.foo.$default.bar\":\n *\n * - ViewConfig1: { uiViewName: \"bar\", uiViewContextAnchor: \"A.B.C\" }\n * - ViewConfig2: { uiViewName: \"$default.bar\", uiViewContextAnchor: \"A.B\" }\n * - ViewConfig3: { uiViewName: \"foo.$dLine truncated
|
||||
"/**\n * Random utility functions used in the UI-Router code\n *\n * These functions are exported, but are subject to change without notice.\n *\n * @preferred\n * @module common\n */\n/** for typedoc */\nimport { isFunction, isString, isArray, isRegExp, isDate } from './predicates';\nimport { all, any, prop, curry, not } from './hof';\nimport { services } from './coreservices';\nimport { StateObject } from '../state/stateObject';\n\ndeclare const global;\nexport const root: any = (typeof self === 'object' && self.self === self && self) ||\n (typeof global === 'object' && global.global === global && global) || this;\nconst angular = root.angular || {};\n\nexport const fromJson = angular.fromJson || JSON.parse.bind(JSON);\nexport const toJson = angular.toJson || JSON.stringify.bind(JSON);\nexport const forEach = angular.forEach || _forEach;\nexport const extend = Object.assign || _extend;\nexport const equals = angular.equals || _equals;\nexport function identity(x: any) { return x; }\nexport function noop(): any {}\n\nexport type Mapper<X, T> = (x: X, key?: (string|number)) => T;\nexport interface TypedMap<T> { [key: string]: T; }\nexport type Predicate<X> = (x?: X) => boolean;\n/**\n * An ng1-style injectable\n *\n * This could be a (non-minified) function such as:\n * ```js\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an explicitly annotated function (minify safe)\n * ```js\n * injectableFunction.$inject = [ 'SomeDependency' ];\n * function injectableFunction(SomeDependency) {\n *\n * }\n * ```\n *\n * or an array style annotated function (minify safe)\n * ```js\n * ['SomeDependency', function injectableFunction(SomeDependency) {\n *\n * }];\n * ```\n *\n * @publicapi\n */\nexport type IInjectable = (Function|any[]);\n\nexport interface Obj extends Object {\n [key: string]: any;\n}\n\n/**\n * Builds proxy functions on the `to` object which pass through to the `from` object.\n *\n * For each key in `fnNames`, creates a proxy function on the `to` object.\n * The proxy function calls the real function on the `from` object.\n *\n *\n * #### Example:\n * This example creates an new class instance whose functions are prebound to the new'd object.\n * ```js\n * class Foo {\n * constructor(data) {\n * // Binds all functions from Foo.prototype to 'this',\n * // then copies them to 'this'\n * bindFunctions(Foo.prototype, this, this);\n * this.data = data;\n * }\n *\n * log() {\n * console.log(this.data);\n * }\n * }\n *\n * let myFoo = new Foo([1,2,3]);\n * var logit = myFoo.log;\n * logit(); // logs [1, 2, 3] from the myFoo 'this' instance\n * ```\n *\n * #### Example:\n * This example creates a bound version of a service function, and copies it to another object\n * ```\n *\n * var SomeService = {\n * this.data = [3, 4, 5];\n * this.log = function() {\n * console.log(this.data);\n * }\n * }\n *\n * // Constructor fn\n * function OtherThing() {\n * // Binds all functions from SomeService to SomeService,\n * // then copies them to 'this'\n * bindFunctions(SomeService, this, SomeService);\n * }\n *\n * let myOtherThing = new OtherThing();\n * myOtherThing.log(); // logs [3, 4, 5] from SomeService's 'this'\n * ```\n *\n * @param source A function that returns the source object which contains the original functions to be bound\n * @param target A function that returns the target object which will receive the bound functions\n * @param bind A function that returns the object which the functions will be bound to\n * @param fnNames The function names which will be bound (Defaults to all the functions found on the 'from' object)\n * @param latebind If true, the binding of the function is delayed until the first time it's invoked\n */\nexport function createProxyFunctions(source: Function, target: Obj, bind: Function, fnNames?: string[], latebind = false): Obj {\n const bindFunction = (fnName) =>\n source()[fnName].bind(bind());\n\n const makeLateRebindFn = fnName => function lateRebindFunction() {\n target[fnName] = bindFunction(fnName);\n return target[fnName].apply(null, arguments);\n };\n\n fnNames = fnNames || Object.keys(source());\n\n return fnNames.reduce((acc, name) => {\n acc[name] = latebind ? makeLateRebindFn(name) : bindFunction(name);\n return acc;\n }, target);\n}\n\n\n/**\n * prototypal inheritance helper.\n * Creates a new object which has `parent` object as its prototype, and then copies the properties from `extra` onto it\n */\nexport const inherit = (parent: Obj, extra?: Obj) =>\n extend(Object.create(parent), extra);\n\n/** Given an array, returns true if the object is found in the array, (using indexOf) */\nexport const inArray: typeof _inArray = curry(_inArray) as any;\nexport function _inArray(array: any[], obj: any): boolean;\nexport function _inArray(array: any[]): (obj: any) => boolean;\nexport function _inArray(array, obj?): any {\n return array.indexOf(obj) !== -1;\n}\n\n/**\n * GivenLine truncated
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||||
"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n'use strict';\nimport { extend, silentRejection } from '../common/common';\nimport { stringify } from '../common/strings';\nimport { is } from '../common/hof';\n\nexport enum RejectType {\n SUPERSEDED = 2, ABORTED = 3, INVALID = 4, IGNORED = 5, ERROR = 6,\n}\n\n/** @hidden */\nlet id = 0;\n\nexport class Rejection {\n $id = id++;\n type: number;\n message: string;\n detail: any;\n redirected: boolean;\n\n /** Returns true if the obj is a rejected promise created from the `asPromise` factory */\n static isRejectionPromise(obj: any): boolean {\n return obj && (typeof obj.then === 'function') && is(Rejection)(obj._transitionRejection);\n }\n\n /** Returns a Rejection due to transition superseded */\n static superseded(detail?: any, options?: any): Rejection {\n const message = 'The transition has been superseded by a different transition';\n const rejection = new Rejection(RejectType.SUPERSEDED, message, detail);\n if (options && options.redirected) {\n rejection.redirected = true;\n }\n return rejection;\n }\n\n /** Returns a Rejection due to redirected transition */\n static redirected(detail?: any): Rejection {\n return Rejection.superseded(detail, { redirected: true });\n }\n\n /** Returns a Rejection due to invalid transition */\n static invalid(detail?: any): Rejection {\n const message = 'This transition is invalid';\n return new Rejection(RejectType.INVALID, message, detail);\n }\n\n /** Returns a Rejection due to ignored transition */\n static ignored(detail?: any): Rejection {\n const message = 'The transition was ignored';\n return new Rejection(RejectType.IGNORED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static aborted(detail?: any): Rejection {\n const message = 'The transition has been aborted';\n return new Rejection(RejectType.ABORTED, message, detail);\n }\n\n /** Returns a Rejection due to aborted transition */\n static errored(detail?: any): Rejection {\n const message = 'The transition errored';\n return new Rejection(RejectType.ERROR, message, detail);\n }\n\n /**\n * Returns a Rejection\n *\n * Normalizes a value as a Rejection.\n * If the value is already a Rejection, returns it.\n * Otherwise, wraps and returns the value as a Rejection (Rejection type: ERROR).\n *\n * @returns `detail` if it is already a `Rejection`, else returns an ERROR Rejection.\n */\n static normalize(detail?: Rejection | Error | any): Rejection {\n return is(Rejection)(detail) ? detail : Rejection.errored(detail);\n }\n\n constructor(type: number, message?: string, detail?: any) {\n this.type = type;\n this.message = message;\n this.detail = detail;\n }\n\n toString() {\n const detailString = (d: any) =>\n d && d.toString !== Object.prototype.toString ? d.toString() : stringify(d);\n const detail = detailString(this.detail);\n const { $id, type, message } = this;\n return `Transition Rejection($id: ${$id} type: ${type}, message: ${message}, detail: ${detail})`;\n }\n\n toPromise(): Promise<any> {\n return extend(silentRejection(this), { _transitionRejection: this });\n }\n}\n",
|
||||
"/** @module common */\nimport { pushTo } from './common';\n\nexport class Queue<T> {\n private _evictListeners: ((item: T) => void)[] = [];\n public onEvict = pushTo(this._evictListeners);\n\n constructor(private _items: T[] = [], private _limit: number = null) { }\n\n enqueue(item: T) {\n const items = this._items;\n items.push(item);\n if (this._limit && items.length > this._limit) this.evict();\n return item;\n }\n\n evict(): T {\n const item: T = this._items.shift();\n this._evictListeners.forEach(fn => fn(item));\n return item;\n }\n\n dequeue(): T {\n if (this.size())\n return this._items.splice(0, 1)[0];\n }\n\n clear(): Array<T> {\n const current = this._items;\n this._items = [];\n return current;\n }\n\n size(): number {\n return this._items.length;\n }\n\n remove(item: T) {\n const idx = this._items.indexOf(item);\n return idx > -1 && this._items.splice(idx, 1)[0];\n }\n\n peekTail(): T {\n return this._items[this._items.length - 1];\n }\n\n peekHead(): T {\n if (this.size())\n return this._items[0];\n }\n}\n",
|
||||
"/**\n * # Transition tracing (debug)\n *\n * Enable transition tracing to print transition information to the console,\n * in order to help debug your application.\n * Tracing logs detailed information about each Transition to your console.\n *\n * To enable tracing, import the [[Trace]] singleton and enable one or more categories.\n *\n * ### ES6\n * ```js\n * import {trace} from \"ui-router-ng2\"; // or \"angular-ui-router\"\n * trace.enable(1, 5); // TRANSITION and VIEWCONFIG\n * ```\n *\n * ### CJS\n * ```js\n * let trace = require(\"angular-ui-router\").trace; // or \"ui-router-ng2\"\n * trace.enable(\"TRANSITION\", \"VIEWCONFIG\");\n * ```\n *\n * ### Globals\n * ```js\n * let trace = window[\"angular-ui-router\"].trace; // or \"ui-router-ng2\"\n * trace.enable(); // Trace everything (very verbose)\n * ```\n *\n * ### Angular 1:\n * ```js\n * app.run($trace => $trace.enable());\n * ```\n *\n * @coreapi\n * @module trace\n */\n/* tslint:disable:no-console */\nimport { parse } from '../common/hof';\nimport { isFunction, isNumber } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { ViewTuple } from '../view';\nimport { ActiveUIView, ViewConfig, ViewContext } from '../view/interface';\nimport { stringify, functionToString, maxLength, padString } from './strings';\nimport { Resolvable } from '../resolve/resolvable';\nimport { PathNode } from '../path/pathNode';\nimport { PolicyWhen } from '../resolve/interface';\nimport { TransitionHook } from '../transition/transitionHook';\nimport { HookResult } from '../transition/interface';\nimport { StateObject } from '../state/stateObject';\n\n/** @hidden */\nfunction uiViewString (uiview: ActiveUIView) {\n if (!uiview) return 'ui-view (defunct)';\n const state = uiview.creationContext ? uiview.creationContext.name || '(root)' : '(none)';\n return `[ui-view#${uiview.id} ${uiview.$type}:${uiview.fqn} (${uiview.name}@${state})]`;\n}\n\n/** @hidden */\nconst viewConfigString = (viewConfig: ViewConfig) => {\n const view = viewConfig.viewDecl;\n const state = view.$context.name || '(root)';\n return `[View#${viewConfig.$id} from '${state}' state]: target ui-view: '${view.$uiViewName}@${view.$uiViewContextAnchor}'`;\n};\n\n/** @hidden */\nfunction normalizedCat(input: Category|string): string {\n return isNumber(input) ? Category[input] : Category[Category[input]];\n}\n\n/** @hidden */\nconst consoleLog = Function.prototype.bind.call(console.log, console);\n\n/** @hidden */\nconst consoletable = isFunction(console.table) ? console.table.bind(console) : consoleLog.bind(console);\n\n\n/**\n * Trace categories Enum\n *\n * Enable or disable a category using [[Trace.enable]] or [[Trace.disable]]\n *\n * `trace.enable(Category.TRANSITION)`\n *\n * These can also be provided using a matching string, or position ordinal\n *\n * `trace.enable(\"TRANSITION\")`\n *\n * `trace.enable(1)`\n */\nexport enum Category {\n RESOLVE, TRANSITION, HOOK, UIVIEW, VIEWCONFIG,\n}\n\n/** @hidden */\nconst _tid = parse('$id');\n\n/** @hidden */\nconst _rid = parse('router.$id');\n\n/** @hidden */\nconst transLbl = (trans) => `Transition #${_tid(trans)}-${_rid(trans)}`;\n\n/**\n * Prints UI-Router Transition trace information to the console.\n */\nexport class Trace {\n /** @hidden */\n approximateDigests: number;\n\n /** @hidden */\n private _enabled: { [key: string]: boolean } = {};\n\n /** @hidden */\n constructor() {\n this.approximateDigests = 0;\n }\n\n /** @hidden */\n private _set(enabled: boolean, categories: Category[]) {\n if (!categories.length) {\n categories = <any> Object.keys(Category)\n .map(k => parseInt(k, 10))\n .filter(k => !isNaN(k))\n .map(key => Category[key]);\n }\n categories.map(normalizedCat).forEach(category => this._enabled[category] = enabled);\n }\n\n /**\n * Enables a trace [[Category]]\n *\n * ```js\n * trace.enable(\"TRANSITION\");\n * ```\n *\n * @param categories categories to enable. If `categories` is omitted, all categories are enabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n enable(...categories: (Category|string|number)[]);\n enable(...categories: any[]) { this._set(true, categories); }\n /**\n * Disables a trace [[Category]]\n *\n * ```js\n * trace.disable(\"VIEWCONFIG\");\n * ```\n *\n * @param categories categories to disable. If `categories` is omitted, all categories are disabled.\n * Also takes strings (category name) or ordinal (category position)\n */\n disable(...categories: (Category|string|number)[]);\n disable(...categories: any[]) { this._set(false, categories); }\n\n /**\n * Retrieves the enabled stateus of a [[Category]]\n *\n * ```js\n * trace.enabled(\"VIEWCONFIG\"); // true or false\n * ```\n *\n * @returns boolean true if the category is enabled\n */\n enabled(category: (Category|string|number)): boolean {\n rLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { StateDeclaration } from '../state/interface';\nimport { Predicate } from '../common/common';\n\nimport { Transition } from './transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TargetState } from '../state/targetState';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * The TransitionOptions object can be used to change the behavior of a transition.\n *\n * It is passed as the third argument to [[StateService.go]], [[StateService.transitionTo]].\n * It can also be used with a `uiSref`.\n */\nexport interface TransitionOptions {\n /**\n * This option changes how the Transition interacts with the browser's location bar (URL).\n *\n * - If `true`, it will update the url in the location bar.\n * - If `false`, it will not update the url in the location bar.\n * - If it is the string `\"replace\"`, it will update the url and also replace the last history record.\n *\n * @default `true`\n */\n location ?: (boolean|string);\n\n /**\n * When transitioning to relative path (e.g '`^`'), this option defines which state to be relative from.\n * @default `$state.current`\n */\n relative ?: (string|StateDeclaration|StateObject);\n\n /**\n * This option sets whether or not the transition's parameter values should be inherited from\n * the current parameter values.\n *\n * - If `true`, it will inherit parameter values from the current parameter values.\n * - If `false`, only the parameters which are provided to `transitionTo` will be used.\n *\n * @default `false`\n */\n inherit ?: boolean;\n\n /**\n * @deprecated\n */\n notify ?: boolean;\n\n /**\n * This option may be used to force states which are currently active to reload.\n *\n * During a normal transition, a state is \"retained\" if:\n * - It was previously active\n * - The state's parameter values have not changed\n * - All the parent states' parameter values have not changed\n *\n * Forcing a reload of a state will cause it to be exited and entered, which will:\n * - Refetch that state's resolve data\n * - Exit the state (onExit hook)\n * - Re-enter the state (onEnter hook)\n * - Re-render the views (controllers and templates)\n *\n * - When `true`, the destination state (and all parent states) will be reloaded.\n * - When it is a string and is the name of a state, or when it is a State object,\n * that state and any children states will be reloaded.\n *\n * @default `false`\n */\n reload ?: (boolean|string|StateDeclaration|StateObject);\n /**\n * You can define your own Transition Options inside this property and use them, e.g., from a Transition Hook\n */\n custom ?: any;\n /** @internalapi */\n reloadState ?: (StateObject);\n /** @internalapi\n * If this transition is a redirect, this property should be the original Transition (which was redirected to this one)\n */\n redirectedFrom?: Transition;\n /** @internalapi */\n current ?: () => Transition;\n /** @internalapi */\n source ?: 'sref' | 'url' | 'redirect' | 'otherwise' | 'unknown';\n}\n\n/** @internalapi */\nexport interface TransitionHookOptions {\n current ?: () => Transition; // path?\n transition ?: Transition;\n hookType ?: string;\n target ?: any;\n traceData ?: any;\n bind ?: any;\n stateHook ?: boolean;\n}\n\n/**\n * TreeChanges encapsulates the various Paths that are involved in a Transition.\n *\n * Get a TreeChanges object using [[Transition.treeChanges]]\n *\n * A UI-Router Transition is from one Path in a State Tree to another Path. For a given Transition,\n * this object stores the \"to\" and \"from\" paths, as well as subsets of those: the \"retained\",\n * \"exiting\" and \"entering\" paths.\n *\n * Each path in TreeChanges is an array of [[PathNode]] objects. Each PathNode in the array corresponds to a portion\n * of a nested state.\n *\n * For example, if you had a nested state named `foo.bar.baz`, it would have three\n * portions, `foo, bar, baz`. If you transitioned **to** `foo.bar.baz` and inspected the [[TreeChanges.to]]\n * Path, you would find a node in the array for each portion: `foo`, `bar`, and `baz`.\n *\n * ---\n *\n * @todo show visual state tree\n */\nexport interface TreeChanges {\n /** @nodoc */\n [key: string]: PathNode[];\n\n /** The path of nodes in the state tree that the transition is coming *from* */\n from: PathNode[];\n\n /** The path of nodes in the state tree that the transition is going *to* */\n to: PathNode[];\n\n /**\n * The path of active nodes that the transition is retaining.\n *\n * These nodes are neither exited, nor entered.\n * Before and after the transition is successful, these nodes are active.\n */\n retained: PathNode[];\n\n /**\n * The pathLine truncated
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"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateDeclaration, StateOrName, TargetStateDef } from './interface';\nimport { TransitionOptions } from '../transition/interface';\nimport { StateObject } from './stateObject';\nimport { isString } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { extend } from '../common';\nimport { StateRegistry } from './stateRegistry';\nimport { RawParams } from '../params';\n\n/**\n * Encapsulate the target (destination) state/params/options of a [[Transition]].\n *\n * This class is frequently used to redirect a transition to a new destination.\n *\n * See:\n *\n * - [[HookResult]]\n * - [[TransitionHookFn]]\n * - [[TransitionService.onStart]]\n *\n * To create a `TargetState`, use [[StateService.target]].\n *\n * ---\n *\n * This class wraps:\n *\n * 1) an identifier for a state\n * 2) a set of parameters\n * 3) and transition options\n * 4) the registered state object (the [[StateDeclaration]])\n *\n * Many UI-Router APIs such as [[StateService.go]] take a [[StateOrName]] argument which can\n * either be a *state object* (a [[StateDeclaration]] or [[StateObject]]) or a *state name* (a string).\n * The `TargetState` class normalizes those options.\n *\n * A `TargetState` may be valid (the state being targeted exists in the registry)\n * or invalid (the state being targeted is not registered).\n */\nexport class TargetState {\n private _definition: StateObject;\n private _params: RawParams;\n private _options: TransitionOptions;\n\n /** Returns true if the object has a state property that might be a state or state name */\n static isDef = (obj): obj is TargetStateDef =>\n obj && obj.state && (isString(obj.state) || isString(obj.state.name));\n\n /**\n * The TargetState constructor\n *\n * Note: Do not construct a `TargetState` manually.\n * To create a `TargetState`, use the [[StateService.target]] factory method.\n *\n * @param _stateRegistry The StateRegistry to use to look up the _definition\n * @param _identifier An identifier for a state.\n * Either a fully-qualified state name, or the object used to define the state.\n * @param _params Parameters for the target state\n * @param _options Transition options.\n *\n * @internalapi\n */\n constructor(\n private _stateRegistry: StateRegistry,\n private _identifier: StateOrName,\n _params?: RawParams,\n _options?: TransitionOptions,\n ) {\n this._identifier = _identifier;\n this._params = extend({}, _params || {});\n this._options = extend({}, _options || {});\n this._definition = _stateRegistry.matcher.find(_identifier, this._options.relative);\n }\n\n /** The name of the state this object targets */\n name(): string {\n return this._definition && this._definition.name || <string> this._identifier;\n }\n\n /** The identifier used when creating this TargetState */\n identifier(): StateOrName {\n return this._identifier;\n }\n\n /** The target parameter values */\n params(): RawParams {\n return this._params;\n }\n\n /** The internal state object (if it was found) */\n $state(): StateObject {\n return this._definition;\n }\n\n /** The internal state declaration (if it was found) */\n state(): StateDeclaration {\n return this._definition && this._definition.self;\n }\n\n /** The target options */\n options() {\n return this._options;\n }\n\n /** True if the target state was found */\n exists(): boolean {\n return !!(this._definition && this._definition.self);\n }\n\n /** True if the object is valid */\n valid(): boolean {\n return !this.error();\n }\n\n /** If the object is invalid, returns the reason why */\n error(): string {\n const base = <any> this.options().relative;\n if (!this._definition && !!base) {\n const stateName = base.name ? base.name : base;\n return `Could not resolve '${this.name()}' from state '${stateName}'`;\n }\n if (!this._definition)\n return `No such state '${this.name()}'`;\n if (!this._definition.self)\n return `State '${this.name()}' has an invalid definition`;\n }\n\n toString() {\n return `'${this.name()}'${stringify(this.params())}`;\n }\n\n /**\n * Returns a copy of this TargetState which targets a different state.\n * The new TargetState has the same parameter values and transition options.\n *\n * @param state The new state that should be targeted\n */\n withState(state: StateOrName): TargetState {\n return new TargetState(this._stateRegistry, state, this._params, this._options);\n }\n\n /**\n * Returns a copy of this TargetState, using the specified parameter values.\n *\n * @param params the new parameter values to use\n * @param replace When false (default) the new parameter values will be merged with the current values.\n * When true the parameter values will be used instead of the current values.\n */\n withParams(params: RLine truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { TransitionHookOptions, HookResult, TransitionHookPhase } from './interface';\nimport { defaults, noop, silentRejection } from '../common/common';\nimport { fnToString, maxLength } from '../common/strings';\nimport { isPromise } from '../common/predicates';\nimport { is, parse } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { Rejection } from './rejectFactory';\nimport { TargetState } from '../state/targetState';\nimport { Transition } from './transition';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\nimport { StateDeclaration } from '../state/interface';\n\nconst defaultOptions: TransitionHookOptions = {\n current: noop,\n transition: null,\n traceData: {},\n bind: null,\n};\n\nexport type GetResultHandler = (hook: TransitionHook) => ResultHandler;\nexport type GetErrorHandler = (hook: TransitionHook) => ErrorHandler;\n\nexport type ResultHandler = (result: HookResult) => Promise<HookResult>;\nexport type ErrorHandler = (error: any) => Promise<any>;\n\n/** @hidden */\nexport class TransitionHook {\n type: TransitionEventType;\n\n /**\n * These GetResultHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetResultHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static HANDLE_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) =>\n hook.handleHookResult(result);\n\n /**\n * If the result is a promise rejection, log it.\n * Otherwise, ignore the result.\n */\n static LOG_REJECTED_RESULT: GetResultHandler = (hook: TransitionHook) => (result: HookResult) => {\n isPromise(result) && result.catch(err =>\n hook.logError(Rejection.normalize(err)));\n return undefined;\n }\n\n /**\n * These GetErrorHandler(s) are used by [[invokeHook]] below\n * Each HookType chooses a GetErrorHandler (See: [[TransitionService._defineCoreEvents]])\n */\n static LOG_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) =>\n hook.logError(error);\n\n static REJECT_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) =>\n silentRejection(error);\n\n static THROW_ERROR: GetErrorHandler = (hook: TransitionHook) => (error: any) => {\n throw error;\n }\n\n /**\n * Chains together an array of TransitionHooks.\n *\n * Given a list of [[TransitionHook]] objects, chains them together.\n * Each hook is invoked after the previous one completes.\n *\n * #### Example:\n * ```js\n * var hooks: TransitionHook[] = getHooks();\n * let promise: Promise<any> = TransitionHook.chain(hooks);\n *\n * promise.then(handleSuccess, handleError);\n * ```\n *\n * @param hooks the list of hooks to chain together\n * @param waitFor if provided, the chain is `.then()`'ed off this promise\n * @returns a `Promise` for sequentially invoking the hooks (in order)\n */\n static chain(hooks: TransitionHook[], waitFor?: Promise<any>): Promise<any> {\n // Chain the next hook off the previous\n const createHookChainR = (prev: Promise<any>, nextHook: TransitionHook) =>\n prev.then(() => nextHook.invokeHook());\n return hooks.reduce(createHookChainR, waitFor || services.$q.when());\n }\n\n\n /**\n * Invokes all the provided TransitionHooks, in order.\n * Each hook's return value is checked.\n * If any hook returns a promise, then the rest of the hooks are chained off that promise, and the promise is returned.\n * If no hook returns a promise, then all hooks are processed synchronously.\n *\n * @param hooks the list of TransitionHooks to invoke\n * @param doneCallback a callback that is invoked after all the hooks have successfully completed\n *\n * @returns a promise for the async result, or the result of the callback\n */\n static invokeHooks<T>(hooks: TransitionHook[], doneCallback: (result?: HookResult) => T): Promise<any> | T {\n for (let idx = 0; idx < hooks.length; idx++) {\n const hookResult = hooks[idx].invokeHook();\n\n if (isPromise(hookResult)) {\n const remainingHooks = hooks.slice(idx + 1);\n\n return TransitionHook.chain(remainingHooks, hookResult)\n .then(doneCallback);\n }\n }\n\n return doneCallback();\n }\n\n /**\n * Run all TransitionHooks, ignoring their return value.\n */\n static runAllHooks(hooks: TransitionHook[]): void {\n hooks.forEach(hook => hook.invokeHook());\n }\n\n constructor(private transition: Transition,\n private stateContext: StateDeclaration,\n private registeredHook: RegisteredHook,\n private options: TransitionHookOptions) {\n this.options = defaults(options, defaultOptions);\n this.type = registeredHook.eventType;\n }\n\n private isSuperseded = () =>\n this.type.hookPhase === TranLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\nimport { isString, isFunction, Glob, extend, removeFrom, tail, values, identity, mapObj } from '../common';\nimport { PathNode } from '../path/pathNode';\nimport {\n TransitionStateHookFn, TransitionHookFn, TransitionHookPhase, // has or is using\n TransitionHookScope, IHookRegistry, PathType,\n} from './interface';\n\nimport { HookRegOptions, HookMatchCriteria, TreeChanges, HookMatchCriterion, IMatchingNodes, HookFn } from './interface';\nimport { StateObject } from '../state/stateObject';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionService } from './transitionService';\n\n/**\n * Determines if the given state matches the matchCriteria\n *\n * @hidden\n *\n * @param state a State Object to test against\n * @param criterion\n * - If a string, matchState uses the string as a glob-matcher against the state name\n * - If an array (of strings), matchState uses each string in the array as a glob-matchers against the state name\n * and returns a positive match if any of the globs match.\n * - If a function, matchState calls the function with the state and returns true if the function's result is truthy.\n * @returns {boolean}\n */\nexport function matchState(state: StateObject, criterion: HookMatchCriterion) {\n const toMatch = isString(criterion) ? [criterion] : criterion;\n\n function matchGlobs(_state: StateObject) {\n const globStrings = <string[]> toMatch;\n for (let i = 0; i < globStrings.length; i++) {\n const glob = new Glob(globStrings[i]);\n\n if ((glob && glob.matches(_state.name)) || (!glob && globStrings[i] === _state.name)) {\n return true;\n }\n }\n return false;\n }\n\n const matchFn = <any> (isFunction(toMatch) ? toMatch : matchGlobs);\n return !!matchFn(state);\n}\n\n/**\n * @internalapi\n * The registration data for a registered transition hook\n */\nexport class RegisteredHook {\n priority: number;\n bind: any;\n invokeCount = 0;\n invokeLimit: number;\n _deregistered = false;\n\n constructor(public tranSvc: TransitionService,\n public eventType: TransitionEventType,\n public callback: HookFn,\n public matchCriteria: HookMatchCriteria,\n public removeHookFromRegistry: (hook: RegisteredHook) => void,\n options: HookRegOptions = {} as any) {\n this.priority = options.priority || 0;\n this.bind = options.bind || null;\n this.invokeLimit = options.invokeLimit;\n }\n\n /**\n * Gets the matching [[PathNode]]s\n *\n * Given an array of [[PathNode]]s, and a [[HookMatchCriterion]], returns an array containing\n * the [[PathNode]]s that the criteria matches, or `null` if there were no matching nodes.\n *\n * Returning `null` is significant to distinguish between the default\n * \"match-all criterion value\" of `true` compared to a `() => true` function,\n * when the nodes is an empty array.\n *\n * This is useful to allow a transition match criteria of `entering: true`\n * to still match a transition, even when `entering === []`. Contrast that\n * with `entering: (state) => true` which only matches when a state is actually\n * being entered.\n */\n private _matchingNodes(nodes: PathNode[], criterion: HookMatchCriterion): PathNode[] {\n if (criterion === true) return nodes;\n const matching = nodes.filter(node => matchState(node.state, criterion));\n return matching.length ? matching : null;\n }\n\n /**\n * Gets the default match criteria (all `true`)\n *\n * Returns an object which has all the criteria match paths as keys and `true` as values, i.e.:\n *\n * ```js\n * {\n * to: true,\n * from: true,\n * entering: true,\n * exiting: true,\n * retained: true,\n * }\n */\n private _getDefaultMatchCriteria(): HookMatchCriteria {\n return mapObj(this.tranSvc._pluginapi._getPathTypes(), () => true);\n }\n\n /**\n * Gets matching nodes as [[IMatchingNodes]]\n *\n * Create a IMatchingNodes object from the TransitionHookTypes that is roughly equivalent to:\n *\n * ```js\n * let matches: IMatchingNodes = {\n * to: _matchingNodes([tail(treeChanges.to)], mc.to),\n * from: _matchingNodes([tail(treeChanges.from)], mc.from),\n * exiting: _matchingNodes(treeChanges.exiting, mc.exiting),\n * retained: _matchingNodes(treeChanges.retained, mc.retained),\n * entering: _matchingNodes(treeChanges.entering, mc.entering),\n * };\n * ```\n */\n private _getMatchingNodes(treeChanges: TreeChanges): IMatchingNodes {\n const criteria = extend(this._getDefaultMatchCriteria(), this.matchCriteria);\n const paths: PathType[] = values(this.tranSvc._pluginapi._getPathTypes());\n\n return paths.reduce((mn: IMatchingNodes, pathtype: PathType) => {\n // STATE scope criteria matches against every node in the path.\n // TRANSITION scope criteria matcLine truncated
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"/**\n * @coreapi\n * @module transition\n */ /** for typedoc */\n\nimport { extend, tail, assertPredicate, unnestR, identity } from '../common/common';\nimport { isArray } from '../common/predicates';\n\nimport {\n TransitionOptions, TransitionHookOptions, IHookRegistry, TreeChanges, IMatchingNodes,\n TransitionHookPhase, TransitionHookScope,\n} from './interface';\n\nimport { Transition } from './transition';\nimport { TransitionHook } from './transitionHook';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { TransitionService } from './transitionService';\nimport { TransitionEventType } from './transitionEventType';\nimport { RegisteredHook } from './hookRegistry';\n\n/**\n * This class returns applicable TransitionHooks for a specific Transition instance.\n *\n * Hooks ([[RegisteredHook]]) may be registered globally, e.g., $transitions.onEnter(...), or locally, e.g.\n * myTransition.onEnter(...). The HookBuilder finds matching RegisteredHooks (where the match criteria is\n * determined by the type of hook)\n *\n * The HookBuilder also converts RegisteredHooks objects to TransitionHook objects, which are used to run a Transition.\n *\n * The HookBuilder constructor is given the $transitions service and a Transition instance. Thus, a HookBuilder\n * instance may only be used for one specific Transition object. (side note: the _treeChanges accessor is private\n * in the Transition class, so we must also provide the Transition's _treeChanges)\n *\n */\nexport class HookBuilder {\n constructor(private transition: Transition) { }\n\n buildHooksForPhase(phase: TransitionHookPhase): TransitionHook[] {\n const $transitions = this.transition.router.transitionService;\n return $transitions._pluginapi._getEvents(phase)\n .map(type => this.buildHooks(type))\n .reduce(unnestR, [])\n .filter(identity);\n }\n\n /**\n * Returns an array of newly built TransitionHook objects.\n *\n * - Finds all RegisteredHooks registered for the given `hookType` which matched the transition's [[TreeChanges]].\n * - Finds [[PathNode]] (or `PathNode[]`) to use as the TransitionHook context(s)\n * - For each of the [[PathNode]]s, creates a TransitionHook\n *\n * @param hookType the type of the hook registration function, e.g., 'onEnter', 'onFinish'.\n */\n buildHooks(hookType: TransitionEventType): TransitionHook[] {\n const transition = this.transition;\n const treeChanges = transition.treeChanges();\n\n // Find all the matching registered hooks for a given hook type\n const matchingHooks = this.getMatchingHooks(hookType, treeChanges);\n if (!matchingHooks) return [];\n\n const baseHookOptions = <TransitionHookOptions> {\n transition: transition,\n current: transition.options().current,\n };\n\n const makeTransitionHooks = (hook: RegisteredHook) => {\n // Fetch the Nodes that caused this hook to match.\n const matches: IMatchingNodes = hook.matches(treeChanges);\n // Select the PathNode[] that will be used as TransitionHook context objects\n const matchingNodes: PathNode[] = matches[hookType.criteriaMatchPath.name];\n\n // Return an array of HookTuples\n return matchingNodes.map(node => {\n const _options = extend({\n bind: hook.bind,\n traceData: { hookType: hookType.name, context: node },\n }, baseHookOptions);\n\n const state = hookType.criteriaMatchPath.scope === TransitionHookScope.STATE ? node.state.self : null;\n const transitionHook = new TransitionHook(transition, state, hook, _options);\n return <HookTuple> { hook, node, transitionHook };\n });\n };\n\n return matchingHooks.map(makeTransitionHooks)\n .reduce(unnestR, [])\n .sort(tupleSort(hookType.reverseSort))\n .map(tuple => tuple.transitionHook);\n }\n\n /**\n * Finds all RegisteredHooks from:\n * - The Transition object instance hook registry\n * - The TransitionService ($transitions) global hook registry\n *\n * which matched:\n * - the eventType\n * - the matchCriteria (to, from, exiting, retained, entering)\n *\n * @returns an array of matched [[RegisteredHook]]s\n */\n public getMatchingHooks(hookType: TransitionEventType, treeChanges: TreeChanges): RegisteredHook[] {\n const isCreate = hookType.hookPhase === TransitionHookPhase.CREATE;\n\n // Instance and Global hook registries\n const $transitions = this.transition.router.transitionService;\n const registries = isCreate ? [ $transitions ] : [ this.transition, $transitions ];\n\n return registries.map((reg: IHookRegistry) => reg.getHooks(hookType.name)) // Get named hooks from registries\n .filter(assertPredicate(isArray, `broken event named: ${hookType.name}`)) // Sanity check\n .reduce(unnestR, []) // Un-nest RegisteredHook[][] to RegLine truncated
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"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, filter, map } from '../common/common';\nimport { isArray, isDefined } from '../common/predicates';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * An internal class which implements [[ParamTypeDefinition]].\n *\n * A [[ParamTypeDefinition]] is a plain javascript object used to register custom parameter types.\n * When a param type definition is registered, an instance of this class is created internally.\n *\n * This class has naive implementations for all the [[ParamTypeDefinition]] methods.\n *\n * Used by [[UrlMatcher]] when matching or formatting URLs, or comparing and validating parameter values.\n *\n * #### Example:\n * ```js\n * var paramTypeDef = {\n * decode: function(val) { return parseInt(val, 10); },\n * encode: function(val) { return val && val.toString(); },\n * equals: function(a, b) { return this.is(a) && a === b; },\n * is: function(val) { return angular.isNumber(val) && isFinite(val) && val % 1 === 0; },\n * pattern: /\\d+/\n * }\n *\n * var paramType = new ParamType(paramTypeDef);\n * ```\n * @internalapi\n */\nexport class ParamType implements ParamTypeDefinition {\n /** @inheritdoc */\n pattern: RegExp = /.*/;\n /** The name/id of the parameter type */\n name: string;\n /** @inheritdoc */\n raw: boolean;\n /** @inheritdoc */\n dynamic: boolean;\n /** @inheritdoc */\n inherit = true;\n\n /**\n * @param def A configuration object which contains the custom type definition. The object's\n * properties will override the default methods and/or pattern in `ParamType`'s public interface.\n * @returns a new ParamType object\n */\n constructor(def: ParamTypeDefinition) {\n extend(this, def);\n }\n\n\n // consider these four methods to be \"abstract methods\" that should be overridden\n /** @inheritdoc */\n is(val: any, key?: string): boolean { return true; }\n /** @inheritdoc */\n encode(val: any, key?: string): (string|string[]) { return val; }\n /** @inheritdoc */\n decode(val: string, key?: string): any { return val; }\n /** @inheritdoc */\n equals(a: any, b: any): boolean { return a == b; } // tslint:disable-line:triple-equals\n\n\n $subPattern() {\n const sub = this.pattern.toString();\n return sub.substr(1, sub.length - 2);\n }\n\n toString() {\n return `{ParamType:${this.name}}`;\n }\n\n /** Given an encoded string, or a decoded object, returns a decoded object */\n $normalize(val: any) {\n return this.is(val) ? val : this.decode(val);\n }\n\n /**\n * Wraps an existing custom ParamType as an array of ParamType, depending on 'mode'.\n * e.g.:\n * - urlmatcher pattern \"/path?{queryParam[]:int}\"\n * - url: \"/path?queryParam=1&queryParam=2\n * - $stateParams.queryParam will be [1, 2]\n * if `mode` is \"auto\", then\n * - url: \"/path?queryParam=1 will create $stateParams.queryParam: 1\n * - url: \"/path?queryParam=1&queryParam=2 will create $stateParams.queryParam: [1, 2]\n */\n $asArray(mode: (boolean|'auto'), isSearch: boolean) {\n if (!mode) return this;\n if (mode === 'auto' && !isSearch) throw new Error(\"'auto' array mode is for query parameters only\");\n return new (<any> ArrayType)(this, mode);\n }\n}\n\n/**\n * Wraps up a `ParamType` object to handle array values.\n * @internalapi\n */\nfunction ArrayType(type: ParamType, mode: (boolean|'auto')) {\n // Wrap non-array value as array\n function arrayWrap(val: any): any[] {\n return isArray(val) ? val : (isDefined(val) ? [ val ] : []);\n }\n\n // Unwrap array value for \"auto\" mode. Return undefined for empty array.\n function arrayUnwrap(val: any) {\n switch (val.length) {\n case 0: return undefined;\n case 1: return mode === 'auto' ? val[0] : val;\n default: return val;\n }\n }\n\n // Wraps type (.is/.encode/.decode) functions to operate on each value of an array\n function arrayHandler(callback: (x: any) => any, allTruthyMode?: boolean) {\n return function handleArray(val: any) {\n if (isArray(val) && val.length === 0) return val;\n const arr = arrayWrap(val);\n const result = map(arr, callback);\n return (allTruthyMode === true) ? filter(result, x => !x).length === 0 : arrayUnwrap(result);\n };\n }\n\n // Wraps type (.equals) functions to operate on each value of an array\n function arrayEqualsHandler(callback: (l: any, r: any) => boolean) {\n return function handleArray(val1: any, val2: any) {\n const left = arrayWrap(val1), right = arrayWrap(val2);\n if (left.length !== right.length) return false;\n for (let i = 0; i < left.length; i++) {\n if (!callback(left[i], right[i])) return false;\n }\n return true;\n };\n }\n\n ['encode', 'decode', 'equals', '$normalize'].forEach(name => {\n const paramTypeFn = type[name].bind(type);\n const wrapperFn: Function = name === 'equals' ? arrayEqualsHandler : arrayHandler;\n this[name] = wrapperFnLine truncated
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"/**\n * @coreapi\n * @module params\n */ /** for typedoc */\nimport { extend, filter, map, allTrueR } from '../common/common';\nimport { prop } from '../common/hof';\nimport { isInjectable, isDefined, isString, isArray, isUndefined } from '../common/predicates';\nimport { RawParams, ParamDeclaration } from '../params/interface';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypes } from './paramTypes';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\n\n/** @hidden */\nconst hasOwn = Object.prototype.hasOwnProperty;\n\n/** @hidden */\nconst isShorthand = (cfg: ParamDeclaration) =>\n ['value', 'type', 'squash', 'array', 'dynamic'].filter(hasOwn.bind(cfg || {})).length === 0;\n\n/** @internalapi */\nexport enum DefType {\n PATH,\n SEARCH,\n CONFIG,\n}\n\n/** @hidden */\nfunction unwrapShorthand(cfg: ParamDeclaration): ParamDeclaration {\n cfg = isShorthand(cfg) && { value: cfg } as any || cfg;\n\n getStaticDefaultValue['__cacheable'] = true;\n function getStaticDefaultValue() {\n return cfg.value;\n }\n\n return extend(cfg, {\n $$fn: isInjectable(cfg.value) ? cfg.value : getStaticDefaultValue,\n });\n}\n\n/** @hidden */\nfunction getType(cfg: ParamDeclaration, urlType: ParamType, location: DefType, id: string, paramTypes: ParamTypes) {\n if (cfg.type && urlType && urlType.name !== 'string') throw new Error(`Param '${id}' has two type configurations.`);\n if (cfg.type && urlType && urlType.name === 'string' && paramTypes.type(cfg.type as string)) return paramTypes.type(cfg.type as string);\n if (urlType) return urlType;\n if (!cfg.type) {\n const type = location === DefType.CONFIG ? 'any' :\n location === DefType.PATH ? 'path' :\n location === DefType.SEARCH ? 'query' : 'string';\n return paramTypes.type(type);\n }\n return cfg.type instanceof ParamType ? cfg.type : paramTypes.type(cfg.type as string);\n}\n\n/**\n * @internalapi\n * returns false, true, or the squash value to indicate the \"default parameter url squash policy\".\n */\nfunction getSquashPolicy(config: ParamDeclaration, isOptional: boolean, defaultPolicy: (boolean|string)) {\n const squash = config.squash;\n if (!isOptional || squash === false) return false;\n if (!isDefined(squash) || squash == null) return defaultPolicy;\n if (squash === true || isString(squash)) return squash;\n throw new Error(`Invalid squash policy: '${squash}'. Valid policies: false, true, or arbitrary string`);\n}\n\n/** @internalapi */\nfunction getReplace(config: ParamDeclaration, arrayMode: boolean, isOptional: boolean, squash: (string|boolean)) {\n const defaultPolicy = [\n { from: '', to: (isOptional || arrayMode ? undefined : '') },\n { from: null, to: (isOptional || arrayMode ? undefined : '') },\n ];\n\n const replace = isArray(config.replace) ? config.replace : [];\n if (isString(squash)) replace.push({ from: squash, to: undefined });\n\n const configuredKeys = map(replace, prop('from'));\n return filter(defaultPolicy, item => configuredKeys.indexOf(item.from) === -1).concat(replace);\n}\n\n\n/** @internalapi */\nexport class Param {\n id: string;\n type: ParamType;\n location: DefType;\n isOptional: boolean;\n dynamic: boolean;\n raw: boolean;\n squash: (boolean|string);\n replace: [{ to: any, from: any }];\n inherit: boolean;\n array: boolean;\n config: any;\n /** Cache the default value if it is a static value */\n _defaultValueCache: {\n defaultValue: any,\n };\n\n static values(params: Param[], values: RawParams = {}): RawParams {\n const paramValues = {} as RawParams;\n for (const param of params) {\n paramValues[param.id] = param.value(values[param.id]);\n }\n return paramValues;\n }\n\n /**\n * Finds [[Param]] objects which have different param values\n *\n * Filters a list of [[Param]] objects to only those whose parameter values differ in two param value objects\n *\n * @param params: The list of Param objects to filter\n * @param values1: The first set of parameter values\n * @param values2: the second set of parameter values\n *\n * @returns any Param objects whose values were different between values1 and values2\n */\n static changed(params: Param[], values1: RawParams = {}, values2: RawParams = {}): Param[] {\n return params.filter(param => !param.type.equals(values1[param.id], values2[param.id]));\n }\n\n /**\n * Checks if two param value objects are equal (for a set of [[Param]] objects)\n *\n * @param params The list of [[Param]] objects to check\n * @param values1 The first set of param values\n * @param values2 The second set of param values\n *\n * @returns true if the param values in values1 and values2 are equal\n */\n static equals(params: Param[], values1 = {}, values2 = {}): boolean {\n return Param.changed(params, values1, values2).length === 0;\n }\n\n /** Returns true if a the parameter values are valid, accorLine truncated
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"/** @module path */ /** for typedoc */\nimport { extend, applyPairs, find, allTrueR, pairs, arrayTuples } from '../common/common';\nimport { propEq } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\n\n/**\n * @internalapi\n *\n * A node in a [[TreeChanges]] path\n *\n * For a [[TreeChanges]] path, this class holds the stateful information for a single node in the path.\n * Each PathNode corresponds to a state being entered, exited, or retained.\n * The stateful information includes parameter values and resolve data.\n */\nexport class PathNode {\n /** The state being entered, exited, or retained */\n public state: StateObject;\n /** The parameters declared on the state */\n public paramSchema: Param[];\n /** The parameter values that belong to the state */\n public paramValues: { [key: string]: any };\n /** The individual (stateful) resolvable objects that belong to the state */\n public resolvables: Resolvable[];\n /** The state's declared view configuration objects */\n public views: ViewConfig[];\n\n /**\n * Returns a clone of the PathNode\n * @deprecated use instance method `node.clone()`\n */\n static clone = (node: PathNode) => node.clone();\n\n /** Creates a copy of a PathNode */\n constructor(node: PathNode);\n /** Creates a new (empty) PathNode for a State */\n constructor(state: StateObject);\n constructor(stateOrNode: any) {\n if (stateOrNode instanceof PathNode) {\n const node: PathNode = stateOrNode;\n this.state = node.state;\n this.paramSchema = node.paramSchema.slice();\n this.paramValues = extend({}, node.paramValues);\n this.resolvables = node.resolvables.slice();\n this.views = node.views && node.views.slice();\n } else {\n const state: StateObject = stateOrNode;\n this.state = state;\n this.paramSchema = state.parameters({ inherit: false });\n this.paramValues = {};\n this.resolvables = state.resolvables.map(res => res.clone());\n }\n }\n\n clone() {\n return new PathNode(this);\n }\n\n /** Sets [[paramValues]] for the node, from the values of an object hash */\n applyRawParams(params: RawParams): PathNode {\n const getParamVal = (paramDef: Param) => [ paramDef.id, paramDef.value(params[paramDef.id]) ];\n this.paramValues = this.paramSchema.reduce((memo, pDef) => applyPairs(memo, getParamVal(pDef)), {});\n return this;\n }\n\n /** Gets a specific [[Param]] metadata that belongs to the node */\n parameter(name: string): Param {\n return find(this.paramSchema, propEq('id', name));\n }\n\n /**\n * @returns true if the state and parameter values for another PathNode are\n * equal to the state and param values for this PathNode\n */\n equals(node: PathNode, paramsFn?: GetParamsFn): boolean {\n const diff = this.diff(node, paramsFn);\n return diff && diff.length === 0;\n }\n\n /**\n * Finds Params with different parameter values on another PathNode.\n *\n * Given another node (of the same state), finds the parameter values which differ.\n * Returns the [[Param]] (schema objects) whose parameter values differ.\n *\n * Given another node for a different state, returns `false`\n *\n * @param node The node to compare to\n * @param paramsFn A function that returns which parameters should be compared.\n * @returns The [[Param]]s which differ, or null if the two nodes are for different states\n */\n diff(node: PathNode, paramsFn?: GetParamsFn): Param[] | false {\n if (this.state !== node.state) return false;\n\n const params: Param[] = paramsFn ? paramsFn(this) : this.paramSchema;\n return Param.changed(params, this.paramValues, node.paramValues);\n }\n}\n\n/** @hidden */\nexport type GetParamsFn = (pathNode: PathNode) => Param[];\n",
|
||||
"/** @module path */ /** for typedoc */\n\nimport {\n extend, find, pick, omit, tail, mergeR, values, unnestR, Predicate, inArray, arrayTuples,\n} from '../common/common';\nimport { prop, propEq, not } from '../common/hof';\n\nimport { RawParams } from '../params/interface';\nimport { TreeChanges } from '../transition/interface';\nimport { ViewConfig } from '../view/interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { GetParamsFn, PathNode } from './pathNode';\nimport { ViewService } from '../view/view';\nimport { Param } from '../params/param';\nimport { StateRegistry } from '../state';\n\n/**\n * This class contains functions which convert TargetStates, Nodes and paths from one type to another.\n */\nexport class PathUtils {\n /** Given a PathNode[], create an TargetState */\n static makeTargetState(registry: StateRegistry, path: PathNode[]): TargetState {\n const state = tail(path).state;\n return new TargetState(registry, state, path.map(prop('paramValues')).reduce(mergeR, {}), {});\n }\n\n static buildPath(targetState: TargetState) {\n const toParams = targetState.params();\n return targetState.$state().path.map(state => new PathNode(state).applyRawParams(toParams));\n }\n\n /** Given a fromPath: PathNode[] and a TargetState, builds a toPath: PathNode[] */\n static buildToPath(fromPath: PathNode[], targetState: TargetState): PathNode[] {\n const toPath: PathNode[] = PathUtils.buildPath(targetState);\n if (targetState.options().inherit) {\n return PathUtils.inheritParams(fromPath, toPath, Object.keys(targetState.params()));\n }\n return toPath;\n }\n\n /**\n * Creates ViewConfig objects and adds to nodes.\n *\n * On each [[PathNode]], creates ViewConfig objects from the views: property of the node's state\n */\n static applyViewConfigs($view: ViewService, path: PathNode[], states: StateObject[]) {\n // Only apply the viewConfigs to the nodes for the given states\n path.filter(node => inArray(states, node.state)).forEach(node => {\n const viewDecls: _ViewDeclaration[] = values(node.state.views || {});\n const subPath = PathUtils.subPath(path, n => n === node);\n const viewConfigs: ViewConfig[][] = viewDecls.map(view => $view.createViewConfig(subPath, view));\n node.views = viewConfigs.reduce(unnestR, []);\n });\n }\n\n /**\n * Given a fromPath and a toPath, returns a new to path which inherits parameters from the fromPath\n *\n * For a parameter in a node to be inherited from the from path:\n * - The toPath's node must have a matching node in the fromPath (by state).\n * - The parameter name must not be found in the toKeys parameter array.\n *\n * Note: the keys provided in toKeys are intended to be those param keys explicitly specified by some\n * caller, for instance, $state.transitionTo(..., toParams). If a key was found in toParams,\n * it is not inherited from the fromPath.\n */\n static inheritParams(fromPath: PathNode[], toPath: PathNode[], toKeys: string[] = []): PathNode[] {\n function nodeParamVals(path: PathNode[], state: StateObject): RawParams {\n const node: PathNode = find(path, propEq('state', state));\n return extend({}, node && node.paramValues);\n }\n\n const noInherit = fromPath.map(node => node.paramSchema)\n .reduce(unnestR, [])\n .filter(param => !param.inherit)\n .map(prop('id'));\n\n /**\n * Given an [[PathNode]] \"toNode\", return a new [[PathNode]] with param values inherited from the\n * matching node in fromPath. Only inherit keys that aren't found in \"toKeys\" from the node in \"fromPath\"\"\n */\n function makeInheritedParamsNode(toNode: PathNode): PathNode {\n // All param values for the node (may include default key/vals, when key was not found in toParams)\n let toParamVals = extend({}, toNode && toNode.paramValues);\n // limited to only those keys found in toParams\n const incomingParamVals = pick(toParamVals, toKeys);\n toParamVals = omit(toParamVals, toKeys);\n const fromParamVals = omit(nodeParamVals(fromPath, toNode.state) || {}, noInherit);\n // extend toParamVals with any fromParamVals, then override any of those those with incomingParamVals\n const ownParamVals: RawParams = extend(toParamVals, fromParamVals, incomingParamVals);\n return new PathNode(toNode.state).applyRawParams(ownParamVals);\n }\n\n // The param keys specified by the incoming toParams\n return <PathNode[]> toPath.map(makeInheritedParamsNode);\n }\n\n static nonDynamicParams = (node: PathNode): Param[] =>\n node.state.parameters({ inherit: false })\n .filter(param => !param.dynamic);\n\n /**\n * Computes the tree changes (entering, exiting) between a fromPath and toPath.\n */\n static treeChanges(fromPath: PathNode[], toPath: PaLine truncated
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"/**\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { extend, equals, inArray, identity } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { trace } from '../common/trace';\nimport { ResolvePolicy, ResolvableLiteral, resolvePolicies } from './interface';\n\nimport { ResolveContext } from './resolveContext';\nimport { stringify } from '../common/strings';\nimport { isFunction, isObject } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { StateObject } from '../state/stateObject';\nimport { PathNode } from '../path/pathNode';\nimport { isNullOrUndefined } from '../common/predicates';\n\n\n// TODO: explicitly make this user configurable\nexport let defaultResolvePolicy: ResolvePolicy = {\n when: 'LAZY',\n async: 'WAIT',\n};\n\n/**\n * The basic building block for the resolve system.\n *\n * Resolvables encapsulate a state's resolve's resolveFn, the resolveFn's declared dependencies, the wrapped (.promise),\n * and the unwrapped-when-complete (.data) result of the resolveFn.\n *\n * Resolvable.get() either retrieves the Resolvable's existing promise, or else invokes resolve() (which invokes the\n * resolveFn) and returns the resulting promise.\n *\n * Resolvable.get() and Resolvable.resolve() both execute within a context path, which is passed as the first\n * parameter to those fns.\n */\nexport class Resolvable implements ResolvableLiteral {\n token: any;\n policy: ResolvePolicy;\n resolveFn: Function;\n deps: any[];\n\n data: any;\n resolved = false;\n promise: Promise<any> = undefined;\n\n static fromData = (token: any, data: any) =>\n new Resolvable(token, () => data, null, null, data);\n\n /** This constructor creates a Resolvable copy */\n constructor(resolvable: Resolvable)\n\n /** This constructor creates a new Resolvable from the plain old [[ResolvableLiteral]] javascript object */\n constructor(resolvable: ResolvableLiteral)\n\n /**\n * This constructor creates a new `Resolvable`\n *\n * #### Example:\n * ```js\n * var resolvable1 = new Resolvable('mytoken', http => http.get('foo.json').toPromise(), [Http]);\n *\n * var resolvable2 = new Resolvable(UserService, dep => new UserService(dep.data), [SomeDependency]);\n *\n * var resolvable1Clone = new Resolvable(resolvable1);\n * ```\n *\n * @param token The new resolvable's injection token, such as `\"userList\"` (a string) or `UserService` (a class).\n * When this token is used during injection, the resolved value will be injected.\n * @param resolveFn The function that returns the resolved value, or a promise for the resolved value\n * @param deps An array of dependencies, which will be injected into the `resolveFn`\n * @param policy the [[ResolvePolicy]] defines when and how the Resolvable is processed\n * @param data Pre-resolved data. If the resolve value is already known, it may be provided here.\n */\n constructor(token: any, resolveFn: Function, deps?: any[], policy?: ResolvePolicy, data?: any)\n constructor(arg1: any, resolveFn?: Function, deps?: any[], policy?: ResolvePolicy, data?: any) {\n if (arg1 instanceof Resolvable) {\n extend(this, arg1);\n } else if (isFunction(resolveFn)) {\n if (isNullOrUndefined(arg1)) throw new Error('new Resolvable(): token argument is required');\n if (!isFunction(resolveFn)) throw new Error('new Resolvable(): resolveFn argument must be a function');\n\n this.token = arg1;\n this.policy = policy;\n this.resolveFn = resolveFn;\n this.deps = deps || [];\n\n this.data = data;\n this.resolved = data !== undefined;\n this.promise = this.resolved ? services.$q.when(this.data) : undefined;\n } else if (isObject(arg1) && arg1.token && (arg1.hasOwnProperty('resolveFn') || arg1.hasOwnProperty('data'))) {\n const literal = <ResolvableLiteral> arg1;\n return new Resolvable(literal.token, literal.resolveFn, literal.deps, literal.policy, literal.data);\n }\n }\n\n getPolicy(state: StateObject): ResolvePolicy {\n const thisPolicy = this.policy || {};\n const statePolicy = state && state.resolvePolicy || {};\n return {\n when: thisPolicy.when || statePolicy.when || defaultResolvePolicy.when,\n async: thisPolicy.async || statePolicy.async || defaultResolvePolicy.async,\n };\n }\n\n /**\n * Asynchronously resolve this Resolvable's data\n *\n * Given a ResolveContext that this Resolvable is found in:\n * Wait for this Resolvable's dependencies, then invoke this Resolvable's function\n * and update the Resolvable's state\n */\n resolve(resolveContext: ResolveContext, trans?: Transition) {\n const $q = services.$q;\n\n // Gets all dependencies from ResolveContext and wait for them to be resolved\n const getResolvableDependencies = () =>\n $q.all(resolveContext.getDependencies(this).map(resolvable =>\n resolvable.get(resolveConteLine truncated
|
||||
"/**\n * # The Resolve subsystem\n *\n * This subsystem is an asynchronous, hierarchical Dependency Injection system.\n *\n * Typically, resolve is configured on a state using a [[StateDeclaration.resolve]] declaration.\n *\n * @coreapi\n * @module resolve\n */ /** for typedoc */\nimport { Resolvable } from './resolvable';\n\n/**\n * An interface which is similar to an Angular 2 `Provider`\n */\nexport interface ProviderLike {\n provide: any,\n useClass?: any,\n useFactory?: Function,\n useValue?: any,\n useExisting?: any,\n deps?: any[]\n}\n\n/**\n * A plain object used to describe a [[Resolvable]]\n *\n * These objects may be used in the [[StateDeclaration.resolve]] array to declare\n * async data that the state or substates require.\n *\n * #### Example:\n * ```js\n *\n * var state = {\n * name: 'main',\n * resolve: [\n * { token: 'myData', deps: [MyDataApi], resolveFn: (myDataApi) => myDataApi.getData() },\n * ],\n * }\n * ```\n */\nexport interface ResolvableLiteral {\n /**\n * A Dependency Injection token\n *\n * This Resolvable's DI token.\n * The Resolvable will be injectable elsewhere using the token.\n */\n token: any;\n\n /**\n * A function which fetches the Resolvable's data\n *\n * A function which returns one of:\n *\n * - The resolved value (synchronously)\n * - A promise for the resolved value\n * - An Observable of the resolved value(s)\n *\n * This function will be provided the dependencies listed in [[deps]] as its arguments.\n * The resolve system will asynchronously fetch the dependencies before invoking this function.\n */\n resolveFn: Function;\n\n /**\n * Defines the Resolve Policy\n *\n * A policy that defines when to invoke the resolve,\n * and whether to wait for async and unwrap the data\n */\n policy?: ResolvePolicy;\n\n /**\n * The Dependency Injection tokens\n *\n * This is an array of Dependency Injection tokens for the dependencies of the [[resolveFn]].\n *\n * The DI tokens are references to other `Resolvables`, or to other\n * services from the native DI system.\n */\n deps?: any[];\n\n /** Pre-resolved data. */\n data?: any\n}\n\n/**\n * Defines how a resolve is processed during a transition\n *\n * This object is the [[StateDeclaration.resolvePolicy]] property.\n *\n * #### Example:\n * ```js\n * // Fetched when the resolve's state is being entered.\n * // Wait for the promise to resolve.\n * var policy1 = { when: \"LAZY\", async: \"WAIT\" }\n *\n * // Fetched when the Transition is starting.\n * // Do not wait for the returned promise to resolve.\n * // Inject the raw promise/value\n * var policy2 = { when: \"EAGER\", async: \"NOWAIT\" }\n * ```\n *\n * The policy for a given Resolvable is merged from three sources (highest priority first):\n *\n * - 1) Individual resolve definition\n * - 2) State definition\n * - 3) Global default\n *\n * #### Example:\n * ```js\n * // Wait for an Observable to emit one item.\n * // Since `wait` is not specified, it uses the `wait`\n * // policy defined on the state, or the global default\n * // if no `wait` policy is defined on the state\n * var myResolvablePolicy = { async: \"RXWAIT\" }\n * ```\n */\nexport interface ResolvePolicy {\n /**\n * Defines when a Resolvable is resolved (fetched) during a transition\n *\n * - `LAZY` (default)\n * - Resolved as the resolve's state is being entered\n * - `EAGER`\n * - Resolved as the transition is starting\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched when each state is entered.\n * All of `main` resolves are processed before fetching `main.home` resolves.\n * ```js\n * var state = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n *\n * var state = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'LAZY' }, // default\n * }\n * ```\n *\n * #### Example:\n * Resolves for `main` and `main.home` are fetched at the same time when the transition starts.\n * This happens earlier in the lifecycle than when states are entered.\n * All of the `main` and `main.home` resolves are fetched as soon as possible.\n * ```js\n * var mainState = {\n * name: 'main',\n * resolve: mainResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n *\n * var homeState = {\n * name: 'main.home',\n * resolve: homeResolves, // defined elsewhere\n * resolvePolicy: { when: 'EAGER' },\n * }\n * ```\n */\n when?: PolicyWhen;\n\n /**\n * Determines the unwrapping behavior of asynchronous resolve values.\n *\n * - `WAIT` (default)\n * - If a promise is returned from the resolveFn, wait for the promise before proceeding\n * - The unwrapped value from the promise\n * - `NOWAIT`\n * - If a promise is returned from the resolve, do not wait for the Line truncated
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"/** @module resolve */\n/** for typedoc */\nimport { find, tail, uniqR, unnestR, inArray } from '../common/common';\nimport { propEq, not } from '../common/hof';\nimport { trace } from '../common/trace';\nimport { services, $InjectorLike } from '../common/coreservices';\nimport { resolvePolicies, PolicyWhen, ResolvePolicy } from './interface';\nimport { PathNode } from '../path/pathNode';\nimport { Resolvable } from './resolvable';\nimport { StateObject } from '../state/stateObject';\nimport { PathUtils } from '../path/pathUtils';\nimport { stringify } from '../common/strings';\nimport { Transition } from '../transition/transition';\nimport { UIInjector } from '../interface';\nimport { isUndefined } from '../common';\n\nconst whens = resolvePolicies.when;\nconst ALL_WHENS = [whens.EAGER, whens.LAZY];\nconst EAGER_WHENS = [whens.EAGER];\n\n// tslint:disable-next-line:no-inferrable-types\nexport const NATIVE_INJECTOR_TOKEN: string = 'Native Injector';\n\n/**\n * Encapsulates Dependency Injection for a path of nodes\n *\n * UI-Router states are organized as a tree.\n * A nested state has a path of ancestors to the root of the tree.\n * When a state is being activated, each element in the path is wrapped as a [[PathNode]].\n * A `PathNode` is a stateful object that holds things like parameters and resolvables for the state being activated.\n *\n * The ResolveContext closes over the [[PathNode]]s, and provides DI for the last node in the path.\n */\nexport class ResolveContext {\n _injector: UIInjector;\n\n constructor(private _path: PathNode[]) { }\n\n /** Gets all the tokens found in the resolve context, de-duplicated */\n getTokens(): any[] {\n return this._path.reduce((acc, node) => acc.concat(node.resolvables.map(r => r.token)), []).reduce(uniqR, []);\n }\n\n /**\n * Gets the Resolvable that matches the token\n *\n * Gets the last Resolvable that matches the token in this context, or undefined.\n * Throws an error if it doesn't exist in the ResolveContext\n */\n getResolvable(token: any): Resolvable {\n const matching = this._path.map(node => node.resolvables)\n .reduce(unnestR, [])\n .filter((r: Resolvable) => r.token === token);\n return tail(matching);\n }\n\n /** Returns the [[ResolvePolicy]] for the given [[Resolvable]] */\n getPolicy(resolvable: Resolvable): ResolvePolicy {\n const node = this.findNode(resolvable);\n return resolvable.getPolicy(node.state);\n }\n\n /**\n * Returns a ResolveContext that includes a portion of this one\n *\n * Given a state, this method creates a new ResolveContext from this one.\n * The new context starts at the first node (root) and stops at the node for the `state` parameter.\n *\n * #### Why\n *\n * When a transition is created, the nodes in the \"To Path\" are injected from a ResolveContext.\n * A ResolveContext closes over a path of [[PathNode]]s and processes the resolvables.\n * The \"To State\" can inject values from its own resolvables, as well as those from all its ancestor state's (node's).\n * This method is used to create a narrower context when injecting ancestor nodes.\n *\n * @example\n * `let ABCD = new ResolveContext([A, B, C, D]);`\n *\n * Given a path `[A, B, C, D]`, where `A`, `B`, `C` and `D` are nodes for states `a`, `b`, `c`, `d`:\n * When injecting `D`, `D` should have access to all resolvables from `A`, `B`, `C`, `D`.\n * However, `B` should only be able to access resolvables from `A`, `B`.\n *\n * When resolving for the `B` node, first take the full \"To Path\" Context `[A,B,C,D]` and limit to the subpath `[A,B]`.\n * `let AB = ABCD.subcontext(a)`\n */\n subContext(state: StateObject): ResolveContext {\n return new ResolveContext(PathUtils.subPath(this._path, node => node.state === state));\n }\n\n /**\n * Adds Resolvables to the node that matches the state\n *\n * This adds a [[Resolvable]] (generally one created on the fly; not declared on a [[StateDeclaration.resolve]] block).\n * The resolvable is added to the node matching the `state` parameter.\n *\n * These new resolvables are not automatically fetched.\n * The calling code should either fetch them, fetch something that depends on them,\n * or rely on [[resolvePath]] being called when some state is being entered.\n *\n * Note: each resolvable's [[ResolvePolicy]] is merged with the state's policy, and the global default.\n *\n * @param newResolvables the new Resolvables\n * @param state Used to find the node to put the resolvable on\n */\n addResolvables(newResolvables: Resolvable[], state: StateObject) {\n const node = <PathNode> find(this._path, propEq('state', state));\n const keys = newResolvables.map(r => r.token);\n node.resolvables = node.resolvables.filter(r => keys.indexOf(r.token) === -1).concat(newResolvables);\n }\n\n /**\n * Returns a promise for an array of resolved path Element promises\n *\n * @param when\n * @param traLine truncated
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"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport { trace } from '../common/trace';\nimport { services } from '../common/coreservices';\nimport { stringify } from '../common/strings';\nimport { map, find, extend, mergeR, tail, omit, arrayTuples, unnestR, identity, anyTrueR } from '../common/common';\nimport { isObject, isUndefined } from '../common/predicates';\nimport { prop, propEq, val, not, is } from '../common/hof';\nimport { StateDeclaration, StateOrName } from '../state/interface';\nimport {\n TransitionOptions, TreeChanges, IHookRegistry, TransitionHookPhase, RegisteredHooks, HookRegOptions,\n HookMatchCriteria, TransitionStateHookFn, TransitionHookFn,\n} from './interface'; // has or is using\nimport { TransitionHook } from './transitionHook';\nimport { matchState, makeEvent, RegisteredHook } from './hookRegistry';\nimport { HookBuilder } from './hookBuilder';\nimport { PathNode } from '../path/pathNode';\nimport { PathUtils } from '../path/pathUtils';\nimport { StateObject } from '../state/stateObject';\nimport { TargetState } from '../state/targetState';\nimport { Param } from '../params/param';\nimport { Resolvable } from '../resolve/resolvable';\nimport { ViewConfig } from '../view/interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { RawParams } from '../params/interface';\nimport { ResolvableLiteral } from '../resolve/interface';\n\n/** @hidden */\nconst stateSelf: (_state: StateObject) => StateDeclaration = prop('self');\n\n/**\n * Represents a transition between two states.\n *\n * When navigating to a state, we are transitioning **from** the current state **to** the new state.\n *\n * This object contains all contextual information about the to/from states, parameters, resolves.\n * It has information about all states being entered and exited as a result of the transition.\n */\nexport class Transition implements IHookRegistry {\n\n /** @hidden */\n static diToken = Transition;\n\n /**\n * A unique identifier for the transition.\n *\n * This is an auto incrementing integer, starting from `0`.\n */\n $id: number;\n\n /**\n * A reference to the [[UIRouter]] instance\n *\n * This reference can be used to access the router services, such as the [[StateService]]\n */\n router: UIRouter;\n\n /** @hidden */\n private _deferred = services.$q.defer();\n /**\n * This promise is resolved or rejected based on the outcome of the Transition.\n *\n * When the transition is successful, the promise is resolved\n * When the transition is unsuccessful, the promise is rejected with the [[Rejection]] or javascript error\n */\n promise: Promise<any> = this._deferred.promise;\n /**\n * A boolean which indicates if the transition was successful\n *\n * After a successful transition, this value is set to true.\n * After an unsuccessful transition, this value is set to false.\n *\n * The value will be undefined if the transition is not complete\n */\n success: boolean;\n /** @hidden */\n _aborted: boolean;\n /** @hidden */\n private _error: any;\n\n /** @hidden Holds the hook registration functions such as those passed to Transition.onStart() */\n _registeredHooks: RegisteredHooks = { };\n\n /** @hidden */\n private _options: TransitionOptions;\n /** @hidden */\n private _treeChanges: TreeChanges;\n /** @hidden */\n private _targetState: TargetState;\n /** @hidden */\n private _hookBuilder = new HookBuilder(this);\n\n\n /** @hidden */\n onBefore(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onStart(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onExit(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onRetain(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onEnter(criteria: HookMatchCriteria, callback: TransitionStateHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onFinish(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onSuccess(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n /** @inheritdoc */\n onError(criteria: HookMatchCriteria, callback: TransitionHookFn, options?: HookRegOptions): Function { return; }\n\n /** @hidden\n * Creates the transition-level hook registration functions\n * (which can then be used to register hooks)\n */\n private createTransitionHookRegFns() {\n this.router.transitionService._pluginapi._getEvents()\n .filter(type => type.hookPhase !== TransitionHookPhaseLine truncated
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||||
"/**\n * Functions that manipulate strings\n *\n * Although these functions are exported, they are subject to change without notice.\n *\n * @module common_strings\n */ /** */\n\nimport { isString, isArray, isDefined, isNull, isPromise, isInjectable, isObject } from './predicates';\nimport { Rejection } from '../transition/rejectFactory';\nimport { IInjectable, identity, Obj, tail, pushR } from './common';\nimport { pattern, is, not, val, invoke } from './hof';\nimport { Transition } from '../transition/transition';\nimport { Resolvable } from '../resolve/resolvable';\n\n/**\n * Returns a string shortened to a maximum length\n *\n * If the string is already less than the `max` length, return the string.\n * Else return the string, shortened to `max - 3` and append three dots (\"...\").\n *\n * @param max the maximum length of the string to return\n * @param str the input string\n */\nexport function maxLength(max: number, str: string) {\n if (str.length <= max) return str;\n return str.substr(0, max - 3) + '...';\n}\n\n/**\n * Returns a string, with spaces added to the end, up to a desired str length\n *\n * If the string is already longer than the desired length, return the string.\n * Else returns the string, with extra spaces on the end, such that it reaches `length` characters.\n *\n * @param length the desired length of the string to return\n * @param str the input string\n */\nexport function padString(length: number, str: string) {\n while (str.length < length) str += ' ';\n return str;\n}\n\nexport function kebobString(camelCase: string) {\n return camelCase\n .replace(/^([A-Z])/, $1 => $1.toLowerCase()) // replace first char\n .replace(/([A-Z])/g, $1 => '-' + $1.toLowerCase()); // replace rest\n}\n\nfunction _toJson(obj: Obj) {\n return JSON.stringify(obj);\n}\n\nfunction _fromJson(json: string) {\n return isString(json) ? JSON.parse(json) : json;\n}\n\n\nfunction promiseToString(p: Promise<any>) {\n return `Promise(${JSON.stringify(p)})`;\n}\n\nexport function functionToString(fn: Function) {\n const fnStr = fnToString(fn);\n const namedFunctionMatch = fnStr.match(/^(function [^ ]+\\([^)]*\\))/);\n const toStr = namedFunctionMatch ? namedFunctionMatch[1] : fnStr;\n\n const fnName = fn['name'] || '';\n if (fnName && toStr.match(/function \\(/)) {\n return 'function ' + fnName + toStr.substr(9);\n }\n return toStr;\n}\n\nexport function fnToString(fn: IInjectable) {\n const _fn = isArray(fn) ? fn.slice(-1)[0] : fn;\n return _fn && _fn.toString() || 'undefined';\n}\n\nlet stringifyPatternFn: (val: any) => string = null;\nconst stringifyPattern = function(value: any) {\n const isRejection = Rejection.isRejectionPromise;\n\n stringifyPatternFn = <any> stringifyPatternFn || pattern([\n [not(isDefined), val('undefined')],\n [isNull, val('null')],\n [isPromise, val('[Promise]')],\n [isRejection, (x: any) => x._transitionRejection.toString()],\n [is(Rejection), invoke('toString')],\n [is(Transition), invoke('toString')],\n [is(Resolvable), invoke('toString')],\n [isInjectable, functionToString],\n [val(true), identity],\n ]);\n\n return stringifyPatternFn(value);\n};\n\nexport function stringify(o: any) {\n const seen: any[] = [];\n\n function format(value: any) {\n if (isObject(value)) {\n if (seen.indexOf(value) !== -1) return '[circular ref]';\n seen.push(value);\n }\n return stringifyPattern(value);\n }\n\n return JSON.stringify(o, (key, value) => format(value)).replace(/\\\\\"/g, '\"');\n}\n\n/** Returns a function that splits a string on a character or substring */\nexport const beforeAfterSubstr = (char: string) => (str: string): string[] => {\n if (!str) return ['', ''];\n const idx = str.indexOf(char);\n if (idx === -1) return [str, ''];\n return [str.substr(0, idx), str.substr(idx + 1)];\n};\n\nexport const hostRegex = new RegExp('^(?:[a-z]+:)?//[^/]+/');\nexport const stripLastPathElement = (str: string) => str.replace(/\\/[^/]*$/, '');\nexport const splitHash = beforeAfterSubstr('#');\nexport const splitQuery = beforeAfterSubstr('?');\nexport const splitEqual = beforeAfterSubstr('=');\nexport const trimHashVal = (str: string) => str ? str.replace(/^#/, '') : '';\n\n/**\n * Splits on a delimiter, but returns the delimiters in the array\n *\n * #### Example:\n * ```js\n * var splitOnSlashes = splitOnDelim('/');\n * splitOnSlashes(\"/foo\"); // [\"/\", \"foo\"]\n * splitOnSlashes(\"/foo/\"); // [\"/\", \"foo\", \"/\"]\n * ```\n */\nexport function splitOnDelim(delim: string) {\n const re = new RegExp('(' + delim + ')', 'g');\n return (str: string) =>\n str.split(re).filter(identity);\n}\n\n\n/**\n * Reduce fn that joins neighboring strings\n *\n * Given an array of strings, returns a new array\n * where all neighboring strings have been joined.\n *\n * #### Example:\n * ```js\n * let arr = [\"foo\", \"bar\", 1, \"baz\", \"\", \"qux\" ];\n * arr.reduce(joinNeighborsR,Line truncated
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||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { fromJson, toJson, identity, equals, inherit, map, extend, pick } from '../common/common';\nimport { isDefined, isNullOrUndefined } from '../common/predicates';\nimport { is } from '../common/hof';\nimport { services } from '../common/coreservices';\nimport { ParamType } from './paramType';\nimport { ParamTypeDefinition } from './interface';\n\n/**\n * A registry for parameter types.\n *\n * This registry manages the built-in (and custom) parameter types.\n *\n * The built-in parameter types are:\n *\n * - [[string]]\n * - [[path]]\n * - [[query]]\n * - [[hash]]\n * - [[int]]\n * - [[bool]]\n * - [[date]]\n * - [[json]]\n * - [[any]]\n */\nexport class ParamTypes {\n /**\n * Built-in parameter type: `string`\n *\n * This parameter type coerces values to strings.\n * It matches anything (`new RegExp(\".*\")`) in the URL\n */\n static string: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `path`\n *\n * This parameter type is the default type for path parameters.\n * A path parameter is any parameter declared in the path portion of a url\n *\n * - `/foo/:param1/:param2`: two path parameters\n *\n * This parameter type behaves exactly like the [[string]] type with one exception.\n * When matching parameter values in the URL, the `path` type does not match forward slashes `/`.\n *\n * #### Angular 1 note:\n * In ng1, this type is overridden with one that pre-encodes slashes as `~2F` instead of `%2F`.\n * For more details about this angular 1 behavior, see: https://github.com/angular-ui/ui-router/issues/2598\n */\n static path: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `query`\n *\n * This parameter type is the default type for query/search parameters.\n * It behaves the same as the [[string]] parameter type.\n *\n * A query parameter is any parameter declared in the query/search portion of a url\n *\n * - `/bar?param2`: a query parameter\n */\n static query: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `hash`\n *\n * This parameter type is used for the `#` parameter (the hash)\n * It behaves the same as the [[string]] parameter type.\n * @coreapi\n */\n static hash: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `int`\n *\n * This parameter type serializes javascript integers (`number`s which represent an integer) to the URL.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'user',\n * url: '/user/{id:int}'\n * });\n * ```\n * ```js\n * $state.go('user', { id: 1298547 });\n * ```\n *\n * The URL will serialize to: `/user/1298547`.\n *\n * When the parameter value is read, it will be the `number` `1298547`, not the string `\"1298547\"`.\n */\n static int: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `bool`\n *\n * This parameter type serializes `true`/`false` as `1`/`0`\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'inbox',\n * url: '/inbox?{unread:bool}'\n * });\n * ```\n * ```js\n * $state.go('inbox', { unread: true });\n * ```\n *\n * The URL will serialize to: `/inbox?unread=1`.\n *\n * Conversely, if the url is `/inbox?unread=0`, the value of the `unread` parameter will be a `false`.\n */\n static bool: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `date`\n *\n * This parameter type can be used to serialize Javascript dates as parameter values.\n *\n * #### Example:\n * ```js\n * .state({\n * name: 'search',\n * url: '/search?{start:date}'\n * });\n * ```\n * ```js\n * $state.go('search', { start: new Date(2000, 0, 1) });\n * ```\n *\n * The URL will serialize to: `/search?start=2000-01-01`.\n *\n * Conversely, if the url is `/search?start=2016-12-25`, the value of the `start` parameter will be a `Date` object where:\n *\n * - `date.getFullYear() === 2016`\n * - `date.getMonth() === 11` (month is 0-based)\n * - `date.getDate() === 25`\n */\n static date: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `json`\n *\n * This parameter type can be used to serialize javascript objects into the URL using JSON serialization.\n *\n * #### Example:\n * This example serializes an plain javascript object to the URL\n * ```js\n * .state({\n * name: 'map',\n * url: '/map/{coords:json}'\n * });\n * ```\n * ```js\n * $state.go('map', { coords: { x: 10399.2, y: 49071 });\n * ```\n *\n * The URL will serialize to: `/map/%7B%22x%22%3A10399.2%2C%22y%22%3A49071%7D`\n */\n static json: ParamTypeDefinition;\n\n /**\n * Built-in parameter type: `any`\n *\n * This parameter type is used by default for url-less parameters (parameters that do not appear in the URL).\n * This type does not encode or decode.\n * It is compared using a deep `equals` comparison.\n *\n * #### Example:\n * This example definLine truncated
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||||
"/**\n * @coreapi\n * @module params\n */\n/** */\nimport { extend, ancestors, Obj } from '../common/common';\nimport { StateObject } from '../state/stateObject';\n\n/** @internalapi */\nexport class StateParams {\n [key: string]: any;\n\n constructor(params: Obj = {}) {\n extend(this, params);\n }\n\n /**\n * Merges a set of parameters with all parameters inherited between the common parents of the\n * current state and a given destination state.\n *\n * @param {Object} newParams The set of parameters which will be composited with inherited params.\n * @param {Object} $current Internal definition of object representing the current state.\n * @param {Object} $to Internal definition of object representing state to transition to.\n */\n $inherit(newParams: Obj, $current: StateObject, $to: StateObject) {\n let parentParams: string[];\n const parents = ancestors($current, $to),\n inherited: Obj = {},\n inheritList: string[] = [];\n\n for (const i in parents) {\n if (!parents[i] || !parents[i].params) continue;\n parentParams = Object.keys(parents[i].params);\n if (!parentParams.length) continue;\n\n for (const j in parentParams) {\n if (inheritList.indexOf(parentParams[j]) >= 0) continue;\n inheritList.push(parentParams[j]);\n inherited[parentParams[j]] = this[parentParams[j]];\n }\n }\n return extend({}, inherited, newParams);\n }\n}\n\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { Obj, omit, noop, extend, inherit, values, applyPairs, tail, mapObj, identity } from '../common/common';\nimport { isDefined, isFunction, isString, isArray } from '../common/predicates';\nimport { stringify } from '../common/strings';\nimport { prop, pattern, is, pipe, val } from '../common/hof';\nimport { StateDeclaration } from './interface';\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { Param } from '../params/param';\nimport { UrlMatcherFactory } from '../url/urlMatcherFactory';\nimport { UrlMatcher } from '../url/urlMatcher';\nimport { Resolvable } from '../resolve/resolvable';\nimport { services } from '../common/coreservices';\nimport { ResolvePolicy } from '../resolve/interface';\nimport { ParamFactory } from '../url/interface';\n\nconst parseUrl = (url: string): any => {\n if (!isString(url)) return false;\n const root = url.charAt(0) === '^';\n return { val: root ? url.substring(1) : url, root };\n};\n\nexport type BuilderFunction = (state: StateObject, parent?: BuilderFunction) => any;\n\ninterface Builders {\n [key: string]: BuilderFunction[];\n\n name: BuilderFunction[];\n parent: BuilderFunction[];\n data: BuilderFunction[];\n url: BuilderFunction[];\n navigable: BuilderFunction[];\n params: BuilderFunction[];\n views: BuilderFunction[];\n path: BuilderFunction[];\n includes: BuilderFunction[];\n resolvables: BuilderFunction[];\n}\n\n\nfunction nameBuilder(state: StateObject) {\n return state.name;\n}\n\nfunction selfBuilder(state: StateObject) {\n state.self.$$state = () => state;\n return state.self;\n}\n\nfunction dataBuilder(state: StateObject) {\n if (state.parent && state.parent.data) {\n state.data = state.self.data = inherit(state.parent.data, state.data);\n }\n return state.data;\n}\n\nconst getUrlBuilder = ($urlMatcherFactoryProvider: UrlMatcherFactory, root: () => StateObject) =>\nfunction urlBuilder(state: StateObject) {\n const stateDec: StateDeclaration = <any> state;\n\n // For future states, i.e., states whose name ends with `.**`,\n // match anything that starts with the url prefix\n if (stateDec && stateDec.url && stateDec.name && stateDec.name.match(/\\.\\*\\*$/)) {\n stateDec.url += '{remainder:any}'; // match any path (.*)\n }\n\n const parsed = parseUrl(stateDec.url), parent = state.parent;\n const url = !parsed ? stateDec.url : $urlMatcherFactoryProvider.compile(parsed.val, {\n params: state.params || {},\n paramMap: function (paramConfig: any, isSearch: boolean) {\n if (stateDec.reloadOnSearch === false && isSearch) paramConfig = extend(paramConfig || {}, { dynamic: true });\n return paramConfig;\n },\n });\n\n if (!url) return null;\n if (!$urlMatcherFactoryProvider.isMatcher(url)) throw new Error(`Invalid url '${url}' in state '${state}'`);\n return (parsed && parsed.root) ? url : ((parent && parent.navigable) || root()).url.append(<UrlMatcher> url);\n};\n\nconst getNavigableBuilder = (isRoot: (state: StateObject) => boolean) =>\nfunction navigableBuilder(state: StateObject) {\n return !isRoot(state) && state.url ? state : (state.parent ? state.parent.navigable : null);\n};\n\nconst getParamsBuilder = (paramFactory: ParamFactory) =>\nfunction paramsBuilder(state: StateObject): { [key: string]: Param } {\n const makeConfigParam = (config: any, id: string) => paramFactory.fromConfig(id, null, config);\n const urlParams: Param[] = (state.url && state.url.parameters({ inherit: false })) || [];\n const nonUrlParams: Param[] = values(mapObj(omit(state.params || {}, urlParams.map(prop('id'))), makeConfigParam));\n return urlParams.concat(nonUrlParams).map(p => [p.id, p]).reduce(applyPairs, {});\n};\n\nfunction pathBuilder(state: StateObject) {\n return state.parent ? state.parent.path.concat(state) : /*root*/ [state];\n}\n\nfunction includesBuilder(state: StateObject) {\n const includes = state.parent ? extend({}, state.parent.includes) : {};\n includes[state.name] = true;\n return includes;\n}\n\n/**\n * This is a [[StateBuilder.builder]] function for the `resolve:` block on a [[StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * validates the `resolve` property and converts it to a [[Resolvable]] array.\n *\n * resolve: input value can be:\n *\n * {\n * // analyzed but not injected\n * myFooResolve: function() { return \"myFooData\"; },\n *\n * // function.toString() parsed, \"DependencyName\" dep as string (not min-safe)\n * myBarResolve: function(DependencyName) { return DependencyName.fetchSomethingAsPromise() },\n *\n * // Array split; \"DependencyName\" dep as string\n * myBazResolve: [ \"DependencyName\", function(dep) { return dep.fetchSomethingAsPromise() },\n *\n * // Array split; DependencyType dep as token (compared using ===)\n * myQuxResolve: [ DependencyType, function(dep) { return deLine truncated
|
||||
"/** @module state */ /** for typedoc */\nimport { isString } from '../common/predicates';\nimport { StateOrName } from './interface';\nimport { StateObject } from './stateObject';\nimport { values } from '../common/common';\n\nexport class StateMatcher {\n constructor (private _states: { [key: string]: StateObject }) { }\n\n isRelative(stateName: string) {\n stateName = stateName || '';\n return stateName.indexOf('.') === 0 || stateName.indexOf('^') === 0;\n }\n\n\n find(stateOrName: StateOrName, base?: StateOrName, matchGlob = true): StateObject {\n if (!stateOrName && stateOrName !== '') return undefined;\n const isStr = isString(stateOrName);\n let name: string = isStr ? stateOrName : (<any>stateOrName).name;\n\n if (this.isRelative(name)) name = this.resolvePath(name, base);\n const state = this._states[name];\n\n if (state && (isStr || (!isStr && (state === stateOrName || state.self === stateOrName)))) {\n return state;\n } else if (isStr && matchGlob) {\n const _states = values(this._states);\n const matches = _states.filter(_state =>\n _state.__stateObjectCache.nameGlob &&\n _state.__stateObjectCache.nameGlob.matches(name),\n );\n\n if (matches.length > 1) {\n // tslint:disable-next-line:no-console\n console.log(`stateMatcher.find: Found multiple matches for ${name} using glob: `, matches.map(match => match.name));\n }\n return matches[0];\n }\n return undefined;\n }\n\n resolvePath(name: string, base: StateOrName) {\n if (!base) throw new Error(`No reference point given for path '${name}'`);\n\n const baseState: StateObject = this.find(base);\n\n const splitName = name.split('.');\n const pathLength = splitName.length;\n let i = 0, current = baseState;\n\n for (; i < pathLength; i++) {\n if (splitName[i] === '' && i === 0) {\n current = baseState;\n continue;\n }\n if (splitName[i] === '^') {\n if (!current.parent) throw new Error(`Path '${name}' not valid for state '${baseState.name}'`);\n current = current.parent;\n continue;\n }\n break;\n }\n const relName = splitName.slice(i).join('.');\n return current.name + (current.name && relName ? '.' : '') + relName;\n }\n}\n",
|
||||
"/** @module state */ /** for typedoc */\nimport { inArray } from '../common/common';\nimport { isString } from '../common/predicates';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { StateObject } from './stateObject';\nimport { StateBuilder } from './stateBuilder';\nimport { StateRegistryListener, StateRegistry } from './stateRegistry';\nimport { Disposable } from '../interface';\nimport { UrlRouter } from '../url/urlRouter';\nimport { prop } from '../common/hof';\nimport { StateMatcher } from './stateMatcher';\n\n/** @internalapi */\nexport class StateQueueManager implements Disposable {\n queue: StateObject[];\n matcher: StateMatcher;\n\n constructor(\n private $registry: StateRegistry,\n private $urlRouter: UrlRouter,\n public states: { [key: string]: StateObject; },\n public builder: StateBuilder,\n public listeners: StateRegistryListener[]) {\n this.queue = [];\n this.matcher = $registry.matcher;\n }\n\n /** @internalapi */\n dispose() {\n this.queue = [];\n }\n\n register(stateDecl: _StateDeclaration) {\n const queue = this.queue;\n const state = StateObject.create(stateDecl);\n const name = state.name;\n\n if (!isString(name)) throw new Error('State must have a valid name');\n if (this.states.hasOwnProperty(name) || inArray(queue.map(prop('name')), name))\n throw new Error(`State '${name}' is already defined`);\n\n queue.push(state);\n this.flush();\n\n return state;\n }\n\n flush() {\n const { queue, states, builder } = this;\n const registered: StateObject[] = [], // states that got registered\n orphans: StateObject[] = [], // states that don't yet have a parent registered\n previousQueueLength = {}; // keep track of how long the queue when an orphan was first encountered\n const getState = (name) =>\n this.states.hasOwnProperty(name) && this.states[name];\n\n while (queue.length > 0) {\n const state: StateObject = queue.shift();\n const name = state.name;\n const result: StateObject = builder.build(state);\n const orphanIdx: number = orphans.indexOf(state);\n\n if (result) {\n const existingState = getState(name);\n if (existingState && existingState.name === name) {\n throw new Error(`State '${name}' is already defined`);\n }\n\n const existingFutureState = getState(name + '.**');\n if (existingFutureState) {\n // Remove future state of the same name\n this.$registry.deregister(existingFutureState);\n }\n\n states[name] = state;\n this.attachRoute(state);\n if (orphanIdx >= 0) orphans.splice(orphanIdx, 1);\n registered.push(state);\n continue;\n }\n\n const prev = previousQueueLength[name];\n previousQueueLength[name] = queue.length;\n if (orphanIdx >= 0 && prev === queue.length) {\n // Wait until two consecutive iterations where no additional states were dequeued successfully.\n // throw new Error(`Cannot register orphaned state '${name}'`);\n queue.push(state);\n return states;\n } else if (orphanIdx < 0) {\n orphans.push(state);\n }\n\n queue.push(state);\n }\n\n if (registered.length) {\n this.listeners.forEach(listener => listener('registered', registered.map(s => s.self)));\n }\n\n return states;\n }\n\n attachRoute(state: StateObject) {\n if (state.abstract || !state.url) return;\n\n this.$urlRouter.rule(this.$urlRouter.urlRuleFactory.create(state));\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module state\n */ /** for typedoc */\n\nimport { StateObject } from './stateObject';\nimport { StateMatcher } from './stateMatcher';\nimport { StateBuilder } from './stateBuilder';\nimport { StateQueueManager } from './stateQueueManager';\nimport { StateDeclaration, _StateDeclaration } from './interface';\nimport { BuilderFunction } from './stateBuilder';\nimport { StateOrName } from './interface';\nimport { removeFrom } from '../common/common';\nimport { UIRouter } from '../router';\nimport { propEq } from '../common/hof';\n\n/**\n * The signature for the callback function provided to [[StateRegistry.onStatesChanged]].\n *\n * This callback receives two parameters:\n *\n * @param event a string; either \"registered\" or \"deregistered\"\n * @param states the list of [[StateDeclaration]]s that were registered (or deregistered).\n */\nexport type StateRegistryListener = (event: 'registered'|'deregistered', states: StateDeclaration[]) => void;\n\nexport class StateRegistry {\n private _root: StateObject;\n private states: { [key: string]: StateObject } = {};\n\n matcher: StateMatcher;\n private builder: StateBuilder;\n stateQueue: StateQueueManager;\n\n listeners: StateRegistryListener[] = [];\n\n /** @internalapi */\n constructor(private _router: UIRouter) {\n this.matcher = new StateMatcher(this.states);\n this.builder = new StateBuilder(this.matcher, _router.urlMatcherFactory);\n this.stateQueue = new StateQueueManager(this, _router.urlRouter, this.states, this.builder, this.listeners);\n this._registerRoot();\n }\n\n /** @internalapi */\n private _registerRoot() {\n const rootStateDef: StateDeclaration = {\n name: '',\n url: '^',\n views: null,\n params: {\n '#': { value: null, type: 'hash', dynamic: true },\n },\n abstract: true,\n };\n\n const _root = this._root = this.stateQueue.register(rootStateDef);\n _root.navigable = null;\n }\n\n /** @internalapi */\n dispose() {\n this.stateQueue.dispose();\n this.listeners = [];\n this.get().forEach(state => this.get(state) && this.deregister(state));\n }\n\n /**\n * Listen for a State Registry events\n *\n * Adds a callback that is invoked when states are registered or deregistered with the StateRegistry.\n *\n * #### Example:\n * ```js\n * let allStates = registry.get();\n *\n * // Later, invoke deregisterFn() to remove the listener\n * let deregisterFn = registry.onStatesChanged((event, states) => {\n * switch(event) {\n * case: 'registered':\n * states.forEach(state => allStates.push(state));\n * break;\n * case: 'deregistered':\n * states.forEach(state => {\n * let idx = allStates.indexOf(state);\n * if (idx !== -1) allStates.splice(idx, 1);\n * });\n * break;\n * }\n * });\n * ```\n *\n * @param listener a callback function invoked when the registered states changes.\n * The function receives two parameters, `event` and `state`.\n * See [[StateRegistryListener]]\n * @return a function that deregisters the listener\n */\n onStatesChanged(listener: StateRegistryListener): () => void {\n this.listeners.push(listener);\n return function deregisterListener() {\n removeFrom(this.listeners)(listener);\n }.bind(this);\n }\n\n /**\n * Gets the implicit root state\n *\n * Gets the root of the state tree.\n * The root state is implicitly created by UI-Router.\n * Note: this returns the internal [[StateObject]] representation, not a [[StateDeclaration]]\n *\n * @return the root [[StateObject]]\n */\n root() {\n return this._root;\n }\n\n /**\n * Adds a state to the registry\n *\n * Registers a [[StateDeclaration]] or queues it for registration.\n *\n * Note: a state will be queued if the state's parent isn't yet registered.\n *\n * @param stateDefinition the definition of the state to register.\n * @returns the internal [[StateObject]] object.\n * If the state was successfully registered, then the object is fully built (See: [[StateBuilder]]).\n * If the state was only queued, then the object is not fully built.\n */\n register(stateDefinition: _StateDeclaration): StateObject {\n return this.stateQueue.register(stateDefinition);\n }\n\n /** @hidden */\n private _deregisterTree(state: StateObject) {\n const all = this.get().map(s => s.$$state());\n const getChildren = (states: StateObject[]) => {\n const _children = all.filter(s => states.indexOf(s.parent) !== -1);\n return _children.length === 0 ? _children : _children.concat(getChildren(_children));\n };\n\n const children = getChildren([state]);\n const deregistered: StateObject[] = [state].concat(children).reverse();\n\n deregistered.forEach(_state => {\n const $ur = this._router.urlRouter;\n // Remove URL rule\n $ur.rules().filter(propEq('state', Line truncated
|
||||
"/**\n * @coreapi\n * @module url\n */\n/** for typedoc */\nimport {\n map, defaults, inherit, identity, unnest, tail, find, Obj, pairs, allTrueR, unnestR, arrayTuples,\n} from '../common/common';\nimport { prop, propEq } from '../common/hof';\nimport { isArray, isString, isDefined } from '../common/predicates';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { RawParams } from '../params/interface';\nimport { ParamFactory } from './interface';\nimport { joinNeighborsR, splitOnDelim } from '../common/strings';\n\n/** @hidden */\nfunction quoteRegExp(str: any, param?: any) {\n let surroundPattern = ['', ''], result = str.replace(/[\\\\\\[\\]\\^$*+?.()|{}]/g, '\\\\$&');\n if (!param) return result;\n\n switch (param.squash) {\n case false:\n surroundPattern = ['(', ')' + (param.isOptional ? '?' : '')]; break;\n case true:\n result = result.replace(/\\/$/, '');\n surroundPattern = ['(?:\\/(', ')|\\/)?'];\n break;\n default:\n surroundPattern = [`(${param.squash}|`, ')?']; break;\n }\n return result + surroundPattern[0] + param.type.pattern.source + surroundPattern[1];\n}\n\n/** @hidden */\nconst memoizeTo = (obj: Obj, _prop: string, fn: Function) =>\n obj[_prop] = obj[_prop] || fn();\n\n/** @hidden */\nconst splitOnSlash = splitOnDelim('/');\n\n/** @hidden */\ninterface UrlMatcherCache {\n segments?: any[];\n weights?: number[];\n path?: UrlMatcher[];\n parent?: UrlMatcher;\n pattern?: RegExp;\n}\n\n/**\n * Matches URLs against patterns.\n *\n * Matches URLs against patterns and extracts named parameters from the path or the search\n * part of the URL.\n *\n * A URL pattern consists of a path pattern, optionally followed by '?' and a list of search (query)\n * parameters. Multiple search parameter names are separated by '&'. Search parameters\n * do not influence whether or not a URL is matched, but their values are passed through into\n * the matched parameters returned by [[UrlMatcher.exec]].\n *\n * - *Path parameters* are defined using curly brace placeholders (`/somepath/{param}`)\n * or colon placeholders (`/somePath/:param`).\n *\n * - *A parameter RegExp* may be defined for a param after a colon\n * (`/somePath/{param:[a-zA-Z0-9]+}`) in a curly brace placeholder.\n * The regexp must match for the url to be matched.\n * Should the regexp itself contain curly braces, they must be in matched pairs or escaped with a backslash.\n *\n * Note: a RegExp parameter will encode its value using either [[ParamTypes.path]] or [[ParamTypes.query]].\n *\n * - *Custom parameter types* may also be specified after a colon (`/somePath/{param:int}`) in curly brace parameters.\n * See [[UrlMatcherFactory.type]] for more information.\n *\n * - *Catch-all parameters* are defined using an asterisk placeholder (`/somepath/*catchallparam`).\n * A catch-all * parameter value will contain the remainder of the URL.\n *\n * ---\n *\n * Parameter names may contain only word characters (latin letters, digits, and underscore) and\n * must be unique within the pattern (across both path and search parameters).\n * A path parameter matches any number of characters other than '/'. For catch-all\n * placeholders the path parameter matches any number of characters.\n *\n * Examples:\n *\n * * `'/hello/'` - Matches only if the path is exactly '/hello/'. There is no special treatment for\n * trailing slashes, and patterns have to match the entire path, not just a prefix.\n * * `'/user/:id'` - Matches '/user/bob' or '/user/1234!!!' or even '/user/' but not '/user' or\n * '/user/bob/details'. The second path segment will be captured as the parameter 'id'.\n * * `'/user/{id}'` - Same as the previous example, but using curly brace syntax.\n * * `'/user/{id:[^/]*}'` - Same as the previous example.\n * * `'/user/{id:[0-9a-fA-F]{1,8}}'` - Similar to the previous example, but only matches if the id\n * parameter consists of 1 to 8 hex digits.\n * * `'/files/{path:.*}'` - Matches any URL starting with '/files/' and captures the rest of the\n * path into the parameter 'path'.\n * * `'/files/*path'` - ditto.\n * * `'/calendar/{start:date}'` - Matches \"/calendar/2014-11-12\" (because the pattern defined\n * in the built-in `date` ParamType matches `2014-11-12`) and provides a Date object in $stateParams.start\n *\n */\nexport class UrlMatcher {\n /** @hidden */\n static nameValidator: RegExp = /^\\w+([-.]+\\w+)*(?:\\[\\])?$/;\n\n /** @hidden */\n private _cache: UrlMatcherCache = { path: [this] };\n /** @hidden */\n private _children: UrlMatcher[] = [];\n /** @hidden */\n private _params: Param[] = [];\n /** @hidden */\n private _segments: string[] = [];\n /** @hidden */\n private _compiled: string[] = [];\n\n /** The pattern that was passed into the constructor */\n public pattern: string;\n\n /** @hidden */\n static encodeDashes(str: string) { // Replace dashes with encoded \"\\-\"\n returnLine truncated
|
||||
"/**\n * @internalapi\n * @module url\n */ /** for typedoc */\nimport { forEach, extend } from '../common/common';\nimport { isObject, isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { Param, DefType } from '../params/param';\nimport { ParamTypes } from '../params/paramTypes';\nimport { ParamTypeDefinition } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { ParamType } from '../params/paramType';\nimport { ParamFactory, UrlMatcherConfig } from './interface';\n\n/**\n * Factory for [[UrlMatcher]] instances.\n *\n * The factory is available to ng1 services as\n * `$urlMatcherFactory` or ng1 providers as `$urlMatcherFactoryProvider`.\n */\nexport class UrlMatcherFactory implements Disposable, UrlMatcherConfig {\n /** @hidden */ paramTypes = new ParamTypes();\n /** @hidden */ _isCaseInsensitive = false;\n /** @hidden */ _isStrictMode = true;\n /** @hidden */ _defaultSquashPolicy: (boolean|string) = false;\n\n /** @internalapi Creates a new [[Param]] for a given location (DefType) */\n paramFactory: ParamFactory = {\n /** Creates a new [[Param]] from a CONFIG block */\n fromConfig: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.CONFIG, this),\n\n /** Creates a new [[Param]] from a url PATH */\n fromPath: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.PATH, this),\n\n /** Creates a new [[Param]] from a url SEARCH */\n fromSearch: (id: string, type: ParamType, config: any) =>\n new Param(id, type, config, DefType.SEARCH, this),\n };\n\n constructor() {\n extend(this, { UrlMatcher, Param });\n }\n\n /** @inheritdoc */\n caseInsensitive(value?: boolean): boolean {\n return this._isCaseInsensitive = isDefined(value) ? value : this._isCaseInsensitive;\n }\n\n /** @inheritdoc */\n strictMode(value?: boolean): boolean {\n return this._isStrictMode = isDefined(value) ? value : this._isStrictMode;\n }\n\n /** @inheritdoc */\n defaultSquashPolicy(value?: (boolean|string)) {\n if (isDefined(value) && value !== true && value !== false && !isString(value))\n throw new Error(`Invalid squash policy: ${value}. Valid policies: false, true, arbitrary-string`);\n return this._defaultSquashPolicy = isDefined(value) ? value : this._defaultSquashPolicy;\n }\n\n /** @hidden */\n private _getConfig = (config) =>\n extend({ strict: this._isStrictMode, caseInsensitive: this._isCaseInsensitive }, config);\n\n /**\n * Creates a [[UrlMatcher]] for the specified pattern.\n *\n * @param pattern The URL pattern.\n * @param config The config object hash.\n * @returns The UrlMatcher.\n */\n compile(pattern: string, config?: { [key: string]: any }) {\n return new UrlMatcher(pattern, this.paramTypes, this.paramFactory, this._getConfig(config));\n }\n\n /**\n * Returns true if the specified object is a [[UrlMatcher]], or false otherwise.\n *\n * @param object The object to perform the type check against.\n * @returns `true` if the object matches the `UrlMatcher` interface, by\n * implementing all the same methods.\n */\n isMatcher(object: any): boolean {\n // TODO: typeof?\n if (!isObject(object)) return false;\n let result = true;\n\n forEach(UrlMatcher.prototype, (val, name) => {\n if (isFunction(val)) result = result && (isDefined(object[name]) && isFunction(object[name]));\n });\n return result;\n }\n\n /**\n * Creates and registers a custom [[ParamType]] object\n *\n * A [[ParamType]] can be used to generate URLs with typed parameters.\n *\n * @param name The type name.\n * @param definition The type definition. See [[ParamTypeDefinition]] for information on the values accepted.\n * @param definitionFn A function that is injected before the app runtime starts.\n * The result of this function should be a [[ParamTypeDefinition]].\n * The result is merged into the existing `definition`.\n * See [[ParamType]] for information on the values accepted.\n *\n * @returns - if a type was registered: the [[UrlMatcherFactory]]\n * - if only the `name` parameter was specified: the currently registered [[ParamType]] object, or undefined\n *\n * Note: Register custom types *before using them* in a state definition.\n *\n * See [[ParamTypeDefinition]] for examples\n */\n type(name: string, definition?: ParamTypeDefinition, definitionFn?: () => ParamTypeDefinition) {\n const type = this.paramTypes.type(name, definition, definitionFn);\n return !isDefined(definition) ? type : this;\n }\n\n /** @hidden */\n $get() {\n this.paramTypes.enqueue = false;\n this.paramTypes._flushTypeQueue();\n return this;\n }\n\n /** @internalapi */\n dispose() {\n this.paramTypes.dispose();\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\nimport { UrlMatcher } from './urlMatcher';\nimport { isString, isDefined, isFunction, isState } from '../common/predicates';\nimport { UIRouter } from '../router';\nimport { identity, extend } from '../common/common';\nimport { is, pattern } from '../common/hof';\nimport { StateObject } from '../state/stateObject';\nimport { RawParams } from '../params/interface';\nimport {\n UrlRule, UrlRuleMatchFn, UrlRuleHandlerFn, UrlRuleType, UrlParts, MatcherUrlRule, StateRule, RegExpRule,\n} from './interface';\n\n/**\n * Creates a [[UrlRule]]\n *\n * Creates a [[UrlRule]] from a:\n *\n * - `string`\n * - [[UrlMatcher]]\n * - `RegExp`\n * - [[StateObject]]\n * @internalapi\n */\nexport class UrlRuleFactory {\n static isUrlRule = obj =>\n obj && ['type', 'match', 'handler'].every(key => isDefined(obj[key]));\n\n constructor(public router: UIRouter) { }\n\n compile(str: string) {\n return this.router.urlMatcherFactory.compile(str);\n }\n\n create(what: string|UrlMatcher|StateObject|RegExp|UrlRuleMatchFn, handler?: string|UrlRuleHandlerFn): UrlRule {\n const makeRule = pattern([\n [isString, (_what: string) => makeRule(this.compile(_what))],\n [is(UrlMatcher), (_what: UrlMatcher) => this.fromUrlMatcher(_what, handler)],\n [isState, (_what: StateObject) => this.fromState(_what, this.router)],\n [is(RegExp), (_what: RegExp) => this.fromRegExp(_what, handler)],\n [isFunction, (_what: UrlRuleMatchFn) => new BaseUrlRule(_what, handler as UrlRuleHandlerFn)],\n ]);\n\n const rule = makeRule(what);\n if (!rule) throw new Error(\"invalid 'what' in when()\");\n return rule;\n }\n\n /**\n * A UrlRule which matches based on a UrlMatcher\n *\n * The `handler` may be either a `string`, a [[UrlRuleHandlerFn]] or another [[UrlMatcher]]\n *\n * ## Handler as a function\n *\n * If `handler` is a function, the function is invoked with:\n *\n * - matched parameter values ([[RawParams]] from [[UrlMatcher.exec]])\n * - url: the current Url ([[UrlParts]])\n * - router: the router object ([[UIRouter]])\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, match => \"/home/\" + match.fooId + \"/\" + match.barId);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n *\n * ## Handler as UrlMatcher\n *\n * If `handler` is a UrlMatcher, the handler matcher is used to create the new url.\n * The `handler` UrlMatcher is formatted using the matched param from the first matcher.\n * The url is replaced with the result.\n *\n * #### Example:\n * ```js\n * var urlMatcher = $umf.compile(\"/foo/:fooId/:barId\");\n * var handler = $umf.compile(\"/home/:fooId/:barId\");\n * var rule = factory.fromUrlMatcher(urlMatcher, handler);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match); // '/home/123/456'\n * ```\n */\n fromUrlMatcher(urlMatcher: UrlMatcher, handler: string|UrlMatcher|UrlRuleHandlerFn): MatcherUrlRule {\n let _handler: UrlRuleHandlerFn = handler as any;\n if (isString(handler)) handler = this.router.urlMatcherFactory.compile(handler);\n if (is(UrlMatcher)(handler)) _handler = (match: RawParams) => (handler as UrlMatcher).format(match);\n\n function matchUrlParamters(url: UrlParts): RawParams {\n const params = urlMatcher.exec(url.path, url.search, url.hash);\n return urlMatcher.validates(params) && params;\n }\n\n // Prioritize URLs, lowest to highest:\n // - Some optional URL parameters, but none matched\n // - No optional parameters in URL\n // - Some optional parameters, some matched\n // - Some optional parameters, all matched\n function matchPriority(params: RawParams): number {\n const optional = urlMatcher.parameters().filter(param => param.isOptional);\n if (!optional.length) return 0.000001;\n const matched = optional.filter(param => params[param.id]);\n return matched.length / optional.length;\n }\n\n const details = { urlMatcher, matchPriority, type: 'URLMATCHER' };\n return extend(new BaseUrlRule(matchUrlParamters, _handler), details) as MatcherUrlRule;\n }\n\n\n /**\n * A UrlRule which matches a state by its url\n *\n * #### Example:\n * ```js\n * var rule = factory.fromState($state.get('foo'), router);\n * var match = rule.match('/foo/123/456'); // results in { fooId: '123', barId: '456' }\n * var result = rule.handler(match);\n * // Starts a transition to 'foo' with params: { fooId: '123', barId: '456' }\n * ```\n */\n fromState(state: StateObject, router: UIRouter): StateRule {\n /**\n * Handles match by transitioning to matched state\n *\n * FirLine truncated
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||||
"/**\n * @internalapi\n * @module url\n */\n/** for typedoc */\nimport { createProxyFunctions, extend, removeFrom } from '../common/common';\nimport { isDefined, isFunction, isString } from '../common/predicates';\nimport { UrlMatcher } from './urlMatcher';\nimport { RawParams } from '../params/interface';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { is, pattern, val } from '../common/hof';\nimport { UrlRuleFactory } from './urlRule';\nimport { TargetState } from '../state/targetState';\nimport { MatcherUrlRule, MatchResult, UrlParts, UrlRule, UrlRuleHandlerFn, UrlRuleMatchFn, UrlRulesApi, UrlSyncApi } from './interface';\nimport { TargetStateDef } from '../state/interface';\nimport { stripLastPathElement } from '../common';\n\n/** @hidden */\nfunction appendBasePath(url: string, isHtml5: boolean, absolute: boolean, baseHref: string): string {\n if (baseHref === '/') return url;\n if (isHtml5) return stripLastPathElement(baseHref) + url;\n if (absolute) return baseHref.slice(1) + url;\n return url;\n}\n\n/** @hidden */\nconst prioritySort = (a: UrlRule, b: UrlRule) =>\n (b.priority || 0) - (a.priority || 0);\n\n/** @hidden */\nconst typeSort = (a: UrlRule, b: UrlRule) => {\n const weights = { 'STATE': 4, 'URLMATCHER': 4, 'REGEXP': 3, 'RAW': 2, 'OTHER': 1 };\n return (weights[a.type] || 0) - (weights[b.type] || 0);\n};\n\n/** @hidden */\nconst urlMatcherSort = (a: MatcherUrlRule, b: MatcherUrlRule) =>\n !a.urlMatcher || !b.urlMatcher ? 0 : UrlMatcher.compare(a.urlMatcher, b.urlMatcher);\n\n/** @hidden */\nconst idSort = (a: UrlRule, b: UrlRule) => {\n // Identically sorted STATE and URLMATCHER best rule will be chosen by `matchPriority` after each rule matches the URL\n const useMatchPriority = { STATE: true, URLMATCHER: true };\n const equal = useMatchPriority[a.type] && useMatchPriority[b.type];\n return equal ? 0 : (a.$id || 0) - (b.$id || 0);\n};\n\n/**\n * Default rule priority sorting function.\n *\n * Sorts rules by:\n *\n * - Explicit priority (set rule priority using [[UrlRulesApi.when]])\n * - Rule type (STATE: 4, URLMATCHER: 4, REGEXP: 3, RAW: 2, OTHER: 1)\n * - `UrlMatcher` specificity ([[UrlMatcher.compare]]): works for STATE and URLMATCHER types to pick the most specific rule.\n * - Rule registration order (for rule types other than STATE and URLMATCHER)\n * - Equally sorted State and UrlMatcher rules will each match the URL.\n * Then, the *best* match is chosen based on how many parameter values were matched.\n *\n * @coreapi\n */\nlet defaultRuleSortFn: (a: UrlRule, b: UrlRule) => number;\ndefaultRuleSortFn = (a, b) => {\n let cmp = prioritySort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = typeSort(a, b);\n if (cmp !== 0) return cmp;\n\n cmp = urlMatcherSort(a as MatcherUrlRule, b as MatcherUrlRule);\n if (cmp !== 0) return cmp;\n\n return idSort(a, b);\n};\n\n/**\n * Updates URL and responds to URL changes\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class updates the URL when the state changes.\n * It also responds to changes in the URL.\n */\nexport class UrlRouter implements UrlRulesApi, UrlSyncApi, Disposable {\n /** used to create [[UrlRule]] objects for common cases */\n public urlRuleFactory: UrlRuleFactory;\n\n /** @hidden */ private _router: UIRouter;\n /** @hidden */ private location: string;\n /** @hidden */ private _sortFn = defaultRuleSortFn;\n /** @hidden */ private _stopFn: Function;\n /** @hidden */ _rules: UrlRule[] = [];\n /** @hidden */ private _otherwiseFn: UrlRule;\n /** @hidden */ interceptDeferred = false;\n /** @hidden */ private _id = 0;\n /** @hidden */ private _sorted = false;\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this.urlRuleFactory = new UrlRuleFactory(router);\n createProxyFunctions(val(UrlRouter.prototype), this, val(this));\n }\n\n /** @internalapi */\n dispose() {\n this.listen(false);\n this._rules = [];\n delete this._otherwiseFn;\n }\n\n /** @inheritdoc */\n sort(compareFn?: (a: UrlRule, b: UrlRule) => number) {\n this._rules = this.stableSort(this._rules, this._sortFn = compareFn || this._sortFn);\n this._sorted = true;\n }\n\n private ensureSorted() {\n this._sorted || this.sort();\n }\n\n private stableSort(arr, compareFn) {\n const arrOfWrapper = arr.map((elem, idx) => ({ elem, idx }));\n\n arrOfWrapper.sort((wrapperA, wrapperB) => {\n const cmpDiff = compareFn(wrapperA.elem, wrapperB.elem);\n return cmpDiff === 0\n ? wrapperA.idx - wrapperB.idx\n : cmpDiff;\n });\n\n return arrOfWrapper.map(wrapper => wrapper.elem);\n }\n\n /**\n * Given a URL, check all rules and return the best [[MatchResult]]\n * @param url\n * @returns {MatchResult}\n */\n match(Line truncated
|
||||
"/**\n * @coreapi\n * @module view\n */ /** for typedoc */\nimport { equals, applyPairs, removeFrom, TypedMap, inArray } from '../common/common';\nimport { curry, prop } from '../common/hof';\nimport { isString, isArray } from '../common/predicates';\nimport { trace } from '../common/trace';\nimport { PathNode } from '../path/pathNode';\nimport { ActiveUIView, ViewContext, ViewConfig } from './interface';\nimport { _ViewDeclaration } from '../state/interface';\n\nexport type ViewConfigFactory = (path: PathNode[], decl: _ViewDeclaration) => ViewConfig|ViewConfig[];\n\nexport interface ViewServicePluginAPI {\n _rootViewContext(context?: ViewContext): ViewContext;\n _viewConfigFactory(viewType: string, factory: ViewConfigFactory);\n _registeredUIViews(): ActiveUIView[];\n _activeViewConfigs(): ViewConfig[];\n _onSync(listener: ViewSyncListener): Function;\n}\n\n// A uiView and its matching viewConfig\nexport interface ViewTuple {\n uiView: ActiveUIView;\n viewConfig: ViewConfig;\n}\n\nexport interface ViewSyncListener {\n (viewTuples: ViewTuple[]): void;\n}\n\n/**\n * The View service\n *\n * This service pairs existing `ui-view` components (which live in the DOM)\n * with view configs (from the state declaration objects: [[StateDeclaration.views]]).\n *\n * - After a successful Transition, the views from the newly entered states are activated via [[activateViewConfig]].\n * The views from exited states are deactivated via [[deactivateViewConfig]].\n * (See: the [[registerActivateViews]] Transition Hook)\n *\n * - As `ui-view` components pop in and out of existence, they register themselves using [[registerUIView]].\n *\n * - When the [[sync]] function is called, the registered `ui-view`(s) ([[ActiveUIView]])\n * are configured with the matching [[ViewConfig]](s)\n *\n */\nexport class ViewService {\n private _uiViews: ActiveUIView[] = [];\n private _viewConfigs: ViewConfig[] = [];\n private _rootContext: ViewContext;\n private _viewConfigFactories: { [key: string]: ViewConfigFactory } = {};\n private _listeners: ViewSyncListener[] = [];\n\n public _pluginapi: ViewServicePluginAPI = {\n _rootViewContext: this._rootViewContext.bind(this),\n _viewConfigFactory: this._viewConfigFactory.bind(this),\n _registeredUIViews: () => this._uiViews,\n _activeViewConfigs: () => this._viewConfigs,\n _onSync: (listener: ViewSyncListener) => {\n this._listeners.push(listener);\n return () => removeFrom(this._listeners, listener);\n },\n };\n\n /**\n * Given a ui-view and a ViewConfig, determines if they \"match\".\n *\n * A ui-view has a fully qualified name (fqn) and a context object. The fqn is built from its overall location in\n * the DOM, describing its nesting relationship to any parent ui-view tags it is nested inside of.\n *\n * A ViewConfig has a target ui-view name and a context anchor. The ui-view name can be a simple name, or\n * can be a segmented ui-view path, describing a portion of a ui-view fqn.\n *\n * In order for a ui-view to match ViewConfig, ui-view's $type must match the ViewConfig's $type\n *\n * If the ViewConfig's target ui-view name is a simple name (no dots), then a ui-view matches if:\n * - the ui-view's name matches the ViewConfig's target name\n * - the ui-view's context matches the ViewConfig's anchor\n *\n * If the ViewConfig's target ui-view name is a segmented name (with dots), then a ui-view matches if:\n * - There exists a parent ui-view where:\n * - the parent ui-view's name matches the first segment (index 0) of the ViewConfig's target name\n * - the parent ui-view's context matches the ViewConfig's anchor\n * - And the remaining segments (index 1..n) of the ViewConfig's target name match the tail of the ui-view's fqn\n *\n * Example:\n *\n * DOM:\n * <ui-view> <!-- created in the root context (name: \"\") -->\n * <ui-view name=\"foo\"> <!-- created in the context named: \"A\" -->\n * <ui-view> <!-- created in the context named: \"A.B\" -->\n * <ui-view name=\"bar\"> <!-- created in the context named: \"A.B.C\" -->\n * </ui-view>\n * </ui-view>\n * </ui-view>\n * </ui-view>\n *\n * uiViews: [\n * { fqn: \"$default\", creationContext: { name: \"\" } },\n * { fqn: \"$default.foo\", creationContext: { name: \"A\" } },\n * { fqn: \"$default.foo.$default\", creationContext: { name: \"A.B\" } }\n * { fqn: \"$default.foo.$default.bar\", creationContext: { name: \"A.B.C\" } }\n * ]\n *\n * These four view configs all match the ui-view with the fqn: \"$default.foo.$default.bar\":\n *\n * - ViewConfig1: { uiViewName: \"bar\", uiViewContextAnchor: \"A.B.C\" }\n * - ViewConfig2: { uiViewName: \"$default.bar\", uiViewContextAnchor: \"A.B\" }\n * - ViewConfig3: { uiViewName: \"foo.$defLine truncated
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { StateParams } from './params/stateParams';\nimport { StateDeclaration } from './state/interface';\nimport { StateObject } from './state/stateObject';\nimport { Transition } from './transition/transition';\nimport { Queue } from './common/queue';\nimport { Disposable } from './interface';\n\n/**\n * Global router state\n *\n * This is where we hold the global mutable state such as current state, current\n * params, current transition, etc.\n */\nexport class UIRouterGlobals implements Disposable {\n /**\n * Current parameter values\n *\n * The parameter values from the latest successful transition\n */\n params: StateParams = new StateParams();\n\n /**\n * Current state\n *\n * The to-state from the latest successful transition\n */\n current: StateDeclaration;\n\n /**\n * Current state (internal object)\n *\n * The to-state from the latest successful transition\n * @internalapi\n */\n $current: StateObject;\n\n /**\n * The current started/running transition.\n * This transition has reached at least the onStart phase, but is not yet complete\n */\n transition: Transition;\n\n /** @internalapi */\n lastStartedTransitionId = -1;\n\n /** @internalapi */\n transitionHistory = new Queue<Transition>([], 1);\n\n /** @internalapi */\n successfulTransitions = new Queue<Transition>([], 1);\n\n dispose() {\n this.transitionHistory.clear();\n this.successfulTransitions.clear();\n this.transition = null;\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\n\nimport { UIRouter } from '../router';\nimport { LocationServices, notImplemented, LocationConfig } from '../common/coreservices';\nimport { noop, createProxyFunctions } from '../common/common';\nimport { UrlConfigApi, UrlSyncApi, UrlRulesApi, UrlParts, MatchResult } from './interface';\n\n/** @hidden */\nconst makeStub = (keys: string[]): any =>\n keys.reduce((acc, key) => ((acc[key] = notImplemented(key)), acc), { dispose: noop });\n\n/** @hidden */\nconst locationServicesFns = ['url', 'path', 'search', 'hash', 'onChange'];\n/** @hidden */\nconst locationConfigFns = ['port', 'protocol', 'host', 'baseHref', 'html5Mode', 'hashPrefix'];\n/** @hidden */\nconst umfFns = ['type', 'caseInsensitive', 'strictMode', 'defaultSquashPolicy'];\n/** @hidden */\nconst rulesFns = ['sort', 'when', 'initial', 'otherwise', 'rules', 'rule', 'removeRule'];\n/** @hidden */\nconst syncFns = ['deferIntercept', 'listen', 'sync', 'match'];\n\n/**\n * API for URL management\n */\nexport class UrlService implements LocationServices, UrlSyncApi {\n /** @hidden */\n static locationServiceStub: LocationServices = makeStub(locationServicesFns);\n /** @hidden */\n static locationConfigStub: LocationConfig = makeStub(locationConfigFns);\n\n /**\n * A nested API for managing URL rules and rewrites\n *\n * See: [[UrlRulesApi]] for details\n */\n rules: UrlRulesApi;\n\n /**\n * A nested API to configure the URL and retrieve URL information\n *\n * See: [[UrlConfigApi]] for details\n */\n config: UrlConfigApi;\n\n /** @hidden */\n private router: UIRouter;\n\n /** @hidden */\n constructor(router: UIRouter, lateBind = true) {\n this.router = router;\n this.rules = {} as any;\n this.config = {} as any;\n\n // proxy function calls from UrlService to the LocationService/LocationConfig\n const locationServices = () => router.locationService;\n createProxyFunctions(locationServices, this, locationServices, locationServicesFns, lateBind);\n\n const locationConfig = () => router.locationConfig;\n createProxyFunctions(locationConfig, this.config, locationConfig, locationConfigFns, lateBind);\n\n const umf = () => router.urlMatcherFactory;\n createProxyFunctions(umf, this.config, umf, umfFns);\n\n const urlRouter = () => router.urlRouter;\n createProxyFunctions(urlRouter, this.rules, urlRouter, rulesFns);\n createProxyFunctions(urlRouter, this, urlRouter, syncFns);\n }\n\n /** @inheritdoc */\n url(): string;\n /** @inheritdoc */\n url(newurl: string, replace?: boolean, state?): void;\n url(newurl?, replace?, state?): any {\n return;\n }\n /** @inheritdoc */\n path(): string {\n return;\n }\n /** @inheritdoc */\n search(): { [key: string]: any } {\n return;\n }\n /** @inheritdoc */\n hash(): string {\n return;\n }\n /** @inheritdoc */\n onChange(callback: Function): Function {\n return;\n }\n\n /**\n * Returns the current URL parts\n *\n * This method returns the current URL components as a [[UrlParts]] object.\n *\n * @returns the current url parts\n */\n parts(): UrlParts {\n return { path: this.path(), search: this.search(), hash: this.hash() };\n }\n\n dispose() {}\n\n /** @inheritdoc */\n sync(evt?) {\n return;\n }\n /** @inheritdoc */\n listen(enabled?: boolean): Function {\n return;\n }\n /** @inheritdoc */\n deferIntercept(defer?: boolean) {\n return;\n }\n /** @inheritdoc */\n match(urlParts: UrlParts): MatchResult {\n return;\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { UrlMatcherFactory } from './url/urlMatcherFactory';\nimport { UrlRouter } from './url/urlRouter';\nimport { TransitionService } from './transition/transitionService';\nimport { ViewService } from './view/view';\nimport { StateRegistry } from './state/stateRegistry';\nimport { StateService } from './state/stateService';\nimport { UIRouterGlobals } from './globals';\nimport { UIRouterPlugin, Disposable } from './interface';\nimport { values, removeFrom } from './common/common';\nimport { isFunction } from './common/predicates';\nimport { UrlService } from './url/urlService';\nimport { LocationServices, LocationConfig } from './common/coreservices';\nimport { Trace, trace } from './common/trace';\n\n/** @hidden */\nlet _routerInstance = 0;\n\n/**\n * The master class used to instantiate an instance of UI-Router.\n *\n * UI-Router (for each specific framework) will create an instance of this class during bootstrap.\n * This class instantiates and wires the UI-Router services together.\n *\n * After a new instance of the UIRouter class is created, it should be configured for your app.\n * For instance, app states should be registered with the [[UIRouter.stateRegistry]].\n *\n * ---\n *\n * Normally the framework code will bootstrap UI-Router.\n * If you are bootstrapping UIRouter manually, tell it to monitor the URL by calling\n * [[UrlService.listen]] then [[UrlService.sync]].\n */\nexport class UIRouter {\n /** @hidden */ $id = _routerInstance++;\n /** @hidden */ _disposed = false;\n /** @hidden */ private _disposables: Disposable[] = [];\n\n /** Provides trace information to the console */\n trace: Trace = trace;\n\n /** Provides services related to ui-view synchronization */\n viewService = new ViewService();\n\n /** Global router state */\n globals: UIRouterGlobals = new UIRouterGlobals();\n\n /** Provides services related to Transitions */\n transitionService: TransitionService = new TransitionService(this);\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlMatcherFactory: UrlMatcherFactory = new UrlMatcherFactory();\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlRouter: UrlRouter = new UrlRouter(this);\n\n /** Provides a registry for states, and related registration services */\n stateRegistry: StateRegistry = new StateRegistry(this);\n\n /** Provides services related to states */\n stateService = new StateService(this);\n\n /** Provides services related to the URL */\n urlService: UrlService = new UrlService(this);\n\n /** @hidden plugin instances are registered here */\n private _plugins: { [key: string]: UIRouterPlugin } = {};\n\n /** Registers an object to be notified when the router is disposed */\n disposable(disposable: Disposable) {\n this._disposables.push(disposable);\n }\n\n /**\n * Disposes this router instance\n *\n * When called, clears resources retained by the router by calling `dispose(this)` on all\n * registered [[disposable]] objects.\n *\n * Or, if a `disposable` object is provided, calls `dispose(this)` on that object only.\n *\n * @param disposable (optional) the disposable to dispose\n */\n dispose(disposable?: any): void {\n if (disposable && isFunction(disposable.dispose)) {\n disposable.dispose(this);\n return undefined;\n }\n\n this._disposed = true;\n this._disposables.slice().forEach(d => {\n try {\n typeof d.dispose === 'function' && d.dispose(this);\n removeFrom(this._disposables, d);\n } catch (ignored) {}\n });\n }\n\n /**\n * Creates a new `UIRouter` object\n *\n * @param locationService a [[LocationServices]] implementation\n * @param locationConfig a [[LocationConfig]] implementation\n * @internalapi\n */\n constructor(\n public locationService: LocationServices = UrlService.locationServiceStub,\n public locationConfig: LocationConfig = UrlService.locationConfigStub,\n ) {\n this.viewService._pluginapi._rootViewContext(this.stateRegistry.root());\n this.globals.$current = this.stateRegistry.root();\n this.globals.current = this.globals.$current.self;\n\n this.disposable(this.globals);\n this.disposable(this.stateService);\n this.disposable(this.stateRegistry);\n this.disposable(this.transitionService);\n this.disposable(this.urlRouter);\n this.disposable(locationService);\n this.disposable(locationConfig);\n }\n\n /** Add plugin (as ES6 class) */\n plugin<T extends UIRouterPlugin>(plugin: { new (router: UIRouter, options?: any): T }, options?: any): T;\n /** Add plugin (as javascript constructor function) */\n plugin<T extends UIRouterPlugin>(plugin: { (router: UIRouter, options?: any): void }, options?: any): T;\n /** Add plugin (as javascript factory function) */\n plugin<T extends UIRouterPlugin>(plLine truncated
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { UIRouter } from '../router';\nimport { TransitionService } from '../transition/transitionService';\nimport { Resolvable } from '../resolve';\nimport { extend, inArray, map, mapObj, uniqR, unnestR, values } from '../common';\nimport { PathNode } from '../path';\nimport { TreeChanges } from '../transition';\n\nfunction addCoreResolvables(trans: Transition) {\n trans.addResolvable(Resolvable.fromData(UIRouter, trans.router), '');\n trans.addResolvable(Resolvable.fromData(Transition, trans), '');\n trans.addResolvable(Resolvable.fromData('$transition$', trans), '');\n trans.addResolvable(Resolvable.fromData('$stateParams', trans.params()), '');\n\n trans.entering().forEach(state => {\n trans.addResolvable(Resolvable.fromData('$state$', state), state);\n });\n}\n\nexport const registerAddCoreResolvables = (transitionService: TransitionService) =>\n transitionService.onCreate({}, addCoreResolvables);\n\nconst TRANSITION_TOKENS = ['$transition$', Transition];\nconst isTransition = inArray(TRANSITION_TOKENS);\n\n// References to Transition in the treeChanges pathnodes makes all\n// previous Transitions reachable in memory, causing a memory leak\n// This function removes resolves for '$transition$' and `Transition` from the treeChanges.\n// Do not use this on current transitions, only on old ones.\nexport const treeChangesCleanup = (trans: Transition) => {\n const nodes = values(trans.treeChanges())\n .reduce(unnestR, [])\n .reduce(uniqR, []);\n\n // If the resolvable is a Transition, return a new resolvable with null data\n const replaceTransitionWithNull = (r: Resolvable): Resolvable => {\n return isTransition(r.token) ? Resolvable.fromData(r.token, null) : r;\n };\n\n nodes.forEach((node: PathNode) => {\n node.resolvables = node.resolvables.map(replaceTransitionWithNull);\n });\n};\n",
|
||||
"/** @module hooks */ /** */\nimport { isString, isFunction } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { services } from '../common/coreservices';\nimport { TargetState } from '../state/targetState';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\n\n/**\n * A [[TransitionHookFn]] that redirects to a different state or params\n *\n * Registered using `transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectHook);`\n *\n * See [[StateDeclaration.redirectTo]]\n */\nconst redirectToHook: TransitionHookFn = (trans: Transition) => {\n const redirect = trans.to().redirectTo;\n if (!redirect) return;\n\n const $state = trans.router.stateService;\n\n function handleResult(result: any) {\n if (!result) return;\n if (result instanceof TargetState) return result;\n if (isString(result)) return $state.target(<any>result, trans.params(), trans.options());\n if (result['state'] || result['params'])\n return $state.target(result['state'] || trans.to(), result['params'] || trans.params(), trans.options());\n }\n\n if (isFunction(redirect)) {\n return services.$q.when(redirect(trans)).then(handleResult);\n }\n return handleResult(redirect);\n};\n\nexport const registerRedirectToHook = (transitionService: TransitionService) =>\n transitionService.onStart({ to: state => !!state.redirectTo }, redirectToHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { StateDeclaration } from '../state/interface';\nimport { StateObject } from '../state/stateObject';\n\n/**\n * A factory which creates an onEnter, onExit or onRetain transition hook function\n *\n * The returned function invokes the (for instance) state.onEnter hook when the\n * state is being entered.\n *\n * @hidden\n */\nfunction makeEnterExitRetainHook(hookName: string): TransitionStateHookFn {\n return (transition: Transition, state: StateDeclaration) => {\n const _state: StateObject = state.$$state();\n const hookFn: TransitionStateHookFn = _state[hookName];\n return hookFn(transition, state);\n };\n}\n\n/**\n * The [[TransitionStateHookFn]] for onExit\n *\n * When the state is being exited, the state's .onExit function is invoked.\n *\n * Registered using `transitionService.onExit({ exiting: (state) => !!state.onExit }, onExitHook);`\n *\n * See: [[IHookRegistry.onExit]]\n */\nconst onExitHook: TransitionStateHookFn = makeEnterExitRetainHook('onExit');\nexport const registerOnExitHook = (transitionService: TransitionService) =>\n transitionService.onExit({ exiting: state => !!state.onExit }, onExitHook);\n\n/**\n * The [[TransitionStateHookFn]] for onRetain\n *\n * When the state was already entered, and is not being exited or re-entered, the state's .onRetain function is invoked.\n *\n * Registered using `transitionService.onRetain({ retained: (state) => !!state.onRetain }, onRetainHook);`\n *\n * See: [[IHookRegistry.onRetain]]\n */\nconst onRetainHook: TransitionStateHookFn = makeEnterExitRetainHook('onRetain');\nexport const registerOnRetainHook = (transitionService: TransitionService) =>\n transitionService.onRetain({ retained: state => !!state.onRetain }, onRetainHook);\n\n/**\n * The [[TransitionStateHookFn]] for onEnter\n *\n * When the state is being entered, the state's .onEnter function is invoked.\n *\n * Registered using `transitionService.onEnter({ entering: (state) => !!state.onEnter }, onEnterHook);`\n *\n * See: [[IHookRegistry.onEnter]]\n */\nconst onEnterHook: TransitionStateHookFn = makeEnterExitRetainHook('onEnter');\nexport const registerOnEnterHook = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: state => !!state.onEnter }, onEnterHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { noop } from '../common/common';\nimport { Transition } from '../transition/transition';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { TransitionStateHookFn, TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\nimport { val } from '../common/hof';\nimport { StateDeclaration } from '../state/interface';\n\nexport const RESOLVE_HOOK_PRIORITY = 1000;\n\n/**\n * A [[TransitionHookFn]] which resolves all EAGER Resolvables in the To Path\n *\n * Registered using `transitionService.onStart({}, eagerResolvePath, { priority: 1000 });`\n *\n * When a Transition starts, this hook resolves all the EAGER Resolvables, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst eagerResolvePath: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to).resolvePath('EAGER', trans).then(noop);\n\nexport const registerEagerResolvePath = (transitionService: TransitionService) =>\n transitionService.onStart({}, eagerResolvePath, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves all LAZY Resolvables for the state (and all its ancestors) in the To Path\n *\n * Registered using `transitionService.onEnter({ entering: () => true }, lazyResolveState, { priority: 1000 });`\n *\n * When a State is being entered, this hook resolves all the Resolvables for this state, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst lazyResolveState: TransitionStateHookFn = (trans: Transition, state: StateDeclaration) =>\n new ResolveContext(trans.treeChanges().to)\n .subContext(state.$$state())\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerLazyResolveState = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: val(true) }, lazyResolveState, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves any dynamically added (LAZY or EAGER) Resolvables.\n *\n * Registered using `transitionService.onFinish({}, eagerResolvePath, { priority: 1000 });`\n *\n * After all entering states have been entered, this hook resolves any remaining Resolvables.\n * These are typically dynamic resolves which were added by some Transition Hook using [[Transition.addResolvable]].\n *\n * See [[StateDeclaration.resolve]]\n */\nconst resolveRemaining: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to).resolvePath('LAZY', trans).then(noop);\n\nexport const registerResolveRemaining = (transitionService: TransitionService) =>\n transitionService.onFinish({}, resolveRemaining, { priority: RESOLVE_HOOK_PRIORITY });\n",
|
||||
"/** @module hooks */ /** for typedoc */\nimport { noop } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { Transition } from '../transition/transition';\nimport { ViewService } from '../view/view';\nimport { ViewConfig } from '../view/interface';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which waits for the views to load\n *\n * Registered using `transitionService.onStart({}, loadEnteringViews);`\n *\n * Allows the views to do async work in [[ViewConfig.load]] before the transition continues.\n * In angular 1, this includes loading the templates.\n */\nconst loadEnteringViews: TransitionHookFn = (transition: Transition) => {\n const $q = services.$q;\n const enteringViews = transition.views('entering');\n if (!enteringViews.length) return;\n return $q.all(enteringViews.map(view => $q.when(view.load()))).then(noop);\n};\n\nexport const registerLoadEnteringViews = (transitionService: TransitionService) =>\n transitionService.onFinish({}, loadEnteringViews);\n\n/**\n * A [[TransitionHookFn]] which activates the new views when a transition is successful.\n *\n * Registered using `transitionService.onSuccess({}, activateViews);`\n *\n * After a transition is complete, this hook deactivates the old views from the previous state,\n * and activates the new views from the destination state.\n *\n * See [[ViewService]]\n */\nconst activateViews: TransitionHookFn = (transition: Transition) => {\n const enteringViews = transition.views('entering');\n const exitingViews = transition.views('exiting');\n if (!enteringViews.length && !exitingViews.length) return;\n\n const $view: ViewService = transition.router.viewService;\n\n exitingViews.forEach((vc: ViewConfig) => $view.deactivateViewConfig(vc));\n enteringViews.forEach((vc: ViewConfig) => $view.activateViewConfig(vc));\n\n $view.sync();\n};\n\nexport const registerActivateViews = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, activateViews);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { Transition } from '../transition/transition';\nimport { copy } from '../common/common';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates global UI-Router state\n *\n * Registered using `transitionService.onBefore({}, updateGlobalState);`\n *\n * Before a [[Transition]] starts, updates the global value of \"the current transition\" ([[Globals.transition]]).\n * After a successful [[Transition]], updates the global values of \"the current state\"\n * ([[Globals.current]] and [[Globals.$current]]) and \"the current param values\" ([[Globals.params]]).\n *\n * See also the deprecated properties:\n * [[StateService.transition]], [[StateService.current]], [[StateService.params]]\n */\nconst updateGlobalState = (trans: Transition) => {\n const globals = trans.router.globals;\n\n const transitionSuccessful = () => {\n globals.successfulTransitions.enqueue(trans);\n globals.$current = trans.$to();\n globals.current = globals.$current.self;\n\n copy(trans.params(), globals.params);\n };\n\n const clearCurrentTransition = () => {\n // Do not clear globals.transition if a different transition has started in the meantime\n if (globals.transition === trans) globals.transition = null;\n };\n\n trans.onSuccess({}, transitionSuccessful, { priority: 10000 });\n trans.promise.then(clearCurrentTransition, clearCurrentTransition);\n};\n\nexport const registerUpdateGlobalState = (transitionService: TransitionService) =>\n transitionService.onCreate({}, updateGlobalState);\n",
|
||||
"/** @module hooks */ /** */\nimport { UrlRouter } from '../url/urlRouter';\nimport { StateService } from '../state/stateService';\nimport { Transition } from '../transition/transition';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates the URL after a successful transition\n *\n * Registered using `transitionService.onSuccess({}, updateUrl);`\n */\nconst updateUrl: TransitionHookFn = (transition: Transition) => {\n const options = transition.options();\n const $state: StateService = transition.router.stateService;\n const $urlRouter: UrlRouter = transition.router.urlRouter;\n\n // Dont update the url in these situations:\n // The transition was triggered by a URL sync (options.source === 'url')\n // The user doesn't want the url to update (options.location === false)\n // The destination state, and all parents have no navigable url\n if (options.source !== 'url' && options.location && $state.$current.navigable) {\n const urlOptions = { replace: options.location === 'replace' };\n $urlRouter.push($state.$current.navigable.url, $state.params, urlOptions);\n }\n\n $urlRouter.update(true);\n};\n\nexport const registerUpdateUrl = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, updateUrl, { priority: 9999 });\n",
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\nimport { StateDeclaration, LazyLoadResult } from '../state/interface';\nimport { services } from '../common/coreservices';\nimport { StateRule } from '../url/interface';\n\n/**\n * A [[TransitionHookFn]] that performs lazy loading\n *\n * When entering a state \"abc\" which has a `lazyLoad` function defined:\n * - Invoke the `lazyLoad` function (unless it is already in process)\n * - Flag the hook function as \"in process\"\n * - The function should return a promise (that resolves when lazy loading is complete)\n * - Wait for the promise to settle\n * - If the promise resolves to a [[LazyLoadResult]], then register those states\n * - Flag the hook function as \"not in process\"\n * - If the hook was successful\n * - Remove the `lazyLoad` function from the state declaration\n * - If all the hooks were successful\n * - Retry the transition (by returning a TargetState)\n *\n * ```\n * .state('abc', {\n * component: 'fooComponent',\n * lazyLoad: () => System.import('./fooComponent')\n * });\n * ```\n *\n * See [[StateDeclaration.lazyLoad]]\n */\nconst lazyLoadHook: TransitionHookFn = (transition: Transition) => {\n const router = transition.router;\n\n function retryTransition() {\n if (transition.originalTransition().options().source !== 'url') {\n // The original transition was not triggered via url sync\n // The lazy state should be loaded now, so re-try the original transition\n const orig = transition.targetState();\n return router.stateService.target(orig.identifier(), orig.params(), orig.options());\n }\n\n // The original transition was triggered via url sync\n // Run the URL rules and find the best match\n const $url = router.urlService;\n const result = $url.match($url.parts());\n const rule = result && result.rule;\n\n // If the best match is a state, redirect the transition (instead\n // of calling sync() which supersedes the current transition)\n if (rule && rule.type === 'STATE') {\n const state = (rule as StateRule).state;\n const params = result.match;\n return router.stateService.target(state, params, transition.options());\n }\n\n // No matching state found, so let .sync() choose the best non-state match/otherwise\n router.urlService.sync();\n }\n\n const promises = transition\n .entering()\n .filter(state => !!state.$$state().lazyLoad)\n .map(state => lazyLoadState(transition, state));\n\n return services.$q.all(promises).then(retryTransition);\n};\n\nexport const registerLazyLoadHook = (transitionService: TransitionService) =>\n transitionService.onBefore({ entering: state => !!state.lazyLoad }, lazyLoadHook);\n\n/**\n * Invokes a state's lazy load function\n *\n * @param transition a Transition context\n * @param state the state to lazy load\n * @returns A promise for the lazy load result\n */\nexport function lazyLoadState(transition: Transition, state: StateDeclaration): Promise<LazyLoadResult> {\n const lazyLoadFn = state.$$state().lazyLoad;\n\n // Store/get the lazy load promise on/from the hookfn so it doesn't get re-invoked\n let promise = lazyLoadFn['_promise'];\n if (!promise) {\n const success = result => {\n delete state.lazyLoad;\n delete state.$$state().lazyLoad;\n delete lazyLoadFn['_promise'];\n return result;\n };\n\n const error = err => {\n delete lazyLoadFn['_promise'];\n return services.$q.reject(err);\n };\n\n promise = lazyLoadFn['_promise'] = services.$q\n .when(lazyLoadFn(transition, state))\n .then(updateStateRegistry)\n .then(success, error);\n }\n\n /** Register any lazy loaded state definitions */\n function updateStateRegistry(result: LazyLoadResult) {\n if (result && Array.isArray(result.states)) {\n result.states.forEach(_state => transition.router.stateRegistry.register(_state));\n }\n return result;\n }\n\n return promise;\n}\n",
|
||||
"/** @module transition */ /** */\nimport { TransitionHookPhase, PathType } from './interface';\nimport { GetErrorHandler, GetResultHandler, TransitionHook } from './transitionHook';\n/**\n * This class defines a type of hook, such as `onBefore` or `onEnter`.\n * Plugins can define custom hook types, such as sticky states does for `onInactive`.\n *\n * @interalapi\n */\nexport class TransitionEventType {\n /* tslint:disable:no-inferrable-types */\n constructor(\n public name: string,\n public hookPhase: TransitionHookPhase,\n public hookOrder: number,\n public criteriaMatchPath: PathType,\n public reverseSort: boolean = false,\n public getResultHandler: GetResultHandler = TransitionHook.HANDLE_RESULT,\n public getErrorHandler: GetErrorHandler = TransitionHook.REJECT_ERROR,\n public synchronous: boolean = false,\n ) {}\n}\n",
|
||||
"/** @module hooks */ /** */\n\nimport { trace } from '../common/trace';\nimport { Rejection } from '../transition/rejectFactory';\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that skips a transition if it should be ignored\n *\n * This hook is invoked at the end of the onBefore phase.\n *\n * If the transition should be ignored (because no parameter or states changed)\n * then the transition is ignored and not processed.\n */\nfunction ignoredHook(trans: Transition) {\n const ignoredReason = trans._ignoredReason();\n if (!ignoredReason) return;\n\n trace.traceTransitionIgnored(trans);\n\n const pending = trans.router.globals.transition;\n\n // The user clicked a link going back to the *current state* ('A')\n // However, there is also a pending transition in flight (to 'B')\n // Abort the transition to 'B' because the user now wants to be back at 'A'.\n if (ignoredReason === 'SameAsCurrent' && pending) {\n pending.abort();\n }\n\n return Rejection.ignored().toPromise();\n}\n\nexport const registerIgnoredTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, ignoredHook, { priority: -9999 });\n",
|
||||
"/** @module hooks */ /** */\n\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that rejects the Transition if it is invalid\n *\n * This hook is invoked at the end of the onBefore phase.\n * If the transition is invalid (for example, param values do not validate)\n * then the transition is rejected.\n */\nfunction invalidTransitionHook(trans: Transition) {\n if (!trans.valid()) {\n throw new Error(trans.error().toString());\n }\n}\n\nexport const registerInvalidTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, invalidTransitionHook, { priority: -10000 });\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport {\n IHookRegistry,\n TransitionOptions,\n TransitionHookScope,\n TransitionHookPhase,\n TransitionCreateHookFn,\n HookMatchCriteria,\n HookRegOptions,\n PathTypes,\n PathType,\n RegisteredHooks,\n TransitionHookFn,\n TransitionStateHookFn,\n} from './interface';\nimport { Transition } from './transition';\nimport { makeEvent, RegisteredHook } from './hookRegistry';\nimport { TargetState } from '../state/targetState';\nimport { PathNode } from '../path/pathNode';\nimport { ViewService } from '../view/view';\nimport { UIRouter } from '../router';\nimport { registerAddCoreResolvables, treeChangesCleanup } from '../hooks/coreResolvables';\nimport { registerRedirectToHook } from '../hooks/redirectTo';\nimport { registerOnExitHook, registerOnRetainHook, registerOnEnterHook } from '../hooks/onEnterExitRetain';\nimport { registerEagerResolvePath, registerLazyResolveState, registerResolveRemaining } from '../hooks/resolve';\nimport { registerLoadEnteringViews, registerActivateViews } from '../hooks/views';\nimport { registerUpdateGlobalState } from '../hooks/updateGlobals';\nimport { registerUpdateUrl } from '../hooks/url';\nimport { registerLazyLoadHook } from '../hooks/lazyLoad';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionHook, GetResultHandler, GetErrorHandler } from './transitionHook';\nimport { isDefined } from '../common/predicates';\nimport { removeFrom, values, createProxyFunctions } from '../common/common';\nimport { Disposable } from '../interface'; // has or is using\nimport { val } from '../common/hof';\nimport { registerIgnoredTransitionHook } from '../hooks/ignoredTransition';\nimport { registerInvalidTransitionHook } from '../hooks/invalidTransition';\n\n/**\n * The default [[Transition]] options.\n *\n * Include this object when applying custom defaults:\n * let reloadOpts = { reload: true, notify: true }\n * let options = defaults(theirOpts, customDefaults, defaultOptions);\n */\nexport let defaultTransOpts: TransitionOptions = {\n location: true,\n relative: null,\n inherit: false,\n notify: true,\n reload: false,\n custom: {},\n current: () => null,\n source: 'unknown',\n};\n\n/**\n * Plugin API for Transition Service\n * @internalapi\n */\nexport interface TransitionServicePluginAPI {\n /**\n * Adds a Path to be used as a criterion against a TreeChanges path\n *\n * For example: the `exiting` path in [[HookMatchCriteria]] is a STATE scoped path.\n * It was defined by calling `defineTreeChangesCriterion('exiting', TransitionHookScope.STATE)`\n * Each state in the exiting path is checked against the criteria and returned as part of the match.\n *\n * Another example: the `to` path in [[HookMatchCriteria]] is a TRANSITION scoped path.\n * It was defined by calling `defineTreeChangesCriterion('to', TransitionHookScope.TRANSITION)`\n * Only the tail of the `to` path is checked against the criteria and returned as part of the match.\n */\n _definePathType(name: string, hookScope: TransitionHookScope);\n\n /**\n * Gets a Path definition used as a criterion against a TreeChanges path\n */\n _getPathTypes(): PathTypes;\n\n /**\n * Defines a transition hook type and returns a transition hook registration\n * function (which can then be used to register hooks of this type).\n */\n _defineEvent(\n name: string,\n hookPhase: TransitionHookPhase,\n hookOrder: number,\n criteriaMatchPath: PathType,\n reverseSort?: boolean,\n getResultHandler?: GetResultHandler,\n getErrorHandler?: GetErrorHandler,\n rejectIfSuperseded?: boolean,\n );\n\n /**\n * Returns the known event types, such as `onBefore`\n * If a phase argument is provided, returns only events for the given phase.\n */\n _getEvents(phase?: TransitionHookPhase): TransitionEventType[];\n\n /** Returns the hooks registered for the given hook name */\n getHooks(hookName: string): RegisteredHook[];\n}\n\n/**\n * This class provides services related to Transitions.\n *\n * - Most importantly, it allows global Transition Hooks to be registered.\n * - It allows the default transition error handler to be set.\n * - It also has a factory function for creating new [[Transition]] objects, (used internally by the [[StateService]]).\n *\n * At bootstrap, [[UIRouter]] creates a single instance (singleton) of this class.\n */\nexport class TransitionService implements IHookRegistry, Disposable {\n /** @hidden */\n _transitionCount = 0;\n\n /** @hidden */\n public $view: ViewService;\n\n /** @hidden The transition hook types, such as `onEnter`, `onStart`, etc */\n private _eventTypes: TransitionEventType[] = [];\n /** @hidden The registered transition hooks */\n _registeredHooks = {} as RegisteredHooks;\n /** @hidden The paths on a criteria object */\n private _criteriaPaths = {} as PathTypes;\n /** @hidden */\n private _router: UIRouter;\n\n /** @inteLine truncated
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** */\nimport {\n createProxyFunctions,\n defaults,\n extend,\n inArray,\n noop,\n removeFrom,\n silenceUncaughtInPromise,\n silentRejection,\n} from '../common/common';\nimport { isDefined, isObject, isString } from '../common/predicates';\nimport { Queue } from '../common/queue';\nimport { services } from '../common/coreservices';\n\nimport { PathUtils } from '../path/pathUtils';\nimport { PathNode } from '../path/pathNode';\n\nimport { HookResult, TransitionOptions } from '../transition/interface';\nimport { defaultTransOpts } from '../transition/transitionService';\nimport { Rejection, RejectType } from '../transition/rejectFactory';\nimport { Transition } from '../transition/transition';\n\nimport { HrefOptions, LazyLoadResult, StateDeclaration, StateOrName, TransitionPromise } from './interface';\nimport { StateObject } from './stateObject';\nimport { TargetState } from './targetState';\n\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Glob } from '../common/glob';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { lazyLoadState } from '../hooks/lazyLoad';\nimport { not, val } from '../common/hof';\nimport { StateParams } from '../params/stateParams';\n\nexport type OnInvalidCallback = (toState?: TargetState, fromState?: TargetState, injector?: UIInjector) => HookResult;\n\n/**\n * Provides state related service functions\n *\n * This class provides services related to ui-router states.\n * An instance of this class is located on the global [[UIRouter]] object.\n */\nexport class StateService {\n /** @internalapi */\n invalidCallbacks: OnInvalidCallback[] = [];\n\n /**\n * The [[Transition]] currently in progress (or null)\n *\n * This is a passthrough through to [[UIRouterGlobals.transition]]\n */\n get transition() {\n return this.router.globals.transition;\n }\n /**\n * The latest successful state parameters\n *\n * This is a passthrough through to [[UIRouterGlobals.params]]\n */\n get params(): StateParams {\n return this.router.globals.params;\n }\n /**\n * The current [[StateDeclaration]]\n *\n * This is a passthrough through to [[UIRouterGlobals.current]]\n */\n get current() {\n return this.router.globals.current;\n }\n /**\n * The current [[StateObject]]\n *\n * This is a passthrough through to [[UIRouterGlobals.$current]]\n */\n get $current() {\n return this.router.globals.$current;\n }\n\n /** @internalapi */\n constructor(private router: UIRouter) {\n const getters = ['current', '$current', 'params', 'transition'];\n const boundFns = Object.keys(StateService.prototype).filter(not(inArray(getters)));\n createProxyFunctions(val(StateService.prototype), this, val(this), boundFns);\n }\n\n /** @internalapi */\n dispose() {\n this.defaultErrorHandler(noop);\n this.invalidCallbacks = [];\n }\n\n /**\n * Handler for when [[transitionTo]] is called with an invalid state.\n *\n * Invokes the [[onInvalid]] callbacks, in natural order.\n * Each callback's return value is checked in sequence until one of them returns an instance of TargetState.\n * The results of the callbacks are wrapped in $q.when(), so the callbacks may return promises.\n *\n * If a callback returns an TargetState, then it is used as arguments to $state.transitionTo() and the result returned.\n *\n * @internalapi\n */\n private _handleInvalidTargetState(fromPath: PathNode[], toState: TargetState) {\n const fromState = PathUtils.makeTargetState(this.router.stateRegistry, fromPath);\n const globals = this.router.globals;\n const latestThing = () => globals.transitionHistory.peekTail();\n const latest = latestThing();\n const callbackQueue = new Queue<OnInvalidCallback>(this.invalidCallbacks.slice());\n const injector = new ResolveContext(fromPath).injector();\n\n const checkForRedirect = (result: HookResult) => {\n if (!(result instanceof TargetState)) {\n return;\n }\n\n let target = <TargetState>result;\n // Recreate the TargetState, in case the state is now defined.\n target = this.target(target.identifier(), target.params(), target.options());\n\n if (!target.valid()) {\n return Rejection.invalid(target.error()).toPromise();\n }\n\n if (latestThing() !== latest) {\n return Rejection.superseded().toPromise();\n }\n\n return this.transitionTo(target.identifier(), target.params(), target.options());\n };\n\n function invokeNextCallback() {\n const nextCallback = callbackQueue.dequeue();\n if (nextCallback === undefined) return Rejection.invalid(toState.error()).toPromise();\n\n const callbackResult = services.$q.when(nextCallback(toState, fromState, injector));\n return callbackResult.then(checkForRedirect).Line truncated
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isArray, isObject, $QLike } from '../common/index';\n\n/**\n * An angular1-like promise api\n *\n * This object implements four methods similar to the\n * [angular 1 promise api](https://docs.angularjs.org/api/ng/service/$q)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This API provides native ES6 promise support wrapped as a $q-like API.\n * Internally, UI-Router uses this $q object to perform promise operations.\n * The `angular-ui-router` (ui-router for angular 1) uses the $q API provided by angular.\n *\n * $q-like promise api\n */\nexport const $q = {\n /** Normalizes a value as a promise */\n when: val => new Promise((resolve, reject) => resolve(val)),\n\n /** Normalizes a value as a promise rejection */\n reject: val =>\n new Promise((resolve, reject) => {\n reject(val);\n }),\n\n /** @returns a deferred object, which has `resolve` and `reject` functions */\n defer: () => {\n const deferred: any = {};\n deferred.promise = new Promise((resolve, reject) => {\n deferred.resolve = resolve;\n deferred.reject = reject;\n });\n return deferred;\n },\n\n /** Like Promise.all(), but also supports object key/promise notation like $q */\n all: (promises: { [key: string]: Promise<any> } | Promise<any>[]) => {\n if (isArray(promises)) {\n return Promise.all(promises);\n }\n\n if (isObject(promises)) {\n // Convert promises map to promises array.\n // When each promise resolves, map it to a tuple { key: key, val: val }\n const chain = Object.keys(promises).map(key => promises[key].then(val => ({ key, val })));\n\n // Then wait for all promises to resolve, and convert them back to an object\n return $q.all(chain).then(values =>\n values.reduce((acc, tuple) => {\n acc[tuple.key] = tuple.val;\n return acc;\n }, {}),\n );\n }\n },\n} as $QLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n extend,\n assertPredicate,\n isFunction,\n isArray,\n isInjectable,\n $InjectorLike,\n IInjectable,\n} from '../common/index';\n\n// globally available injectables\nconst globals = {};\nconst STRIP_COMMENTS = /((\\/\\/.*$)|(\\/\\*[\\s\\S]*?\\*\\/))/gm;\nconst ARGUMENT_NAMES = /([^\\s,]+)/g;\n\n/**\n * A basic angular1-like injector api\n *\n * This object implements four methods similar to the\n * [angular 1 dependency injector](https://docs.angularjs.org/api/auto/service/$injector)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This object provides a naive implementation of a globally scoped dependency injection system.\n * It supports the following DI approaches:\n *\n * ### Function parameter names\n *\n * A function's `.toString()` is called, and the parameter names are parsed.\n * This only works when the parameter names aren't \"mangled\" by a minifier such as UglifyJS.\n *\n * ```js\n * function injectedFunction(FooService, BarService) {\n * // FooService and BarService are injected\n * }\n * ```\n *\n * ### Function annotation\n *\n * A function may be annotated with an array of dependency names as the `$inject` property.\n *\n * ```js\n * injectedFunction.$inject = [ 'FooService', 'BarService' ];\n * function injectedFunction(fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }\n * ```\n *\n * ### Array notation\n *\n * An array provides the names of the dependencies to inject (as strings).\n * The function is the last element of the array.\n *\n * ```js\n * [ 'FooService', 'BarService', function (fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }]\n * ```\n *\n * @type {$InjectorLike}\n */\nexport const $injector = {\n /** Gets an object from DI based on a string token */\n get: name => globals[name],\n\n /** Returns true if an object named `name` exists in global DI */\n has: name => $injector.get(name) != null,\n\n /**\n * Injects a function\n *\n * @param fn the function to inject\n * @param context the function's `this` binding\n * @param locals An object with additional DI tokens and values, such as `{ someToken: { foo: 1 } }`\n */\n invoke: (fn: IInjectable, context?, locals?) => {\n const all = extend({}, globals, locals || {});\n const params = $injector.annotate(fn);\n const ensureExist = assertPredicate(\n (key: string) => all.hasOwnProperty(key),\n key => `DI can't find injectable: '${key}'`,\n );\n const args = params.filter(ensureExist).map(x => all[x]);\n if (isFunction(fn)) return fn.apply(context, args);\n else return (fn as any[]).slice(-1)[0].apply(context, args);\n },\n\n /**\n * Returns a function's dependencies\n *\n * Analyzes a function (or array) and returns an array of DI tokens that the function requires.\n * @return an array of `string`s\n */\n annotate: (fn: IInjectable): any[] => {\n if (!isInjectable(fn)) throw new Error(`Not an injectable function: ${fn}`);\n if (fn && (fn as any).$inject) return (fn as any).$inject;\n if (isArray(fn)) return fn.slice(0, -1);\n const fnStr = fn.toString().replace(STRIP_COMMENTS, '');\n const result = fnStr.slice(fnStr.indexOf('(') + 1, fnStr.indexOf(')')).match(ARGUMENT_NAMES);\n return result || [];\n },\n} as $InjectorLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n LocationConfig,\n LocationServices,\n identity,\n unnestR,\n isArray,\n splitEqual,\n splitHash,\n splitQuery,\n} from '../common';\nimport { UIRouter } from '../router';\n\nexport const keyValsToObjectR = (accum, [key, val]) => {\n if (!accum.hasOwnProperty(key)) {\n accum[key] = val;\n } else if (isArray(accum[key])) {\n accum[key].push(val);\n } else {\n accum[key] = [accum[key], val];\n }\n return accum;\n};\n\nexport const getParams = (queryString: string): any =>\n queryString\n .split('&')\n .filter(identity)\n .map(splitEqual)\n .reduce(keyValsToObjectR, {});\n\nexport function parseUrl(url: string) {\n const orEmptyString = x => x || '';\n const [beforehash, hash] = splitHash(url).map(orEmptyString);\n const [path, search] = splitQuery(beforehash).map(orEmptyString);\n\n return { path, search, hash, url };\n}\n\nexport const buildUrl = (loc: LocationServices) => {\n const path = loc.path();\n const searchObject = loc.search();\n const hash = loc.hash();\n\n const search = Object.keys(searchObject)\n .map(key => {\n const param = searchObject[key];\n const vals = isArray(param) ? param : [param];\n return vals.map(val => key + '=' + val);\n })\n .reduce(unnestR, [])\n .join('&');\n\n return path + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n};\n\nexport function locationPluginFactory(\n name: string,\n isHtml5: boolean,\n serviceClass: { new (uiRouter?: UIRouter): LocationServices },\n configurationClass: { new (uiRouter?: UIRouter, isHtml5?: boolean): LocationConfig },\n) {\n return function(uiRouter: UIRouter) {\n const service = (uiRouter.locationService = new serviceClass(uiRouter));\n const configuration = (uiRouter.locationConfig = new configurationClass(uiRouter, isHtml5));\n\n function dispose(router: UIRouter) {\n router.dispose(service);\n router.dispose(configuration);\n }\n\n return { name, service, configuration, dispose };\n };\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */ /** */\n\nimport { deregAll, isDefined, LocationServices, removeFrom, root } from '../common';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { HistoryLike, LocationLike } from './interface';\nimport { buildUrl, getParams, parseUrl } from './utils';\n\n/** A base `LocationServices` */\nexport abstract class BaseLocationServices implements LocationServices, Disposable {\n private _listeners: Function[] = [];\n _location: LocationLike;\n _history: HistoryLike;\n\n _listener = evt => this._listeners.forEach(cb => cb(evt));\n\n constructor(router: UIRouter, public fireAfterUpdate: boolean) {\n this._location = root.location;\n this._history = root.history;\n }\n\n /**\n * This should return the current internal URL representation.\n *\n * The internal URL includes only the portion that UI-Router matches.\n * It does not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n */\n protected abstract _get(): string;\n\n /**\n * This should set the current URL.\n *\n * The `url` param should include only the portion that UI-Router matches on.\n * It should not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n *\n * However, after this function completes, the browser URL should reflect the entire (fully qualified)\n * HREF including those data.\n */\n protected abstract _set(state: any, title: string, url: string, replace: boolean);\n\n hash = () => parseUrl(this._get()).hash;\n path = () => parseUrl(this._get()).path;\n search = () => getParams(parseUrl(this._get()).search);\n\n url(url?: string, replace = true): string {\n if (isDefined(url) && url !== this._get()) {\n this._set(null, null, url, replace);\n\n if (this.fireAfterUpdate) {\n this._listeners.forEach(cb => cb({ url }));\n }\n }\n\n return buildUrl(this);\n }\n\n onChange(cb: EventListener) {\n this._listeners.push(cb);\n return () => removeFrom(this._listeners, cb);\n }\n\n dispose(router: UIRouter) {\n deregAll(this._listeners);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { root, trimHashVal } from '../common';\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\n\n/** A `LocationServices` that uses the browser hash \"#\" to get/set the current location */\nexport class HashLocationService extends BaseLocationServices {\n constructor(router: UIRouter) {\n super(router, false);\n root.addEventListener('hashchange', this._listener, false);\n }\n\n _get() {\n return trimHashVal(this._location.hash);\n }\n _set(state: any, title: string, url: string, replace: boolean) {\n this._location.hash = url;\n }\n\n dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('hashchange', this._listener);\n }\n}\n",
|
||||
"/**\n * @coreapi\n * @module url\n */ /** */\n\nimport { UIRouter } from '../router';\nimport { LocationServices, notImplemented, LocationConfig } from '../common/coreservices';\nimport { noop, createProxyFunctions } from '../common/common';\nimport { UrlConfigApi, UrlSyncApi, UrlRulesApi, UrlParts, MatchResult } from './interface';\n\n/** @hidden */\nconst makeStub = (keys: string[]): any =>\n keys.reduce((acc, key) => (acc[key] = notImplemented(key), acc), { dispose: noop });\n\n/* tslint:disable:align */\n/** @hidden */ const locationServicesFns = ['url', 'path', 'search', 'hash', 'onChange'];\n/** @hidden */ const locationConfigFns = ['port', 'protocol', 'host', 'baseHref', 'html5Mode', 'hashPrefix'];\n/** @hidden */ const umfFns = ['type', 'caseInsensitive', 'strictMode', 'defaultSquashPolicy'];\n/** @hidden */ const rulesFns = ['sort', 'when', 'initial', 'otherwise', 'rules', 'rule', 'removeRule'];\n/** @hidden */ const syncFns = ['deferIntercept', 'listen', 'sync', 'match'];\n/* tslint:enable:align */\n\n/**\n * API for URL management\n */\nexport class UrlService implements LocationServices, UrlSyncApi {\n /** @hidden */\n static locationServiceStub: LocationServices = makeStub(locationServicesFns);\n /** @hidden */\n static locationConfigStub: LocationConfig = makeStub(locationConfigFns);\n\n /**\n * A nested API for managing URL rules and rewrites\n *\n * See: [[UrlRulesApi]] for details\n */\n rules: UrlRulesApi;\n\n /**\n * A nested API to configure the URL and retrieve URL information\n *\n * See: [[UrlConfigApi]] for details\n */\n config: UrlConfigApi;\n\n /** @hidden */\n private router: UIRouter;\n\n /** @hidden */\n constructor(router: UIRouter, lateBind = true) {\n this.router = router;\n this.rules = {} as any;\n this.config = {} as any;\n\n // proxy function calls from UrlService to the LocationService/LocationConfig\n const locationServices = () => router.locationService;\n createProxyFunctions(locationServices, this, locationServices, locationServicesFns, lateBind);\n\n const locationConfig = () => router.locationConfig;\n createProxyFunctions(locationConfig, this.config, locationConfig, locationConfigFns, lateBind);\n\n const umf = () => router.urlMatcherFactory;\n createProxyFunctions(umf, this.config, umf, umfFns);\n\n const urlRouter = () => router.urlRouter;\n createProxyFunctions(urlRouter, this.rules, urlRouter, rulesFns);\n createProxyFunctions(urlRouter, this, urlRouter, syncFns);\n }\n\n /** @inheritdoc */\n url(): string;\n /** @inheritdoc */\n url(newurl: string, replace?: boolean, state?): void;\n url(newurl?, replace?, state?): any { return; }\n /** @inheritdoc */\n path(): string { return; }\n /** @inheritdoc */\n search(): { [key: string]: any } { return; }\n /** @inheritdoc */\n hash(): string { return; }\n /** @inheritdoc */\n onChange(callback: Function): Function { return; }\n\n\n /**\n * Returns the current URL parts\n *\n * This method returns the current URL components as a [[UrlParts]] object.\n *\n * @returns the current url parts\n */\n parts(): UrlParts {\n return { path: this.path(), search: this.search(), hash: this.hash() };\n }\n\n dispose() { }\n\n /** @inheritdoc */\n sync(evt?) { return; }\n /** @inheritdoc */\n listen(enabled?: boolean): Function { return; }\n /** @inheritdoc */\n deferIntercept(defer?: boolean) { return; }\n /** @inheritdoc */\n match(urlParts: UrlParts): MatchResult { return; }\n\n}\n",
|
||||
"/**\n * @coreapi\n * @module core\n */ /** */\nimport { UrlMatcherFactory } from './url/urlMatcherFactory';\nimport { UrlRouter } from './url/urlRouter';\nimport { TransitionService } from './transition/transitionService';\nimport { ViewService } from './view/view';\nimport { StateRegistry } from './state/stateRegistry';\nimport { StateService } from './state/stateService';\nimport { UIRouterGlobals } from './globals';\nimport { UIRouterPlugin, Disposable } from './interface';\nimport { values, removeFrom } from './common/common';\nimport { isFunction } from './common/predicates';\nimport { UrlService } from './url/urlService';\nimport { LocationServices, LocationConfig } from './common/coreservices';\nimport { Trace, trace } from './common/trace';\n\n/** @hidden */\nlet _routerInstance = 0;\n\n/**\n * The master class used to instantiate an instance of UI-Router.\n *\n * UI-Router (for each specific framework) will create an instance of this class during bootstrap.\n * This class instantiates and wires the UI-Router services together.\n *\n * After a new instance of the UIRouter class is created, it should be configured for your app.\n * For instance, app states should be registered with the [[UIRouter.stateRegistry]].\n *\n * ---\n *\n * Normally the framework code will bootstrap UI-Router.\n * If you are bootstrapping UIRouter manually, tell it to monitor the URL by calling\n * [[UrlService.listen]] then [[UrlService.sync]].\n */\nexport class UIRouter {\n /** @hidden */ $id = _routerInstance++;\n /** @hidden */ _disposed = false;\n /** @hidden */ private _disposables: Disposable[] = [];\n\n /** Provides trace information to the console */\n trace: Trace = trace;\n\n /** Provides services related to ui-view synchronization */\n viewService = new ViewService();\n\n /** Global router state */\n globals: UIRouterGlobals = new UIRouterGlobals();\n\n /** Provides services related to Transitions */\n transitionService: TransitionService = new TransitionService(this);\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlMatcherFactory: UrlMatcherFactory = new UrlMatcherFactory();\n\n /**\n * Deprecated for public use. Use [[urlService]] instead.\n * @deprecated Use [[urlService]] instead\n */\n urlRouter: UrlRouter = new UrlRouter(this);\n\n /** Provides a registry for states, and related registration services */\n stateRegistry: StateRegistry = new StateRegistry(this);\n\n /** Provides services related to states */\n stateService = new StateService(this);\n\n /** Provides services related to the URL */\n urlService: UrlService = new UrlService(this);\n\n /** @hidden plugin instances are registered here */\n private _plugins: { [key: string]: UIRouterPlugin } = {};\n\n\n /** Registers an object to be notified when the router is disposed */\n disposable(disposable: Disposable) {\n this._disposables.push(disposable);\n }\n\n /**\n * Disposes this router instance\n *\n * When called, clears resources retained by the router by calling `dispose(this)` on all\n * registered [[disposable]] objects.\n *\n * Or, if a `disposable` object is provided, calls `dispose(this)` on that object only.\n *\n * @param disposable (optional) the disposable to dispose\n */\n dispose(disposable?: any): void {\n if (disposable && isFunction(disposable.dispose)) {\n disposable.dispose(this);\n return undefined;\n }\n\n this._disposed = true;\n this._disposables.slice().forEach(d => {\n try {\n typeof d.dispose === 'function' && d.dispose(this);\n removeFrom(this._disposables, d);\n } catch (ignored) {}\n });\n }\n\n /**\n * Creates a new `UIRouter` object\n *\n * @param locationService a [[LocationServices]] implementation\n * @param locationConfig a [[LocationConfig]] implementation\n * @internalapi\n */\n constructor(\n public locationService: LocationServices = UrlService.locationServiceStub,\n public locationConfig: LocationConfig = UrlService.locationConfigStub,\n ) {\n\n this.viewService._pluginapi._rootViewContext(this.stateRegistry.root());\n this.globals.$current = this.stateRegistry.root();\n this.globals.current = this.globals.$current.self;\n\n this.disposable(this.globals);\n this.disposable(this.stateService);\n this.disposable(this.stateRegistry);\n this.disposable(this.transitionService);\n this.disposable(this.urlRouter);\n this.disposable(locationService);\n this.disposable(locationConfig);\n }\n\n /** Add plugin (as ES6 class) */\n plugin<T extends UIRouterPlugin>(plugin: { new(router: UIRouter, options?: any): T }, options?: any): T;\n /** Add plugin (as javascript constructor function) */\n plugin<T extends UIRouterPlugin>(plugin: { (router: UIRouter, options?: any): void }, options?: any): T;\n /** Add plugin (as javascript factory function) */\n plugin<T extends UIRouterPluLine truncated
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { UIRouter } from '../router';\nimport { TransitionService } from '../transition/transitionService';\nimport { Resolvable } from '../resolve';\nimport { extend, inArray, map, mapObj, uniqR, unnestR, values } from '../common';\nimport { PathNode } from '../path';\nimport { TreeChanges } from \"../transition\";\n\nfunction addCoreResolvables(trans: Transition) {\n trans.addResolvable(Resolvable.fromData(UIRouter, trans.router), '');\n trans.addResolvable(Resolvable.fromData(Transition, trans), '');\n trans.addResolvable(Resolvable.fromData('$transition$', trans), '');\n trans.addResolvable(Resolvable.fromData('$stateParams', trans.params()), '');\n\n trans.entering().forEach(state => {\n trans.addResolvable(Resolvable.fromData('$state$', state), state);\n });\n}\n\nexport const registerAddCoreResolvables = (transitionService: TransitionService) =>\n transitionService.onCreate({}, addCoreResolvables);\n\nconst TRANSITION_TOKENS = ['$transition$', Transition];\nconst isTransition = inArray(TRANSITION_TOKENS);\n\n// References to Transition in the treeChanges pathnodes makes all\n// previous Transitions reachable in memory, causing a memory leak\n// This function removes resolves for '$transition$' and `Transition` from the treeChanges.\n// Do not use this on current transitions, only on old ones.\nexport const treeChangesCleanup = (trans: Transition) => {\n const nodes = values(trans.treeChanges()).reduce(unnestR, []).reduce(uniqR, []);\n\n // If the resolvable is a Transition, return a new resolvable with null data\n const replaceTransitionWithNull = (r: Resolvable): Resolvable => {\n return isTransition(r.token) ? Resolvable.fromData(r.token, null) : r;\n };\n\n nodes.forEach((node: PathNode) => {\n node.resolvables = node.resolvables.map(replaceTransitionWithNull);\n });\n};\n",
|
||||
"/** @module hooks */ /** */\nimport { isString, isFunction } from '../common/predicates';\nimport { Transition } from '../transition/transition';\nimport { services } from '../common/coreservices';\nimport { TargetState } from '../state/targetState';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\n\n/**\n * A [[TransitionHookFn]] that redirects to a different state or params\n *\n * Registered using `transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectHook);`\n *\n * See [[StateDeclaration.redirectTo]]\n */\nconst redirectToHook: TransitionHookFn = (trans: Transition) => {\n const redirect = trans.to().redirectTo;\n if (!redirect) return;\n\n const $state = trans.router.stateService;\n\n function handleResult(result: any) {\n if (!result) return;\n if (result instanceof TargetState) return result;\n if (isString(result)) return $state.target(<any> result, trans.params(), trans.options());\n if (result['state'] || result['params'])\n return $state.target(result['state'] || trans.to(), result['params'] || trans.params(), trans.options());\n }\n\n if (isFunction(redirect)) {\n return services.$q.when(redirect(trans)).then(handleResult);\n }\n return handleResult(redirect);\n};\n\nexport const registerRedirectToHook = (transitionService: TransitionService) =>\n transitionService.onStart({ to: (state) => !!state.redirectTo }, redirectToHook);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { TransitionStateHookFn } from '../transition/interface';\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { StateDeclaration } from '../state/interface';\nimport { StateObject } from '../state/stateObject';\n\n/**\n * A factory which creates an onEnter, onExit or onRetain transition hook function\n *\n * The returned function invokes the (for instance) state.onEnter hook when the\n * state is being entered.\n *\n * @hidden\n */\nfunction makeEnterExitRetainHook(hookName: string): TransitionStateHookFn {\n return (transition: Transition, state: StateDeclaration) => {\n const _state: StateObject = state.$$state();\n const hookFn: TransitionStateHookFn = _state[hookName];\n return hookFn(transition, state);\n };\n}\n\n/**\n * The [[TransitionStateHookFn]] for onExit\n *\n * When the state is being exited, the state's .onExit function is invoked.\n *\n * Registered using `transitionService.onExit({ exiting: (state) => !!state.onExit }, onExitHook);`\n *\n * See: [[IHookRegistry.onExit]]\n */\nconst onExitHook: TransitionStateHookFn = makeEnterExitRetainHook('onExit');\nexport const registerOnExitHook = (transitionService: TransitionService) =>\n transitionService.onExit({ exiting: state => !!state.onExit }, onExitHook);\n\n/**\n * The [[TransitionStateHookFn]] for onRetain\n *\n * When the state was already entered, and is not being exited or re-entered, the state's .onRetain function is invoked.\n *\n * Registered using `transitionService.onRetain({ retained: (state) => !!state.onRetain }, onRetainHook);`\n *\n * See: [[IHookRegistry.onRetain]]\n */\nconst onRetainHook: TransitionStateHookFn = makeEnterExitRetainHook('onRetain');\nexport const registerOnRetainHook = (transitionService: TransitionService) =>\n transitionService.onRetain({ retained: state => !!state.onRetain }, onRetainHook);\n\n/**\n * The [[TransitionStateHookFn]] for onEnter\n *\n * When the state is being entered, the state's .onEnter function is invoked.\n *\n * Registered using `transitionService.onEnter({ entering: (state) => !!state.onEnter }, onEnterHook);`\n *\n * See: [[IHookRegistry.onEnter]]\n */\nconst onEnterHook: TransitionStateHookFn = makeEnterExitRetainHook('onEnter');\nexport const registerOnEnterHook = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: state => !!state.onEnter }, onEnterHook);\n\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { noop } from '../common/common';\nimport { Transition } from '../transition/transition';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { TransitionStateHookFn, TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\nimport { val } from '../common/hof';\nimport { StateDeclaration } from '../state/interface';\n\nexport const RESOLVE_HOOK_PRIORITY = 1000;\n\n/**\n * A [[TransitionHookFn]] which resolves all EAGER Resolvables in the To Path\n *\n * Registered using `transitionService.onStart({}, eagerResolvePath, { priority: 1000 });`\n *\n * When a Transition starts, this hook resolves all the EAGER Resolvables, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst eagerResolvePath: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to)\n .resolvePath('EAGER', trans)\n .then(noop);\n\nexport const registerEagerResolvePath = (transitionService: TransitionService) =>\n transitionService.onStart({}, eagerResolvePath, { priority: RESOLVE_HOOK_PRIORITY });\n\n/**\n * A [[TransitionHookFn]] which resolves all LAZY Resolvables for the state (and all its ancestors) in the To Path\n *\n * Registered using `transitionService.onEnter({ entering: () => true }, lazyResolveState, { priority: 1000 });`\n *\n * When a State is being entered, this hook resolves all the Resolvables for this state, which the transition then waits for.\n *\n * See [[StateDeclaration.resolve]]\n */\nconst lazyResolveState: TransitionStateHookFn = (trans: Transition, state: StateDeclaration) =>\n new ResolveContext(trans.treeChanges().to)\n .subContext(state.$$state())\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerLazyResolveState = (transitionService: TransitionService) =>\n transitionService.onEnter({ entering: val(true) }, lazyResolveState, { priority: RESOLVE_HOOK_PRIORITY });\n\n\n/**\n * A [[TransitionHookFn]] which resolves any dynamically added (LAZY or EAGER) Resolvables.\n *\n * Registered using `transitionService.onFinish({}, eagerResolvePath, { priority: 1000 });`\n *\n * After all entering states have been entered, this hook resolves any remaining Resolvables.\n * These are typically dynamic resolves which were added by some Transition Hook using [[Transition.addResolvable]].\n *\n * See [[StateDeclaration.resolve]]\n */\nconst resolveRemaining: TransitionHookFn = (trans: Transition) =>\n new ResolveContext(trans.treeChanges().to)\n .resolvePath('LAZY', trans)\n .then(noop);\n\nexport const registerResolveRemaining = (transitionService: TransitionService) =>\n transitionService.onFinish({}, resolveRemaining, { priority: RESOLVE_HOOK_PRIORITY });\n",
|
||||
"/** @module hooks */ /** for typedoc */\nimport { noop } from '../common/common';\nimport { services } from '../common/coreservices';\nimport { Transition } from '../transition/transition';\nimport { ViewService } from '../view/view';\nimport { ViewConfig } from '../view/interface';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n\n/**\n * A [[TransitionHookFn]] which waits for the views to load\n *\n * Registered using `transitionService.onStart({}, loadEnteringViews);`\n *\n * Allows the views to do async work in [[ViewConfig.load]] before the transition continues.\n * In angular 1, this includes loading the templates.\n */\nconst loadEnteringViews: TransitionHookFn = (transition: Transition) => {\n const $q = services.$q;\n const enteringViews = transition.views('entering');\n if (!enteringViews.length) return;\n return $q.all(enteringViews.map(view => $q.when(view.load()))).then(noop);\n};\n\nexport const registerLoadEnteringViews = (transitionService: TransitionService) =>\n transitionService.onFinish({}, loadEnteringViews);\n\n/**\n * A [[TransitionHookFn]] which activates the new views when a transition is successful.\n *\n * Registered using `transitionService.onSuccess({}, activateViews);`\n *\n * After a transition is complete, this hook deactivates the old views from the previous state,\n * and activates the new views from the destination state.\n *\n * See [[ViewService]]\n */\nconst activateViews: TransitionHookFn = (transition: Transition) => {\n const enteringViews = transition.views('entering');\n const exitingViews = transition.views('exiting');\n if (!enteringViews.length && !exitingViews.length) return;\n\n const $view: ViewService = transition.router.viewService;\n\n exitingViews.forEach((vc: ViewConfig) => $view.deactivateViewConfig(vc));\n enteringViews.forEach((vc: ViewConfig) => $view.activateViewConfig(vc));\n\n $view.sync();\n};\n\nexport const registerActivateViews = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, activateViews);\n",
|
||||
"/** @module hooks */\n/** for typedoc */\nimport { Transition } from '../transition/transition';\nimport { copy } from '../common/common';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates global UI-Router state\n *\n * Registered using `transitionService.onBefore({}, updateGlobalState);`\n *\n * Before a [[Transition]] starts, updates the global value of \"the current transition\" ([[Globals.transition]]).\n * After a successful [[Transition]], updates the global values of \"the current state\"\n * ([[Globals.current]] and [[Globals.$current]]) and \"the current param values\" ([[Globals.params]]).\n *\n * See also the deprecated properties:\n * [[StateService.transition]], [[StateService.current]], [[StateService.params]]\n */\nconst updateGlobalState = (trans: Transition) => {\n const globals = trans.router.globals;\n\n const transitionSuccessful = () => {\n globals.successfulTransitions.enqueue(trans);\n globals.$current = trans.$to();\n globals.current = globals.$current.self;\n\n copy(trans.params(), globals.params);\n };\n\n const clearCurrentTransition = () => {\n // Do not clear globals.transition if a different transition has started in the meantime\n if (globals.transition === trans) globals.transition = null;\n };\n\n trans.onSuccess({}, transitionSuccessful, { priority: 10000 });\n trans.promise.then(clearCurrentTransition, clearCurrentTransition);\n};\n\nexport const registerUpdateGlobalState = (transitionService: TransitionService) =>\n transitionService.onCreate({}, updateGlobalState);\n",
|
||||
"/** @module hooks */ /** */\nimport { UrlRouter } from '../url/urlRouter';\nimport { StateService } from '../state/stateService';\nimport { Transition } from '../transition/transition';\nimport { TransitionHookFn } from '../transition/interface';\nimport { TransitionService } from '../transition/transitionService';\n\n/**\n * A [[TransitionHookFn]] which updates the URL after a successful transition\n *\n * Registered using `transitionService.onSuccess({}, updateUrl);`\n */\nconst updateUrl: TransitionHookFn = (transition: Transition) => {\n const options = transition.options();\n const $state: StateService = transition.router.stateService;\n const $urlRouter: UrlRouter = transition.router.urlRouter;\n\n // Dont update the url in these situations:\n // The transition was triggered by a URL sync (options.source === 'url')\n // The user doesn't want the url to update (options.location === false)\n // The destination state, and all parents have no navigable url\n if (options.source !== 'url' && options.location && $state.$current.navigable) {\n const urlOptions = { replace: options.location === 'replace' };\n $urlRouter.push($state.$current.navigable.url, $state.params, urlOptions);\n }\n\n $urlRouter.update(true);\n};\n\nexport const registerUpdateUrl = (transitionService: TransitionService) =>\n transitionService.onSuccess({}, updateUrl, { priority: 9999 });\n",
|
||||
"/** @module hooks */ /** */\nimport { Transition } from '../transition/transition';\nimport { TransitionService } from '../transition/transitionService';\nimport { TransitionHookFn } from '../transition/interface';\nimport { StateDeclaration, LazyLoadResult } from '../state/interface';\nimport { services } from '../common/coreservices';\nimport { StateRule } from '../url/interface';\n\n/**\n * A [[TransitionHookFn]] that performs lazy loading\n *\n * When entering a state \"abc\" which has a `lazyLoad` function defined:\n * - Invoke the `lazyLoad` function (unless it is already in process)\n * - Flag the hook function as \"in process\"\n * - The function should return a promise (that resolves when lazy loading is complete)\n * - Wait for the promise to settle\n * - If the promise resolves to a [[LazyLoadResult]], then register those states\n * - Flag the hook function as \"not in process\"\n * - If the hook was successful\n * - Remove the `lazyLoad` function from the state declaration\n * - If all the hooks were successful\n * - Retry the transition (by returning a TargetState)\n *\n * ```\n * .state('abc', {\n * component: 'fooComponent',\n * lazyLoad: () => System.import('./fooComponent')\n * });\n * ```\n *\n * See [[StateDeclaration.lazyLoad]]\n */\nconst lazyLoadHook: TransitionHookFn = (transition: Transition) => {\n const router = transition.router;\n\n function retryTransition() {\n if (transition.originalTransition().options().source !== 'url') {\n // The original transition was not triggered via url sync\n // The lazy state should be loaded now, so re-try the original transition\n const orig = transition.targetState();\n return router.stateService.target(orig.identifier(), orig.params(), orig.options());\n }\n\n // The original transition was triggered via url sync\n // Run the URL rules and find the best match\n const $url = router.urlService;\n const result = $url.match($url.parts());\n const rule = result && result.rule;\n\n // If the best match is a state, redirect the transition (instead\n // of calling sync() which supersedes the current transition)\n if (rule && rule.type === 'STATE') {\n const state = (rule as StateRule).state;\n const params = result.match;\n return router.stateService.target(state, params, transition.options());\n }\n\n // No matching state found, so let .sync() choose the best non-state match/otherwise\n router.urlService.sync();\n }\n\n const promises = transition.entering()\n .filter(state => !!state.$$state().lazyLoad)\n .map(state => lazyLoadState(transition, state));\n\n return services.$q.all(promises).then(retryTransition);\n};\n\nexport const registerLazyLoadHook = (transitionService: TransitionService) =>\n transitionService.onBefore({ entering: (state) => !!state.lazyLoad }, lazyLoadHook);\n\n\n/**\n * Invokes a state's lazy load function\n *\n * @param transition a Transition context\n * @param state the state to lazy load\n * @returns A promise for the lazy load result\n */\nexport function lazyLoadState(transition: Transition, state: StateDeclaration): Promise<LazyLoadResult> {\n const lazyLoadFn = state.$$state().lazyLoad;\n\n // Store/get the lazy load promise on/from the hookfn so it doesn't get re-invoked\n let promise = lazyLoadFn['_promise'];\n if (!promise) {\n const success = (result) => {\n delete state.lazyLoad;\n delete state.$$state().lazyLoad;\n delete lazyLoadFn['_promise'];\n return result;\n };\n\n const error = (err) => {\n delete lazyLoadFn['_promise'];\n return services.$q.reject(err);\n };\n\n promise = lazyLoadFn['_promise'] =\n services.$q.when(lazyLoadFn(transition, state))\n .then(updateStateRegistry)\n .then(success, error);\n }\n\n /** Register any lazy loaded state definitions */\n function updateStateRegistry(result: LazyLoadResult) {\n if (result && Array.isArray(result.states)) {\n result.states.forEach(_state => transition.router.stateRegistry.register(_state));\n }\n return result;\n }\n\n return promise;\n}\n",
|
||||
"/** @module transition */ /** */\nimport { TransitionHookPhase, PathType } from './interface';\nimport { GetErrorHandler, GetResultHandler, TransitionHook } from './transitionHook';\n/**\n * This class defines a type of hook, such as `onBefore` or `onEnter`.\n * Plugins can define custom hook types, such as sticky states does for `onInactive`.\n *\n * @interalapi\n */\nexport class TransitionEventType {\n /* tslint:disable:no-inferrable-types */\n constructor(public name: string,\n public hookPhase: TransitionHookPhase,\n public hookOrder: number,\n public criteriaMatchPath: PathType,\n public reverseSort: boolean = false,\n public getResultHandler: GetResultHandler = TransitionHook.HANDLE_RESULT,\n public getErrorHandler: GetErrorHandler = TransitionHook.REJECT_ERROR,\n public synchronous: boolean = false,\n ) { }\n}\n",
|
||||
"/** @module hooks */ /** */\n\nimport { trace } from '../common/trace';\nimport { Rejection } from '../transition/rejectFactory';\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that skips a transition if it should be ignored\n *\n * This hook is invoked at the end of the onBefore phase.\n *\n * If the transition should be ignored (because no parameter or states changed)\n * then the transition is ignored and not processed.\n */\nfunction ignoredHook(trans: Transition) {\n const ignoredReason = trans._ignoredReason();\n if (!ignoredReason) return;\n\n trace.traceTransitionIgnored(trans);\n\n const pending = trans.router.globals.transition;\n\n // The user clicked a link going back to the *current state* ('A')\n // However, there is also a pending transition in flight (to 'B')\n // Abort the transition to 'B' because the user now wants to be back at 'A'.\n if (ignoredReason === 'SameAsCurrent' && pending) {\n pending.abort();\n }\n\n return Rejection.ignored().toPromise();\n}\n\nexport const registerIgnoredTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, ignoredHook, { priority: -9999 });\n",
|
||||
"/** @module hooks */ /** */\n\nimport { TransitionService } from '../transition/transitionService';\nimport { Transition } from '../transition/transition';\n\n/**\n * A [[TransitionHookFn]] that rejects the Transition if it is invalid\n *\n * This hook is invoked at the end of the onBefore phase.\n * If the transition is invalid (for example, param values do not validate)\n * then the transition is rejected.\n */\nfunction invalidTransitionHook(trans: Transition) {\n if (!trans.valid()) {\n throw new Error(trans.error());\n }\n}\n\nexport const registerInvalidTransitionHook = (transitionService: TransitionService) =>\n transitionService.onBefore({}, invalidTransitionHook, { priority: -10000 });\n",
|
||||
"/**\n * @coreapi\n * @module transition\n */\n/** for typedoc */\nimport {\n IHookRegistry, TransitionOptions, TransitionHookScope, TransitionHookPhase, TransitionCreateHookFn, HookMatchCriteria,\n HookRegOptions, PathTypes, PathType, RegisteredHooks, TransitionHookFn, TransitionStateHookFn,\n} from './interface';\nimport { Transition } from './transition';\nimport { makeEvent, RegisteredHook } from './hookRegistry';\nimport { TargetState } from '../state/targetState';\nimport { PathNode } from '../path/pathNode';\nimport { ViewService } from '../view/view';\nimport { UIRouter } from '../router';\nimport { registerAddCoreResolvables, treeChangesCleanup } from '../hooks/coreResolvables';\nimport { registerRedirectToHook } from '../hooks/redirectTo';\nimport { registerOnExitHook, registerOnRetainHook, registerOnEnterHook } from '../hooks/onEnterExitRetain';\nimport { registerEagerResolvePath, registerLazyResolveState, registerResolveRemaining } from '../hooks/resolve';\nimport { registerLoadEnteringViews, registerActivateViews } from '../hooks/views';\nimport { registerUpdateGlobalState } from '../hooks/updateGlobals';\nimport { registerUpdateUrl } from '../hooks/url';\nimport { registerLazyLoadHook } from '../hooks/lazyLoad';\nimport { TransitionEventType } from './transitionEventType';\nimport { TransitionHook, GetResultHandler, GetErrorHandler } from './transitionHook';\nimport { isDefined } from '../common/predicates';\nimport { removeFrom, values, createProxyFunctions } from '../common/common';\nimport { Disposable } from '../interface'; // has or is using\nimport { val } from '../common/hof';\nimport { registerIgnoredTransitionHook } from '../hooks/ignoredTransition';\nimport { registerInvalidTransitionHook } from '../hooks/invalidTransition';\n\n/**\n * The default [[Transition]] options.\n *\n * Include this object when applying custom defaults:\n * let reloadOpts = { reload: true, notify: true }\n * let options = defaults(theirOpts, customDefaults, defaultOptions);\n */\nexport let defaultTransOpts: TransitionOptions = {\n location : true,\n relative : null,\n inherit : false,\n notify : true,\n reload : false,\n custom : {},\n current : () => null,\n source : 'unknown',\n};\n\n\n/**\n * Plugin API for Transition Service\n * @internalapi\n */\nexport interface TransitionServicePluginAPI {\n /**\n * Adds a Path to be used as a criterion against a TreeChanges path\n *\n * For example: the `exiting` path in [[HookMatchCriteria]] is a STATE scoped path.\n * It was defined by calling `defineTreeChangesCriterion('exiting', TransitionHookScope.STATE)`\n * Each state in the exiting path is checked against the criteria and returned as part of the match.\n *\n * Another example: the `to` path in [[HookMatchCriteria]] is a TRANSITION scoped path.\n * It was defined by calling `defineTreeChangesCriterion('to', TransitionHookScope.TRANSITION)`\n * Only the tail of the `to` path is checked against the criteria and returned as part of the match.\n */\n _definePathType(name: string, hookScope: TransitionHookScope);\n\n /**\n * Gets a Path definition used as a criterion against a TreeChanges path\n */\n _getPathTypes(): PathTypes;\n\n /**\n * Defines a transition hook type and returns a transition hook registration\n * function (which can then be used to register hooks of this type).\n */\n _defineEvent(name: string,\n hookPhase: TransitionHookPhase,\n hookOrder: number,\n criteriaMatchPath: PathType,\n reverseSort?: boolean,\n getResultHandler?: GetResultHandler,\n getErrorHandler?: GetErrorHandler,\n rejectIfSuperseded?: boolean);\n\n /**\n * Returns the known event types, such as `onBefore`\n * If a phase argument is provided, returns only events for the given phase.\n */\n _getEvents(phase?: TransitionHookPhase): TransitionEventType[];\n\n /** Returns the hooks registered for the given hook name */\n getHooks(hookName: string): RegisteredHook[];\n}\n\n/**\n * This class provides services related to Transitions.\n *\n * - Most importantly, it allows global Transition Hooks to be registered.\n * - It allows the default transition error handler to be set.\n * - It also has a factory function for creating new [[Transition]] objects, (used internally by the [[StateService]]).\n *\n * At bootstrap, [[UIRouter]] creates a single instance (singleton) of this class.\n */\nexport class TransitionService implements IHookRegistry, Disposable {\n /** @hidden */\n _transitionCount = 0;\n\n /** @hidden */\n public $view: ViewService;\n\n /** @hidden The transition hook types, such as `onEnter`, `onStart`, etc */\n private _eventTypes: TransitionEventType[] = [];\n /** @hidden The registered transition hooks */\n _registeredHooks = { } as RegisteredHooks;\n /** @hidden The paths on a criteria object */\n private _criteriaPaths Line truncated
|
||||
"/**\n * @coreapi\n * @module state\n */\n/** */\nimport { createProxyFunctions, defaults, extend, inArray, noop, removeFrom, silenceUncaughtInPromise, silentRejection } from '../common/common';\nimport { isDefined, isObject, isString } from '../common/predicates';\nimport { Queue } from '../common/queue';\nimport { services } from '../common/coreservices';\n\nimport { PathUtils } from '../path/pathUtils';\nimport { PathNode } from '../path/pathNode';\n\nimport { HookResult, TransitionOptions } from '../transition/interface';\nimport { defaultTransOpts } from '../transition/transitionService';\nimport { Rejection, RejectType } from '../transition/rejectFactory';\nimport { Transition } from '../transition/transition';\n\nimport { HrefOptions, LazyLoadResult, StateDeclaration, StateOrName, TransitionPromise } from './interface';\nimport { StateObject } from './stateObject';\nimport { TargetState } from './targetState';\n\nimport { RawParams } from '../params/interface';\nimport { Param } from '../params/param';\nimport { Glob } from '../common/glob';\nimport { UIRouter } from '../router';\nimport { UIInjector } from '../interface';\nimport { ResolveContext } from '../resolve/resolveContext';\nimport { lazyLoadState } from '../hooks/lazyLoad';\nimport { not, val } from '../common/hof';\nimport { StateParams } from '../params/stateParams';\n\nexport type OnInvalidCallback =\n (toState?: TargetState, fromState?: TargetState, injector?: UIInjector) => HookResult;\n\n/**\n * Provides state related service functions\n *\n * This class provides services related to ui-router states.\n * An instance of this class is located on the global [[UIRouter]] object.\n */\nexport class StateService {\n /** @internalapi */\n invalidCallbacks: OnInvalidCallback[] = [];\n\n /**\n * The [[Transition]] currently in progress (or null)\n *\n * This is a passthrough through to [[UIRouterGlobals.transition]]\n */\n get transition() { return this.router.globals.transition; }\n /**\n * The latest successful state parameters\n *\n * This is a passthrough through to [[UIRouterGlobals.params]]\n */\n get params(): StateParams { return this.router.globals.params; }\n /**\n * The current [[StateDeclaration]]\n *\n * This is a passthrough through to [[UIRouterGlobals.current]]\n */\n get current() { return this.router.globals.current; }\n /**\n * The current [[StateObject]]\n *\n * This is a passthrough through to [[UIRouterGlobals.$current]]\n */\n get $current() { return this.router.globals.$current; }\n\n /** @internalapi */\n constructor(private router: UIRouter) {\n const getters = ['current', '$current', 'params', 'transition'];\n const boundFns = Object.keys(StateService.prototype).filter(not(inArray(getters)));\n createProxyFunctions(val(StateService.prototype), this, val(this), boundFns);\n }\n\n /** @internalapi */\n dispose() {\n this.defaultErrorHandler(noop);\n this.invalidCallbacks = [];\n }\n\n /**\n * Handler for when [[transitionTo]] is called with an invalid state.\n *\n * Invokes the [[onInvalid]] callbacks, in natural order.\n * Each callback's return value is checked in sequence until one of them returns an instance of TargetState.\n * The results of the callbacks are wrapped in $q.when(), so the callbacks may return promises.\n *\n * If a callback returns an TargetState, then it is used as arguments to $state.transitionTo() and the result returned.\n *\n * @internalapi\n */\n private _handleInvalidTargetState(fromPath: PathNode[], toState: TargetState) {\n const fromState = PathUtils.makeTargetState(this.router.stateRegistry, fromPath);\n const globals = this.router.globals;\n const latestThing = () => globals.transitionHistory.peekTail();\n const latest = latestThing();\n const callbackQueue = new Queue<OnInvalidCallback>(this.invalidCallbacks.slice());\n const injector = new ResolveContext(fromPath).injector();\n\n const checkForRedirect = (result: HookResult) => {\n if (!(result instanceof TargetState)) {\n return;\n }\n\n let target = <TargetState> result;\n // Recreate the TargetState, in case the state is now defined.\n target = this.target(target.identifier(), target.params(), target.options());\n\n if (!target.valid()) {\n return Rejection.invalid(target.error()).toPromise();\n }\n\n if (latestThing() !== latest) {\n return Rejection.superseded().toPromise();\n }\n\n return this.transitionTo(target.identifier(), target.params(), target.options());\n };\n\n function invokeNextCallback() {\n const nextCallback = callbackQueue.dequeue();\n if (nextCallback === undefined) return Rejection.invalid(toState.error()).toPromise();\n\n const callbackResult = services.$q.when(nextCallback(toState, fromState, injector));\n return callbackResult.then(checkForRedirect).then(result => result || invokeNextCallback());\n Line truncated
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isArray, isObject, $QLike } from '../common/index';\n\n/**\n * An angular1-like promise api\n *\n * This object implements four methods similar to the\n * [angular 1 promise api](https://docs.angularjs.org/api/ng/service/$q)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This API provides native ES6 promise support wrapped as a $q-like API.\n * Internally, UI-Router uses this $q object to perform promise operations.\n * The `angular-ui-router` (ui-router for angular 1) uses the $q API provided by angular.\n *\n * $q-like promise api\n */\nexport const $q = {\n /** Normalizes a value as a promise */\n when: (val) => new Promise((resolve, reject) => resolve(val)),\n\n /** Normalizes a value as a promise rejection */\n reject: (val) => new Promise((resolve, reject) => { reject(val); }),\n\n /** @returns a deferred object, which has `resolve` and `reject` functions */\n defer: () => {\n const deferred: any = {};\n deferred.promise = new Promise((resolve, reject) => {\n deferred.resolve = resolve;\n deferred.reject = reject;\n });\n return deferred;\n },\n\n /** Like Promise.all(), but also supports object key/promise notation like $q */\n all: (promises: { [key: string]: Promise<any> } | Promise<any>[]) => {\n if (isArray(promises)) {\n return Promise.all(promises);\n }\n\n if (isObject(promises)) {\n // Convert promises map to promises array.\n // When each promise resolves, map it to a tuple { key: key, val: val }\n const chain = Object.keys(promises)\n .map(key => promises[key].then(val => ({ key, val })));\n\n // Then wait for all promises to resolve, and convert them back to an object\n return $q.all(chain).then(values =>\n values.reduce((acc, tuple) => { acc[tuple.key] = tuple.val; return acc; }, {}));\n }\n },\n} as $QLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n extend, assertPredicate, isFunction, isArray, isInjectable, $InjectorLike, IInjectable,\n} from '../common/index';\n\n// globally available injectables\nconst globals = {};\nconst STRIP_COMMENTS = /((\\/\\/.*$)|(\\/\\*[\\s\\S]*?\\*\\/))/mg;\nconst ARGUMENT_NAMES = /([^\\s,]+)/g;\n\n/**\n * A basic angular1-like injector api\n *\n * This object implements four methods similar to the\n * [angular 1 dependency injector](https://docs.angularjs.org/api/auto/service/$injector)\n *\n * UI-Router evolved from an angular 1 library to a framework agnostic library.\n * However, some of the `@uirouter/core` code uses these ng1 style APIs to support ng1 style dependency injection.\n *\n * This object provides a naive implementation of a globally scoped dependency injection system.\n * It supports the following DI approaches:\n *\n * ### Function parameter names\n *\n * A function's `.toString()` is called, and the parameter names are parsed.\n * This only works when the parameter names aren't \"mangled\" by a minifier such as UglifyJS.\n *\n * ```js\n * function injectedFunction(FooService, BarService) {\n * // FooService and BarService are injected\n * }\n * ```\n *\n * ### Function annotation\n *\n * A function may be annotated with an array of dependency names as the `$inject` property.\n *\n * ```js\n * injectedFunction.$inject = [ 'FooService', 'BarService' ];\n * function injectedFunction(fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }\n * ```\n *\n * ### Array notation\n *\n * An array provides the names of the dependencies to inject (as strings).\n * The function is the last element of the array.\n *\n * ```js\n * [ 'FooService', 'BarService', function (fs, bs) {\n * // FooService and BarService are injected as fs and bs parameters\n * }]\n * ```\n *\n * @type {$InjectorLike}\n */\nexport const $injector = {\n /** Gets an object from DI based on a string token */\n get: name => globals[name],\n\n /** Returns true if an object named `name` exists in global DI */\n has: (name) => $injector.get(name) != null,\n\n /**\n * Injects a function\n *\n * @param fn the function to inject\n * @param context the function's `this` binding\n * @param locals An object with additional DI tokens and values, such as `{ someToken: { foo: 1 } }`\n */\n invoke: (fn: IInjectable, context?, locals?) => {\n const all = extend({}, globals, locals || {});\n const params = $injector.annotate(fn);\n const ensureExist = assertPredicate((key: string) => all.hasOwnProperty(key), key => `DI can't find injectable: '${key}'`);\n const args = params.filter(ensureExist).map(x => all[x]);\n if (isFunction(fn)) return fn.apply(context, args);\n else return (fn as any[]).slice(-1)[0].apply(context, args);\n },\n\n /**\n * Returns a function's dependencies\n *\n * Analyzes a function (or array) and returns an array of DI tokens that the function requires.\n * @return an array of `string`s\n */\n annotate: (fn: IInjectable): any[] => {\n if (!isInjectable(fn)) throw new Error(`Not an injectable function: ${fn}`);\n if (fn && (fn as any).$inject) return (fn as any).$inject;\n if (isArray(fn)) return fn.slice(0, -1);\n const fnStr = fn.toString().replace(STRIP_COMMENTS, '');\n const result = fnStr.slice(fnStr.indexOf('(') + 1, fnStr.indexOf(')')).match(ARGUMENT_NAMES);\n return result || [];\n },\n} as $InjectorLike;\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport {\n LocationConfig, LocationServices, identity, unnestR, isArray, splitEqual, splitHash, splitQuery,\n} from '../common';\nimport { UIRouter } from '../router';\n\nexport const keyValsToObjectR = (accum, [key, val]) => {\n if (!accum.hasOwnProperty(key)) {\n accum[key] = val;\n } else if (isArray(accum[key])) {\n accum[key].push(val);\n } else {\n accum[key] = [accum[key], val];\n }\n return accum;\n};\n\nexport const getParams = (queryString: string): any =>\n queryString.split('&').filter(identity).map(splitEqual).reduce(keyValsToObjectR, {});\n\nexport function parseUrl(url: string) {\n const orEmptyString = x => x || '';\n const [beforehash, hash] = splitHash(url).map(orEmptyString);\n const [path, search] = splitQuery(beforehash).map(orEmptyString);\n\n return { path, search, hash, url };\n}\n\nexport const buildUrl = (loc: LocationServices) => {\n const path = loc.path();\n const searchObject = loc.search();\n const hash = loc.hash();\n\n const search = Object.keys(searchObject).map(key => {\n const param = searchObject[key];\n const vals = isArray(param) ? param : [param];\n return vals.map(val => key + '=' + val);\n }).reduce(unnestR, []).join('&');\n\n return path + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n};\n\nexport function locationPluginFactory(\n name: string,\n isHtml5: boolean,\n serviceClass: { new(uiRouter?: UIRouter): LocationServices },\n configurationClass: { new(uiRouter?: UIRouter, isHtml5?: boolean): LocationConfig },\n) {\n return function(uiRouter: UIRouter) {\n const service = uiRouter.locationService = new serviceClass(uiRouter);\n const configuration = uiRouter.locationConfig = new configurationClass(uiRouter, isHtml5);\n\n function dispose(router: UIRouter) {\n router.dispose(service);\n router.dispose(configuration);\n }\n\n return { name, service, configuration, dispose };\n };\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */ /** */\n\nimport { deregAll, isDefined, LocationServices, removeFrom, root } from '../common';\nimport { Disposable } from '../interface';\nimport { UIRouter } from '../router';\nimport { HistoryLike, LocationLike } from './interface';\nimport { buildUrl, getParams, parseUrl } from './utils';\n\n/** A base `LocationServices` */\nexport abstract class BaseLocationServices implements LocationServices, Disposable {\n private _listeners: Function[] = [];\n _location: LocationLike;\n _history: HistoryLike;\n\n _listener = evt => this._listeners.forEach(cb => cb(evt));\n\n constructor(router: UIRouter, public fireAfterUpdate: boolean) {\n this._location = root.location;\n this._history = root.history;\n }\n\n /**\n * This should return the current internal URL representation.\n *\n * The internal URL includes only the portion that UI-Router matches.\n * It does not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n */\n protected abstract _get(): string;\n\n /**\n * This should set the current URL.\n *\n * The `url` param should include only the portion that UI-Router matches on.\n * It should not include:\n * - protocol\n * - server\n * - port\n * - base href or hash\n *\n * However, after this function completes, the browser URL should reflect the entire (fully qualified)\n * HREF including those data.\n */\n protected abstract _set(state: any, title: string, url: string, replace: boolean);\n\n hash = () => parseUrl(this._get()).hash;\n path = () => parseUrl(this._get()).path;\n search = () => getParams(parseUrl(this._get()).search);\n\n url(url?: string, replace = true): string {\n if (isDefined(url) && url !== this._get()) {\n this._set(null, null, url, replace);\n\n if (this.fireAfterUpdate) {\n this._listeners.forEach(cb => cb({ url }));\n }\n }\n\n return buildUrl(this);\n }\n\n onChange(cb: EventListener) {\n this._listeners.push(cb);\n return () => removeFrom(this._listeners, cb);\n }\n\n dispose(router: UIRouter) {\n deregAll(this._listeners);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { root, trimHashVal } from '../common';\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\n\n/** A `LocationServices` that uses the browser hash \"#\" to get/set the current location */\nexport class HashLocationService extends BaseLocationServices {\n constructor(router: UIRouter) {\n super(router, false);\n root.addEventListener('hashchange', this._listener, false);\n }\n\n _get() {\n return trimHashVal(this._location.hash);\n }\n _set(state: any, title: string, url: string, replace: boolean) {\n this._location.hash = url;\n }\n\n dispose (router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('hashchange', this._listener);\n }\n}\n\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BaseLocationServices } from './baseLocationService';\nimport { UIRouter } from '../router';\n\n/** A `LocationServices` that gets/sets the current location from an in-memory object */\nexport class MemoryLocationService extends BaseLocationServices {\n _url: string;\n\n constructor(router: UIRouter) {\n super(router, true);\n }\n\n _get() {\n return this._url;\n }\n\n _set(state: any, title: string, url: string, replace: boolean) {\n this._url = url;\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\nimport { LocationConfig, root, splitHash, splitQuery, stripLastPathElement } from '../common';\n\n/**\n * A `LocationServices` that gets/sets the current location using the browser's `location` and `history` apis\n *\n * Uses `history.pushState` and `history.replaceState`\n */\nexport class PushStateLocationService extends BaseLocationServices {\n _config: LocationConfig;\n\n constructor(router: UIRouter) {\n super(router, true);\n this._config = router.urlService.config;\n root.addEventListener('popstate', this._listener, false);\n }\n\n /**\n * Gets the base prefix without:\n * - trailing slash\n * - trailing filename\n * - protocol and hostname\n *\n * If <base href='/base/'>, this returns '/base'.\n * If <base href='/foo/base/'>, this returns '/foo/base'.\n * If <base href='/base/index.html'>, this returns '/base'.\n * If <base href='http://localhost:8080/base/index.html'>, this returns '/base'.\n * If <base href='/base'>, this returns ''.\n * If <base href='http://localhost:8080'>, this returns ''.\n * If <base href='http://localhost:8080/'>, this returns ''.\n *\n * See: https://html.spec.whatwg.org/dev/semantics.html#the-base-element\n */\n private _getBasePrefix() {\n return stripLastPathElement(this._config.baseHref());\n }\n\n protected _get() {\n let { pathname, hash, search } = this._location;\n search = splitQuery(search)[1]; // strip ? if found\n hash = splitHash(hash)[1]; // strip # if found\n\n const basePrefix = this._getBasePrefix();\n const exactBaseHrefMatch = pathname === this._config.baseHref();\n const startsWithBase = pathname.substr(0, basePrefix.length) === basePrefix;\n pathname = exactBaseHrefMatch ? '/' : startsWithBase ? pathname.substring(basePrefix.length) : pathname;\n\n return pathname + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n }\n\n protected _set(state: any, title: string, url: string, replace: boolean) {\n const basePrefix = this._getBasePrefix();\n const slash = url && url[0] !== '/' ? '/' : '';\n const fullUrl = url === '' || url === '/' ? this._config.baseHref() : basePrefix + slash + url;\n\n if (replace) {\n this._history.replaceState(state, title, fullUrl);\n } else {\n this._history.pushState(state, title, fullUrl);\n }\n }\n\n public dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('popstate', this._listener);\n }\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { LocationConfig } from '../common/coreservices';\nimport { isDefined } from '../common/predicates';\nimport { noop } from '../common/common';\n\n/** A `LocationConfig` mock that gets/sets all config from an in-memory object */\nexport class MemoryLocationConfig implements LocationConfig {\n dispose = noop;\n\n _baseHref = '';\n _port = 80;\n _protocol = 'http';\n _host = 'localhost';\n _hashPrefix = '';\n\n port = () => this._port;\n protocol = () => this._protocol;\n host = () => this._host;\n baseHref = () => this._baseHref;\n html5Mode = () => false;\n hashPrefix = (newval?) => (isDefined(newval) ? (this._hashPrefix = newval) : this._hashPrefix);\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isDefined } from '../common/predicates';\nimport { LocationConfig } from '../common/coreservices';\n\n/** A `LocationConfig` that delegates to the browser's `location` object */\nexport class BrowserLocationConfig implements LocationConfig {\n private _baseHref = undefined;\n private _hashPrefix = '';\n\n constructor(router?, private _isHtml5 = false) {}\n\n port(): number {\n if (location.port) {\n return Number(location.port);\n }\n\n return this.protocol() === 'https' ? 443 : 80;\n }\n\n protocol(): string {\n return location.protocol.replace(/:/g, '');\n }\n\n host(): string {\n return location.hostname;\n }\n\n html5Mode(): boolean {\n return this._isHtml5;\n }\n\n hashPrefix(): string;\n hashPrefix(newprefix?: string): string {\n return isDefined(newprefix) ? (this._hashPrefix = newprefix) : this._hashPrefix;\n }\n\n baseHref(href?: string): string {\n return isDefined(href)\n ? (this._baseHref = href)\n : isDefined(this._baseHref) ? this._baseHref : this.applyDocumentBaseHref();\n }\n\n applyDocumentBaseHref() {\n const baseTag: HTMLBaseElement = document.getElementsByTagName('base')[0];\n return (this._baseHref = baseTag ? baseTag.href.substr(location.origin.length) : location.pathname || '/');\n }\n\n dispose() {}\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BrowserLocationConfig } from './browserLocationConfig';\nimport { HashLocationService } from './hashLocationService';\nimport { locationPluginFactory } from './utils';\nimport { LocationPlugin, ServicesPlugin } from './interface';\nimport { UIRouter } from '../router';\nimport { PushStateLocationService } from './pushStateLocationService';\nimport { MemoryLocationService } from './memoryLocationService';\nimport { MemoryLocationConfig } from './memoryLocationConfig';\nimport { $injector } from './injector';\nimport { $q } from './q';\nimport { services } from '../common/coreservices';\n\nexport function servicesPlugin(router: UIRouter): ServicesPlugin {\n services.$injector = $injector;\n services.$q = $q;\n\n return { name: 'vanilla.services', $q, $injector, dispose: () => null };\n}\n\n/** A `UIRouterPlugin` uses the browser hash to get/set the current location */\nexport const hashLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.hashBangLocation',\n false,\n HashLocationService,\n BrowserLocationConfig,\n);\n\n/** A `UIRouterPlugin` that gets/sets the current location using the browser's `location` and `history` apis */\nexport const pushStateLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.pushStateLocation',\n true,\n PushStateLocationService,\n BrowserLocationConfig,\n);\n\n/** A `UIRouterPlugin` that gets/sets the current location from an in-memory object */\nexport const memoryLocationPlugin: (router: UIRouter) => LocationPlugin = locationPluginFactory(\n 'vanilla.memoryLocation',\n false,\n MemoryLocationService,\n MemoryLocationConfig,\n);\n",
|
||||
"/**\n * # Core classes and interfaces\n *\n * The classes and interfaces that are core to ui-router and do not belong\n * to a more specific subsystem (such as resolve).\n *\n * @coreapi\n * @preferred\n * @module core\n */ /** for typedoc */\n\n// Need to import or export at least one concrete something\nimport { noop } from './common/common';\nimport { UIRouter } from './router';\n\n/**\n * An interface for getting values from dependency injection.\n *\n * This is primarily used to get resolve values for a given token.\n * An instance of the `UIInjector` can be retrieved from the current transition using [[Transition.injector]].\n *\n * ---\n *\n * If no resolve is found for a token, then it will delegate to the native injector.\n * The native injector may be Angular 1 `$injector`, Angular 2 `Injector`, or a simple polyfill.\n *\n * In Angular 2, the native injector might be the root Injector,\n * or it might be a lazy loaded `NgModule` injector scoped to a lazy load state tree.\n */\nexport interface UIInjector {\n /**\n * Gets a value from the injector.\n *\n * For a given token, returns the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this throws an error.\n *\n * #### Example:\n * ```js\n * var myResolve = injector.get('myResolve');\n * ```\n *\n * #### ng1 Example:\n * ```js\n * // Fetch StateService\n * injector.get('$state').go('home');\n * ```\n *\n * #### ng2 Example:\n * ```js\n * import {StateService} from \"ui-router-ng2\";\n * // Fetch StateService\n * injector.get(StateService).go('home');\n * ```\n *\n * #### Typescript Example:\n * ```js\n * var stringArray = injector.get<string[]>('myStringArray');\n * ```\n *\n * ### `NOWAIT` policy\n *\n * When using [[ResolvePolicy.async]] === `NOWAIT`, the value returned from `get()` is a promise for the result.\n * The promise is not automatically unwrapped.\n *\n * @param token the key for the value to get. May be a string, a class, or any arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n get(token: any): any;\n /** Gets a value as type `T` (generics parameter) */\n get<T>(token: any): T;\n\n /**\n * Asynchronously gets a value from the injector\n *\n * For a given token, returns a promise for the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this triggers the resolve to load.\n *\n * #### Example:\n * ```js\n * return injector.getAsync('myResolve').then(value => {\n * if (value === 'declined') return false;\n * });\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return a Promise for the Dependency Injection value that matches the token\n */\n getAsync(token: any): Promise<any>;\n /** Asynchronously gets a value as type `T` (generics parameter) */\n getAsync<T>(token: any): Promise<T>;\n\n /**\n * Gets a value from the native injector\n *\n * Returns a value from the native injector, bypassing anything in the [[ResolveContext]].\n *\n * Example:\n * ```js\n * let someThing = injector.getNative(SomeToken);\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n getNative(token: any): any;\n getNative<T>(token: any): T;\n}\n\n/** @internalapi */\nexport interface UIRouterPlugin extends Disposable {\n name: string;\n}\n\n/** @internalapi */\nexport abstract class UIRouterPluginBase implements UIRouterPlugin, Disposable {\n abstract name: string;\n dispose(router: UIRouter) {}\n}\n\n/** @internalapi */\nexport interface Disposable {\n /** Instructs the Disposable to clean up any resources */\n dispose(router?: UIRouter);\n}\n",
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from '../angular';\nimport {\n StateObject,\n pick,\n forEach,\n tail,\n extend,\n isArray,\n isInjectable,\n isDefined,\n isString,\n services,\n trace,\n ViewConfig,\n ViewService,\n ViewConfigFactory,\n PathNode,\n ResolveContext,\n Resolvable,\n IInjectable,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration } from '../interface';\nimport { TemplateFactory } from '../templateFactory';\nimport IInjectorService = angular.auto.IInjectorService;\n\nexport function getNg1ViewConfigFactory(): ViewConfigFactory {\n let templateFactory: TemplateFactory = null;\n return (path, view) => {\n templateFactory = templateFactory || services.$injector.get('$templateFactory');\n return [new Ng1ViewConfig(path, view, templateFactory)];\n };\n}\n\nconst hasAnyKey = (keys, obj) => keys.reduce((acc, key) => acc || isDefined(obj[key]), false);\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `views`.\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * handles the `views` property with logic specific to @uirouter/angularjs (ng1).\n *\n * If no `views: {}` property exists on the [[StateDeclaration]], then it creates the `views` object\n * and applies the state-level configuration to a view named `$default`.\n */\nexport function ng1ViewsBuilder(state: StateObject) {\n // Do not process root state\n if (!state.parent) return {};\n\n const tplKeys = ['templateProvider', 'templateUrl', 'template', 'notify', 'async'],\n ctrlKeys = ['controller', 'controllerProvider', 'controllerAs', 'resolveAs'],\n compKeys = ['component', 'bindings', 'componentProvider'],\n nonCompKeys = tplKeys.concat(ctrlKeys),\n allViewKeys = compKeys.concat(nonCompKeys);\n\n // Do not allow a state to have both state-level props and also a `views: {}` property.\n // A state without a `views: {}` property can declare properties for the `$default` view as properties of the state.\n // However, the `$default` approach should not be mixed with a separate `views: ` block.\n if (isDefined(state.views) && hasAnyKey(allViewKeys, state)) {\n throw new Error(\n `State '${state.name}' has a 'views' object. ` +\n `It cannot also have \"view properties\" at the state level. ` +\n `Move the following properties into a view (in the 'views' object): ` +\n ` ${allViewKeys.filter(key => isDefined(state[key])).join(', ')}`,\n );\n }\n\n const views: { [key: string]: Ng1ViewDeclaration } = {},\n viewsObject = state.views || { $default: pick(state, allViewKeys) };\n\n forEach(viewsObject, function(config: Ng1ViewDeclaration, name: string) {\n // Account for views: { \"\": { template... } }\n name = name || '$default';\n // Account for views: { header: \"headerComponent\" }\n if (isString(config)) config = { component: <string>config };\n\n // Make a shallow copy of the config object\n config = extend({}, config);\n\n // Do not allow a view to mix props for component-style view with props for template/controller-style view\n if (hasAnyKey(compKeys, config) && hasAnyKey(nonCompKeys, config)) {\n throw new Error(\n `Cannot combine: ${compKeys.join('|')} with: ${nonCompKeys.join('|')} in stateview: '${name}@${state.name}'`,\n );\n }\n\n config.resolveAs = config.resolveAs || '$resolve';\n config.$type = 'ng1';\n config.$context = state;\n config.$name = name;\n\n const normalized = ViewService.normalizeUIViewTarget(config.$context, config.$name);\n config.$uiViewName = normalized.uiViewName;\n config.$uiViewContextAnchor = normalized.uiViewContextAnchor;\n\n views[name] = config;\n });\n return views;\n}\n\nlet id = 0;\nexport class Ng1ViewConfig implements ViewConfig {\n $id = id++;\n loaded = false;\n controller: Function; // actually IInjectable|string\n template: string;\n component: string;\n locals: any; // TODO: delete me\n\n constructor(public path: PathNode[], public viewDecl: Ng1ViewDeclaration, public factory: TemplateFactory) {}\n\n load() {\n const $q = services.$q;\n const context = new ResolveContext(this.path);\n const params = this.path.reduce((acc, node) => extend(acc, node.paramValues), {});\n\n const promises: any = {\n template: $q.when(this.factory.fromConfig(this.viewDecl, params, context)),\n controller: $q.when(this.getController(context)),\n };\n\n return $q.all(promises).then(results => {\n trace.traceViewServiceEvent('Loaded', this);\n this.controller = results.controller;\n extend(this, results.template); // Either { template: \"tpl\" } or { component: \"cmpName\" }\n return this;\n });\n }\n\n getTemplate = (uiView, context: ResolveContext) =>\n this.component\n ? this.factory.makeComponentTemplate(uiView, context, this.component, this.viewDecl.bindings)\n : this.template;\n\n /**\n *Line truncated
|
||||
"/** @module view */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport { IAugmentedJQuery } from 'angular';\nimport {\n isArray,\n isDefined,\n isFunction,\n isObject,\n services,\n Obj,\n IInjectable,\n tail,\n kebobString,\n unnestR,\n ResolveContext,\n Resolvable,\n RawParams,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration, TemplateFactoryProvider } from './interface';\n\n/**\n * Service which manages loading of templates from a ViewConfig.\n */\nexport class TemplateFactory implements TemplateFactoryProvider {\n /** @hidden */ private _useHttp = angular.version.minor < 3;\n /** @hidden */ private $templateRequest;\n /** @hidden */ private $templateCache;\n /** @hidden */ private $http;\n\n /** @hidden */ $get = [\n '$http',\n '$templateCache',\n '$injector',\n ($http, $templateCache, $injector) => {\n this.$templateRequest = $injector.has && $injector.has('$templateRequest') && $injector.get('$templateRequest');\n this.$http = $http;\n this.$templateCache = $templateCache;\n return this;\n },\n ];\n\n /** @hidden */\n useHttpService(value: boolean) {\n this._useHttp = value;\n }\n\n /**\n * Creates a template from a configuration object.\n *\n * @param config Configuration object for which to load a template.\n * The following properties are search in the specified order, and the first one\n * that is defined is used to create the template:\n *\n * @param params Parameters to pass to the template function.\n * @param context The resolve context associated with the template's view\n *\n * @return {string|object} The template html as a string, or a promise for\n * that string,or `null` if no template is configured.\n */\n fromConfig(\n config: Ng1ViewDeclaration,\n params: any,\n context: ResolveContext,\n ): Promise<{ template?: string; component?: string }> {\n const defaultTemplate = '<ui-view></ui-view>';\n\n const asTemplate = result => services.$q.when(result).then(str => ({ template: str }));\n const asComponent = result => services.$q.when(result).then(str => ({ component: str }));\n\n return isDefined(config.template)\n ? asTemplate(this.fromString(config.template, params))\n : isDefined(config.templateUrl)\n ? asTemplate(this.fromUrl(config.templateUrl, params))\n : isDefined(config.templateProvider)\n ? asTemplate(this.fromProvider(config.templateProvider, params, context))\n : isDefined(config.component)\n ? asComponent(config.component)\n : isDefined(config.componentProvider)\n ? asComponent(this.fromComponentProvider(config.componentProvider, params, context))\n : asTemplate(defaultTemplate);\n }\n\n /**\n * Creates a template from a string or a function returning a string.\n *\n * @param template html template as a string or function that returns an html template as a string.\n * @param params Parameters to pass to the template function.\n *\n * @return {string|object} The template html as a string, or a promise for that\n * string.\n */\n fromString(template: string | Function, params?: RawParams) {\n return isFunction(template) ? (<any>template)(params) : template;\n }\n\n /**\n * Loads a template from the a URL via `$http` and `$templateCache`.\n *\n * @param {string|Function} url url of the template to load, or a function\n * that returns a url.\n * @param {Object} params Parameters to pass to the url function.\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromUrl(url: string | Function, params: any) {\n if (isFunction(url)) url = (<any>url)(params);\n if (url == null) return null;\n\n if (this._useHttp) {\n return this.$http\n .get(url, { cache: this.$templateCache, headers: { Accept: 'text/html' } })\n .then(function(response) {\n return response.data;\n });\n }\n\n return this.$templateRequest(url);\n }\n\n /**\n * Creates a template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromProvider(provider: IInjectable, params: any, context: ResolveContext) {\n const deps = services.$injector.annotate(provider);\n const providerFn = isArray(provider) ? tail(<any[]>provider) : provider;\n const resolvable = new Resolvable('', <Function>providerFn, deps);\n return resolvable.get(context);\n }\n\n /**\n * Creates a component's template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {strinLine truncated
|
||||
"/** @module ng1 */ /** for typedoc */\nimport {\n val,\n isObject,\n createProxyFunctions,\n BuilderFunction,\n StateRegistry,\n StateService,\n OnInvalidCallback,\n} from '@uirouter/core';\nimport { Ng1StateDeclaration } from './interface';\n\n/**\n * The Angular 1 `StateProvider`\n *\n * The `$stateProvider` works similar to Angular's v1 router, but it focuses purely\n * on state.\n *\n * A state corresponds to a \"place\" in the application in terms of the overall UI and\n * navigation. A state describes (via the controller / template / view properties) what\n * the UI looks like and does at that place.\n *\n * States often have things in common, and the primary way of factoring out these\n * commonalities in this model is via the state hierarchy, i.e. parent/child states aka\n * nested states.\n *\n * The `$stateProvider` provides interfaces to declare these states for your app.\n */\nexport class StateProvider {\n constructor(private stateRegistry: StateRegistry, private stateService: StateService) {\n createProxyFunctions(val(StateProvider.prototype), this, val(this));\n }\n\n /**\n * Decorates states when they are registered\n *\n * Allows you to extend (carefully) or override (at your own peril) the\n * `stateBuilder` object used internally by [[StateRegistry]].\n * This can be used to add custom functionality to ui-router,\n * for example inferring templateUrl based on the state name.\n *\n * When passing only a name, it returns the current (original or decorated) builder\n * function that matches `name`.\n *\n * The builder functions that can be decorated are listed below. Though not all\n * necessarily have a good use case for decoration, that is up to you to decide.\n *\n * In addition, users can attach custom decorators, which will generate new\n * properties within the state's internal definition. There is currently no clear\n * use-case for this beyond accessing internal states (i.e. $state.$current),\n * however, expect this to become increasingly relevant as we introduce additional\n * meta-programming features.\n *\n * **Warning**: Decorators should not be interdependent because the order of\n * execution of the builder functions in non-deterministic. Builder functions\n * should only be dependent on the state definition object and super function.\n *\n *\n * Existing builder functions and current return values:\n *\n * - **parent** `{object}` - returns the parent state object.\n * - **data** `{object}` - returns state data, including any inherited data that is not\n * overridden by own values (if any).\n * - **url** `{object}` - returns a {@link ui.router.util.type:UrlMatcher UrlMatcher}\n * or `null`.\n * - **navigable** `{object}` - returns closest ancestor state that has a URL (aka is\n * navigable).\n * - **params** `{object}` - returns an array of state params that are ensured to\n * be a super-set of parent's params.\n * - **views** `{object}` - returns a views object where each key is an absolute view\n * name (i.e. \"viewName@stateName\") and each value is the config object\n * (template, controller) for the view. Even when you don't use the views object\n * explicitly on a state config, one is still created for you internally.\n * So by decorating this builder function you have access to decorating template\n * and controller properties.\n * - **ownParams** `{object}` - returns an array of params that belong to the state,\n * not including any params defined by ancestor states.\n * - **path** `{string}` - returns the full path from the root down to this state.\n * Needed for state activation.\n * - **includes** `{object}` - returns an object that includes every state that\n * would pass a `$state.includes()` test.\n *\n * #### Example:\n * Override the internal 'views' builder with a function that takes the state\n * definition, and a reference to the internal function being overridden:\n * ```js\n * $stateProvider.decorator('views', function (state, parent) {\n * let result = {},\n * views = parent(state);\n *\n * angular.forEach(views, function (config, name) {\n * let autoName = (state.name + '.' + name).replace('.', '/');\n * config.templateUrl = config.templateUrl || '/partials/' + autoName + '.html';\n * result[name] = config;\n * });\n * return result;\n * });\n *\n * $stateProvider.state('home', {\n * views: {\n * 'contact.list': { controller: 'ListController' },\n * 'contact.item': { controller: 'ItemController' }\n * }\n * });\n * ```\n *\n *\n * ```js\n * // Auto-populates list and item views with /partials/home/contact/list.html,\n * // and /partials/home/contact/item.html, respectively.\n * $state.go('home');\n * ```\n *\n * @param {string} name The name of the builder function to decorate.\n * @param {object} func A function thLine truncated
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"/** @module ng1 */ /** */\nimport {\n StateObject,\n TransitionStateHookFn,\n HookResult,\n Transition,\n services,\n ResolveContext,\n extend,\n BuilderFunction,\n} from '@uirouter/core';\nimport { getLocals } from '../services';\nimport { Ng1StateDeclaration } from '../interface';\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `onEnter`, `onExit`,\n * `onRetain` callback hooks on a [[Ng1StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * ensures that those hooks are injectable for @uirouter/angularjs (ng1).\n */\nexport const getStateHookBuilder = (hookName: 'onEnter' | 'onExit' | 'onRetain') =>\n function stateHookBuilder(stateObject: StateObject, parentFn: BuilderFunction): TransitionStateHookFn {\n const hook = stateObject[hookName];\n const pathname = hookName === 'onExit' ? 'from' : 'to';\n\n function decoratedNg1Hook(trans: Transition, state: Ng1StateDeclaration): HookResult {\n const resolveContext = new ResolveContext(trans.treeChanges(pathname));\n const subContext = resolveContext.subContext(state.$$state());\n const locals = extend(getLocals(subContext), { $state$: state, $transition$: trans });\n return services.$injector.invoke(hook, this, locals);\n }\n\n return hook ? decoratedNg1Hook : undefined;\n };\n",
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"/**\n * @internalapi\n * @module ng1\n */ /** */\nimport { LocationConfig, LocationServices, UIRouter, ParamType, isDefined } from '@uirouter/core';\nimport { val, createProxyFunctions, removeFrom, isObject } from '@uirouter/core';\nimport { ILocationService, ILocationProvider } from 'angular';\n\n/**\n * Implements UI-Router LocationServices and LocationConfig using Angular 1's $location service\n */\nexport class Ng1LocationServices implements LocationConfig, LocationServices {\n private $locationProvider: ILocationProvider;\n private $location: ILocationService;\n private $sniffer;\n\n path;\n search;\n hash;\n hashPrefix;\n port;\n protocol;\n host;\n baseHref;\n\n // .onChange() registry\n private _urlListeners: Function[] = [];\n\n /**\n * Applys ng1-specific path parameter encoding\n *\n * The Angular 1 `$location` service is a bit weird.\n * It doesn't allow slashes to be encoded/decoded bi-directionally.\n *\n * See the writeup at https://github.com/angular-ui/ui-router/issues/2598\n *\n * This code patches the `path` parameter type so it encoded/decodes slashes as ~2F\n *\n * @param router\n */\n static monkeyPatchPathParameterType(router: UIRouter) {\n const pathType: ParamType = router.urlMatcherFactory.type('path');\n\n pathType.encode = (x: any) =>\n x != null ? x.toString().replace(/(~|\\/)/g, m => ({ '~': '~~', '/': '~2F' }[m])) : x;\n\n pathType.decode = (x: string) =>\n x != null ? x.toString().replace(/(~~|~2F)/g, m => ({ '~~': '~', '~2F': '/' }[m])) : x;\n }\n\n dispose() {}\n\n constructor($locationProvider: ILocationProvider) {\n this.$locationProvider = $locationProvider;\n const _lp = val($locationProvider);\n createProxyFunctions(_lp, this, _lp, ['hashPrefix']);\n }\n\n onChange(callback: Function) {\n this._urlListeners.push(callback);\n return () => removeFrom(this._urlListeners)(callback);\n }\n\n html5Mode() {\n let html5Mode: any = this.$locationProvider.html5Mode();\n html5Mode = isObject(html5Mode) ? html5Mode.enabled : html5Mode;\n return html5Mode && this.$sniffer.history;\n }\n\n url(newUrl?: string, replace = false, state?) {\n if (isDefined(newUrl)) this.$location.url(newUrl);\n if (replace) this.$location.replace();\n if (state) this.$location.state(state);\n return this.$location.url();\n }\n\n _runtimeServices($rootScope, $location: ILocationService, $sniffer, $browser) {\n this.$location = $location;\n this.$sniffer = $sniffer;\n\n // Bind $locationChangeSuccess to the listeners registered in LocationService.onChange\n $rootScope.$on('$locationChangeSuccess', evt => this._urlListeners.forEach(fn => fn(evt)));\n const _loc = val($location);\n const _browser = val($browser);\n\n // Bind these LocationService functions to $location\n createProxyFunctions(_loc, this, _loc, ['replace', 'path', 'search', 'hash']);\n // Bind these LocationConfig functions to $location\n createProxyFunctions(_loc, this, _loc, ['port', 'protocol', 'host']);\n // Bind these LocationConfig functions to $browser\n createProxyFunctions(_browser, this, _browser, ['baseHref']);\n }\n}\n",
|
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"/** @module url */ /** */\nimport {\n UIRouter,\n UrlRouter,\n LocationServices,\n $InjectorLike,\n BaseUrlRule,\n UrlRuleHandlerFn,\n UrlMatcher,\n IInjectable,\n} from '@uirouter/core';\nimport { services, isString, isFunction, isArray, identity } from '@uirouter/core';\n\nexport interface RawNg1RuleFunction {\n ($injector: $InjectorLike, $location: LocationServices): string | void;\n}\n\n/**\n * Manages rules for client-side URL\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class manages the router rules for what to do when the URL changes.\n *\n * This provider remains for backwards compatibility.\n *\n * @deprecated\n */\nexport class UrlRouterProvider {\n /** @hidden */ _router: UIRouter;\n /** @hidden */ _urlRouter: UrlRouter;\n\n static injectableHandler(router: UIRouter, handler): UrlRuleHandlerFn {\n return match => services.$injector.invoke(handler, null, { $match: match, $stateParams: router.globals.params });\n }\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this._urlRouter = router.urlRouter;\n }\n\n /** @hidden */\n $get() {\n const urlRouter = this._urlRouter;\n urlRouter.update(true);\n if (!urlRouter.interceptDeferred) urlRouter.listen();\n return urlRouter;\n }\n\n /**\n * Registers a url handler function.\n *\n * Registers a low level url handler (a `rule`).\n * A rule detects specific URL patterns and returns a redirect, or performs some action.\n *\n * If a rule returns a string, the URL is replaced with the string, and all rules are fired again.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // Here's an example of how you might allow case insensitive urls\n * $urlRouterProvider.rule(function ($injector, $location) {\n * var path = $location.path(),\n * normalized = path.toLowerCase();\n *\n * if (path !== normalized) {\n * return normalized;\n * }\n * });\n * });\n * ```\n *\n * @param ruleFn\n * Handler function that takes `$injector` and `$location` services as arguments.\n * You can use them to detect a url and return a different url as a string.\n *\n * @return [[UrlRouterProvider]] (`this`)\n */\n rule(ruleFn: RawNg1RuleFunction): UrlRouterProvider {\n if (!isFunction(ruleFn)) throw new Error(\"'rule' must be a function\");\n\n const match = () => ruleFn(services.$injector, this._router.locationService);\n\n const rule = new BaseUrlRule(match, identity);\n this._urlRouter.rule(rule);\n return this;\n }\n\n /**\n * Defines the path or behavior to use when no url can be matched.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // if the path doesn't match any of the urls you configured\n * // otherwise will take care of routing the user to the\n * // specified url\n * $urlRouterProvider.otherwise('/index');\n *\n * // Example of using function rule as param\n * $urlRouterProvider.otherwise(function ($injector, $location) {\n * return '/a/valid/url';\n * });\n * });\n * ```\n *\n * @param rule\n * The url path you want to redirect to or a function rule that returns the url path or performs a `$state.go()`.\n * The function version is passed two params: `$injector` and `$location` services, and should return a url string.\n *\n * @return {object} `$urlRouterProvider` - `$urlRouterProvider` instance\n */\n otherwise(rule: string | RawNg1RuleFunction): UrlRouterProvider {\n const urlRouter = this._urlRouter;\n\n if (isString(rule)) {\n urlRouter.otherwise(rule);\n } else if (isFunction(rule)) {\n urlRouter.otherwise(() => rule(services.$injector, this._router.locationService));\n } else {\n throw new Error(\"'rule' must be a string or function\");\n }\n\n return this;\n }\n\n /**\n * Registers a handler for a given url matching.\n *\n * If the handler is a string, it is\n * treated as a redirect, and is interpolated according to the syntax of match\n * (i.e. like `String.replace()` for `RegExp`, or like a `UrlMatcher` pattern otherwise).\n *\n * If the handler is a function, it is injectable.\n * It gets invoked if `$location` matches.\n * You have the option of inject the match object as `$match`.\n *\n * The handler can return\n *\n * - **falsy** to indicate that the rule didn't match after all, then `$urlRouter`\n * will continue trying to find another one that matches.\n * - **string** which is treated as a redirect and passed to `$location.url()`\n * - **void** or any **truthy**Line truncated
|
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"/**\n * # Angular 1 types\n *\n * UI-Router core provides various Typescript types which you can use for code completion and validating parameter values, etc.\n * The customizations to the core types for Angular UI-Router are documented here.\n *\n * The optional [[$resolve]] service is also documented here.\n *\n * @module ng1\n * @preferred\n */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport {\n IRootScopeService,\n IQService,\n ILocationService,\n ILocationProvider,\n IHttpService,\n ITemplateCacheService,\n} from 'angular';\nimport {\n services,\n applyPairs,\n isString,\n trace,\n extend,\n UIRouter,\n StateService,\n UrlRouter,\n UrlMatcherFactory,\n ResolveContext,\n unnestR,\n TypedMap,\n} from '@uirouter/core';\nimport { ng1ViewsBuilder, getNg1ViewConfigFactory } from './statebuilders/views';\nimport { TemplateFactory } from './templateFactory';\nimport { StateProvider } from './stateProvider';\nimport { getStateHookBuilder } from './statebuilders/onEnterExitRetain';\nimport { Ng1LocationServices } from './locationServices';\nimport { UrlRouterProvider } from './urlRouterProvider';\nimport IInjectorService = angular.auto.IInjectorService; // tslint:disable-line\n\nangular.module('ui.router.angular1', []);\nconst mod_init = angular.module('ui.router.init', []);\nconst mod_util = angular.module('ui.router.util', ['ng', 'ui.router.init']);\nconst mod_rtr = angular.module('ui.router.router', ['ui.router.util']);\nconst mod_state = angular.module('ui.router.state', ['ui.router.router', 'ui.router.util', 'ui.router.angular1']);\nconst mod_main = angular.module('ui.router', ['ui.router.init', 'ui.router.state', 'ui.router.angular1']);\nlet mod_cmpt = angular.module('ui.router.compat', ['ui.router']); // tslint:disable-line\n\ndeclare module '@uirouter/core/lib/router' {\n interface UIRouter {\n // tslint:disable-line:no-shadowed-variable\n /** @hidden */\n stateProvider: StateProvider;\n /** @hidden */\n urlRouterProvider: UrlRouterProvider;\n }\n}\n\nlet router: UIRouter = null;\n\n$uiRouterProvider.$inject = ['$locationProvider'];\n/** This angular 1 provider instantiates a Router and exposes its services via the angular injector */\nfunction $uiRouterProvider($locationProvider: ILocationProvider) {\n // Create a new instance of the Router when the $uiRouterProvider is initialized\n router = this.router = new UIRouter();\n router.stateProvider = new StateProvider(router.stateRegistry, router.stateService);\n\n // Apply ng1 specific StateBuilder code for `views`, `resolve`, and `onExit/Retain/Enter` properties\n router.stateRegistry.decorator('views', ng1ViewsBuilder);\n router.stateRegistry.decorator('onExit', getStateHookBuilder('onExit'));\n router.stateRegistry.decorator('onRetain', getStateHookBuilder('onRetain'));\n router.stateRegistry.decorator('onEnter', getStateHookBuilder('onEnter'));\n\n router.viewService._pluginapi._viewConfigFactory('ng1', getNg1ViewConfigFactory());\n\n const ng1LocationService = (router.locationService = router.locationConfig = new Ng1LocationServices(\n $locationProvider,\n ));\n\n Ng1LocationServices.monkeyPatchPathParameterType(router);\n\n // backwards compat: also expose router instance as $uiRouterProvider.router\n router['router'] = router;\n router['$get'] = $get;\n $get.$inject = ['$location', '$browser', '$sniffer', '$rootScope', '$http', '$templateCache'];\n function $get(\n $location: ILocationService,\n $browser: any,\n $sniffer: any,\n $rootScope: ng.IScope,\n $http: IHttpService,\n $templateCache: ITemplateCacheService,\n ) {\n ng1LocationService._runtimeServices($rootScope, $location, $sniffer, $browser);\n delete router['router'];\n delete router['$get'];\n return router;\n }\n return router;\n}\n\nconst getProviderFor = serviceName => [\n '$uiRouterProvider',\n $urp => {\n const service = $urp.router[serviceName];\n service['$get'] = () => service;\n return service;\n },\n];\n\n// This effectively calls $get() on `$uiRouterProvider` to trigger init (when ng enters runtime)\nrunBlock.$inject = ['$injector', '$q', '$uiRouter'];\nfunction runBlock($injector: IInjectorService, $q: IQService, $uiRouter: UIRouter) {\n services.$injector = $injector;\n services.$q = <any>$q;\n\n // The $injector is now available.\n // Find any resolvables that had dependency annotation deferred\n $uiRouter.stateRegistry\n .get()\n .map(x => x.$$state().resolvables)\n .reduce(unnestR, [])\n .filter(x => x.deps === 'deferred')\n .forEach(resolvable => (resolvable.deps = $injector.annotate(resolvable.resolveFn, $injector.strictDi)));\n}\n\n// $urlRouter service and $urlRouterProvider\nconst getUrlRouterProvider = (uiRouter: UIRouter) => (uiRouter.urlRouterProvider = new UrlRouterProvider(uiRouter));\n\n// $state service and $stateProvider\n// $urlRouter service and $urlRouterProvider\nconst getStateProvider = () => extend(router.stLine truncated
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"/**\n * # Angular 1 Directives\n *\n * These are the directives included in UI-Router for Angular 1.\n * These directives are used in templates to create viewports and link/navigate to states.\n *\n * @ng1api\n * @preferred\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IAugmentedJQuery, ITimeoutService, IScope, IInterpolateService } from 'angular';\n\nimport {\n Obj,\n extend,\n forEach,\n tail,\n isString,\n isObject,\n isArray,\n parse,\n noop,\n unnestR,\n identity,\n uniqR,\n inArray,\n removeFrom,\n RawParams,\n PathNode,\n StateOrName,\n StateService,\n StateDeclaration,\n UIRouter,\n} from '@uirouter/core';\nimport { UIViewData } from './viewDirective';\nimport EventHandler = JQuery.EventHandler;\n\n/** @hidden Used for typedoc */\nexport interface ng1_directive {} // tslint:disable-line:class-name\n\n/** @hidden */\nfunction parseStateRef(ref: string) {\n let parsed;\n const paramsOnly = ref.match(/^\\s*({[^}]*})\\s*$/);\n if (paramsOnly) ref = '(' + paramsOnly[1] + ')';\n\n parsed = ref.replace(/\\n/g, ' ').match(/^\\s*([^(]*?)\\s*(\\((.*)\\))?\\s*$/);\n if (!parsed || parsed.length !== 4) throw new Error(\"Invalid state ref '\" + ref + \"'\");\n return { state: parsed[1] || null, paramExpr: parsed[3] || null };\n}\n\n/** @hidden */\nfunction stateContext(el: IAugmentedJQuery) {\n const $uiView: UIViewData = (el.parent() as IAugmentedJQuery).inheritedData('$uiView');\n const path: PathNode[] = parse('$cfg.path')($uiView);\n return path ? tail(path).state.name : undefined;\n}\n\n/** @hidden */\nfunction processedDef($state: StateService, $element: IAugmentedJQuery, def: Def): Def {\n const uiState = def.uiState || $state.current.name;\n const uiStateOpts = extend(defaultOpts($element, $state), def.uiStateOpts || {});\n const href = $state.href(uiState, def.uiStateParams, uiStateOpts);\n return { uiState, uiStateParams: def.uiStateParams, uiStateOpts, href };\n}\n\n/** @hidden */\ninterface TypeInfo {\n attr: string;\n isAnchor: boolean;\n clickable: boolean;\n}\n\n/** @hidden */\nfunction getTypeInfo(el: IAugmentedJQuery): TypeInfo {\n // SVGAElement does not use the href attribute, but rather the 'xlinkHref' attribute.\n const isSvg = Object.prototype.toString.call(el.prop('href')) === '[object SVGAnimatedString]';\n const isForm = el[0].nodeName === 'FORM';\n\n return {\n attr: isForm ? 'action' : isSvg ? 'xlink:href' : 'href',\n isAnchor: el.prop('tagName').toUpperCase() === 'A',\n clickable: !isForm,\n };\n}\n\n/** @hidden */\nfunction clickHook(\n el: IAugmentedJQuery,\n $state: StateService,\n $timeout: ITimeoutService,\n type: TypeInfo,\n getDef: () => Def,\n) {\n return function(e: JQueryMouseEventObject) {\n const button = e.which || e.button,\n target = getDef();\n\n if (!(button > 1 || e.ctrlKey || e.metaKey || e.shiftKey || el.attr('target'))) {\n // HACK: This is to allow ng-clicks to be processed before the transition is initiated:\n const transition = $timeout(function() {\n $state.go(target.uiState, target.uiStateParams, target.uiStateOpts);\n });\n e.preventDefault();\n\n // if the state has no URL, ignore one preventDefault from the <a> directive.\n let ignorePreventDefaultCount = type.isAnchor && !target.href ? 1 : 0;\n\n e.preventDefault = function() {\n if (ignorePreventDefaultCount-- <= 0) $timeout.cancel(transition);\n };\n }\n };\n}\n\n/** @hidden */\nfunction defaultOpts(el: IAugmentedJQuery, $state: StateService) {\n return {\n relative: stateContext(el) || $state.$current,\n inherit: true,\n source: 'sref',\n };\n}\n\n/** @hidden */\nfunction bindEvents(element: IAugmentedJQuery, scope: IScope, hookFn: EventHandler<any>, uiStateOpts: any): void {\n let events;\n\n if (uiStateOpts) {\n events = uiStateOpts.events;\n }\n\n if (!isArray(events)) {\n events = ['click'];\n }\n\n const on = element.on ? 'on' : 'bind';\n for (const event of events) {\n element[on](event, hookFn);\n }\n\n scope.$on('$destroy', function() {\n const off = element.off ? 'off' : 'unbind';\n for (const event of events) {\n element[off](event, hookFn);\n }\n });\n}\n\n/**\n * `ui-sref`: A directive for linking to a state\n *\n * A directive which links to a state (and optionally, parameters).\n * When clicked, this directive activates the linked state with the supplied parameter values.\n *\n * ### Linked State\n * The attribute value of the `ui-sref` is the name of the state to link to.\n *\n * #### Example:\n * This will activate the `home` state when the link is clicked.\n * ```html\n * <a ui-sref=\"home\">Home</a>\n * ```\n *\n * ### Relative Links\n * You can also use relative state paths within `ui-sref`, just like a relative path passed to `$state.go()` ([[StateService.go]]).\n * You just need to be aware that the path is relative to the state that *created* the link.\nLine truncated
|
||||
"/**\n * @ng1api\n * @module directives\n */\n\nimport {\n $QLike,\n ActiveUIView,\n extend,\n filter,\n HookRegOptions,\n isDefined,\n isFunction,\n isString,\n kebobString,\n noop,\n Obj,\n Param,\n parse,\n PathNode,\n ResolveContext,\n StateDeclaration,\n tail,\n trace,\n Transition,\n TransitionService,\n TypedMap,\n unnestR,\n ViewService,\n} from '@uirouter/core';\nimport { IAugmentedJQuery, IInterpolateService, IScope, ITimeoutService, ITranscludeFunction } from 'angular';\nimport { ng as angular } from '../angular';\nimport { Ng1Controller, Ng1StateDeclaration } from '../interface';\nimport { getLocals } from '../services';\nimport { Ng1ViewConfig } from '../statebuilders/views';\nimport { ng1_directive } from './stateDirectives';\n\n/** @hidden */\nexport type UIViewData = {\n $cfg: Ng1ViewConfig;\n $uiView: ActiveUIView;\n};\n\n/** @hidden */\nexport type UIViewAnimData = {\n $animEnter: Promise<any>;\n $animLeave: Promise<any>;\n $$animLeave: { resolve: () => any }; // \"deferred\"\n};\n\n/**\n * `ui-view`: A viewport directive which is filled in by a view from the active state.\n *\n * ### Attributes\n *\n * - `name`: (Optional) A view name.\n * The name should be unique amongst the other views in the same state.\n * You can have views of the same name that live in different states.\n * The ui-view can be targeted in a View using the name ([[Ng1StateDeclaration.views]]).\n *\n * - `autoscroll`: an expression. When it evaluates to true, the `ui-view` will be scrolled into view when it is activated.\n * Uses [[$uiViewScroll]] to do the scrolling.\n *\n * - `onload`: Expression to evaluate whenever the view updates.\n *\n * #### Example:\n * A view can be unnamed or named.\n * ```html\n * <!-- Unnamed -->\n * <div ui-view></div>\n *\n * <!-- Named -->\n * <div ui-view=\"viewName\"></div>\n *\n * <!-- Named (different style) -->\n * <ui-view name=\"viewName\"></ui-view>\n * ```\n *\n * You can only have one unnamed view within any template (or root html). If you are only using a\n * single view and it is unnamed then you can populate it like so:\n *\n * ```html\n * <div ui-view></div>\n * $stateProvider.state(\"home\", {\n * template: \"<h1>HELLO!</h1>\"\n * })\n * ```\n *\n * The above is a convenient shortcut equivalent to specifying your view explicitly with the\n * [[Ng1StateDeclaration.views]] config property, by name, in this case an empty name:\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * But typically you'll only use the views property if you name your view or have more than one view\n * in the same template. There's not really a compelling reason to name a view if its the only one,\n * but you could if you wanted, like so:\n *\n * ```html\n * <div ui-view=\"main\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"main\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * Really though, you'll use views to set up multiple views:\n *\n * ```html\n * <div ui-view></div>\n * <div ui-view=\"chart\"></div>\n * <div ui-view=\"data\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * },\n * \"chart\": {\n * template: \"<chart_thing/>\"\n * },\n * \"data\": {\n * template: \"<data_thing/>\"\n * }\n * }\n * })\n * ```\n *\n * #### Examples for `autoscroll`:\n * ```html\n * <!-- If autoscroll present with no expression,\n * then scroll ui-view into view -->\n * <ui-view autoscroll/>\n *\n * <!-- If autoscroll present with valid expression,\n * then scroll ui-view into view if expression evaluates to true -->\n * <ui-view autoscroll='true'/>\n * <ui-view autoscroll='false'/>\n * <ui-view autoscroll='scopeVariable'/>\n * ```\n *\n * Resolve data:\n *\n * The resolved data from the state's `resolve` block is placed on the scope as `$resolve` (this\n * can be customized using [[Ng1ViewDeclaration.resolveAs]]). This can be then accessed from the template.\n *\n * Note that when `controllerAs` is being used, `$resolve` is set on the controller instance *after* the\n * controller is instantiated. The `$onInit()` hook can be used to perform initialization code which\n * depends on `$resolve` data.\n *\n * #### Example:\n * ```js\n * $stateProvider.state('home', {\n * template: '<my-component user=\"$resolve.user\"></my-component>',\n * resolve: {\n * user: function(UserService) { return UserService.fetchUser(); }\n * }\n * });\n * ```\n */\nexport let uiView: ng1_directive;\nuiView = [\n '$view',\n '$animate',\n '$uiViewScroll',\n '$interpolate',\n '$q',\n function $ViewDirective(\n $view: ViewService,\n $animate: any,\n $uiViewScroll: any,\n $interpolate: IInterpolateService,\n $q: $QLike,\n ) {\n function getLine truncated
|
||||
"/** @module ng1 */ /** for typedoc */\n\nimport { ng as angular } from './angular';\nimport { Obj, StateService, StateOrName } from '@uirouter/core';\n\n/**\n * `isState` Filter: truthy if the current state is the parameter\n *\n * Translates to [[StateService.is]] `$state.is(\"stateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'stateName' | isState\">show if state is 'stateName'</div>\n * ```\n */\n$IsStateFilter.$inject = ['$state'];\nexport function $IsStateFilter($state: StateService) {\n const isFilter: any = function(state: StateOrName, params: Obj, options?: { relative?: StateOrName }) {\n return $state.is(state, params, options);\n };\n isFilter.$stateful = true;\n return isFilter;\n}\n\n/**\n * `includedByState` Filter: truthy if the current state includes the parameter\n *\n * Translates to [[StateService.includes]]` $state.is(\"fullOrPartialStateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'fullOrPartialStateName' | includedByState\">show if state includes 'fullOrPartialStateName'</div>\n * ```\n */\n$IncludedByStateFilter.$inject = ['$state'];\nexport function $IncludedByStateFilter($state: StateService) {\n const includesFilter: any = function(state: StateOrName, params: Obj, options: { relative?: StateOrName }) {\n return $state.includes(state, params, options);\n };\n includesFilter.$stateful = true;\n return includesFilter;\n}\n\nangular\n .module('ui.router.state')\n .filter('isState', $IsStateFilter)\n .filter('includedByState', $IncludedByStateFilter);\n",
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from './angular';\nimport { IServiceProviderFactory } from 'angular';\nimport IAnchorScrollService = angular.IAnchorScrollService;\nimport ITimeoutService = angular.ITimeoutService;\n\nexport interface UIViewScrollProvider {\n /**\n * Uses standard anchorScroll behavior\n *\n * Reverts [[$uiViewScroll]] back to using the core [`$anchorScroll`](http://docs.angularjs.org/api/ng.$anchorScroll)\n * service for scrolling based on the url anchor.\n */\n useAnchorScroll(): void;\n}\n\n/** @hidden */\nfunction $ViewScrollProvider() {\n let useAnchorScroll = false;\n\n this.useAnchorScroll = function() {\n useAnchorScroll = true;\n };\n\n this.$get = [\n '$anchorScroll',\n '$timeout',\n function($anchorScroll: IAnchorScrollService, $timeout: ITimeoutService): Function {\n if (useAnchorScroll) {\n return $anchorScroll;\n }\n\n return function($element: JQuery) {\n return $timeout(\n function() {\n $element[0].scrollIntoView();\n },\n 0,\n false,\n );\n };\n },\n ];\n}\n\nangular.module('ui.router.state').provider('$uiViewScroll', <IServiceProviderFactory>$ViewScrollProvider);\n",
|
||||
"/**\n * Main entry point for angular 1.x build\n * @module ng1\n */ /** */\n\nexport * from './interface';\nexport * from './services';\nexport * from './statebuilders/views';\nexport * from './stateProvider';\nexport * from './urlRouterProvider';\n\nimport './injectables';\nimport './directives/stateDirectives';\nimport './stateFilters';\nimport './directives/viewDirective';\nimport './viewScroll';\n\nexport default 'ui.router';\n\nimport * as core from '@uirouter/core';\nexport { core };\nexport * from '@uirouter/core';\n"
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { UIRouter } from '../router';\nimport { BaseLocationServices } from './baseLocationService';\nimport { LocationConfig, root, splitHash, splitQuery, stripLastPathElement } from '../common';\n\n/**\n * A `LocationServices` that gets/sets the current location using the browser's `location` and `history` apis\n *\n * Uses `history.pushState` and `history.replaceState`\n */\nexport class PushStateLocationService extends BaseLocationServices {\n _config: LocationConfig;\n\n constructor(router: UIRouter) {\n super(router, true);\n this._config = router.urlService.config;\n root.addEventListener('popstate', this._listener, false);\n }\n\n /**\n * Gets the base prefix without:\n * - trailing slash\n * - trailing filename\n * - protocol and hostname\n *\n * If <base href='/base/'>, this returns '/base'.\n * If <base href='/foo/base/'>, this returns '/foo/base'.\n * If <base href='/base/index.html'>, this returns '/base'.\n * If <base href='http://localhost:8080/base/index.html'>, this returns '/base'.\n * If <base href='/base'>, this returns ''.\n * If <base href='http://localhost:8080'>, this returns ''.\n * If <base href='http://localhost:8080/'>, this returns ''.\n *\n * See: https://html.spec.whatwg.org/dev/semantics.html#the-base-element\n */\n private _getBasePrefix() {\n return stripLastPathElement(this._config.baseHref());\n }\n\n protected _get() {\n let { pathname, hash, search } = this._location;\n search = splitQuery(search)[1]; // strip ? if found\n hash = splitHash(hash)[1]; // strip # if found\n\n const basePrefix = this._getBasePrefix();\n const exactBaseHrefMatch = pathname === this._config.baseHref();\n const startsWithBase = pathname.substr(0, basePrefix.length) === basePrefix;\n pathname = exactBaseHrefMatch ? '/' : startsWithBase ? pathname.substring(basePrefix.length) : pathname;\n\n return pathname + (search ? '?' + search : '') + (hash ? '#' + hash : '');\n }\n\n protected _set(state: any, title: string, url: string, replace: boolean) {\n const basePrefix = this._getBasePrefix();\n const slash = url && url[0] !== '/' ? '/' : '';\n const fullUrl = (url === '' || url === '/') ? this._config.baseHref() : basePrefix + slash + url;\n\n if (replace) {\n this._history.replaceState(state, title, fullUrl);\n } else {\n this._history.pushState(state, title, fullUrl);\n }\n }\n\n public dispose(router: UIRouter) {\n super.dispose(router);\n root.removeEventListener('popstate', this._listener);\n }\n}\n\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { LocationConfig } from '../common/coreservices';\nimport { isDefined } from '../common/predicates';\nimport { noop } from '../common/common';\n\n/** A `LocationConfig` mock that gets/sets all config from an in-memory object */\nexport class MemoryLocationConfig implements LocationConfig {\n dispose = noop;\n\n _baseHref = '';\n _port = 80;\n _protocol = 'http';\n _host = 'localhost';\n _hashPrefix = '';\n\n port = () => this._port;\n protocol = () => this._protocol;\n host = () => this._host;\n baseHref = () => this._baseHref;\n html5Mode = () => false;\n hashPrefix = (newval?) => isDefined(newval) ? this._hashPrefix = newval : this._hashPrefix;\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { isDefined } from '../common/predicates';\nimport { LocationConfig } from '../common/coreservices';\n\n/** A `LocationConfig` that delegates to the browser's `location` object */\nexport class BrowserLocationConfig implements LocationConfig {\n private _baseHref = undefined;\n private _hashPrefix = '';\n\n constructor(router?, private _isHtml5 = false) { }\n\n port(): number {\n if (location.port) {\n return Number(location.port);\n }\n\n return this.protocol() === 'https' ? 443 : 80;\n }\n\n protocol(): string {\n return location.protocol.replace(/:/g, '');\n }\n\n host(): string {\n return location.hostname;\n }\n\n html5Mode(): boolean {\n return this._isHtml5;\n }\n\n hashPrefix(): string;\n hashPrefix(newprefix?: string): string {\n return isDefined(newprefix) ? this._hashPrefix = newprefix : this._hashPrefix;\n }\n\n baseHref(href?: string): string {\n return isDefined(href) ? this._baseHref = href :\n isDefined(this._baseHref) ? this._baseHref : this.applyDocumentBaseHref();\n }\n\n applyDocumentBaseHref() {\n const baseTag: HTMLBaseElement = document.getElementsByTagName('base')[0];\n return this._baseHref = baseTag ? baseTag.href.substr(location.origin.length) : location.pathname || '/';\n }\n\n dispose() {}\n}\n",
|
||||
"/**\n * @internalapi\n * @module vanilla\n */\n/** */\nimport { BrowserLocationConfig } from './browserLocationConfig';\nimport { HashLocationService } from './hashLocationService';\nimport { locationPluginFactory } from './utils';\nimport { LocationPlugin, ServicesPlugin } from './interface';\nimport { UIRouter } from '../router';\nimport { PushStateLocationService } from './pushStateLocationService';\nimport { MemoryLocationService } from './memoryLocationService';\nimport { MemoryLocationConfig } from './memoryLocationConfig';\nimport { $injector } from './injector';\nimport { $q } from './q';\nimport { services } from '../common/coreservices';\n\nexport function servicesPlugin(router: UIRouter): ServicesPlugin {\n services.$injector = $injector;\n services.$q = $q;\n\n return { name: 'vanilla.services', $q, $injector, dispose: () => null };\n}\n\n/** A `UIRouterPlugin` uses the browser hash to get/set the current location */\nexport const hashLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.hashBangLocation', false, HashLocationService, BrowserLocationConfig);\n\n/** A `UIRouterPlugin` that gets/sets the current location using the browser's `location` and `history` apis */\nexport const pushStateLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.pushStateLocation', true, PushStateLocationService, BrowserLocationConfig);\n\n/** A `UIRouterPlugin` that gets/sets the current location from an in-memory object */\nexport const memoryLocationPlugin: (router: UIRouter) => LocationPlugin =\n locationPluginFactory('vanilla.memoryLocation', false, MemoryLocationService, MemoryLocationConfig);\n",
|
||||
"/**\n * # Core classes and interfaces\n *\n * The classes and interfaces that are core to ui-router and do not belong\n * to a more specific subsystem (such as resolve).\n *\n * @coreapi\n * @preferred\n * @module core\n */ /** for typedoc */\n\n// Need to import or export at least one concrete something\nimport { noop } from './common/common';\nimport { UIRouter } from './router';\n\n/**\n * An interface for getting values from dependency injection.\n *\n * This is primarily used to get resolve values for a given token.\n * An instance of the `UIInjector` can be retrieved from the current transition using [[Transition.injector]].\n *\n * ---\n *\n * If no resolve is found for a token, then it will delegate to the native injector.\n * The native injector may be Angular 1 `$injector`, Angular 2 `Injector`, or a simple polyfill.\n *\n * In Angular 2, the native injector might be the root Injector,\n * or it might be a lazy loaded `NgModule` injector scoped to a lazy load state tree.\n */\nexport interface UIInjector {\n /**\n * Gets a value from the injector.\n *\n * For a given token, returns the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this throws an error.\n *\n * #### Example:\n * ```js\n * var myResolve = injector.get('myResolve');\n * ```\n *\n * #### ng1 Example:\n * ```js\n * // Fetch StateService\n * injector.get('$state').go('home');\n * ```\n *\n * #### ng2 Example:\n * ```js\n * import {StateService} from \"ui-router-ng2\";\n * // Fetch StateService\n * injector.get(StateService).go('home');\n * ```\n *\n * #### Typescript Example:\n * ```js\n * var stringArray = injector.get<string[]>('myStringArray');\n * ```\n *\n * ### `NOWAIT` policy\n *\n * When using [[ResolvePolicy.async]] === `NOWAIT`, the value returned from `get()` is a promise for the result.\n * The promise is not automatically unwrapped.\n *\n * @param token the key for the value to get. May be a string, a class, or any arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n get(token: any): any;\n /** Gets a value as type `T` (generics parameter) */\n get<T>(token: any): T;\n\n /**\n * Asynchronously gets a value from the injector\n *\n * For a given token, returns a promise for the value from the injector that matches the token.\n * If the token is for a resolve that has not yet been fetched, this triggers the resolve to load.\n *\n * #### Example:\n * ```js\n * return injector.getAsync('myResolve').then(value => {\n * if (value === 'declined') return false;\n * });\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return a Promise for the Dependency Injection value that matches the token\n */\n getAsync(token: any): Promise<any>;\n /** Asynchronously gets a value as type `T` (generics parameter) */\n getAsync<T>(token: any): Promise<T>;\n\n /**\n * Gets a value from the native injector\n *\n * Returns a value from the native injector, bypassing anything in the [[ResolveContext]].\n *\n * Example:\n * ```js\n * let someThing = injector.getNative(SomeToken);\n * ```\n *\n * @param token the key for the value to get. May be a string or arbitrary object.\n * @return the Dependency Injection value that matches the token\n */\n getNative(token: any): any;\n getNative<T>(token: any): T;\n}\n\n/** @internalapi */\nexport interface UIRouterPlugin extends Disposable {\n name: string;\n}\n\n/** @internalapi */\nexport abstract class UIRouterPluginBase implements UIRouterPlugin, Disposable {\n abstract name: string;\n dispose(router: UIRouter) { }\n}\n\n/** @internalapi */\nexport interface Disposable {\n /** Instructs the Disposable to clean up any resources */\n dispose(router?: UIRouter);\n}\n",
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from '../angular';\nimport {\n StateObject, pick, forEach, tail, extend,\n isArray, isInjectable, isDefined, isString, services, trace,\n ViewConfig, ViewService, ViewConfigFactory, PathNode, ResolveContext, Resolvable, IInjectable,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration } from '../interface';\nimport { TemplateFactory } from '../templateFactory';\nimport IInjectorService = angular.auto.IInjectorService;\n\nexport function getNg1ViewConfigFactory(): ViewConfigFactory {\n let templateFactory: TemplateFactory = null;\n return (path, view) => {\n templateFactory = templateFactory || services.$injector.get('$templateFactory');\n return [new Ng1ViewConfig(path, view, templateFactory)];\n };\n}\n\nconst hasAnyKey = (keys, obj) =>\n keys.reduce((acc, key) => acc || isDefined(obj[key]), false);\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `views`.\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * handles the `views` property with logic specific to @uirouter/angularjs (ng1).\n *\n * If no `views: {}` property exists on the [[StateDeclaration]], then it creates the `views` object\n * and applies the state-level configuration to a view named `$default`.\n */\nexport function ng1ViewsBuilder(state: StateObject) {\n // Do not process root state\n if (!state.parent) return {};\n\n const tplKeys = ['templateProvider', 'templateUrl', 'template', 'notify', 'async'],\n ctrlKeys = ['controller', 'controllerProvider', 'controllerAs', 'resolveAs'],\n compKeys = ['component', 'bindings', 'componentProvider'],\n nonCompKeys = tplKeys.concat(ctrlKeys),\n allViewKeys = compKeys.concat(nonCompKeys);\n\n // Do not allow a state to have both state-level props and also a `views: {}` property.\n // A state without a `views: {}` property can declare properties for the `$default` view as properties of the state.\n // However, the `$default` approach should not be mixed with a separate `views: ` block.\n if (isDefined(state.views) && hasAnyKey(allViewKeys, state)) {\n throw new Error(`State '${state.name}' has a 'views' object. ` +\n `It cannot also have \"view properties\" at the state level. ` +\n `Move the following properties into a view (in the 'views' object): ` +\n ` ${allViewKeys.filter(key => isDefined(state[key])).join(', ')}`);\n }\n\n const views: { [key: string]: Ng1ViewDeclaration } = {},\n viewsObject = state.views || { '$default': pick(state, allViewKeys) };\n\n forEach(viewsObject, function (config: Ng1ViewDeclaration, name: string) {\n // Account for views: { \"\": { template... } }\n name = name || '$default';\n // Account for views: { header: \"headerComponent\" }\n if (isString(config)) config = { component: <string> config };\n\n // Make a shallow copy of the config object\n config = extend({}, config);\n\n // Do not allow a view to mix props for component-style view with props for template/controller-style view\n if (hasAnyKey(compKeys, config) && hasAnyKey(nonCompKeys, config)) {\n throw new Error(`Cannot combine: ${compKeys.join('|')} with: ${nonCompKeys.join('|')} in stateview: '${name}@${state.name}'`);\n }\n\n config.resolveAs = config.resolveAs || '$resolve';\n config.$type = 'ng1';\n config.$context = state;\n config.$name = name;\n\n const normalized = ViewService.normalizeUIViewTarget(config.$context, config.$name);\n config.$uiViewName = normalized.uiViewName;\n config.$uiViewContextAnchor = normalized.uiViewContextAnchor;\n\n views[name] = config;\n });\n return views;\n}\n\nlet id = 0;\nexport class Ng1ViewConfig implements ViewConfig {\n $id = id++;\n loaded = false;\n controller: Function; // actually IInjectable|string\n template: string;\n component: string;\n locals: any; // TODO: delete me\n\n constructor(public path: PathNode[], public viewDecl: Ng1ViewDeclaration, public factory: TemplateFactory) { }\n\n load() {\n const $q = services.$q;\n const context = new ResolveContext(this.path);\n const params = this.path.reduce((acc, node) => extend(acc, node.paramValues), {});\n\n const promises: any = {\n template: $q.when(this.factory.fromConfig(this.viewDecl, params, context)),\n controller: $q.when(this.getController(context)),\n };\n\n return $q.all(promises).then((results) => {\n trace.traceViewServiceEvent('Loaded', this);\n this.controller = results.controller;\n extend(this, results.template); // Either { template: \"tpl\" } or { component: \"cmpName\" }\n return this;\n });\n }\n\n getTemplate = (uiView, context: ResolveContext) =>\n this.component ? this.factory.makeComponentTemplate(uiView, context, this.component, this.viewDecl.bindings) : this.template;\n\n /**\n * Gets the controller for a view configuration.\n *\n * @returLine truncated
|
||||
"/** @module view */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport { IAugmentedJQuery } from 'angular';\nimport {\n isArray, isDefined, isFunction, isObject, services, Obj, IInjectable, tail, kebobString, unnestR, ResolveContext,\n Resolvable, RawParams,\n} from '@uirouter/core';\nimport { Ng1ViewDeclaration, TemplateFactoryProvider } from './interface';\n\n/**\n * Service which manages loading of templates from a ViewConfig.\n */\nexport class TemplateFactory implements TemplateFactoryProvider {\n /** @hidden */ private _useHttp = angular.version.minor < 3;\n /** @hidden */ private $templateRequest;\n /** @hidden */ private $templateCache;\n /** @hidden */ private $http;\n\n /** @hidden */ $get = ['$http', '$templateCache', '$injector', ($http, $templateCache, $injector) => {\n this.$templateRequest = $injector.has && $injector.has('$templateRequest') && $injector.get('$templateRequest');\n this.$http = $http;\n this.$templateCache = $templateCache;\n return this;\n }];\n\n /** @hidden */\n useHttpService(value: boolean) {\n this._useHttp = value;\n }\n\n /**\n * Creates a template from a configuration object.\n *\n * @param config Configuration object for which to load a template.\n * The following properties are search in the specified order, and the first one\n * that is defined is used to create the template:\n *\n * @param params Parameters to pass to the template function.\n * @param context The resolve context associated with the template's view\n *\n * @return {string|object} The template html as a string, or a promise for\n * that string,or `null` if no template is configured.\n */\n fromConfig(config: Ng1ViewDeclaration, params: any, context: ResolveContext): Promise<{ template?: string, component?: string }> {\n const defaultTemplate = '<ui-view></ui-view>';\n\n const asTemplate = (result) => services.$q.when(result).then(str => ({ template: str }));\n const asComponent = (result) => services.$q.when(result).then(str => ({ component: str }));\n\n return (\n isDefined(config.template) ? asTemplate(this.fromString(config.template, params)) :\n isDefined(config.templateUrl) ? asTemplate(this.fromUrl(config.templateUrl, params)) :\n isDefined(config.templateProvider) ? asTemplate(this.fromProvider(config.templateProvider, params, context)) :\n isDefined(config.component) ? asComponent(config.component) :\n isDefined(config.componentProvider) ? asComponent(this.fromComponentProvider(config.componentProvider, params, context)) :\n asTemplate(defaultTemplate)\n );\n }\n\n /**\n * Creates a template from a string or a function returning a string.\n *\n * @param template html template as a string or function that returns an html template as a string.\n * @param params Parameters to pass to the template function.\n *\n * @return {string|object} The template html as a string, or a promise for that\n * string.\n */\n fromString(template: (string | Function), params?: RawParams) {\n return isFunction(template) ? (<any> template)(params) : template;\n }\n\n /**\n * Loads a template from the a URL via `$http` and `$templateCache`.\n *\n * @param {string|Function} url url of the template to load, or a function\n * that returns a url.\n * @param {Object} params Parameters to pass to the url function.\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromUrl(url: (string | Function), params: any) {\n if (isFunction(url)) url = (<any> url)(params);\n if (url == null) return null;\n\n if (this._useHttp) {\n return this.$http.get(url, { cache: this.$templateCache, headers: { Accept: 'text/html' } })\n .then(function (response) {\n return response.data;\n });\n }\n\n return this.$templateRequest(url);\n }\n\n /**\n * Creates a template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string|Promise.<string>} The template html as a string, or a promise\n * for that string.\n */\n fromProvider(provider: IInjectable, params: any, context: ResolveContext) {\n const deps = services.$injector.annotate(provider);\n const providerFn = isArray(provider) ? tail(<any[]> provider) : provider;\n const resolvable = new Resolvable('', <Function> providerFn, deps);\n return resolvable.get(context);\n }\n\n /**\n * Creates a component's template by invoking an injectable provider function.\n *\n * @param provider Function to invoke via `locals`\n * @param {Function} injectFn a function used to invoke the template provider\n * @return {string} The template html as a string: \"<component-name input1='::$resolve.foo'></component-name>\".\n *Line truncated
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"/** @module ng1 */ /** for typedoc */\nimport {\n val, isObject, createProxyFunctions, BuilderFunction, StateRegistry, StateService, OnInvalidCallback,\n} from '@uirouter/core';\nimport { Ng1StateDeclaration } from './interface';\n\n/**\n * The Angular 1 `StateProvider`\n *\n * The `$stateProvider` works similar to Angular's v1 router, but it focuses purely\n * on state.\n *\n * A state corresponds to a \"place\" in the application in terms of the overall UI and\n * navigation. A state describes (via the controller / template / view properties) what\n * the UI looks like and does at that place.\n *\n * States often have things in common, and the primary way of factoring out these\n * commonalities in this model is via the state hierarchy, i.e. parent/child states aka\n * nested states.\n *\n * The `$stateProvider` provides interfaces to declare these states for your app.\n */\nexport class StateProvider {\n constructor(private stateRegistry: StateRegistry, private stateService: StateService) {\n createProxyFunctions(val(StateProvider.prototype), this, val(this));\n }\n\n /**\n * Decorates states when they are registered\n *\n * Allows you to extend (carefully) or override (at your own peril) the\n * `stateBuilder` object used internally by [[StateRegistry]].\n * This can be used to add custom functionality to ui-router,\n * for example inferring templateUrl based on the state name.\n *\n * When passing only a name, it returns the current (original or decorated) builder\n * function that matches `name`.\n *\n * The builder functions that can be decorated are listed below. Though not all\n * necessarily have a good use case for decoration, that is up to you to decide.\n *\n * In addition, users can attach custom decorators, which will generate new\n * properties within the state's internal definition. There is currently no clear\n * use-case for this beyond accessing internal states (i.e. $state.$current),\n * however, expect this to become increasingly relevant as we introduce additional\n * meta-programming features.\n *\n * **Warning**: Decorators should not be interdependent because the order of\n * execution of the builder functions in non-deterministic. Builder functions\n * should only be dependent on the state definition object and super function.\n *\n *\n * Existing builder functions and current return values:\n *\n * - **parent** `{object}` - returns the parent state object.\n * - **data** `{object}` - returns state data, including any inherited data that is not\n * overridden by own values (if any).\n * - **url** `{object}` - returns a {@link ui.router.util.type:UrlMatcher UrlMatcher}\n * or `null`.\n * - **navigable** `{object}` - returns closest ancestor state that has a URL (aka is\n * navigable).\n * - **params** `{object}` - returns an array of state params that are ensured to\n * be a super-set of parent's params.\n * - **views** `{object}` - returns a views object where each key is an absolute view\n * name (i.e. \"viewName@stateName\") and each value is the config object\n * (template, controller) for the view. Even when you don't use the views object\n * explicitly on a state config, one is still created for you internally.\n * So by decorating this builder function you have access to decorating template\n * and controller properties.\n * - **ownParams** `{object}` - returns an array of params that belong to the state,\n * not including any params defined by ancestor states.\n * - **path** `{string}` - returns the full path from the root down to this state.\n * Needed for state activation.\n * - **includes** `{object}` - returns an object that includes every state that\n * would pass a `$state.includes()` test.\n *\n * #### Example:\n * Override the internal 'views' builder with a function that takes the state\n * definition, and a reference to the internal function being overridden:\n * ```js\n * $stateProvider.decorator('views', function (state, parent) {\n * let result = {},\n * views = parent(state);\n *\n * angular.forEach(views, function (config, name) {\n * let autoName = (state.name + '.' + name).replace('.', '/');\n * config.templateUrl = config.templateUrl || '/partials/' + autoName + '.html';\n * result[name] = config;\n * });\n * return result;\n * });\n *\n * $stateProvider.state('home', {\n * views: {\n * 'contact.list': { controller: 'ListController' },\n * 'contact.item': { controller: 'ItemController' }\n * }\n * });\n * ```\n *\n *\n * ```js\n * // Auto-populates list and item views with /partials/home/contact/list.html,\n * // and /partials/home/contact/item.html, respectively.\n * $state.go('home');\n * ```\n *\n * @param {string} name The name of the builder function to decorate.\n * @param {object} func A function that is responsiblLine truncated
|
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"/** @module ng1 */ /** */\nimport {\n StateObject, TransitionStateHookFn, HookResult, Transition, services, ResolveContext, extend, BuilderFunction,\n} from '@uirouter/core';\nimport { getLocals } from '../services';\nimport { Ng1StateDeclaration } from '../interface';\n\n/**\n * This is a [[StateBuilder.builder]] function for angular1 `onEnter`, `onExit`,\n * `onRetain` callback hooks on a [[Ng1StateDeclaration]].\n *\n * When the [[StateBuilder]] builds a [[StateObject]] object from a raw [[StateDeclaration]], this builder\n * ensures that those hooks are injectable for @uirouter/angularjs (ng1).\n */\nexport const getStateHookBuilder = (hookName: 'onEnter'|'onExit'|'onRetain') =>\nfunction stateHookBuilder(stateObject: StateObject, parentFn: BuilderFunction): TransitionStateHookFn {\n const hook = stateObject[hookName];\n const pathname = hookName === 'onExit' ? 'from' : 'to';\n\n function decoratedNg1Hook(trans: Transition, state: Ng1StateDeclaration): HookResult {\n const resolveContext = new ResolveContext(trans.treeChanges(pathname));\n const subContext = resolveContext.subContext(state.$$state());\n const locals = extend(getLocals(subContext), { $state$: state, $transition$: trans });\n return services.$injector.invoke(hook, this, locals);\n }\n\n return hook ? decoratedNg1Hook : undefined;\n};\n",
|
||||
"/**\n * @internalapi\n * @module ng1\n */ /** */\nimport { LocationConfig, LocationServices, UIRouter, ParamType, isDefined } from '@uirouter/core';\nimport { val, createProxyFunctions, removeFrom, isObject } from '@uirouter/core';\nimport { ILocationService, ILocationProvider } from 'angular';\n\n/**\n * Implements UI-Router LocationServices and LocationConfig using Angular 1's $location service\n */\nexport class Ng1LocationServices implements LocationConfig, LocationServices {\n private $locationProvider: ILocationProvider;\n private $location: ILocationService;\n private $sniffer;\n\n path;\n search;\n hash;\n hashPrefix;\n port;\n protocol;\n host;\n baseHref;\n\n // .onChange() registry\n private _urlListeners: Function[] = [];\n\n /**\n * Applys ng1-specific path parameter encoding\n *\n * The Angular 1 `$location` service is a bit weird.\n * It doesn't allow slashes to be encoded/decoded bi-directionally.\n *\n * See the writeup at https://github.com/angular-ui/ui-router/issues/2598\n *\n * This code patches the `path` parameter type so it encoded/decodes slashes as ~2F\n *\n * @param router\n */\n static monkeyPatchPathParameterType(router: UIRouter) {\n const pathType: ParamType = router.urlMatcherFactory.type('path');\n\n pathType.encode = (x: any) =>\n x != null ? x.toString().replace(/(~|\\/)/g, m => ({ '~': '~~', '/': '~2F' }[m])) : x;\n\n pathType.decode = (x: string) =>\n x != null ? x.toString().replace(/(~~|~2F)/g, m => ({ '~~': '~', '~2F': '/' }[m])) : x;\n\n }\n\n dispose() { }\n\n constructor($locationProvider: ILocationProvider) {\n this.$locationProvider = $locationProvider;\n const _lp = val($locationProvider);\n createProxyFunctions(_lp, this, _lp, ['hashPrefix']);\n }\n\n onChange(callback: Function) {\n this._urlListeners.push(callback);\n return () => removeFrom(this._urlListeners)(callback);\n }\n\n html5Mode() {\n let html5Mode: any = this.$locationProvider.html5Mode();\n html5Mode = isObject(html5Mode) ? html5Mode.enabled : html5Mode;\n return html5Mode && this.$sniffer.history;\n }\n\n url(newUrl?: string, replace = false, state?) {\n if (isDefined(newUrl)) this.$location.url(newUrl);\n if (replace) this.$location.replace();\n if (state) this.$location.state(state);\n return this.$location.url();\n }\n\n _runtimeServices($rootScope, $location: ILocationService, $sniffer, $browser) {\n this.$location = $location;\n this.$sniffer = $sniffer;\n\n // Bind $locationChangeSuccess to the listeners registered in LocationService.onChange\n $rootScope.$on('$locationChangeSuccess', evt => this._urlListeners.forEach(fn => fn(evt)));\n const _loc = val($location);\n const _browser = val($browser);\n\n // Bind these LocationService functions to $location\n createProxyFunctions(_loc, this, _loc, ['replace', 'path', 'search', 'hash']);\n // Bind these LocationConfig functions to $location\n createProxyFunctions(_loc, this, _loc, ['port', 'protocol', 'host']);\n // Bind these LocationConfig functions to $browser\n createProxyFunctions(_browser, this, _browser, ['baseHref']);\n }\n}\n",
|
||||
"/** @module url */ /** */\nimport {\n UIRouter, UrlRouter, LocationServices, $InjectorLike, BaseUrlRule, UrlRuleHandlerFn, UrlMatcher,\n IInjectable,\n} from '@uirouter/core';\nimport { services, isString, isFunction, isArray, identity } from '@uirouter/core';\n\nexport interface RawNg1RuleFunction {\n ($injector: $InjectorLike, $location: LocationServices): string|void;\n}\n\n/**\n * Manages rules for client-side URL\n *\n * ### Deprecation warning:\n * This class is now considered to be an internal API\n * Use the [[UrlService]] instead.\n * For configuring URL rules, use the [[UrlRulesApi]] which can be found as [[UrlService.rules]].\n *\n * This class manages the router rules for what to do when the URL changes.\n *\n * This provider remains for backwards compatibility.\n *\n * @deprecated\n */\nexport class UrlRouterProvider {\n /** @hidden */ _router: UIRouter;\n /** @hidden */ _urlRouter: UrlRouter;\n\n static injectableHandler(router: UIRouter, handler): UrlRuleHandlerFn {\n return match =>\n services.$injector.invoke(handler, null, { $match: match, $stateParams: router.globals.params });\n }\n\n /** @hidden */\n constructor(router: UIRouter) {\n this._router = router;\n this._urlRouter = router.urlRouter;\n }\n\n /** @hidden */\n $get() {\n const urlRouter = this._urlRouter;\n urlRouter.update(true);\n if (!urlRouter.interceptDeferred) urlRouter.listen();\n return urlRouter;\n }\n\n /**\n * Registers a url handler function.\n *\n * Registers a low level url handler (a `rule`).\n * A rule detects specific URL patterns and returns a redirect, or performs some action.\n *\n * If a rule returns a string, the URL is replaced with the string, and all rules are fired again.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // Here's an example of how you might allow case insensitive urls\n * $urlRouterProvider.rule(function ($injector, $location) {\n * var path = $location.path(),\n * normalized = path.toLowerCase();\n *\n * if (path !== normalized) {\n * return normalized;\n * }\n * });\n * });\n * ```\n *\n * @param ruleFn\n * Handler function that takes `$injector` and `$location` services as arguments.\n * You can use them to detect a url and return a different url as a string.\n *\n * @return [[UrlRouterProvider]] (`this`)\n */\n rule(ruleFn: RawNg1RuleFunction): UrlRouterProvider {\n if (!isFunction(ruleFn)) throw new Error(\"'rule' must be a function\");\n\n const match = () =>\n ruleFn(services.$injector, this._router.locationService);\n\n const rule = new BaseUrlRule(match, identity);\n this._urlRouter.rule(rule);\n return this;\n }\n\n /**\n * Defines the path or behavior to use when no url can be matched.\n *\n * #### Example:\n * ```js\n * var app = angular.module('app', ['ui.router.router']);\n *\n * app.config(function ($urlRouterProvider) {\n * // if the path doesn't match any of the urls you configured\n * // otherwise will take care of routing the user to the\n * // specified url\n * $urlRouterProvider.otherwise('/index');\n *\n * // Example of using function rule as param\n * $urlRouterProvider.otherwise(function ($injector, $location) {\n * return '/a/valid/url';\n * });\n * });\n * ```\n *\n * @param rule\n * The url path you want to redirect to or a function rule that returns the url path or performs a `$state.go()`.\n * The function version is passed two params: `$injector` and `$location` services, and should return a url string.\n *\n * @return {object} `$urlRouterProvider` - `$urlRouterProvider` instance\n */\n otherwise(rule: string | RawNg1RuleFunction): UrlRouterProvider {\n const urlRouter = this._urlRouter;\n\n if (isString(rule)) {\n urlRouter.otherwise(rule);\n } else if (isFunction(rule)) {\n urlRouter.otherwise(() => rule(services.$injector, this._router.locationService));\n } else {\n throw new Error(\"'rule' must be a string or function\");\n }\n\n return this;\n }\n\n /**\n * Registers a handler for a given url matching.\n *\n * If the handler is a string, it is\n * treated as a redirect, and is interpolated according to the syntax of match\n * (i.e. like `String.replace()` for `RegExp`, or like a `UrlMatcher` pattern otherwise).\n *\n * If the handler is a function, it is injectable.\n * It gets invoked if `$location` matches.\n * You have the option of inject the match object as `$match`.\n *\n * The handler can return\n *\n * - **falsy** to indicate that the rule didn't match after all, then `$urlRouter`\n * will continue trying to find another one that matches.\n * - **string** which is treated as a redirect and passed to `$location.url()`\n * - **void** or any **truthyLine truncated
|
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"/**\n * # Angular 1 types\n *\n * UI-Router core provides various Typescript types which you can use for code completion and validating parameter values, etc.\n * The customizations to the core types for Angular UI-Router are documented here.\n *\n * The optional [[$resolve]] service is also documented here.\n *\n * @module ng1\n * @preferred\n */\n/** for typedoc */\nimport { ng as angular } from './angular';\nimport {\n IRootScopeService, IQService, ILocationService, ILocationProvider, IHttpService, ITemplateCacheService,\n} from 'angular';\nimport {\n services, applyPairs, isString, trace, extend, UIRouter, StateService, UrlRouter, UrlMatcherFactory, ResolveContext,\n unnestR, TypedMap,\n} from '@uirouter/core';\nimport { ng1ViewsBuilder, getNg1ViewConfigFactory } from './statebuilders/views';\nimport { TemplateFactory } from './templateFactory';\nimport { StateProvider } from './stateProvider';\nimport { getStateHookBuilder } from './statebuilders/onEnterExitRetain';\nimport { Ng1LocationServices } from './locationServices';\nimport { UrlRouterProvider } from './urlRouterProvider';\nimport IInjectorService = angular.auto.IInjectorService; // tslint:disable-line\n\nangular.module('ui.router.angular1', []);\nconst mod_init = angular.module('ui.router.init', []);\nconst mod_util = angular.module('ui.router.util', ['ng', 'ui.router.init']);\nconst mod_rtr = angular.module('ui.router.router', ['ui.router.util']);\nconst mod_state = angular.module('ui.router.state', ['ui.router.router', 'ui.router.util', 'ui.router.angular1']);\nconst mod_main = angular.module('ui.router', ['ui.router.init', 'ui.router.state', 'ui.router.angular1']);\nlet mod_cmpt = angular.module('ui.router.compat', ['ui.router']); // tslint:disable-line\n\ndeclare module '@uirouter/core/lib/router' {\n interface UIRouter { // tslint:disable-line:no-shadowed-variable\n /** @hidden */\n stateProvider: StateProvider;\n /** @hidden */\n urlRouterProvider: UrlRouterProvider;\n }\n}\n\nlet router: UIRouter = null;\n\n$uiRouterProvider.$inject = ['$locationProvider'];\n/** This angular 1 provider instantiates a Router and exposes its services via the angular injector */\nfunction $uiRouterProvider($locationProvider: ILocationProvider) {\n\n // Create a new instance of the Router when the $uiRouterProvider is initialized\n router = this.router = new UIRouter();\n router.stateProvider = new StateProvider(router.stateRegistry, router.stateService);\n\n // Apply ng1 specific StateBuilder code for `views`, `resolve`, and `onExit/Retain/Enter` properties\n router.stateRegistry.decorator('views', ng1ViewsBuilder);\n router.stateRegistry.decorator('onExit', getStateHookBuilder('onExit'));\n router.stateRegistry.decorator('onRetain', getStateHookBuilder('onRetain'));\n router.stateRegistry.decorator('onEnter', getStateHookBuilder('onEnter'));\n\n router.viewService._pluginapi._viewConfigFactory('ng1', getNg1ViewConfigFactory());\n\n const ng1LocationService = router.locationService = router.locationConfig = new Ng1LocationServices($locationProvider);\n\n Ng1LocationServices.monkeyPatchPathParameterType(router);\n\n // backwards compat: also expose router instance as $uiRouterProvider.router\n router['router'] = router;\n router['$get'] = $get;\n $get.$inject = ['$location', '$browser', '$sniffer', '$rootScope', '$http', '$templateCache'];\n function $get($location: ILocationService, $browser: any, $sniffer: any, $rootScope: ng.IScope, $http: IHttpService, $templateCache: ITemplateCacheService) {\n ng1LocationService._runtimeServices($rootScope, $location, $sniffer, $browser);\n delete router['router'];\n delete router['$get'];\n return router;\n }\n return router;\n}\n\nconst getProviderFor = (serviceName) => [ '$uiRouterProvider', ($urp) => {\n const service = $urp.router[serviceName];\n service['$get'] = () => service;\n return service;\n}];\n\n// This effectively calls $get() on `$uiRouterProvider` to trigger init (when ng enters runtime)\nrunBlock.$inject = ['$injector', '$q', '$uiRouter'];\nfunction runBlock($injector: IInjectorService, $q: IQService, $uiRouter: UIRouter) {\n services.$injector = $injector;\n services.$q = <any> $q;\n\n // The $injector is now available.\n // Find any resolvables that had dependency annotation deferred\n $uiRouter.stateRegistry.get()\n .map(x => x.$$state().resolvables)\n .reduce(unnestR, [])\n .filter(x => x.deps === 'deferred')\n .forEach(resolvable => resolvable.deps = $injector.annotate(resolvable.resolveFn, $injector.strictDi));\n}\n\n// $urlRouter service and $urlRouterProvider\nconst getUrlRouterProvider = (uiRouter: UIRouter) =>\n uiRouter.urlRouterProvider = new UrlRouterProvider(uiRouter);\n\n// $state service and $stateProvider\n// $urlRouter service and $urlRouterProvider\nconst getStateProvider = () =>\n extend(router.stateProvider, { $get: () => router.stateService });\n\nwatchDigests.$inject = ['Line truncated
|
||||
"/**\n * # Angular 1 Directives\n *\n * These are the directives included in UI-Router for Angular 1.\n * These directives are used in templates to create viewports and link/navigate to states.\n *\n * @ng1api\n * @preferred\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IAugmentedJQuery, ITimeoutService, IScope, IInterpolateService } from 'angular';\n\nimport {\n Obj, extend, forEach, tail, isString, isObject, isArray, parse, noop, unnestR, identity, uniqR, inArray, removeFrom,\n RawParams, PathNode, StateOrName, StateService, StateDeclaration, UIRouter,\n} from '@uirouter/core';\nimport { UIViewData } from './viewDirective';\nimport EventHandler = JQuery.EventHandler;\n\n/** @hidden Used for typedoc */\nexport interface ng1_directive {} // tslint:disable-line:class-name\n\n/** @hidden */\nfunction parseStateRef(ref: string) {\n let parsed;\n const paramsOnly = ref.match(/^\\s*({[^}]*})\\s*$/);\n if (paramsOnly) ref = '(' + paramsOnly[1] + ')';\n\n parsed = ref.replace(/\\n/g, ' ').match(/^\\s*([^(]*?)\\s*(\\((.*)\\))?\\s*$/);\n if (!parsed || parsed.length !== 4) throw new Error(\"Invalid state ref '\" + ref + \"'\");\n return { state: parsed[1] || null, paramExpr: parsed[3] || null };\n}\n\n/** @hidden */\nfunction stateContext(el: IAugmentedJQuery) {\n const $uiView: UIViewData = (el.parent() as IAugmentedJQuery).inheritedData('$uiView');\n const path: PathNode[] = parse('$cfg.path')($uiView);\n return path ? tail(path).state.name : undefined;\n}\n\n/** @hidden */\nfunction processedDef($state: StateService, $element: IAugmentedJQuery, def: Def): Def {\n const uiState = def.uiState || $state.current.name;\n const uiStateOpts = extend(defaultOpts($element, $state), def.uiStateOpts || {});\n const href = $state.href(uiState, def.uiStateParams, uiStateOpts);\n return { uiState, uiStateParams: def.uiStateParams, uiStateOpts, href };\n}\n\n/** @hidden */\ninterface TypeInfo {\n attr: string;\n isAnchor: boolean;\n clickable: boolean;\n}\n\n/** @hidden */\nfunction getTypeInfo(el: IAugmentedJQuery): TypeInfo {\n // SVGAElement does not use the href attribute, but rather the 'xlinkHref' attribute.\n const isSvg = Object.prototype.toString.call(el.prop('href')) === '[object SVGAnimatedString]';\n const isForm = el[0].nodeName === 'FORM';\n\n return {\n attr: isForm ? 'action' : (isSvg ? 'xlink:href' : 'href'),\n isAnchor: el.prop('tagName').toUpperCase() === 'A',\n clickable: !isForm,\n };\n}\n\n/** @hidden */\nfunction clickHook(el: IAugmentedJQuery, $state: StateService, $timeout: ITimeoutService, type: TypeInfo, getDef: () => Def) {\n return function (e: JQueryMouseEventObject) {\n const button = e.which || e.button, target = getDef();\n\n if (!(button > 1 || e.ctrlKey || e.metaKey || e.shiftKey || el.attr('target'))) {\n // HACK: This is to allow ng-clicks to be processed before the transition is initiated:\n const transition = $timeout(function () {\n $state.go(target.uiState, target.uiStateParams, target.uiStateOpts);\n });\n e.preventDefault();\n\n // if the state has no URL, ignore one preventDefault from the <a> directive.\n let ignorePreventDefaultCount = type.isAnchor && !target.href ? 1 : 0;\n\n e.preventDefault = function () {\n if (ignorePreventDefaultCount-- <= 0) $timeout.cancel(transition);\n };\n }\n };\n}\n\n/** @hidden */\nfunction defaultOpts(el: IAugmentedJQuery, $state: StateService) {\n return {\n relative: stateContext(el) || $state.$current,\n inherit: true,\n source: 'sref',\n };\n}\n\n/** @hidden */\nfunction bindEvents(element: IAugmentedJQuery, scope: IScope, hookFn: EventHandler<any>, uiStateOpts: any): void {\n let events;\n\n if (uiStateOpts) {\n events = uiStateOpts.events;\n }\n\n if (!isArray(events)) {\n events = ['click'];\n }\n\n const on = element.on ? 'on' : 'bind';\n for (const event of events) {\n element[on](event, hookFn);\n }\n\n scope.$on('$destroy', function() {\n const off = element.off ? 'off' : 'unbind';\n for (const event of events) {\n element[off](event, hookFn);\n }\n });\n}\n\n/**\n * `ui-sref`: A directive for linking to a state\n *\n * A directive which links to a state (and optionally, parameters).\n * When clicked, this directive activates the linked state with the supplied parameter values.\n *\n * ### Linked State\n * The attribute value of the `ui-sref` is the name of the state to link to.\n *\n * #### Example:\n * This will activate the `home` state when the link is clicked.\n * ```html\n * <a ui-sref=\"home\">Home</a>\n * ```\n *\n * ### Relative Links\n * You can also use relative state paths within `ui-sref`, just like a relative path passed to `$state.go()` ([[StateService.go]]).\n * You just need to be aware that the path is relative to the state that *created* the link.\n * This allows a state to create a relative `ui-sref` which always targLine truncated
|
||||
"/**\n * @ng1api\n * @module directives\n */ /** for typedoc */\nimport { ng as angular } from '../angular';\nimport { IInterpolateService, IScope, ITranscludeFunction, IAugmentedJQuery, ITimeoutService } from 'angular';\n\nimport {\n extend, unnestR, filter, tail, isDefined, isFunction, isString, trace, parse,\n ActiveUIView, TransitionService, ResolveContext, Transition, PathNode, StateDeclaration,\n Param, kebobString, HookRegOptions, ViewService, $QLike, Obj, TypedMap, noop,\n} from '@uirouter/core';\nimport { Ng1ViewConfig } from '../statebuilders/views';\nimport { Ng1Controller, Ng1StateDeclaration } from '../interface';\nimport { getLocals } from '../services';\nimport { ng1_directive } from './stateDirectives';\n\n/** @hidden */\nexport type UIViewData = {\n $cfg: Ng1ViewConfig;\n $uiView: ActiveUIView;\n};\n\n/** @hidden */\nexport type UIViewAnimData = {\n $animEnter: Promise<any>;\n $animLeave: Promise<any>;\n $$animLeave: { resolve: () => any; } // \"deferred\"\n};\n\n/**\n * `ui-view`: A viewport directive which is filled in by a view from the active state.\n *\n * ### Attributes\n *\n * - `name`: (Optional) A view name.\n * The name should be unique amongst the other views in the same state.\n * You can have views of the same name that live in different states.\n * The ui-view can be targeted in a View using the name ([[Ng1StateDeclaration.views]]).\n *\n * - `autoscroll`: an expression. When it evaluates to true, the `ui-view` will be scrolled into view when it is activated.\n * Uses [[$uiViewScroll]] to do the scrolling.\n *\n * - `onload`: Expression to evaluate whenever the view updates.\n *\n * #### Example:\n * A view can be unnamed or named.\n * ```html\n * <!-- Unnamed -->\n * <div ui-view></div>\n *\n * <!-- Named -->\n * <div ui-view=\"viewName\"></div>\n *\n * <!-- Named (different style) -->\n * <ui-view name=\"viewName\"></ui-view>\n * ```\n *\n * You can only have one unnamed view within any template (or root html). If you are only using a\n * single view and it is unnamed then you can populate it like so:\n *\n * ```html\n * <div ui-view></div>\n * $stateProvider.state(\"home\", {\n * template: \"<h1>HELLO!</h1>\"\n * })\n * ```\n *\n * The above is a convenient shortcut equivalent to specifying your view explicitly with the\n * [[Ng1StateDeclaration.views]] config property, by name, in this case an empty name:\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * But typically you'll only use the views property if you name your view or have more than one view\n * in the same template. There's not really a compelling reason to name a view if its the only one,\n * but you could if you wanted, like so:\n *\n * ```html\n * <div ui-view=\"main\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"main\": {\n * template: \"<h1>HELLO!</h1>\"\n * }\n * }\n * })\n * ```\n *\n * Really though, you'll use views to set up multiple views:\n *\n * ```html\n * <div ui-view></div>\n * <div ui-view=\"chart\"></div>\n * <div ui-view=\"data\"></div>\n * ```\n *\n * ```js\n * $stateProvider.state(\"home\", {\n * views: {\n * \"\": {\n * template: \"<h1>HELLO!</h1>\"\n * },\n * \"chart\": {\n * template: \"<chart_thing/>\"\n * },\n * \"data\": {\n * template: \"<data_thing/>\"\n * }\n * }\n * })\n * ```\n *\n * #### Examples for `autoscroll`:\n * ```html\n * <!-- If autoscroll present with no expression,\n * then scroll ui-view into view -->\n * <ui-view autoscroll/>\n *\n * <!-- If autoscroll present with valid expression,\n * then scroll ui-view into view if expression evaluates to true -->\n * <ui-view autoscroll='true'/>\n * <ui-view autoscroll='false'/>\n * <ui-view autoscroll='scopeVariable'/>\n * ```\n *\n * Resolve data:\n *\n * The resolved data from the state's `resolve` block is placed on the scope as `$resolve` (this\n * can be customized using [[Ng1ViewDeclaration.resolveAs]]). This can be then accessed from the template.\n *\n * Note that when `controllerAs` is being used, `$resolve` is set on the controller instance *after* the\n * controller is instantiated. The `$onInit()` hook can be used to perform initialization code which\n * depends on `$resolve` data.\n *\n * #### Example:\n * ```js\n * $stateProvider.state('home', {\n * template: '<my-component user=\"$resolve.user\"></my-component>',\n * resolve: {\n * user: function(UserService) { return UserService.fetchUser(); }\n * }\n * });\n * ```\n */\nexport let uiView: ng1_directive;\nuiView = ['$view', '$animate', '$uiViewScroll', '$interpolate', '$q',\nfunction $ViewDirective($view: ViewService, $animate: any, $uiViewScroll: any, $interpolate: IInterpolateService, $q: $QLike) {\n\n function getRenderer(attrs: Obj, scope: IScope) {\n return {\n enter: function(element: Line truncated
|
||||
"/** @module ng1 */ /** for typedoc */\n\nimport { ng as angular } from './angular';\nimport { Obj, StateService, StateOrName } from '@uirouter/core';\n\n/**\n * `isState` Filter: truthy if the current state is the parameter\n *\n * Translates to [[StateService.is]] `$state.is(\"stateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'stateName' | isState\">show if state is 'stateName'</div>\n * ```\n */\n$IsStateFilter.$inject = ['$state'];\nexport function $IsStateFilter($state: StateService) {\n const isFilter: any = function(state: StateOrName, params: Obj, options?: { relative?: StateOrName }) {\n return $state.is(state, params, options);\n };\n isFilter.$stateful = true;\n return isFilter;\n}\n\n/**\n * `includedByState` Filter: truthy if the current state includes the parameter\n *\n * Translates to [[StateService.includes]]` $state.is(\"fullOrPartialStateName\")`.\n *\n * #### Example:\n * ```html\n * <div ng-if=\"'fullOrPartialStateName' | includedByState\">show if state includes 'fullOrPartialStateName'</div>\n * ```\n */\n$IncludedByStateFilter.$inject = ['$state'];\nexport function $IncludedByStateFilter($state: StateService) {\n const includesFilter: any = function(state: StateOrName, params: Obj, options: { relative?: StateOrName }) {\n return $state.includes(state, params, options);\n };\n includesFilter.$stateful = true;\n return includesFilter;\n}\n\nangular.module('ui.router.state')\n .filter('isState', $IsStateFilter)\n .filter('includedByState', $IncludedByStateFilter);\n",
|
||||
"/** @module ng1 */ /** */\nimport { ng as angular } from './angular';\nimport { IServiceProviderFactory } from 'angular';\nimport IAnchorScrollService = angular.IAnchorScrollService;\nimport ITimeoutService = angular.ITimeoutService;\n\nexport interface UIViewScrollProvider {\n /**\n * Uses standard anchorScroll behavior\n *\n * Reverts [[$uiViewScroll]] back to using the core [`$anchorScroll`](http://docs.angularjs.org/api/ng.$anchorScroll)\n * service for scrolling based on the url anchor.\n */\n useAnchorScroll(): void;\n}\n\n\n/** @hidden */\nfunction $ViewScrollProvider() {\n\n let useAnchorScroll = false;\n\n this.useAnchorScroll = function () {\n useAnchorScroll = true;\n };\n\n this.$get = ['$anchorScroll', '$timeout', function ($anchorScroll: IAnchorScrollService, $timeout: ITimeoutService): Function {\n if (useAnchorScroll) {\n return $anchorScroll;\n }\n\n return function ($element: JQuery) {\n return $timeout(function () {\n $element[0].scrollIntoView();\n }, 0, false);\n };\n }];\n}\n\nangular.module('ui.router.state').provider('$uiViewScroll', <IServiceProviderFactory> $ViewScrollProvider);\n",
|
||||
"/**\n * Main entry point for angular 1.x build\n * @module ng1\n */ /** */\n\nexport * from './interface';\nexport * from './services';\nexport * from './statebuilders/views';\nexport * from './stateProvider';\nexport * from './urlRouterProvider';\n\nimport './injectables';\nimport './directives/stateDirectives';\nimport './stateFilters';\nimport './directives/viewDirective';\nimport './viewScroll';\n\nexport default 'ui.router';\n\nimport * as core from '@uirouter/core';\nexport { core };\nexport * from '@uirouter/core';\n\n"
|
||||
],
|
||||
"names": [
|
||||
"ng_from_global",
|
||||
@@ -834,10 +834,8 @@
|
||||
"traceError",
|
||||
"_error",
|
||||
"abstract",
|
||||
"invalid",
|
||||
"paramDefs",
|
||||
"invalidParams",
|
||||
"invalidValues",
|
||||
"fromStateOrName",
|
||||
"toStateOrName",
|
||||
"avoidEmptyHash",
|
||||
@@ -966,15 +964,14 @@
|
||||
"orphans",
|
||||
"previousQueueLength",
|
||||
"getState",
|
||||
"notifyListeners",
|
||||
"listener",
|
||||
"s",
|
||||
"name_1",
|
||||
"build",
|
||||
"orphanIdx",
|
||||
"existingState",
|
||||
"existingFutureState",
|
||||
"attachRoute",
|
||||
"listener",
|
||||
"s",
|
||||
"rule",
|
||||
"urlRuleFactory",
|
||||
"_router",
|
||||
@@ -1279,6 +1276,7 @@
|
||||
"onBefore",
|
||||
"ignoredHook",
|
||||
"registerIgnoredTransitionHook",
|
||||
"invalid",
|
||||
"invalidTransitionHook",
|
||||
"registerInvalidTransitionHook",
|
||||
"onStart",
|
||||
@@ -1674,7 +1672,6 @@
|
||||
"uiOnParamsChanged",
|
||||
"viewCreationTrans_1",
|
||||
"fromParams",
|
||||
"getNodeSchema",
|
||||
"toSchema",
|
||||
"fromSchema",
|
||||
"changedToParams",
|
||||
@@ -1688,5 +1685,5 @@
|
||||
"$anchorScroll",
|
||||
"scrollIntoView"
|
||||
],
|
||||
"mappings": 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}
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+1
-1
@@ -1 +1 @@
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pos.offsetX=event.pageX-this.offset(target,scrollableContainer).left,pos.offsetY=event.pageY-this.offset(target,scrollableContainer).top,pos.startX=pos.lastX=event.pageX,pos.startY=pos.lastY=event.pageY,pos.nowX=pos.nowY=pos.distX=pos.distY=pos.dirAx=0,pos.dirX=pos.dirY=pos.lastDirX=pos.lastDirY=pos.distAxX=pos.distAxY=0,pos},calculatePosition:function(pos,event){pos.lastX=pos.nowX,pos.lastY=pos.nowY,pos.nowX=event.pageX,pos.nowY=event.pageY,pos.distX=pos.nowX-pos.lastX,pos.distY=pos.nowY-pos.lastY,pos.lastDirX=pos.dirX,pos.lastDirY=pos.dirY,pos.dirX=0===pos.distX?0:pos.distX>0?1:-1,pos.dirY=0===pos.distY?0:pos.distY>0?1:-1;var newAx=Math.abs(pos.distX)>Math.abs(pos.distY)?1:0;pos.dirAx!==newAx?(pos.distAxX=0,pos.distAxY=0):(pos.distAxX+=Math.abs(pos.distX),0!==pos.dirX&&pos.dirX!==pos.lastDirX&&(pos.distAxX=0),pos.distAxY+=Math.abs(pos.distY),0!==pos.dirY&&pos.dirY!==pos.lastDirY&&(pos.distAxY=0)),pos.dirAx=newAx},movePosition:function(event,element,pos,container,containerPositioning,scrollableContainer){var bounds,useRelative="relative"===containerPositioning;element.x=event.pageX-pos.offsetX,element.y=event.pageY-pos.offsetY,container&&(bounds=this.offset(container,scrollableContainer),useRelative&&(element.x-=bounds.left,element.y-=bounds.top,bounds.left=0,bounds.top=0),element.x<bounds.left?element.x=bounds.left:element.x>=bounds.width+bounds.left-this.offset(element).width&&(element.x=bounds.width+bounds.left-this.offset(element).width),element.y<bounds.top?element.y=bounds.top:element.y>=bounds.height+bounds.top-this.offset(element).height&&(element.y=bounds.height+bounds.top-this.offset(element).height)),element.css({left:element.x+"px",top:element.y+"px"}),this.calculatePosition(pos,event)},dragItem:function(item){return{index:item.index(),parent:item.sortableScope,source:item,targetElement:null,targetElementOffset:null,sourceInfo:{index:item.index(),itemScope:item.itemScope,sortableScope:item.sortableScope},canMove:function(itemPosition,targetElement,targetElementOffset){return this.targetElement!==targetElement?(this.targetElement=targetElement,this.targetElementOffset=targetElementOffset,!0):itemPosition.dirX*(targetElementOffset.left-this.targetElementOffset.left)>0||itemPosition.dirY*(targetElementOffset.top-this.targetElementOffset.top)>0?(this.targetElementOffset=targetElementOffset,!0):!1},moveTo:function(parent,index){this.parent=parent,this.isSameParent()&&this.source.index()<index&&!this.sourceInfo.sortableScope.cloning&&(index-=1),this.index=index},isSameParent:function(){return this.parent.element===this.sourceInfo.sortableScope.element},isOrderChanged:function(){return this.index!==this.sourceInfo.index},eventArgs:function(){return{source:this.sourceInfo,dest:{index:this.index,sortableScope:this.parent}}},apply:function(){this.sourceInfo.sortableScope.cloning?this.parent.options.clone||this.parent.insertItem(this.index,angular.copy(this.source.modelValue)):(this.sourceInfo.sortableScope.removeItem(this.sourceInfo.index),(this.parent.options.allowDuplicates||this.parent.modelValue.indexOf(this.source.modelValue)<0)&&this.parent.insertItem(this.index,this.source.modelValue))}}},noDrag:function(element){return void 0!==element.attr("no-drag")||void 0!==element.attr("data-no-drag")},findAncestor:function(el,selector){el=Line truncated
|
||||
!function(){"use strict";angular.module("as.sortable",[]).constant("sortableConfig",{itemClass:"as-sortable-item",handleClass:"as-sortable-item-handle",placeHolderClass:"as-sortable-placeholder",dragClass:"as-sortable-drag",hiddenClass:"as-sortable-hidden",dragging:"as-sortable-dragging"})}(),function(){"use strict";var mainModule=angular.module("as.sortable");mainModule.factory("$helper",["$document","$window",function($document,$window){return{height:function(element){return element[0].getBoundingClientRect().height},width:function(element){return element[0].getBoundingClientRect().width},offset:function(element,scrollableContainer){var boundingClientRect=element[0].getBoundingClientRect();return scrollableContainer||(scrollableContainer=$document[0].documentElement),{width:boundingClientRect.width||element.prop("offsetWidth"),height:boundingClientRect.height||element.prop("offsetHeight"),top:boundingClientRect.top+($window.pageYOffset||scrollableContainer.scrollTop-scrollableContainer.offsetTop),left:boundingClientRect.left+($window.pageXOffset||scrollableContainer.scrollLeft-scrollableContainer.offsetLeft)}},eventObj:function(event){var obj=event;return void 0!==event.targetTouches?obj=event.targetTouches.item(0):void 0!==event.originalEvent&&void 0!==event.originalEvent.targetTouches&&(obj=event.originalEvent.targetTouches.item(0)),obj},isTouchInvalid:function(event){var touchInvalid=!1;return void 0!==event.touches&&event.touches.length>1?touchInvalid=!0:void 0!==event.originalEvent&&void 0!==event.originalEvent.touches&&event.originalEvent.touches.length>1&&(touchInvalid=!0),touchInvalid},positionStarted:function(event,target,scrollableContainer){var pos={};return pos.offsetX=event.pageX-this.offset(target,scrollableContainer).left,pos.offsetY=event.pageY-this.offset(target,scrollableContainer).top,pos.startX=pos.lastX=event.pageX,pos.startY=pos.lastY=event.pageY,pos.nowX=pos.nowY=pos.distX=pos.distY=pos.dirAx=0,pos.dirX=pos.dirY=pos.lastDirX=pos.lastDirY=pos.distAxX=pos.distAxY=0,pos},calculatePosition:function(pos,event){pos.lastX=pos.nowX,pos.lastY=pos.nowY,pos.nowX=event.pageX,pos.nowY=event.pageY,pos.distX=pos.nowX-pos.lastX,pos.distY=pos.nowY-pos.lastY,pos.lastDirX=pos.dirX,pos.lastDirY=pos.dirY,pos.dirX=0===pos.distX?0:pos.distX>0?1:-1,pos.dirY=0===pos.distY?0:pos.distY>0?1:-1;var newAx=Math.abs(pos.distX)>Math.abs(pos.distY)?1:0;pos.dirAx!==newAx?(pos.distAxX=0,pos.distAxY=0):(pos.distAxX+=Math.abs(pos.distX),0!==pos.dirX&&pos.dirX!==pos.lastDirX&&(pos.distAxX=0),pos.distAxY+=Math.abs(pos.distY),0!==pos.dirY&&pos.dirY!==pos.lastDirY&&(pos.distAxY=0)),pos.dirAx=newAx},movePosition:function(event,element,pos,container,containerPositioning,scrollableContainer){var bounds,useRelative="relative"===containerPositioning;element.x=event.pageX-pos.offsetX,element.y=event.pageY-pos.offsetY,container&&(bounds=this.offset(container,scrollableContainer),useRelative&&(element.x-=bounds.left,element.y-=bounds.top,bounds.left=0,bounds.top=0),element.x<bounds.left?element.x=bounds.left:element.x>=bounds.width+bounds.left-this.offset(element).width&&(element.x=bounds.width+bounds.left-this.offset(element).width),element.y<bounds.top?element.y=bounds.top:element.y>=bounds.height+bounds.top-this.offset(element).height&&(element.y=bounds.height+bounds.top-this.offset(element).height)),element.css({left:element.x+"px",top:element.y+"px"}),this.calculatePosition(pos,event)},dragItem:function(item){return{index:item.index(),parent:item.sortableScope,source:item,targetElement:null,targetElementOffset:null,sourceInfo:{index:item.index(),itemScope:item.itemScope,sortableScope:item.sortableScope},canMove:function(itemPosition,targetElement,targetElementOffset){return this.targetElement!==targetElement?(this.targetElement=targetElement,this.targetElementOffset=targetElementOffset,!0):itemPosition.dirX*(targetElementOffset.left-this.targetElementOffset.left)>0||itemPosition.dirY*(targetElementOffset.top-this.targetElementOffset.top)>0?(this.targetElementOffset=targetElementOffset,!0):!1},moveTo:function(parent,index){this.parent=parent,this.isSameParent()&&this.source.index()<index&&!this.sourceInfo.sortableScope.cloning&&(index-=1),this.index=index},isSameParent:function(){return this.parent.element===this.sourceInfo.sortableScope.element},isOrderChanged:function(){return this.index!==this.sourceInfo.index},eventArgs:function(){return{source:this.sourceInfo,dest:{index:this.index,sortableScope:this.parent}}},apply:function(){this.sourceInfo.sortableScope.cloning?this.parent.options.clone||this.parent.insertItem(this.index,angular.copy(this.source.modelValue)):(this.sourceInfo.sortableScope.removeItem(this.sourceInfo.index),(this.parent.options.allowDuplicates||this.parent.modelValue.indexOf(this.source.modelValue)<0)&&this.parent.insertItem(this.index,this.source.modelValue))}}},noDrag:function(element){return void 0!==element.attr("no-drag")||void 0!==element.attr("data-no-drag")},findAncestor:function(el,selector){el=Line truncated
|
||||
Reference in new issue
Block a user