rapidyaml  0.10.0
parse and emit YAML, and do it fast
parse_engine.hpp
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1 #ifndef _C4_YML_PARSE_ENGINE_HPP_
2 #define _C4_YML_PARSE_ENGINE_HPP_
3 
4 #ifndef _C4_YML_PARSER_STATE_HPP_
6 #endif
7 
8 
9 #if defined(_MSC_VER)
10 # pragma warning(push)
11 # pragma warning(disable: 4251/*needs to have dll-interface to be used by clients of struct*/)
12 #endif
13 
14 // NOLINTBEGIN(hicpp-signed-bitwise)
15 
16 namespace c4 {
17 namespace yml {
18 
19 /** @addtogroup doc_parse
20  * @{ */
21 
22 /** @defgroup doc_event_handlers Event Handlers
23  *
24  * @brief rapidyaml implements its parsing logic with a two-level
25  * model, where a @ref ParseEngine object reads through the YAML
26  * source, and dispatches events to an EventHandler bound to the @ref
27  * ParseEngine. Because @ref ParseEngine is templated on the event
28  * handler, the binding uses static polymorphism, without any virtual
29  * functions. The actual handler object can be changed at run time,
30  * (but of course needs to be the type of the template parameter).
31  * This is thus a very efficient architecture, and further enables the
32  * user to provide his own custom handler if he wishes to bypass the
33  * rapidyaml @ref Tree.
34  *
35  * There are two handlers implemented in this project:
36  *
37  * - @ref EventHandlerTree is the handler responsible for creating the
38  * ryml @ref Tree
39  *
40  * - @ref extra::EventHandlerInts parses YAML into an integer array
41  representation of the tree and scalars.
42  *
43  * - @ref extra::EventHandlerTestSuite is the handler responsible for emitting
44  * standardized [YAML test suite
45  * events](https://github.com/yaml/yaml-test-suite), used (only) in
46  * the CI of this project.
47  *
48  *
49  * ### Event model
50  *
51  * The event model used by the parse engine and event handlers follows
52  * very closely the event model in the [YAML test
53  * suite](https://github.com/yaml/yaml-test-suite).
54  *
55  * Consider for example this YAML,
56  * ```yaml
57  * {foo: bar,foo2: bar2}
58  * ```
59  * which would produce these events in the test-suite parlance:
60  * ```
61  * +STR
62  * +DOC
63  * +MAP {}
64  * =VAL :foo
65  * =VAL :bar
66  * =VAL :foo2
67  * =VAL :bar2
68  * -MAP
69  * -DOC
70  * -STR
71  * ```
72  *
73  * For reference, the @ref ParseEngine object will produce this
74  * sequence of calls to its bound EventHandler:
75  * ```cpp
76  * handler.begin_stream();
77  * handler.begin_doc();
78  * handler.begin_map_val_flow();
79  * handler.set_key_scalar_plain("foo");
80  * handler.set_val_scalar_plain("bar");
81  * handler.add_sibling();
82  * handler.set_key_scalar_plain("foo2");
83  * handler.set_val_scalar_plain("bar2");
84  * handler.end_map();
85  * handler.end_doc();
86  * handler.end_stream();
87  * ```
88  *
89  * For many other examples of all areas of YAML and how ryml's parse
90  * model corresponds to the YAML standard model, refer to the [unit
91  * tests for the parse
92  * engine](https://github.com/biojppm/rapidyaml/tree/master/test/test_parse_engine.cpp).
93  *
94  *
95  * ### Special events
96  *
97  * Most of the parsing events adopted by rapidyaml in its event model
98  * are fairly obvious, but there are two less-obvious events requiring
99  * some explanation.
100  *
101  * These events exist to make it easier to parse some special YAML
102  * cases. They are called by the parser when a just-handled
103  * value/container is actually the first key of a new map:
104  *
105  * - `actually_val_is_first_key_of_new_map_flow()` (@ref EventHandlerTree::actually_val_is_first_key_of_new_map_flow() "see implementation in EventHandlerTree" / @ref EventHandlerTestSuite::actually_val_is_first_key_of_new_map_flow() "see implementation in EventHandlerTestSuite")
106  * - `actually_val_is_first_key_of_new_map_block()` (@ref EventHandlerTree::actually_val_is_first_key_of_new_map_block() "see implementation in EventHandlerTree" / @ref EventHandlerTestSuite::actually_val_is_first_key_of_new_map_block() "see implementation in EventHandlerTestSuite")
107  *
108  * For example, consider an implicit map inside a seq: `[a: b, c:
109  * d]` which is parsed as `[{a: b}, {c: d}]`. The standard event
110  * sequence for this YAML would be the following:
111  * ```cpp
112  * handler.begin_seq_val_flow();
113  * handler.begin_map_val_flow();
114  * handler.set_key_scalar_plain("a");
115  * handler.set_val_scalar_plain("b");
116  * handler.end_map();
117  * handler.add_sibling();
118  * handler.begin_map_val_flow();
119  * handler.set_key_scalar_plain("c");
120  * handler.set_val_scalar_plain("d");
121  * handler.end_map();
122  * handler.end_seq();
123  * ```
124  * The problem with this event sequence is that it forces the
125  * parser to delay setting the val scalar (in this case "a" and
126  * "c") until it knows whether the scalar is a key or a val. This
127  * would require the parser to store the scalar until this
128  * time. For instance, in the example above, the parser should
129  * delay setting "a" and "c", because they are in fact keys and
130  * not vals. Until then, the parser would have to store "a" and
131  * "c" in its internal state. The downside is that this complexity
132  * cost would apply even if there is no implicit map -- every val
133  * in a seq would have to be delayed until one of the
134  * disambiguating subsequent tokens `,-]:` is found.
135  * By calling this function, the parser can avoid this complexity,
136  * by preemptively setting the scalar as a val. Then a call to
137  * this function will create the map and rearrange the scalar as
138  * key. Now the cost applies only once: when a seqimap starts. So
139  * the following (easier and cheaper) event sequence below has the
140  * same effect as the event sequence above:
141  * ```cpp
142  * handler.begin_seq_val_flow();
143  * handler.set_val_scalar_plain("notmap");
144  * handler.set_val_scalar_plain("a"); // preemptively set "a" as val!
145  * handler.actually_as_new_map_key(); // create a map, move the "a" val as the key of the first child of the new map
146  * handler.set_val_scalar_plain("b"); // now "a" is a key and "b" the val
147  * handler.end_map();
148  * handler.set_val_scalar_plain("c"); // "c" also as val!
149  * handler.actually_as_block_flow(); // likewise
150  * handler.set_val_scalar_plain("d"); // now "c" is a key and "b" the val
151  * handler.end_map();
152  * handler.end_seq();
153  * ```
154  * This also applies to container keys (although ryml's tree
155  * cannot accomodate these): the parser can preemptively set a
156  * container as a val, and call this event to turn that container
157  * into a key. For example, consider this yaml:
158  * ```yaml
159  * [aa, bb]: [cc, dd]
160  * # ^ ^ ^
161  * # | | |
162  * # (2) (1) (3) <- event sequence
163  * ```
164  * The standard event sequence for this YAML would be the
165  * following:
166  * ```cpp
167  * handler.begin_map_val_block(); // (1)
168  * handler.begin_seq_key_flow(); // (2)
169  * handler.set_val_scalar_plain("aa");
170  * handler.add_sibling();
171  * handler.set_val_scalar_plain("bb");
172  * handler.end_seq();
173  * handler.begin_seq_val_flow(); // (3)
174  * handler.set_val_scalar_plain("cc");
175  * handler.add_sibling();
176  * handler.set_val_scalar_plain("dd");
177  * handler.end_seq();
178  * handler.end_map();
179  * ```
180  * The problem with the sequence above is that, reading from
181  * left-to-right, the parser can only detect the proper calls at
182  * (1) and (2) once it reaches (1) in the YAML source. So, the
183  * parser would have to buffer the entire event sequence starting
184  * from the beginning until it reaches (1). Using this function,
185  * the parser can do instead:
186  * ```cpp
187  * handler.begin_seq_val_flow(); // (2) -- preemptively as val!
188  * handler.set_val_scalar_plain("aa");
189  * handler.add_sibling();
190  * handler.set_val_scalar_plain("bb");
191  * handler.end_seq();
192  * handler.actually_as_new_map_key(); // (1) -- adjust when finding that the prev val was actually a key.
193  * handler.begin_seq_val_flow(); // (3) -- go on as before
194  * handler.set_val_scalar_plain("cc");
195  * handler.add_sibling();
196  * handler.set_val_scalar_plain("dd");
197  * handler.end_seq();
198  * handler.end_map();
199  * ```
200  */
201 
202 class Tree;
203 class NodeRef;
204 class ConstNodeRef;
205 
206 
207 //-----------------------------------------------------------------------------
208 //-----------------------------------------------------------------------------
209 //-----------------------------------------------------------------------------
210 
211 /** Options to give to the parser to control its behavior. */
213 {
214 private:
215 
216  typedef enum : uint32_t {
217  SCALAR_FILTERING = (1u << 0u),
218  LOCATIONS = (1u << 1u),
219  DEFAULTS = SCALAR_FILTERING,
220  } Flags_e;
221 
222  uint32_t flags = DEFAULTS;
223 
224 public:
225 
226  ParserOptions() = default;
227 
228 public:
229 
230  /** @name source location tracking */
231  /** @{ */
232 
233  /** enable/disable source location tracking */
234  ParserOptions& locations(bool enabled) noexcept
235  {
236  if(enabled)
237  flags |= LOCATIONS;
238  else
239  flags &= ~LOCATIONS;
240  return *this;
241  }
242  /** query source location tracking status */
243  C4_ALWAYS_INLINE bool locations() const noexcept { return (flags & LOCATIONS); }
244 
245  /** @} */
246 
247 public:
248 
249  /** @name scalar filtering status (experimental; disable at your discretion) */
250  /** @{ */
251 
252  /** enable/disable scalar filtering while parsing */
253  ParserOptions& scalar_filtering(bool enabled) noexcept
254  {
255  if(enabled)
256  flags |= SCALAR_FILTERING;
257  else
258  flags &= ~SCALAR_FILTERING;
259  return *this;
260  }
261  /** query scalar filtering status */
262  C4_ALWAYS_INLINE bool scalar_filtering() const noexcept { return (flags & SCALAR_FILTERING); }
263 
264  /** @} */
265 };
266 
267 
268 //-----------------------------------------------------------------------------
269 //-----------------------------------------------------------------------------
270 //-----------------------------------------------------------------------------
271 
272 /** This is the main driver of parsing logic: it scans the YAML or
273  * JSON source for tokens, and emits the appropriate sequence of
274  * parsing events to its event handler. The parse engine itself has no
275  * special limitations, and *can* accomodate containers as keys; it is the
276  * event handler may introduce additional constraints.
277  *
278  * There are two implemented handlers (see @ref doc_event_handlers,
279  * which has important notes about the event model):
280  *
281  * - @ref EventHandlerTree is the handler responsible for creating the
282  * ryml @ref Tree
283  *
284  * - @ref extra::EventHandlerTestSuite is a handler responsible for emitting
285  * standardized [YAML test suite
286  * events](https://github.com/yaml/yaml-test-suite), used (only) in
287  * the CI of this project. This is not part of the library and is
288  * not installed.
289  *
290  * - @ref extra::EventHandlerInts is the handler responsible for
291  * emitting integer-coded events. It is intended for implementing
292  * fully-conformant parsing in other programming languages
293  * (integration is currently under work for
294  * [YamlScript](https://github.com/yaml/yamlscript) and
295  * [go-yaml](https://github.com/yaml/go-yaml/)). It is not part of
296  * the library and is not installed.
297  *
298  */
299 template<class EventHandler>
301 {
302 public:
303 
304  using handler_type = EventHandler;
305 
306 public:
307 
308  /** @name construction and assignment */
309  /** @{ */
310 
311  ParseEngine(EventHandler *evt_handler, ParserOptions opts={});
312  ~ParseEngine();
313 
314  ParseEngine(ParseEngine &&) noexcept;
315  ParseEngine(ParseEngine const&);
316  ParseEngine& operator=(ParseEngine &&) noexcept;
317  ParseEngine& operator=(ParseEngine const&);
318 
319  /** @} */
320 
321 public:
322 
323  /** @name modifiers */
324  /** @{ */
325 
326  /** Reserve a certain capacity for the parsing stack.
327  * This should be larger than the expected depth of the parsed
328  * YAML tree.
329  *
330  * The parsing stack is the only (potential) heap memory used
331  * directly by the parser.
332  *
333  * If the requested capacity is below the default
334  * stack size of 16, the memory is used directly in the parser
335  * object; otherwise it will be allocated from the heap.
336  *
337  * @note this reserves memory only for the parser itself; all the
338  * allocations for the parsed tree will go through the tree's
339  * allocator (when different).
340  *
341  * @note for maximum efficiency, the tree and the arena can (and
342  * should) also be reserved. */
343  void reserve_stack(id_type capacity)
344  {
345  m_evt_handler->m_stack.reserve(capacity);
346  }
347 
348  /** Reserve a certain capacity for the array used to track node
349  * locations in the source buffer. */
350  void reserve_locations(size_t num_source_lines)
351  {
352  _resize_locations(num_source_lines);
353  }
354 
355  RYML_DEPRECATED("filter arena no longer needed")
356  void reserve_filter_arena(size_t) {}
357 
358  /** @} */
359 
360 public:
361 
362  /** @name getters */
363  /** @{ */
364 
365  /** Get the options used to build this parser object. */
366  ParserOptions const& options() const { return m_options; }
367 
368  /** Get the current callbacks in the parser. */
369  Callbacks const& callbacks() const { RYML_ASSERT(m_evt_handler); return m_evt_handler->m_stack.m_callbacks; }
370 
371  /** Get the name of the latest file parsed by this object. */
372  csubstr filename() const { return m_file; }
373 
374  /** Get the latest YAML buffer parsed by this object. */
375  csubstr source() const { return m_buf; }
376 
377  /** Get the encoding of the latest YAML buffer parsed by this object.
378  * If no encoding was specified, UTF8 is assumed as per the YAML standard. */
379  Encoding_e encoding() const { return m_encoding != NOBOM ? m_encoding : UTF8; }
380 
381  id_type stack_capacity() const { RYML_ASSERT(m_evt_handler); return m_evt_handler->m_stack.capacity(); }
382  size_t locations_capacity() const { return m_newline_offsets_capacity; }
383 
384  RYML_DEPRECATED("filter arena no longer needed")
385  size_t filter_arena_capacity() const { return 0u; }
386 
387  /** @} */
388 
389 public:
390 
391  /** @name parse methods */
392  /** @{ */
393 
394  /** parse YAML in place, emitting events to the current handler */
395  void parse_in_place_ev(csubstr filename, substr src);
396 
397  /** parse JSON in place, emitting events to the current handler */
398  void parse_json_in_place_ev(csubstr filename, substr src);
399 
400  /** @} */
401 
402 public:
403 
404  // deprecated parse methods
405 
406  /** @cond dev */
407  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place(csubstr filename, substr yaml, Tree *t, size_t node_id);
408  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place( substr yaml, Tree *t, size_t node_id);
409  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place(csubstr filename, substr yaml, Tree *t );
410  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place( substr yaml, Tree *t );
411  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place(csubstr filename, substr yaml, NodeRef node );
412  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_place( substr yaml, NodeRef node );
413  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_place(csubstr filename, substr yaml );
414  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_place( substr yaml );
415  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, csubstr yaml, Tree *t, size_t node_id);
416  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( csubstr yaml, Tree *t, size_t node_id);
417  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, csubstr yaml, Tree *t );
418  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( csubstr yaml, Tree *t );
419  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, csubstr yaml, NodeRef node );
420  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( csubstr yaml, NodeRef node );
421  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_arena(csubstr filename, csubstr yaml );
422  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding function in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_arena( csubstr yaml );
423  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, substr yaml, Tree *t, size_t node_id);
424  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( substr yaml, Tree *t, size_t node_id);
425  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, substr yaml, Tree *t );
426  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( substr yaml, Tree *t );
427  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena(csubstr filename, substr yaml, NodeRef node );
428  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, void>::type parse_in_arena( substr yaml, NodeRef node );
429  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_arena(csubstr filename, substr yaml );
430  template<class U=EventHandler> RYML_DEPRECATED("removed, deliberately undefined. use the freestanding csubstr version in parse.hpp.") typename std::enable_if<U::is_wtree, Tree>::type parse_in_arena( substr yaml );
431  /** @endcond */
432 
433 public:
434 
435  /** @name locations */
436  /** @{ */
437 
438  /** Get the string starting at a particular location, to the end
439  * of the parsed source buffer. */
440  csubstr location_contents(Location const& loc) const;
441 
442  /** Given a pointer to a buffer position, get the location.
443  * @param[in] val must be pointing to somewhere in the source
444  * buffer that was last parsed by this object. */
445  Location val_location(const char *val) const;
446 
447  /** @} */
448 
449 public:
450 
451  /** @cond dev */
452  template<class U>
453  RYML_DEPRECATED("moved to Tree::location(Parser const&). deliberately undefined here.")
454  auto location(Tree const&, id_type node) const -> typename std::enable_if<U::is_wtree, Location>::type;
455 
456  template<class U>
457  RYML_DEPRECATED("moved to ConstNodeRef::location(Parser const&), deliberately undefined here.")
458  auto location(ConstNodeRef const&) const -> typename std::enable_if<U::is_wtree, Location>::type;
459  /** @endcond */
460 
461 public:
462 
463  /** @name scalar filtering */
464  /** @{*/
465 
466  /** filter a plain scalar */
467  FilterResult filter_scalar_plain(csubstr scalar, substr dst, size_t indentation);
468  /** filter a plain scalar in place */
469  FilterResult filter_scalar_plain_in_place(substr scalar, size_t cap, size_t indentation);
470 
471  /** filter a single-quoted scalar */
472  FilterResult filter_scalar_squoted(csubstr scalar, substr dst);
473  /** filter a single-quoted scalar in place */
474  FilterResult filter_scalar_squoted_in_place(substr scalar, size_t cap);
475 
476  /** filter a double-quoted scalar */
477  FilterResult filter_scalar_dquoted(csubstr scalar, substr dst);
478  /** filter a double-quoted scalar in place */
479  FilterResultExtending filter_scalar_dquoted_in_place(substr scalar, size_t cap);
480 
481  /** filter a block-literal scalar */
482  FilterResult filter_scalar_block_literal(csubstr scalar, substr dst, size_t indentation, BlockChomp_e chomp);
483  /** filter a block-literal scalar in place */
484  FilterResult filter_scalar_block_literal_in_place(substr scalar, size_t cap, size_t indentation, BlockChomp_e chomp);
485 
486  /** filter a block-folded scalar */
487  FilterResult filter_scalar_block_folded(csubstr scalar, substr dst, size_t indentation, BlockChomp_e chomp);
488  /** filter a block-folded scalar in place */
489  FilterResult filter_scalar_block_folded_in_place(substr scalar, size_t cap, size_t indentation, BlockChomp_e chomp);
490 
491  /** @} */
492 
493 private:
494 
495  struct ScannedScalar
496  {
497  substr scalar;
498  bool needs_filter;
499  };
500 
501  struct ScannedBlock
502  {
503  substr scalar;
504  size_t indentation;
505  BlockChomp_e chomp;
506  };
507 
508  bool _is_doc_begin(csubstr s);
509  bool _is_doc_end(csubstr s);
510 
511  bool _scan_scalar_plain_blck(ScannedScalar *C4_RESTRICT sc, size_t indentation);
512  bool _scan_scalar_plain_seq_flow(ScannedScalar *C4_RESTRICT sc);
513  bool _scan_scalar_plain_seq_blck(ScannedScalar *C4_RESTRICT sc);
514  bool _scan_scalar_plain_map_flow(ScannedScalar *C4_RESTRICT sc);
515  bool _scan_scalar_plain_map_blck(ScannedScalar *C4_RESTRICT sc);
516  bool _scan_scalar_map_json(ScannedScalar *C4_RESTRICT sc);
517  bool _scan_scalar_seq_json(ScannedScalar *C4_RESTRICT sc);
518  bool _scan_scalar_plain_unk(ScannedScalar *C4_RESTRICT sc);
519  bool _is_valid_start_scalar_plain_flow(csubstr s);
520 
521  ScannedScalar _scan_scalar_squot();
522  ScannedScalar _scan_scalar_dquot();
523 
524  void _scan_block(ScannedBlock *C4_RESTRICT sb, size_t indref);
525 
526  csubstr _scan_anchor();
527  csubstr _scan_ref_seq();
528  csubstr _scan_ref_map();
529  csubstr _scan_tag();
530 
531 public: // exposed for testing
532 
533  /** @cond dev */
534  csubstr _filter_scalar_plain(substr s, size_t indentation);
535  csubstr _filter_scalar_squot(substr s);
536  csubstr _filter_scalar_dquot(substr s);
537  csubstr _filter_scalar_literal(substr s, size_t indentation, BlockChomp_e chomp);
538  csubstr _filter_scalar_folded(substr s, size_t indentation, BlockChomp_e chomp);
539  csubstr _move_scalar_left_and_add_newline(substr s);
540 
541  csubstr _maybe_filter_key_scalar_plain(ScannedScalar const& sc, size_t indendation);
542  csubstr _maybe_filter_val_scalar_plain(ScannedScalar const& sc, size_t indendation);
543  csubstr _maybe_filter_key_scalar_squot(ScannedScalar const& sc);
544  csubstr _maybe_filter_val_scalar_squot(ScannedScalar const& sc);
545  csubstr _maybe_filter_key_scalar_dquot(ScannedScalar const& sc);
546  csubstr _maybe_filter_val_scalar_dquot(ScannedScalar const& sc);
547  csubstr _maybe_filter_key_scalar_literal(ScannedBlock const& sb);
548  csubstr _maybe_filter_val_scalar_literal(ScannedBlock const& sb);
549  csubstr _maybe_filter_key_scalar_folded(ScannedBlock const& sb);
550  csubstr _maybe_filter_val_scalar_folded(ScannedBlock const& sb);
551  /** @endcond */
552 
553 private:
554 
555  void _handle_map_block();
556  void _handle_seq_block();
557  void _handle_map_flow();
558  void _handle_seq_flow();
559  void _handle_seq_imap();
560  void _handle_map_json();
561  void _handle_seq_json();
562 
563  void _handle_unk();
564  void _handle_unk_json();
565  void _handle_usty();
566 
567  void _handle_flow_skip_whitespace();
568 
569  void _end_map_blck();
570  void _end_seq_blck();
571  void _end2_map();
572  void _end2_seq();
573 
574  void _begin2_doc();
575  void _begin2_doc_expl();
576  void _end2_doc();
577  void _end2_doc_expl();
578 
579  void _maybe_begin_doc();
580  void _maybe_end_doc();
581 
582  void _start_doc_suddenly();
583  void _end_doc_suddenly();
584  void _end_doc_suddenly__pop();
585  void _end_stream();
586 
587  void _set_indentation(size_t indentation);
588  void _save_indentation();
589  void _handle_indentation_pop_from_block_seq();
590  void _handle_indentation_pop_from_block_map();
591  void _handle_indentation_pop(ParserState const* dst);
592 
593  void _maybe_skip_comment();
594  void _skip_comment();
595  void _maybe_skip_whitespace_tokens();
596  void _maybe_skipchars(char c);
597  #ifdef RYML_NO_COVERAGE__TO_BE_DELETED
598  void _maybe_skipchars_up_to(char c, size_t max_to_skip);
599  #endif
600  template<size_t N>
601  void _skipchars(const char (&chars)[N]);
602  bool _maybe_scan_following_colon() noexcept;
603  bool _maybe_scan_following_comma() noexcept;
604 
605 public:
606 
607  /** @cond dev */
608  template<class FilterProcessor> auto _filter_plain(FilterProcessor &C4_RESTRICT proc, size_t indentation) -> decltype(proc.result());
609  template<class FilterProcessor> auto _filter_squoted(FilterProcessor &C4_RESTRICT proc) -> decltype(proc.result());
610  template<class FilterProcessor> auto _filter_dquoted(FilterProcessor &C4_RESTRICT proc) -> decltype(proc.result());
611  template<class FilterProcessor> auto _filter_block_literal(FilterProcessor &C4_RESTRICT proc, size_t indentation, BlockChomp_e chomp) -> decltype(proc.result());
612  template<class FilterProcessor> auto _filter_block_folded(FilterProcessor &C4_RESTRICT proc, size_t indentation, BlockChomp_e chomp) -> decltype(proc.result());
613  /** @endcond */
614 
615 public:
616 
617  /** @cond dev */
618  template<class FilterProcessor> void _filter_nl_plain(FilterProcessor &C4_RESTRICT proc, size_t indentation);
619  template<class FilterProcessor> void _filter_nl_squoted(FilterProcessor &C4_RESTRICT proc);
620  template<class FilterProcessor> void _filter_nl_dquoted(FilterProcessor &C4_RESTRICT proc);
621 
622  template<class FilterProcessor> bool _filter_ws_handle_to_first_non_space(FilterProcessor &C4_RESTRICT proc);
623  template<class FilterProcessor> void _filter_ws_copy_trailing(FilterProcessor &C4_RESTRICT proc);
624  template<class FilterProcessor> void _filter_ws_skip_trailing(FilterProcessor &C4_RESTRICT proc);
625 
626  template<class FilterProcessor> void _filter_dquoted_backslash(FilterProcessor &C4_RESTRICT proc);
627 
628  template<class FilterProcessor> void _filter_chomp(FilterProcessor &C4_RESTRICT proc, BlockChomp_e chomp, size_t indentation);
629  template<class FilterProcessor> size_t _handle_all_whitespace(FilterProcessor &C4_RESTRICT proc, BlockChomp_e chomp);
630  template<class FilterProcessor> size_t _extend_to_chomp(FilterProcessor &C4_RESTRICT proc, size_t contents_len);
631  template<class FilterProcessor> void _filter_block_indentation(FilterProcessor &C4_RESTRICT proc, size_t indentation);
632  template<class FilterProcessor> void _filter_block_folded_newlines(FilterProcessor &C4_RESTRICT proc, size_t indentation, size_t len);
633  template<class FilterProcessor> size_t _filter_block_folded_newlines_compress(FilterProcessor &C4_RESTRICT proc, size_t num_newl, size_t wpos_at_first_newl);
634  template<class FilterProcessor> void _filter_block_folded_newlines_leading(FilterProcessor &C4_RESTRICT proc, size_t indentation, size_t len);
635  template<class FilterProcessor> void _filter_block_folded_indented_block(FilterProcessor &C4_RESTRICT proc, size_t indentation, size_t len, size_t curr_indentation) noexcept;
636 
637  /** @endcond */
638 
639 private:
640 
641  void _line_progressed(size_t ahead);
642  void _line_ended();
643  void _line_ended_undo();
644 
645  bool _finished_file() const;
646  bool _finished_line() const;
647 
648  void _scan_line();
649  substr _peek_next_line(size_t pos=npos) const;
650 
651  bool _at_line_begin() const
652  {
653  return m_evt_handler->m_curr->line_contents.rem.begin() == m_evt_handler->m_curr->line_contents.full.begin();
654  }
655 
656  void _relocate_arena(csubstr prev_arena, substr next_arena);
657  static void _s_relocate_arena(void*, csubstr prev_arena, substr next_arena);
658 
659 private:
660 
661  C4_ALWAYS_INLINE bool has_all(ParserFlag_t f) const noexcept { return (m_evt_handler->m_curr->flags & f) == f; }
662  C4_ALWAYS_INLINE bool has_any(ParserFlag_t f) const noexcept { return (m_evt_handler->m_curr->flags & f) != 0; }
663  C4_ALWAYS_INLINE bool has_none(ParserFlag_t f) const noexcept { return (m_evt_handler->m_curr->flags & f) == 0; }
664  static C4_ALWAYS_INLINE bool has_all(ParserFlag_t f, ParserState const* C4_RESTRICT s) noexcept { return (s->flags & f) == f; }
665  static C4_ALWAYS_INLINE bool has_any(ParserFlag_t f, ParserState const* C4_RESTRICT s) noexcept { return (s->flags & f) != 0; }
666  static C4_ALWAYS_INLINE bool has_none(ParserFlag_t f, ParserState const* C4_RESTRICT s) noexcept { return (s->flags & f) == 0; }
667 
668  #ifndef RYML_DBG
669  C4_ALWAYS_INLINE static void add_flags(ParserFlag_t on, ParserState *C4_RESTRICT s) noexcept { s->flags |= on; }
670  C4_ALWAYS_INLINE static void addrem_flags(ParserFlag_t on, ParserFlag_t off, ParserState *C4_RESTRICT s) noexcept { s->flags &= ~off; s->flags |= on; }
671  C4_ALWAYS_INLINE static void rem_flags(ParserFlag_t off, ParserState *C4_RESTRICT s) noexcept { s->flags &= ~off; }
672  C4_ALWAYS_INLINE void add_flags(ParserFlag_t on) noexcept { m_evt_handler->m_curr->flags |= on; }
673  C4_ALWAYS_INLINE void addrem_flags(ParserFlag_t on, ParserFlag_t off) noexcept { m_evt_handler->m_curr->flags &= ~off; m_evt_handler->m_curr->flags |= on; }
674  C4_ALWAYS_INLINE void rem_flags(ParserFlag_t off) noexcept { m_evt_handler->m_curr->flags &= ~off; }
675  #else
676  static void add_flags(ParserFlag_t on, ParserState *C4_RESTRICT s);
677  static void addrem_flags(ParserFlag_t on, ParserFlag_t off, ParserState *C4_RESTRICT s);
678  static void rem_flags(ParserFlag_t off, ParserState *C4_RESTRICT s);
679  C4_ALWAYS_INLINE void add_flags(ParserFlag_t on) noexcept { add_flags(on, m_evt_handler->m_curr); }
680  C4_ALWAYS_INLINE void addrem_flags(ParserFlag_t on, ParserFlag_t off) noexcept { addrem_flags(on, off, m_evt_handler->m_curr); }
681  C4_ALWAYS_INLINE void rem_flags(ParserFlag_t off) noexcept { rem_flags(off, m_evt_handler->m_curr); }
682  #endif
683 
684 private:
685 
686  void _prepare_locations();
687  void _resize_locations(size_t sz);
688  bool _locations_dirty() const;
689 
690 private:
691 
692  void _reset();
693  void _free();
694  void _clr();
695 
696  #ifdef RYML_DBG
697  template<class ...Args> void _dbg(csubstr fmt, Args const& C4_RESTRICT ...args) const;
698  #endif
699  template<class ...Args> void _err(csubstr fmt, Args const& C4_RESTRICT ...args) const;
700  template<class ...Args> void _errloc(csubstr fmt, Location const& loc, Args const& C4_RESTRICT ...args) const;
701 
702  template<class DumpFn> void _fmt_msg(DumpFn &&dumpfn) const;
703 
704 private:
705 
706  /** store pending tag or anchor/ref annotations */
707  struct Annotation
708  {
709  struct Entry
710  {
711  csubstr str;
712  size_t indentation;
713  size_t line;
714  };
715  Entry annotations[2];
716  size_t num_entries;
717  };
718 
719  void _handle_colon();
720  void _add_annotation(Annotation *C4_RESTRICT dst, csubstr str, size_t indentation, size_t line);
721  void _clear_annotations(Annotation *C4_RESTRICT dst);
722  bool _has_pending_annotations() const { return m_pending_tags.num_entries || m_pending_anchors.num_entries; }
723  #ifdef RYML_NO_COVERAGE__TO_BE_DELETED
724  bool _handle_indentation_from_annotations();
725  #endif
726  bool _annotations_require_key_container() const;
727  void _handle_annotations_before_blck_key_scalar();
728  void _handle_annotations_before_blck_val_scalar();
729  void _handle_annotations_before_start_mapblck(size_t current_line);
730  void _handle_annotations_before_start_mapblck_as_key();
731  void _handle_annotations_and_indentation_after_start_mapblck(size_t key_indentation, size_t key_line);
732  size_t _select_indentation_from_annotations(size_t val_indentation, size_t val_line);
733  void _handle_directive(csubstr rem);
734  bool _handle_bom();
735  void _handle_bom(Encoding_e enc);
736 
737  void _check_tag(csubstr tag);
738 
739 private:
740 
741  ParserOptions m_options;
742 
743  csubstr m_file;
744  substr m_buf;
745 
746 public:
747 
748  /** @cond dev */
749  EventHandler *C4_RESTRICT m_evt_handler; // NOLINT
750  /** @endcond */
751 
752 private:
753 
754  Annotation m_pending_anchors;
755  Annotation m_pending_tags;
756 
757  bool m_was_inside_qmrk;
758  bool m_doc_empty = true;
759  size_t m_prev_colon = npos;
760 
761  Encoding_e m_encoding = UTF8;
762 
763 private:
764 
765  size_t *m_newline_offsets;
766  size_t m_newline_offsets_size;
767  size_t m_newline_offsets_capacity;
768  csubstr m_newline_offsets_buf;
769 
770 };
771 
772 
773 /** Quickly inspect the source to estimate the number of nodes the
774  * resulting tree is likely have. If a tree is empty before
775  * parsing, considerable time will be spent growing it, so calling
776  * this to reserve the tree size prior to parsing is likely to
777  * result in a time gain. We encourage using this method before
778  * parsing, but as always measure its impact in performance to
779  * obtain a good trade-off.
780  *
781  * @note since this method is meant for optimizing performance, it
782  * is approximate. The result may be actually smaller than the
783  * resulting number of nodes, notably if the YAML uses implicit
784  * maps as flow seq members as in `[these: are, individual:
785  * maps]`. */
786 RYML_EXPORT id_type estimate_tree_capacity(csubstr src); // NOLINT(readability-redundant-declaration)
787 
788 /** @} */
789 
790 } // namespace yml
791 } // namespace c4
792 
793 // NOLINTEND(hicpp-signed-bitwise)
794 
795 #if defined(_MSC_VER)
796 # pragma warning(pop)
797 #endif
798 
799 #endif /* _C4_YML_PARSE_ENGINE_HPP_ */
Holds a pointer to an existing tree, and a node id.
Definition: node.hpp:855
A reference to a node in an existing yaml tree, offering a more convenient API than the index-based A...
Definition: node.hpp:995
This is the main driver of parsing logic: it scans the YAML or JSON source for tokens,...
void reserve_stack(id_type capacity)
Reserve a certain capacity for the parsing stack.
FilterResult filter_scalar_plain(csubstr scalar, substr dst, size_t indentation)
filter a plain scalar
csubstr location_contents(Location const &loc) const
Get the string starting at a particular location, to the end of the parsed source buffer.
FilterResult filter_scalar_squoted(csubstr scalar, substr dst)
filter a single-quoted scalar
ParseEngine(EventHandler *evt_handler, ParserOptions opts={})
FilterResult filter_scalar_dquoted(csubstr scalar, substr dst)
filter a double-quoted scalar
void reserve_filter_arena(size_t)
void parse_json_in_place_ev(csubstr filename, substr src)
parse JSON in place, emitting events to the current handler
Location val_location(const char *val) const
Given a pointer to a buffer position, get the location.
FilterResult filter_scalar_plain_in_place(substr scalar, size_t cap, size_t indentation)
filter a plain scalar in place
FilterResult filter_scalar_squoted_in_place(substr scalar, size_t cap)
filter a single-quoted scalar in place
FilterResultExtending filter_scalar_dquoted_in_place(substr scalar, size_t cap)
filter a double-quoted scalar in place
Encoding_e encoding() const
Get the encoding of the latest YAML buffer parsed by this object.
size_t locations_capacity() const
void parse_in_place_ev(csubstr filename, substr src)
parse YAML in place, emitting events to the current handler
csubstr source() const
Get the latest YAML buffer parsed by this object.
FilterResult filter_scalar_block_literal_in_place(substr scalar, size_t cap, size_t indentation, BlockChomp_e chomp)
filter a block-literal scalar in place
ParserOptions const & options() const
Get the options used to build this parser object.
size_t filter_arena_capacity() const
FilterResult filter_scalar_block_literal(csubstr scalar, substr dst, size_t indentation, BlockChomp_e chomp)
filter a block-literal scalar
id_type stack_capacity() const
Callbacks const & callbacks() const
Get the current callbacks in the parser.
EventHandler handler_type
FilterResult filter_scalar_block_folded_in_place(substr scalar, size_t cap, size_t indentation, BlockChomp_e chomp)
filter a block-folded scalar in place
csubstr filename() const
Get the name of the latest file parsed by this object.
void reserve_locations(size_t num_source_lines)
Reserve a certain capacity for the array used to track node locations in the source buffer.
FilterResult filter_scalar_block_folded(csubstr scalar, substr dst, size_t indentation, BlockChomp_e chomp)
filter a block-folded scalar
#define RYML_EXPORT
Definition: export.hpp:15
void parse_in_arena(Parser *parser, csubstr filename, csubstr yaml, Tree *t, id_type node_id)
(1) parse YAML into an existing tree node. The filename will be used in any error messages arising du...
Definition: parse.cpp:91
void parse_in_place(Parser *parser, csubstr filename, substr yaml, Tree *t, id_type node_id)
(1) parse YAML into an existing tree node.
Definition: parse.cpp:37
id_type estimate_tree_capacity(csubstr src)
Quickly inspect the source to estimate the number of nodes the resulting tree is likely have.
Definition: parse.cpp:134
RYML_ID_TYPE id_type
The type of a node id in the YAML tree; to override the default type, define the macro RYML_ID_TYPE t...
Definition: common.hpp:253
@ npos
a null string position
Definition: common.hpp:267
int ParserFlag_t
data type for ParserState_e
csubstr version()
Definition: version.cpp:6
Encoding_e
Definition: common.hpp:428
@ UTF8
Definition: common.hpp:430
@ NOBOM
Definition: common.hpp:429
Definition: common.cpp:12
a c-style callbacks class.
Definition: common.hpp:377
a source file position
Definition: common.hpp:298
Options to give to the parser to control its behavior.
ParserOptions & scalar_filtering(bool enabled) noexcept
enable/disable scalar filtering while parsing
bool scalar_filtering() const noexcept
query scalar filtering status
bool locations() const noexcept
query source location tracking status
ParserOptions & locations(bool enabled) noexcept
enable/disable source location tracking