* Review and extend the documentation, and check it in CI A review of all documentation pages found factual errors, dead links, missing cross-references, and gaps in examples. This fixes them and adds checks so the same problems are caught automatically. Fixes: - wrong signatures and version histories (operator!= C++20 member, binary() subtype type, get<PointerType>(), JSON_NO_THREAD_LOCAL, ...) - stale descriptions (number parsing since #5283, UBJSON table, SAX example that no longer compiled, tsl::ordered_map advice) - dead internal and external links; repology.org badges (the domain is suspended) replaced by badges that query the registries directly - deprecation notes link the migration guide; the guide itself fixed Additions: - "See also" sections, cross-references, 25 runnable examples, 12 Mermaid diagrams, new API pages for json_pointer::operator<=> and byte_container_with_subtype::operator==/!= - landing page, guides for untrusted input and performance - "unreleased" badge after versions newer than the latest release Checks: - strict documentation build (broken links/anchors fail it); CI and the publish workflow fetch the full history the build needs - weekly external link check, Mermaid syntax check in CI - check_structure.py: example titles, heading levels, alt texts, header links, docset index coverage; its unused-example check works again - all examples produce the same output on every platform Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Keep the customer links that could not be fixed A dead link on the customers page is still the evidence of where the use of the library was documented. Keep the original URLs of the entries without a working replacement (Marne, Cisco Webex Desk Camera, Philips Hue, CyberArk) and exclude exactly these URLs from the link check. Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Correct the duplicate-key recipe's claim about SAX positions The SAX interface's key() receives no position either; only parse_error() does. Also note that the recipe does not report the path to the repeated key (see discussion #5085). Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Say the library is available as a single header and mention json_fwd.hpp Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Correct documentation errors found while hunting for bugs - patch/patch_inplace: list the JSON pointer errors parse_error.106-109 and out_of_range.402/404, and quote the actual parse_error.105 message. - unflatten: list parse_error.106/107/108 and out_of_range.404. - to_bson: list out_of_range.415 (binary subtype above 255) and note that 412 and 415 are new in 3.13.0. - to_string: state that string_t must be convertible to std::string, also in the StringType requirements table. - JSON Lines: a `while (input >> j)` loop also throws after the last value for concatenated JSON values; show a loop that works for both. - BON8: a string gets 0xFF only if nothing follows it in the message; a string at the end of an array or object is ended by 0xFE. - custom_string_type.hpp: add operator+=(char), which the "Always required" list asks for (json_pointer::to_string, flatten, unflatten, and diff did not compile), and an ADL int_to_string for diff and items. Signed-off-by: Niels Lohmann <mail@nlohmann.me> * Cache the release headers with functools.lru_cache Codacy (Pylint) flagged the mutable default argument that header() used as its cache. functools.lru_cache keeps the same memoization without it. The script's output is unchanged. Signed-off-by: Niels Lohmann <mail@nlohmann.me> --------- Signed-off-by: Niels Lohmann <mail@nlohmann.me>
5.5 KiB
nlohmann::ordered_map
template<class Key, class T, class IgnoredLess = std::less<Key>,
class Allocator = std::allocator<std::pair<const Key, T>>>
struct ordered_map : std::vector<std::pair<const Key, T>, Allocator>;
A minimal map-like container that preserves insertion order for use within nlohmann::ordered_json
(nlohmann::basic_json<ordered_map>).
Template parameters
Key- key type
T- mapped type
IgnoredLess- comparison function (ignored and only added to ensure compatibility with
#!cpp std::map) Allocator- allocator type
Iterator invalidation
The type uses a std::vector to store object elements. Therefore, adding elements can yield a reallocation in which
case all iterators (including the end() iterator) and all references to the elements are invalidated.
When the storage grows, the keys are copied and the mapped values are moved to the new storage. A plain std::vector
would copy the whole elements instead, because their #!cpp const keys make them not nothrow move constructible; for
ordered_json, this would be a deep copy of every nested value. The values are only copied if
T is not default constructible or not nothrow move assignable.
Member types
- key_type - key type (
Key) - mapped_type - mapped type (
T) - Container - base container type (
#!cpp std::vector<std::pair<const Key, T>, Allocator>) - iterator
- const_iterator
- size_type
- value_type
- key_compare - key comparison function
std::equal_to<Key> // until C++14
std::equal_to<> // since C++14
Member functions
- (constructor)
- (destructor)
- emplace
- operator[]
- at
- erase
- count
- find
- insert
Exception safety
emplace, operator[], and insert(value) have the strong exception guarantee: if an exception is thrown (for instance, because copying a key or allocating memory fails), the contents of the container are unchanged.
Complexity
Because the elements are stored in a std::vector in insertion order, there is no index to look a key up by. Every
key-based operation performs a linear scan over the stored elements. With n denoting the number of elements in the
container:
| Operation | Complexity | Note |
|---|---|---|
| emplace | O(n) | scans for an existing key, then appends (amortized O(1)) |
| operator[] | O(n) | delegates to emplace (non-const) or at (const) |
| at | O(n) | throws #!cpp std::out_of_range if the key is not found |
| find | O(n) | |
| count | O(n) | the result is always 0 or 1 |
| erase(key) | O(n) | scan, then move the remaining elements one position down |
| erase(pos), erase(first, last) | O(n) | moves all elements after the erased range |
| insert(value) | O(n) | equivalent to emplace |
| insert(first, last) | O((n + m) * m) | for m inserted elements |
This differs from #!cpp std::map, where the same operations are O(log n).
!!! warning "Quadratic cost of building large objects"
Because every insertion scans all elements inserted so far, building an object of `n` distinct keys costs
**O(n²)** in total. This applies to filling an [`ordered_json`](ordered_json.md) object key by key as well as to
parsing one, since the parser inserts each key as it is read.
The cost is negligible for the object sizes typically found in configuration files or API payloads, but it grows
steeply for machine-generated objects with many thousands of keys. Measured with `-O2 -DNDEBUG` for parsing a flat
object of `n` keys, relative to `#!cpp nlohmann::json` (which uses `#!cpp std::map`):
| `n` | `json` | `ordered_json` | factor |
|--------|--------|----------------|--------|
| 2000 | 0.7 ms | 3.6 ms | 5× |
| 4000 | 0.8 ms | 14.0 ms | 19× |
| 8000 | 1.6 ms | 67.8 ms | 43× |
| 16 000 | 3.3 ms | 181.6 ms | 54× |
If key order matters for objects of that size, consider a container with a lookup index, such as
[`nlohmann::fifo_map`](https://github.com/nlohmann/fifo_map)
([integration](https://github.com/nlohmann/json/issues/485#issuecomment-333652309)), as the object type -- see
[object order](../features/object_order.md).
Examples
??? example
The example shows the different behavior of `std::map` and `nlohmann::ordered_map`.
```cpp
--8<-- "examples/ordered_map.cpp"
```
Output:
```json
--8<-- "examples/ordered_map.output"
```
See also
Version history
- Added in version 3.9.0 to implement
nlohmann::ordered_json. - Added key_compare member in version 3.11.0.
- Changed in version 3.13.0: growing the storage moves the mapped values instead of copying them.