mirror of
https://github.com/nlohmann/json.git
synced 2026-10-03 21:20:30 +00:00
Merge branch 'develop' into bon8
Signed-off-by: Niels Lohmann <mail@nlohmann.me>
This commit is contained in:
@@ -101,6 +101,11 @@ class input_stream_adapter
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// maintain ifstream flags, except eof
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if (is != nullptr)
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{
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#if JSON_PRECISE_STREAM_POSITION
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// consume the character last returned by get_character() unless it
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// was given back with release_lookahead()
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commit_lookahead();
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#endif
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is->clear(is->rdstate() & std::ios::eofbit);
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}
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}
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@@ -114,6 +119,58 @@ class input_stream_adapter
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input_stream_adapter& operator=(input_stream_adapter&) = delete;
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input_stream_adapter& operator=(input_stream_adapter&&) = delete;
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#if JSON_PRECISE_STREAM_POSITION
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input_stream_adapter(input_stream_adapter&& rhs) noexcept
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: is(rhs.is), sb(rhs.sb), lookahead(rhs.lookahead)
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{
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rhs.is = nullptr;
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rhs.sb = nullptr;
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rhs.lookahead = false;
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}
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// Whether the character last returned by get_character() can be given back
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// to the input with release_lookahead().
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static constexpr bool supports_lookahead = true;
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// std::istream/std::streambuf use std::char_traits<char>::to_int_type, to
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// ensure that std::char_traits<char>::eof() and the character 0xFF do not
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// end up as the same value, e.g., 0xFFFFFFFF.
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//
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// The character is peeked rather than consumed: it is only stepped over
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// once the next character is requested, or when the adapter is destroyed.
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// Until then, release_lookahead() can leave it in the input.
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std::char_traits<char>::int_type get_character()
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{
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if (lookahead)
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{
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// step over the character returned by the previous call
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sb->sbumpc();
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}
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auto res = sb->sgetc();
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// set eof manually, as we don't use the istream interface.
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if (JSON_HEDLEY_UNLIKELY(res == std::char_traits<char>::eof()))
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{
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// there is nothing to step over next time
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lookahead = false;
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is->clear(is->rdstate() | std::ios::eofbit);
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}
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else
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{
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lookahead = true;
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}
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return res;
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}
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// Leave the character last returned by get_character() in the input, so
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// that the next read from the stream - by this adapter or by the caller
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// once parsing is done - sees it again. Unlike putting a consumed
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// character back, this cannot fail.
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void release_lookahead() noexcept
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{
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lookahead = false;
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}
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#else
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input_stream_adapter(input_stream_adapter&& rhs) noexcept
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: is(rhs.is), sb(rhs.sb)
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{
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@@ -124,6 +181,9 @@ class input_stream_adapter
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// std::istream/std::streambuf use std::char_traits<char>::to_int_type, to
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// ensure that std::char_traits<char>::eof() and the character 0xFF do not
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// end up as the same value, e.g., 0xFFFFFFFF.
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//
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// The character is consumed, so the character that terminates a number
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// stays consumed after parsing; see JSON_PRECISE_STREAM_POSITION.
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std::char_traits<char>::int_type get_character()
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{
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auto res = sb->sbumpc();
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@@ -134,10 +194,14 @@ class input_stream_adapter
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}
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return res;
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}
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#endif
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template<class T>
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std::size_t get_elements(T* dest, std::size_t count = 1)
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{
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#if JSON_PRECISE_STREAM_POSITION
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commit_lookahead();
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#endif
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auto res = static_cast<std::size_t>(sb->sgetn(reinterpret_cast<char*>(dest), static_cast<std::streamsize>(count * sizeof(T))));
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if (JSON_HEDLEY_UNLIKELY(res < count * sizeof(T)))
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{
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@@ -147,9 +211,27 @@ class input_stream_adapter
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}
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private:
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#if JSON_PRECISE_STREAM_POSITION
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// Step over the character last returned by get_character(). The character
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// has already been peeked successfully, so for every streambuf with a get
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// area this is a pointer increment that cannot fail.
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void commit_lookahead()
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{
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if (lookahead)
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{
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lookahead = false;
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sb->sbumpc();
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}
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}
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#endif
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/// the associated input stream
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std::istream* is = nullptr;
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std::streambuf* sb = nullptr;
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#if JSON_PRECISE_STREAM_POSITION
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/// whether get_character() peeked a character that is not consumed yet
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bool lookahead = false;
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#endif
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};
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#endif // JSON_NO_IO
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@@ -127,6 +127,25 @@ constexpr bool input_adapter_supports_seek(std::false_type /*detected*/)
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return false;
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}
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// Detect whether an input adapter reads with one character of lookahead that
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// can be left in the input (see input_stream_adapter::supports_lookahead,
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// which is only defined with JSON_PRECISE_STREAM_POSITION), detected like
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// supports_seek above.
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template<typename InputAdapterType>
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using detect_supports_lookahead = decltype(InputAdapterType::supports_lookahead);
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template<typename InputAdapterType>
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constexpr bool input_adapter_supports_lookahead(std::true_type /*detected*/)
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{
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return InputAdapterType::supports_lookahead;
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}
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template<typename InputAdapterType>
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constexpr bool input_adapter_supports_lookahead(std::false_type /*detected*/)
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{
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return false;
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}
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// Detect whether an input adapter exposes a contiguous byte block that the
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// lexer can scan directly (see iterator_input_adapter::supports_bulk_scan).
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// Adapters without the flag - file, stream, wide-string, user-defined - fall
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@@ -167,6 +186,12 @@ class lexer : public lexer_base<BasicJsonType>
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static constexpr bool lazy_token_string =
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input_adapter_supports_seek<InputAdapterType>(is_detected<detect_supports_seek, InputAdapterType> {});
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/// whether a simulated unget can be passed on to the input adapter, which
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/// then leaves the character in the input; see
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/// input_adapter_supports_lookahead
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static constexpr bool can_release_lookahead =
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input_adapter_supports_lookahead<InputAdapterType>(is_detected<detect_supports_lookahead, InputAdapterType> {});
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/// whether string scanning may bulk-consume runs of ordinary characters
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/// directly from a contiguous input buffer (SWAR fast path). This requires
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/// the token to be reconstructible lazily (lazy_token_string), so bypassing
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@@ -1898,6 +1923,21 @@ scan_number_done:
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uncapture_char(std::integral_constant<bool, lazy_token_string> {});
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}
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/// adapter without lookahead: nothing to do (see release_lookahead)
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void release_lookahead_impl(std::false_type /*can_release*/) const noexcept {}
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/// adapter with lookahead: leave the character in the input instead
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void release_lookahead_impl(std::true_type /*can_release*/)
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{
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if (next_unget)
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{
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// the character is read from the input again rather than replayed
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// from current, so the adapter must not step over it
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next_unget = false;
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ia.release_lookahead();
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}
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}
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/// seekable adapter: nothing was captured, so nothing to undo
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void uncapture_char(std::true_type /*lazy*/) const noexcept {}
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@@ -1961,6 +2001,31 @@ scan_number_done:
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return position;
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}
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/*!
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@brief pass a pending simulated unget on to the input
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unget() only rewinds the lexer's own bookkeeping, so the character that
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terminated the last token (e.g. the character after a number) would still
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be stepped over when the input adapter is done. Callers that hand the
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input back to the user afterwards - operator>> and non-strict sax_parse -
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call this once when scanning is done, so that the input is positioned
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right after the value.
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Adapters without lookahead (see input_adapter_supports_lookahead) are not
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handed back to the user, so this is a no-op for them. Without
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JSON_PRECISE_STREAM_POSITION, no adapter has lookahead, so this is always a
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no-op and the terminating character stays consumed.
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Scanning may continue after this call: @a next_unget is cleared, and the
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character is read from the input again instead of being replayed from
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@a current. A pending unget of EOF needs no special case, because reaching
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EOF leaves no lookahead to release.
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*/
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void release_lookahead()
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{
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release_lookahead_impl(std::integral_constant<bool, can_release_lookahead> {});
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}
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#if JSON_DIAGNOSTIC_POSITIONS
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/// return the offset of the first character of the last read token; unlike
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/// the token's parsed value, this accounts for escape sequences
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@@ -100,13 +100,22 @@ class parser
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json_sax_dom_callback_parser<BasicJsonType, InputAdapterType> sdp(result, callback, allow_exceptions, &m_lexer);
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sax_parse_internal(&sdp);
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// in strict mode, input must be completely read
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if (strict && (get_token() != token_type::end_of_input))
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if (strict)
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{
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sdp.parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(),
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exception_message(token_type::end_of_input, "value"), nullptr));
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// in strict mode, input must be completely read
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if (get_token() != token_type::end_of_input)
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{
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sdp.parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(),
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exception_message(token_type::end_of_input, "value"), nullptr));
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}
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}
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else
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{
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// the caller keeps using the input: position it right after
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// the value by leaving the character that terminated it
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m_lexer.release_lookahead();
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}
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// in case of an error, return a discarded value
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@@ -128,12 +137,20 @@ class parser
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json_sax_dom_parser<BasicJsonType, InputAdapterType> sdp(result, allow_exceptions, &m_lexer);
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sax_parse_internal(&sdp);
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// in strict mode, input must be completely read
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if (strict && (get_token() != token_type::end_of_input))
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if (strict)
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{
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sdp.parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(), exception_message(token_type::end_of_input, "value"), nullptr));
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// in strict mode, input must be completely read
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if (get_token() != token_type::end_of_input)
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{
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sdp.parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(), exception_message(token_type::end_of_input, "value"), nullptr));
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}
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}
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else
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{
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// see above
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m_lexer.release_lookahead();
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}
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// in case of an error, return a discarded value
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@@ -166,12 +183,24 @@ class parser
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(void)detail::is_sax_static_asserts<SAX, BasicJsonType> {};
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const bool result = sax_parse_internal(sax);
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// strict mode: next byte must be EOF
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if (result && strict && (get_token() != token_type::end_of_input))
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if (result)
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{
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return sax->parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(), exception_message(token_type::end_of_input, "value"), nullptr));
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if (strict)
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{
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// strict mode: next byte must be EOF
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if (get_token() != token_type::end_of_input)
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{
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return sax->parse_error(m_lexer.get_position(),
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m_lexer.get_token_string(),
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parse_error::create(101, m_lexer.get_position(), exception_message(token_type::end_of_input, "value"), nullptr));
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}
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}
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else
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{
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// the caller keeps using the input: position it right after
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// the value by leaving the character that terminated it
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m_lexer.release_lookahead();
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}
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}
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return result;
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