1 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
2 // -*- Mode: C++ -*-
3 //
4 // Copyright (C) 2013-2020 Red Hat, Inc.
5 //
6 // Author: Dodji Seketeli
7
8 /// @file
9 ///
10 /// This contains the implementation of the comparison engine of
11 /// libabigail.
12
13 #include <ctype.h>
14 #include <libgen.h>
15 #include <algorithm>
16 #include <sstream>
17
18 #include "abg-comparison-priv.h"
19 #include "abg-reporter-priv.h"
20
21 namespace abigail
22 {
23
24 namespace comparison
25 {
26
27 ///
28 ///
29 ///@defgroup DiffNode Internal Representation of the comparison engine
30 /// @{
31 ///
32 /// @brief How changes are represented in libabigail's comparison engine.
33 ///
34 ///@par diff nodes
35 ///
36 /// The internal representation of the comparison engine is basically
37 /// a graph of @ref instances of @ref diff node. We refer to these
38 /// just as <em>diff nodes</em>. A diff node represents a change
39 /// between two ABI artifacts represented by instances of types of the
40 /// abigail::ir namespace. These two artifacts that are being
41 /// compared are called the <em>subjects of the diff</em>.
42 ///
43 /// The types of that IR are in the abigail::comparison namespace.
44 ///
45 ///@par comparing diff nodes
46 ///
47 /// Comparing two instances of @ref diff nodes amounts to comparing
48 /// the subject of the diff. In other words, two @ref diff nodes are
49 /// equal if and only if their subjects are equal. Thus, two @ref
50 /// diff nodes can have different memory addresses and yet be equal.
51 ///
52 ///@par diff reporting and context
53 ///
54 /// A diff node can be serialized to an output stream to express, in
55 /// a human-readable textual form, the different changes that exist
56 /// between its two subjects. This is done by invoking the
57 /// diff::report() method. That reporting is controlled by several
58 /// parameters that are conceptually part of the context of the diff.
59 /// That context is materialized by an instance of the @ref
60 /// diff_context type.
61 ///
62 /// Please note that the role of the instance(s) of @ref diff_context
63 /// is boreader than just controlling the reporting of @ref diff
64 /// nodes. Basically, a @ref diff node itself is created following
65 /// behaviours that are controlled by a particular instance of
66 /// diff_context. A diff node is created in a particular diff
67 /// context, so to speak.
68 ///
69 /// @}
70 ///
71
72 ///
73 ///@defgroup CanonicalDiff Canonical diff tree nodes
74 /// @{
75 ///
76 /// @brief How equivalent diff nodes are quickly spotted.
77 ///
78 /// @par Equivalence of diff nodes.
79 ///
80 /// Each @ref diff node has a property named <em>Canonical Diff
81 /// Node</em>. If \c D is a diff node, the canonical diff node of @c
82 /// D, noted @c C(D) is a particular diff node that is equal to @c D.
83 /// Thus, a fast way to compare two @ref diff node is to perform a
84 /// pointer comparison of their canonical diff nodes.
85 ///
86 /// A set of equivalent @ref diff nodes is a set of diff nodes that
87 /// all have the same canonical node. All the nodes of that set are
88 /// equal.
89 ///
90 /// A canonical node is registereded for a given diff node by invoking
91 /// the method diff_context::initialize_canonical_diff().
92 ///
93 /// Please note that the diff_context holds all the canonical diffs
94 /// that got registered through it. Thus, the life time of all of
95 /// canonical diff objects is the same as the life time of the @ref
96 /// diff_context they relate to.
97 ///
98 /// @}
99 ///
100
101 // -----------------------------------------
102 // <private functions re-usable elsewhere>
103 // -----------------------------------------
104 /// Sort a map of enumerators by their value.
105 ///
106 /// @param enumerators_map the map to sort.
107 ///
108 /// @param sorted the resulting vector of sorted enumerators.
109 void
sort_enumerators(const string_enumerator_map & enumerators_map,enum_type_decl::enumerators & sorted)110 sort_enumerators(const string_enumerator_map& enumerators_map,
111 enum_type_decl::enumerators& sorted)
112 {
113 for (string_enumerator_map::const_iterator i = enumerators_map.begin();
114 i != enumerators_map.end();
115 ++i)
116 sorted.push_back(i->second);
117 enumerator_value_comp comp;
118 std::sort(sorted.begin(), sorted.end(), comp);
119 }
120
121 /// Sort a map of changed enumerators.
122 ///
123 /// @param enumerators_map the map to sort.
124 ///
125 ///@param output parameter. The resulting sorted enumerators.
126 void
sort_changed_enumerators(const string_changed_enumerator_map & enumerators_map,changed_enumerators_type & sorted)127 sort_changed_enumerators(const string_changed_enumerator_map& enumerators_map,
128 changed_enumerators_type& sorted)
129 {
130 for (string_changed_enumerator_map::const_iterator i =
131 enumerators_map.begin();
132 i != enumerators_map.end();
133 ++i)
134 sorted.push_back(i->second);
135
136 changed_enumerator_comp comp;
137 std::sort(sorted.begin(), sorted.end(), comp);
138 }
139
140 /// Sort a map of data members by the offset of their initial value.
141 ///
142 /// @param data_members the map of changed data members to sort.
143 ///
144 /// @param sorted the resulting vector of sorted changed data members.
145 void
sort_data_members(const string_decl_base_sptr_map & data_members,vector<decl_base_sptr> & sorted)146 sort_data_members(const string_decl_base_sptr_map &data_members,
147 vector<decl_base_sptr>& sorted)
148 {
149 sorted.reserve(data_members.size());
150 for (string_decl_base_sptr_map::const_iterator i = data_members.begin();
151 i != data_members.end();
152 ++i)
153 sorted.push_back(i->second);
154
155 data_member_comp comp;
156 std::sort(sorted.begin(), sorted.end(), comp);
157 }
158
159 /// Sort (in place) a vector of changed data members.
160 ///
161 /// @param to_sort the vector to sort.
162 void
sort_changed_data_members(changed_var_sptrs_type & to_sort)163 sort_changed_data_members(changed_var_sptrs_type& to_sort)
164 {
165 data_member_comp comp;
166 std::sort(to_sort.begin(), to_sort.end(), comp);
167 }
168
169 /// Sort an instance of @ref string_function_ptr_map map and stuff a
170 /// resulting sorted vector of pointers to function_decl.
171 ///
172 /// @param map the map to sort.
173 ///
174 /// @param sorted the resulting sorted vector.
175 void
sort_string_function_ptr_map(const string_function_ptr_map & map,vector<function_decl * > & sorted)176 sort_string_function_ptr_map(const string_function_ptr_map& map,
177 vector<function_decl*>& sorted)
178 {
179 sorted.reserve(map.size());
180 for (string_function_ptr_map::const_iterator i = map.begin();
181 i != map.end();
182 ++i)
183 sorted.push_back(i->second);
184
185 function_comp comp;
186 std::sort(sorted.begin(), sorted.end(), comp);
187 }
188
189 /// Sort a map that's an instance of @ref
190 /// string_member_function_sptr_map and fill a vector of member
191 /// functions with the sorted result.
192 ///
193 /// @param map the map to sort.
194 ///
195 /// @param sorted the resulting sorted vector.
196 void
sort_string_member_function_sptr_map(const string_member_function_sptr_map & map,class_or_union::member_functions & sorted)197 sort_string_member_function_sptr_map(const string_member_function_sptr_map& map,
198 class_or_union::member_functions& sorted)
199 {
200 sorted.reserve(map.size());
201 for (string_member_function_sptr_map::const_iterator i = map.begin();
202 i != map.end();
203 ++i)
204 sorted.push_back(i->second);
205
206 function_comp comp;
207 std::sort(sorted.begin(), sorted.end(), comp);
208 }
209
210 /// Sort the values of a @ref string_function_decl_diff_sptr_map map
211 /// and store the result in a vector of @ref function_decl_diff_sptr
212 /// objects.
213 ///
214 /// @param map the map whose values to store.
215 ///
216 /// @param sorted the vector of function_decl_diff_sptr to store the
217 /// result of the sort into.
218 void
sort_string_function_decl_diff_sptr_map(const string_function_decl_diff_sptr_map & map,function_decl_diff_sptrs_type & sorted)219 sort_string_function_decl_diff_sptr_map
220 (const string_function_decl_diff_sptr_map& map,
221 function_decl_diff_sptrs_type& sorted)
222 {
223 sorted.reserve(map.size());
224 for (string_function_decl_diff_sptr_map::const_iterator i = map.begin();
225 i != map.end();
226 ++i)
227 sorted.push_back(i->second);
228 function_decl_diff_comp comp;
229 std::sort(sorted.begin(), sorted.end(), comp);
230 }
231
232 /// Sort of an instance of @ref string_var_diff_sptr_map map.
233 ///
234 /// @param map the input map to sort.
235 ///
236 /// @param sorted the ouptut sorted vector of @ref var_diff_sptr.
237 /// It's populated with the sorted content.
238 void
sort_string_var_diff_sptr_map(const string_var_diff_sptr_map & map,var_diff_sptrs_type & sorted)239 sort_string_var_diff_sptr_map(const string_var_diff_sptr_map& map,
240 var_diff_sptrs_type& sorted)
241 {
242 sorted.reserve(map.size());
243 for (string_var_diff_sptr_map::const_iterator i = map.begin();
244 i != map.end();
245 ++i)
246 sorted.push_back(i->second);
247
248 var_diff_sptr_comp comp;
249 std::sort(sorted.begin(), sorted.end(), comp);
250 }
251
252 /// Sort a map of string -> pointer to @ref elf_symbol.
253 ///
254 /// The result is a vector of @ref elf_symbol_sptr sorted by the
255 /// name of the symbol.
256 ///
257 /// @param map the map to sort.
258 ///
259 /// @param sorted out parameter; the sorted vector of @ref
260 /// elf_symbol_sptr.
261 void
sort_string_elf_symbol_map(const string_elf_symbol_map & map,vector<elf_symbol_sptr> & sorted)262 sort_string_elf_symbol_map(const string_elf_symbol_map& map,
263 vector<elf_symbol_sptr>& sorted)
264 {
265 for (string_elf_symbol_map::const_iterator i = map.begin();
266 i!= map.end();
267 ++i)
268 sorted.push_back(i->second);
269
270 elf_symbol_comp comp;
271 std::sort(sorted.begin(), sorted.end(), comp);
272 }
273
274 /// Sort a map of string -> pointer to @ref var_decl.
275 ///
276 /// The result is a vector of var_decl* sorted by the qualified name
277 /// of the variables.
278 ///
279 /// @param map the map to sort.
280 ///
281 /// @param sorted out parameter; the sorted vector of @ref var_decl.
282 void
sort_string_var_ptr_map(const string_var_ptr_map & map,vector<var_decl * > & sorted)283 sort_string_var_ptr_map(const string_var_ptr_map& map,
284 vector<var_decl*>& sorted)
285 {
286 for (string_var_ptr_map::const_iterator i = map.begin();
287 i != map.end();
288 ++i)
289 sorted.push_back(i->second);
290
291 var_comp comp;
292 std::sort(sorted.begin(), sorted.end(), comp);
293 }
294
295 /// Sort the values of a string_var_diff_sptr_map and store the result
296 /// in a vector of var_diff_sptr.
297 ///
298 /// @param map the map of changed data members to sort.
299 ///
300 /// @param sorted the resulting vector of var_diff_sptr.
301 void
sort_string_data_member_diff_sptr_map(const string_var_diff_sptr_map & map,var_diff_sptrs_type & sorted)302 sort_string_data_member_diff_sptr_map(const string_var_diff_sptr_map& map,
303 var_diff_sptrs_type& sorted)
304 {
305 sorted.reserve(map.size());
306 for (string_var_diff_sptr_map::const_iterator i = map.begin();
307 i != map.end();
308 ++i)
309 sorted.push_back(i->second);
310 data_member_diff_comp comp;
311 std::sort(sorted.begin(), sorted.end(), comp);
312 }
313
314 /// Sort the values of a unsigned_var_diff_sptr_map map and store the
315 /// result into a vector of var_diff_sptr.
316 ///
317 /// @param map the map of changed data members to sort.
318 ///
319 /// @param sorted the resulting vector of sorted var_diff_sptr.
320 void
sort_unsigned_data_member_diff_sptr_map(const unsigned_var_diff_sptr_map map,var_diff_sptrs_type & sorted)321 sort_unsigned_data_member_diff_sptr_map(const unsigned_var_diff_sptr_map map,
322 var_diff_sptrs_type& sorted)
323 {
324 sorted.reserve(map.size());
325 for (unsigned_var_diff_sptr_map::const_iterator i = map.begin();
326 i != map.end();
327 ++i)
328 sorted.push_back(i->second);
329 data_member_diff_comp comp;
330 std::sort(sorted.begin(), sorted.end(), comp);
331 }
332
333 /// Sort an map of string -> virtual member function into a vector of
334 /// virtual member functions. The virtual member functions are sorted
335 /// by increasing order of their virtual index.
336 ///
337 /// @param map the input map.
338 ///
339 /// @param sorted the resulting sorted vector of virtual function
340 /// member.
341 void
sort_string_virtual_member_function_diff_sptr_map(const string_function_decl_diff_sptr_map & map,function_decl_diff_sptrs_type & sorted)342 sort_string_virtual_member_function_diff_sptr_map
343 (const string_function_decl_diff_sptr_map& map,
344 function_decl_diff_sptrs_type& sorted)
345 {
346 sorted.reserve(map.size());
347 for (string_function_decl_diff_sptr_map::const_iterator i = map.begin();
348 i != map.end();
349 ++i)
350 sorted.push_back(i->second);
351
352 virtual_member_function_diff_comp comp;
353 sort(sorted.begin(), sorted.end(), comp);
354 }
355
356 /// Sort a map ofg string -> @ref diff_sptr into a vector of @ref
357 /// diff_sptr. The diff_sptr are sorted lexicographically wrt
358 /// qualified names of their first subjects.
359 ///
360 /// @param map the map to sort.
361 ///
362 /// @param sorted the resulting sorted vector.
363 void
sort_string_diff_sptr_map(const string_diff_sptr_map & map,diff_sptrs_type & sorted)364 sort_string_diff_sptr_map(const string_diff_sptr_map& map,
365 diff_sptrs_type& sorted)
366 {
367 sorted.reserve(map.size());
368 for (string_diff_sptr_map::const_iterator i = map.begin();
369 i != map.end();
370 ++i)
371 sorted.push_back(i->second);
372
373 diff_comp comp;
374 sort(sorted.begin(), sorted.end(), comp);
375 }
376
377 /// Sort a map ofg string -> @ref diff* into a vector of @ref
378 /// diff_ptr. The diff_ptr are sorted lexicographically wrt
379 /// qualified names of their first subjects.
380 ///
381 /// @param map the map to sort.
382 ///
383 /// @param sorted the resulting sorted vector.
384 void
sort_string_diff_ptr_map(const string_diff_ptr_map & map,diff_ptrs_type & sorted)385 sort_string_diff_ptr_map(const string_diff_ptr_map& map,
386 diff_ptrs_type& sorted)
387 {
388 sorted.reserve(map.size());
389 for (string_diff_ptr_map::const_iterator i = map.begin();
390 i != map.end();
391 ++i)
392 sorted.push_back(i->second);
393
394 diff_comp comp;
395 sort(sorted.begin(), sorted.end(), comp);
396 }
397
398 /// Sort a map of string -> base_diff_sptr into a sorted vector of
399 /// base_diff_sptr. The base_diff_sptr are sorted by increasing value
400 /// of their offset in their containing type.
401 ///
402 /// @param map the input map to sort.
403 ///
404 /// @param sorted the resulting sorted vector.
405 void
sort_string_base_diff_sptr_map(const string_base_diff_sptr_map & map,base_diff_sptrs_type & sorted)406 sort_string_base_diff_sptr_map(const string_base_diff_sptr_map& map,
407 base_diff_sptrs_type& sorted)
408 {
409 for (string_base_diff_sptr_map::const_iterator i = map.begin();
410 i != map.end();
411 ++i)
412 sorted.push_back(i->second);
413 base_diff_comp comp;
414 sort(sorted.begin(), sorted.end(), comp);
415 }
416
417 /// Lexicographically sort base specifications found
418 /// in instances of string_base_sptr_map.
419 void
sort_string_base_sptr_map(const string_base_sptr_map & m,class_decl::base_specs & sorted)420 sort_string_base_sptr_map(const string_base_sptr_map& m,
421 class_decl::base_specs& sorted)
422 {
423 for (string_base_sptr_map::const_iterator i = m.begin();
424 i != m.end();
425 ++i)
426 sorted.push_back(i->second);
427
428 base_spec_comp comp;
429 std::sort(sorted.begin(), sorted.end(), comp);
430 }
431
432 /// Sort a map of @ref fn_parm_diff by the indexes of the function
433 /// parameters.
434 ///
435 /// @param map the map to sort.
436 ///
437 /// @param sorted the resulting sorted vector of changed function
438 /// parms.
439 void
sort_string_fn_parm_diff_sptr_map(const unsigned_fn_parm_diff_sptr_map & map,vector<fn_parm_diff_sptr> & sorted)440 sort_string_fn_parm_diff_sptr_map(const unsigned_fn_parm_diff_sptr_map& map,
441 vector<fn_parm_diff_sptr>& sorted)
442 {
443 sorted.reserve(map.size());
444 for (unsigned_fn_parm_diff_sptr_map::const_iterator i = map.begin();
445 i != map.end();
446 ++i)
447 sorted.push_back(i->second);
448
449 fn_parm_diff_comp comp;
450 std::sort(sorted.begin(), sorted.end(), comp);
451 }
452
453 /// Sort a map of changed function parameters by the indexes of the
454 /// function parameters.
455 ///
456 /// @param map the map to sort.
457 ///
458 /// @param sorted the resulting sorted vector of instances of @ref
459 /// fn_parm_diff_sptr
460 void
sort_string_fn_parm_diff_sptr_map(const string_fn_parm_diff_sptr_map & map,vector<fn_parm_diff_sptr> & sorted)461 sort_string_fn_parm_diff_sptr_map(const string_fn_parm_diff_sptr_map& map,
462 vector<fn_parm_diff_sptr>& sorted)
463 {
464 sorted.reserve(map.size());
465 for (string_fn_parm_diff_sptr_map::const_iterator i = map.begin();
466 i != map.end();
467 ++i)
468 sorted.push_back(i->second);
469
470 fn_parm_diff_comp comp;
471 std::sort(sorted.begin(), sorted.end(), comp);
472 }
473
474 /// Sort a map of string -> function parameters.
475 ///
476 /// @param map the map to sort.
477 ///
478 /// @param sorted the resulting sorted vector of
479 /// @ref vector<function_decl::parameter_sptr>
480 void
sort_string_parm_map(const string_parm_map & map,vector<function_decl::parameter_sptr> & sorted)481 sort_string_parm_map(const string_parm_map& map,
482 vector<function_decl::parameter_sptr>& sorted)
483 {
484 for (string_parm_map::const_iterator i = map.begin();
485 i != map.end();
486 ++i)
487 sorted.push_back(i->second);
488
489 parm_comp comp;
490 std::sort(sorted.begin(), sorted.end(), comp);
491 }
492
493 /// Sort the set of ABI artifacts contained in a @ref
494 /// artifact_sptr_set_type.
495 ///
496 /// @param set the set of ABI artifacts to sort.
497 ///
498 /// @param output parameter the vector containing the sorted ABI
499 /// artifacts.
500 void
sort_artifacts_set(const artifact_sptr_set_type & set,vector<type_or_decl_base_sptr> & sorted)501 sort_artifacts_set(const artifact_sptr_set_type& set,
502 vector<type_or_decl_base_sptr>& sorted)
503 {
504
505 for (artifact_sptr_set_type::const_iterator it = set.begin();
506 it != set.end();
507 ++it)
508 sorted.push_back(*it);
509
510 type_or_decl_base_comp comp;
511 std::sort(sorted.begin(), sorted.end(), comp);
512 }
513
514 /// Sort a map of string to type_base_sptr entities.
515 ///
516 /// The entries are sorted based on the lexicographic order of the
517 /// pretty representation of the type_sptr_sptr. The sorted result is
518 /// put in a vector of type_base_sptr.
519 ///
520 /// @param map the map to sort.
521 ///
522 /// @param sorted the resulting vector of type_base_sptr
523 /// lexicographically sorted using their pretty representation.
524 void
sort_string_type_base_sptr_map(string_type_base_sptr_map & map,vector<type_base_sptr> & sorted)525 sort_string_type_base_sptr_map(string_type_base_sptr_map& map,
526 vector<type_base_sptr>& sorted)
527 {
528 for (string_type_base_sptr_map::const_iterator i = map.begin();
529 i != map.end();
530 ++i)
531 sorted.push_back(i->second);
532
533 type_or_decl_base_comp comp;
534 std::sort(sorted.begin(), sorted.end(), comp);
535 }
536
537 /// Return the first underlying type that is not a qualified type.
538 /// @param t the qualified type to consider.
539 ///
540 /// @return the first underlying type that is not a qualified type, or
541 /// NULL if t is NULL.
542 type_base_sptr
get_leaf_type(qualified_type_def_sptr t)543 get_leaf_type(qualified_type_def_sptr t)
544 {
545 if (!t)
546 return type_base_sptr();
547
548 type_base_sptr ut = t->get_underlying_type();
549 qualified_type_def_sptr qut = dynamic_pointer_cast<qualified_type_def>(ut);
550
551 if (!qut)
552 return ut;
553 return get_leaf_type(qut);
554 }
555
556 /// Tests if a given diff node is to represent the changes between two
557 /// gobal decls.
558 ///
559 /// @param d the diff node to consider.
560 ///
561 /// @return true iff @p d represents the changes between two global
562 /// decls.
563 bool
is_diff_of_global_decls(const diff * d)564 is_diff_of_global_decls(const diff* d)
565 {
566 ABG_ASSERT(d != 0);
567
568 if (d == 0)
569 return false;
570
571 type_or_decl_base_sptr first = d->first_subject();
572 ABG_ASSERT(first);
573
574 type_or_decl_base_sptr second = d->first_subject();
575 ABG_ASSERT(second);
576
577 if (decl_base_sptr decl = is_decl(first))
578 if (is_at_global_scope(decl))
579 if ((decl = is_decl(second)))
580 if (is_at_global_scope(decl))
581 return true;
582
583 return false;
584 }
585
586 // -----------------------------------------
587 // </private functions re-usable elsewhere>
588 // -----------------------------------------
589
590 /// The overloaded or operator for @ref visiting_kind.
591 visiting_kind
operator |(visiting_kind l,visiting_kind r)592 operator|(visiting_kind l, visiting_kind r)
593 {return static_cast<visiting_kind>(static_cast<unsigned>(l)
594 | static_cast<unsigned>(r));}
595
596 /// The overloaded and operator for @ref visiting_kind.
597 visiting_kind
operator &(visiting_kind l,visiting_kind r)598 operator&(visiting_kind l, visiting_kind r)
599 {
600 return static_cast<visiting_kind>(static_cast<unsigned>(l)
601 & static_cast<unsigned>(r));
602 }
603
604 /// The overloaded 'bit inversion' operator for @ref visiting_kind.
605 visiting_kind
operator ~(visiting_kind l)606 operator~(visiting_kind l)
607 {return static_cast<visiting_kind>(~static_cast<unsigned>(l));}
608
609 /// Test if a diff node is about differences between types.
610 ///
611 /// @param diff the diff node to test.
612 ///
613 /// @return a pointer to the actual type_diff_base* that @p diff
614 /// extends, iff it is about differences between types.
615 const type_diff_base*
is_type_diff(const diff * diff)616 is_type_diff(const diff* diff)
617 {return dynamic_cast<const type_diff_base*>(diff);}
618
619 /// Test if a diff node is about differences between declarations.
620 ///
621 /// @param diff the diff node to test.
622 ///
623 /// @return a pointer to the actual decl_diff_base @p diff extends,
624 /// iff it is about differences between declarations.
625 const decl_diff_base*
is_decl_diff(const diff * diff)626 is_decl_diff(const diff* diff)
627 {return dynamic_cast<const decl_diff_base*>(diff);}
628
629 /// Test if a diff node is a @ref class_diff node.
630 ///
631 /// @param diff the diff node to consider.
632 ///
633 /// @return a non-nil pointer to a @ref class_diff iff @p diff is a
634 /// @ref class_diff node.
635 const class_diff*
is_class_diff(const diff * diff)636 is_class_diff(const diff* diff)
637 {return dynamic_cast<const class_diff*>(diff);}
638
639 /// Test if a diff node is a @ref enum_diff node.
640 ///
641 /// @param diff the diff node to consider.
642 ///
643 /// @return a non-nil pointer to ad @ref enum_diff node iff @p diff is
644 /// a @ref enum_diff node.
645 const enum_diff*
is_enum_diff(const diff * diff)646 is_enum_diff(const diff *diff)
647 {return dynamic_cast<const enum_diff*>(diff);}
648
649 /// Test if a diff node is a @ref union_diff node.
650 ///
651 /// @param diff the diff node to consider.
652 ///
653 /// @return a non-nil pointer to a @ref union_diff iff @p diff is a
654 /// @ref union_diff node.
655 const union_diff*
is_union_diff(const diff * diff)656 is_union_diff(const diff* diff)
657 {return dynamic_cast<const union_diff*>(diff);}
658
659 /// Test if a diff node is a @ref class_or_union_diff node.
660 ///
661 /// @param d the diff node to consider.
662 ///
663 /// @return a non-nil pointer to the @ref class_or_union_diff denoted
664 /// by @p d iff @p d is a @ref class_or_union_diff.
665 const class_or_union_diff*
is_class_or_union_diff(const diff * d)666 is_class_or_union_diff(const diff* d)
667 {return dynamic_cast<const class_or_union_diff*>(d);}
668
669 /// Test if a diff node is a @ref class_or_union_diff between two
670 /// anonymous classes or unions.
671 ///
672 /// @param d the diff node to consider.
673 ///
674 /// @return a non-nil pointer to the @ref class_or_union_diff iff @p
675 /// denoted by @p d iff @p is pointer to an anonymous class or union
676 /// diff.
677 const class_or_union_diff*
is_anonymous_class_or_union_diff(const diff * d)678 is_anonymous_class_or_union_diff(const diff* d)
679 {
680 if (const class_or_union_diff *dif = is_class_or_union_diff(d))
681 if (dif->first_class_or_union()->get_is_anonymous())
682 return dif;
683 return 0;
684 }
685
686 /// Test if a diff node is a @ref typedef_diff node.
687 ///
688 /// @param diff the diff node to consider.
689 ///
690 /// @return a non-nil pointer to a @ref typedef_diff iff @p diff is a
691 /// @ref typedef_diff node.
692 const typedef_diff*
is_typedef_diff(const diff * diff)693 is_typedef_diff(const diff *diff)
694 {return dynamic_cast<const typedef_diff*>(diff);}
695
696 /// Test if a diff node is a @ref array_diff node.
697 ///
698 /// @param diff the diff node to consider.
699 ///
700 /// @return a non-nil pointer to a @ref array_diff iff @p diff is a
701 /// @ref array_diff node.
702 const array_diff*
is_array_diff(const diff * diff)703 is_array_diff(const diff* diff)
704 {return dynamic_cast<const array_diff*>(diff);}
705
706 /// Test if a diff node is a @ref function_type_diff node.
707 ///
708 /// @param diff the diff node to consider.
709 ///
710 /// @return a non-nil pointer to a @ref function_type_diff iff @p diff is a
711 /// @ref function_type_diff node.
712 const function_type_diff*
is_function_type_diff(const diff * diff)713 is_function_type_diff(const diff* diff)
714 {return dynamic_cast<const function_type_diff*>(diff);}
715
716 /// Test if a given diff node carries a function type change with
717 /// local changes.
718 ///
719 /// @param diff the diff node to consider.
720 ///
721 /// @return a non-nil pointer to a @ref function_type_diff iff @p diff
722 /// is a function_type_diff node that carries a local change.
723 const function_type_diff*
is_function_type_diff_with_local_changes(const diff * diff)724 is_function_type_diff_with_local_changes(const diff* diff)
725 {
726 if (const function_type_diff* d = is_function_type_diff(diff))
727 if (d->has_local_changes())
728 return d;
729
730 return 0;
731 }
732
733 /// Test if a diff node is about differences between variables.
734 ///
735 /// @param diff the diff node to test.
736 ///
737 /// @return a pointer to the actual var_diff that @p diff is a type
738 /// of, iff it is about differences between variables.
739 const var_diff*
is_var_diff(const diff * diff)740 is_var_diff(const diff* diff)
741 {
742 const var_diff* d = dynamic_cast<const var_diff*>(diff);
743 if (d)
744 ABG_ASSERT(is_decl_diff(diff));
745 return d;
746 }
747
748 /// Test if a diff node is about differences between functions.
749 ///
750 /// @param diff the diff node to test.
751 ///
752 /// @return a pointer to the actual var_diff that @p diff is a type
753 /// of, iff it is about differences between variables.
754 const function_decl_diff*
is_function_decl_diff(const diff * diff)755 is_function_decl_diff(const diff* diff)
756 {
757 const function_decl_diff *d = dynamic_cast<const function_decl_diff*>(diff);
758 if (d)
759 ABG_ASSERT(is_decl_diff(diff));
760 return d;
761 }
762
763 /// Test if a diff node is about differences between two pointers.
764 ///
765 /// @param diff the diff node to consider.
766 ///
767 /// @return the @p diff converted into an instance of @ref
768 /// pointer_diff iff @p diff is about differences between two
769 /// pointers.
770 const pointer_diff*
is_pointer_diff(const diff * diff)771 is_pointer_diff(const diff* diff)
772 {return dynamic_cast<const pointer_diff*>(diff);}
773
774 /// Test if a diff node is about differences between two references.
775 ///
776 /// @param diff the diff node to consider.
777 ///
778 /// @return the @p diff converted into an instance of @ref
779 /// reference_diff iff @p diff is about differences between two
780 /// references.
781 const reference_diff*
is_reference_diff(const diff * diff)782 is_reference_diff(const diff* diff)
783 {return dynamic_cast<const reference_diff*>(diff);}
784
785 /// Test if a diff node is about differences between two qualified
786 /// types.
787 ///
788 /// @param diff the diff node to consider.
789 ///
790 /// @return @p diff converted into an instance of @ref
791 /// qualified_type_diff iff @p diff is about differences between two
792 /// qualified types.
793 const qualified_type_diff*
is_qualified_type_diff(const diff * diff)794 is_qualified_type_diff(const diff* diff)
795 {return dynamic_cast<const qualified_type_diff*>(diff);}
796
797 /// Test if a diff node is a reference or pointer diff node to a
798 /// change that is neither basic type change nor distinct type change.
799 ///
800 /// Note that this function also works on diffs of typedefs of
801 /// reference or pointer.
802 ///
803 /// @param diff the diff node to consider.
804 ///
805 /// @return true iff @p diff is a eference or pointer diff node to a
806 /// change that is neither basic type change nor distinct type change.
807 bool
is_reference_or_ptr_diff_to_non_basic_nor_distinct_types(const diff * diff)808 is_reference_or_ptr_diff_to_non_basic_nor_distinct_types(const diff* diff)
809 {
810 diff = peel_typedef_diff(diff);
811 if (const reference_diff* d = is_reference_diff(diff))
812 {
813 diff = peel_reference_diff(d);
814 if (is_diff_of_basic_type(diff) || is_distinct_diff(diff))
815 return false;
816 return true;
817 }
818 else if (const pointer_diff *d = is_pointer_diff(diff))
819 {
820 diff = peel_pointer_diff(d);
821 if (is_diff_of_basic_type(diff) || is_distinct_diff(diff))
822 return false;
823 return true;
824 }
825
826 return false;
827 }
828
829 /// Test if a diff node is about differences between two function
830 /// parameters.
831 ///
832 /// @param diff the diff node to consider.
833 ///
834 /// @return the @p diff converted into an instance of @ref
835 /// reference_diff iff @p diff is about differences between two
836 /// function parameters.
837 const fn_parm_diff*
is_fn_parm_diff(const diff * diff)838 is_fn_parm_diff(const diff* diff)
839 {return dynamic_cast<const fn_parm_diff*>(diff);}
840
841 /// Test if a diff node is about differences between two base class
842 /// specifiers.
843 ///
844 /// @param diff the diff node to consider.
845 ///
846 /// @return the @p diff converted into an instance of @ref base_diff
847 /// iff @p diff is about differences between two base class
848 /// specifiers.
849 const base_diff*
is_base_diff(const diff * diff)850 is_base_diff(const diff* diff)
851 {return dynamic_cast<const base_diff*>(diff);}
852
853 /// Test if a diff node is about differences between two diff nodes of
854 /// different kinds.
855 ///
856 /// @param diff the diff node to consider.
857 ///
858 /// @return the @p diff converted into an instance of @ref
859 /// distintc_diff iff @p diff is about differences between two diff
860 /// nodes of different kinds.
861 const distinct_diff*
is_distinct_diff(const diff * diff)862 is_distinct_diff(const diff *diff)
863 {return dynamic_cast<const distinct_diff*>(diff);}
864
865 /// Test if a diff node is a @ref corpus_diff node.
866 ///
867 /// @param diff the diff node to consider.
868 ///
869 /// @return a non-nil pointer to a @ref corpus_diff iff @p diff is a
870 /// @ref corpus_diff node.
871 const corpus_diff*
is_corpus_diff(const diff * diff)872 is_corpus_diff(const diff* diff)
873 {return dynamic_cast<const corpus_diff*>(diff);}
874
875 /// Test if a diff node is a child node of a function parameter diff node.
876 ///
877 /// @param diff the diff node to test.
878 ///
879 /// @return true iff @p diff is a child node of a function parameter
880 /// diff node.
881 bool
is_child_node_of_function_parm_diff(const diff * diff)882 is_child_node_of_function_parm_diff(const diff* diff)
883 {return diff && is_fn_parm_diff(diff->parent_node());}
884
885 /// Test if a diff node is a child node of a base diff node.
886 ///
887 /// @param diff the diff node to test.
888 ///
889 /// @return true iff @p diff is a child node of a base diff node.
890 bool
is_child_node_of_base_diff(const diff * diff)891 is_child_node_of_base_diff(const diff* diff)
892 {return diff && is_base_diff(diff->parent_node());}
893
894 /// The default traverse function.
895 ///
896 /// @return true.
897 bool
traverse(diff_node_visitor &)898 diff_traversable_base::traverse(diff_node_visitor&)
899 {return true;}
900
diff_context()901 diff_context::diff_context()
902 : priv_(new diff_context::priv)
903 {
904 // Setup all the diff output filters we have.
905 filtering::filter_base_sptr f;
906
907 f.reset(new filtering::harmless_harmful_filter);
908 add_diff_filter(f);
909
910 // f.reset(new filtering::harmless_filter);
911 // add_diff_filter(f);
912
913 // f.reset(new filtering::harmful_filter);
914 // add_diff_filter(f);
915 }
916
917 diff_context::~diff_context() = default;
918
919 /// Set the corpus diff relevant to this context.
920 ///
921 /// @param d the corpus_diff we are interested in.
922 void
set_corpus_diff(const corpus_diff_sptr & d)923 diff_context::set_corpus_diff(const corpus_diff_sptr& d)
924 {priv_->corpus_diff_ = d;}
925
926 /// Get the corpus diff for the current context.
927 ///
928 /// @return the corpus diff of this context.
929 const corpus_diff_sptr&
get_corpus_diff() const930 diff_context::get_corpus_diff() const
931 {return priv_->corpus_diff_;}
932
933 /// Getter for the first corpus of the corpus diff of the current context.
934 ///
935 /// @return the first corpus of the corpus diff of the current
936 /// context, if no corpus diff is associated to the context.
937 corpus_sptr
get_first_corpus() const938 diff_context::get_first_corpus() const
939 {
940 if (priv_->corpus_diff_)
941 return priv_->corpus_diff_->first_corpus();
942 return corpus_sptr();
943 }
944
945 /// Getter for the second corpus of the corpus diff of the current
946 /// context.
947 ///
948 /// @return the second corpus of the corpus diff of the current
949 /// context, if no corpus diff is associated to the context.
950 corpus_sptr
get_second_corpus() const951 diff_context::get_second_corpus() const
952 {
953 if (priv_->corpus_diff_)
954 return priv_->corpus_diff_->second_corpus();
955 return corpus_sptr();
956 }
957
958 /// Getter of the reporter to be used in this context.
959 ///
960 /// @return the reporter to be used in this context.
961 reporter_base_sptr
get_reporter() const962 diff_context::get_reporter() const
963 {
964 if (!priv_->reporter_)
965 {
966 if (show_leaf_changes_only())
967 priv_->reporter_.reset(new leaf_reporter);
968 else
969 priv_->reporter_.reset(new default_reporter);
970 }
971 ABG_ASSERT(priv_->reporter_);
972 return priv_->reporter_;
973 }
974
975 /// Setter of the reporter to be used in this context.
976 ///
977 /// @param r the reporter to be used in this context.
978 void
set_reporter(reporter_base_sptr & r)979 diff_context::set_reporter(reporter_base_sptr& r)
980 {priv_->reporter_ = r;}
981
982 /// Tests if the current diff context already has a diff for two decls.
983 ///
984 /// @param first the first decl to consider.
985 ///
986 /// @param second the second decl to consider.
987 ///
988 /// @return a pointer to the diff for @p first @p second if found,
989 /// null otherwise.
990 diff_sptr
has_diff_for(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second) const991 diff_context::has_diff_for(const type_or_decl_base_sptr first,
992 const type_or_decl_base_sptr second) const
993 {
994 types_or_decls_diff_map_type::const_iterator i =
995 priv_->types_or_decls_diff_map.find(std::make_pair(first, second));
996 if (i != priv_->types_or_decls_diff_map.end())
997 return i->second;
998 return diff_sptr();
999 }
1000
1001 /// Tests if the current diff context already has a diff for two types.
1002 ///
1003 /// @param first the first type to consider.
1004 ///
1005 /// @param second the second type to consider.
1006 ///
1007 /// @return a pointer to the diff for @p first @p second if found,
1008 /// null otherwise.
1009 diff_sptr
has_diff_for_types(const type_base_sptr first,const type_base_sptr second) const1010 diff_context::has_diff_for_types(const type_base_sptr first,
1011 const type_base_sptr second) const
1012 {return has_diff_for(first, second);}
1013
1014 /// Tests if the current diff context already has a given diff.
1015 ///
1016 ///@param d the diff to consider.
1017 ///
1018 /// @return a pointer to the diff found for @p d
1019 const diff*
has_diff_for(const diff * d) const1020 diff_context::has_diff_for(const diff* d) const
1021 {return has_diff_for(d->first_subject(), d->second_subject()).get();}
1022
1023 /// Tests if the current diff context already has a given diff.
1024 ///
1025 ///@param d the diff to consider.
1026 ///
1027 /// @return a pointer to the diff found for @p d
1028 diff_sptr
has_diff_for(const diff_sptr d) const1029 diff_context::has_diff_for(const diff_sptr d) const
1030 {return has_diff_for(d->first_subject(), d->second_subject());}
1031
1032 /// Getter for the bitmap that represents the set of categories that
1033 /// the user wants to see reported.
1034 ///
1035 /// @return a bitmap that represents the set of categories that the
1036 /// user wants to see reported.
1037 diff_category
get_allowed_category() const1038 diff_context::get_allowed_category() const
1039 {return priv_->allowed_category_;}
1040
1041 /// Setter for the bitmap that represents the set of categories that
1042 /// the user wants to see reported.
1043 ///
1044 /// @param c a bitmap that represents the set of categories that the
1045 /// user wants to see represented.
1046 void
set_allowed_category(diff_category c)1047 diff_context::set_allowed_category(diff_category c)
1048 {priv_->allowed_category_ = c;}
1049
1050 /// Setter for the bitmap that represents the set of categories that
1051 /// the user wants to see reported
1052 ///
1053 /// This function perform a bitwise or between the new set of
1054 /// categories and the current ones, and then sets the current
1055 /// categories to the result of the or.
1056 ///
1057 /// @param c a bitmap that represents the set of categories that the
1058 /// user wants to see represented.
1059 void
switch_categories_on(diff_category c)1060 diff_context::switch_categories_on(diff_category c)
1061 {priv_->allowed_category_ = priv_->allowed_category_ | c;}
1062
1063 /// Setter for the bitmap that represents the set of categories that
1064 /// the user wants to see reported
1065 ///
1066 /// This function actually unsets bits from the current categories.
1067 ///
1068 /// @param c a bitmap that represents the set of categories to unset
1069 /// from the current categories.
1070 void
switch_categories_off(diff_category c)1071 diff_context::switch_categories_off(diff_category c)
1072 {priv_->allowed_category_ = priv_->allowed_category_ & ~c;}
1073
1074 /// Add a diff for two decls to the cache of the current diff_context.
1075 ///
1076 /// Doing this allows to later find the added diff from its two
1077 /// subject decls.
1078 ///
1079 /// @param first the first decl to consider.
1080 ///
1081 /// @param second the second decl to consider.
1082 ///
1083 /// @param the diff to add.
1084 void
add_diff(type_or_decl_base_sptr first,type_or_decl_base_sptr second,const diff_sptr d)1085 diff_context::add_diff(type_or_decl_base_sptr first,
1086 type_or_decl_base_sptr second,
1087 const diff_sptr d)
1088 {priv_->types_or_decls_diff_map[std::make_pair(first, second)] = d;}
1089
1090 /// Add a diff tree node to the cache of the current diff_context
1091 ///
1092 /// @param d the diff tree node to add.
1093 void
add_diff(const diff * d)1094 diff_context::add_diff(const diff* d)
1095 {
1096 if (d)
1097 {
1098 diff_sptr dif(const_cast<diff*>(d), noop_deleter());
1099 add_diff(d->first_subject(), d->second_subject(), dif);
1100 }
1101 }
1102
1103 /// Add a diff tree node to the cache of the current diff_context
1104 ///
1105 /// @param d the diff tree node to add.
1106 void
add_diff(const diff_sptr d)1107 diff_context::add_diff(const diff_sptr d)
1108 {
1109 if (d)
1110 add_diff(d->first_subject(), d->second_subject(), d);
1111 }
1112
1113 /// Getter for the @ref CanonicalDiff "canonical diff node" for the
1114 /// @ref diff represented by their two subjects.
1115 ///
1116 /// @param first the first subject of the diff.
1117 ///
1118 /// @param second the second subject of the diff.
1119 ///
1120 /// @return the canonical diff for the diff node represented by the
1121 /// two diff subjects @p first and @p second. If no canonical diff
1122 /// node was registered for these subjects, then a nil node is
1123 /// returned.
1124 diff_sptr
get_canonical_diff_for(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second) const1125 diff_context::get_canonical_diff_for(const type_or_decl_base_sptr first,
1126 const type_or_decl_base_sptr second) const
1127 {return has_diff_for(first, second);}
1128
1129 /// Getter for the @ref CanonicalDiff "canonical diff node" for the
1130 /// @ref diff represented by the two subjects of a given diff node.
1131 ///
1132 /// @param d the diff node to get the canonical node for.
1133 ///
1134 /// @return the canonical diff for the diff node represented by the
1135 /// two diff subjects of @p d. If no canonical diff node was
1136 /// registered for these subjects, then a nil node is returned.
1137 diff_sptr
get_canonical_diff_for(const diff_sptr d) const1138 diff_context::get_canonical_diff_for(const diff_sptr d) const
1139 {return has_diff_for(d);}
1140
1141 /// Setter for the @ref CanonicalDiff "canonical diff node" for the
1142 /// @ref diff represented by their two subjects.
1143 ///
1144 /// @param first the first subject of the diff.
1145 ///
1146 /// @param second the second subject of the diff.
1147 ///
1148 /// @param d the new canonical diff.
1149 void
set_canonical_diff_for(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,const diff_sptr d)1150 diff_context::set_canonical_diff_for(const type_or_decl_base_sptr first,
1151 const type_or_decl_base_sptr second,
1152 const diff_sptr d)
1153 {
1154 ABG_ASSERT(d);
1155 if (!has_diff_for(first, second))
1156 {
1157 add_diff(first, second, d);
1158 priv_->canonical_diffs.push_back(d);
1159 }
1160 }
1161
1162 /// If there is is a @ref CanonicalDiff "canonical diff node"
1163 /// registered for two diff subjects, return it. Otherwise, register
1164 /// a canonical diff node for these two diff subjects and return it.
1165 ///
1166 /// @param first the first subject of the diff.
1167 ///
1168 /// @param second the second subject of the diff.
1169 ///
1170 /// @param d the new canonical diff node.
1171 ///
1172 /// @return the canonical diff node.
1173 diff_sptr
set_or_get_canonical_diff_for(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,const diff_sptr canonical_diff)1174 diff_context::set_or_get_canonical_diff_for(const type_or_decl_base_sptr first,
1175 const type_or_decl_base_sptr second,
1176 const diff_sptr canonical_diff)
1177 {
1178 ABG_ASSERT(canonical_diff);
1179
1180 diff_sptr canonical = get_canonical_diff_for(first, second);
1181 if (!canonical)
1182 {
1183 canonical = canonical_diff;
1184 set_canonical_diff_for(first, second, canonical);
1185 }
1186 return canonical;
1187 }
1188
1189 /// Set the canonical diff node property of a given diff node
1190 /// appropriately.
1191 ///
1192 /// For a given diff node that has no canonical diff node, retrieve
1193 /// the canonical diff node (by looking at its diff subjects and at
1194 /// the current context) and set the canonical diff node property of
1195 /// the diff node to that canonical diff node. If no canonical diff
1196 /// node has been registered to the diff context for the subjects of
1197 /// the diff node then, register the canonical diff node as being the
1198 /// diff node itself; and set its canonical diff node property as
1199 /// such. Otherwise, if the diff node already has a canonical diff
1200 /// node, do nothing.
1201 ///
1202 /// @param diff the diff node to initialize the canonical diff node
1203 /// property for.
1204 void
initialize_canonical_diff(const diff_sptr diff)1205 diff_context::initialize_canonical_diff(const diff_sptr diff)
1206 {
1207 if (diff->get_canonical_diff() == 0)
1208 {
1209 diff_sptr canonical =
1210 set_or_get_canonical_diff_for(diff->first_subject(),
1211 diff->second_subject(),
1212 diff);
1213 diff->set_canonical_diff(canonical.get());
1214 }
1215 }
1216
1217 /// Add a diff node to the set of diff nodes that are kept alive for
1218 /// the life time of the current instance of diff_context.
1219 ///
1220 /// Note that diff added to the diff cache are kept alive as well, and
1221 /// don't need to be passed to this function to be kept alive.
1222 ///
1223 /// @param d the diff node to be kept alive during the life time of
1224 /// the current instance of @ref diff_context.
1225 void
keep_diff_alive(diff_sptr & d)1226 diff_context::keep_diff_alive(diff_sptr& d)
1227 {priv_->live_diffs_.insert(d);}
1228
1229 /// Test if a diff node has been traversed.
1230 ///
1231 /// @param d the diff node to consider.
1232 ///
1233 /// @return the first diff node against which @p d is redundant.
1234 diff*
diff_has_been_visited(const diff * d) const1235 diff_context::diff_has_been_visited(const diff* d) const
1236 {
1237 const diff* canonical = d->get_canonical_diff();
1238 ABG_ASSERT(canonical);
1239
1240 size_t ptr_value = reinterpret_cast<size_t>(canonical);
1241 pointer_map::iterator it = priv_->visited_diff_nodes_.find(ptr_value);
1242 if (it != priv_->visited_diff_nodes_.end())
1243 return reinterpret_cast<diff*>(it->second);
1244 else
1245 return 0;
1246 }
1247
1248 /// Test if a diff node has been traversed.
1249 ///
1250 /// @param d the diff node to consider.
1251 ///
1252 /// @return the first diff node against which @p d is redundant.
1253 diff_sptr
diff_has_been_visited(const diff_sptr d) const1254 diff_context::diff_has_been_visited(const diff_sptr d) const
1255 {
1256 diff_sptr diff(diff_has_been_visited(d.get()));
1257 return diff;
1258 }
1259
1260 /// Mark a diff node as traversed by a traversing algorithm.
1261 ///
1262 /// Actually, it's the @ref CanonicalDiff "canonical diff" of this
1263 /// node that is marked as traversed.
1264 ///
1265 /// Subsequent invocations of diff_has_been_visited() on the diff node
1266 /// will yield true.
1267 void
mark_diff_as_visited(const diff * d)1268 diff_context::mark_diff_as_visited(const diff* d)
1269 {
1270 if (diff_has_been_visited(d))
1271 return;
1272
1273 const diff* canonical = d->get_canonical_diff();
1274 ABG_ASSERT(canonical);
1275
1276 size_t canonical_ptr_value = reinterpret_cast<size_t>(canonical);
1277 size_t diff_ptr_value = reinterpret_cast<size_t>(d);
1278 priv_->visited_diff_nodes_[canonical_ptr_value] = diff_ptr_value;
1279 }
1280
1281 /// Unmark all the diff nodes that were marked as being traversed.
1282 void
forget_visited_diffs()1283 diff_context::forget_visited_diffs()
1284 {priv_->visited_diff_nodes_.clear();}
1285
1286 /// This sets a flag that, if it's true, then during the traversing of
1287 /// a diff nodes tree each node is visited at most once.
1288 ///
1289 /// @param f if true then during the traversing of a diff nodes tree
1290 /// each node is visited at most once.
1291 ///
1292 void
forbid_visiting_a_node_twice(bool f)1293 diff_context::forbid_visiting_a_node_twice(bool f)
1294 {priv_->forbid_visiting_a_node_twice_ = f;}
1295
1296 /// This function sets a flag os that if @ref
1297 /// forbid_visiting_a_node_twice() returns true, then each time the
1298 /// node visitor starts visiting a new interface, it resets the
1299 /// memory the systems has about already visited node.
1300 ///
1301 /// @param f the flag to set.
1302 void
forbid_visiting_a_node_twice_per_interface(bool f)1303 diff_context::forbid_visiting_a_node_twice_per_interface(bool f)
1304 {priv_->reset_visited_diffs_for_each_interface_ = f;}
1305
1306 /// Return a flag that, if true, then during the traversing of a diff
1307 /// nodes tree each node is visited at most once.
1308 ///
1309 /// @return the boolean flag.
1310 bool
visiting_a_node_twice_is_forbidden() const1311 diff_context::visiting_a_node_twice_is_forbidden() const
1312 {return priv_->forbid_visiting_a_node_twice_;}
1313
1314 /// Return a flag that, if true, then during the traversing of a diff
1315 /// nodes tree each node is visited at most once, while visiting the
1316 /// diff tree underneath a given interface (public function or
1317 /// variable). Each time a new interface is visited, the nodes
1318 /// visited while visiting previous interfaces can be visited again.
1319 ///
1320 /// @return the boolean flag.
1321 ///
1322 /// @return the boolean flag.
1323 bool
visiting_a_node_twice_is_forbidden_per_interface() const1324 diff_context::visiting_a_node_twice_is_forbidden_per_interface() const
1325 {
1326 return (priv_->forbid_visiting_a_node_twice_
1327 && priv_->reset_visited_diffs_for_each_interface_);
1328 }
1329
1330 /// Getter for the diff tree nodes filters to apply to diff sub-trees.
1331 ///
1332 /// @return the vector of tree filters to apply to diff sub-trees.
1333 const filtering::filters&
diff_filters() const1334 diff_context::diff_filters() const
1335 {return priv_->filters_;}
1336
1337 /// Setter for the diff filters to apply to a given diff sub-tree.
1338 ///
1339 /// @param f the new diff filter to add to the vector of diff filters
1340 /// to apply to diff sub-trees.
1341 void
add_diff_filter(filtering::filter_base_sptr f)1342 diff_context::add_diff_filter(filtering::filter_base_sptr f)
1343 {priv_->filters_.push_back(f);}
1344
1345 /// Apply the diff filters to a given diff sub-tree.
1346 ///
1347 /// If the current context is instructed to filter out some categories
1348 /// then this function walks the given sub-tree and categorizes its
1349 /// nodes by using the filters held by the context.
1350 ///
1351 /// @param diff the diff sub-tree to apply the filters to.
1352 void
maybe_apply_filters(diff_sptr diff)1353 diff_context::maybe_apply_filters(diff_sptr diff)
1354 {
1355 if (!diff)
1356 return;
1357
1358 if (get_allowed_category() == EVERYTHING_CATEGORY)
1359 return;
1360
1361 if (!diff->has_changes())
1362 return;
1363
1364 for (filtering::filters::const_iterator i = diff_filters().begin();
1365 i != diff_filters().end();
1366 ++i)
1367 {
1368 filtering::apply_filter(*i, diff);
1369 propagate_categories(diff);
1370 }
1371
1372 }
1373
1374 /// Apply the diff filters to the diff nodes of a @ref corpus_diff
1375 /// instance.
1376 ///
1377 /// If the current context is instructed to filter out some categories
1378 /// then this function walks the diff tree and categorizes its nodes
1379 /// by using the filters held by the context.
1380 ///
1381 /// @param diff the corpus diff to apply the filters to.
1382 void
maybe_apply_filters(corpus_diff_sptr diff)1383 diff_context::maybe_apply_filters(corpus_diff_sptr diff)
1384 {
1385
1386 if (!diff || !diff->has_changes())
1387 return;
1388
1389 for (filtering::filters::const_iterator i = diff_filters().begin();
1390 i != diff_filters().end();
1391 ++i)
1392 {
1393 filtering::apply_filter(**i, diff);
1394 propagate_categories(diff);
1395 }
1396 }
1397
1398 /// Getter for the vector of suppressions that specify which diff node
1399 /// reports should be dropped on the floor.
1400 ///
1401 /// @return the set of suppressions.
1402 suppressions_type&
suppressions() const1403 diff_context::suppressions() const
1404 {return priv_->suppressions_;}
1405
1406 /// Add a new suppression specification that specifies which diff node
1407 /// reports should be dropped on the floor.
1408 ///
1409 /// @param suppr the new suppression specification to add to the
1410 /// existing set of suppressions specifications of the diff context.
1411 void
add_suppression(const suppression_sptr suppr)1412 diff_context::add_suppression(const suppression_sptr suppr)
1413 {priv_->suppressions_.push_back(suppr);}
1414
1415 /// Add new suppression specifications that specify which diff node
1416 /// reports should be dropped on the floor.
1417 ///
1418 /// @param supprs the new suppression specifications to add to the
1419 /// existing set of suppression specifications of the diff context.
1420 void
add_suppressions(const suppressions_type & supprs)1421 diff_context::add_suppressions(const suppressions_type& supprs)
1422 {
1423 priv_->suppressions_.insert(priv_->suppressions_.end(),
1424 supprs.begin(), supprs.end());
1425 }
1426
1427 /// Set the flag that indicates if the diff using this context should
1428 /// show only leaf changes or not.
1429 ///
1430 /// @param f the new value of the flag that indicates if the diff
1431 /// using this context should show only leaf changes or not.
1432 void
show_leaf_changes_only(bool f)1433 diff_context::show_leaf_changes_only(bool f)
1434 {
1435 // This function can be called only if the reporter hasn't yet been
1436 // created. Once it's been created, we are supposed to live with
1437 // it.
1438 ABG_ASSERT(priv_->reporter_ == 0);
1439 priv_->leaf_changes_only_ = f;
1440 }
1441
1442 /// Get the flag that indicates if the diff using this context should
1443 /// show only leaf changes or not.
1444 ///
1445 /// @return the value of the flag that indicates if the diff using
1446 /// this context should show only leaf changes or not.
1447 bool
show_leaf_changes_only() const1448 diff_context::show_leaf_changes_only() const
1449 {return priv_->leaf_changes_only_;}
1450
1451 /// Get the flag that indicates if the diff reports using this context
1452 /// should show sizes and offsets in an hexadecimal base or not. If
1453 /// not, then they are to be shown in a decimal base.
1454 ///
1455 /// @return true iff sizes and offsets are to be shown in an
1456 /// hexadecimal base.
1457 bool
show_hex_values() const1458 diff_context::show_hex_values() const
1459 {return priv_->hex_values_;}
1460
1461 /// Set the flag that indicates if diff reports using this context
1462 /// should show sizes and offsets in an hexadecimal base or not. If
1463 /// not, then they are to be shown in a decimal base.
1464 ///
1465 /// @param f if true then sizes and offsets are to be shown in an
1466 /// hexadecimal base.
1467 void
show_hex_values(bool f)1468 diff_context::show_hex_values(bool f)
1469 {priv_->hex_values_ = f;}
1470
1471 /// Get the flag that indicates if diff reports using this context
1472 /// should show sizes and offsets in bits, rather than bytes.
1473 ///
1474 /// @return true iff sizes and offsets are to be shown in bits.
1475 /// Otherwise they are to be shown in bytes.
1476 bool
show_offsets_sizes_in_bits() const1477 diff_context::show_offsets_sizes_in_bits() const
1478 {return priv_->show_offsets_sizes_in_bits_;}
1479
1480 /// Set the flag that indicates if diff reports using this context
1481 /// should show sizes and offsets in bits, rather than bytes.
1482 ///
1483 /// @param f if true then sizes and offsets are to be shown in bits.
1484 /// Otherwise they are to be shown in bytes.
1485 void
show_offsets_sizes_in_bits(bool f)1486 diff_context::show_offsets_sizes_in_bits(bool f)
1487 {priv_->show_offsets_sizes_in_bits_ = f;}
1488
1489 /// Set a flag saying if offset changes should be reported in a
1490 /// relative way. That is, if the report should say how of many bits
1491 /// a class/struct data member did move.
1492 ///
1493 /// @param f the new boolean value of the flag.
1494 void
show_relative_offset_changes(bool f)1495 diff_context::show_relative_offset_changes(bool f)
1496 {priv_->show_relative_offset_changes_ = f;}
1497
1498 /// Get the flag saying if offset changes should be reported in a
1499 /// relative way. That is, if the report should say how of many bits
1500 /// a class/struct data member did move.
1501 ///
1502 /// @return the boolean value of the flag.
1503 bool
show_relative_offset_changes(void)1504 diff_context::show_relative_offset_changes(void)
1505 {return priv_->show_relative_offset_changes_;}
1506
1507 /// Set a flag saying if the comparison module should only show the
1508 /// diff stats.
1509 ///
1510 /// @param f the flag to set.
1511 void
show_stats_only(bool f)1512 diff_context::show_stats_only(bool f)
1513 {priv_->show_stats_only_ = f;}
1514
1515 /// Test if the comparison module should only show the diff stats.
1516 ///
1517 /// @return true if the comparison module should only show the diff
1518 /// stats, false otherwise.
1519 bool
show_stats_only() const1520 diff_context::show_stats_only() const
1521 {return priv_->show_stats_only_;}
1522
1523 /// Setter for the property that says if the comparison module should
1524 /// show the soname changes in its report.
1525 ///
1526 /// @param f the new value of the property.
1527 void
show_soname_change(bool f)1528 diff_context::show_soname_change(bool f)
1529 {priv_->show_soname_change_ = f;}
1530
1531 /// Getter for the property that says if the comparison module should
1532 /// show the soname changes in its report.
1533 ///
1534 /// @return the value of the property.
1535 bool
show_soname_change() const1536 diff_context::show_soname_change() const
1537 {return priv_->show_soname_change_;}
1538
1539 /// Setter for the property that says if the comparison module should
1540 /// show the architecture changes in its report.
1541 ///
1542 /// @param f the new value of the property.
1543 void
show_architecture_change(bool f)1544 diff_context::show_architecture_change(bool f)
1545 {priv_->show_architecture_change_ = f;}
1546
1547 /// Getter for the property that says if the comparison module should
1548 /// show the architecture changes in its report.
1549 ///
1550 /// @return the value of the property.
1551 bool
show_architecture_change() const1552 diff_context::show_architecture_change() const
1553 {return priv_->show_architecture_change_;}
1554
1555 /// Set a flag saying to show the deleted functions.
1556 ///
1557 /// @param f true to show deleted functions.
1558 void
show_deleted_fns(bool f)1559 diff_context::show_deleted_fns(bool f)
1560 {priv_->show_deleted_fns_ = f;}
1561
1562 /// @return true if we want to show the deleted functions, false
1563 /// otherwise.
1564 bool
show_deleted_fns() const1565 diff_context::show_deleted_fns() const
1566 {return priv_->show_deleted_fns_;}
1567
1568 /// Set a flag saying to show the changed functions.
1569 ///
1570 /// @param f true to show the changed functions.
1571 void
show_changed_fns(bool f)1572 diff_context::show_changed_fns(bool f)
1573 {priv_->show_changed_fns_ = f;}
1574
1575 /// @return true if we want to show the changed functions, false otherwise.
1576 bool
show_changed_fns() const1577 diff_context::show_changed_fns() const
1578 {return priv_->show_changed_fns_;}
1579
1580 /// Set a flag saying to show the added functions.
1581 ///
1582 /// @param f true to show the added functions.
1583 void
show_added_fns(bool f)1584 diff_context::show_added_fns(bool f)
1585 {priv_->show_added_fns_ = f;}
1586
1587 /// @return true if we want to show the added functions, false
1588 /// otherwise.
1589 bool
show_added_fns() const1590 diff_context::show_added_fns() const
1591 {return priv_->show_added_fns_;}
1592
1593 /// Set a flag saying to show the deleted variables.
1594 ///
1595 /// @param f true to show the deleted variables.
1596 void
show_deleted_vars(bool f)1597 diff_context::show_deleted_vars(bool f)
1598 {priv_->show_deleted_vars_ = f;}
1599
1600 /// @return true if we want to show the deleted variables, false
1601 /// otherwise.
1602 bool
show_deleted_vars() const1603 diff_context::show_deleted_vars() const
1604 {return priv_->show_deleted_vars_;}
1605
1606 /// Set a flag saying to show the changed variables.
1607 ///
1608 /// @param f true to show the changed variables.
1609 void
show_changed_vars(bool f)1610 diff_context::show_changed_vars(bool f)
1611 {priv_->show_changed_vars_ = f;}
1612
1613 /// @return true if we want to show the changed variables, false otherwise.
1614 bool
show_changed_vars() const1615 diff_context::show_changed_vars() const
1616 {return priv_->show_changed_vars_;}
1617
1618 /// Set a flag saying to show the added variables.
1619 ///
1620 /// @param f true to show the added variables.
1621 void
show_added_vars(bool f)1622 diff_context::show_added_vars(bool f)
1623 {priv_->show_added_vars_ = f;}
1624
1625 /// @return true if we want to show the added variables, false
1626 /// otherwise.
1627 bool
show_added_vars() const1628 diff_context::show_added_vars() const
1629 {return priv_->show_added_vars_;}
1630
1631 bool
show_linkage_names() const1632 diff_context::show_linkage_names() const
1633 {return priv_->show_linkage_names_;}
1634
1635 void
show_linkage_names(bool f)1636 diff_context::show_linkage_names(bool f)
1637 {priv_->show_linkage_names_= f;}
1638
1639 /// Set a flag saying to show location information.
1640 ///
1641 /// @param f true to show location information.
1642 void
show_locs(bool f)1643 diff_context::show_locs(bool f)
1644 {priv_->show_locs_= f;}
1645
1646 /// @return true if we want to show location information, false
1647 /// otherwise.
1648 bool
show_locs() const1649 diff_context::show_locs() const
1650 {return priv_->show_locs_;}
1651
1652 /// A getter for the flag that says if we should report about
1653 /// functions or variables diff nodes that have *exclusively*
1654 /// redundant diff tree children nodes.
1655 ///
1656 /// @return the flag.
1657 bool
show_redundant_changes() const1658 diff_context::show_redundant_changes() const
1659 {return priv_->show_redundant_changes_;}
1660
1661 /// A setter for the flag that says if we should report about
1662 /// functions or variables diff nodes that have *exclusively*
1663 /// redundant diff tree children nodes.
1664 ///
1665 /// @param f the flag to set.
1666 void
show_redundant_changes(bool f)1667 diff_context::show_redundant_changes(bool f)
1668 {priv_->show_redundant_changes_ = f;}
1669
1670 /// A getter for the flag that says if we should flag indirect class
1671 /// and union changes in leaf-changes-only mode.
1672 ///
1673 /// @return the flag.
1674 bool
flag_indirect_changes() const1675 diff_context::flag_indirect_changes() const
1676 {return priv_->flag_indirect_changes_;}
1677
1678 /// A setter for the flag that says if we should flag indirect class
1679 /// and union changes in leaf-changes-only mode.
1680 ///
1681 /// @param f the flag to set.
1682 void
flag_indirect_changes(bool f)1683 diff_context::flag_indirect_changes(bool f)
1684 {priv_->flag_indirect_changes_ = f;}
1685
1686 /// Getter for the flag that indicates if symbols not referenced by
1687 /// any debug info are to be compared and reported about.
1688 ///
1689 /// @return the boolean flag.
1690 bool
show_symbols_unreferenced_by_debug_info() const1691 diff_context::show_symbols_unreferenced_by_debug_info() const
1692 {return priv_->show_syms_unreferenced_by_di_;}
1693
1694 /// Setter for the flag that indicates if symbols not referenced by
1695 /// any debug info are to be compared and reported about.
1696 ///
1697 /// @param f the new flag to set.
1698 void
show_symbols_unreferenced_by_debug_info(bool f)1699 diff_context::show_symbols_unreferenced_by_debug_info(bool f)
1700 {priv_->show_syms_unreferenced_by_di_ = f;}
1701
1702 /// Getter for the flag that indicates if symbols not referenced by
1703 /// any debug info and that got added are to be reported about.
1704 ///
1705 /// @return true iff symbols not referenced by any debug info and that
1706 /// got added are to be reported about.
1707 bool
show_added_symbols_unreferenced_by_debug_info() const1708 diff_context::show_added_symbols_unreferenced_by_debug_info() const
1709 {return priv_->show_added_syms_unreferenced_by_di_;}
1710
1711 /// Setter for the flag that indicates if symbols not referenced by
1712 /// any debug info and that got added are to be reported about.
1713 ///
1714 /// @param f the new flag that says if symbols not referenced by any
1715 /// debug info and that got added are to be reported about.
1716 void
show_added_symbols_unreferenced_by_debug_info(bool f)1717 diff_context::show_added_symbols_unreferenced_by_debug_info(bool f)
1718 {priv_->show_added_syms_unreferenced_by_di_ = f;}
1719
1720 /// Setter for the flag that indicates if changes on types unreachable
1721 /// from global functions and variables are to be reported.
1722 ///
1723 /// @param f if true, then changes on types unreachable from global
1724 /// functions and variables are to be reported.
1725 void
show_unreachable_types(bool f)1726 diff_context::show_unreachable_types(bool f)
1727 {priv_->show_unreachable_types_ = f;}
1728
1729 /// Getter for the flag that indicates if changes on types unreachable
1730 /// from global functions and variables are to be reported.
1731 ///
1732 /// @return true iff changes on types unreachable from global
1733 /// functions and variables are to be reported.
1734 bool
show_unreachable_types()1735 diff_context::show_unreachable_types()
1736 {return priv_->show_unreachable_types_;}
1737
1738 /// Getter of the flag that indicates if the leaf reporter should
1739 /// display a summary of the interfaces impacted by a given leaf
1740 /// change or not.
1741 ///
1742 /// @return the flag that indicates if the leaf reporter should
1743 /// display a summary of the interfaces impacted by a given leaf
1744 /// change or not.
1745 bool
show_impacted_interfaces() const1746 diff_context::show_impacted_interfaces() const
1747 {return priv_->show_impacted_interfaces_;}
1748
1749 /// Setter of the flag that indicates if the leaf reporter should
1750 /// display a summary of the interfaces impacted by a given leaf
1751 /// change or not.
1752 ///
1753 /// @param f the new value of the flag that indicates if the leaf
1754 /// reporter should display a summary of the interfaces impacted by a
1755 /// given leaf change or not.
1756 void
show_impacted_interfaces(bool f)1757 diff_context::show_impacted_interfaces(bool f)
1758 {priv_->show_impacted_interfaces_ = f;}
1759
1760 /// Setter for the default output stream used by code of the
1761 /// comparison engine. By default the default output stream is a NULL
1762 /// pointer.
1763 ///
1764 /// @param o a pointer to the default output stream.
1765 void
default_output_stream(ostream * o)1766 diff_context::default_output_stream(ostream* o)
1767 {priv_->default_output_stream_ = o;}
1768
1769 /// Getter for the default output stream used by code of the
1770 /// comparison engine. By default the default output stream is a NULL
1771 /// pointer.
1772 ///
1773 /// @return a pointer to the default output stream.
1774 ostream*
default_output_stream()1775 diff_context::default_output_stream()
1776 {return priv_->default_output_stream_;}
1777
1778 /// Setter for the errror output stream used by code of the comparison
1779 /// engine. By default the error output stream is a NULL pointer.
1780 ///
1781 /// @param o a pointer to the error output stream.
1782 void
error_output_stream(ostream * o)1783 diff_context::error_output_stream(ostream* o)
1784 {priv_->error_output_stream_ = o;}
1785
1786 /// Getter for the errror output stream used by code of the comparison
1787 /// engine. By default the error output stream is a NULL pointer.
1788 ///
1789 /// @return a pointer to the error output stream.
1790 ostream*
error_output_stream() const1791 diff_context::error_output_stream() const
1792 {return priv_->error_output_stream_;}
1793
1794 /// Test if the comparison engine should dump the diff tree for the
1795 /// changed functions and variables it has.
1796 ///
1797 /// @return true if after the comparison, the engine should dump the
1798 /// diff tree for the changed functions and variables it has.
1799 bool
dump_diff_tree() const1800 diff_context::dump_diff_tree() const
1801 {return priv_->dump_diff_tree_;}
1802
1803 /// Set if the comparison engine should dump the diff tree for the
1804 /// changed functions and variables it has.
1805 ///
1806 /// @param f true if after the comparison, the engine should dump the
1807 /// diff tree for the changed functions and variables it has.
1808 void
dump_diff_tree(bool f)1809 diff_context::dump_diff_tree(bool f)
1810 {priv_->dump_diff_tree_ = f;}
1811
1812 /// Emit a textual representation of a diff tree to the error output
1813 /// stream of the current context, for debugging purposes.
1814 ///
1815 /// @param d the diff tree to serialize to the error output associated
1816 /// to the current instance of @ref diff_context.
1817 void
do_dump_diff_tree(const diff_sptr d) const1818 diff_context::do_dump_diff_tree(const diff_sptr d) const
1819 {
1820 if (error_output_stream())
1821 print_diff_tree(d, *error_output_stream());
1822 }
1823
1824 /// Emit a textual representation of a @ref corpus_diff tree to the error
1825 /// output stream of the current context, for debugging purposes.
1826 ///
1827 /// @param d the @ref corpus_diff tree to serialize to the error
1828 /// output associated to the current instance of @ref diff_context.
1829 void
do_dump_diff_tree(const corpus_diff_sptr d) const1830 diff_context::do_dump_diff_tree(const corpus_diff_sptr d) const
1831 {
1832 if (error_output_stream())
1833 print_diff_tree(d, *error_output_stream());
1834 }
1835 // </diff_context stuff>
1836
1837 // <diff stuff>
1838
1839 /// Constructor for the @ref diff type.
1840 ///
1841 /// This constructs a diff between two subjects that are actually
1842 /// declarations; the first and the second one.
1843 ///
1844 /// @param first_subject the first decl (subject) of the diff.
1845 ///
1846 /// @param second_subject the second decl (subject) of the diff.
diff(type_or_decl_base_sptr first_subject,type_or_decl_base_sptr second_subject)1847 diff::diff(type_or_decl_base_sptr first_subject,
1848 type_or_decl_base_sptr second_subject)
1849 : priv_(new priv(first_subject, second_subject,
1850 diff_context_sptr(),
1851 NO_CHANGE_CATEGORY,
1852 /*reported_once=*/false,
1853 /*currently_reporting=*/false))
1854 {}
1855
1856 /// Constructor for the @ref diff type.
1857 ///
1858 /// This constructs a diff between two subjects that are actually
1859 /// declarations; the first and the second one.
1860 ///
1861 /// @param first_subject the first decl (subject) of the diff.
1862 ///
1863 /// @param second_subject the second decl (subject) of the diff.
1864 ///
1865 /// @param ctxt the context of the diff. Note that this context
1866 /// object must stay alive during the entire life time of the current
1867 /// instance of @ref diff. Otherwise, memory corruption issues occur.
diff(type_or_decl_base_sptr first_subject,type_or_decl_base_sptr second_subject,diff_context_sptr ctxt)1868 diff::diff(type_or_decl_base_sptr first_subject,
1869 type_or_decl_base_sptr second_subject,
1870 diff_context_sptr ctxt)
1871 : priv_(new priv(first_subject, second_subject,
1872 ctxt, NO_CHANGE_CATEGORY,
1873 /*reported_once=*/false,
1874 /*currently_reporting=*/false))
1875 {}
1876
1877 /// Flag a given diff node as being traversed.
1878 ///
1879 /// For certain diff nodes like @ref class_diff, it's important to
1880 /// avoid traversing the node again while it's already being
1881 /// traversed; otherwise this leads to infinite loops. So the
1882 /// diff::begin_traversing() and diff::end_traversing() methods flag a
1883 /// given node as being traversed (or not), so that
1884 /// diff::is_traversing() can tell if the node is being traversed.
1885 ///
1886 /// Note that traversing a node means visiting it *and* visiting its
1887 /// children nodes.
1888 ///
1889 /// The canonical node is marked as being traversed too.
1890 ///
1891 /// These functions are called by the traversing code.
1892 void
begin_traversing()1893 diff::begin_traversing()
1894 {
1895 ABG_ASSERT(!is_traversing());
1896 if (priv_->canonical_diff_)
1897 priv_->canonical_diff_->priv_->traversing_ = true;
1898 priv_->traversing_ = true;
1899 }
1900
1901 /// Tell if a given node is being traversed or not.
1902 ///
1903 /// Note that traversing a node means visiting it *and* visiting its
1904 /// children nodes.
1905 ///
1906 /// It's the canonical node which is looked at, actually.
1907 ///
1908 /// Please read the comments for the diff::begin_traversing() for mode
1909 /// context.
1910 ///
1911 /// @return true if the current instance of @diff is being traversed.
1912 bool
is_traversing() const1913 diff::is_traversing() const
1914 {
1915 if (priv_->canonical_diff_)
1916 return priv_->canonical_diff_->priv_->traversing_;
1917 return priv_->traversing_;
1918 }
1919
1920 /// Flag a given diff node as not being traversed anymore.
1921 ///
1922 /// Note that traversing a node means visiting it *and* visiting its
1923 /// children nodes.
1924 ///
1925 /// Please read the comments of the function diff::begin_traversing()
1926 /// for mode context.
1927 void
end_traversing()1928 diff::end_traversing()
1929 {
1930 ABG_ASSERT(is_traversing());
1931 if (priv_->canonical_diff_)
1932 priv_->canonical_diff_->priv_->traversing_ = false;
1933 priv_->traversing_ = false;
1934 }
1935
1936 /// Finish the building of a given kind of a diff tree node.
1937 ///
1938 /// For instance, certain kinds of diff tree node have specific
1939 /// children nodes that are populated after the constructor of the
1940 /// diff tree node has been called. In that case, calling overloads
1941 /// of this method ensures that these children nodes are properly
1942 /// gathered and setup.
1943 void
finish_diff_type()1944 diff::finish_diff_type()
1945 {
1946 }
1947
1948 /// Getter of the first subject of the diff.
1949 ///
1950 /// @return the first subject of the diff.
1951 type_or_decl_base_sptr
first_subject() const1952 diff::first_subject() const
1953 {return dynamic_pointer_cast<type_or_decl_base>(priv_->first_subject_);}
1954
1955 /// Getter of the second subject of the diff.
1956 ///
1957 /// @return the second subject of the diff.
1958 type_or_decl_base_sptr
second_subject() const1959 diff::second_subject() const
1960 {return dynamic_pointer_cast<type_or_decl_base>(priv_->second_subject_);}
1961
1962 /// Getter for the children nodes of the current @ref diff node.
1963 ///
1964 /// @return a vector of the children nodes.
1965 const vector<diff*>&
children_nodes() const1966 diff::children_nodes() const
1967 {return priv_->children_;}
1968
1969 /// Getter for the parent node of the current @ref diff node.
1970 ///
1971 /// @return the parent node of the current @ref diff node.
1972 const diff*
parent_node() const1973 diff::parent_node() const
1974 {return priv_->parent_;}
1975
1976 /// Getter for the canonical diff of the current instance of @ref
1977 /// diff.
1978 ///
1979 /// Note that the canonical diff node for the current instanc eof diff
1980 /// node must have been set by invoking
1981 /// class_diff::initialize_canonical_diff() on the current instance of
1982 /// diff node.
1983 ///
1984 /// @return the canonical diff node or null if none was set.
1985 diff*
get_canonical_diff() const1986 diff::get_canonical_diff() const
1987 {return priv_->canonical_diff_;}
1988
1989 /// Setter for the canonical diff of the current instance of @ref
1990 /// diff.
1991 ///
1992 /// @param d the new canonical node to set.
1993 void
set_canonical_diff(diff * d)1994 diff::set_canonical_diff(diff * d)
1995 {priv_->canonical_diff_ = d;}
1996
1997 /// Add a new child node to the vector of children nodes for the
1998 /// current @ref diff node.
1999 ///
2000 /// @param d the new child node to add to the children nodes.
2001 void
append_child_node(diff_sptr d)2002 diff::append_child_node(diff_sptr d)
2003 {
2004 ABG_ASSERT(d);
2005
2006 // Ensure 'd' is kept alive for the life time of the context of this
2007 // diff.
2008 context()->keep_diff_alive(d);
2009
2010 // Add the underlying pointer of 'd' to the vector of children.
2011 // Note that this vector holds no reference to 'd'. This is to avoid
2012 // reference cycles. The reference to 'd' is held by the context of
2013 // this diff, thanks to the call to context()->keep_diff_alive(d)
2014 // above.
2015 priv_->children_.push_back(d.get());
2016
2017 diff_less_than_functor comp;
2018 std::sort(priv_->children_.begin(),
2019 priv_->children_.end(),
2020 comp);
2021
2022 d->priv_->parent_ = this;
2023 }
2024
2025 /// Getter of the context of the current diff.
2026 ///
2027 /// @return the context of the current diff.
2028 const diff_context_sptr
context() const2029 diff::context() const
2030 {return priv_->get_context();}
2031
2032 /// Setter of the context of the current diff.
2033 ///
2034 /// @param c the new context to set.
2035 void
context(diff_context_sptr c)2036 diff::context(diff_context_sptr c)
2037 {priv_->ctxt_ = c;}
2038
2039 /// Tests if we are currently in the middle of emitting a report for
2040 /// this diff.
2041 ///
2042 /// @return true if we are currently emitting a report for the
2043 /// current diff, false otherwise.
2044 bool
currently_reporting() const2045 diff::currently_reporting() const
2046 {
2047 if (priv_->canonical_diff_)
2048 return priv_->canonical_diff_->priv_->currently_reporting_;
2049 return priv_->currently_reporting_;
2050 }
2051
2052 /// Sets a flag saying if we are currently in the middle of emitting
2053 /// a report for this diff.
2054 ///
2055 /// @param f true if we are currently emitting a report for the
2056 /// current diff, false otherwise.
2057 void
currently_reporting(bool f) const2058 diff::currently_reporting(bool f) const
2059 {
2060 if (priv_->canonical_diff_)
2061 priv_->canonical_diff_->priv_->currently_reporting_ = f;
2062 priv_->currently_reporting_ = f;
2063 }
2064
2065 /// Tests if a report has already been emitted for the current diff.
2066 ///
2067 /// @return true if a report has already been emitted for the
2068 /// current diff, false otherwise.
2069 bool
reported_once() const2070 diff::reported_once() const
2071 {
2072 ABG_ASSERT(priv_->canonical_diff_);
2073 return priv_->canonical_diff_->priv_->reported_once_;
2074 }
2075
2076 /// The generic traversing code that walks a given diff sub-tree.
2077 ///
2078 /// Note that there is a difference between traversing a diff node and
2079 /// visiting it. Basically, traversing a diff node means visiting it
2080 /// and visiting its children nodes too. So one can visit a node
2081 /// without traversing it. But traversing a node without visiting it
2082 /// is not possible.
2083 ///
2084 /// Note that by default this traversing code visits a given class of
2085 /// equivalence of a diff node only once. This behaviour can been
2086 /// changed by calling
2087 /// diff_context::visiting_a_node_twice_is_forbidden(), but this is
2088 /// very risky as it might create endless loops while visiting a diff
2089 /// tree graph that has changes that refer to themselves; that is,
2090 /// diff tree graphs with cycles.
2091 ///
2092 /// When a diff node is encountered, the
2093 /// diff_node_visitor::visit_begin() method is invoked on the diff
2094 /// node first.
2095 ///
2096 /// If the diff node has already been visited, then
2097 /// node_visitor::visit_end() is called on it and the node traversing
2098 /// is done; the children of the diff node are not visited in this
2099 /// case.
2100 ///
2101 /// If the diff node has *NOT* been visited yet, then the
2102 /// diff_node_visitor::visit() method is invoked with it's 'pre'
2103 /// argument set to true. Then if the diff_node_visitor::visit()
2104 /// returns true, then the children nodes of the diff node are
2105 /// visited. Otherwise, no children nodes of the diff node is
2106 /// visited and the diff_node_visitor::visit_end() is called.
2107
2108 /// After the children nodes are visited (and only if they are
2109 /// visited) the diff_node_visitor::visit() method is invoked with
2110 /// it's 'pre' argument set to false. And then the
2111 /// diff_node_visitor::visit_end() is called.
2112 ///
2113 /// @param v the entity that visits each node of the diff sub-tree.
2114 ///
2115 /// @return true to tell the caller that all of the sub-tree could be
2116 /// walked. This instructs the caller to keep walking the rest of the
2117 /// tree. Return false otherwise.
2118 bool
traverse(diff_node_visitor & v)2119 diff::traverse(diff_node_visitor& v)
2120 {
2121 finish_diff_type();
2122
2123 v.visit_begin(this);
2124
2125 bool already_visited = false;
2126 if (context()->visiting_a_node_twice_is_forbidden()
2127 && context()->diff_has_been_visited(this))
2128 already_visited = true;
2129
2130 bool mark_visited_nodes_as_traversed =
2131 !(v.get_visiting_kind() & DO_NOT_MARK_VISITED_NODES_AS_VISITED);
2132
2133 if (!already_visited && !v.visit(this, /*pre=*/true))
2134 {
2135 v.visit_end(this);
2136 if (mark_visited_nodes_as_traversed)
2137 context()->mark_diff_as_visited(this);
2138 return false;
2139 }
2140
2141 if (!(v.get_visiting_kind() & SKIP_CHILDREN_VISITING_KIND)
2142 && !is_traversing()
2143 && !already_visited)
2144 {
2145 begin_traversing();
2146 for (vector<diff*>::const_iterator i = children_nodes().begin();
2147 i != children_nodes().end();
2148 ++i)
2149 {
2150 if (!(*i)->traverse(v))
2151 {
2152 v.visit_end(this);
2153 if (mark_visited_nodes_as_traversed)
2154 context()->mark_diff_as_visited(this);
2155 end_traversing();
2156 return false;
2157 }
2158 }
2159 end_traversing();
2160 }
2161
2162 if (!v.visit(this, /*pref=*/false))
2163 {
2164 v.visit_end(this);
2165 if (mark_visited_nodes_as_traversed)
2166 context()->mark_diff_as_visited(this);
2167 return false;
2168 }
2169
2170 v.visit_end(this);
2171 if (!already_visited && mark_visited_nodes_as_traversed)
2172 context()->mark_diff_as_visited(this);
2173
2174 return true;
2175 }
2176
2177 /// Sets a flag saying if a report has already been emitted for the
2178 /// current diff.
2179 ///
2180 /// @param f true if a report has already been emitted for the
2181 /// current diff, false otherwise.
2182 void
reported_once(bool f) const2183 diff::reported_once(bool f) const
2184 {
2185 ABG_ASSERT(priv_->canonical_diff_);
2186 priv_->canonical_diff_->priv_->reported_once_ = f;
2187 priv_->reported_once_ = f;
2188 }
2189
2190 /// Getter for the local category of the current diff tree node.
2191 ///
2192 /// The local category represents the set of categories of a diff
2193 /// node, not taking in account the categories inherited from its
2194 /// children nodes.
2195 ///
2196 /// @return the local category of the current diff tree node.
2197 diff_category
get_local_category() const2198 diff::get_local_category() const
2199 {return priv_->local_category_;}
2200
2201 /// Getter of the category of the class of equivalence of the current
2202 /// diff tree node.
2203 ///
2204 /// That is, if the current diff tree node has a canonical node,
2205 /// return the category of that canonical node. Otherwise, return the
2206 /// category of the current node.
2207 ///
2208 /// @return the category of the class of equivalence of the current
2209 /// tree node.
2210 diff_category
get_class_of_equiv_category() const2211 diff::get_class_of_equiv_category() const
2212 {
2213 diff* canonical = get_canonical_diff();
2214 return canonical ? canonical->get_category() : get_category();
2215 }
2216
2217 /// Getter for the category of the current diff tree node.
2218 ///
2219 /// This category represents the union of the local category and the
2220 /// categories inherited from the children diff nodes.
2221 ///
2222 /// @return the category of the current diff tree node.
2223 diff_category
get_category() const2224 diff::get_category() const
2225 {return priv_->category_;}
2226
2227 /// Adds the current diff tree node to an additional set of
2228 /// categories. Note that the categories include thoses inherited
2229 /// from the children nodes of this diff node.
2230 ///
2231 /// @param c a bit-map representing the set of categories to add the
2232 /// current diff tree node to.
2233 ///
2234 /// @return the resulting bit-map representing the categories this
2235 /// current diff tree node belongs to, including those inherited from
2236 /// its children nodes.
2237 diff_category
add_to_category(diff_category c)2238 diff::add_to_category(diff_category c)
2239 {
2240 priv_->category_ = priv_->category_ | c;
2241 return priv_->category_;
2242 }
2243
2244 /// Adds the current diff tree node to the categories resulting from
2245 /// the local changes of the current diff node.
2246 ///
2247 /// @param c a bit-map representing the set of categories to add the
2248 /// current diff tree node to.
2249 ///
2250 /// @return the resulting bit-map representing the categories this
2251 /// current diff tree node belongs to.
2252 diff_category
add_to_local_category(diff_category c)2253 diff::add_to_local_category(diff_category c)
2254 {
2255 priv_->local_category_ = priv_->local_category_ | c;
2256 return priv_->local_category_;
2257 }
2258
2259 /// Adds the current diff tree node to the categories resulting from
2260 /// the local and inherited changes of the current diff node.
2261 ///
2262 /// @param c a bit-map representing the set of categories to add the
2263 /// current diff tree node to.
2264 void
add_to_local_and_inherited_categories(diff_category c)2265 diff::add_to_local_and_inherited_categories(diff_category c)
2266 {
2267 add_to_local_category(c);
2268 add_to_category(c);
2269 }
2270
2271 /// Remove the current diff tree node from an a existing sef of
2272 /// categories. The categories include those inherited from the
2273 /// children nodes of the current diff node.
2274 ///
2275 /// @param c a bit-map representing the set of categories to add the
2276 /// current diff tree node to.
2277 ///
2278 /// @return the resulting bit-map representing the categories this
2279 /// current diff tree onde belongs to, including the categories
2280 /// inherited from the children nodes of the current diff node.
2281 diff_category
remove_from_category(diff_category c)2282 diff::remove_from_category(diff_category c)
2283 {
2284 priv_->category_ = priv_->category_ & ~c;
2285 return priv_->category_;
2286 }
2287
2288 /// Remove the current diff tree node from the categories resulting
2289 /// from the local changes.
2290 ///
2291 /// @param c a bit-map representing the set of categories to add the
2292 /// current diff tree node to.
2293 ///
2294 /// @return the resulting bit-map representing the categories this
2295 /// current diff tree onde belongs to.
2296 diff_category
remove_from_local_category(diff_category c)2297 diff::remove_from_local_category(diff_category c)
2298 {
2299 priv_->local_category_ = priv_->local_category_ & ~c;
2300 return priv_->local_category_;
2301 }
2302
2303 /// Set the category of the current @ref diff node. This category
2304 /// includes the categories inherited from the children nodes of the
2305 /// current diff node.
2306 ///
2307 /// @param c the new category for the current diff node.
2308 void
set_category(diff_category c)2309 diff::set_category(diff_category c)
2310 {priv_->category_ = c;}
2311
2312 /// Set the local category of the current @ref diff node.
2313 ///
2314 /// @param c the new category for the current diff node.
2315 void
set_local_category(diff_category c)2316 diff::set_local_category(diff_category c)
2317 {priv_->local_category_ = c;}
2318
2319 /// Test if this diff tree node is to be filtered out for reporting
2320 /// purposes.
2321 ///
2322 /// The function tests if the categories of the diff tree node are
2323 /// "forbidden" by the context or not.
2324 ///
2325 /// @return true iff the current diff node should NOT be reported.
2326 bool
is_filtered_out() const2327 diff::is_filtered_out() const
2328 {
2329 if (diff * canonical = get_canonical_diff())
2330 if (canonical->get_category() & SUPPRESSED_CATEGORY
2331 || canonical->get_category() & PRIVATE_TYPE_CATEGORY)
2332 // The canonical type was suppressed either by a user-provided
2333 // suppression specification or by a "private-type" suppression
2334 // specification.. This means all the class of equivalence of
2335 // that canonical type was suppressed. So this node should be
2336 // suppressed too.
2337 return true;
2338 return priv_->is_filtered_out(get_category());
2339 }
2340
2341 /// Test if this diff tree node is to be filtered out for reporting
2342 /// purposes, but by considering only the categories that were *NOT*
2343 /// inherited from its children nodes.
2344 ///
2345 /// The function tests if the local categories of the diff tree node
2346 /// are "forbidden" by the context or not.
2347 ///
2348 /// @return true iff the current diff node should NOT be reported,
2349 /// with respect to its local categories.
2350 bool
is_filtered_out_wrt_non_inherited_categories() const2351 diff::is_filtered_out_wrt_non_inherited_categories() const
2352 {return priv_->is_filtered_out(get_local_category());}
2353
2354 /// Test if the current diff node has been suppressed by a
2355 /// user-provided suppression specification.
2356 ///
2357 /// @return true if the current diff node has been suppressed by a
2358 /// user-provided suppression list.
2359 bool
is_suppressed() const2360 diff::is_suppressed() const
2361 {
2362 bool is_private = false;
2363 return is_suppressed(is_private);
2364 }
2365
2366 /// Test if the current diff node has been suppressed by a
2367 /// user-provided suppression specification or by an auto-generated
2368 /// "private type" suppression specification.
2369 ///
2370 /// Note that private type suppressions are auto-generated from the
2371 /// path to where public headers are, as given by the user.
2372 ///
2373 /// @param is_private_type out parameter if the current diff node was
2374 /// suppressed because it's a private type then this parameter is set
2375 /// to true.
2376 ///
2377 /// @return true if the current diff node has been suppressed by a
2378 /// user-provided suppression list.
2379 bool
is_suppressed(bool & is_private_type) const2380 diff::is_suppressed(bool &is_private_type) const
2381 {
2382 const suppressions_type& suppressions = context()->suppressions();
2383 for (suppressions_type::const_iterator i = suppressions.begin();
2384 i != suppressions.end();
2385 ++i)
2386 {
2387 if ((*i)->suppresses_diff(this))
2388 {
2389 if (is_private_type_suppr_spec(*i))
2390 is_private_type = true;
2391 return true;
2392 }
2393 }
2394 return false;
2395 }
2396
2397 /// Test if this diff tree node should be reported.
2398 ///
2399 /// @return true iff the current node should be reported.
2400 bool
to_be_reported() const2401 diff::to_be_reported() const
2402 {
2403 if (has_changes() && !is_filtered_out())
2404 return true;
2405 return false;
2406 }
2407
2408 /// Test if this diff tree node should be reported when considering
2409 /// the categories that were *NOT* inherited from its children nodes.
2410 ///
2411 /// @return true iff the current node should be reported.
2412 bool
has_local_changes_to_be_reported() const2413 diff::has_local_changes_to_be_reported() const
2414 {
2415 if (has_local_changes()
2416 && !is_filtered_out_wrt_non_inherited_categories())
2417 return true;
2418 return false;
2419 }
2420
2421 /// Get a pretty representation of the current @ref diff node.
2422 ///
2423 /// This is suitable for e.g. emitting debugging traces for the diff
2424 /// tree nodes.
2425 ///
2426 /// @return the pretty representation of the diff node.
2427 const string&
get_pretty_representation() const2428 diff::get_pretty_representation() const
2429 {
2430 if (priv_->pretty_representation_.empty())
2431 priv_->pretty_representation_ = "empty_diff";
2432 return priv_->pretty_representation_;
2433 }
2434
2435 /// Default implementation of the hierachy chaining virtual function.
2436 ///
2437 /// There are several types of diff nodes that have logical children
2438 /// nodes; for instance, a typedef_diff has the diff of the underlying
2439 /// type as a child node. A var_diff has the diff of the types of the
2440 /// variables as a child node, etc.
2441 ///
2442 /// But because the @ref diff base has a generic representation for
2443 /// children nodes of the all the types of @ref diff nodes (regardless
2444 /// of the specific most-derived type of diff node) that one can get
2445 /// using the method diff::children_nodes(), one need to populate that
2446 /// vector of children node.
2447 ///
2448 /// Populating that vector of children node is done by this function;
2449 /// it must be overloaded by each most-derived type of diff node that
2450 /// extends the @ref diff type.
2451 void
chain_into_hierarchy()2452 diff::chain_into_hierarchy()
2453 {}
2454
2455 // </diff stuff>
2456
2457 // <type_diff_base stuff>
2458
type_diff_base(type_base_sptr first_subject,type_base_sptr second_subject,diff_context_sptr ctxt)2459 type_diff_base::type_diff_base(type_base_sptr first_subject,
2460 type_base_sptr second_subject,
2461 diff_context_sptr ctxt)
2462 : diff(first_subject, second_subject, ctxt),
2463 priv_(new priv)
2464 {}
2465
~type_diff_base()2466 type_diff_base::~type_diff_base()
2467 {}
2468 // </type_diff_base stuff>
2469
2470 // <decl_diff_base stuff>
2471
2472 /// Constructor of @ref decl_diff_base.
2473 ///
2474 /// @param first_subject the first subject of the diff.
2475 ///
2476 /// @param second_subject the second subject of the diff.
2477 ///
2478 /// @param ctxt the context of the diff. This object must stay alive
2479 /// at least during the life time of the current instance of @ref
2480 /// decl_diff_base, otherwise, memory corruption issues occur.
decl_diff_base(decl_base_sptr first_subject,decl_base_sptr second_subject,diff_context_sptr ctxt)2481 decl_diff_base::decl_diff_base(decl_base_sptr first_subject,
2482 decl_base_sptr second_subject,
2483 diff_context_sptr ctxt)
2484 : diff(first_subject, second_subject, ctxt),
2485 priv_(new priv)
2486 {}
2487
~decl_diff_base()2488 decl_diff_base::~decl_diff_base()
2489 {}
2490
2491 // </decl_diff_base stuff>
2492
2493 // <distinct_diff stuff>
2494
2495 /// @return a pretty representation for the @ref distinct_diff node.
2496 const string&
get_pretty_representation() const2497 distinct_diff::get_pretty_representation() const
2498 {
2499 if (diff::priv_->pretty_representation_.empty())
2500 {
2501 std::ostringstream o;
2502 o << "distinct_diff[";
2503 if (first_subject())
2504 o << first_subject()->get_pretty_representation();
2505 else
2506 o << "null";
2507 o << ", ";
2508 if (second_subject())
2509 o << second_subject()->get_pretty_representation() ;
2510 else
2511 o << "null";
2512 o << "]" ;
2513 diff::priv_->pretty_representation_ = o.str();
2514 }
2515 return diff::priv_->pretty_representation_;
2516 }
2517
2518 /// Populate the vector of children node of the @ref diff base type
2519 /// sub-object of this instance of @distinct_diff.
2520 ///
2521 /// The children nodes can then later be retrieved using
2522 /// diff::children_nodes().
2523 void
chain_into_hierarchy()2524 distinct_diff::chain_into_hierarchy()
2525 {
2526 ABG_ASSERT(entities_are_of_distinct_kinds(first(), second()));
2527
2528 if (diff_sptr d = compatible_child_diff())
2529 append_child_node(d);
2530 }
2531
2532 /// Constructor for @ref distinct_diff.
2533 ///
2534 /// Note that the two entities considered for the diff (and passed in
2535 /// parameter) must be of different kinds.
2536 ///
2537 /// @param first the first entity to consider for the diff.
2538 ///
2539 /// @param second the second entity to consider for the diff.
2540 ///
2541 /// @param ctxt the context of the diff. Note that this context
2542 /// object must stay alive at least during the life time of the
2543 /// current instance of @ref distinct_diff. Otherwise memory
2544 /// corruption issues occur.
distinct_diff(type_or_decl_base_sptr first,type_or_decl_base_sptr second,diff_context_sptr ctxt)2545 distinct_diff::distinct_diff(type_or_decl_base_sptr first,
2546 type_or_decl_base_sptr second,
2547 diff_context_sptr ctxt)
2548 : diff(first, second, ctxt),
2549 priv_(new priv)
2550 {ABG_ASSERT(entities_are_of_distinct_kinds(first, second));}
2551
2552 /// Finish building the current instance of @ref distinct_diff.
2553 void
finish_diff_type()2554 distinct_diff::finish_diff_type()
2555 {
2556 if (diff::priv_->finished_)
2557 return;
2558
2559 chain_into_hierarchy();
2560 diff::priv_->finished_ = true;
2561 }
2562
2563 /// Getter for the first subject of the diff.
2564 ///
2565 /// @return the first subject of the diff.
2566 const type_or_decl_base_sptr
first() const2567 distinct_diff::first() const
2568 {return first_subject();}
2569
2570 /// Getter for the second subject of the diff.
2571 ///
2572 /// @return the second subject of the diff.
2573 const type_or_decl_base_sptr
second() const2574 distinct_diff::second() const
2575 {return second_subject();}
2576
2577 /// Getter for the child diff of this distinct_diff instance.
2578 ///
2579 /// When a distinct_diff has two subjects that are different but
2580 /// compatible, then the distinct_diff instance has a child diff node
2581 /// (named the compatible child diff) that is the diff between the two
2582 /// subjects stripped from their typedefs. Otherwise, the compatible
2583 /// child diff is nul.
2584 ///
2585 /// Note that two diff subjects (that compare different) are
2586 /// considered compatible if stripping typedefs out of them makes them
2587 /// comparing equal.
2588 ///
2589 /// @return the compatible child diff node, if any. Otherwise, null.
2590 const diff_sptr
compatible_child_diff() const2591 distinct_diff::compatible_child_diff() const
2592 {
2593 if (!priv_->compatible_child_diff)
2594 {
2595 type_base_sptr fs = strip_typedef(is_type(first())),
2596 ss = strip_typedef(is_type(second()));
2597
2598 if (fs && ss
2599 && !entities_are_of_distinct_kinds(get_type_declaration(fs),
2600 get_type_declaration(ss)))
2601 priv_->compatible_child_diff = compute_diff(get_type_declaration(fs),
2602 get_type_declaration(ss),
2603 context());
2604 }
2605 return priv_->compatible_child_diff;
2606 }
2607
2608 /// Test if the two arguments are of different kind, or that are both
2609 /// NULL.
2610 ///
2611 /// @param first the first argument to test for similarity in kind.
2612 ///
2613 /// @param second the second argument to test for similarity in kind.
2614 ///
2615 /// @return true iff the two arguments are of different kind.
2616 bool
entities_are_of_distinct_kinds(type_or_decl_base_sptr first,type_or_decl_base_sptr second)2617 distinct_diff::entities_are_of_distinct_kinds(type_or_decl_base_sptr first,
2618 type_or_decl_base_sptr second)
2619 {
2620 if (!!first != !!second)
2621 return true;
2622 if (!first && !second)
2623 // We do consider diffs of two empty decls as a diff of distinct
2624 // kinds, for now.
2625 return true;
2626 if (first == second)
2627 return false;
2628
2629 const type_or_decl_base &f = *first, &s = *second;
2630 return typeid(f) != typeid(s);
2631 }
2632
2633 /// @return true if the two subjects of the diff are different, false
2634 /// otherwise.
2635 bool
has_changes() const2636 distinct_diff::has_changes() const
2637 {return first() != second();}
2638
2639 /// @return the kind of local change carried by the current diff node.
2640 /// The value returned is zero if the current node carries no local
2641 /// change.
2642 enum change_kind
has_local_changes() const2643 distinct_diff::has_local_changes() const
2644 {
2645 // Changes on a distinct_diff are all local.
2646 if (has_changes())
2647 return LOCAL_TYPE_CHANGE_KIND;
2648 return NO_CHANGE_KIND;
2649 }
2650
2651 /// Emit a report about the current diff instance.
2652 ///
2653 /// @param out the output stream to send the diff report to.
2654 ///
2655 /// @param indent the indentation string to use in the report.
2656 void
report(ostream & out,const string & indent) const2657 distinct_diff::report(ostream& out, const string& indent) const
2658 {
2659 context()->get_reporter()->report(*this, out, indent);
2660 }
2661
2662 /// Try to diff entities that are of distinct kinds.
2663 ///
2664 /// @param first the first entity to consider for the diff.
2665 ///
2666 /// @param second the second entity to consider for the diff.
2667 ///
2668 /// @param ctxt the context of the diff.
2669 ///
2670 /// @return a non-null diff if a diff object could be built, null
2671 /// otherwise.
2672 distinct_diff_sptr
compute_diff_for_distinct_kinds(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,diff_context_sptr ctxt)2673 compute_diff_for_distinct_kinds(const type_or_decl_base_sptr first,
2674 const type_or_decl_base_sptr second,
2675 diff_context_sptr ctxt)
2676 {
2677 if (!distinct_diff::entities_are_of_distinct_kinds(first, second))
2678 return distinct_diff_sptr();
2679
2680 distinct_diff_sptr result(new distinct_diff(first, second, ctxt));
2681
2682 ctxt->initialize_canonical_diff(result);
2683
2684 return result;
2685 }
2686
2687 /// </distinct_diff stuff>
2688
2689 /// Try to compute a diff on two instances of DiffType representation.
2690 ///
2691 /// The function template performs the diff if and only if the decl
2692 /// representations are of a DiffType.
2693 ///
2694 /// @tparm DiffType the type of instances to diff.
2695 ///
2696 /// @param first the first representation of decl to consider in the
2697 /// diff computation.
2698 ///
2699 /// @param second the second representation of decl to consider in the
2700 /// diff computation.
2701 ///
2702 /// @param ctxt the diff context to use.
2703 ///
2704 ///@return the diff of the two types @p first and @p second if and
2705 ///only if they represent the parametrized type DiffType. Otherwise,
2706 ///returns a NULL pointer value.
2707 template<typename DiffType>
2708 diff_sptr
try_to_diff(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,diff_context_sptr ctxt)2709 try_to_diff(const type_or_decl_base_sptr first,
2710 const type_or_decl_base_sptr second,
2711 diff_context_sptr ctxt)
2712 {
2713 if (shared_ptr<DiffType> f =
2714 dynamic_pointer_cast<DiffType>(first))
2715 {
2716 shared_ptr<DiffType> s =
2717 dynamic_pointer_cast<DiffType>(second);
2718 if (!s)
2719 return diff_sptr();
2720 return compute_diff(f, s, ctxt);
2721 }
2722 return diff_sptr();
2723 }
2724
2725
2726 /// This is a specialization of @ref try_to_diff() template to diff
2727 /// instances of @ref class_decl.
2728 ///
2729 /// @param first the first representation of decl to consider in the
2730 /// diff computation.
2731 ///
2732 /// @param second the second representation of decl to consider in the
2733 /// diff computation.
2734 ///
2735 /// @param ctxt the diff context to use.
2736 template<>
2737 diff_sptr
try_to_diff(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,diff_context_sptr ctxt)2738 try_to_diff<class_decl>(const type_or_decl_base_sptr first,
2739 const type_or_decl_base_sptr second,
2740 diff_context_sptr ctxt)
2741 {
2742 if (class_decl_sptr f =
2743 dynamic_pointer_cast<class_decl>(first))
2744 {
2745 class_decl_sptr s = dynamic_pointer_cast<class_decl>(second);
2746 if (!s)
2747 return diff_sptr();
2748
2749 if (f->get_is_declaration_only())
2750 {
2751 class_decl_sptr f2 =
2752 is_class_type (f->get_definition_of_declaration());
2753 if (f2)
2754 f = f2;
2755 }
2756 if (s->get_is_declaration_only())
2757 {
2758 class_decl_sptr s2 =
2759 is_class_type(s->get_definition_of_declaration());
2760 if (s2)
2761 s = s2;
2762 }
2763 return compute_diff(f, s, ctxt);
2764 }
2765 return diff_sptr();
2766 }
2767
2768 /// Try to diff entities that are of distinct kinds.
2769 ///
2770 /// @param first the first entity to consider for the diff.
2771 ///
2772 /// @param second the second entity to consider for the diff.
2773 ///
2774 /// @param ctxt the context of the diff.
2775 ///
2776 /// @return a non-null diff if a diff object could be built, null
2777 /// otherwise.
2778 static diff_sptr
try_to_diff_distinct_kinds(const type_or_decl_base_sptr first,const type_or_decl_base_sptr second,diff_context_sptr ctxt)2779 try_to_diff_distinct_kinds(const type_or_decl_base_sptr first,
2780 const type_or_decl_base_sptr second,
2781 diff_context_sptr ctxt)
2782 {return compute_diff_for_distinct_kinds(first, second, ctxt);}
2783
2784 /// Compute the difference between two types.
2785 ///
2786 /// The function considers every possible types known to libabigail
2787 /// and runs the appropriate diff function on them.
2788 ///
2789 /// Whenever a new kind of type decl is supported by abigail, if we
2790 /// want to be able to diff two instances of it, we need to update
2791 /// this function to support it.
2792 ///
2793 /// @param first the first type decl to consider for the diff
2794 ///
2795 /// @param second the second type decl to consider for the diff.
2796 ///
2797 /// @param ctxt the diff context to use.
2798 ///
2799 /// @return the resulting diff. It's a pointer to a descendent of
2800 /// abigail::comparison::diff.
2801 static diff_sptr
compute_diff_for_types(const type_or_decl_base_sptr & first,const type_or_decl_base_sptr & second,const diff_context_sptr & ctxt)2802 compute_diff_for_types(const type_or_decl_base_sptr& first,
2803 const type_or_decl_base_sptr& second,
2804 const diff_context_sptr& ctxt)
2805 {
2806 type_or_decl_base_sptr f = first;
2807 type_or_decl_base_sptr s = second;
2808
2809 diff_sptr d;
2810
2811 ((d = try_to_diff<type_decl>(f, s, ctxt))
2812 ||(d = try_to_diff<enum_type_decl>(f, s, ctxt))
2813 ||(d = try_to_diff<union_decl>(f, s,ctxt))
2814 ||(d = try_to_diff<class_decl>(f, s,ctxt))
2815 ||(d = try_to_diff<pointer_type_def>(f, s, ctxt))
2816 ||(d = try_to_diff<reference_type_def>(f, s, ctxt))
2817 ||(d = try_to_diff<array_type_def>(f, s, ctxt))
2818 ||(d = try_to_diff<qualified_type_def>(f, s, ctxt))
2819 ||(d = try_to_diff<typedef_decl>(f, s, ctxt))
2820 ||(d = try_to_diff<function_type>(f, s, ctxt))
2821 ||(d = try_to_diff_distinct_kinds(f, s, ctxt)));
2822
2823 ABG_ASSERT(d);
2824
2825 return d;
2826 }
2827
2828 diff_category
operator |(diff_category c1,diff_category c2)2829 operator|(diff_category c1, diff_category c2)
2830 {return static_cast<diff_category>(static_cast<unsigned>(c1)
2831 | static_cast<unsigned>(c2));}
2832
2833 diff_category&
operator |=(diff_category & c1,diff_category c2)2834 operator|=(diff_category& c1, diff_category c2)
2835 {
2836 c1 = c1 | c2;
2837 return c1;
2838 }
2839
2840 diff_category&
operator &=(diff_category & c1,diff_category c2)2841 operator&=(diff_category& c1, diff_category c2)
2842 {
2843 c1 = c1 & c2;
2844 return c1;
2845 }
2846
2847 diff_category
operator ^(diff_category c1,diff_category c2)2848 operator^(diff_category c1, diff_category c2)
2849 {return static_cast<diff_category>(static_cast<unsigned>(c1)
2850 ^ static_cast<unsigned>(c2));}
2851
2852 diff_category
operator &(diff_category c1,diff_category c2)2853 operator&(diff_category c1, diff_category c2)
2854 {return static_cast<diff_category>(static_cast<unsigned>(c1)
2855 & static_cast<unsigned>(c2));}
2856
2857 diff_category
operator ~(diff_category c)2858 operator~(diff_category c)
2859 {return static_cast<diff_category>(~static_cast<unsigned>(c));}
2860
2861
2862 /// Getter of a bitmap made of the set of change categories that are
2863 /// considered harmless.
2864 ///
2865 /// @return the bitmap made of the set of change categories that are
2866 /// considered harmless.
2867 diff_category
get_default_harmless_categories_bitmap()2868 get_default_harmless_categories_bitmap()
2869 {
2870 return (abigail::comparison::ACCESS_CHANGE_CATEGORY
2871 | abigail::comparison::COMPATIBLE_TYPE_CHANGE_CATEGORY
2872 | abigail::comparison::HARMLESS_DECL_NAME_CHANGE_CATEGORY
2873 | abigail::comparison::NON_VIRT_MEM_FUN_CHANGE_CATEGORY
2874 | abigail::comparison::STATIC_DATA_MEMBER_CHANGE_CATEGORY
2875 | abigail::comparison::HARMLESS_ENUM_CHANGE_CATEGORY
2876 | abigail::comparison::HARMLESS_SYMBOL_ALIAS_CHANGE_CATEGORY
2877 | abigail::comparison::HARMLESS_UNION_CHANGE_CATEGORY
2878 | abigail::comparison::HARMLESS_DATA_MEMBER_CHANGE_CATEGORY
2879 | abigail::comparison::TYPE_DECL_ONLY_DEF_CHANGE_CATEGORY
2880 | abigail::comparison::FN_PARM_TYPE_TOP_CV_CHANGE_CATEGORY
2881 | abigail::comparison::FN_PARM_TYPE_CV_CHANGE_CATEGORY
2882 | abigail::comparison::FN_RETURN_TYPE_CV_CHANGE_CATEGORY
2883 | abigail::comparison::VAR_TYPE_CV_CHANGE_CATEGORY
2884 | abigail::comparison::VOID_PTR_TO_PTR_CHANGE_CATEGORY
2885 | abigail::comparison::BENIGN_INFINITE_ARRAY_CHANGE_CATEGORY);
2886 }
2887
2888 /// Getter of a bitmap made of the set of change categories that are
2889 /// considered harmful.
2890 ///
2891 /// @return the bitmap made of the set of change categories that are
2892 /// considered harmful.
2893 diff_category
get_default_harmful_categories_bitmap()2894 get_default_harmful_categories_bitmap()
2895 {
2896 return (abigail::comparison::SIZE_OR_OFFSET_CHANGE_CATEGORY
2897 | abigail::comparison::VIRTUAL_MEMBER_CHANGE_CATEGORY
2898 | abigail::comparison::FN_PARM_ADD_REMOVE_CHANGE_CATEGORY);
2899 }
2900
2901 /// Serialize an instance of @ref diff_category to an output stream.
2902 ///
2903 /// @param o the output stream to serialize @p c to.
2904 ///
2905 /// @param c the instance of diff_category to serialize.
2906 ///
2907 /// @return the output stream to serialize @p c to.
2908 ostream&
operator <<(ostream & o,diff_category c)2909 operator<<(ostream& o, diff_category c)
2910 {
2911 bool emitted_a_category = false;
2912
2913 if (c == NO_CHANGE_CATEGORY)
2914 {
2915 o << "NO_CHANGE_CATEGORY";
2916 emitted_a_category = true;
2917 }
2918
2919 if (c & ACCESS_CHANGE_CATEGORY)
2920 {
2921 if (emitted_a_category)
2922 o << "|";
2923 o << "ACCESS_CHANGE_CATEGORY";
2924 emitted_a_category |= true;
2925 }
2926
2927 if (c & COMPATIBLE_TYPE_CHANGE_CATEGORY)
2928 {
2929 if (emitted_a_category)
2930 o << "|";
2931 o << "COMPATIBLE_TYPE_CHANGE_CATEGORY";
2932 emitted_a_category |= true;
2933 }
2934
2935 if (c & HARMLESS_DECL_NAME_CHANGE_CATEGORY)
2936 {
2937 if (emitted_a_category)
2938 o << "|";
2939 o << "HARMLESS_DECL_NAME_CHANGE_CATEGORY";
2940 emitted_a_category |= true;
2941 }
2942
2943 if (c & NON_VIRT_MEM_FUN_CHANGE_CATEGORY)
2944 {
2945 if (emitted_a_category)
2946 o << "|";
2947 o << "NON_VIRT_MEM_FUN_CHANGE_CATEGORY";
2948 emitted_a_category |= true;
2949 }
2950
2951 if (c & STATIC_DATA_MEMBER_CHANGE_CATEGORY)
2952 {
2953 if (emitted_a_category)
2954 o << "|";
2955 o << "STATIC_DATA_MEMBER_CHANGE_CATEGORY";
2956 emitted_a_category |= true;
2957 }
2958
2959 if (c & HARMLESS_ENUM_CHANGE_CATEGORY)
2960 {
2961 if (emitted_a_category)
2962 o << "|";
2963 o << "HARMLESS_ENUM_CHANGE_CATEGORY";
2964 emitted_a_category |= true;
2965 }
2966
2967 if (c & HARMLESS_DATA_MEMBER_CHANGE_CATEGORY)
2968 {
2969 if (emitted_a_category)
2970 o << "|";
2971 o << "HARMLESS_DATA_MEMBER_CHANGE_CATEGORY";
2972 emitted_a_category |= true;
2973 }
2974
2975 if (c & HARMLESS_SYMBOL_ALIAS_CHANGE_CATEGORY)
2976 {
2977 if (emitted_a_category)
2978 o << "|";
2979 o << "HARMLESS_SYMBOL_ALIAS_CHANGE_CATEGORY";
2980 emitted_a_category |= true;
2981 }
2982
2983 if (c & HARMLESS_UNION_CHANGE_CATEGORY)
2984 {
2985 if (emitted_a_category)
2986 o << "|";
2987 o << "HARMLESS_UNION_CHANGE_CATEGORY";
2988 emitted_a_category |= true;
2989 }
2990
2991 if (c & SUPPRESSED_CATEGORY)
2992 {
2993 if (emitted_a_category)
2994 o << "|";
2995 o << "SUPPRESSED_CATEGORY";
2996 emitted_a_category |= true;
2997 }
2998
2999 if (c & PRIVATE_TYPE_CATEGORY)
3000 {
3001 if (emitted_a_category)
3002 o << "|";
3003 o << "PRIVATE_TYPE_CATEGORY";
3004 emitted_a_category |= true;
3005 }
3006
3007 if (c & SIZE_OR_OFFSET_CHANGE_CATEGORY)
3008 {
3009 if (emitted_a_category)
3010 o << "|";
3011 o << "SIZE_OR_OFFSET_CHANGE_CATEGORY";
3012 emitted_a_category |= true;
3013 }
3014
3015 if (c & VIRTUAL_MEMBER_CHANGE_CATEGORY)
3016 {
3017 if (emitted_a_category)
3018 o << "|";
3019 o << "VIRTUAL_MEMBER_CHANGE_CATEGORY";
3020 emitted_a_category |= true;
3021 }
3022
3023 if (c & REDUNDANT_CATEGORY)
3024 {
3025 if (emitted_a_category)
3026 o << "|";
3027 o << "REDUNDANT_CATEGORY";
3028 emitted_a_category |= true;
3029 }
3030
3031 if (c & TYPE_DECL_ONLY_DEF_CHANGE_CATEGORY)
3032 {
3033 if (emitted_a_category)
3034 o << "|";
3035 o << "TYPE_DECL_ONLY_DEF_CHANGE_CATEGORY";
3036 emitted_a_category |= true;
3037 }
3038
3039 if (c & FN_PARM_TYPE_TOP_CV_CHANGE_CATEGORY)
3040 {
3041 if (emitted_a_category)
3042 o << "|";
3043 o << "FN_PARM_TYPE_TOP_CV_CHANGE_CATEGORY";
3044 emitted_a_category |= true;
3045 }
3046
3047 if (c & FN_PARM_TYPE_CV_CHANGE_CATEGORY)
3048 {
3049 if (emitted_a_category)
3050 o << "|";
3051 o << "FN_PARM_TYPE_CV_CHANGE_CATEGORY";
3052 emitted_a_category |= true;
3053 }
3054
3055 if (c & FN_RETURN_TYPE_CV_CHANGE_CATEGORY)
3056 {
3057 if (emitted_a_category)
3058 o << "|";
3059 o << "FN_RETURN_TYPE_CV_CHANGE_CATEGORY";
3060 emitted_a_category |= true;
3061 }
3062
3063 if (c & FN_PARM_ADD_REMOVE_CHANGE_CATEGORY)
3064 {
3065 if (emitted_a_category)
3066 o << "|";
3067 o << "FN_PARM_ADD_REMOVE_CHANGE_CATEGORY";
3068 emitted_a_category |= true;
3069 }
3070
3071 if (c & VAR_TYPE_CV_CHANGE_CATEGORY)
3072 {
3073 if (emitted_a_category)
3074 o << "|";
3075 o << "VAR_TYPE_CV_CHANGE_CATEGORY";
3076 emitted_a_category |= true;
3077 }
3078
3079 if (c & VOID_PTR_TO_PTR_CHANGE_CATEGORY)
3080 {
3081 if (emitted_a_category)
3082 o << "|";
3083 o << "VOID_PTR_TO_PTR_CHANGE_CATEGORY";
3084 emitted_a_category |= true;
3085 }
3086
3087 if (c & BENIGN_INFINITE_ARRAY_CHANGE_CATEGORY)
3088 {
3089 if (emitted_a_category)
3090 o << "|";
3091 o << "BENIGN_INFINITE_ARRAY_CHANGE_CATEGORY";
3092 emitted_a_category |= true;
3093 }
3094
3095 return o;
3096 }
3097
3098 /// Compute the difference between two decls.
3099 ///
3100 /// The function consider every possible decls known to libabigail and
3101 /// runs the appropriate diff function on them.
3102 ///
3103 /// Whenever a new kind of non-type decl is supported by abigail, if
3104 /// we want to be able to diff two instances of it, we need to update
3105 /// this function to support it.
3106 ///
3107 /// @param first the first decl to consider for the diff
3108 ///
3109 /// @param second the second decl to consider for the diff.
3110 ///
3111 /// @param ctxt the diff context to use.
3112 ///
3113 /// @return the resulting diff.
3114 static diff_sptr
compute_diff_for_decls(const decl_base_sptr first,const decl_base_sptr second,diff_context_sptr ctxt)3115 compute_diff_for_decls(const decl_base_sptr first,
3116 const decl_base_sptr second,
3117 diff_context_sptr ctxt)
3118 {
3119
3120 diff_sptr d;
3121
3122 ((d = try_to_diff<function_decl>(first, second, ctxt))
3123 || (d = try_to_diff<var_decl>(first, second, ctxt))
3124 || (d = try_to_diff_distinct_kinds(first, second, ctxt)));
3125
3126 ABG_ASSERT(d);
3127
3128 return d;
3129 }
3130
3131 /// Compute the difference between two decls. The decls can represent
3132 /// either type declarations, or non-type declaration.
3133 ///
3134 /// Note that the two decls must have been created in the same @ref
3135 /// environment, otherwise, this function aborts.
3136 ///
3137 /// @param first the first decl to consider.
3138 ///
3139 /// @param second the second decl to consider.
3140 ///
3141 /// @param ctxt the diff context to use.
3142 ///
3143 /// @return the resulting diff, or NULL if the diff could not be
3144 /// computed.
3145 diff_sptr
compute_diff(const decl_base_sptr first,const decl_base_sptr second,diff_context_sptr ctxt)3146 compute_diff(const decl_base_sptr first,
3147 const decl_base_sptr second,
3148 diff_context_sptr ctxt)
3149 {
3150 if (!first || !second)
3151 return diff_sptr();
3152
3153 ABG_ASSERT(first->get_environment() == second->get_environment());
3154
3155 diff_sptr d;
3156 if (is_type(first) && is_type(second))
3157 d = compute_diff_for_types(first, second, ctxt);
3158 else
3159 d = compute_diff_for_decls(first, second, ctxt);
3160 ABG_ASSERT(d);
3161 return d;
3162 }
3163
3164 /// Compute the difference between two types.
3165 ///
3166 /// Note that the two types must have been created in the same @ref
3167 /// environment, otherwise, this function aborts.
3168 ///
3169 /// @param first the first type to consider.
3170 ///
3171 /// @param second the second type to consider.
3172 ///
3173 /// @param ctxt the diff context to use.
3174 ///
3175 /// @return the resulting diff, or NULL if the diff couldn't be
3176 /// computed.
3177 diff_sptr
compute_diff(const type_base_sptr first,const type_base_sptr second,diff_context_sptr ctxt)3178 compute_diff(const type_base_sptr first,
3179 const type_base_sptr second,
3180 diff_context_sptr ctxt)
3181 {
3182 decl_base_sptr f = get_type_declaration(first),
3183 s = get_type_declaration(second);
3184
3185 if (first && second)
3186 ABG_ASSERT(first->get_environment() == second->get_environment());
3187
3188 diff_sptr d = compute_diff_for_types(f,s, ctxt);
3189 ABG_ASSERT(d);
3190 return d;
3191 }
3192
3193 /// Get a copy of the pretty representation of a diff node.
3194 ///
3195 /// @param d the diff node to consider.
3196 ///
3197 /// @return the pretty representation string.
3198 string
get_pretty_representation(diff * d)3199 get_pretty_representation(diff* d)
3200 {
3201 if (!d)
3202 return "";
3203 string prefix= "diff of ";
3204 return prefix + get_pretty_representation(d->first_subject());
3205 }
3206
3207 // <var_diff stuff>
3208
3209 /// Populate the vector of children node of the @ref diff base type
3210 /// sub-object of this instance of @ref var_diff.
3211 ///
3212 /// The children node can then later be retrieved using
3213 /// diff::children_node().
3214 void
chain_into_hierarchy()3215 var_diff::chain_into_hierarchy()
3216 {append_child_node(type_diff());}
3217
3218 /// @return the pretty representation for this current instance of
3219 /// @ref var_diff.
3220 const string&
get_pretty_representation() const3221 var_diff::get_pretty_representation() const
3222 {
3223 if (diff::priv_->pretty_representation_.empty())
3224 {
3225 std::ostringstream o;
3226 o << "var_diff["
3227 << first_subject()->get_pretty_representation()
3228 << ", "
3229 << second_subject()->get_pretty_representation()
3230 << "]";
3231 diff::priv_->pretty_representation_ = o.str();
3232 }
3233 return diff::priv_->pretty_representation_;
3234 }
3235 /// Constructor for @ref var_diff.
3236 ///
3237 /// @param first the first instance of @ref var_decl to consider in
3238 /// the diff.
3239 ///
3240 /// @param second the second instance of @ref var_decl to consider in
3241 /// the diff.
3242 ///
3243 /// @param type_diff the diff between types of the instances of
3244 /// var_decl.
3245 ///
3246 /// @param ctxt the diff context to use.
var_diff(var_decl_sptr first,var_decl_sptr second,diff_sptr type_diff,diff_context_sptr ctxt)3247 var_diff::var_diff(var_decl_sptr first,
3248 var_decl_sptr second,
3249 diff_sptr type_diff,
3250 diff_context_sptr ctxt)
3251 : decl_diff_base(first, second, ctxt),
3252 priv_(new priv)
3253 {priv_->type_diff_ = type_diff;}
3254
3255 /// Finish building the current instance of @ref var_diff.
3256 void
finish_diff_type()3257 var_diff::finish_diff_type()
3258 {
3259 if (diff::priv_->finished_)
3260 return;
3261 chain_into_hierarchy();
3262 diff::priv_->finished_ = true;
3263 }
3264
3265 /// Getter for the first @ref var_decl of the diff.
3266 ///
3267 /// @return the first @ref var_decl of the diff.
3268 var_decl_sptr
first_var() const3269 var_diff::first_var() const
3270 {return dynamic_pointer_cast<var_decl>(first_subject());}
3271
3272 /// Getter for the second @ref var_decl of the diff.
3273 ///
3274 /// @return the second @ref var_decl of the diff.
3275 var_decl_sptr
second_var() const3276 var_diff::second_var() const
3277 {return dynamic_pointer_cast<var_decl>(second_subject());}
3278
3279 /// Getter for the diff of the types of the instances of @ref
3280 /// var_decl.
3281 ///
3282 /// @return the diff of the types of the instances of @ref var_decl.
3283 diff_sptr
type_diff() const3284 var_diff::type_diff() const
3285 {
3286 if (diff_sptr result = priv_->type_diff_.lock())
3287 return result;
3288 else
3289 {
3290 result = compute_diff(first_var()->get_type(),
3291 second_var()->get_type(),
3292 context());
3293 context()->keep_diff_alive(result);
3294 priv_->type_diff_ = result;
3295 return result;
3296 }
3297 }
3298
3299 /// Return true iff the diff node has a change.
3300 ///
3301 /// @return true iff the diff node has a change.
3302 bool
has_changes() const3303 var_diff::has_changes() const
3304 {return *first_var() != *second_var();}
3305
3306 /// @return the kind of local change carried by the current diff node.
3307 /// The value returned is zero if the current node carries no local
3308 /// change.
3309 enum change_kind
has_local_changes() const3310 var_diff::has_local_changes() const
3311 {
3312 ir::change_kind k = ir::NO_CHANGE_KIND;
3313 if (!equals(*first_var(), *second_var(), &k))
3314 return k & ir::ALL_LOCAL_CHANGES_MASK;
3315 return ir::NO_CHANGE_KIND;
3316 }
3317
3318 /// Report the diff in a serialized form.
3319 ///
3320 /// @param out the stream to serialize the diff to.
3321 ///
3322 /// @param indent the prefix to use for the indentation of this
3323 /// serialization.
3324 void
report(ostream & out,const string & indent) const3325 var_diff::report(ostream& out, const string& indent) const
3326 {
3327 context()->get_reporter()->report(*this, out, indent);
3328 }
3329
3330 /// Compute the diff between two instances of @ref var_decl.
3331 ///
3332 /// Note that the two decls must have been created in the same @ref
3333 /// environment, otherwise, this function aborts.
3334 ///
3335 /// @param first the first @ref var_decl to consider for the diff.
3336 ///
3337 /// @param second the second @ref var_decl to consider for the diff.
3338 ///
3339 /// @param ctxt the diff context to use.
3340 ///
3341 /// @return the resulting diff between the two @ref var_decl.
3342 var_diff_sptr
compute_diff(const var_decl_sptr first,const var_decl_sptr second,diff_context_sptr ctxt)3343 compute_diff(const var_decl_sptr first,
3344 const var_decl_sptr second,
3345 diff_context_sptr ctxt)
3346 {
3347 if (first && second)
3348 ABG_ASSERT(first->get_environment() == second->get_environment());
3349
3350 var_diff_sptr d(new var_diff(first, second, diff_sptr(), ctxt));
3351 ctxt->initialize_canonical_diff(d);
3352
3353 return d;
3354 }
3355
3356 // </var_diff stuff>
3357
3358 // <pointer_type_def stuff>
3359
3360 /// Populate the vector of children node of the @ref diff base type
3361 /// sub-object of this instance of @ref pointer_diff.
3362 ///
3363 /// The children node can then later be retrieved using
3364 /// diff::children_node().
3365 void
chain_into_hierarchy()3366 pointer_diff::chain_into_hierarchy()
3367 {append_child_node(underlying_type_diff());}
3368
3369 /// Constructor for a pointer_diff.
3370 ///
3371 /// @param first the first pointer to consider for the diff.
3372 ///
3373 /// @param second the secon pointer to consider for the diff.
3374 ///
3375 /// @param ctxt the diff context to use.
pointer_diff(pointer_type_def_sptr first,pointer_type_def_sptr second,diff_sptr underlying,diff_context_sptr ctxt)3376 pointer_diff::pointer_diff(pointer_type_def_sptr first,
3377 pointer_type_def_sptr second,
3378 diff_sptr underlying,
3379 diff_context_sptr ctxt)
3380 : type_diff_base(first, second, ctxt),
3381 priv_(new priv(underlying))
3382 {}
3383
3384 /// Finish building the current instance of @ref pointer_diff.
3385 void
finish_diff_type()3386 pointer_diff::finish_diff_type()
3387 {
3388 if (diff::priv_->finished_)
3389 return;
3390 chain_into_hierarchy();
3391 diff::priv_->finished_ = true;
3392 }
3393
3394 /// Getter for the first subject of a pointer diff
3395 ///
3396 /// @return the first pointer considered in this pointer diff.
3397 const pointer_type_def_sptr
first_pointer() const3398 pointer_diff::first_pointer() const
3399 {return dynamic_pointer_cast<pointer_type_def>(first_subject());}
3400
3401 /// Getter for the second subject of a pointer diff
3402 ///
3403 /// @return the second pointer considered in this pointer diff.
3404 const pointer_type_def_sptr
second_pointer() const3405 pointer_diff::second_pointer() const
3406 {return dynamic_pointer_cast<pointer_type_def>(second_subject());}
3407
3408 /// @return the pretty represenation for the current instance of @ref
3409 /// pointer_diff.
3410 const string&
get_pretty_representation() const3411 pointer_diff::get_pretty_representation() const
3412 {
3413 if (diff::priv_->pretty_representation_.empty())
3414 {
3415 std::ostringstream o;
3416 o << "pointer_diff["
3417 << first_subject()->get_pretty_representation()
3418 << ", "
3419 << second_subject()->get_pretty_representation()
3420 << "]";
3421 diff::priv_->pretty_representation_ = o.str();
3422 }
3423 return diff::priv_->pretty_representation_;
3424 }
3425
3426 /// Return true iff the current diff node carries a change.
3427 ///
3428 /// @return true iff the current diff node carries a change.
3429 bool
has_changes() const3430 pointer_diff::has_changes() const
3431 {return first_pointer() != second_pointer();}
3432
3433 /// @return the kind of local change carried by the current diff node.
3434 /// The value returned is zero if the current node carries no local
3435 /// change.
3436 enum change_kind
has_local_changes() const3437 pointer_diff::has_local_changes() const
3438 {
3439 ir::change_kind k = ir::NO_CHANGE_KIND;
3440 if (!equals(*first_pointer(), *second_pointer(), &k))
3441 return k & ir::ALL_LOCAL_CHANGES_MASK;
3442 return ir::NO_CHANGE_KIND;
3443 }
3444
3445 /// Getter for the diff between the pointed-to types of the pointers
3446 /// of this diff.
3447 ///
3448 /// @return the diff between the pointed-to types.
3449 diff_sptr
underlying_type_diff() const3450 pointer_diff::underlying_type_diff() const
3451 {return priv_->underlying_type_diff_;}
3452
3453 /// Setter for the diff between the pointed-to types of the pointers
3454 /// of this diff.
3455 ///
3456 /// @param d the new diff between the pointed-to types of the pointers
3457 /// of this diff.
3458 void
underlying_type_diff(const diff_sptr d)3459 pointer_diff::underlying_type_diff(const diff_sptr d)
3460 {priv_->underlying_type_diff_ = d;}
3461
3462 /// Report the diff in a serialized form.
3463 ///
3464 /// @param out the stream to serialize the diff to.
3465 ///
3466 /// @param indent the prefix to use for the indentation of this
3467 /// serialization.
3468 void
report(ostream & out,const string & indent) const3469 pointer_diff::report(ostream& out, const string& indent) const
3470 {
3471 context()->get_reporter()->report(*this, out, indent);
3472 }
3473
3474 /// Compute the diff between between two pointers.
3475 ///
3476 /// Note that the two types must have been created in the same @ref
3477 /// environment, otherwise, this function aborts.
3478 ///
3479 /// @param first the pointer to consider for the diff.
3480 ///
3481 /// @param second the pointer to consider for the diff.
3482 ///
3483 /// @return the resulting diff between the two pointers.
3484 ///
3485 /// @param ctxt the diff context to use.
3486 pointer_diff_sptr
compute_diff(pointer_type_def_sptr first,pointer_type_def_sptr second,diff_context_sptr ctxt)3487 compute_diff(pointer_type_def_sptr first,
3488 pointer_type_def_sptr second,
3489 diff_context_sptr ctxt)
3490 {
3491 if (first && second)
3492 ABG_ASSERT(first->get_environment() == second->get_environment());
3493
3494 diff_sptr d = compute_diff_for_types(first->get_pointed_to_type(),
3495 second->get_pointed_to_type(),
3496 ctxt);
3497 pointer_diff_sptr result(new pointer_diff(first, second, d, ctxt));
3498 ctxt->initialize_canonical_diff(result);
3499
3500 return result;
3501 }
3502
3503 // </pointer_type_def>
3504
3505 // <array_type_def>
3506
3507 /// Populate the vector of children node of the @ref diff base type
3508 /// sub-object of this instance of @ref array_diff.
3509 ///
3510 /// The children node can then later be retrieved using
3511 /// diff::children_node().
3512 void
chain_into_hierarchy()3513 array_diff::chain_into_hierarchy()
3514 {append_child_node(element_type_diff());}
3515
3516 /// Constructor for array_diff
3517 ///
3518 /// @param first the first array_type of the diff.
3519 ///
3520 /// @param second the second array_type of the diff.
3521 ///
3522 /// @param element_type_diff the diff between the two array element
3523 /// types.
3524 ///
3525 /// @param ctxt the diff context to use.
array_diff(const array_type_def_sptr first,const array_type_def_sptr second,diff_sptr element_type_diff,diff_context_sptr ctxt)3526 array_diff::array_diff(const array_type_def_sptr first,
3527 const array_type_def_sptr second,
3528 diff_sptr element_type_diff,
3529 diff_context_sptr ctxt)
3530 : type_diff_base(first, second, ctxt),
3531 priv_(new priv(element_type_diff))
3532 {}
3533
3534 /// Finish building the current instance of @ref array_diff.
3535 void
finish_diff_type()3536 array_diff::finish_diff_type()
3537 {
3538 if (diff::priv_->finished_)
3539 return;
3540 chain_into_hierarchy();
3541 diff::priv_->finished_ = true;
3542 }
3543
3544 /// Getter for the first array of the diff.
3545 ///
3546 /// @return the first array of the diff.
3547 const array_type_def_sptr
first_array() const3548 array_diff::first_array() const
3549 {return dynamic_pointer_cast<array_type_def>(first_subject());}
3550
3551 /// Getter for the second array of the diff.
3552 ///
3553 /// @return for the second array of the diff.
3554 const array_type_def_sptr
second_array() const3555 array_diff::second_array() const
3556 {return dynamic_pointer_cast<array_type_def>(second_subject());}
3557
3558 /// Getter for the diff between the two types of array elements.
3559 ///
3560 /// @return the diff between the two types of array elements.
3561 const diff_sptr&
element_type_diff() const3562 array_diff::element_type_diff() const
3563 {return priv_->element_type_diff_;}
3564
3565 /// Setter for the diff between the two array element types.
3566 ///
3567 /// @param d the new diff betweend the two array element types.
3568 void
element_type_diff(diff_sptr d)3569 array_diff::element_type_diff(diff_sptr d)
3570 {priv_->element_type_diff_ = d;}
3571
3572 /// @return the pretty representation for the current instance of @ref
3573 /// array_diff.
3574 const string&
get_pretty_representation() const3575 array_diff::get_pretty_representation() const
3576 {
3577 if (diff::priv_->pretty_representation_.empty())
3578 {
3579 std::ostringstream o;
3580 o << "array_diff["
3581 << first_subject()->get_pretty_representation()
3582 << ", "
3583 << second_subject()->get_pretty_representation()
3584 << "]";
3585 diff::priv_->pretty_representation_ = o.str();
3586 }
3587 return diff::priv_->pretty_representation_;
3588 }
3589
3590 /// Return true iff the current diff node carries a change.
3591 ///
3592 /// @return true iff the current diff node carries a change.
3593 bool
has_changes() const3594 array_diff::has_changes() const
3595 {
3596 bool l = false;
3597
3598 // the array element types match check for differing dimensions
3599 // etc...
3600 array_type_def_sptr
3601 f = dynamic_pointer_cast<array_type_def>(first_subject()),
3602 s = dynamic_pointer_cast<array_type_def>(second_subject());
3603
3604 if (f->get_name() != s->get_name())
3605 l |= true;
3606 if (f->get_size_in_bits() != s->get_size_in_bits())
3607 l |= true;
3608 if (f->get_alignment_in_bits() != s->get_alignment_in_bits())
3609 l |= true;
3610
3611 l |= element_type_diff()
3612 ? element_type_diff()->has_changes()
3613 : false;
3614
3615 return l;
3616 }
3617
3618
3619 /// @return the kind of local change carried by the current diff node.
3620 /// The value returned is zero if the current node carries no local
3621 /// change.
3622 enum change_kind
has_local_changes() const3623 array_diff::has_local_changes() const
3624 {
3625 ir::change_kind k = ir::NO_CHANGE_KIND;
3626 if (!equals(*first_array(), *second_array(), &k))
3627 return k & ir::ALL_LOCAL_CHANGES_MASK;
3628 return ir::NO_CHANGE_KIND;
3629 }
3630
3631 /// Report the diff in a serialized form.
3632 ///
3633 /// @param out the output stream to serialize the dif to.
3634 ///
3635 /// @param indent the string to use for indenting the report.
3636 void
report(ostream & out,const string & indent) const3637 array_diff::report(ostream& out, const string& indent) const
3638 {
3639 context()->get_reporter()->report(*this, out, indent);
3640 }
3641
3642 /// Compute the diff between two arrays.
3643 ///
3644 /// Note that the two types must have been created in the same @ref
3645 /// environment, otherwise, this function aborts.
3646 ///
3647 /// @param first the first array to consider for the diff.
3648 ///
3649 /// @param second the second array to consider for the diff.
3650 ///
3651 /// @param ctxt the diff context to use.
3652 array_diff_sptr
compute_diff(array_type_def_sptr first,array_type_def_sptr second,diff_context_sptr ctxt)3653 compute_diff(array_type_def_sptr first,
3654 array_type_def_sptr second,
3655 diff_context_sptr ctxt)
3656 {
3657 if (first && second)
3658 ABG_ASSERT(first->get_environment() == second->get_environment());
3659
3660 diff_sptr d = compute_diff_for_types(first->get_element_type(),
3661 second->get_element_type(),
3662 ctxt);
3663 array_diff_sptr result(new array_diff(first, second, d, ctxt));
3664 ctxt->initialize_canonical_diff(result);
3665 return result;
3666 }
3667 // </array_type_def>
3668
3669 // <reference_type_def>
3670
3671 /// Populate the vector of children node of the @ref diff base type
3672 /// sub-object of this instance of @ref reference_diff.
3673 ///
3674 /// The children node can then later be retrieved using
3675 /// diff::children_node().
3676 void
chain_into_hierarchy()3677 reference_diff::chain_into_hierarchy()
3678 {append_child_node(underlying_type_diff());}
3679
3680 /// Constructor for reference_diff
3681 ///
3682 /// @param first the first reference_type of the diff.
3683 ///
3684 /// @param second the second reference_type of the diff.
3685 ///
3686 /// @param ctxt the diff context to use.
reference_diff(const reference_type_def_sptr first,const reference_type_def_sptr second,diff_sptr underlying,diff_context_sptr ctxt)3687 reference_diff::reference_diff(const reference_type_def_sptr first,
3688 const reference_type_def_sptr second,
3689 diff_sptr underlying,
3690 diff_context_sptr ctxt)
3691 : type_diff_base(first, second, ctxt),
3692 priv_(new priv(underlying))
3693 {}
3694
3695 /// Finish building the current instance of @ref reference_diff.
3696 void
finish_diff_type()3697 reference_diff::finish_diff_type()
3698 {
3699 if (diff::priv_->finished_)
3700 return;
3701 chain_into_hierarchy();
3702 diff::priv_->finished_ = true;
3703 }
3704
3705 /// Getter for the first reference of the diff.
3706 ///
3707 /// @return the first reference of the diff.
3708 reference_type_def_sptr
first_reference() const3709 reference_diff::first_reference() const
3710 {return dynamic_pointer_cast<reference_type_def>(first_subject());}
3711
3712 /// Getter for the second reference of the diff.
3713 ///
3714 /// @return for the second reference of the diff.
3715 reference_type_def_sptr
second_reference() const3716 reference_diff::second_reference() const
3717 {return dynamic_pointer_cast<reference_type_def>(second_subject());}
3718
3719
3720 /// Getter for the diff between the two referred-to types.
3721 ///
3722 /// @return the diff between the two referred-to types.
3723 const diff_sptr&
underlying_type_diff() const3724 reference_diff::underlying_type_diff() const
3725 {return priv_->underlying_type_diff_;}
3726
3727 /// Setter for the diff between the two referred-to types.
3728 ///
3729 /// @param d the new diff betweend the two referred-to types.
3730 diff_sptr&
underlying_type_diff(diff_sptr d)3731 reference_diff::underlying_type_diff(diff_sptr d)
3732 {
3733 priv_->underlying_type_diff_ = d;
3734 return priv_->underlying_type_diff_;
3735 }
3736
3737 /// @return the pretty representation for the current instance of @ref
3738 /// reference_diff.
3739 const string&
get_pretty_representation() const3740 reference_diff::get_pretty_representation() const
3741 {
3742 if (diff::priv_->pretty_representation_.empty())
3743 {
3744 std::ostringstream o;
3745 o << "reference_diff["
3746 << first_subject()->get_pretty_representation()
3747 << ", "
3748 << second_subject()->get_pretty_representation()
3749 << "]";
3750 diff::priv_->pretty_representation_ = o.str();
3751 }
3752 return diff::priv_->pretty_representation_;
3753 }
3754
3755 /// Return true iff the current diff node carries a change.
3756 ///
3757 /// @return true iff the current diff node carries a change.
3758 bool
has_changes() const3759 reference_diff::has_changes() const
3760 {
3761 return first_reference() != second_reference();
3762 }
3763
3764 /// @return the kind of local change carried by the current diff node.
3765 /// The value returned is zero if the current node carries no local
3766 /// change.
3767 enum change_kind
has_local_changes() const3768 reference_diff::has_local_changes() const
3769 {
3770 ir::change_kind k = ir::NO_CHANGE_KIND;
3771 if (!equals(*first_reference(), *second_reference(), &k))
3772 return k & ir::ALL_LOCAL_CHANGES_MASK;
3773 return ir::NO_CHANGE_KIND;
3774 }
3775
3776 /// Report the diff in a serialized form.
3777 ///
3778 /// @param out the output stream to serialize the dif to.
3779 ///
3780 /// @param indent the string to use for indenting the report.
3781 void
report(ostream & out,const string & indent) const3782 reference_diff::report(ostream& out, const string& indent) const
3783 {
3784 context()->get_reporter()->report(*this, out, indent);
3785 }
3786
3787 /// Compute the diff between two references.
3788 ///
3789 /// Note that the two types must have been created in the same @ref
3790 /// environment, otherwise, this function aborts.
3791 ///
3792 /// @param first the first reference to consider for the diff.
3793 ///
3794 /// @param second the second reference to consider for the diff.
3795 ///
3796 /// @param ctxt the diff context to use.
3797 reference_diff_sptr
compute_diff(reference_type_def_sptr first,reference_type_def_sptr second,diff_context_sptr ctxt)3798 compute_diff(reference_type_def_sptr first,
3799 reference_type_def_sptr second,
3800 diff_context_sptr ctxt)
3801 {
3802 if (first && second)
3803 ABG_ASSERT(first->get_environment() == second->get_environment());
3804
3805 diff_sptr d = compute_diff_for_types(first->get_pointed_to_type(),
3806 second->get_pointed_to_type(),
3807 ctxt);
3808 reference_diff_sptr result(new reference_diff(first, second, d, ctxt));
3809 ctxt->initialize_canonical_diff(result);
3810 return result;
3811 }
3812 // </reference_type_def>
3813
3814 // <qualified_type_diff stuff>
3815
3816 /// Populate the vector of children node of the @ref diff base type
3817 /// sub-object of this instance of @ref qualified_type_diff.
3818 ///
3819 /// The children node can then later be retrieved using
3820 /// diff::children_node().
3821 void
chain_into_hierarchy()3822 qualified_type_diff::chain_into_hierarchy()
3823 {append_child_node(leaf_underlying_type_diff());}
3824
3825 /// Constructor for qualified_type_diff.
3826 ///
3827 /// @param first the first qualified type of the diff.
3828 ///
3829 /// @param second the second qualified type of the diff.
3830 ///
3831 /// @param ctxt the diff context to use.
qualified_type_diff(qualified_type_def_sptr first,qualified_type_def_sptr second,diff_sptr under,diff_context_sptr ctxt)3832 qualified_type_diff::qualified_type_diff(qualified_type_def_sptr first,
3833 qualified_type_def_sptr second,
3834 diff_sptr under,
3835 diff_context_sptr ctxt)
3836 : type_diff_base(first, second, ctxt),
3837 priv_(new priv(under))
3838 {}
3839
3840 /// Finish building the current instance of @ref qualified_type_diff.
3841 void
finish_diff_type()3842 qualified_type_diff::finish_diff_type()
3843 {
3844 if (diff::priv_->finished_)
3845 return;
3846 chain_into_hierarchy();
3847 diff::priv_->finished_ = true;
3848 }
3849
3850 /// Getter for the first qualified type of the diff.
3851 ///
3852 /// @return the first qualified type of the diff.
3853 const qualified_type_def_sptr
first_qualified_type() const3854 qualified_type_diff::first_qualified_type() const
3855 {return dynamic_pointer_cast<qualified_type_def>(first_subject());}
3856
3857 /// Getter for the second qualified type of the diff.
3858 ///
3859 /// @return the second qualified type of the diff.
3860 const qualified_type_def_sptr
second_qualified_type() const3861 qualified_type_diff::second_qualified_type() const
3862 {return dynamic_pointer_cast<qualified_type_def>(second_subject());}
3863
3864 /// Getter for the diff between the underlying types of the two
3865 /// qualified types.
3866 ///
3867 /// @return the diff between the underlying types of the two qualified
3868 /// types.
3869 diff_sptr
underlying_type_diff() const3870 qualified_type_diff::underlying_type_diff() const
3871 {return priv_->underlying_type_diff;}
3872
3873 /// Getter for the diff between the most underlying non-qualified
3874 /// types of two qualified types.
3875 ///
3876 /// @return the diff between the most underlying non-qualified types
3877 /// of two qualified types.
3878 diff_sptr
leaf_underlying_type_diff() const3879 qualified_type_diff::leaf_underlying_type_diff() const
3880 {
3881 if (!priv_->leaf_underlying_type_diff)
3882 priv_->leaf_underlying_type_diff
3883 = compute_diff_for_types(get_leaf_type(first_qualified_type()),
3884 get_leaf_type(second_qualified_type()),
3885 context());
3886
3887 return priv_->leaf_underlying_type_diff;
3888 }
3889
3890 /// Setter for the diff between the underlying types of the two
3891 /// qualified types.
3892 ///
3893 /// @return the diff between the underlying types of the two qualified
3894 /// types.
3895 void
underlying_type_diff(const diff_sptr d)3896 qualified_type_diff::underlying_type_diff(const diff_sptr d)
3897 {priv_->underlying_type_diff = d;}
3898
3899 /// @return the pretty representation of the current instance of @ref
3900 /// qualified_type_diff.
3901 const string&
get_pretty_representation() const3902 qualified_type_diff::get_pretty_representation() const
3903 {
3904 if (diff::priv_->pretty_representation_.empty())
3905 {
3906 std::ostringstream o;
3907 o << "qualified_type_diff["
3908 << first_subject()->get_pretty_representation()
3909 << ", "
3910 << second_subject()->get_pretty_representation()
3911 << "]";
3912 diff::priv_->pretty_representation_ = o.str();
3913 }
3914 return diff::priv_->pretty_representation_;
3915 }
3916
3917 /// Return true iff the current diff node carries a change.
3918 ///
3919 /// @return true iff the current diff node carries a change.
3920 bool
has_changes() const3921 qualified_type_diff::has_changes() const
3922 {return first_qualified_type() != second_qualified_type();}
3923
3924 /// @return the kind of local change carried by the current diff node.
3925 /// The value returned is zero if the current node carries no local
3926 /// change.
3927 enum change_kind
has_local_changes() const3928 qualified_type_diff::has_local_changes() const
3929 {
3930 ir::change_kind k = ir::NO_CHANGE_KIND;
3931 if (!equals(*first_qualified_type(), *second_qualified_type(), &k))
3932 return k & ir::ALL_LOCAL_CHANGES_MASK;
3933 return ir::NO_CHANGE_KIND;
3934 }
3935
3936 /// Report the diff in a serialized form.
3937 ///
3938 /// @param out the output stream to serialize to.
3939 ///
3940 /// @param indent the string to use to indent the lines of the report.
3941 void
report(ostream & out,const string & indent) const3942 qualified_type_diff::report(ostream& out, const string& indent) const
3943 {
3944 context()->get_reporter()->report(*this, out, indent);
3945 }
3946
3947 /// Compute the diff between two qualified types.
3948 ///
3949 /// Note that the two types must have been created in the same @ref
3950 /// environment, otherwise, this function aborts.
3951 ///
3952 /// @param first the first qualified type to consider for the diff.
3953 ///
3954 /// @param second the second qualified type to consider for the diff.
3955 ///
3956 /// @param ctxt the diff context to use.
3957 qualified_type_diff_sptr
compute_diff(const qualified_type_def_sptr first,const qualified_type_def_sptr second,diff_context_sptr ctxt)3958 compute_diff(const qualified_type_def_sptr first,
3959 const qualified_type_def_sptr second,
3960 diff_context_sptr ctxt)
3961 {
3962 if (first && second)
3963 ABG_ASSERT(first->get_environment() == second->get_environment());
3964
3965 diff_sptr d = compute_diff_for_types(first->get_underlying_type(),
3966 second->get_underlying_type(),
3967 ctxt);
3968 qualified_type_diff_sptr result(new qualified_type_diff(first, second,
3969 d, ctxt));
3970 ctxt->initialize_canonical_diff(result);
3971 return result;
3972 }
3973
3974 // </qualified_type_diff stuff>
3975
3976 // <enum_diff stuff>
3977
3978 /// Clear the lookup tables useful for reporting an enum_diff.
3979 ///
3980 /// This function must be updated each time a lookup table is added or
3981 /// removed from the class_diff::priv.
3982 void
clear_lookup_tables()3983 enum_diff::clear_lookup_tables()
3984 {
3985 priv_->deleted_enumerators_.clear();
3986 priv_->inserted_enumerators_.clear();
3987 priv_->changed_enumerators_.clear();
3988 }
3989
3990 /// Tests if the lookup tables are empty.
3991 ///
3992 /// @return true if the lookup tables are empty, false otherwise.
3993 bool
lookup_tables_empty() const3994 enum_diff::lookup_tables_empty() const
3995 {
3996 return (priv_->deleted_enumerators_.empty()
3997 && priv_->inserted_enumerators_.empty()
3998 && priv_->changed_enumerators_.empty());
3999 }
4000
4001 /// If the lookup tables are not yet built, walk the differences and
4002 /// fill the lookup tables.
4003 void
ensure_lookup_tables_populated()4004 enum_diff::ensure_lookup_tables_populated()
4005 {
4006 if (!lookup_tables_empty())
4007 return;
4008
4009 {
4010 edit_script e = priv_->enumerators_changes_;
4011
4012 for (vector<deletion>::const_iterator it = e.deletions().begin();
4013 it != e.deletions().end();
4014 ++it)
4015 {
4016 unsigned i = it->index();
4017 const enum_type_decl::enumerator& n =
4018 first_enum()->get_enumerators()[i];
4019 const string& name = n.get_name();
4020 ABG_ASSERT(priv_->deleted_enumerators_.find(n.get_name())
4021 == priv_->deleted_enumerators_.end());
4022 priv_->deleted_enumerators_[name] = n;
4023 }
4024
4025 for (vector<insertion>::const_iterator it = e.insertions().begin();
4026 it != e.insertions().end();
4027 ++it)
4028 {
4029 for (vector<unsigned>::const_iterator iit =
4030 it->inserted_indexes().begin();
4031 iit != it->inserted_indexes().end();
4032 ++iit)
4033 {
4034 unsigned i = *iit;
4035 const enum_type_decl::enumerator& n =
4036 second_enum()->get_enumerators()[i];
4037 const string& name = n.get_name();
4038 ABG_ASSERT(priv_->inserted_enumerators_.find(n.get_name())
4039 == priv_->inserted_enumerators_.end());
4040 string_enumerator_map::const_iterator j =
4041 priv_->deleted_enumerators_.find(name);
4042 if (j == priv_->deleted_enumerators_.end())
4043 priv_->inserted_enumerators_[name] = n;
4044 else
4045 {
4046 if (j->second != n)
4047 priv_->changed_enumerators_[j->first] =
4048 std::make_pair(j->second, n);
4049 priv_->deleted_enumerators_.erase(j);
4050 }
4051 }
4052 }
4053 }
4054 }
4055
4056 /// Populate the vector of children node of the @ref diff base type
4057 /// sub-object of this instance of @ref enum_diff.
4058 ///
4059 /// The children node can then later be retrieved using
4060 /// diff::children_node().
4061 void
chain_into_hierarchy()4062 enum_diff::chain_into_hierarchy()
4063 {append_child_node(underlying_type_diff());}
4064
4065 /// Constructor for enum_diff.
4066 ///
4067 /// @param first the first enum type of the diff.
4068 ///
4069 /// @param second the second enum type of the diff.
4070 ///
4071 /// @param underlying_type_diff the diff of the two underlying types
4072 /// of the two enum types.
4073 ///
4074 /// @param ctxt the diff context to use.
enum_diff(const enum_type_decl_sptr first,const enum_type_decl_sptr second,const diff_sptr underlying_type_diff,const diff_context_sptr ctxt)4075 enum_diff::enum_diff(const enum_type_decl_sptr first,
4076 const enum_type_decl_sptr second,
4077 const diff_sptr underlying_type_diff,
4078 const diff_context_sptr ctxt)
4079 : type_diff_base(first, second, ctxt),
4080 priv_(new priv(underlying_type_diff))
4081 {}
4082
4083 /// Finish building the current instance of @ref enum_diff.
4084 void
finish_diff_type()4085 enum_diff::finish_diff_type()
4086 {
4087 if (diff::priv_->finished_)
4088 return;
4089 chain_into_hierarchy();
4090 diff::priv_->finished_ = true;
4091 }
4092
4093 /// @return the first enum of the diff.
4094 const enum_type_decl_sptr
first_enum() const4095 enum_diff::first_enum() const
4096 {return dynamic_pointer_cast<enum_type_decl>(first_subject());}
4097
4098 /// @return the second enum of the diff.
4099 const enum_type_decl_sptr
second_enum() const4100 enum_diff::second_enum() const
4101 {return dynamic_pointer_cast<enum_type_decl>(second_subject());}
4102
4103 /// @return the diff of the two underlying enum types.
4104 diff_sptr
underlying_type_diff() const4105 enum_diff::underlying_type_diff() const
4106 {return priv_->underlying_type_diff_;}
4107
4108 /// @return a map of the enumerators that were deleted.
4109 const string_enumerator_map&
deleted_enumerators() const4110 enum_diff::deleted_enumerators() const
4111 {return priv_->deleted_enumerators_;}
4112
4113 /// @return a map of the enumerators that were inserted
4114 const string_enumerator_map&
inserted_enumerators() const4115 enum_diff::inserted_enumerators() const
4116 {return priv_->inserted_enumerators_;}
4117
4118 /// @return a map of the enumerators that were changed
4119 const string_changed_enumerator_map&
changed_enumerators() const4120 enum_diff::changed_enumerators() const
4121 {return priv_->changed_enumerators_;}
4122
4123 /// @return the pretty representation of the current instance of @ref
4124 /// enum_diff.
4125 const string&
get_pretty_representation() const4126 enum_diff::get_pretty_representation() const
4127 {
4128 if (diff::priv_->pretty_representation_.empty())
4129 {
4130 std::ostringstream o;
4131 o << "enum_diff["
4132 << first_subject()->get_pretty_representation()
4133 << ", "
4134 << second_subject()->get_pretty_representation()
4135 << "]";
4136 diff::priv_->pretty_representation_ = o.str();
4137 }
4138 return diff::priv_->pretty_representation_;
4139 }
4140
4141 /// Return true iff the current diff node carries a change.
4142 ///
4143 /// @return true iff the current diff node carries a change.
4144 bool
has_changes() const4145 enum_diff::has_changes() const
4146 {return first_enum() != second_enum();}
4147
4148 /// @return the kind of local change carried by the current diff node.
4149 /// The value returned is zero if the current node carries no local
4150 /// change.
4151 enum change_kind
has_local_changes() const4152 enum_diff::has_local_changes() const
4153 {
4154 ir::change_kind k = ir::NO_CHANGE_KIND;
4155 if (!equals(*first_enum(), *second_enum(), &k))
4156 return k & ir::ALL_LOCAL_CHANGES_MASK;
4157 return ir::NO_CHANGE_KIND;
4158 }
4159
4160 /// Report the differences between the two enums.
4161 ///
4162 /// @param out the output stream to send the report to.
4163 ///
4164 /// @param indent the string to use for indentation.
4165 void
report(ostream & out,const string & indent) const4166 enum_diff::report(ostream& out, const string& indent) const
4167 {
4168 context()->get_reporter()->report(*this, out, indent);
4169 }
4170
4171 /// Compute the set of changes between two instances of @ref
4172 /// enum_type_decl.
4173 ///
4174 /// Note that the two types must have been created in the same @ref
4175 /// environment, otherwise, this function aborts.
4176 ///
4177 /// @param first a pointer to the first enum_type_decl to consider.
4178 ///
4179 /// @param second a pointer to the second enum_type_decl to consider.
4180 ///
4181 /// @return the resulting diff of the two enums @p first and @p
4182 /// second.
4183 ///
4184 /// @param ctxt the diff context to use.
4185 enum_diff_sptr
compute_diff(const enum_type_decl_sptr first,const enum_type_decl_sptr second,diff_context_sptr ctxt)4186 compute_diff(const enum_type_decl_sptr first,
4187 const enum_type_decl_sptr second,
4188 diff_context_sptr ctxt)
4189 {
4190 if (first && second)
4191 ABG_ASSERT(first->get_environment() == second->get_environment());
4192
4193 diff_sptr ud = compute_diff_for_types(first->get_underlying_type(),
4194 second->get_underlying_type(),
4195 ctxt);
4196 enum_diff_sptr d(new enum_diff(first, second, ud, ctxt));
4197 bool s = first->get_environment()->use_enum_binary_only_equality();
4198 first->get_environment()->use_enum_binary_only_equality(true);
4199 if (first != second)
4200 {
4201 first->get_environment()->use_enum_binary_only_equality(false);
4202 compute_diff(first->get_enumerators().begin(),
4203 first->get_enumerators().end(),
4204 second->get_enumerators().begin(),
4205 second->get_enumerators().end(),
4206 d->priv_->enumerators_changes_);
4207 d->ensure_lookup_tables_populated();
4208 }
4209 first->get_environment()->use_enum_binary_only_equality(s);
4210 ctxt->initialize_canonical_diff(d);
4211
4212 return d;
4213 }
4214 // </enum_diff stuff>
4215
4216 // <class_or_union_diff stuff>
4217
4218 /// Test if the current diff node carries a member type change for a
4219 /// member type which name is the same as the name of a given type
4220 /// declaration.
4221 ///
4222 /// @param d the type declaration which name should be equal to the
4223 /// name of the member type that might have changed.
4224 ///
4225 /// @return the member type that has changed, iff there were a member
4226 /// type (which name is the same as the name of @p d) that changed.
4227 /// Note that the member type that is returned is the new value of the
4228 /// member type that changed.
4229 type_or_decl_base_sptr
member_type_has_changed(decl_base_sptr d) const4230 class_or_union_diff::priv::member_type_has_changed(decl_base_sptr d) const
4231 {
4232 string qname = d->get_qualified_name();
4233 string_diff_sptr_map::const_iterator it =
4234 changed_member_types_.find(qname);
4235
4236 return ((it == changed_member_types_.end())
4237 ? type_or_decl_base_sptr()
4238 : it->second->second_subject());
4239 }
4240
4241 /// Test if the current diff node carries a data member change for a
4242 /// data member which name is the same as the name of a given type
4243 /// declaration.
4244 ///
4245 /// @param d the type declaration which name should be equal to the
4246 /// name of the data member that might have changed.
4247 ///
4248 /// @return the data member that has changed, iff there were a data
4249 /// member type (which name is the same as the name of @p d) that
4250 /// changed. Note that the data member that is returned is the new
4251 /// value of the data member that changed.
4252 decl_base_sptr
subtype_changed_dm(decl_base_sptr d) const4253 class_or_union_diff::priv::subtype_changed_dm(decl_base_sptr d) const
4254 {
4255 string qname = d->get_qualified_name();
4256 string_var_diff_sptr_map::const_iterator it =
4257 subtype_changed_dm_.find(qname);
4258
4259 if (it == subtype_changed_dm_.end())
4260 return decl_base_sptr();
4261 return it->second->second_var();
4262 }
4263
4264 /// Test if the current diff node carries a member class template
4265 /// change for a member class template which name is the same as the
4266 /// name of a given type declaration.
4267 ///
4268 /// @param d the type declaration which name should be equal to the
4269 /// name of the member class template that might have changed.
4270 ///
4271 /// @return the member class template that has changed, iff there were
4272 /// a member class template (which name is the same as the name of @p
4273 /// d) that changed. Note that the member class template that is
4274 /// returned is the new value of the member class template that
4275 /// changed.
4276 decl_base_sptr
member_class_tmpl_has_changed(decl_base_sptr d) const4277 class_or_union_diff::priv::member_class_tmpl_has_changed(decl_base_sptr d) const
4278 {
4279 string qname = d->get_qualified_name();
4280 string_diff_sptr_map::const_iterator it =
4281 changed_member_class_tmpls_.find(qname);
4282
4283 return ((it == changed_member_class_tmpls_.end())
4284 ? decl_base_sptr()
4285 : dynamic_pointer_cast<decl_base>(it->second->second_subject()));
4286 }
4287
4288 /// Get the number of non static data members that were deleted.
4289 ///
4290 /// @return the number of non static data members that were deleted.
4291 size_t
get_deleted_non_static_data_members_number() const4292 class_or_union_diff::priv::get_deleted_non_static_data_members_number() const
4293 {
4294 size_t result = 0;
4295
4296 for (string_decl_base_sptr_map::const_iterator i =
4297 deleted_data_members_.begin();
4298 i != deleted_data_members_.end();
4299 ++i)
4300 if (is_member_decl(i->second)
4301 && !get_member_is_static(i->second))
4302 ++result;
4303
4304 return result;
4305 }
4306
4307 /// Get the number of non static data members that were inserted.
4308 ///
4309 /// @return the number of non static data members that were inserted.
4310 size_t
get_inserted_non_static_data_members_number() const4311 class_or_union_diff::priv::get_inserted_non_static_data_members_number() const
4312 {
4313 size_t result = 0;
4314
4315 for (string_decl_base_sptr_map::const_iterator i =
4316 inserted_data_members_.begin();
4317 i != inserted_data_members_.end();
4318 ++i)
4319 if (is_member_decl(i->second)
4320 && !get_member_is_static(i->second))
4321 ++result;
4322
4323 return result;
4324 }
4325
4326 /// Get the number of data member sub-type changes carried by the
4327 /// current diff node that were filtered out.
4328 ///
4329 /// @param local_only if true, it means that only (filtered) local
4330 /// changes are considered.
4331 ///
4332 /// @return the number of data member sub-type changes carried by the
4333 /// current diff node that were filtered out.
4334 size_t
count_filtered_subtype_changed_dm(bool local_only)4335 class_or_union_diff::priv::count_filtered_subtype_changed_dm(bool local_only)
4336 {
4337 size_t num_filtered= 0;
4338 for (var_diff_sptrs_type::const_iterator i =
4339 sorted_subtype_changed_dm_.begin();
4340 i != sorted_subtype_changed_dm_.end();
4341 ++i)
4342 {
4343 if (local_only)
4344 {
4345 if ((*i)->has_changes()
4346 && !(*i)->has_local_changes_to_be_reported())
4347 ++num_filtered;
4348 }
4349 else
4350 {
4351 if ((*i)->is_filtered_out())
4352 ++num_filtered;
4353 }
4354 }
4355 return num_filtered;
4356 }
4357
4358 /// Get the number of data member changes carried by the current diff
4359 /// node that were filtered out.
4360 ///
4361 /// @param local_only if true, it means that only (filtered) local
4362 /// changes are considered.
4363 ///
4364 /// @return the number of data member changes carried by the current
4365 /// diff node that were filtered out.
4366 size_t
count_filtered_changed_dm(bool local_only)4367 class_or_union_diff::priv::count_filtered_changed_dm(bool local_only)
4368 {
4369 size_t num_filtered= 0;
4370
4371 for (unsigned_var_diff_sptr_map::const_iterator i = changed_dm_.begin();
4372 i != changed_dm_.end();
4373 ++i)
4374 {
4375 diff_sptr diff = i->second;
4376 if (local_only)
4377 {
4378 if ((diff->has_changes() && !diff->has_local_changes_to_be_reported())
4379 || diff->is_filtered_out())
4380 ++num_filtered;
4381 }
4382 else
4383 {
4384 if (diff->is_filtered_out())
4385 ++num_filtered;
4386 }
4387 }
4388 return num_filtered;
4389 }
4390
4391 /// Skip the processing of the current member function if its
4392 /// virtual-ness is disallowed by the user.
4393 ///
4394 /// This is to be used in the member functions below that are used to
4395 /// count the number of filtered inserted, deleted and changed member
4396 /// functions.
4397 #define SKIP_MEM_FN_IF_VIRTUALITY_DISALLOWED \
4398 do { \
4399 if (get_member_function_is_virtual(f) \
4400 || get_member_function_is_virtual(s)) \
4401 { \
4402 if (!(allowed_category | VIRTUAL_MEMBER_CHANGE_CATEGORY)) \
4403 continue; \
4404 } \
4405 else \
4406 { \
4407 if (!(allowed_category | NON_VIRT_MEM_FUN_CHANGE_CATEGORY)) \
4408 continue; \
4409 } \
4410 } while (false)
4411
4412 /// Get the number of member functions changes carried by the current
4413 /// diff node that were filtered out.
4414 ///
4415 /// @return the number of member functions changes carried by the
4416 /// current diff node that were filtered out.
4417 size_t
count_filtered_changed_mem_fns(const diff_context_sptr & ctxt)4418 class_or_union_diff::priv::count_filtered_changed_mem_fns
4419 (const diff_context_sptr& ctxt)
4420 {
4421 size_t count = 0;
4422 diff_category allowed_category = ctxt->get_allowed_category();
4423
4424 for (function_decl_diff_sptrs_type::const_iterator i =
4425 sorted_changed_member_functions_.begin();
4426 i != sorted_changed_member_functions_.end();
4427 ++i)
4428 {
4429 method_decl_sptr f =
4430 dynamic_pointer_cast<method_decl>
4431 ((*i)->first_function_decl());
4432 ABG_ASSERT(f);
4433
4434 method_decl_sptr s =
4435 dynamic_pointer_cast<method_decl>
4436 ((*i)->second_function_decl());
4437 ABG_ASSERT(s);
4438
4439 SKIP_MEM_FN_IF_VIRTUALITY_DISALLOWED;
4440
4441 diff_sptr diff = *i;
4442 ctxt->maybe_apply_filters(diff);
4443
4444 if (diff->is_filtered_out())
4445 ++count;
4446 }
4447
4448 return count;
4449 }
4450
4451 /// Get the number of member functions insertions carried by the current
4452 /// diff node that were filtered out.
4453 ///
4454 /// @return the number of member functions insertions carried by the
4455 /// current diff node that were filtered out.
4456 size_t
count_filtered_inserted_mem_fns(const diff_context_sptr & ctxt)4457 class_or_union_diff::priv::count_filtered_inserted_mem_fns
4458 (const diff_context_sptr& ctxt)
4459 {
4460 size_t count = 0;
4461 diff_category allowed_category = ctxt->get_allowed_category();
4462
4463 for (string_member_function_sptr_map::const_iterator i =
4464 inserted_member_functions_.begin();
4465 i != inserted_member_functions_.end();
4466 ++i)
4467 {
4468 method_decl_sptr f = i->second,
4469 s = i->second;
4470
4471 SKIP_MEM_FN_IF_VIRTUALITY_DISALLOWED;
4472
4473 diff_sptr diff = compute_diff_for_decls(f, s, ctxt);
4474 ctxt->maybe_apply_filters(diff);
4475
4476 if (diff->get_category() != NO_CHANGE_CATEGORY
4477 && diff->is_filtered_out())
4478 ++count;
4479 }
4480
4481 return count;
4482 }
4483
4484 /// Get the number of member functions deletions carried by the current
4485 /// diff node that were filtered out.
4486 ///
4487 /// @return the number of member functions deletions carried by the
4488 /// current diff node that were filtered out.
4489 size_t
count_filtered_deleted_mem_fns(const diff_context_sptr & ctxt)4490 class_or_union_diff::priv::count_filtered_deleted_mem_fns
4491 (const diff_context_sptr& ctxt)
4492 {
4493 size_t count = 0;
4494 diff_category allowed_category = ctxt->get_allowed_category();
4495
4496 for (string_member_function_sptr_map::const_iterator i =
4497 deleted_member_functions_.begin();
4498 i != deleted_member_functions_.end();
4499 ++i)
4500 {
4501 method_decl_sptr f = i->second,
4502 s = i->second;
4503
4504 SKIP_MEM_FN_IF_VIRTUALITY_DISALLOWED;
4505
4506 diff_sptr diff = compute_diff_for_decls(f, s, ctxt);
4507 ctxt->maybe_apply_filters(diff);
4508
4509 if (diff->get_category() != NO_CHANGE_CATEGORY
4510 && diff->is_filtered_out())
4511 ++count;
4512 }
4513
4514 return count;
4515 }
4516
4517 /// Clear the lookup tables useful for reporting.
4518 ///
4519 /// This function must be updated each time a lookup table is added or
4520 /// removed from the class_or_union_diff::priv.
4521 void
clear_lookup_tables()4522 class_or_union_diff::clear_lookup_tables()
4523 {
4524 priv_->deleted_member_types_.clear();
4525 priv_->inserted_member_types_.clear();
4526 priv_->changed_member_types_.clear();
4527 priv_->deleted_data_members_.clear();
4528 priv_->inserted_data_members_.clear();
4529 priv_->subtype_changed_dm_.clear();
4530 priv_->deleted_member_functions_.clear();
4531 priv_->inserted_member_functions_.clear();
4532 priv_->changed_member_functions_.clear();
4533 priv_->deleted_member_class_tmpls_.clear();
4534 priv_->inserted_member_class_tmpls_.clear();
4535 priv_->changed_member_class_tmpls_.clear();
4536 }
4537
4538 /// Tests if the lookup tables are empty.
4539 ///
4540 /// @return true if the lookup tables are empty, false otherwise.
4541 bool
lookup_tables_empty(void) const4542 class_or_union_diff::lookup_tables_empty(void) const
4543 {
4544 return (priv_->deleted_member_types_.empty()
4545 && priv_->inserted_member_types_.empty()
4546 && priv_->changed_member_types_.empty()
4547 && priv_->deleted_data_members_.empty()
4548 && priv_->inserted_data_members_.empty()
4549 && priv_->subtype_changed_dm_.empty()
4550 && priv_->inserted_member_functions_.empty()
4551 && priv_->deleted_member_functions_.empty()
4552 && priv_->changed_member_functions_.empty()
4553 && priv_->deleted_member_class_tmpls_.empty()
4554 && priv_->inserted_member_class_tmpls_.empty()
4555 && priv_->changed_member_class_tmpls_.empty());
4556 }
4557
4558 /// If the lookup tables are not yet built, walk the differences and
4559 /// fill them.
4560 void
ensure_lookup_tables_populated(void) const4561 class_or_union_diff::ensure_lookup_tables_populated(void) const
4562 {
4563 {
4564 edit_script& e = priv_->member_types_changes_;
4565
4566 for (vector<deletion>::const_iterator it = e.deletions().begin();
4567 it != e.deletions().end();
4568 ++it)
4569 {
4570 unsigned i = it->index();
4571 decl_base_sptr d =
4572 get_type_declaration(first_class_or_union()->get_member_types()[i]);
4573 class_or_union_sptr record_type = is_class_or_union_type(d);
4574 if (record_type && record_type->get_is_declaration_only())
4575 continue;
4576 string name = d->get_name();
4577 priv_->deleted_member_types_[name] = d;
4578 }
4579
4580 for (vector<insertion>::const_iterator it = e.insertions().begin();
4581 it != e.insertions().end();
4582 ++it)
4583 {
4584 for (vector<unsigned>::const_iterator iit =
4585 it->inserted_indexes().begin();
4586 iit != it->inserted_indexes().end();
4587 ++iit)
4588 {
4589 unsigned i = *iit;
4590 decl_base_sptr d =
4591 get_type_declaration(second_class_or_union()->get_member_types()[i]);
4592 class_or_union_sptr record_type = is_class_or_union_type(d);
4593 if (record_type && record_type->get_is_declaration_only())
4594 continue;
4595 string name = d->get_name();
4596 string_decl_base_sptr_map::const_iterator j =
4597 priv_->deleted_member_types_.find(name);
4598 if (j != priv_->deleted_member_types_.end())
4599 {
4600 if (*j->second != *d)
4601 priv_->changed_member_types_[name] =
4602 compute_diff(j->second, d, context());
4603
4604 priv_->deleted_member_types_.erase(j);
4605 }
4606 else
4607 priv_->inserted_member_types_[name] = d;
4608 }
4609 }
4610 }
4611
4612 {
4613 edit_script& e = priv_->data_members_changes_;
4614
4615 for (vector<deletion>::const_iterator it = e.deletions().begin();
4616 it != e.deletions().end();
4617 ++it)
4618 {
4619 unsigned i = it->index();
4620 var_decl_sptr data_member =
4621 is_var_decl(first_class_or_union()->get_non_static_data_members()[i]);
4622 string name = data_member->get_anon_dm_reliable_name();
4623
4624 ABG_ASSERT(priv_->deleted_data_members_.find(name)
4625 == priv_->deleted_data_members_.end());
4626 priv_->deleted_data_members_[name] = data_member;
4627 }
4628
4629 for (vector<insertion>::const_iterator it = e.insertions().begin();
4630 it != e.insertions().end();
4631 ++it)
4632 {
4633 for (vector<unsigned>::const_iterator iit =
4634 it->inserted_indexes().begin();
4635 iit != it->inserted_indexes().end();
4636 ++iit)
4637 {
4638 unsigned i = *iit;
4639 decl_base_sptr d =
4640 second_class_or_union()->get_non_static_data_members()[i];
4641 var_decl_sptr added_dm = is_var_decl(d);
4642 string name = added_dm->get_anon_dm_reliable_name();
4643 ABG_ASSERT(priv_->inserted_data_members_.find(name)
4644 == priv_->inserted_data_members_.end());
4645
4646 bool ignore_added_anonymous_data_member = false;
4647 if (is_anonymous_data_member(added_dm))
4648 {
4649 //
4650 // Handle insertion of anonymous data member to
4651 // replace existing data members.
4652 //
4653 // For instance consider this:
4654 // struct S
4655 // {
4656 // int a;
4657 // int b;
4658 // int c;
4659 // };// end struct S
4660 //
4661 // Where the data members 'a' and 'b' are replaced
4662 // by an anonymous data member without changing the
4663 // effective bit layout of the structure:
4664 //
4665 // struct S
4666 // {
4667 // struct
4668 // {
4669 // union
4670 // {
4671 // int a;
4672 // char a_1;
4673 // };
4674 // union
4675 // {
4676 // int b;
4677 // char b_1;
4678 // };
4679 // };
4680 // int c;
4681 // }; // end struct S
4682 //
4683 var_decl_sptr replaced_dm, replacing_dm;
4684 bool added_anon_dm_changes_dm = false;
4685 // The vector of data members replaced by anonymous
4686 // data members.
4687 vector<var_decl_sptr> dms_replaced_by_anon_dm;
4688
4689 //
4690 // Let's start collecting the set of data members
4691 // which have been replaced by anonymous types in a
4692 // harmless way. These are going to be collected into
4693 // dms_replaced_by_anon_dm and, ultimately, into
4694 // priv_->dms_replaced_by_adms_
4695 //
4696 for (string_decl_base_sptr_map::const_iterator it =
4697 priv_->deleted_data_members_.begin();
4698 it != priv_->deleted_data_members_.end();
4699 ++it)
4700 {
4701 // We don't support this pattern for anonymous
4702 // data members themselves being replaced. If
4703 // that occurs then we'll just report it verbatim.
4704 if (is_anonymous_data_member(it->second))
4705 continue;
4706
4707 string deleted_dm_name = it->second->get_name();
4708 if ((replacing_dm =
4709 find_data_member_from_anonymous_data_member(added_dm,
4710 deleted_dm_name)))
4711 {
4712 // So it looks like replacing_dm might have
4713 // replaced the data member which name is
4714 // 'deleted_dm_name'. Let's look deeper to be
4715 // sure.
4716 //
4717 // Note that replacing_dm is part (member) of
4718 // an anonymous data member that might replace
4719 // replaced_dm.
4720
4721 // So let's get that replaced data member.
4722 replaced_dm = is_var_decl(it->second);
4723 size_t replaced_dm_offset =
4724 get_data_member_offset(replaced_dm),
4725 replacing_dm_offset =
4726 get_absolute_data_member_offset(replacing_dm);
4727
4728 if (replaced_dm_offset != replacing_dm_offset)
4729 {
4730 // So the replacing data member and the
4731 // replaced data member don't have the
4732 // same offset. This is not the pattern we
4733 // are looking for. Rather, it looks like
4734 // the anonymous data member has *changed*
4735 // the data member.
4736 added_anon_dm_changes_dm = true;
4737 break;
4738 }
4739
4740 if (replaced_dm->get_type()->get_size_in_bits()
4741 == replaced_dm->get_type()->get_size_in_bits())
4742 dms_replaced_by_anon_dm.push_back(replaced_dm);
4743 else
4744 {
4745 added_anon_dm_changes_dm = true;
4746 break;
4747 }
4748 }
4749 }
4750
4751 // Now walk dms_replaced_by_anon_dm to fill up
4752 // priv_->dms_replaced_by_adms_ with the set of data
4753 // members replaced by anonymous data members.
4754 if (!added_anon_dm_changes_dm
4755 && !dms_replaced_by_anon_dm.empty())
4756 {
4757 // See if the added data member isn't too big.
4758 type_base_sptr added_dm_type = added_dm->get_type();
4759 ABG_ASSERT(added_dm_type);
4760 var_decl_sptr new_next_dm =
4761 get_next_data_member(second_class_or_union(),
4762 added_dm);
4763 var_decl_sptr old_next_dm =
4764 first_class_or_union()->find_data_member(new_next_dm);
4765
4766 if (!old_next_dm
4767 || (old_next_dm
4768 && (get_absolute_data_member_offset(old_next_dm)
4769 == get_absolute_data_member_offset(new_next_dm))))
4770 {
4771 // None of the data members that are replaced
4772 // by the added union should be considered as
4773 // having been deleted.
4774 ignore_added_anonymous_data_member = true;
4775 for (vector<var_decl_sptr>::const_iterator i =
4776 dms_replaced_by_anon_dm.begin();
4777 i != dms_replaced_by_anon_dm.end();
4778 ++i)
4779 {
4780 string n = (*i)->get_name();
4781 priv_->dms_replaced_by_adms_[n] =
4782 added_dm;
4783 priv_->deleted_data_members_.erase(n);
4784 }
4785 }
4786 }
4787 }
4788
4789 if (!ignore_added_anonymous_data_member)
4790 {
4791 // Detect changed data members.
4792 //
4793 // A changed data member (that we shall name D) is a data
4794 // member that satisfies the conditions below:
4795 //
4796 // 1/ It must have been added.
4797 //
4798 // 2/ It must have been deleted as well.
4799 //
4800 // 3/ It there must be a non-empty difference between the
4801 // deleted D and the added D.
4802 string_decl_base_sptr_map::const_iterator j =
4803 priv_->deleted_data_members_.find(name);
4804 if (j != priv_->deleted_data_members_.end())
4805 {
4806 if (*j->second != *d)
4807 {
4808 var_decl_sptr old_dm = is_var_decl(j->second);
4809 priv_->subtype_changed_dm_[name]=
4810 compute_diff(old_dm, added_dm, context());
4811 }
4812 priv_->deleted_data_members_.erase(j);
4813 }
4814 else
4815 priv_->inserted_data_members_[name] = d;
4816 }
4817 }
4818 }
4819
4820 // Now detect when a data member is deleted from offset N and
4821 // another one is added to offset N. In that case, we want to be
4822 // able to say that the data member at offset N changed.
4823 for (string_decl_base_sptr_map::const_iterator i =
4824 priv_->deleted_data_members_.begin();
4825 i != priv_->deleted_data_members_.end();
4826 ++i)
4827 {
4828 unsigned offset = get_data_member_offset(i->second);
4829 priv_->deleted_dm_by_offset_[offset] = i->second;
4830 }
4831
4832 for (string_decl_base_sptr_map::const_iterator i =
4833 priv_->inserted_data_members_.begin();
4834 i != priv_->inserted_data_members_.end();
4835 ++i)
4836 {
4837 unsigned offset = get_data_member_offset(i->second);
4838 priv_->inserted_dm_by_offset_[offset] = i->second;
4839 }
4840
4841 for (unsigned_decl_base_sptr_map::const_iterator i =
4842 priv_->inserted_dm_by_offset_.begin();
4843 i != priv_->inserted_dm_by_offset_.end();
4844 ++i)
4845 {
4846 unsigned_decl_base_sptr_map::const_iterator j =
4847 priv_->deleted_dm_by_offset_.find(i->first);
4848 if (j != priv_->deleted_dm_by_offset_.end())
4849 {
4850 var_decl_sptr old_dm = is_var_decl(j->second);
4851 var_decl_sptr new_dm = is_var_decl(i->second);
4852 priv_->changed_dm_[i->first] =
4853 compute_diff(old_dm, new_dm, context());
4854 }
4855 }
4856
4857 for (unsigned_var_diff_sptr_map::const_iterator i =
4858 priv_->changed_dm_.begin();
4859 i != priv_->changed_dm_.end();
4860 ++i)
4861 {
4862 priv_->deleted_dm_by_offset_.erase(i->first);
4863 priv_->inserted_dm_by_offset_.erase(i->first);
4864 priv_->deleted_data_members_.erase
4865 (i->second->first_var()->get_anon_dm_reliable_name());
4866 priv_->inserted_data_members_.erase
4867 (i->second->second_var()->get_anon_dm_reliable_name());
4868 }
4869 }
4870 sort_string_data_member_diff_sptr_map(priv_->subtype_changed_dm_,
4871 priv_->sorted_subtype_changed_dm_);
4872 sort_unsigned_data_member_diff_sptr_map(priv_->changed_dm_,
4873 priv_->sorted_changed_dm_);
4874
4875 {
4876 edit_script& e = priv_->member_class_tmpls_changes_;
4877
4878 for (vector<deletion>::const_iterator it = e.deletions().begin();
4879 it != e.deletions().end();
4880 ++it)
4881 {
4882 unsigned i = it->index();
4883 decl_base_sptr d =
4884 first_class_or_union()->get_member_class_templates()[i]->
4885 as_class_tdecl();
4886 string name = d->get_name();
4887 ABG_ASSERT(priv_->deleted_member_class_tmpls_.find(name)
4888 == priv_->deleted_member_class_tmpls_.end());
4889 priv_->deleted_member_class_tmpls_[name] = d;
4890 }
4891
4892 for (vector<insertion>::const_iterator it = e.insertions().begin();
4893 it != e.insertions().end();
4894 ++it)
4895 {
4896 for (vector<unsigned>::const_iterator iit =
4897 it->inserted_indexes().begin();
4898 iit != it->inserted_indexes().end();
4899 ++iit)
4900 {
4901 unsigned i = *iit;
4902 decl_base_sptr d =
4903 second_class_or_union()->get_member_class_templates()[i]->
4904 as_class_tdecl();
4905 string name = d->get_name();
4906 ABG_ASSERT(priv_->inserted_member_class_tmpls_.find(name)
4907 == priv_->inserted_member_class_tmpls_.end());
4908 string_decl_base_sptr_map::const_iterator j =
4909 priv_->deleted_member_class_tmpls_.find(name);
4910 if (j != priv_->deleted_member_class_tmpls_.end())
4911 {
4912 if (*j->second != *d)
4913 priv_->changed_member_types_[name]=
4914 compute_diff(j->second, d, context());
4915 priv_->deleted_member_class_tmpls_.erase(j);
4916 }
4917 else
4918 priv_->inserted_member_class_tmpls_[name] = d;
4919 }
4920 }
4921 }
4922 sort_string_diff_sptr_map(priv_->changed_member_types_,
4923 priv_->sorted_changed_member_types_);
4924 }
4925
4926 /// Allocate the memory for the priv_ pimpl data member of the @ref
4927 /// class_or_union_diff class.
4928 void
allocate_priv_data()4929 class_or_union_diff::allocate_priv_data()
4930 {
4931 if (!priv_)
4932 priv_.reset(new priv);
4933 }
4934
4935 /// Constructor for the @ref class_or_union_diff class.
4936 ///
4937 /// @param first_scope the first @ref class_or_union of the diff node.
4938 ///
4939 /// @param second_scope the second @ref class_or_union of the diff node.
4940 ///
4941 /// @param ctxt the context of the diff.
class_or_union_diff(class_or_union_sptr first_scope,class_or_union_sptr second_scope,diff_context_sptr ctxt)4942 class_or_union_diff::class_or_union_diff(class_or_union_sptr first_scope,
4943 class_or_union_sptr second_scope,
4944 diff_context_sptr ctxt)
4945 : type_diff_base(first_scope, second_scope, ctxt)
4946 //priv_(new priv)
4947 {}
4948
4949 /// Finish building the current instance of @ref class_or_union_diff.
4950 void
finish_diff_type()4951 class_or_union_diff::finish_diff_type()
4952 {
4953 if (diff::priv_->finished_)
4954 return;
4955 chain_into_hierarchy();
4956 diff::priv_->finished_ = true;
4957 }
4958
4959 /// Getter of the private data of the @ref class_or_union_diff type.
4960 ///
4961 /// Note that due to an optimization, the private data of @ref
4962 /// class_or_union_diff can be shared among several instances of
4963 /// class_or_union_diff, so you should never try to access
4964 /// class_or_union_diff::priv directly.
4965 ///
4966 /// When class_or_union_diff::priv is shared, this function returns
4967 /// the correct shared one.
4968 ///
4969 /// @return the (possibly) shared private data of the current instance
4970 /// of @ref class_or_union_diff.
4971 const class_or_union_diff::priv_ptr&
get_priv() const4972 class_or_union_diff::get_priv() const
4973 {
4974 if (priv_)
4975 return priv_;
4976
4977 // If the current class_or_union_diff::priv member is empty, then look for
4978 // the shared one, from the canonical type.
4979 class_or_union_diff *canonical =
4980 dynamic_cast<class_or_union_diff*>(get_canonical_diff());
4981 ABG_ASSERT(canonical);
4982 ABG_ASSERT(canonical->priv_);
4983
4984 return canonical->priv_;
4985 }
4986
4987 /// Destructor of class_or_union_diff.
~class_or_union_diff()4988 class_or_union_diff::~class_or_union_diff()
4989 {
4990 }
4991
4992 /// @return the first @ref class_or_union involved in the diff.
4993 class_or_union_sptr
first_class_or_union() const4994 class_or_union_diff::first_class_or_union() const
4995 {return is_class_or_union_type(first_subject());}
4996
4997 /// @return the second @ref class_or_union involved in the diff.
4998 class_or_union_sptr
second_class_or_union() const4999 class_or_union_diff::second_class_or_union() const
5000 {return is_class_or_union_type(second_subject());}
5001
5002 /// @return the edit script of the member types of the two @ref
5003 /// class_or_union.
5004 const edit_script&
member_types_changes() const5005 class_or_union_diff::member_types_changes() const
5006 {return get_priv()->member_types_changes_;}
5007
5008 /// @return the edit script of the member types of the two @ref
5009 /// class_or_union.
5010 edit_script&
member_types_changes()5011 class_or_union_diff::member_types_changes()
5012 {return get_priv()->member_types_changes_;}
5013
5014 /// @return the edit script of the data members of the two @ref
5015 /// class_or_union.
5016 const edit_script&
data_members_changes() const5017 class_or_union_diff::data_members_changes() const
5018 {return get_priv()->data_members_changes_;}
5019
5020 /// @return the edit script of the data members of the two @ref
5021 /// class_or_union.
5022 edit_script&
data_members_changes()5023 class_or_union_diff::data_members_changes()
5024 {return get_priv()->data_members_changes_;}
5025
5026 /// Getter for the data members that got inserted.
5027 ///
5028 /// @return a map of data members that got inserted.
5029 const string_decl_base_sptr_map&
inserted_data_members() const5030 class_or_union_diff::inserted_data_members() const
5031 {return get_priv()->inserted_data_members_;}
5032
5033 /// Getter for the data members that got deleted.
5034 ///
5035 /// @return a map of data members that got deleted.
5036 const string_decl_base_sptr_map&
deleted_data_members() const5037 class_or_union_diff::deleted_data_members() const
5038 {return get_priv()->deleted_data_members_;}
5039
5040 /// @return the edit script of the member functions of the two @ref
5041 /// class_or_union.
5042 const edit_script&
member_fns_changes() const5043 class_or_union_diff::member_fns_changes() const
5044 {return get_priv()->member_fns_changes_;}
5045
5046 /// Getter for the virtual members functions that have had a change in
5047 /// a sub-type, without having a change in their symbol name.
5048 ///
5049 /// @return a sorted vector of virtual member functions that have a
5050 /// sub-type change.
5051 const function_decl_diff_sptrs_type&
changed_member_fns() const5052 class_or_union_diff::changed_member_fns() const
5053 {return get_priv()->sorted_changed_member_functions_;}
5054
5055 /// @return the edit script of the member functions of the two
5056 /// classes.
5057 edit_script&
member_fns_changes()5058 class_or_union_diff::member_fns_changes()
5059 {return get_priv()->member_fns_changes_;}
5060
5061 /// @return a map of member functions that got deleted.
5062 const string_member_function_sptr_map&
deleted_member_fns() const5063 class_or_union_diff::deleted_member_fns() const
5064 {return get_priv()->deleted_member_functions_;}
5065
5066 /// @return a map of member functions that got inserted.
5067 const string_member_function_sptr_map&
inserted_member_fns() const5068 class_or_union_diff::inserted_member_fns() const
5069 {return get_priv()->inserted_member_functions_;}
5070
5071 /// Getter of the sorted vector of data members that got replaced by
5072 /// another data member.
5073 ///
5074 /// @return sorted vector of changed data member.
5075 const var_diff_sptrs_type&
sorted_changed_data_members() const5076 class_or_union_diff::sorted_changed_data_members() const
5077 {return get_priv()->sorted_changed_dm_;}
5078
5079 /// Count the number of /filtered/ data members that got replaced by
5080 /// another data member.
5081 ///
5082 /// @return the number of changed data member that got filtered out.
5083 size_t
count_filtered_changed_data_members(bool local) const5084 class_or_union_diff::count_filtered_changed_data_members(bool local) const
5085 {return get_priv()->count_filtered_changed_dm(local);}
5086
5087 /// Getter of the sorted vector of data members with a (sub-)type change.
5088 ///
5089 /// @return sorted vector of changed data member.
5090 const var_diff_sptrs_type&
sorted_subtype_changed_data_members() const5091 class_or_union_diff::sorted_subtype_changed_data_members() const
5092 {return get_priv()->sorted_subtype_changed_dm_;}
5093
5094 /// Count the number of /filtered/ data members with a sub-type change.
5095 ///
5096 /// @return the number of changed data member that got filtered out.
5097 size_t
count_filtered_subtype_changed_data_members(bool local) const5098 class_or_union_diff::count_filtered_subtype_changed_data_members(bool local) const
5099 {return get_priv()->count_filtered_subtype_changed_dm(local);}
5100
5101 /// Get the map of data members that got replaced by anonymous data
5102 /// members.
5103 ///
5104 /// The key of a map entry is the name of the replaced data member and
5105 /// the value is the anonymous data member that replaces it.
5106 ///
5107 /// @return the map of data members replaced by anonymous data
5108 /// members.
5109 const string_decl_base_sptr_map&
data_members_replaced_by_adms() const5110 class_or_union_diff::data_members_replaced_by_adms() const
5111 {return get_priv()->dms_replaced_by_adms_;}
5112
5113 /// Get an ordered vector of of data members that got replaced by
5114 /// anonymous data members.
5115 ///
5116 /// This returns a vector of pair of two data members: the one that
5117 /// was replaced, and the anonymous data member that replaced it.
5118 ///
5119 /// @return the sorted vector data members replaced by anonymous data members.
5120 const changed_var_sptrs_type&
ordered_data_members_replaced_by_adms() const5121 class_or_union_diff::ordered_data_members_replaced_by_adms() const
5122 {
5123 if (priv_->dms_replaced_by_adms_ordered_.empty())
5124 {
5125 for (string_decl_base_sptr_map::const_iterator it =
5126 priv_->dms_replaced_by_adms_.begin();
5127 it != priv_->dms_replaced_by_adms_.end();
5128 ++it)
5129 {
5130 const var_decl_sptr dm =
5131 first_class_or_union()->find_data_member(it->first);
5132 ABG_ASSERT(dm);
5133 changed_var_sptr changed_dm(dm, is_data_member(it->second));
5134 priv_->dms_replaced_by_adms_ordered_.push_back(changed_dm);
5135 }
5136 sort_changed_data_members(priv_->dms_replaced_by_adms_ordered_);
5137 }
5138
5139 return priv_->dms_replaced_by_adms_ordered_;
5140 }
5141
5142 /// @return the edit script of the member function templates of the two
5143 /// @ref class_or_union.
5144 const edit_script&
member_fn_tmpls_changes() const5145 class_or_union_diff::member_fn_tmpls_changes() const
5146 {return get_priv()->member_fn_tmpls_changes_;}
5147
5148 /// @return the edit script of the member function templates of the
5149 /// two @ref class_or_union.
5150 edit_script&
member_fn_tmpls_changes()5151 class_or_union_diff::member_fn_tmpls_changes()
5152 {return get_priv()->member_fn_tmpls_changes_;}
5153
5154 /// @return the edit script of the member class templates of the two
5155 /// @ref class_or_union.
5156 const edit_script&
member_class_tmpls_changes() const5157 class_or_union_diff::member_class_tmpls_changes() const
5158 {return get_priv()->member_class_tmpls_changes_;}
5159
5160 /// @return the edit script of the member class templates of the two
5161 /// @ref class_or_union.
5162 edit_script&
member_class_tmpls_changes()5163 class_or_union_diff::member_class_tmpls_changes()
5164 {return get_priv()->member_class_tmpls_changes_;}
5165
5166 /// Test if the current diff node carries a change.
5167 bool
has_changes() const5168 class_or_union_diff::has_changes() const
5169 {return first_class_or_union() != second_class_or_union();}
5170
5171 /// @return the kind of local change carried by the current diff node.
5172 /// The value returned is zero if the current node carries no local
5173 /// change.
5174 enum change_kind
has_local_changes() const5175 class_or_union_diff::has_local_changes() const
5176 {
5177 ir::change_kind k = ir::NO_CHANGE_KIND;
5178 if (!equals(*first_class_or_union(), *second_class_or_union(), &k))
5179 return k & ir::ALL_LOCAL_CHANGES_MASK;
5180 return ir::NO_CHANGE_KIND;
5181 }
5182
5183
5184 /// Report the changes carried by the current @ref class_or_union_diff
5185 /// node in a textual format.
5186 ///
5187 /// @param out the output stream to write the textual report to.
5188 ///
5189 /// @param indent the number of white space to use as indentation.
5190 void
report(ostream & out,const string & indent) const5191 class_or_union_diff::report(ostream& out, const string& indent) const
5192 {
5193 context()->get_reporter()->report(*this, out, indent);
5194 }
5195
5196 /// Populate the vector of children node of the @ref diff base type
5197 /// sub-object of this instance of @ref class_or_union_diff.
5198 ///
5199 /// The children node can then later be retrieved using
5200 /// diff::children_node().
5201 void
chain_into_hierarchy()5202 class_or_union_diff::chain_into_hierarchy()
5203 {
5204 // data member changes
5205 for (var_diff_sptrs_type::const_iterator i =
5206 get_priv()->sorted_subtype_changed_dm_.begin();
5207 i != get_priv()->sorted_subtype_changed_dm_.end();
5208 ++i)
5209 if (diff_sptr d = *i)
5210 append_child_node(d);
5211
5212 for (var_diff_sptrs_type::const_iterator i =
5213 get_priv()->sorted_changed_dm_.begin();
5214 i != get_priv()->sorted_changed_dm_.end();
5215 ++i)
5216 if (diff_sptr d = *i)
5217 append_child_node(d);
5218
5219 // member types changes
5220 for (diff_sptrs_type::const_iterator i =
5221 get_priv()->sorted_changed_member_types_.begin();
5222 i != get_priv()->sorted_changed_member_types_.end();
5223 ++i)
5224 if (diff_sptr d = *i)
5225 append_child_node(d);
5226
5227 // member function changes
5228 for (function_decl_diff_sptrs_type::const_iterator i =
5229 get_priv()->sorted_changed_member_functions_.begin();
5230 i != get_priv()->sorted_changed_member_functions_.end();
5231 ++i)
5232 if (diff_sptr d = *i)
5233 append_child_node(d);
5234 }
5235
5236 // </class_or_union_diff stuff>
5237
5238 //<class_diff stuff>
5239
5240 /// Clear the lookup tables useful for reporting.
5241 ///
5242 /// This function must be updated each time a lookup table is added or
5243 /// removed from the class_diff::priv.
5244 void
clear_lookup_tables(void)5245 class_diff::clear_lookup_tables(void)
5246 {
5247 priv_->deleted_bases_.clear();
5248 priv_->inserted_bases_.clear();
5249 priv_->changed_bases_.clear();
5250 }
5251
5252 /// Tests if the lookup tables are empty.
5253 ///
5254 /// @return true if the lookup tables are empty, false otherwise.
5255 bool
lookup_tables_empty(void) const5256 class_diff::lookup_tables_empty(void) const
5257 {
5258 return (priv_->deleted_bases_.empty()
5259 && priv_->inserted_bases_.empty()
5260 && priv_->changed_bases_.empty());
5261 }
5262
5263 /// If the lookup tables are not yet built, walk the differences and
5264 /// fill them.
5265 void
ensure_lookup_tables_populated(void) const5266 class_diff::ensure_lookup_tables_populated(void) const
5267 {
5268 class_or_union_diff::ensure_lookup_tables_populated();
5269
5270 if (!lookup_tables_empty())
5271 return;
5272
5273 {
5274 edit_script& e = get_priv()->base_changes_;
5275
5276 for (vector<deletion>::const_iterator it = e.deletions().begin();
5277 it != e.deletions().end();
5278 ++it)
5279 {
5280 unsigned i = it->index();
5281 class_decl::base_spec_sptr b =
5282 first_class_decl()->get_base_specifiers()[i];
5283 string name = b->get_base_class()->get_name();
5284 ABG_ASSERT(get_priv()->deleted_bases_.find(name)
5285 == get_priv()->deleted_bases_.end());
5286 get_priv()->deleted_bases_[name] = b;
5287 }
5288
5289 for (vector<insertion>::const_iterator it = e.insertions().begin();
5290 it != e.insertions().end();
5291 ++it)
5292 {
5293 for (vector<unsigned>::const_iterator iit =
5294 it->inserted_indexes().begin();
5295 iit != it->inserted_indexes().end();
5296 ++iit)
5297 {
5298 unsigned i = *iit;
5299 class_decl::base_spec_sptr b =
5300 second_class_decl()->get_base_specifiers()[i];
5301 string name = b->get_base_class()->get_name();
5302 ABG_ASSERT(get_priv()->inserted_bases_.find(name)
5303 == get_priv()->inserted_bases_.end());
5304 string_base_sptr_map::const_iterator j =
5305 get_priv()->deleted_bases_.find(name);
5306 if (j != get_priv()->deleted_bases_.end())
5307 {
5308 if (j->second != b)
5309 get_priv()->changed_bases_[name] =
5310 compute_diff(j->second, b, context());
5311 get_priv()->deleted_bases_.erase(j);
5312 }
5313 else
5314 get_priv()->inserted_bases_[name] = b;
5315 }
5316 }
5317 }
5318
5319 sort_string_base_sptr_map(get_priv()->deleted_bases_,
5320 get_priv()->sorted_deleted_bases_);
5321 sort_string_base_sptr_map(get_priv()->inserted_bases_,
5322 get_priv()->sorted_inserted_bases_);
5323 sort_string_base_diff_sptr_map(get_priv()->changed_bases_,
5324 get_priv()->sorted_changed_bases_);
5325
5326 {
5327 const class_or_union_diff::priv_ptr &p = class_or_union_diff::get_priv();
5328
5329 edit_script& e = p->member_fns_changes_;
5330
5331 for (vector<deletion>::const_iterator it = e.deletions().begin();
5332 it != e.deletions().end();
5333 ++it)
5334 {
5335 unsigned i = it->index();
5336 method_decl_sptr mem_fn =
5337 first_class_decl()->get_virtual_mem_fns()[i];
5338 string name = mem_fn->get_linkage_name();
5339 if (name.empty())
5340 name = mem_fn->get_pretty_representation();
5341 ABG_ASSERT(!name.empty());
5342 if (p->deleted_member_functions_.find(name)
5343 != p->deleted_member_functions_.end())
5344 continue;
5345 p->deleted_member_functions_[name] = mem_fn;
5346 }
5347
5348 for (vector<insertion>::const_iterator it = e.insertions().begin();
5349 it != e.insertions().end();
5350 ++it)
5351 {
5352 for (vector<unsigned>::const_iterator iit =
5353 it->inserted_indexes().begin();
5354 iit != it->inserted_indexes().end();
5355 ++iit)
5356 {
5357 unsigned i = *iit;
5358
5359 method_decl_sptr mem_fn =
5360 second_class_decl()->get_virtual_mem_fns()[i];
5361 string name = mem_fn->get_linkage_name();
5362 if (name.empty())
5363 name = mem_fn->get_pretty_representation();
5364 ABG_ASSERT(!name.empty());
5365 if (p->inserted_member_functions_.find(name)
5366 != p->inserted_member_functions_.end())
5367 continue;
5368 string_member_function_sptr_map::const_iterator j =
5369 p->deleted_member_functions_.find(name);
5370
5371 if (j != p->deleted_member_functions_.end())
5372 {
5373 if (*j->second != *mem_fn)
5374 p->changed_member_functions_[name] =
5375 compute_diff(static_pointer_cast<function_decl>(j->second),
5376 static_pointer_cast<function_decl>(mem_fn),
5377 context());
5378 p->deleted_member_functions_.erase(j);
5379 }
5380 else
5381 p->inserted_member_functions_[name] = mem_fn;
5382 }
5383 }
5384
5385 // Now walk the allegedly deleted member functions; check if their
5386 // underlying symbols are deleted as well; otherwise, consider
5387 // that the member function in question hasn't been deleted.
5388
5389 vector<string> to_delete;
5390 corpus_sptr f = context()->get_first_corpus(),
5391 s = context()->get_second_corpus();
5392 if (s)
5393 for (string_member_function_sptr_map::const_iterator i =
5394 deleted_member_fns().begin();
5395 i != deleted_member_fns().end();
5396 ++i)
5397 {
5398 if (get_member_function_is_virtual(i->second))
5399 continue;
5400 // We assume that all non-virtual member functions functions
5401 // we look at here have ELF symbols.
5402 if (!i->second->get_symbol()
5403 || s->lookup_function_symbol(*i->second->get_symbol()))
5404 to_delete.push_back(i->first);
5405 }
5406
5407
5408 for (vector<string>::const_iterator i = to_delete.begin();
5409 i != to_delete.end();
5410 ++i)
5411 p->deleted_member_functions_.erase(*i);
5412
5413 // Do something similar for added functions.
5414 to_delete.clear();
5415 if (f)
5416 for (string_member_function_sptr_map::const_iterator i =
5417 inserted_member_fns().begin();
5418 i != inserted_member_fns().end();
5419 ++i)
5420 {
5421 if (get_member_function_is_virtual(i->second))
5422 continue;
5423 // We assume that all non-virtual member functions functions
5424 // we look at here have ELF symbols.
5425 if (!i->second->get_symbol()
5426 || f->lookup_function_symbol(*i->second->get_symbol()))
5427 to_delete.push_back(i->first);
5428 }
5429
5430 for (vector<string>::const_iterator i = to_delete.begin();
5431 i != to_delete.end();
5432 ++i)
5433 p->inserted_member_functions_.erase(*i);
5434
5435 sort_string_member_function_sptr_map(p->deleted_member_functions_,
5436 p->sorted_deleted_member_functions_);
5437
5438 sort_string_member_function_sptr_map(p->inserted_member_functions_,
5439 p->sorted_inserted_member_functions_);
5440
5441 sort_string_virtual_member_function_diff_sptr_map
5442 (p->changed_member_functions_,
5443 p->sorted_changed_member_functions_);
5444 }
5445 }
5446
5447 /// Allocate the memory for the priv_ pimpl data member of the @ref
5448 /// class_diff class.
5449 void
allocate_priv_data()5450 class_diff::allocate_priv_data()
5451 {
5452 class_or_union_diff::allocate_priv_data();
5453 if (!priv_)
5454 priv_.reset(new priv);
5455 }
5456
5457 /// Test whether a given base class has changed. A base class has
5458 /// changed if it's in both in deleted *and* inserted bases.
5459 ///
5460 ///@param d the declaration for the base class to consider.
5461 ///
5462 /// @return the new base class if the given base class has changed, or
5463 /// NULL if it hasn't.
5464 class_decl::base_spec_sptr
base_has_changed(class_decl::base_spec_sptr d) const5465 class_diff::priv::base_has_changed(class_decl::base_spec_sptr d) const
5466 {
5467 string qname = d->get_base_class()->get_qualified_name();
5468 string_base_diff_sptr_map::const_iterator it =
5469 changed_bases_.find(qname);
5470
5471 return (it == changed_bases_.end())
5472 ? class_decl::base_spec_sptr()
5473 : it->second->second_base();
5474
5475 }
5476
5477 /// Count the number of bases classes whose changes got filtered out.
5478 ///
5479 /// @return the number of bases classes whose changes got filtered
5480 /// out.
5481 size_t
count_filtered_bases()5482 class_diff::priv::count_filtered_bases()
5483 {
5484 size_t num_filtered = 0;
5485 for (base_diff_sptrs_type::const_iterator i = sorted_changed_bases_.begin();
5486 i != sorted_changed_bases_.end();
5487 ++i)
5488 {
5489 diff_sptr diff = *i;
5490 if (diff && diff->is_filtered_out())
5491 ++num_filtered;
5492 }
5493 return num_filtered;
5494 }
5495
5496 /// Populate the vector of children node of the @ref diff base type
5497 /// sub-object of this instance of @ref class_diff.
5498 ///
5499 /// The children node can then later be retrieved using
5500 /// diff::children_node().
5501 void
chain_into_hierarchy()5502 class_diff::chain_into_hierarchy()
5503 {
5504 class_or_union_diff::chain_into_hierarchy();
5505
5506 // base class changes.
5507 for (base_diff_sptrs_type::const_iterator i =
5508 get_priv()->sorted_changed_bases_.begin();
5509 i != get_priv()->sorted_changed_bases_.end();
5510 ++i)
5511 if (diff_sptr d = *i)
5512 append_child_node(d);
5513 }
5514
5515 /// Constructor of class_diff
5516 ///
5517 /// @param first_scope the first class of the diff.
5518 ///
5519 /// @param second_scope the second class of the diff.
5520 ///
5521 /// @param ctxt the diff context to use.
class_diff(class_decl_sptr first_scope,class_decl_sptr second_scope,diff_context_sptr ctxt)5522 class_diff::class_diff(class_decl_sptr first_scope,
5523 class_decl_sptr second_scope,
5524 diff_context_sptr ctxt)
5525 : class_or_union_diff(first_scope, second_scope, ctxt)
5526 // We don't initialize the priv_ data member here. This is an
5527 // optimization to reduce memory consumption (and also execution
5528 // time) for cases where there are a lot of instances of
5529 // class_diff in the same equivalence class. In compute_diff(),
5530 // the priv_ is set to the priv_ of the canonical diff node.
5531 // See PR libabigail/17948.
5532 {}
5533
~class_diff()5534 class_diff::~class_diff()
5535 {}
5536
5537 /// Getter of the private data of the @ref class_diff type.
5538 ///
5539 /// Note that due to an optimization, the private data of @ref
5540 /// class_diff can be shared among several instances of class_diff, so
5541 /// you should never try to access class_diff::priv directly.
5542 ///
5543 /// When class_diff::priv is shared, this function returns the correct
5544 /// shared one.
5545 ///
5546 /// @return the (possibly) shared private data of the current instance
5547 /// of class_diff.
5548 const class_diff::priv_ptr&
get_priv() const5549 class_diff::get_priv() const
5550 {
5551 if (priv_)
5552 return priv_;
5553
5554 // If the current class_diff::priv member is empty, then look for
5555 // the shared one, from the canonical type.
5556 class_diff *canonical =
5557 dynamic_cast<class_diff*>(get_canonical_diff());
5558 ABG_ASSERT(canonical);
5559 ABG_ASSERT(canonical->priv_);
5560
5561 return canonical->priv_;
5562 }
5563
5564 /// Finish building the current instance of @ref class_diff.
5565 void
finish_diff_type()5566 class_diff::finish_diff_type()
5567 {
5568 if (diff::priv_->finished_)
5569 return;
5570 chain_into_hierarchy();
5571 diff::priv_->finished_ = true;
5572 }
5573
5574 /// @return the pretty representation of the current instance of @ref
5575 /// class_diff.
5576 const string&
get_pretty_representation() const5577 class_diff::get_pretty_representation() const
5578 {
5579 if (diff::priv_->pretty_representation_.empty())
5580 {
5581 std::ostringstream o;
5582 o << "class_diff["
5583 << first_subject()->get_pretty_representation()
5584 << ", "
5585 << second_subject()->get_pretty_representation()
5586 << "]";
5587 diff::priv_->pretty_representation_ = o.str();
5588 }
5589 return diff::priv_->pretty_representation_;
5590 }
5591
5592 /// Return true iff the current diff node carries a change.
5593 ///
5594 /// @return true iff the current diff node carries a change.
5595 bool
has_changes() const5596 class_diff::has_changes() const
5597 {return (first_class_decl() != second_class_decl());}
5598
5599 /// @return the kind of local change carried by the current diff node.
5600 /// The value returned is zero if the current node carries no local
5601 /// change.
5602 enum change_kind
has_local_changes() const5603 class_diff::has_local_changes() const
5604 {
5605 ir::change_kind k = ir::NO_CHANGE_KIND;
5606 if (!equals(*first_class_decl(), *second_class_decl(), &k))
5607 return k & ir::ALL_LOCAL_CHANGES_MASK;
5608 return ir::NO_CHANGE_KIND;
5609 }
5610
5611 /// @return the first class invoveld in the diff.
5612 shared_ptr<class_decl>
first_class_decl() const5613 class_diff::first_class_decl() const
5614 {return dynamic_pointer_cast<class_decl>(first_subject());}
5615
5616 /// Getter of the second class involved in the diff.
5617 ///
5618 /// @return the second class invoveld in the diff
5619 shared_ptr<class_decl>
second_class_decl() const5620 class_diff::second_class_decl() const
5621 {return dynamic_pointer_cast<class_decl>(second_subject());}
5622
5623 /// @return the edit script of the bases of the two classes.
5624 const edit_script&
base_changes() const5625 class_diff::base_changes() const
5626 {return get_priv()->base_changes_;}
5627
5628 /// Getter for the deleted base classes of the diff.
5629 ///
5630 /// @return a map containing the deleted base classes, keyed with
5631 /// their pretty representation.
5632 const string_base_sptr_map&
deleted_bases() const5633 class_diff::deleted_bases() const
5634 {return get_priv()->deleted_bases_;}
5635
5636 /// Getter for the inserted base classes of the diff.
5637 ///
5638 /// @return a map containing the inserted base classes, keyed with
5639 /// their pretty representation.
5640 const string_base_sptr_map&
inserted_bases() const5641 class_diff::inserted_bases() const
5642 {return get_priv()->inserted_bases_;}
5643
5644 /// Getter for the changed base classes of the diff.
5645 ///
5646 /// @return a sorted vector containing the changed base classes
5647 const base_diff_sptrs_type&
changed_bases()5648 class_diff::changed_bases()
5649 {return get_priv()->sorted_changed_bases_;}
5650
5651 /// @return the edit script of the bases of the two classes.
5652 edit_script&
base_changes()5653 class_diff::base_changes()
5654 {return get_priv()->base_changes_;}
5655
5656 /// Produce a basic report about the changes between two class_decl.
5657 ///
5658 /// @param out the output stream to report the changes to.
5659 ///
5660 /// @param indent the string to use as an indentation prefix in the
5661 /// report.
5662 void
report(ostream & out,const string & indent) const5663 class_diff::report(ostream& out, const string& indent) const
5664 {
5665 context()->get_reporter()->report(*this, out, indent);
5666 }
5667
5668 /// Compute the set of changes between two instances of class_decl.
5669 ///
5670 /// Note that the two types must have been created in the same @ref
5671 /// environment, otherwise, this function aborts.
5672 ///
5673 /// @param first the first class_decl to consider.
5674 ///
5675 /// @param second the second class_decl to consider.
5676 ///
5677 /// @return changes the resulting changes.
5678 ///
5679 /// @param ctxt the diff context to use.
5680 class_diff_sptr
compute_diff(const class_decl_sptr first,const class_decl_sptr second,diff_context_sptr ctxt)5681 compute_diff(const class_decl_sptr first,
5682 const class_decl_sptr second,
5683 diff_context_sptr ctxt)
5684 {
5685 if (first && second)
5686 ABG_ASSERT(first->get_environment() == second->get_environment());
5687
5688 class_decl_sptr f = is_class_type(look_through_decl_only_class(first)),
5689 s = is_class_type(look_through_decl_only_class(second));
5690
5691 class_diff_sptr changes(new class_diff(f, s, ctxt));
5692
5693 ctxt->initialize_canonical_diff(changes);
5694 ABG_ASSERT(changes->get_canonical_diff());
5695
5696 if (!ctxt->get_canonical_diff_for(first, second))
5697 {
5698 // Either first or second is a decl-only class; let's set the
5699 // canonical diff here in that case.
5700 diff_sptr canonical_diff = ctxt->get_canonical_diff_for(changes);
5701 ABG_ASSERT(canonical_diff);
5702 ctxt->set_canonical_diff_for(first, second, canonical_diff);
5703 }
5704
5705 // Ok, so this is an optimization. Do not freak out if it looks
5706 // weird, because, well, it does look weird. This speeds up
5707 // greatly, for instance, the test case given at PR
5708 // libabigail/17948.
5709 //
5710 // We are setting the private data of the new instance of class_diff
5711 // (which is 'changes') to the private data of its canonical
5712 // instance. That is, we are sharing the private data of 'changes'
5713 // with the private data of its canonical instance to consume less
5714 // memory in cases where the equivalence class of 'changes' is huge.
5715 //
5716 // But if changes is its own canonical instance, then we initialize
5717 // its private data properly
5718 if (is_class_diff(changes->get_canonical_diff()) == changes.get())
5719 // changes is its own canonical instance, so it gets a brand new
5720 // private data.
5721 changes->allocate_priv_data();
5722 else
5723 {
5724 // changes has a non-empty equivalence class so it's going to
5725 // share its private data with its canonical instance. Next
5726 // time class_diff::get_priv() is invoked, it's going to return
5727 // the shared private data of the canonical instance.
5728 return changes;
5729 }
5730
5731 // Compare base specs
5732 compute_diff(f->get_base_specifiers().begin(),
5733 f->get_base_specifiers().end(),
5734 s->get_base_specifiers().begin(),
5735 s->get_base_specifiers().end(),
5736 changes->base_changes());
5737
5738 // Do *not* compare member types because it generates lots of noise
5739 // and I doubt it's really useful.
5740 #if 0
5741 compute_diff(f->get_member_types().begin(),
5742 f->get_member_types().end(),
5743 s->get_member_types().begin(),
5744 s->get_member_types().end(),
5745 changes->member_types_changes());
5746 #endif
5747
5748 // Compare data member
5749 compute_diff(f->get_non_static_data_members().begin(),
5750 f->get_non_static_data_members().end(),
5751 s->get_non_static_data_members().begin(),
5752 s->get_non_static_data_members().end(),
5753 changes->data_members_changes());
5754
5755 // Compare virtual member functions
5756 compute_diff(f->get_virtual_mem_fns().begin(),
5757 f->get_virtual_mem_fns().end(),
5758 s->get_virtual_mem_fns().begin(),
5759 s->get_virtual_mem_fns().end(),
5760 changes->member_fns_changes());
5761
5762 // Compare member function templates
5763 compute_diff(f->get_member_function_templates().begin(),
5764 f->get_member_function_templates().end(),
5765 s->get_member_function_templates().begin(),
5766 s->get_member_function_templates().end(),
5767 changes->member_fn_tmpls_changes());
5768
5769 // Likewise, do not compare member class templates
5770 #if 0
5771 compute_diff(f->get_member_class_templates().begin(),
5772 f->get_member_class_templates().end(),
5773 s->get_member_class_templates().begin(),
5774 s->get_member_class_templates().end(),
5775 changes->member_class_tmpls_changes());
5776 #endif
5777
5778 changes->ensure_lookup_tables_populated();
5779
5780 return changes;
5781 }
5782
5783 //</class_diff stuff>
5784
5785 // <base_diff stuff>
5786
5787 /// Populate the vector of children node of the @ref diff base type
5788 /// sub-object of this instance of @ref base_diff.
5789 ///
5790 /// The children node can then later be retrieved using
5791 /// diff::children_node().
5792 void
chain_into_hierarchy()5793 base_diff::chain_into_hierarchy()
5794 {append_child_node(get_underlying_class_diff());}
5795
5796 /// @param first the first base spec to consider.
5797 ///
5798 /// @param second the second base spec to consider.
5799 ///
5800 /// @param ctxt the context of the diff. Note that this context
5801 /// object must stay alive at least during the life time of the
5802 /// current instance of @ref base_diff. Otherwise memory corruption
5803 /// issues occur.
base_diff(class_decl::base_spec_sptr first,class_decl::base_spec_sptr second,class_diff_sptr underlying,diff_context_sptr ctxt)5804 base_diff::base_diff(class_decl::base_spec_sptr first,
5805 class_decl::base_spec_sptr second,
5806 class_diff_sptr underlying,
5807 diff_context_sptr ctxt)
5808 : diff(first, second, ctxt),
5809 priv_(new priv(underlying))
5810 {}
5811
5812 /// Finish building the current instance of @ref base_diff.
5813 void
finish_diff_type()5814 base_diff::finish_diff_type()
5815 {
5816 if (diff::priv_->finished_)
5817 return;
5818
5819 chain_into_hierarchy();
5820 diff::priv_->finished_ = true;
5821 }
5822
5823 /// Getter for the first base spec of the diff object.
5824 ///
5825 /// @return the first base specifier for the diff object.
5826 class_decl::base_spec_sptr
first_base() const5827 base_diff::first_base() const
5828 {return dynamic_pointer_cast<class_decl::base_spec>(first_subject());}
5829
5830 /// Getter for the second base spec of the diff object.
5831 ///
5832 /// @return the second base specifier for the diff object.
5833 class_decl::base_spec_sptr
second_base() const5834 base_diff::second_base() const
5835 {return dynamic_pointer_cast<class_decl::base_spec>(second_subject());}
5836
5837 /// Getter for the diff object for the diff of the underlying base
5838 /// classes.
5839 ///
5840 /// @return the diff object for the diff of the underlying base
5841 /// classes.
5842 const class_diff_sptr
get_underlying_class_diff() const5843 base_diff::get_underlying_class_diff() const
5844 {return priv_->underlying_class_diff_;}
5845
5846 /// Setter for the diff object for the diff of the underlyng base
5847 /// classes.
5848 ///
5849 /// @param d the new diff object for the diff of the underlying base
5850 /// classes.
5851 void
set_underlying_class_diff(class_diff_sptr d)5852 base_diff::set_underlying_class_diff(class_diff_sptr d)
5853 {priv_->underlying_class_diff_ = d;}
5854
5855 /// @return the pretty representation for the current instance of @ref
5856 /// base_diff.
5857 const string&
get_pretty_representation() const5858 base_diff::get_pretty_representation() const
5859 {
5860 if (diff::priv_->pretty_representation_.empty())
5861 {
5862 std::ostringstream o;
5863 o << "base_diff["
5864 << first_subject()->get_pretty_representation()
5865 << ", "
5866 << second_subject()->get_pretty_representation()
5867 << "]";
5868 diff::priv_->pretty_representation_ = o.str();
5869 }
5870 return diff::priv_->pretty_representation_;
5871 }
5872
5873 /// Return true iff the current diff node carries a change.
5874 ///
5875 /// Return true iff the current diff node carries a change.
5876 bool
has_changes() const5877 base_diff::has_changes() const
5878 {return first_base() != second_base();}
5879
5880 /// @return the kind of local change carried by the current diff node.
5881 /// The value returned is zero if the current node carries no local
5882 /// change.
5883 enum change_kind
has_local_changes() const5884 base_diff::has_local_changes() const
5885 {
5886 ir::change_kind k = ir::NO_CHANGE_KIND;
5887 if (!equals(*first_base(), *second_base(), &k))
5888 return k & ir::ALL_LOCAL_CHANGES_MASK;
5889 return ir::NO_CHANGE_KIND;
5890 }
5891
5892 /// Generates a report for the current instance of base_diff.
5893 ///
5894 /// @param out the output stream to send the report to.
5895 ///
5896 /// @param indent the string to use for indentation.
5897 void
report(ostream & out,const string & indent) const5898 base_diff::report(ostream& out, const string& indent) const
5899 {
5900 context()->get_reporter()->report(*this, out, indent);
5901 }
5902
5903 /// Constructs the diff object representing a diff between two base
5904 /// class specifications.
5905 ///
5906 /// Note that the two artifacts must have been created in the same
5907 /// @ref environment, otherwise, this function aborts.
5908 ///
5909 /// @param first the first base class specification.
5910 ///
5911 /// @param second the second base class specification.
5912 ///
5913 /// @param ctxt the content of the diff.
5914 ///
5915 /// @return the resulting diff object.
5916 base_diff_sptr
compute_diff(const class_decl::base_spec_sptr first,const class_decl::base_spec_sptr second,diff_context_sptr ctxt)5917 compute_diff(const class_decl::base_spec_sptr first,
5918 const class_decl::base_spec_sptr second,
5919 diff_context_sptr ctxt)
5920 {
5921 if (first && second)
5922 {
5923 ABG_ASSERT(first->get_environment() == second->get_environment());
5924 ABG_ASSERT(first->get_base_class()->get_environment()
5925 == second->get_base_class()->get_environment());
5926 ABG_ASSERT(first->get_environment()
5927 == first->get_base_class()->get_environment());
5928 }
5929
5930 class_diff_sptr cl = compute_diff(first->get_base_class(),
5931 second->get_base_class(),
5932 ctxt);
5933 base_diff_sptr changes(new base_diff(first, second, cl, ctxt));
5934
5935 ctxt->initialize_canonical_diff(changes);
5936
5937 return changes;
5938 }
5939
5940 // </base_diff stuff>
5941
5942
5943 // <union_diff stuff>
5944
5945 /// Clear the lookup tables useful for reporting.
5946 ///
5947 /// This function must be updated each time a lookup table is added or
5948 /// removed from the union_diff::priv.
5949 void
clear_lookup_tables(void)5950 union_diff::clear_lookup_tables(void)
5951 {class_or_union_diff::clear_lookup_tables();}
5952
5953 /// Tests if the lookup tables are empty.
5954 ///
5955 /// @return true if the lookup tables are empty, false otherwise.
5956 bool
lookup_tables_empty(void) const5957 union_diff::lookup_tables_empty(void) const
5958 {return class_or_union_diff::lookup_tables_empty();}
5959
5960 /// If the lookup tables are not yet built, walk the differences and
5961 /// fill them.
5962 void
ensure_lookup_tables_populated(void) const5963 union_diff::ensure_lookup_tables_populated(void) const
5964 {class_or_union_diff::ensure_lookup_tables_populated();}
5965
5966 /// Allocate the memory for the priv_ pimpl data member of the @ref
5967 /// union_diff class.
5968 void
allocate_priv_data()5969 union_diff::allocate_priv_data()
5970 {
5971 class_or_union_diff::allocate_priv_data();
5972 }
5973
5974 /// Constructor for the @ref union_diff type.
5975 ///
5976 /// @param first_union the first object of the comparison.
5977 ///
5978 /// @param second_union the second object of the comparison.
5979 ///
5980 /// @param ctxt the context of the comparison.
union_diff(union_decl_sptr first_union,union_decl_sptr second_union,diff_context_sptr ctxt)5981 union_diff::union_diff(union_decl_sptr first_union,
5982 union_decl_sptr second_union,
5983 diff_context_sptr ctxt)
5984 : class_or_union_diff(first_union, second_union, ctxt)
5985 {}
5986
5987 /// Finish building the current instance of @ref union_diff.
5988 void
finish_diff_type()5989 union_diff::finish_diff_type()
5990 {class_or_union_diff::finish_diff_type();}
5991
5992 /// Destructor of the union_diff node.
~union_diff()5993 union_diff::~union_diff()
5994 {}
5995
5996 /// @return the first object of the comparison.
5997 union_decl_sptr
first_union_decl() const5998 union_diff::first_union_decl() const
5999 {return is_union_type(first_subject());}
6000
6001 /// @return the second object of the comparison.
6002 union_decl_sptr
second_union_decl() const6003 union_diff::second_union_decl() const
6004 {return is_union_type(second_subject());}
6005
6006 /// @return the pretty representation of the current diff node.
6007 const string&
get_pretty_representation() const6008 union_diff::get_pretty_representation() const
6009 {
6010 if (diff::priv_->pretty_representation_.empty())
6011 {
6012 std::ostringstream o;
6013 o << "union_diff["
6014 << first_subject()->get_pretty_representation()
6015 << ", "
6016 << second_subject()->get_pretty_representation()
6017 << "]";
6018 diff::priv_->pretty_representation_ = o.str();
6019 }
6020 return diff::priv_->pretty_representation_;
6021 }
6022
6023 /// Report the changes carried by the current @ref union_diff node in
6024 /// a textual format.
6025 ///
6026 /// @param out the output stream to write the textual report to.
6027 ///
6028 /// @param indent the number of white space to use as indentation.
6029 void
report(ostream & out,const string & indent) const6030 union_diff::report(ostream& out, const string& indent) const
6031 {
6032 context()->get_reporter()->report(*this, out, indent);
6033 }
6034
6035 /// Compute the difference between two @ref union_decl types.
6036 ///
6037 /// Note that the two types must hav been created in the same
6038 /// environment, otherwise, this function aborts.
6039 ///
6040 /// @param first the first @ref union_decl to consider.
6041 ///
6042 /// @param second the second @ref union_decl to consider.
6043 ///
6044 /// @param ctxt the context of the diff to use.
6045 union_diff_sptr
compute_diff(const union_decl_sptr first,const union_decl_sptr second,diff_context_sptr ctxt)6046 compute_diff(const union_decl_sptr first,
6047 const union_decl_sptr second,
6048 diff_context_sptr ctxt)
6049 {
6050 if (first && second)
6051 ABG_ASSERT(first->get_environment() == second->get_environment());
6052
6053 union_diff_sptr changes(new union_diff(first, second, ctxt));
6054
6055 ctxt->initialize_canonical_diff(changes);
6056 ABG_ASSERT(changes->get_canonical_diff());
6057
6058 // Ok, so this is an optimization. Do not freak out if it looks
6059 // weird, because, well, it does look weird. This speeds up
6060 // greatly, for instance, the test case given at PR
6061 // libabigail/17948.
6062 //
6063 // We are setting the private data of the new instance of class_diff
6064 // (which is 'changes') to the private data of its canonical
6065 // instance. That is, we are sharing the private data of 'changes'
6066 // with the private data of its canonical instance to consume less
6067 // memory in cases where the equivalence class of 'changes' is huge.
6068 //
6069 // But if changes is its own canonical instance, then we initialize
6070 // its private data properly.
6071 if (is_union_diff(changes->get_canonical_diff()) == changes.get())
6072 // changes is its own canonical instance, so it gets a brand new
6073 // private data.
6074 changes->allocate_priv_data();
6075 else
6076 {
6077 // changes has a non-empty equivalence class so it's going to
6078 // share its private data with its canonical instance. Next
6079 // time class_diff::get_priv() is invoked, it's going to return
6080 // the shared private data of the canonical instance.
6081 return changes;
6082 }
6083
6084 // Compare data member
6085 compute_diff(first->get_non_static_data_members().begin(),
6086 first->get_non_static_data_members().end(),
6087 second->get_non_static_data_members().begin(),
6088 second->get_non_static_data_members().end(),
6089 changes->data_members_changes());
6090
6091 #if 0
6092 // Compare member functions
6093 compute_diff(first->get_mem_fns().begin(),
6094 first->get_mem_fns().end(),
6095 second->get_mem_fns().begin(),
6096 second->get_mem_fns().end(),
6097 changes->member_fns_changes());
6098
6099 // Compare member function templates
6100 compute_diff(first->get_member_function_templates().begin(),
6101 first->get_member_function_templates().end(),
6102 second->get_member_function_templates().begin(),
6103 second->get_member_function_templates().end(),
6104 changes->member_fn_tmpls_changes());
6105 #endif
6106
6107 changes->ensure_lookup_tables_populated();
6108
6109 return changes;
6110 }
6111
6112 // </union_diff stuff>
6113
6114 //<scope_diff stuff>
6115
6116 /// Clear the lookup tables that are useful for reporting.
6117 ///
6118 /// This function must be updated each time a lookup table is added or
6119 /// removed.
6120 void
clear_lookup_tables()6121 scope_diff::clear_lookup_tables()
6122 {
6123 priv_->deleted_types_.clear();
6124 priv_->deleted_decls_.clear();
6125 priv_->inserted_types_.clear();
6126 priv_->inserted_decls_.clear();
6127 priv_->changed_types_.clear();
6128 priv_->changed_decls_.clear();
6129 priv_->removed_types_.clear();
6130 priv_->removed_decls_.clear();
6131 priv_->added_types_.clear();
6132 priv_->added_decls_.clear();
6133 }
6134
6135 /// Tests if the lookup tables are empty.
6136 ///
6137 /// This function must be updated each time a lookup table is added or
6138 /// removed.
6139 ///
6140 /// @return true iff all the lookup tables are empty.
6141 bool
lookup_tables_empty() const6142 scope_diff::lookup_tables_empty() const
6143 {
6144 return (priv_->deleted_types_.empty()
6145 && priv_->deleted_decls_.empty()
6146 && priv_->inserted_types_.empty()
6147 && priv_->inserted_decls_.empty()
6148 && priv_->changed_types_.empty()
6149 && priv_->changed_decls_.empty()
6150 && priv_->removed_types_.empty()
6151 && priv_->removed_decls_.empty()
6152 && priv_->added_types_.empty()
6153 && priv_->added_decls_.empty());
6154 }
6155
6156 /// If the lookup tables are not yet built, walk the member_changes_
6157 /// member and fill the lookup tables.
6158 void
ensure_lookup_tables_populated()6159 scope_diff::ensure_lookup_tables_populated()
6160 {
6161 if (!lookup_tables_empty())
6162 return;
6163
6164 edit_script& e = priv_->member_changes_;
6165
6166 // Populate deleted types & decls lookup tables.
6167 for (vector<deletion>::const_iterator i = e.deletions().begin();
6168 i != e.deletions().end();
6169 ++i)
6170 {
6171 decl_base_sptr decl = deleted_member_at(i);
6172 string qname = decl->get_qualified_name();
6173 if (is_type(decl))
6174 {
6175 class_decl_sptr klass_decl = dynamic_pointer_cast<class_decl>(decl);
6176 if (klass_decl && klass_decl->get_is_declaration_only())
6177 continue;
6178
6179 ABG_ASSERT(priv_->deleted_types_.find(qname)
6180 == priv_->deleted_types_.end());
6181 priv_->deleted_types_[qname] = decl;
6182 }
6183 else
6184 {
6185 ABG_ASSERT(priv_->deleted_decls_.find(qname)
6186 == priv_->deleted_decls_.end());
6187 priv_->deleted_decls_[qname] = decl;
6188 }
6189 }
6190
6191 // Populate inserted types & decls as well as chagned types & decls
6192 // lookup tables.
6193 for (vector<insertion>::const_iterator it = e.insertions().begin();
6194 it != e.insertions().end();
6195 ++it)
6196 {
6197 for (vector<unsigned>::const_iterator i = it->inserted_indexes().begin();
6198 i != it->inserted_indexes().end();
6199 ++i)
6200 {
6201 decl_base_sptr decl = inserted_member_at(i);
6202 string qname = decl->get_qualified_name();
6203 if (is_type(decl))
6204 {
6205 class_decl_sptr klass_decl =
6206 dynamic_pointer_cast<class_decl>(decl);
6207 if (klass_decl && klass_decl->get_is_declaration_only())
6208 continue;
6209
6210 ABG_ASSERT(priv_->inserted_types_.find(qname)
6211 == priv_->inserted_types_.end());
6212 string_decl_base_sptr_map::const_iterator j =
6213 priv_->deleted_types_.find(qname);
6214 if (j != priv_->deleted_types_.end())
6215 {
6216 if (*j->second != *decl)
6217 priv_->changed_types_[qname] =
6218 compute_diff(j->second, decl, context());
6219 priv_->deleted_types_.erase(j);
6220 }
6221 else
6222 priv_->inserted_types_[qname] = decl;
6223 }
6224 else
6225 {
6226 ABG_ASSERT(priv_->inserted_decls_.find(qname)
6227 == priv_->inserted_decls_.end());
6228 string_decl_base_sptr_map::const_iterator j =
6229 priv_->deleted_decls_.find(qname);
6230 if (j != priv_->deleted_decls_.end())
6231 {
6232 if (*j->second != *decl)
6233 priv_->changed_decls_[qname] =
6234 compute_diff(j->second, decl, context());
6235 priv_->deleted_decls_.erase(j);
6236 }
6237 else
6238 priv_->inserted_decls_[qname] = decl;
6239 }
6240 }
6241 }
6242
6243 sort_string_diff_sptr_map(priv_->changed_decls_,
6244 priv_->sorted_changed_decls_);
6245 sort_string_diff_sptr_map(priv_->changed_types_,
6246 priv_->sorted_changed_types_);
6247
6248 // Populate removed types/decls lookup tables
6249 for (string_decl_base_sptr_map::const_iterator i =
6250 priv_->deleted_types_.begin();
6251 i != priv_->deleted_types_.end();
6252 ++i)
6253 {
6254 string_decl_base_sptr_map::const_iterator r =
6255 priv_->inserted_types_.find(i->first);
6256 if (r == priv_->inserted_types_.end())
6257 priv_->removed_types_[i->first] = i->second;
6258 }
6259 for (string_decl_base_sptr_map::const_iterator i =
6260 priv_->deleted_decls_.begin();
6261 i != priv_->deleted_decls_.end();
6262 ++i)
6263 {
6264 string_decl_base_sptr_map::const_iterator r =
6265 priv_->inserted_decls_.find(i->first);
6266 if (r == priv_->inserted_decls_.end())
6267 priv_->removed_decls_[i->first] = i->second;
6268 }
6269
6270 // Populate added types/decls.
6271 for (string_decl_base_sptr_map::const_iterator i =
6272 priv_->inserted_types_.begin();
6273 i != priv_->inserted_types_.end();
6274 ++i)
6275 {
6276 string_decl_base_sptr_map::const_iterator r =
6277 priv_->deleted_types_.find(i->first);
6278 if (r == priv_->deleted_types_.end())
6279 priv_->added_types_[i->first] = i->second;
6280 }
6281 for (string_decl_base_sptr_map::const_iterator i =
6282 priv_->inserted_decls_.begin();
6283 i != priv_->inserted_decls_.end();
6284 ++i)
6285 {
6286 string_decl_base_sptr_map::const_iterator r =
6287 priv_->deleted_decls_.find(i->first);
6288 if (r == priv_->deleted_decls_.end())
6289 priv_->added_decls_[i->first] = i->second;
6290 }
6291 }
6292
6293 /// Populate the vector of children node of the @ref diff base type
6294 /// sub-object of this instance of @ref scope_diff.
6295 ///
6296 /// The children node can then later be retrieved using
6297 /// diff::children_node().
6298 void
chain_into_hierarchy()6299 scope_diff::chain_into_hierarchy()
6300 {
6301 for (diff_sptrs_type::const_iterator i = changed_types().begin();
6302 i != changed_types().end();
6303 ++i)
6304 if (*i)
6305 append_child_node(*i);
6306
6307 for (diff_sptrs_type::const_iterator i = changed_decls().begin();
6308 i != changed_decls().end();
6309 ++i)
6310 if (*i)
6311 append_child_node(*i);
6312 }
6313
6314 /// Constructor for scope_diff
6315 ///
6316 /// @param first_scope the first scope to consider for the diff.
6317 ///
6318 /// @param second_scope the second scope to consider for the diff.
6319 ///
6320 /// @param ctxt the diff context to use. Note that this context
6321 /// object must stay alive at least during the life time of the
6322 /// current instance of @ref scope_diff. Otherwise memory corruption
6323 /// issues occur.
scope_diff(scope_decl_sptr first_scope,scope_decl_sptr second_scope,diff_context_sptr ctxt)6324 scope_diff::scope_diff(scope_decl_sptr first_scope,
6325 scope_decl_sptr second_scope,
6326 diff_context_sptr ctxt)
6327 : diff(first_scope, second_scope, ctxt),
6328 priv_(new priv)
6329 {}
6330
6331 /// Finish building the current instance of @ref scope_diff.
6332 void
finish_diff_type()6333 scope_diff::finish_diff_type()
6334 {
6335 if (diff::priv_->finished_)
6336 return;
6337 chain_into_hierarchy();
6338 diff::priv_->finished_ = true;
6339 }
6340
6341 /// Getter for the first scope of the diff.
6342 ///
6343 /// @return the first scope of the diff.
6344 const scope_decl_sptr
first_scope() const6345 scope_diff::first_scope() const
6346 {return dynamic_pointer_cast<scope_decl>(first_subject());}
6347
6348 /// Getter for the second scope of the diff.
6349 ///
6350 /// @return the second scope of the diff.
6351 const scope_decl_sptr
second_scope() const6352 scope_diff::second_scope() const
6353 {return dynamic_pointer_cast<scope_decl>(second_subject());}
6354
6355 /// Accessor of the edit script of the members of a scope.
6356 ///
6357 /// This edit script is computed using the equality operator that
6358 /// applies to shared_ptr<decl_base>.
6359 ///
6360 /// That has interesting consequences. For instance, consider two
6361 /// scopes S0 and S1. S0 contains a class C0 and S1 contains a class
6362 /// S0'. C0 and C0' have the same qualified name, but have different
6363 /// members. The edit script will consider that C0 has been deleted
6364 /// from S0 and that S0' has been inserted. This is a low level
6365 /// canonical representation of the changes; a higher level
6366 /// representation would give us a simpler way to say "the class C0
6367 /// has been modified into C0'". But worry not. We do have such
6368 /// higher representation as well; that is what changed_types() and
6369 /// changed_decls() is for.
6370 ///
6371 /// @return the edit script of the changes encapsulatd in this
6372 /// instance of scope_diff.
6373 const edit_script&
member_changes() const6374 scope_diff::member_changes() const
6375 {return priv_->member_changes_;}
6376
6377 /// Accessor of the edit script of the members of a scope.
6378 ///
6379 /// This edit script is computed using the equality operator that
6380 /// applies to shared_ptr<decl_base>.
6381 ///
6382 /// That has interesting consequences. For instance, consider two
6383 /// scopes S0 and S1. S0 contains a class C0 and S1 contains a class
6384 /// S0'. C0 and C0' have the same qualified name, but have different
6385 /// members. The edit script will consider that C0 has been deleted
6386 /// from S0 and that S0' has been inserted. This is a low level
6387 /// canonical representation of the changes; a higher level
6388 /// representation would give us a simpler way to say "the class C0
6389 /// has been modified into C0'". But worry not. We do have such
6390 /// higher representation as well; that is what changed_types() and
6391 /// changed_decls() is for.
6392 ///
6393 /// @return the edit script of the changes encapsulatd in this
6394 /// instance of scope_diff.
6395 edit_script&
member_changes()6396 scope_diff::member_changes()
6397 {return priv_->member_changes_;}
6398
6399 /// Accessor that eases the manipulation of the edit script associated
6400 /// to this instance. It returns the scope member that is reported
6401 /// (in the edit script) as deleted at a given index.
6402 ///
6403 /// @param i the index (in the edit script) of an element of the first
6404 /// scope that has been reported as being delete.
6405 ///
6406 /// @return the scope member that has been reported by the edit script
6407 /// as being deleted at index i.
6408 const decl_base_sptr
deleted_member_at(unsigned i) const6409 scope_diff::deleted_member_at(unsigned i) const
6410 {
6411 scope_decl_sptr scope = dynamic_pointer_cast<scope_decl>(first_subject());
6412 return scope->get_member_decls()[i];
6413 }
6414
6415 /// Accessor that eases the manipulation of the edit script associated
6416 /// to this instance. It returns the scope member (of the first scope
6417 /// of this diff instance) that is reported (in the edit script) as
6418 /// deleted at a given iterator.
6419 ///
6420 /// @param i the iterator of an element of the first scope that has
6421 /// been reported as being delete.
6422 ///
6423 /// @return the scope member of the first scope of this diff that has
6424 /// been reported by the edit script as being deleted at iterator i.
6425 const decl_base_sptr
deleted_member_at(vector<deletion>::const_iterator i) const6426 scope_diff::deleted_member_at(vector<deletion>::const_iterator i) const
6427 {return deleted_member_at(i->index());}
6428
6429 /// Accessor that eases the manipulation of the edit script associated
6430 /// to this instance. It returns the scope member (of the second
6431 /// scope of this diff instance) that is reported as being inserted
6432 /// from a given index.
6433 ///
6434 /// @param i the index of an element of the second scope this diff
6435 /// that has been reported by the edit script as being inserted.
6436 ///
6437 /// @return the scope member of the second scope of this diff that has
6438 /// been reported as being inserted from index i.
6439 const decl_base_sptr
inserted_member_at(unsigned i)6440 scope_diff::inserted_member_at(unsigned i)
6441 {
6442 scope_decl_sptr scope = dynamic_pointer_cast<scope_decl>(second_subject());
6443 return scope->get_member_decls()[i];
6444 }
6445
6446 /// Accessor that eases the manipulation of the edit script associated
6447 /// to this instance. It returns the scope member (of the second
6448 /// scope of this diff instance) that is reported as being inserted
6449 /// from a given iterator.
6450 ///
6451 /// @param i the iterator of an element of the second scope this diff
6452 /// that has been reported by the edit script as being inserted.
6453 ///
6454 /// @return the scope member of the second scope of this diff that has
6455 /// been reported as being inserted from iterator i.
6456 const decl_base_sptr
inserted_member_at(vector<unsigned>::const_iterator i)6457 scope_diff::inserted_member_at(vector<unsigned>::const_iterator i)
6458 {return inserted_member_at(*i);}
6459
6460 /// @return a sorted vector of the types which content has changed
6461 /// from the first scope to the other.
6462 const diff_sptrs_type&
changed_types() const6463 scope_diff::changed_types() const
6464 {return priv_->sorted_changed_types_;}
6465
6466 /// @return a sorted vector of the decls which content has changed
6467 /// from the first scope to the other.
6468 const diff_sptrs_type&
changed_decls() const6469 scope_diff::changed_decls() const
6470 {return priv_->sorted_changed_decls_;}
6471
6472 const string_decl_base_sptr_map&
removed_types() const6473 scope_diff::removed_types() const
6474 {return priv_->removed_types_;}
6475
6476 const string_decl_base_sptr_map&
removed_decls() const6477 scope_diff::removed_decls() const
6478 {return priv_->removed_decls_;}
6479
6480 const string_decl_base_sptr_map&
added_types() const6481 scope_diff::added_types() const
6482 {return priv_->added_types_;}
6483
6484 const string_decl_base_sptr_map&
added_decls() const6485 scope_diff::added_decls() const
6486 {return priv_->added_decls_;}
6487
6488 /// @return the pretty representation for the current instance of @ref
6489 /// scope_diff.
6490 const string&
get_pretty_representation() const6491 scope_diff::get_pretty_representation() const
6492 {
6493 if (diff::priv_->pretty_representation_.empty())
6494 {
6495 std::ostringstream o;
6496 o << "scope_diff["
6497 << first_subject()->get_pretty_representation()
6498 << ", "
6499 << second_subject()->get_pretty_representation()
6500 << "]";
6501 diff::priv_->pretty_representation_ = o.str();
6502 }
6503 return diff::priv_->pretty_representation_;
6504 }
6505
6506 /// Return true iff the current diff node carries a change.
6507 ///
6508 /// Return true iff the current diff node carries a change.
6509 bool
has_changes() const6510 scope_diff::has_changes() const
6511 {
6512 // TODO: add the number of really removed/added stuff.
6513 return changed_types().size() + changed_decls().size();
6514 }
6515
6516 /// @return the kind of local change carried by the current diff node.
6517 /// The value returned is zero if the current node carries no local
6518 /// change.
6519 enum change_kind
has_local_changes() const6520 scope_diff::has_local_changes() const
6521 {
6522 ir::change_kind k = ir::NO_CHANGE_KIND;
6523 if (!equals(*first_scope(), *second_scope(), &k))
6524 return k & ir::ALL_LOCAL_CHANGES_MASK;
6525 return ir::NO_CHANGE_KIND;
6526 }
6527
6528 /// Report the changes of one scope against another.
6529 ///
6530 /// @param out the out stream to report the changes to.
6531 ///
6532 /// @param indent the string to use for indentation.
6533 void
report(ostream & out,const string & indent) const6534 scope_diff::report(ostream& out, const string& indent) const
6535 {
6536 context()->get_reporter()->report(*this, out, indent);
6537 }
6538
6539 /// Compute the diff between two scopes.
6540 ///
6541 /// Note that the two decls must have been created in the same @ref
6542 /// environment, otherwise, this function aborts.
6543 ///
6544 /// @param first the first scope to consider in computing the diff.
6545 ///
6546 /// @param second the second scope to consider in the diff
6547 /// computation. The second scope is diffed against the first scope.
6548 ///
6549 /// @param d a pointer to the diff object to populate with the
6550 /// computed diff.
6551 ///
6552 /// @return return the populated \a d parameter passed to this
6553 /// function.
6554 ///
6555 /// @param ctxt the diff context to use.
6556 scope_diff_sptr
compute_diff(const scope_decl_sptr first,const scope_decl_sptr second,scope_diff_sptr d,diff_context_sptr ctxt)6557 compute_diff(const scope_decl_sptr first,
6558 const scope_decl_sptr second,
6559 scope_diff_sptr d,
6560 diff_context_sptr ctxt)
6561 {
6562 ABG_ASSERT(d->first_scope() == first && d->second_scope() == second);
6563
6564 if (first && second)
6565 ABG_ASSERT(first->get_environment() == second->get_environment());
6566
6567 compute_diff(first->get_member_decls().begin(),
6568 first->get_member_decls().end(),
6569 second->get_member_decls().begin(),
6570 second->get_member_decls().end(),
6571 d->member_changes());
6572
6573 d->ensure_lookup_tables_populated();
6574 d->context(ctxt);
6575
6576 return d;
6577 }
6578
6579 /// Compute the diff between two scopes.
6580 ///
6581 /// Note that the two decls must have been created in the same @ref
6582 /// environment, otherwise, this function aborts.
6583 ///
6584 /// @param first_scope the first scope to consider in computing the diff.
6585 ///
6586 /// @param second_scope the second scope to consider in the diff
6587 /// computation. The second scope is diffed against the first scope.
6588 ///
6589 /// @param ctxt the diff context to use.
6590 ///
6591 /// @return return the resulting diff
6592 scope_diff_sptr
compute_diff(const scope_decl_sptr first_scope,const scope_decl_sptr second_scope,diff_context_sptr ctxt)6593 compute_diff(const scope_decl_sptr first_scope,
6594 const scope_decl_sptr second_scope,
6595 diff_context_sptr ctxt)
6596 {
6597 if (first_scope && second_scope)
6598 ABG_ASSERT(first_scope->get_environment()
6599 == second_scope->get_environment());
6600
6601 scope_diff_sptr d(new scope_diff(first_scope, second_scope, ctxt));
6602 d = compute_diff(first_scope, second_scope, d, ctxt);
6603 ctxt->initialize_canonical_diff(d);
6604 return d;
6605 }
6606
6607 //</scope_diff stuff>
6608
6609 // <fn_parm_diff stuff>
6610
6611 /// Constructor for the fn_parm_diff type.
6612 ///
6613 /// @param first the first subject of the diff.
6614 ///
6615 /// @param second the second subject of the diff.
6616 ///
6617 /// @param ctxt the context of the diff. Note that this context
6618 /// object must stay alive at least during the life time of the
6619 /// current instance of @ref fn_parm_diff. Otherwise memory
6620 /// corruption issues occur.
fn_parm_diff(const function_decl::parameter_sptr first,const function_decl::parameter_sptr second,diff_context_sptr ctxt)6621 fn_parm_diff::fn_parm_diff(const function_decl::parameter_sptr first,
6622 const function_decl::parameter_sptr second,
6623 diff_context_sptr ctxt)
6624 : decl_diff_base(first, second, ctxt),
6625 priv_(new priv)
6626 {
6627 ABG_ASSERT(first->get_index() == second->get_index());
6628 priv_->type_diff = compute_diff(first->get_type(),
6629 second->get_type(),
6630 ctxt);
6631 ABG_ASSERT(priv_->type_diff);
6632 }
6633
6634 /// Finish the building of the current instance of @ref fn_parm_diff.
6635 void
finish_diff_type()6636 fn_parm_diff::finish_diff_type()
6637 {
6638 if (diff::priv_->finished_)
6639 return;
6640 chain_into_hierarchy();
6641 diff::priv_->finished_ = true;
6642 }
6643
6644 /// Getter for the first subject of this diff node.
6645 ///
6646 /// @return the first function_decl::parameter_sptr subject of this
6647 /// diff node.
6648 const function_decl::parameter_sptr
first_parameter() const6649 fn_parm_diff::first_parameter() const
6650 {return dynamic_pointer_cast<function_decl::parameter>(first_subject());}
6651
6652 /// Getter for the second subject of this diff node.
6653 ///
6654 /// @return the second function_decl::parameter_sptr subject of this
6655 /// diff node.
6656 const function_decl::parameter_sptr
second_parameter() const6657 fn_parm_diff::second_parameter() const
6658 {return dynamic_pointer_cast<function_decl::parameter>(second_subject());}
6659
6660 /// Getter for the diff representing the changes on the type of the
6661 /// function parameter involved in the current instance of @ref
6662 /// fn_parm_diff.
6663 ///
6664 /// @return a diff_sptr representing the changes on the type of the
6665 /// function parameter we are interested in.
6666 diff_sptr
type_diff() const6667 fn_parm_diff::type_diff() const
6668 {return priv_->type_diff;}
6669
6670 /// Build and return a textual representation of the current instance
6671 /// of @ref fn_parm_diff.
6672 ///
6673 /// @return the string representing the current instance of
6674 /// fn_parm_diff.
6675 const string&
get_pretty_representation() const6676 fn_parm_diff::get_pretty_representation() const
6677 {
6678 if (diff::priv_->pretty_representation_.empty())
6679 {
6680 std::ostringstream o;
6681 o << "function_parameter_diff["
6682 << first_subject()->get_pretty_representation()
6683 << ", "
6684 << second_subject()->get_pretty_representation()
6685 << "]";
6686 diff::priv_->pretty_representation_ = o.str();
6687 }
6688 return diff::priv_->pretty_representation_;
6689 }
6690
6691 /// Return true iff the current diff node carries a change.
6692 ///
6693 /// @return true iff the current diff node carries a change.
6694 bool
has_changes() const6695 fn_parm_diff::has_changes() const
6696 {return *first_parameter() != *second_parameter();}
6697
6698 /// Check if the current diff node carries a local change.
6699 ///
6700 /// @return the kind of local change carried by the current diff node.
6701 /// The value returned is zero if the current node carries no local
6702 /// change.
6703 enum change_kind
has_local_changes() const6704 fn_parm_diff::has_local_changes() const
6705 {
6706 ir::change_kind k = ir::NO_CHANGE_KIND;
6707 if (!equals(*first_parameter(), *second_parameter(), &k))
6708 return k & ir::ALL_LOCAL_CHANGES_MASK;
6709 return ir::NO_CHANGE_KIND;
6710 }
6711
6712 /// Emit a textual report about the current fn_parm_diff instance.
6713 ///
6714 /// @param out the output stream to emit the textual report to.
6715 ///
6716 /// @param indent the indentation string to use in the report.
6717 void
report(ostream & out,const string & indent) const6718 fn_parm_diff::report(ostream& out, const string& indent) const
6719 {
6720 context()->get_reporter()->report(*this, out, indent);
6721 }
6722
6723 /// Populate the vector of children nodes of the @ref diff base type
6724 /// sub-object of this instance of @ref fn_parm_diff.
6725 ///
6726 /// The children nodes can then later be retrieved using
6727 /// diff::children_nodes()
6728 void
chain_into_hierarchy()6729 fn_parm_diff::chain_into_hierarchy()
6730 {
6731 if (type_diff())
6732 append_child_node(type_diff());
6733 }
6734
6735 /// Compute the difference between two function_decl::parameter_sptr;
6736 /// that is, between two function parameters. Return a resulting
6737 /// fn_parm_diff_sptr that represents the changes.
6738 ///
6739 /// Note that the two decls must have been created in the same @ref
6740 /// environment, otherwise, this function aborts.
6741 ///
6742 /// @param first the first subject of the diff.
6743 ///
6744 /// @param second the second subject of the diff.
6745 ///
6746 /// @param ctxt the context of the diff.
6747 ///
6748 /// @return fn_parm_diff_sptr the resulting diff node.
6749 fn_parm_diff_sptr
compute_diff(const function_decl::parameter_sptr first,const function_decl::parameter_sptr second,diff_context_sptr ctxt)6750 compute_diff(const function_decl::parameter_sptr first,
6751 const function_decl::parameter_sptr second,
6752 diff_context_sptr ctxt)
6753 {
6754 if (!first || !second)
6755 return fn_parm_diff_sptr();
6756
6757 ABG_ASSERT(first->get_environment() == second->get_environment());
6758
6759 fn_parm_diff_sptr result(new fn_parm_diff(first, second, ctxt));
6760 ctxt->initialize_canonical_diff(result);
6761
6762 return result;
6763 }
6764 // </fn_parm_diff stuff>
6765
6766 // <function_type_diff stuff>
6767
6768 void
ensure_lookup_tables_populated()6769 function_type_diff::ensure_lookup_tables_populated()
6770 {
6771 priv_->return_type_diff_ =
6772 compute_diff(first_function_type()->get_return_type(),
6773 second_function_type()->get_return_type(),
6774 context());
6775
6776 string parm_name;
6777 function_decl::parameter_sptr parm;
6778 for (vector<deletion>::const_iterator i =
6779 priv_->parm_changes_.deletions().begin();
6780 i != priv_->parm_changes_.deletions().end();
6781 ++i)
6782 {
6783 parm = *(first_function_type()->get_first_parm()
6784 + i->index());
6785 parm_name = parm->get_name_id();
6786 // If for a reason the type name is empty we want to know and
6787 // fix that.
6788 ABG_ASSERT(!parm_name.empty());
6789 priv_->deleted_parms_[parm_name] = parm;
6790 priv_->deleted_parms_by_id_[parm->get_index()] = parm;
6791 }
6792
6793 for (vector<insertion>::const_iterator i =
6794 priv_->parm_changes_.insertions().begin();
6795 i != priv_->parm_changes_.insertions().end();
6796 ++i)
6797 {
6798 for (vector<unsigned>::const_iterator j =
6799 i->inserted_indexes().begin();
6800 j != i->inserted_indexes().end();
6801 ++j)
6802 {
6803 parm = *(second_function_type()->get_first_parm() + *j);
6804 parm_name = parm->get_name_id();
6805 // If for a reason the type name is empty we want to know and
6806 // fix that.
6807 ABG_ASSERT(!parm_name.empty());
6808 {
6809 string_parm_map::const_iterator k =
6810 priv_->deleted_parms_.find(parm_name);
6811 if (k != priv_->deleted_parms_.end())
6812 {
6813 if (*k->second != *parm)
6814 priv_->subtype_changed_parms_[parm_name] =
6815 compute_diff(k->second, parm, context());
6816 priv_->deleted_parms_.erase(parm_name);
6817 }
6818 else
6819 priv_->added_parms_[parm_name] = parm;
6820 }
6821 {
6822 unsigned_parm_map::const_iterator k =
6823 priv_->deleted_parms_by_id_.find(parm->get_index());
6824 if (k != priv_->deleted_parms_by_id_.end())
6825 {
6826 if (*k->second != *parm
6827 && (k->second->get_name_id() != parm_name))
6828 priv_->changed_parms_by_id_[parm->get_index()] =
6829 compute_diff(k->second, parm, context());
6830 priv_->added_parms_.erase(parm_name);
6831 priv_->deleted_parms_.erase(k->second->get_name_id());
6832 priv_->deleted_parms_by_id_.erase(parm->get_index());
6833 }
6834 else
6835 priv_->added_parms_by_id_[parm->get_index()] = parm;
6836 }
6837 }
6838 }
6839
6840 sort_string_fn_parm_diff_sptr_map(priv_->subtype_changed_parms_,
6841 priv_->sorted_subtype_changed_parms_);
6842 sort_string_fn_parm_diff_sptr_map(priv_->changed_parms_by_id_,
6843 priv_->sorted_changed_parms_by_id_);
6844 sort_string_parm_map(priv_->deleted_parms_,
6845 priv_->sorted_deleted_parms_);
6846
6847 sort_string_parm_map(priv_->added_parms_,
6848 priv_->sorted_added_parms_);
6849 }
6850
6851 /// In the vector of deleted parameters, get the one that is at a given
6852 /// index.
6853 ///
6854 /// @param i the index of the deleted parameter to get.
6855 ///
6856 /// @return the parameter returned.
6857 const function_decl::parameter_sptr
deleted_parameter_at(int i) const6858 function_type_diff::deleted_parameter_at(int i) const
6859 {return first_function_type()->get_parameters()[i];}
6860
6861 /// Getter for the sorted vector of deleted parameters.
6862 ///
6863 /// @return the sorted vector of deleted parameters.
6864 const vector<function_decl::parameter_sptr>&
sorted_deleted_parms() const6865 function_type_diff::sorted_deleted_parms() const
6866 {return priv_->sorted_deleted_parms_;}
6867
6868 /// Getter for the sorted vector of added parameters .
6869 ///
6870 /// @return the sorted vector of added parameters.
6871 const vector<function_decl::parameter_sptr>&
sorted_added_parms() const6872 function_type_diff::sorted_added_parms() const
6873 {return priv_->sorted_added_parms_;}
6874
6875 /// In the vector of inserted parameters, get the one that is at a
6876 /// given index.
6877 ///
6878 /// @param i the index of the inserted parameter to get.
6879 ///
6880 /// @return the parameter returned.
6881 const function_decl::parameter_sptr
inserted_parameter_at(int i) const6882 function_type_diff::inserted_parameter_at(int i) const
6883 {return second_function_type()->get_parameters()[i];}
6884
6885 /// Consutrctor of the @ref function_type type.
6886 ///
6887 /// @param first the first @ref function_type subject of the diff to
6888 /// create.
6889 ///
6890 /// @param second the second @ref function_type subject of the diff to
6891 /// create.
6892 ///
6893 /// @param ctxt the diff context to be used by the newly created
6894 /// instance of function_type_diff. Note that this context object
6895 /// must stay alive at least during the life time of the current
6896 /// instance of @ref function_type_diff. Otherwise memory corruption
6897 /// issues occur.
function_type_diff(const function_type_sptr first,const function_type_sptr second,diff_context_sptr ctxt)6898 function_type_diff::function_type_diff(const function_type_sptr first,
6899 const function_type_sptr second,
6900 diff_context_sptr ctxt)
6901 : type_diff_base(first, second, ctxt),
6902 priv_(new priv)
6903 {}
6904
6905 /// Finish building the current instance of @ref function_type_diff
6906 void
finish_diff_type()6907 function_type_diff::finish_diff_type()
6908 {
6909 if (diff::priv_->finished_)
6910 return;
6911 chain_into_hierarchy();
6912 diff::priv_->finished_ = true;
6913 }
6914
6915 /// Getter for the first subject of the diff.
6916 ///
6917 /// @return the first function type involved in the diff.
6918 const function_type_sptr
first_function_type() const6919 function_type_diff::first_function_type() const
6920 {return dynamic_pointer_cast<function_type>(first_subject());}
6921
6922 /// Getter for the second subject of the diff.
6923 ///
6924 /// @return the second function type involved in the diff.
6925 const function_type_sptr
second_function_type() const6926 function_type_diff::second_function_type() const
6927 {return dynamic_pointer_cast<function_type>(second_subject());}
6928
6929 /// Getter for the diff of the return types of the two function types
6930 /// of the current diff.
6931 ///
6932 /// @return the diff of the return types of the two function types of
6933 /// the current diff.
6934 const diff_sptr
return_type_diff() const6935 function_type_diff::return_type_diff() const
6936 {return priv_->return_type_diff_;}
6937
6938 /// Getter for the map of function parameter changes of the current diff.
6939 ///
6940 /// @return a map of function parameter changes of the current diff.
6941 const string_fn_parm_diff_sptr_map&
subtype_changed_parms() const6942 function_type_diff::subtype_changed_parms() const
6943 {return priv_->subtype_changed_parms_;}
6944
6945 /// Getter for the map of parameters that got removed.
6946 ///
6947 /// @return the map of parameters that got removed.
6948 const string_parm_map&
removed_parms() const6949 function_type_diff::removed_parms() const
6950 {return priv_->deleted_parms_;}
6951
6952 /// Getter for the map of parameters that got added.
6953 ///
6954 /// @return the map of parameters that got added.
6955 const string_parm_map&
added_parms() const6956 function_type_diff::added_parms() const
6957 {return priv_->added_parms_;}
6958
6959 /// Build and return a copy of a pretty representation of the current
6960 /// instance of @ref function_type_diff.
6961 ///
6962 /// @return a copy of the pretty representation of the current
6963 /// instance of @ref function_type_diff.
6964 const string&
get_pretty_representation() const6965 function_type_diff::get_pretty_representation() const
6966 {
6967 if (diff::priv_->pretty_representation_.empty())
6968 {
6969 std::ostringstream o;
6970 o << "function_type_diff["
6971 << abigail::ir::get_pretty_representation(first_function_type())
6972 << ", "
6973 << abigail::ir::get_pretty_representation(second_function_type())
6974 << "]";
6975 diff::priv_->pretty_representation_ = o.str();
6976 }
6977 return diff::priv_->pretty_representation_;
6978 }
6979
6980 /// Test if the current diff node carries changes.
6981 ///
6982 /// @return true iff the current diff node carries changes.
6983 bool
has_changes() const6984 function_type_diff::has_changes() const
6985 {return *first_function_type() != *second_function_type();}
6986
6987 /// Test if the current diff node carries local changes.
6988 ///
6989 /// A local change is a change that is carried by this diff node, not
6990 /// by any of its children nodes.
6991 ///
6992 /// @return the kind of local change carried by the current diff node.
6993 /// The value returned is zero if the current node carries no local
6994 /// change.
6995 enum change_kind
has_local_changes() const6996 function_type_diff::has_local_changes() const
6997 {
6998 ir::change_kind k = ir::NO_CHANGE_KIND;
6999 if (!equals(*first_function_type(), *second_function_type(), &k))
7000 return k & ir::ALL_LOCAL_CHANGES_MASK;
7001 return ir::NO_CHANGE_KIND;
7002 }
7003
7004 /// Build and emit a textual report about the current @ref
7005 /// function_type_diff instance.
7006 ///
7007 /// @param out the output stream.
7008 ///
7009 /// @param indent the indentation string to use.
7010 void
report(ostream & out,const string & indent) const7011 function_type_diff::report(ostream& out, const string& indent) const
7012 {
7013 context()->get_reporter()->report(*this, out, indent);
7014 }
7015
7016 /// Populate the vector of children node of the @ref diff base type
7017 /// sub-object of this instance of @ref function_type_diff.
7018 ///
7019 /// The children node can then later be retrieved using
7020 /// diff::children_node().
7021 void
chain_into_hierarchy()7022 function_type_diff::chain_into_hierarchy()
7023 {
7024 if (diff_sptr d = return_type_diff())
7025 append_child_node(d);
7026
7027 for (vector<fn_parm_diff_sptr>::const_iterator i =
7028 priv_->sorted_subtype_changed_parms_.begin();
7029 i != priv_->sorted_subtype_changed_parms_.end();
7030 ++i)
7031 if (diff_sptr d = *i)
7032 append_child_node(d);
7033
7034 for (vector<fn_parm_diff_sptr>::const_iterator i =
7035 priv_->sorted_changed_parms_by_id_.begin();
7036 i != priv_->sorted_changed_parms_by_id_.end();
7037 ++i)
7038 if (diff_sptr d = *i)
7039 append_child_node(d);
7040 }
7041
7042 /// Compute the diff between two instances of @ref function_type.
7043 ///
7044 /// Note that the two types must have been created in the same @ref
7045 /// environment, otherwise, this function aborts.
7046 ///
7047 /// @param first the first @ref function_type to consider for the diff.
7048 ///
7049 /// @param second the second @ref function_type to consider for the diff.
7050 ///
7051 /// @param ctxt the diff context to use.
7052 ///
7053 /// @return the resulting diff between the two @ref function_type.
7054 function_type_diff_sptr
compute_diff(const function_type_sptr first,const function_type_sptr second,diff_context_sptr ctxt)7055 compute_diff(const function_type_sptr first,
7056 const function_type_sptr second,
7057 diff_context_sptr ctxt)
7058 {
7059 if (!first || !second)
7060 {
7061 // TODO: implement this for either first or second being NULL.
7062 return function_type_diff_sptr();
7063 }
7064
7065 ABG_ASSERT(first->get_environment() == second->get_environment());
7066
7067 function_type_diff_sptr result(new function_type_diff(first, second, ctxt));
7068
7069 diff_utils::compute_diff(first->get_first_parm(),
7070 first->get_parameters().end(),
7071 second->get_first_parm(),
7072 second->get_parameters().end(),
7073 result->priv_->parm_changes_);
7074
7075 result->ensure_lookup_tables_populated();
7076
7077 ctxt->initialize_canonical_diff(result);
7078
7079 return result;
7080 }
7081 // </function_type_diff stuff>
7082
7083 // <function_decl_diff stuff>
7084
7085 /// Build the lookup tables of the diff, if necessary.
7086 void
ensure_lookup_tables_populated()7087 function_decl_diff::ensure_lookup_tables_populated()
7088 {
7089 }
7090
7091 /// Populate the vector of children node of the @ref diff base type
7092 /// sub-object of this instance of @ref function_decl_diff.
7093 ///
7094 /// The children node can then later be retrieved using
7095 /// diff::children_node().
7096 void
chain_into_hierarchy()7097 function_decl_diff::chain_into_hierarchy()
7098 {
7099 if (diff_sptr d = type_diff())
7100 append_child_node(d);
7101 }
7102
7103 /// Constructor for function_decl_diff
7104 ///
7105 /// @param first the first function considered by the diff.
7106 ///
7107 /// @param second the second function considered by the diff.
7108 ///
7109 /// @param ctxt the context of the diff. Note that this context
7110 /// object must stay alive at least during the life time of the
7111 /// current instance of @ref function_decl_diff. Otherwise memory
7112 /// corruption issues occur.
function_decl_diff(const function_decl_sptr first,const function_decl_sptr second,diff_context_sptr ctxt)7113 function_decl_diff::function_decl_diff(const function_decl_sptr first,
7114 const function_decl_sptr second,
7115 diff_context_sptr ctxt)
7116 : decl_diff_base(first, second, ctxt),
7117 priv_(new priv)
7118 {
7119 }
7120
7121 /// Finish building the current instance of @ref function_decl_diff.
7122 void
finish_diff_type()7123 function_decl_diff::finish_diff_type()
7124 {
7125 if (diff::priv_->finished_)
7126 return;
7127 chain_into_hierarchy();
7128 diff::priv_->finished_ = true;
7129 }
7130
7131 /// @return the first function considered by the diff.
7132 const function_decl_sptr
first_function_decl() const7133 function_decl_diff::first_function_decl() const
7134 {return dynamic_pointer_cast<function_decl>(first_subject());}
7135
7136 /// @return the second function considered by the diff.
7137 const function_decl_sptr
second_function_decl() const7138 function_decl_diff::second_function_decl() const
7139 {return dynamic_pointer_cast<function_decl>(second_subject());}
7140
7141 const function_type_diff_sptr
type_diff() const7142 function_decl_diff::type_diff() const
7143 {return priv_->type_diff_;}
7144
7145 /// @return the pretty representation for the current instance of @ref
7146 /// function_decl_diff.
7147 const string&
get_pretty_representation() const7148 function_decl_diff::get_pretty_representation() const
7149 {
7150 if (diff::priv_->pretty_representation_.empty())
7151 {
7152 std::ostringstream o;
7153 o << "function_diff["
7154 << first_subject()->get_pretty_representation()
7155 << ", "
7156 << second_subject()->get_pretty_representation()
7157 << "]";
7158 diff::priv_->pretty_representation_ = o.str();
7159 }
7160 return diff::priv_->pretty_representation_;
7161 }
7162
7163 /// Return true iff the current diff node carries a change.
7164 ///
7165 /// @return true iff the current diff node carries a change.
7166 bool
has_changes() const7167 function_decl_diff::has_changes() const
7168 {return *first_function_decl() != *second_function_decl();}
7169
7170 /// @return the kind of local change carried by the current diff node.
7171 /// The value returned is zero if the current node carries no local
7172 /// change.
7173 enum change_kind
has_local_changes() const7174 function_decl_diff::has_local_changes() const
7175 {
7176 ir::change_kind k = ir::NO_CHANGE_KIND;
7177 if (!equals(*first_function_decl(), *second_function_decl(), &k))
7178 return k & ir::ALL_LOCAL_CHANGES_MASK;
7179 return ir::NO_CHANGE_KIND;
7180 }
7181
7182 /// Serialize a report of the changes encapsulated in the current
7183 /// instance of @ref function_decl_diff over to an output stream.
7184 ///
7185 /// @param out the output stream to serialize the report to.
7186 ///
7187 /// @param indent the string to use an an indentation prefix.
7188 void
report(ostream & out,const string & indent) const7189 function_decl_diff::report(ostream& out, const string& indent) const
7190 {
7191 context()->get_reporter()->report(*this, out, indent);
7192 }
7193
7194 /// Compute the diff between two function_decl.
7195 ///
7196 /// Note that the two decls must have been created in the same @ref
7197 /// environment, otherwise, this function aborts.
7198 ///
7199 /// @param first the first function_decl to consider for the diff
7200 ///
7201 /// @param second the second function_decl to consider for the diff
7202 ///
7203 /// @param ctxt the diff context to use.
7204 ///
7205 /// @return the computed diff
7206 function_decl_diff_sptr
compute_diff(const function_decl_sptr first,const function_decl_sptr second,diff_context_sptr ctxt)7207 compute_diff(const function_decl_sptr first,
7208 const function_decl_sptr second,
7209 diff_context_sptr ctxt)
7210 {
7211 if (!first || !second)
7212 {
7213 // TODO: implement this for either first or second being NULL.
7214 return function_decl_diff_sptr();
7215 }
7216
7217 ABG_ASSERT(first->get_environment() == second->get_environment());
7218
7219 function_type_diff_sptr type_diff = compute_diff(first->get_type(),
7220 second->get_type(),
7221 ctxt);
7222
7223 function_decl_diff_sptr result(new function_decl_diff(first, second,
7224 ctxt));
7225 result->priv_->type_diff_ = type_diff;
7226
7227 result->ensure_lookup_tables_populated();
7228
7229 ctxt->initialize_canonical_diff(result);
7230
7231 return result;
7232 }
7233
7234 // </function_decl_diff stuff>
7235
7236 // <type_decl_diff stuff>
7237
7238 /// Constructor for type_decl_diff.
7239 ///
7240 /// @param first the first subject of the diff.
7241 ///
7242 /// @param second the second subject of the diff.
7243 ///
7244 /// @param ctxt the context of the diff. Note that this context
7245 /// object must stay alive at least during the life time of the
7246 /// current instance of @ref type_decl_diff. Otherwise memory
7247 /// corruption issues occur.
type_decl_diff(const type_decl_sptr first,const type_decl_sptr second,diff_context_sptr ctxt)7248 type_decl_diff::type_decl_diff(const type_decl_sptr first,
7249 const type_decl_sptr second,
7250 diff_context_sptr ctxt)
7251 : type_diff_base(first, second, ctxt)
7252 {}
7253
7254 /// Finish building the current instance of @ref type_decl_diff.
7255 void
finish_diff_type()7256 type_decl_diff::finish_diff_type()
7257 {
7258 if (diff::priv_->finished_)
7259 return;
7260 diff::priv_->finished_ = true;
7261 }
7262
7263 /// Getter for the first subject of the type_decl_diff.
7264 ///
7265 /// @return the first type_decl involved in the diff.
7266 const type_decl_sptr
first_type_decl() const7267 type_decl_diff::first_type_decl() const
7268 {return dynamic_pointer_cast<type_decl>(first_subject());}
7269
7270 /// Getter for the second subject of the type_decl_diff.
7271 ///
7272 /// @return the second type_decl involved in the diff.
7273 const type_decl_sptr
second_type_decl() const7274 type_decl_diff::second_type_decl() const
7275 {return dynamic_pointer_cast<type_decl>(second_subject());}
7276
7277 /// @return the pretty representation for the current instance of @ref
7278 /// type_decl_diff.
7279 const string&
get_pretty_representation() const7280 type_decl_diff::get_pretty_representation() const
7281 {
7282 if (diff::priv_->pretty_representation_.empty())
7283 {
7284 std::ostringstream o;
7285 o << "type_decl_diff["
7286 << first_subject()->get_pretty_representation()
7287 << ", "
7288 << second_subject()->get_pretty_representation()
7289 << "]";
7290 diff::priv_->pretty_representation_ = o.str();
7291 }
7292 return diff::priv_->pretty_representation_;
7293 }
7294 /// Return true iff the current diff node carries a change.
7295 ///
7296 /// @return true iff the current diff node carries a change.
7297 bool
has_changes() const7298 type_decl_diff::has_changes() const
7299 {return first_type_decl() != second_type_decl();}
7300
7301 /// @return the kind of local change carried by the current diff node.
7302 /// The value returned is zero if the current node carries no local
7303 /// change.
7304 enum change_kind
has_local_changes() const7305 type_decl_diff::has_local_changes() const
7306 {
7307 ir::change_kind k = ir::NO_CHANGE_KIND;
7308 if (!equals(*first_type_decl(), *second_type_decl(), &k))
7309 return k & ir::ALL_LOCAL_CHANGES_MASK;
7310 return ir::NO_CHANGE_KIND;
7311 }
7312 /// Ouputs a report of the differences between of the two type_decl
7313 /// involved in the type_decl_diff.
7314 ///
7315 /// @param out the output stream to emit the report to.
7316 ///
7317 /// @param indent the string to use for indentatino indent.
7318 void
report(ostream & out,const string & indent) const7319 type_decl_diff::report(ostream& out, const string& indent) const
7320 {
7321 context()->get_reporter()->report(*this, out, indent);
7322 }
7323
7324 /// Compute a diff between two type_decl.
7325 ///
7326 /// Note that the two types must have been created in the same @ref
7327 /// environment, otherwise, this function aborts.
7328 ///
7329 /// This function doesn't actually compute a diff. As a type_decl is
7330 /// very simple (unlike compound constructs like function_decl or
7331 /// class_decl) it's easy to just compare the components of the
7332 /// type_decl to know what has changed. Thus this function just
7333 /// builds and return a type_decl_diff object. The
7334 /// type_decl_diff::report function will just compare the components
7335 /// of the the two type_decl and display where and how they differ.
7336 ///
7337 /// @param first a pointer to the first type_decl to
7338 /// consider.
7339 ///
7340 /// @param second a pointer to the second type_decl to consider.
7341 ///
7342 /// @param ctxt the diff context to use.
7343 ///
7344 /// @return a pointer to the resulting type_decl_diff.
7345 type_decl_diff_sptr
compute_diff(const type_decl_sptr first,const type_decl_sptr second,diff_context_sptr ctxt)7346 compute_diff(const type_decl_sptr first,
7347 const type_decl_sptr second,
7348 diff_context_sptr ctxt)
7349 {
7350 if (first && second)
7351 ABG_ASSERT(first->get_environment() == second->get_environment());
7352
7353 type_decl_diff_sptr result(new type_decl_diff(first, second, ctxt));
7354
7355 // We don't need to actually compute a diff here as a type_decl
7356 // doesn't have complicated sub-components. type_decl_diff::report
7357 // just walks the members of the type_decls and display information
7358 // about the ones that have changed. On a similar note,
7359 // type_decl_diff::length returns 0 if the two type_decls are equal,
7360 // and 1 otherwise.
7361
7362 ctxt->initialize_canonical_diff(result);
7363
7364 return result;
7365 }
7366
7367 // </type_decl_diff stuff>
7368
7369 // <typedef_diff stuff>
7370
7371 /// Populate the vector of children node of the @ref diff base type
7372 /// sub-object of this instance of @ref typedef_diff.
7373 ///
7374 /// The children node can then later be retrieved using
7375 /// diff::children_node().
7376 void
chain_into_hierarchy()7377 typedef_diff::chain_into_hierarchy()
7378 {append_child_node(underlying_type_diff());}
7379
7380 /// Constructor for typedef_diff.
7381 ///
7382 /// @param first the first subject of the diff.
7383 ///
7384 /// @param second the second subject of the diff.
7385 ///
7386 /// @param underlying the underlying diff of the @ref typedef_diff.
7387 /// That is the diff between the underlying types of @p first and @p
7388 /// second.
7389 ///
7390 /// @param ctxt the context of the diff. Note that this context
7391 /// object must stay alive at least during the life time of the
7392 /// current instance of @ref typedef_diff. Otherwise memory
7393 /// corruption issues occur.
typedef_diff(const typedef_decl_sptr first,const typedef_decl_sptr second,const diff_sptr underlying,diff_context_sptr ctxt)7394 typedef_diff::typedef_diff(const typedef_decl_sptr first,
7395 const typedef_decl_sptr second,
7396 const diff_sptr underlying,
7397 diff_context_sptr ctxt)
7398 : type_diff_base(first, second, ctxt),
7399 priv_(new priv(underlying))
7400 {}
7401
7402 /// Finish building the current instance of @ref typedef_diff.
7403 void
finish_diff_type()7404 typedef_diff::finish_diff_type()
7405 {
7406 if (diff::priv_->finished_)
7407 return;
7408 chain_into_hierarchy();
7409 diff::priv_->finished_ = true;
7410 }
7411
7412 /// Getter for the firt typedef_decl involved in the diff.
7413 ///
7414 /// @return the first subject of the diff.
7415 const typedef_decl_sptr
first_typedef_decl() const7416 typedef_diff::first_typedef_decl() const
7417 {return dynamic_pointer_cast<typedef_decl>(first_subject());}
7418
7419 /// Getter for the second typedef_decl involved in the diff.
7420 ///
7421 /// @return the second subject of the diff.
7422 const typedef_decl_sptr
second_typedef_decl() const7423 typedef_diff::second_typedef_decl() const
7424 {return dynamic_pointer_cast<typedef_decl>(second_subject());}
7425
7426 /// Getter for the diff between the two underlying types of the
7427 /// typedefs.
7428 ///
7429 /// @return the diff object reprensenting the difference between the
7430 /// two underlying types of the typedefs.
7431 const diff_sptr
underlying_type_diff() const7432 typedef_diff::underlying_type_diff() const
7433 {return priv_->underlying_type_diff_;}
7434
7435 /// Setter for the diff between the two underlying types of the
7436 /// typedefs.
7437 ///
7438 /// @param d the new diff object reprensenting the difference between
7439 /// the two underlying types of the typedefs.
7440 void
underlying_type_diff(const diff_sptr d)7441 typedef_diff::underlying_type_diff(const diff_sptr d)
7442 {priv_->underlying_type_diff_ = d;}
7443
7444 /// @return the pretty representation for the current instance of @ref
7445 /// typedef_diff.
7446 const string&
get_pretty_representation() const7447 typedef_diff::get_pretty_representation() const
7448 {
7449 if (diff::priv_->pretty_representation_.empty())
7450 {
7451 std::ostringstream o;
7452 o << "typedef_diff["
7453 << first_subject()->get_pretty_representation()
7454 << ", "
7455 << second_subject()->get_pretty_representation()
7456 << "]";
7457 diff::priv_->pretty_representation_ = o.str();
7458 }
7459 return diff::priv_->pretty_representation_;
7460 }
7461
7462 /// Return true iff the current diff node carries a change.
7463 ///
7464 /// @return true iff the current diff node carries a change.
7465 bool
has_changes() const7466 typedef_diff::has_changes() const
7467 {
7468 decl_base_sptr second = second_typedef_decl();
7469 return !(*first_typedef_decl() == *second);
7470 }
7471
7472 /// @return the kind of local change carried by the current diff node.
7473 /// The value returned is zero if the current node carries no local
7474 /// change.
7475 enum change_kind
has_local_changes() const7476 typedef_diff::has_local_changes() const
7477 {
7478 ir::change_kind k = ir::NO_CHANGE_KIND;
7479 if (!equals(*first_typedef_decl(), *second_typedef_decl(), &k))
7480 return k & ir::ALL_LOCAL_CHANGES_MASK;
7481 return ir::NO_CHANGE_KIND;
7482 }
7483
7484 /// Reports the difference between the two subjects of the diff in a
7485 /// serialized form.
7486 ///
7487 /// @param out the output stream to emit the report to.
7488 ///
7489 /// @param indent the indentation string to use.
7490 void
report(ostream & out,const string & indent) const7491 typedef_diff::report(ostream& out, const string& indent) const
7492 {
7493 context()->get_reporter()->report(*this, out, indent);
7494 }
7495
7496 /// Compute a diff between two typedef_decl.
7497 ///
7498 /// Note that the two types must have been created in the same @ref
7499 /// environment, otherwise, this function aborts.
7500 ///
7501 /// @param first a pointer to the first typedef_decl to consider.
7502 ///
7503 /// @param second a pointer to the second typedef_decl to consider.
7504 ///
7505 /// @param ctxt the diff context to use.
7506 ///
7507 /// @return a pointer to the the resulting typedef_diff.
7508 typedef_diff_sptr
compute_diff(const typedef_decl_sptr first,const typedef_decl_sptr second,diff_context_sptr ctxt)7509 compute_diff(const typedef_decl_sptr first,
7510 const typedef_decl_sptr second,
7511 diff_context_sptr ctxt)
7512 {
7513 if (first && second)
7514 ABG_ASSERT(first->get_environment() == second->get_environment());
7515
7516 diff_sptr d = compute_diff_for_types(first->get_underlying_type(),
7517 second->get_underlying_type(),
7518 ctxt);
7519 typedef_diff_sptr result(new typedef_diff(first, second, d, ctxt));
7520
7521 ctxt->initialize_canonical_diff(result);
7522
7523 return result;
7524 }
7525
7526 /// Return the leaf underlying diff node of a @ref typedef_diff node.
7527 ///
7528 /// If the underlying diff node of a @ref typedef_diff node is itself
7529 /// a @ref typedef_diff node, then recursively look at the underlying
7530 /// diff nodes to get the first one that is not a a @ref typedef_diff
7531 /// node. This is what a leaf underlying diff node means.
7532 ///
7533 /// Otherwise, if the underlying diff node of @ref typedef_diff is
7534 /// *NOT* a @ref typedef_diff node, then just return the underlying
7535 /// diff node.
7536 ///
7537 /// And if the diff node considered is not a @ref typedef_diff node,
7538 /// then just return it.
7539 ///
7540 /// @return the leaf underlying diff node of a @p diff.
7541 const diff*
get_typedef_diff_underlying_type_diff(const diff * diff)7542 get_typedef_diff_underlying_type_diff(const diff* diff)
7543 {
7544 const typedef_diff* d = dynamic_cast<const typedef_diff*>(diff);
7545 if (!d)
7546 return diff;
7547
7548 if (const typedef_diff* deef =
7549 dynamic_cast<const typedef_diff*>(d->underlying_type_diff().get()))
7550 return get_typedef_diff_underlying_type_diff(deef);
7551
7552 return d->underlying_type_diff().get();
7553 }
7554
7555 // </typedef_diff stuff>
7556
7557 // <translation_unit_diff stuff>
7558
7559 /// Constructor for translation_unit_diff.
7560 ///
7561 /// @param first the first translation unit to consider for this diff.
7562 ///
7563 /// @param second the second translation unit to consider for this diff.
7564 ///
7565 /// @param ctxt the context of the diff. Note that this context
7566 /// object must stay alive at least during the life time of the
7567 /// current instance of @ref translation_unit_diff. Otherwise memory
7568 /// corruption issues occur.
translation_unit_diff(translation_unit_sptr first,translation_unit_sptr second,diff_context_sptr ctxt)7569 translation_unit_diff::translation_unit_diff(translation_unit_sptr first,
7570 translation_unit_sptr second,
7571 diff_context_sptr ctxt)
7572 : scope_diff(first->get_global_scope(), second->get_global_scope(), ctxt),
7573 priv_(new priv(first, second))
7574 {
7575 }
7576
7577 /// Getter for the first translation unit of this diff.
7578 ///
7579 /// @return the first translation unit of this diff.
7580 const translation_unit_sptr
first_translation_unit() const7581 translation_unit_diff::first_translation_unit() const
7582 {return priv_->first_;}
7583
7584 /// Getter for the second translation unit of this diff.
7585 ///
7586 /// @return the second translation unit of this diff.
7587 const translation_unit_sptr
second_translation_unit() const7588 translation_unit_diff::second_translation_unit() const
7589 {return priv_->second_;}
7590
7591 /// Return true iff the current diff node carries a change.
7592 ///
7593 /// @return true iff the current diff node carries a change.
7594 bool
has_changes() const7595 translation_unit_diff::has_changes() const
7596 {return scope_diff::has_changes();}
7597
7598 /// @return the kind of local change carried by the current diff node.
7599 /// The value returned is zero if the current node carries no local
7600 /// change.
7601 enum change_kind
has_local_changes() const7602 translation_unit_diff::has_local_changes() const
7603 {return ir::NO_CHANGE_KIND;}
7604
7605 /// Report the diff in a serialized form.
7606 ///
7607 /// @param out the output stream to serialize the report to.
7608 ///
7609 /// @param indent the prefix to use as indentation for the report.
7610 void
report(ostream & out,const string & indent) const7611 translation_unit_diff::report(ostream& out, const string& indent) const
7612 {scope_diff::report(out, indent);}
7613
7614 /// Compute the diff between two translation_units.
7615 ///
7616 /// Note that the two translation units must have been created in the
7617 /// same @ref environment, otherwise, this function aborts.
7618 ///
7619 /// @param first the first translation_unit to consider.
7620 ///
7621 /// @param second the second translation_unit to consider.
7622 ///
7623 /// @param ctxt the diff context to use. If null, this function will
7624 /// create a new context and set to the diff object returned.
7625 ///
7626 /// @return the newly created diff object.
7627 translation_unit_diff_sptr
compute_diff(const translation_unit_sptr first,const translation_unit_sptr second,diff_context_sptr ctxt)7628 compute_diff(const translation_unit_sptr first,
7629 const translation_unit_sptr second,
7630 diff_context_sptr ctxt)
7631 {
7632 ABG_ASSERT(first && second);
7633
7634 ABG_ASSERT(first->get_environment() == second->get_environment());
7635
7636 if (!ctxt)
7637 ctxt.reset(new diff_context);
7638
7639 // TODO: handle first or second having empty contents.
7640 translation_unit_diff_sptr tu_diff(new translation_unit_diff(first, second,
7641 ctxt));
7642 scope_diff_sptr sc_diff = dynamic_pointer_cast<scope_diff>(tu_diff);
7643
7644 compute_diff(static_pointer_cast<scope_decl>(first->get_global_scope()),
7645 static_pointer_cast<scope_decl>(second->get_global_scope()),
7646 sc_diff,
7647 ctxt);
7648
7649 ctxt->initialize_canonical_diff(tu_diff);
7650
7651 return tu_diff;
7652 }
7653
7654 // </translation_unit_diff stuff>
7655
7656 // <diff_maps stuff>
7657
7658 /// The private data of the @ref diff_maps type.
7659 struct diff_maps::priv
7660 {
7661 string_diff_ptr_map type_decl_diff_map_;
7662 string_diff_ptr_map enum_diff_map_;
7663 string_diff_ptr_map class_diff_map_;
7664 string_diff_ptr_map union_diff_map_;
7665 string_diff_ptr_map typedef_diff_map_;
7666 string_diff_ptr_map array_diff_map_;
7667 string_diff_ptr_map reference_diff_map_;
7668 string_diff_ptr_map function_type_diff_map_;
7669 string_diff_ptr_map function_decl_diff_map_;
7670 string_diff_ptr_map var_decl_diff_map_;
7671 string_diff_ptr_map distinct_diff_map_;
7672 string_diff_ptr_map fn_parm_diff_map_;
7673 diff_artifact_set_map_type impacted_artifacts_map_;
7674 }; // end struct diff_maps::priv
7675
7676 /// Default constructor of the @ref diff_maps type.
diff_maps()7677 diff_maps::diff_maps()
7678 : priv_(new diff_maps::priv())
7679 {}
7680
7681 diff_maps::~diff_maps() = default;
7682
7683 /// Getter of the map that contains basic type diffs.
7684 ///
7685 /// @return the map that contains basic type diffs.
7686 const string_diff_ptr_map&
get_type_decl_diff_map() const7687 diff_maps::get_type_decl_diff_map() const
7688 {return priv_->type_decl_diff_map_;}
7689
7690 /// Getter of the map that contains basic type diffs.
7691 ///
7692 /// @return the map that contains basic type diffs.
7693 string_diff_ptr_map&
get_type_decl_diff_map()7694 diff_maps::get_type_decl_diff_map()
7695 {return priv_->type_decl_diff_map_;}
7696
7697 /// Getter of the map that contains enum type diffs.
7698 ///
7699 /// @return the map that contains enum type diffs.
7700 const string_diff_ptr_map&
get_enum_diff_map() const7701 diff_maps::get_enum_diff_map() const
7702 {return priv_->enum_diff_map_;}
7703
7704 /// Getter of the map that contains enum type diffs.
7705 ///
7706 /// @return the map that contains enum type diffs.
7707 string_diff_ptr_map&
get_enum_diff_map()7708 diff_maps::get_enum_diff_map()
7709 {return priv_->enum_diff_map_;}
7710
7711 /// Getter of the map that contains class type diffs.
7712 ///
7713 /// @return the map that contains class type diffs.
7714 const string_diff_ptr_map&
get_class_diff_map() const7715 diff_maps::get_class_diff_map() const
7716 {return priv_->class_diff_map_;}
7717
7718 /// Getter of the map that contains class type diffs.
7719 ///
7720 /// @return the map that contains class type diffs.
7721 string_diff_ptr_map&
get_class_diff_map()7722 diff_maps::get_class_diff_map()
7723 {return priv_->class_diff_map_;}
7724
7725 /// Getter of the map that contains union type diffs.
7726 ///
7727 /// @return the map that contains union type diffs.
7728 const string_diff_ptr_map&
get_union_diff_map() const7729 diff_maps::get_union_diff_map() const
7730 {return priv_->union_diff_map_;}
7731
7732 /// Getter of the map that contains union type diffs.
7733 ///
7734 /// @return the map that contains union type diffs.
7735 string_diff_ptr_map&
get_union_diff_map()7736 diff_maps::get_union_diff_map()
7737 {return priv_->union_diff_map_;}
7738
7739 /// Getter of the map that contains typedef type diffs.
7740 ///
7741 /// @return the map that contains typedef type diffs.
7742 const string_diff_ptr_map&
get_typedef_diff_map() const7743 diff_maps::get_typedef_diff_map() const
7744 {return priv_->typedef_diff_map_;}
7745
7746 /// Getter of the map that contains typedef type diffs.
7747 ///
7748 /// @return the map that contains typedef type diffs.
7749 string_diff_ptr_map&
get_typedef_diff_map()7750 diff_maps::get_typedef_diff_map()
7751 {return priv_->typedef_diff_map_;}
7752
7753 /// Getter of the map that contains array type diffs.
7754 ///
7755 /// @return the map that contains array type diffs.
7756 const string_diff_ptr_map&
get_array_diff_map() const7757 diff_maps::get_array_diff_map() const
7758 {return priv_->array_diff_map_;}
7759
7760 /// Getter of the map that contains array type diffs.
7761 ///
7762 /// @return the map that contains array type diffs.
7763 string_diff_ptr_map&
get_array_diff_map()7764 diff_maps::get_array_diff_map()
7765 {return priv_->array_diff_map_;}
7766
7767 /// Getter of the map that contains reference type diffs.
7768 ///
7769 /// @return the map that contains reference type diffs.
7770 const string_diff_ptr_map&
get_reference_diff_map() const7771 diff_maps::get_reference_diff_map() const
7772 {return priv_->reference_diff_map_;}
7773
7774 /// Getter of the map that contains reference type diffs.
7775 ///
7776 /// @return the map that contains reference type diffs.
7777 string_diff_ptr_map&
get_reference_diff_map()7778 diff_maps::get_reference_diff_map()
7779 {{return priv_->reference_diff_map_;}}
7780
7781 /// Getter of the map that contains function parameter diffs.
7782 ///
7783 /// @return the map that contains function parameter diffs.
7784 const string_diff_ptr_map&
get_fn_parm_diff_map() const7785 diff_maps::get_fn_parm_diff_map() const
7786 {return priv_->fn_parm_diff_map_;}
7787
7788 /// Getter of the map that contains function parameter diffs.
7789 ///
7790 /// @return the map that contains function parameter diffs.
7791 string_diff_ptr_map&
get_fn_parm_diff_map()7792 diff_maps::get_fn_parm_diff_map()
7793 {return priv_->fn_parm_diff_map_;}
7794
7795 /// Getter of the map that contains function type diffs.
7796 ///
7797 /// @return the map that contains function type diffs.
7798 const string_diff_ptr_map&
get_function_type_diff_map() const7799 diff_maps::get_function_type_diff_map() const
7800 {return priv_->function_type_diff_map_;}
7801
7802 /// Getter of the map that contains function type diffs.
7803 ///
7804 /// @return the map that contains function type diffs.
7805 string_diff_ptr_map&
get_function_type_diff_map()7806 diff_maps::get_function_type_diff_map()
7807 {return priv_->function_type_diff_map_;}
7808
7809 /// Getter of the map that contains function decl diffs.
7810 ///
7811 /// @return the map that contains function decl diffs.
7812 const string_diff_ptr_map&
get_function_decl_diff_map() const7813 diff_maps::get_function_decl_diff_map() const
7814 {return priv_->function_decl_diff_map_;}
7815
7816 /// Getter of the map that contains function decl diffs.
7817 ///
7818 /// @return the map that contains function decl diffs.
7819 string_diff_ptr_map&
get_function_decl_diff_map()7820 diff_maps::get_function_decl_diff_map()
7821 {return priv_->function_decl_diff_map_;}
7822
7823 /// Getter of the map that contains var decl diffs.
7824 ///
7825 /// @return the map that contains var decl diffs.
7826 const string_diff_ptr_map&
get_var_decl_diff_map() const7827 diff_maps::get_var_decl_diff_map() const
7828 {return priv_->var_decl_diff_map_;}
7829
7830 /// Getter of the map that contains var decl diffs.
7831 ///
7832 /// @return the map that contains var decl diffs.
7833 string_diff_ptr_map&
get_var_decl_diff_map()7834 diff_maps::get_var_decl_diff_map()
7835 {return priv_->var_decl_diff_map_;}
7836
7837 /// Getter of the map that contains distinct diffs.
7838 ///
7839 /// @return the map that contains distinct diffs.
7840 const string_diff_ptr_map&
get_distinct_diff_map() const7841 diff_maps::get_distinct_diff_map() const
7842 {return priv_->distinct_diff_map_;}
7843
7844 /// Getter of the map that contains distinct diffs.
7845 ///
7846 /// @return the map that contains distinct diffs.
7847 string_diff_ptr_map&
get_distinct_diff_map()7848 diff_maps::get_distinct_diff_map()
7849 {return priv_->distinct_diff_map_;}
7850
7851 /// Insert a new diff node into the current instance of @ref diff_maps.
7852 ///
7853 /// @param dif the new diff node to insert into the @ref diff_maps.
7854 ///
7855 /// @param impacted_iface the interface (global function or variable)
7856 /// currently being analysed that led to analysing the diff node @p
7857 /// dif. In other words, this is the interface impacted by the diff
7858 /// node @p dif. Note that this can be nil in cases where we are
7859 /// directly analysing changes to a type that is not reachable from
7860 /// any global function or variable.
7861 ///
7862 /// @return true iff the diff node could be added to the current
7863 /// instance of @ref diff_maps.
7864 bool
insert_diff_node(const diff * dif,const type_or_decl_base_sptr & impacted_iface)7865 diff_maps::insert_diff_node(const diff *dif,
7866 const type_or_decl_base_sptr& impacted_iface)
7867 {
7868 string n = get_pretty_representation(dif->first_subject(),
7869 /*internal=*/true);
7870 if (const type_decl_diff *d = is_diff_of_basic_type(dif))
7871 get_type_decl_diff_map()[n] = const_cast<type_decl_diff*>(d);
7872 else if (const enum_diff *d = is_enum_diff(dif))
7873 get_enum_diff_map()[n] = const_cast<enum_diff*>(d);
7874 else if (const class_diff *d = is_class_diff(dif))
7875 get_class_diff_map()[n] = const_cast<class_diff*>(d);
7876 else if (const union_diff *d = is_union_diff(dif))
7877 get_union_diff_map()[n] = const_cast<union_diff*>(d);
7878 else if (const typedef_diff *d = is_typedef_diff(dif))
7879 get_typedef_diff_map()[n] = const_cast<typedef_diff*>(d);
7880 else if (const array_diff *d = is_array_diff(dif))
7881 get_array_diff_map()[n] = const_cast<array_diff*>(d);
7882 else if (const reference_diff *d = is_reference_diff(dif))
7883 get_reference_diff_map()[n] = const_cast<reference_diff*>(d);
7884 else if (const fn_parm_diff *d = is_fn_parm_diff(dif))
7885 get_fn_parm_diff_map()[n] = const_cast<fn_parm_diff*>(d);
7886 else if (const function_type_diff *d = is_function_type_diff(dif))
7887 get_function_type_diff_map()[n] = const_cast<function_type_diff*>(d);
7888 else if (const var_diff *d = is_var_diff(dif))
7889 get_var_decl_diff_map()[n] = const_cast<var_diff*>(d);
7890 else if (const function_decl_diff *d = is_function_decl_diff(dif))
7891 get_function_decl_diff_map()[n] = const_cast<function_decl_diff*>(d);
7892 else if (const distinct_diff *d = is_distinct_diff(dif))
7893 get_distinct_diff_map()[n] = const_cast<distinct_diff*>(d);
7894 else if (is_base_diff(dif))
7895 // we silently drop this case.
7896 return true;
7897 else
7898 ABG_ASSERT_NOT_REACHED;
7899
7900 // Update the map that associates this diff node to the set of
7901 // interfaces it impacts.
7902
7903 if (impacted_iface)
7904 {
7905 diff_artifact_set_map_type::iterator i =
7906 priv_->impacted_artifacts_map_.find(dif);
7907
7908 if (i == priv_->impacted_artifacts_map_.end())
7909 {
7910 artifact_sptr_set_type set;
7911 set.insert(impacted_iface);
7912 priv_->impacted_artifacts_map_[dif] = set;
7913 }
7914 else
7915 i->second.insert(impacted_iface);
7916 }
7917
7918 return true;
7919 }
7920
7921 /// Lookup the interfaces that are impacted by a given leaf diff node.
7922 ///
7923 /// @param d the diff node to consider.
7924 ///
7925 /// @return the set of artifacts impacted by @p d.
7926 artifact_sptr_set_type*
lookup_impacted_interfaces(const diff * d) const7927 diff_maps::lookup_impacted_interfaces(const diff *d) const
7928 {
7929 diff_artifact_set_map_type::iterator i =
7930 priv_->impacted_artifacts_map_.find(d);
7931
7932 if (i == priv_->impacted_artifacts_map_.end())
7933 return 0;
7934
7935 return &i->second;
7936 }
7937
7938 //
7939 // </diff_maps stuff>
7940
7941 /// Constructor for the @ref diff_stat type.
7942 ///
7943 /// @param ctxt the context of the corpus diff. Note that this
7944 /// context object must stay alive at least during the life time of
7945 /// the current instance of @ref corpus_diff::diff_stats. Otherwise
7946 /// memory corruption issues occur.
diff_stats(diff_context_sptr ctxt)7947 corpus_diff::diff_stats::diff_stats(diff_context_sptr ctxt)
7948 : priv_(new priv(ctxt))
7949 {}
7950
7951 /// Getter for the number of functions removed.
7952 ///
7953 /// @return the number of functions removed.
7954 size_t
num_func_removed() const7955 corpus_diff::diff_stats::num_func_removed() const
7956 {return priv_->num_func_removed;}
7957
7958 /// Setter for the number of functions removed.
7959 ///
7960 /// @param n the new number of functions removed.
7961 void
num_func_removed(size_t n)7962 corpus_diff::diff_stats::num_func_removed(size_t n)
7963 {priv_->num_func_removed = n;}
7964
7965 /// Getter for the number of removed functions that have been filtered
7966 /// out.
7967 ///
7968 /// @return the number of removed functions that have been filtered
7969 /// out.
7970 size_t
num_removed_func_filtered_out() const7971 corpus_diff::diff_stats::num_removed_func_filtered_out() const
7972 {
7973 if (priv_->ctxt() && !priv_->ctxt()->show_deleted_fns())
7974 return num_func_removed();
7975 return priv_->num_removed_func_filtered_out;
7976 }
7977
7978 /// Setter for the number of removed functions that have been filtered
7979 /// out.
7980 ///
7981 /// @param t the new value.
7982 void
num_removed_func_filtered_out(size_t t)7983 corpus_diff::diff_stats::num_removed_func_filtered_out(size_t t)
7984 {priv_->num_removed_func_filtered_out = t;}
7985
7986 /// Getter for the net number of function removed.
7987 ///
7988 /// This is the difference between the number of functions removed and
7989 /// the number of functons removed that have been filtered out.
7990 ///
7991 /// @return the net number of function removed.
7992 size_t
net_num_func_removed() const7993 corpus_diff::diff_stats::net_num_func_removed() const
7994 {
7995 ABG_ASSERT(num_func_removed() >= num_removed_func_filtered_out());
7996 return num_func_removed() - num_removed_func_filtered_out();
7997 }
7998
7999 /// Getter for the number of functions added.
8000 ///
8001 /// @return the number of functions added.
8002 size_t
num_func_added() const8003 corpus_diff::diff_stats::num_func_added() const
8004 {return priv_->num_func_added;}
8005
8006 /// Setter for the number of functions added.
8007 ///
8008 /// @param n the new number of functions added.
8009 void
num_func_added(size_t n)8010 corpus_diff::diff_stats::num_func_added(size_t n)
8011 {priv_->num_func_added = n;}
8012
8013 /// Getter for the number of added function that have been filtered out.
8014 ///
8015 /// @return the number of added function that have been filtered out.
8016 size_t
num_added_func_filtered_out() const8017 corpus_diff::diff_stats::num_added_func_filtered_out() const
8018 {
8019 if (priv_->ctxt() && !priv_->ctxt()->show_added_fns())
8020 return num_func_added();
8021 return priv_->num_added_func_filtered_out;
8022 }
8023
8024 /// Setter for the number of added function that have been filtered
8025 /// out.
8026 ///
8027 /// @param n the new value.
8028 void
num_added_func_filtered_out(size_t n)8029 corpus_diff::diff_stats::num_added_func_filtered_out(size_t n)
8030 {priv_->num_added_func_filtered_out = n;}
8031
8032 /// Getter for the net number of added functions.
8033 ///
8034 /// The net number of added functions is the difference between the
8035 /// number of added functions and the number of added functions that
8036 /// have been filtered out.
8037 ///
8038 /// @return the net number of added functions.
8039 size_t
net_num_func_added() const8040 corpus_diff::diff_stats::net_num_func_added() const
8041 {
8042 ABG_ASSERT(num_func_added() >= num_added_func_filtered_out());
8043 return num_func_added() - num_added_func_filtered_out();
8044 }
8045
8046 /// Getter for the number of functions that have a change in one of
8047 /// their sub-types.
8048 ///
8049 /// @return the number of functions that have a change in one of their
8050 /// sub-types.
8051 size_t
num_func_changed() const8052 corpus_diff::diff_stats::num_func_changed() const
8053 {return priv_->num_func_changed;}
8054
8055 /// Setter for the number of functions that have a change in one of
8056 /// their sub-types.
8057 ///
8058 /// @@param n the new number of functions that have a change in one of
8059 /// their sub-types.
8060 void
num_func_changed(size_t n)8061 corpus_diff::diff_stats::num_func_changed(size_t n)
8062 {priv_->num_func_changed = n;}
8063
8064 /// Getter for the number of functions that have a change in one of
8065 /// their sub-types, and that have been filtered out.
8066 ///
8067 /// @return the number of functions that have a change in one of their
8068 /// sub-types, and that have been filtered out.
8069 size_t
num_changed_func_filtered_out() const8070 corpus_diff::diff_stats::num_changed_func_filtered_out() const
8071 {return priv_->num_changed_func_filtered_out;}
8072
8073 /// Setter for the number of functions that have a change in one of
8074 /// their sub-types, and that have been filtered out.
8075 ///
8076 /// @param n the new number of functions that have a change in one of their
8077 /// sub-types, and that have been filtered out.
8078 void
num_changed_func_filtered_out(size_t n)8079 corpus_diff::diff_stats::num_changed_func_filtered_out(size_t n)
8080 {priv_->num_changed_func_filtered_out = n;}
8081
8082 /// Getter for the number of functions that carry virtual member
8083 /// offset changes.
8084 ///
8085 /// @return the number of functions that carry virtual member changes.
8086 size_t
num_func_with_virtual_offset_changes() const8087 corpus_diff::diff_stats::num_func_with_virtual_offset_changes() const
8088 {return priv_->num_func_with_virt_offset_changes;}
8089
8090 /// Setter for the number of functions that carry virtual member
8091 /// offset changes.
8092 ///
8093 /// @param n the new number of functions that carry virtual member
8094 /// offset. changes.
8095 void
num_func_with_virtual_offset_changes(size_t n)8096 corpus_diff::diff_stats::num_func_with_virtual_offset_changes(size_t n)
8097 {priv_->num_func_with_virt_offset_changes = n;}
8098
8099 /// Getter for the number of functions that have a change in their
8100 /// sub-types, minus the number of these functions that got filtered
8101 /// out from the diff.
8102 ///
8103 /// @return for the the number of functions that have a change in
8104 /// their sub-types, minus the number of these functions that got
8105 /// filtered out from the diff.
8106 size_t
net_num_func_changed() const8107 corpus_diff::diff_stats::net_num_func_changed() const
8108 {return num_func_changed() - num_changed_func_filtered_out();}
8109
8110 /// Getter for the number of variables removed.
8111 ///
8112 /// @return the number of variables removed.
8113 size_t
num_vars_removed() const8114 corpus_diff::diff_stats::num_vars_removed() const
8115 {return priv_->num_vars_removed;}
8116
8117 /// Setter for the number of variables removed.
8118 ///
8119 /// @param n the new number of variables removed.
8120 void
num_vars_removed(size_t n)8121 corpus_diff::diff_stats::num_vars_removed(size_t n)
8122 {priv_->num_vars_removed = n;}
8123
8124 /// Getter for the number removed variables that have been filtered
8125 /// out.
8126 ///
8127 /// @return the number removed variables that have been filtered out.
8128 size_t
num_removed_vars_filtered_out() const8129 corpus_diff::diff_stats::num_removed_vars_filtered_out() const
8130 {
8131 if (priv_->ctxt() && !priv_->ctxt()->show_deleted_vars())
8132 return num_vars_removed();
8133 return priv_->num_removed_vars_filtered_out;
8134 }
8135
8136 /// Setter for the number of removed variables that have been filtered
8137 /// out.
8138 ///
8139 /// @param n the new value.
8140 void
num_removed_vars_filtered_out(size_t n) const8141 corpus_diff::diff_stats::num_removed_vars_filtered_out(size_t n) const
8142 {priv_->num_removed_vars_filtered_out = n;}
8143
8144 /// Getter for the net number of removed variables.
8145 ///
8146 /// The net number of removed variables is the difference between the
8147 /// number of removed variables and the number of removed variables
8148 /// that have been filtered out.
8149 ///
8150 /// @return the net number of removed variables.
8151 size_t
net_num_vars_removed() const8152 corpus_diff::diff_stats::net_num_vars_removed() const
8153 {
8154 ABG_ASSERT(num_vars_removed() >= num_removed_vars_filtered_out());
8155 return num_vars_removed() - num_removed_vars_filtered_out();
8156 }
8157
8158 /// Getter for the number of variables added.
8159 ///
8160 /// @return the number of variables added.
8161 size_t
num_vars_added() const8162 corpus_diff::diff_stats::num_vars_added() const
8163 {return priv_->num_vars_added;}
8164
8165 /// Setter for the number of variables added.
8166 ///
8167 /// @param n the new number of variables added.
8168 void
num_vars_added(size_t n)8169 corpus_diff::diff_stats::num_vars_added(size_t n)
8170 {priv_->num_vars_added = n;}
8171
8172 /// Getter for the number of added variables that have been filtered
8173 /// out.
8174 ///
8175 /// @return the number of added variables that have been filtered out.
8176 size_t
num_added_vars_filtered_out() const8177 corpus_diff::diff_stats::num_added_vars_filtered_out() const
8178 {
8179 if (priv_->ctxt() && !priv_->ctxt()->show_added_vars())
8180 return num_vars_added();
8181 return priv_->num_added_vars_filtered_out;
8182 }
8183
8184 /// Setter for the number of added variables that have been filtered
8185 /// out.
8186 ///
8187 /// @param n the new value.
8188 void
num_added_vars_filtered_out(size_t n)8189 corpus_diff::diff_stats::num_added_vars_filtered_out(size_t n)
8190 {priv_->num_added_vars_filtered_out = n;}
8191
8192 /// Getter for the net number of added variables.
8193 ///
8194 /// The net number of added variables is the difference between the
8195 /// number of added variables and the number of added variables that
8196 /// have been filetered out.
8197 ///
8198 /// @return the net number of added variables.
8199 size_t
net_num_vars_added() const8200 corpus_diff::diff_stats::net_num_vars_added() const
8201 {
8202 ABG_ASSERT(num_vars_added() >= num_added_vars_filtered_out());
8203 return num_vars_added() - num_added_vars_filtered_out();
8204 }
8205
8206 /// Getter for the number of variables that have a change in one of
8207 /// their sub-types.
8208 ///
8209 /// @return the number of variables that have a change in one of their
8210 /// sub-types.
8211 size_t
num_vars_changed() const8212 corpus_diff::diff_stats::num_vars_changed() const
8213 {return priv_->num_vars_changed;}
8214
8215 /// Setter for the number of variables that have a change in one of
8216 /// their sub-types.
8217 ///
8218 /// @param n the new number of variables that have a change in one of
8219 /// their sub-types.
8220 void
num_vars_changed(size_t n)8221 corpus_diff::diff_stats::num_vars_changed(size_t n)
8222 {priv_->num_vars_changed = n;}
8223
8224 /// Getter for the number of variables that have a change in one of
8225 /// their sub-types, and that have been filtered out.
8226 ///
8227 /// @return the number of functions that have a change in one of their
8228 /// sub-types, and that have been filtered out.
8229 size_t
num_changed_vars_filtered_out() const8230 corpus_diff::diff_stats::num_changed_vars_filtered_out() const
8231 {return priv_->num_changed_vars_filtered_out;}
8232
8233 /// Setter for the number of variables that have a change in one of
8234 /// their sub-types, and that have been filtered out.
8235 ///
8236 /// @param n the new number of variables that have a change in one of their
8237 /// sub-types, and that have been filtered out.
8238 void
num_changed_vars_filtered_out(size_t n)8239 corpus_diff::diff_stats::num_changed_vars_filtered_out(size_t n)
8240 {priv_->num_changed_vars_filtered_out = n;}
8241
8242 /// Getter for the number of variables that have a change in their
8243 /// sub-types, minus the number of these variables that got filtered
8244 /// out from the diff.
8245 ///
8246 /// @return for the the number of variables that have a change in
8247 /// their sub-types, minus the number of these variables that got
8248 /// filtered out from the diff.
8249 size_t
net_num_vars_changed() const8250 corpus_diff::diff_stats::net_num_vars_changed() const
8251 {return num_vars_changed() - num_changed_vars_filtered_out();}
8252
8253 /// Getter for the number of function symbols (not referenced by any
8254 /// debug info) that got removed.
8255 ///
8256 /// @return the number of function symbols (not referenced by any
8257 /// debug info) that got removed.
8258 size_t
num_func_syms_removed() const8259 corpus_diff::diff_stats::num_func_syms_removed() const
8260 {return priv_->num_func_syms_removed;}
8261
8262 /// Setter for the number of function symbols (not referenced by any
8263 /// debug info) that got removed.
8264 ///
8265 /// @param n the number of function symbols (not referenced by any
8266 /// debug info) that got removed.
8267 void
num_func_syms_removed(size_t n)8268 corpus_diff::diff_stats::num_func_syms_removed(size_t n)
8269 {priv_->num_func_syms_removed = n;}
8270
8271 /// Getter for the number of removed function symbols, not referenced
8272 /// by debug info, that have been filtered out.
8273 ///
8274 /// @return the number of removed function symbols, not referenced by
8275 /// debug info, that have been filtered out.
8276 size_t
num_removed_func_syms_filtered_out() const8277 corpus_diff::diff_stats::num_removed_func_syms_filtered_out() const
8278 {
8279 if (priv_->ctxt()
8280 && !priv_->ctxt()->show_symbols_unreferenced_by_debug_info())
8281 return num_func_syms_removed();
8282 return priv_->num_removed_func_syms_filtered_out;
8283 }
8284
8285 /// Setter for the number of removed function symbols, not referenced
8286 /// by debug info, that have been filtered out.
8287 ///
8288 /// @param n the new the number of removed function symbols, not
8289 /// referenced by debug info, that have been filtered out.
8290 void
num_removed_func_syms_filtered_out(size_t n)8291 corpus_diff::diff_stats::num_removed_func_syms_filtered_out(size_t n)
8292 {priv_->num_removed_func_syms_filtered_out = n;}
8293
8294 /// Getter of the net number of removed function symbols that are not
8295 /// referenced by any debug info.
8296 ///
8297 /// This is the difference between the total number of removed
8298 /// function symbols and the number of removed function symbols that
8299 /// have been filteted out. Both numbers are for symbols not
8300 /// referenced by debug info.
8301 ///
8302 /// return the net number of removed function symbols that are not
8303 /// referenced by any debug info.
8304 size_t
net_num_removed_func_syms() const8305 corpus_diff::diff_stats::net_num_removed_func_syms() const
8306 {
8307 ABG_ASSERT(num_func_syms_removed() >= num_removed_func_syms_filtered_out());
8308 return num_func_syms_removed() - num_removed_func_syms_filtered_out();
8309 }
8310
8311 /// Getter for the number of function symbols (not referenced by any
8312 /// debug info) that got added.
8313 ///
8314 /// @return the number of function symbols (not referenced by any
8315 /// debug info) that got added.
8316 size_t
num_func_syms_added() const8317 corpus_diff::diff_stats::num_func_syms_added() const
8318 {return priv_->num_func_syms_added;}
8319
8320 /// Setter for the number of function symbols (not referenced by any
8321 /// debug info) that got added.
8322 ///
8323 /// @param n the new number of function symbols (not referenced by any
8324 /// debug info) that got added.
8325 void
num_func_syms_added(size_t n)8326 corpus_diff::diff_stats::num_func_syms_added(size_t n)
8327 {priv_->num_func_syms_added = n;}
8328
8329 /// Getter for the number of added function symbols, not referenced by
8330 /// any debug info, that have been filtered out.
8331 ///
8332 /// @return the number of added function symbols, not referenced by
8333 /// any debug info, that have been filtered out.
8334 size_t
num_added_func_syms_filtered_out() const8335 corpus_diff::diff_stats::num_added_func_syms_filtered_out() const
8336 {
8337 if (priv_->ctxt()
8338 && !(priv_->ctxt()->show_added_symbols_unreferenced_by_debug_info()
8339 && priv_->ctxt()->show_symbols_unreferenced_by_debug_info()))
8340 return num_func_syms_added();
8341 return priv_->num_added_func_syms_filtered_out;
8342 }
8343
8344 /// Setter for the number of added function symbols, not referenced by
8345 /// any debug info, that have been filtered out.
8346 ///
8347 /// @param n the new number of added function symbols, not referenced
8348 /// by any debug info, that have been filtered out.
8349 void
num_added_func_syms_filtered_out(size_t n)8350 corpus_diff::diff_stats::num_added_func_syms_filtered_out(size_t n)
8351 {priv_->num_added_func_syms_filtered_out = n;}
8352
8353 /// Getter of the net number of added function symbols that are not
8354 /// referenced by any debug info.
8355 ///
8356 /// This is the difference between the total number of added
8357 /// function symbols and the number of added function symbols that
8358 /// have been filteted out. Both numbers are for symbols not
8359 /// referenced by debug info.
8360 ///
8361 /// return the net number of added function symbols that are not
8362 /// referenced by any debug info.
8363 size_t
net_num_added_func_syms() const8364 corpus_diff::diff_stats::net_num_added_func_syms() const
8365 {
8366 ABG_ASSERT(num_func_syms_added() >= num_added_func_syms_filtered_out());
8367 return num_func_syms_added()- num_added_func_syms_filtered_out();
8368 }
8369
8370 /// Getter for the number of variable symbols (not referenced by any
8371 /// debug info) that got removed.
8372 ///
8373 /// @return the number of variable symbols (not referenced by any
8374 /// debug info) that got removed.
8375 size_t
num_var_syms_removed() const8376 corpus_diff::diff_stats::num_var_syms_removed() const
8377 {return priv_->num_var_syms_removed;}
8378
8379 /// Setter for the number of variable symbols (not referenced by any
8380 /// debug info) that got removed.
8381 ///
8382 /// @param n the number of variable symbols (not referenced by any
8383 /// debug info) that got removed.
8384 void
num_var_syms_removed(size_t n)8385 corpus_diff::diff_stats::num_var_syms_removed(size_t n)
8386 {priv_->num_var_syms_removed = n;}
8387
8388 /// Getter for the number of removed variable symbols, not referenced
8389 /// by any debug info, that have been filtered out.
8390 ///
8391 /// @return the number of removed variable symbols, not referenced
8392 /// by any debug info, that have been filtered out.
8393 size_t
num_removed_var_syms_filtered_out() const8394 corpus_diff::diff_stats::num_removed_var_syms_filtered_out() const
8395 {
8396 if (priv_->ctxt()
8397 && !priv_->ctxt()->show_symbols_unreferenced_by_debug_info())
8398 return num_var_syms_removed();
8399 return priv_->num_removed_var_syms_filtered_out;
8400 }
8401
8402 /// Setter for the number of removed variable symbols, not referenced
8403 /// by any debug info, that have been filtered out.
8404 ///
8405 /// @param n the number of removed variable symbols, not referenced by
8406 /// any debug info, that have been filtered out.
8407 void
num_removed_var_syms_filtered_out(size_t n)8408 corpus_diff::diff_stats::num_removed_var_syms_filtered_out(size_t n)
8409 {priv_->num_removed_var_syms_filtered_out = n;}
8410
8411 /// Getter of the net number of removed variable symbols that are not
8412 /// referenced by any debug info.
8413 ///
8414 /// This is the difference between the total number of removed
8415 /// variable symbols and the number of removed variable symbols that
8416 /// have been filteted out. Both numbers are for symbols not
8417 /// referenced by debug info.
8418 ///
8419 /// return the net number of removed variable symbols that are not
8420 /// referenced by any debug info.
8421 size_t
net_num_removed_var_syms() const8422 corpus_diff::diff_stats::net_num_removed_var_syms() const
8423 {
8424 ABG_ASSERT(num_var_syms_removed() >= num_removed_var_syms_filtered_out());
8425 return num_var_syms_removed() - num_removed_var_syms_filtered_out();
8426 }
8427
8428 /// Getter for the number of variable symbols (not referenced by any
8429 /// debug info) that got added.
8430 ///
8431 /// @return the number of variable symbols (not referenced by any
8432 /// debug info) that got added.
8433 size_t
num_var_syms_added() const8434 corpus_diff::diff_stats::num_var_syms_added() const
8435 {return priv_->num_var_syms_added;}
8436
8437 /// Setter for the number of variable symbols (not referenced by any
8438 /// debug info) that got added.
8439 ///
8440 /// @param n the new number of variable symbols (not referenced by any
8441 /// debug info) that got added.
8442 void
num_var_syms_added(size_t n)8443 corpus_diff::diff_stats::num_var_syms_added(size_t n)
8444 {priv_->num_var_syms_added = n;}
8445
8446 /// Getter for the number of added variable symbols, not referenced by
8447 /// any debug info, that have been filtered out.
8448 ///
8449 /// @return the number of added variable symbols, not referenced by
8450 /// any debug info, that have been filtered out.
8451 size_t
num_added_var_syms_filtered_out() const8452 corpus_diff::diff_stats::num_added_var_syms_filtered_out() const
8453 {
8454 if (priv_->ctxt()
8455 && !(priv_->ctxt()->show_added_symbols_unreferenced_by_debug_info()
8456 && priv_->ctxt()->show_symbols_unreferenced_by_debug_info()))
8457 return num_var_syms_added();
8458 return priv_->num_added_var_syms_filtered_out;
8459 }
8460
8461 /// Setter for the number of added variable symbols, not referenced by
8462 /// any debug info, that have been filtered out.
8463 ///
8464 /// @param n the new number of added variable symbols, not referenced
8465 /// by any debug info, that have been filtered out.
8466 void
num_added_var_syms_filtered_out(size_t n)8467 corpus_diff::diff_stats::num_added_var_syms_filtered_out(size_t n)
8468 {priv_->num_added_var_syms_filtered_out = n;}
8469
8470 /// Getter of the net number of added variable symbols that are not
8471 /// referenced by any debug info.
8472 ///
8473 /// This is the difference between the total number of added
8474 /// variable symbols and the number of added variable symbols that
8475 /// have been filteted out. Both numbers are for symbols not
8476 /// referenced by debug info.
8477 ///
8478 /// return the net number of added variable symbols that are not
8479 /// referenced by any debug info.
8480 size_t
net_num_added_var_syms() const8481 corpus_diff::diff_stats::net_num_added_var_syms() const
8482 {
8483 ABG_ASSERT(num_var_syms_added() >= num_added_var_syms_filtered_out());
8484 return num_var_syms_added() - num_added_var_syms_filtered_out();
8485 }
8486
8487 /// Getter of the number of leaf type change diff nodes.
8488 ///
8489 /// @return the number of leaf type change diff nodes.
8490 size_t
num_leaf_changes() const8491 corpus_diff::diff_stats::num_leaf_changes() const
8492 {return priv_->num_leaf_changes;}
8493
8494 /// Setter of the number of leaf type change diff nodes.
8495 ///
8496 /// @param n the new number of leaf type change diff nodes.
8497 void
num_leaf_changes(size_t n)8498 corpus_diff::diff_stats::num_leaf_changes(size_t n)
8499 {priv_->num_leaf_changes = n;}
8500
8501 /// Getter of the number of leaf type change diff nodes that have been
8502 /// filtered out.
8503 ///
8504 /// @return the number of leaf type change diff nodes that have been
8505 size_t
num_leaf_changes_filtered_out() const8506 corpus_diff::diff_stats::num_leaf_changes_filtered_out() const
8507 {return priv_->num_leaf_changes_filtered_out;}
8508
8509 /// Setter of the number of leaf type change diff nodes that have been
8510 /// filtered out.
8511 ///
8512 /// @param n the new number of leaf type change diff nodes that have
8513 /// been filtered out.
8514 void
num_leaf_changes_filtered_out(size_t n)8515 corpus_diff::diff_stats::num_leaf_changes_filtered_out(size_t n)
8516 {priv_->num_leaf_changes_filtered_out = n;}
8517
8518 /// Getter of the net number of leaf change diff nodes.
8519 ///
8520 /// This is the difference between the total number of leaf change
8521 /// diff nodes, and the number of the leaf change diff nodes that have
8522 /// been filtered out.
8523 ///
8524 /// A leaf change is either a type change, a function change or a
8525 /// variable change.
8526 size_t
net_num_leaf_changes() const8527 corpus_diff::diff_stats::net_num_leaf_changes() const
8528 {
8529 ABG_ASSERT(num_leaf_changes() >= num_leaf_changes_filtered_out());
8530 return num_leaf_changes() - num_leaf_changes_filtered_out();
8531 }
8532
8533 /// Getter for the number of leaf type change diff nodes.
8534 ///
8535 /// @return the number of leaf type changes diff nodes.
8536 size_t
num_leaf_type_changes() const8537 corpus_diff::diff_stats::num_leaf_type_changes() const
8538 {return priv_->num_leaf_type_changes;}
8539
8540 /// Setter for the number of leaf type change diff nodes.
8541 ///
8542 /// @param n the new number of leaf type change diff nodes.
8543 void
num_leaf_type_changes(size_t n)8544 corpus_diff::diff_stats::num_leaf_type_changes(size_t n)
8545 {priv_->num_leaf_type_changes = n;}
8546
8547 /// Getter for the number of filtered out leaf type change diff nodes.
8548 ///
8549 /// @return the number of filtered out leaf type change diff nodes.
8550 size_t
num_leaf_type_changes_filtered_out() const8551 corpus_diff::diff_stats::num_leaf_type_changes_filtered_out() const
8552 {return priv_->num_leaf_type_changes_filtered_out;}
8553
8554 /// Setter for the number of filtered out leaf type change diff nodes.
8555 /// @param n the new number of filtered out leaf type change diff nodes.
8556 void
num_leaf_type_changes_filtered_out(size_t n)8557 corpus_diff::diff_stats::num_leaf_type_changes_filtered_out(size_t n)
8558 {priv_->num_leaf_type_changes_filtered_out = n;}
8559
8560 /// Getter for the net number of leaf type change diff nodes.
8561 ///
8562 /// This is the difference between the number of leaf type changes and
8563 /// the number of filtered out leaf type changes.
8564 ///
8565 /// @return the net number of leaf type change diff nodes.
8566 size_t
net_num_leaf_type_changes() const8567 corpus_diff::diff_stats::net_num_leaf_type_changes() const
8568 {return num_leaf_type_changes() - num_leaf_type_changes_filtered_out();}
8569
8570 /// Getter for the number of leaf function change diff nodes.
8571 ///
8572 /// @return the number of leaf function change diff nodes.
8573 size_t
num_leaf_func_changes() const8574 corpus_diff::diff_stats::num_leaf_func_changes() const
8575 {return priv_->num_leaf_func_changes;}
8576
8577 /// Setter for the number of leaf function change diff nodes.
8578 ///
8579 /// @param n the new number of leaf function change diff nodes.
8580 void
num_leaf_func_changes(size_t n)8581 corpus_diff::diff_stats::num_leaf_func_changes(size_t n)
8582 {priv_->num_leaf_func_changes = n;}
8583
8584 /// Getter for the number of leaf function change diff nodes that were
8585 /// filtered out.
8586 ///
8587 /// @return the number of leaf function change diff nodes that were
8588 /// filtered out.
8589 size_t
num_leaf_func_changes_filtered_out() const8590 corpus_diff::diff_stats::num_leaf_func_changes_filtered_out() const
8591 {return priv_->num_leaf_func_changes_filtered_out;}
8592
8593 /// Setter for the number of leaf function change diff nodes that were
8594 /// filtered out.
8595 ///
8596 /// @param n the new number of leaf function change diff nodes that
8597 /// were filtered out.
8598 void
num_leaf_func_changes_filtered_out(size_t n)8599 corpus_diff::diff_stats::num_leaf_func_changes_filtered_out(size_t n)
8600 {priv_->num_leaf_func_changes_filtered_out = n;}
8601
8602 /// Getter for the net number of leaf function change diff nodes.
8603 ///
8604 /// This is the difference between the number of leaf function change
8605 /// diff nodes and the number of filtered out leaf function change
8606 /// diff nodes.
8607 ///
8608 /// @return the net number of leaf function change diff nodes.
8609 size_t
net_num_leaf_func_changes() const8610 corpus_diff::diff_stats::net_num_leaf_func_changes() const
8611 {return num_leaf_func_changes() - num_leaf_func_changes_filtered_out();}
8612
8613 /// Getter for the number of leaf variable change diff nodes.
8614 ///
8615 /// @return the number of leaf variable change diff nodes.
8616 size_t
num_leaf_var_changes() const8617 corpus_diff::diff_stats::num_leaf_var_changes() const
8618 {return priv_->num_leaf_var_changes;}
8619
8620 /// Setter for the number of leaf variable change diff nodes.
8621 ///
8622 /// @param n the number of leaf variable change diff nodes.
8623 void
num_leaf_var_changes(size_t n)8624 corpus_diff::diff_stats::num_leaf_var_changes(size_t n)
8625 {priv_->num_leaf_var_changes = n;}
8626
8627 /// Getter of the number of added types that are unreachable from the
8628 /// public interface of the ABI corpus.
8629 ///
8630 /// Public interface means the set of defined and publicly exported
8631 /// functions and variables of the ABI corpus.
8632 ///
8633 /// @return the number of added types that are unreachable from the
8634 /// public interface of the ABI corpus.
8635 size_t
num_added_unreachable_types() const8636 corpus_diff::diff_stats::num_added_unreachable_types() const
8637 {return priv_->num_added_unreachable_types;}
8638
8639 /// Setter of the number of added types that are unreachable from the
8640 /// public interface (global functions or variables) of the ABI
8641 /// corpus.
8642 ///
8643 /// Public interface means the set of defined and publicly exported
8644 /// functions and variables of the ABI corpus.
8645 ///
8646 /// @param n the new number of added types that are unreachable from
8647 /// the public interface of the ABI corpus.
8648 void
num_added_unreachable_types(size_t n)8649 corpus_diff::diff_stats::num_added_unreachable_types(size_t n)
8650 {priv_->num_added_unreachable_types = n;}
8651
8652 /// Getter of the number of added types that are unreachable from
8653 /// public interfaces and that are filtered out by suppression
8654 /// specifications.
8655 ///
8656 /// @return the number of added types that are unreachable from public
8657 /// interfaces and that are filtered out by suppression
8658 /// specifications.
8659 size_t
num_added_unreachable_types_filtered_out() const8660 corpus_diff::diff_stats::num_added_unreachable_types_filtered_out() const
8661 {return priv_->num_added_unreachable_types_filtered_out;}
8662
8663 /// Setter of the number of added types that are unreachable from
8664 /// public interfaces and that are filtered out by suppression
8665 /// specifications.
8666 ///
8667 /// @param n the new number of added types that are unreachable from
8668 /// public interfaces and that are filtered out by suppression
8669 /// specifications.
8670 void
num_added_unreachable_types_filtered_out(size_t n)8671 corpus_diff::diff_stats::num_added_unreachable_types_filtered_out(size_t n)
8672 {priv_->num_added_unreachable_types_filtered_out = n;}
8673
8674 /// Getter of the number of added types that are unreachable from
8675 /// public interfaces and that are *NOT* filtered out by suppression
8676 /// specifications.
8677 ///
8678 /// @return the number of added types that are unreachable from public
8679 /// interfaces and that are *NOT* filtered out by suppression
8680 /// specifications.
8681 size_t
net_num_added_unreachable_types() const8682 corpus_diff::diff_stats::net_num_added_unreachable_types() const
8683 {
8684 ABG_ASSERT(num_added_unreachable_types()
8685 >=
8686 num_added_unreachable_types_filtered_out());
8687
8688 return (num_added_unreachable_types()
8689 -
8690 num_added_unreachable_types_filtered_out());
8691 }
8692
8693 /// Getter of the number of removed types that are unreachable from
8694 /// the public interface of the ABI corpus.
8695 ///
8696 /// Public interface means the set of defined and publicly exported
8697 /// functions and variables of the ABI corpus.
8698 ///
8699 /// @return the number of removed types that are unreachable from
8700 /// the public interface of the ABI corpus.
8701 size_t
num_removed_unreachable_types() const8702 corpus_diff::diff_stats::num_removed_unreachable_types() const
8703 {return priv_->num_removed_unreachable_types;}
8704
8705 /// Setter of the number of removed types that are unreachable from
8706 /// the public interface of the ABI corpus.
8707 ///
8708 /// Public interface means the set of defined and publicly exported
8709 /// functions and variables of the ABI corpus.
8710 ///
8711 ///@param n the new number of removed types that are unreachable from
8712 /// the public interface of the ABI corpus.
8713 void
num_removed_unreachable_types(size_t n)8714 corpus_diff::diff_stats::num_removed_unreachable_types(size_t n)
8715 {priv_->num_removed_unreachable_types = n;}
8716
8717 /// Getter of the number of removed types that are not reachable from
8718 /// public interfaces and that have been filtered out by suppression
8719 /// specifications.
8720 ///
8721 /// @return the number of removed types that are not reachable from
8722 /// public interfaces and that have been filtered out by suppression
8723 /// specifications.
8724 size_t
num_removed_unreachable_types_filtered_out() const8725 corpus_diff::diff_stats::num_removed_unreachable_types_filtered_out() const
8726 {return priv_->num_removed_unreachable_types_filtered_out;}
8727
8728 /// Setter of the number of removed types that are not reachable from
8729 /// public interfaces and that have been filtered out by suppression
8730 /// specifications.
8731 ///
8732 /// @param n the new number of removed types that are not reachable
8733 /// from public interfaces and that have been filtered out by
8734 /// suppression specifications.
8735 void
num_removed_unreachable_types_filtered_out(size_t n)8736 corpus_diff::diff_stats::num_removed_unreachable_types_filtered_out(size_t n)
8737 {priv_->num_removed_unreachable_types_filtered_out = n;}
8738
8739 /// Getter of the number of removed types that are not reachable from
8740 /// public interfaces and that have *NOT* been filtered out by
8741 /// suppression specifications.
8742 ///
8743 /// @return the number of removed types that are not reachable from
8744 /// public interfaces and that have *NOT* been filtered out by
8745 /// suppression specifications.
8746 size_t
net_num_removed_unreachable_types() const8747 corpus_diff::diff_stats::net_num_removed_unreachable_types() const
8748 {
8749 ABG_ASSERT(num_removed_unreachable_types()
8750 >=
8751 num_removed_unreachable_types_filtered_out());
8752
8753 return (num_removed_unreachable_types()
8754 -
8755 num_removed_unreachable_types_filtered_out());
8756 }
8757
8758 /// Getter of the number of changed types that are unreachable from
8759 /// the public interface of the ABI corpus.
8760 ///
8761 /// Public interface means the set of defined and publicly exported
8762 /// functions and variables of the ABI corpus.
8763 ///
8764 /// @return the number of changed types that are unreachable from the
8765 /// public interface of the ABI corpus.
8766 size_t
num_changed_unreachable_types() const8767 corpus_diff::diff_stats::num_changed_unreachable_types() const
8768 {return priv_->num_changed_unreachable_types;}
8769
8770 /// Setter of the number of changed types that are unreachable from
8771 /// the public interface of the ABI corpus.
8772 ///
8773 /// Public interface means the set of defined and publicly exported
8774 /// functions and variables of the ABI corpus.
8775 ///
8776 ///@param n the new number of changed types that are unreachable from
8777 /// the public interface of the ABI corpus.
8778 void
num_changed_unreachable_types(size_t n)8779 corpus_diff::diff_stats::num_changed_unreachable_types(size_t n)
8780 {priv_->num_changed_unreachable_types = n;}
8781
8782 /// Getter of the number of changed types that are unreachable from
8783 /// public interfaces and that have been filtered out by suppression
8784 /// specifications.
8785 ///
8786 /// @return the number of changed types that are unreachable from
8787 /// public interfaces and that have been filtered out by suppression
8788 /// specifications.
8789 size_t
num_changed_unreachable_types_filtered_out() const8790 corpus_diff::diff_stats::num_changed_unreachable_types_filtered_out() const
8791 {return priv_->num_changed_unreachable_types_filtered_out;}
8792
8793 /// Setter of the number of changed types that are unreachable from
8794 /// public interfaces and that have been filtered out by suppression
8795 /// specifications.
8796 ///
8797 /// @param n the new number of changed types that are unreachable from
8798 /// public interfaces and that have been filtered out by suppression
8799 /// specifications.
8800 void
num_changed_unreachable_types_filtered_out(size_t n)8801 corpus_diff::diff_stats::num_changed_unreachable_types_filtered_out(size_t n)
8802 {priv_->num_changed_unreachable_types_filtered_out = n;}
8803
8804 /// Getter of the number of changed types that are unreachable from
8805 /// public interfaces and that have *NOT* been filtered out by
8806 /// suppression specifications.
8807 ///
8808 /// @return the number of changed types that are unreachable from
8809 /// public interfaces and that have *NOT* been filtered out by
8810 /// suppression specifications.
8811 size_t
net_num_changed_unreachable_types() const8812 corpus_diff::diff_stats::net_num_changed_unreachable_types() const
8813 {
8814 ABG_ASSERT(num_changed_unreachable_types()
8815 >=
8816 num_changed_unreachable_types_filtered_out());
8817
8818 return (num_changed_unreachable_types()
8819 -
8820 num_changed_unreachable_types_filtered_out());
8821 }
8822
8823 /// Getter for the number of leaf variable changes diff nodes that
8824 /// have been filtered out.
8825 ///
8826 /// @return the number of leaf variable changes diff nodes that have
8827 /// been filtered out.
8828 size_t
num_leaf_var_changes_filtered_out() const8829 corpus_diff::diff_stats::num_leaf_var_changes_filtered_out() const
8830 {return priv_->num_leaf_var_changes_filtered_out;}
8831
8832 /// Setter for the number of leaf variable changes diff nodes that
8833 /// have been filtered out.
8834 ///
8835 /// @param n the number of leaf variable changes diff nodes that have
8836 /// been filtered out.
8837 void
num_leaf_var_changes_filtered_out(size_t n)8838 corpus_diff::diff_stats::num_leaf_var_changes_filtered_out(size_t n)
8839 {priv_->num_leaf_var_changes_filtered_out = n;}
8840
8841 /// Getter for the net number of leaf variable change diff nodes.
8842 ///
8843 /// This the difference between the number of leaf variable change
8844 /// diff nodes and the number of filtered out leaf variable change
8845 /// diff nodes.
8846 ///
8847 /// @return the net number of leaf variable change diff nodes.
8848 size_t
net_num_leaf_var_changes() const8849 corpus_diff::diff_stats::net_num_leaf_var_changes() const
8850 {return num_leaf_var_changes() - num_leaf_var_changes_filtered_out();}
8851
8852
8853 // <corpus_diff stuff>
8854
8855 /// Getter of the context associated with this corpus.
8856 ///
8857 /// @return a smart pointer to the context associate with the corpus.
8858 diff_context_sptr
get_context()8859 corpus_diff::priv::get_context()
8860 {return ctxt_.lock();}
8861
8862 /// Tests if the lookup tables are empty.
8863 ///
8864 /// @return true if the lookup tables are empty, false otherwise.
8865 bool
lookup_tables_empty() const8866 corpus_diff::priv::lookup_tables_empty() const
8867 {
8868 return (deleted_fns_.empty()
8869 && added_fns_.empty()
8870 && changed_fns_map_.empty()
8871 && deleted_vars_.empty()
8872 && added_vars_.empty()
8873 && changed_vars_map_.empty());
8874 }
8875
8876 /// Clear the lookup tables useful for reporting an enum_diff.
8877 void
clear_lookup_tables()8878 corpus_diff::priv::clear_lookup_tables()
8879 {
8880 deleted_fns_.clear();
8881 added_fns_.clear();
8882 changed_fns_map_.clear();
8883 deleted_vars_.clear();
8884 added_vars_.clear();
8885 changed_vars_map_.clear();
8886 }
8887
8888 /// If the lookup tables are not yet built, walk the differences and
8889 /// fill the lookup tables.
8890 void
ensure_lookup_tables_populated()8891 corpus_diff::priv::ensure_lookup_tables_populated()
8892 {
8893 if (!lookup_tables_empty())
8894 return;
8895
8896 diff_context_sptr ctxt = get_context();
8897
8898 {
8899 edit_script& e = fns_edit_script_;
8900
8901 for (vector<deletion>::const_iterator it = e.deletions().begin();
8902 it != e.deletions().end();
8903 ++it)
8904 {
8905 unsigned i = it->index();
8906 ABG_ASSERT(i < first_->get_functions().size());
8907
8908 function_decl* deleted_fn = first_->get_functions()[i];
8909 string n = deleted_fn->get_id();
8910 ABG_ASSERT(!n.empty());
8911 // The below is commented out because there can be several
8912 // functions with the same ID in the corpus. So several
8913 // functions with the same ID can be deleted.
8914 // ABG_ASSERT(deleted_fns_.find(n) == deleted_fns_.end());
8915 deleted_fns_[n] = deleted_fn;
8916 }
8917
8918 for (vector<insertion>::const_iterator it = e.insertions().begin();
8919 it != e.insertions().end();
8920 ++it)
8921 {
8922 for (vector<unsigned>::const_iterator iit =
8923 it->inserted_indexes().begin();
8924 iit != it->inserted_indexes().end();
8925 ++iit)
8926 {
8927 unsigned i = *iit;
8928 function_decl* added_fn = second_->get_functions()[i];
8929 string n = added_fn->get_id();
8930 ABG_ASSERT(!n.empty());
8931 // The below is commented out because there can be several
8932 // functions with the same ID in the corpus. So several
8933 // functions with the same ID can be added.
8934 // ABG_ASSERT(added_fns_.find(n) == added_fns_.end());
8935 string_function_ptr_map::const_iterator j =
8936 deleted_fns_.find(n);
8937 if (j != deleted_fns_.end())
8938 {
8939 function_decl_sptr f(j->second, noop_deleter());
8940 function_decl_sptr s(added_fn, noop_deleter());
8941 function_decl_diff_sptr d = compute_diff(f, s, ctxt);
8942 if (*j->second != *added_fn)
8943 changed_fns_map_[j->first] = d;
8944 deleted_fns_.erase(j);
8945 }
8946 else
8947 added_fns_[n] = added_fn;
8948 }
8949 }
8950 sort_string_function_decl_diff_sptr_map(changed_fns_map_, changed_fns_);
8951
8952 // Now walk the allegedly deleted functions; check if their
8953 // underlying symbols are deleted as well; otherwise, consider
8954 // that the function in question hasn't been deleted.
8955
8956 vector<string> to_delete;
8957 for (string_function_ptr_map::const_iterator i = deleted_fns_.begin();
8958 i != deleted_fns_.end();
8959 ++i)
8960 if (second_->lookup_function_symbol(*i->second->get_symbol()))
8961 to_delete.push_back(i->first);
8962
8963 for (vector<string>::const_iterator i = to_delete.begin();
8964 i != to_delete.end();
8965 ++i)
8966 deleted_fns_.erase(*i);
8967
8968 // Do something similar for added functions.
8969
8970 to_delete.clear();
8971 for (string_function_ptr_map::const_iterator i = added_fns_.begin();
8972 i != added_fns_.end();
8973 ++i)
8974 {
8975 if (first_->lookup_function_symbol(*i->second->get_symbol()))
8976 to_delete.push_back(i->first);
8977 else if (! i->second->get_symbol()->get_version().is_empty()
8978 && i->second->get_symbol()->get_version().is_default())
8979 // We are looking for a symbol that has a default version,
8980 // and which seems to be newly added. Let's see if the same
8981 // symbol with *no* version was already present in the
8982 // former corpus. If yes, then the symbol shouldn't be
8983 // considered as 'added'.
8984 {
8985 elf_symbol::version empty_version;
8986 if (first_->lookup_function_symbol(i->second->get_symbol()->get_name(),
8987 empty_version))
8988 to_delete.push_back(i->first);
8989 }
8990 }
8991
8992 for (vector<string>::const_iterator i = to_delete.begin();
8993 i != to_delete.end();
8994 ++i)
8995 added_fns_.erase(*i);
8996 }
8997
8998 {
8999 edit_script& e = vars_edit_script_;
9000
9001 for (vector<deletion>::const_iterator it = e.deletions().begin();
9002 it != e.deletions().end();
9003 ++it)
9004 {
9005 unsigned i = it->index();
9006 ABG_ASSERT(i < first_->get_variables().size());
9007
9008 var_decl* deleted_var = first_->get_variables()[i];
9009 string n = deleted_var->get_id();
9010 ABG_ASSERT(!n.empty());
9011 ABG_ASSERT(deleted_vars_.find(n) == deleted_vars_.end());
9012 deleted_vars_[n] = deleted_var;
9013 }
9014
9015 for (vector<insertion>::const_iterator it = e.insertions().begin();
9016 it != e.insertions().end();
9017 ++it)
9018 {
9019 for (vector<unsigned>::const_iterator iit =
9020 it->inserted_indexes().begin();
9021 iit != it->inserted_indexes().end();
9022 ++iit)
9023 {
9024 unsigned i = *iit;
9025 var_decl* added_var = second_->get_variables()[i];
9026 string n = added_var->get_id();
9027 ABG_ASSERT(!n.empty());
9028 {
9029 string_var_ptr_map::const_iterator k = added_vars_.find(n);
9030 if ( k != added_vars_.end())
9031 {
9032 ABG_ASSERT(is_member_decl(k->second)
9033 && get_member_is_static(k->second));
9034 continue;
9035 }
9036 }
9037 string_var_ptr_map::const_iterator j =
9038 deleted_vars_.find(n);
9039 if (j != deleted_vars_.end())
9040 {
9041 if (*j->second != *added_var)
9042 {
9043 var_decl_sptr f(j->second, noop_deleter());
9044 var_decl_sptr s(added_var, noop_deleter());
9045 changed_vars_map_[n] = compute_diff(f, s, ctxt);
9046 }
9047 deleted_vars_.erase(j);
9048 }
9049 else
9050 added_vars_[n] = added_var;
9051 }
9052 }
9053 sort_string_var_diff_sptr_map(changed_vars_map_,
9054 sorted_changed_vars_);
9055
9056 // Now walk the allegedly deleted variables; check if their
9057 // underlying symbols are deleted as well; otherwise consider
9058 // that the variable in question hasn't been deleted.
9059
9060 vector<string> to_delete;
9061 for (string_var_ptr_map::const_iterator i = deleted_vars_.begin();
9062 i != deleted_vars_.end();
9063 ++i)
9064 if (second_->lookup_variable_symbol(*i->second->get_symbol()))
9065 to_delete.push_back(i->first);
9066
9067 for (vector<string>::const_iterator i = to_delete.begin();
9068 i != to_delete.end();
9069 ++i)
9070 deleted_vars_.erase(*i);
9071
9072 // Do something similar for added variables.
9073
9074 to_delete.clear();
9075 for (string_var_ptr_map::const_iterator i = added_vars_.begin();
9076 i != added_vars_.end();
9077 ++i)
9078 if (first_->lookup_variable_symbol(*i->second->get_symbol()))
9079 to_delete.push_back(i->first);
9080 else if (! i->second->get_symbol()->get_version().is_empty()
9081 && i->second->get_symbol()->get_version().is_default())
9082 // We are looking for a symbol that has a default version,
9083 // and which seems to be newly added. Let's see if the same
9084 // symbol with *no* version was already present in the
9085 // former corpus. If yes, then the symbol shouldn't be
9086 // considered as 'added'.
9087 {
9088 elf_symbol::version empty_version;
9089 if (first_->lookup_variable_symbol(i->second->get_symbol()->get_name(),
9090 empty_version))
9091 to_delete.push_back(i->first);
9092 }
9093
9094 for (vector<string>::const_iterator i = to_delete.begin();
9095 i != to_delete.end();
9096 ++i)
9097 added_vars_.erase(*i);
9098 }
9099
9100 // Massage the edit script for added/removed function symbols that
9101 // were not referenced by any debug info and turn them into maps of
9102 // {symbol_name, symbol}.
9103 {
9104 edit_script& e = unrefed_fn_syms_edit_script_;
9105 for (vector<deletion>::const_iterator it = e.deletions().begin();
9106 it != e.deletions().end();
9107 ++it)
9108 {
9109 unsigned i = it->index();
9110 ABG_ASSERT(i < first_->get_unreferenced_function_symbols().size());
9111 elf_symbol_sptr deleted_sym =
9112 first_->get_unreferenced_function_symbols()[i];
9113 if (!second_->lookup_function_symbol(*deleted_sym))
9114 deleted_unrefed_fn_syms_[deleted_sym->get_id_string()] = deleted_sym;
9115 }
9116
9117 for (vector<insertion>::const_iterator it = e.insertions().begin();
9118 it != e.insertions().end();
9119 ++it)
9120 {
9121 for (vector<unsigned>::const_iterator iit =
9122 it->inserted_indexes().begin();
9123 iit != it->inserted_indexes().end();
9124 ++iit)
9125 {
9126 unsigned i = *iit;
9127 ABG_ASSERT(i < second_->get_unreferenced_function_symbols().size());
9128 elf_symbol_sptr added_sym =
9129 second_->get_unreferenced_function_symbols()[i];
9130 if ((deleted_unrefed_fn_syms_.find(added_sym->get_id_string())
9131 == deleted_unrefed_fn_syms_.end()))
9132 {
9133 if (!first_->lookup_function_symbol(*added_sym))
9134 {
9135 bool do_add = true;
9136 if (! added_sym->get_version().is_empty()
9137 && added_sym->get_version().is_default())
9138 {
9139 // So added_seem has a default version. If
9140 // the former corpus had a symbol with the
9141 // same name as added_sym but with *no*
9142 // version, then added_sym shouldn't be
9143 // considered as a newly added symbol.
9144 elf_symbol::version empty_version;
9145 if (first_->lookup_function_symbol(added_sym->get_name(),
9146 empty_version))
9147 do_add = false;
9148 }
9149
9150 if (do_add)
9151 added_unrefed_fn_syms_[added_sym->get_id_string()] =
9152 added_sym;
9153 }
9154 }
9155 else
9156 deleted_unrefed_fn_syms_.erase(added_sym->get_id_string());
9157 }
9158 }
9159 }
9160
9161 // Massage the edit script for added/removed variable symbols that
9162 // were not referenced by any debug info and turn them into maps of
9163 // {symbol_name, symbol}.
9164 {
9165 edit_script& e = unrefed_var_syms_edit_script_;
9166 for (vector<deletion>::const_iterator it = e.deletions().begin();
9167 it != e.deletions().end();
9168 ++it)
9169 {
9170 unsigned i = it->index();
9171 ABG_ASSERT(i < first_->get_unreferenced_variable_symbols().size());
9172 elf_symbol_sptr deleted_sym =
9173 first_->get_unreferenced_variable_symbols()[i];
9174 if (!second_->lookup_variable_symbol(*deleted_sym))
9175 deleted_unrefed_var_syms_[deleted_sym->get_id_string()] = deleted_sym;
9176 }
9177
9178 for (vector<insertion>::const_iterator it = e.insertions().begin();
9179 it != e.insertions().end();
9180 ++it)
9181 {
9182 for (vector<unsigned>::const_iterator iit =
9183 it->inserted_indexes().begin();
9184 iit != it->inserted_indexes().end();
9185 ++iit)
9186 {
9187 unsigned i = *iit;
9188 ABG_ASSERT(i < second_->get_unreferenced_variable_symbols().size());
9189 elf_symbol_sptr added_sym =
9190 second_->get_unreferenced_variable_symbols()[i];
9191 if (deleted_unrefed_var_syms_.find(added_sym->get_id_string())
9192 == deleted_unrefed_var_syms_.end())
9193 {
9194 if (!first_->lookup_variable_symbol(*added_sym))
9195 {
9196 bool do_add = true;
9197 if (! added_sym->get_version().is_empty()
9198 && added_sym->get_version().is_default())
9199 {
9200 // So added_seem has a default version. If
9201 // the former corpus had a symbol with the
9202 // same name as added_sym but with *no*
9203 // version, then added_sym shouldn't be
9204 // considered as a newly added symbol.
9205 elf_symbol::version empty_version;
9206 if (first_->lookup_variable_symbol(added_sym->get_name(),
9207 empty_version))
9208 do_add = false;
9209 }
9210
9211 if (do_add)
9212 added_unrefed_var_syms_[added_sym->get_id_string()] =
9213 added_sym;
9214 }
9215 }
9216 else
9217 deleted_unrefed_var_syms_.erase(added_sym->get_id_string());
9218 }
9219 }
9220 }
9221
9222 // Handle the unreachable_types_edit_script_
9223 {
9224 edit_script& e = unreachable_types_edit_script_;
9225
9226 // Populate the map of deleted unreachable types from the
9227 // deletions of the edit script.
9228 for (vector<deletion>::const_iterator it = e.deletions().begin();
9229 it != e.deletions().end();
9230 ++it)
9231 {
9232 unsigned i = it->index();
9233 type_base_sptr t
9234 (first_->get_types_not_reachable_from_public_interfaces()[i]);
9235
9236 if (!is_user_defined_type(t))
9237 continue;
9238
9239 string repr = abigail::ir::get_pretty_representation(t, true);
9240 deleted_unreachable_types_[repr] = t;
9241 }
9242
9243 // Populate the map of added and change unreachable types from the
9244 // insertions of the edit script.
9245 for (vector<insertion>::const_iterator it = e.insertions().begin();
9246 it != e.insertions().end();
9247 ++it)
9248 {
9249 for (vector<unsigned>::const_iterator iit =
9250 it->inserted_indexes().begin();
9251 iit != it->inserted_indexes().end();
9252 ++iit)
9253 {
9254 unsigned i = *iit;
9255 type_base_sptr t
9256 (second_->get_types_not_reachable_from_public_interfaces()[i]);
9257
9258 if (!is_user_defined_type(t))
9259 continue;
9260
9261 string repr = abigail::ir::get_pretty_representation(t, true);
9262
9263 // Let's see if the inserted type we are looking at was
9264 // reported as deleted as well.
9265 //
9266 // If it's been deleted and a different version of it has
9267 // now been added, it means it's been *changed*. In that
9268 // case we'll compute the diff of that change and store it
9269 // in the map of changed unreachable types.
9270 //
9271 // Otherwise, it means the type's been added so we'll add
9272 // it to the set of added unreachable types.
9273
9274 string_type_base_sptr_map::const_iterator j =
9275 deleted_unreachable_types_.find(repr);
9276 if (j != deleted_unreachable_types_.end())
9277 {
9278 // So there was another type of the same pretty
9279 // representation which was reported as deleted.
9280 // Let's see if they are different or not ...
9281 decl_base_sptr old_type = is_decl(j->second);
9282 decl_base_sptr new_type = is_decl(t);
9283 if (old_type != new_type)
9284 {
9285 // The previously added type is different from this
9286 // one that is added. That means the initial type
9287 // was changed. Let's compute its diff and store it
9288 // as a changed type.
9289 diff_sptr d = compute_diff(old_type, new_type, ctxt);
9290 ABG_ASSERT(d->has_changes());
9291 changed_unreachable_types_[repr]= d;
9292 }
9293
9294 // In any case, the type was both deleted and added,
9295 // so we cannot have it marked as being deleted. So
9296 // let's remove it from the deleted types.
9297 deleted_unreachable_types_.erase(j);
9298 }
9299 else
9300 // The type wasn't previously reported as deleted, so
9301 // it's really added.
9302 added_unreachable_types_[repr] = t;
9303 }
9304 }
9305 }
9306 }
9307
9308 /// Test if a change reports about a given @ref function_decl that is
9309 /// changed in a certain way is suppressed by a given suppression
9310 /// specifiation
9311 ///
9312 /// @param fn the @ref function_decl to consider.
9313 ///
9314 /// @param suppr the suppression specification to consider.
9315 ///
9316 /// @param k the kind of change that happened to @p fn.
9317 ///
9318 /// @param ctxt the context of the current diff.
9319 ///
9320 /// @return true iff the suppression specification @p suppr suppresses
9321 /// change reports about function @p fn, if that function changes in
9322 /// the way expressed by @p k.
9323 static bool
function_is_suppressed(const function_decl * fn,const suppression_sptr suppr,function_suppression::change_kind k,const diff_context_sptr ctxt)9324 function_is_suppressed(const function_decl* fn,
9325 const suppression_sptr suppr,
9326 function_suppression::change_kind k,
9327 const diff_context_sptr ctxt)
9328 {
9329 function_suppression_sptr fn_suppr = is_function_suppression(suppr);
9330 if (!fn_suppr)
9331 return false;
9332 return fn_suppr->suppresses_function(fn, k, ctxt);
9333 }
9334
9335 /// Test if a change reports about a given @ref var_decl that is
9336 /// changed in a certain way is suppressed by a given suppression
9337 /// specifiation
9338 ///
9339 /// @param fn the @ref var_decl to consider.
9340 ///
9341 /// @param suppr the suppression specification to consider.
9342 ///
9343 /// @param k the kind of change that happened to @p fn.
9344 ///
9345 /// @param ctxt the context of the current diff.
9346 ///
9347 /// @return true iff the suppression specification @p suppr suppresses
9348 /// change reports about variable @p fn, if that variable changes in
9349 /// the way expressed by @p k.
9350 static bool
variable_is_suppressed(const var_decl * var,const suppression_sptr suppr,variable_suppression::change_kind k,const diff_context_sptr ctxt)9351 variable_is_suppressed(const var_decl* var,
9352 const suppression_sptr suppr,
9353 variable_suppression::change_kind k,
9354 const diff_context_sptr ctxt)
9355 {
9356 variable_suppression_sptr var_suppr = is_variable_suppression(suppr);
9357 if (!var_suppr)
9358 return false;
9359 return var_suppr->suppresses_variable(var, k, ctxt);
9360 }
9361
9362 /// Apply suppression specifications for this corpus diff to the set
9363 /// of added/removed functions/variables, as well as to types not
9364 /// reachable from global functions/variables.
9365 void
apply_supprs_to_added_removed_fns_vars_unreachable_types()9366 corpus_diff::priv::apply_supprs_to_added_removed_fns_vars_unreachable_types()
9367 {
9368 diff_context_sptr ctxt = get_context();
9369
9370 const suppressions_type& suppressions = ctxt->suppressions();
9371 for (suppressions_type::const_iterator i = suppressions.begin();
9372 i != suppressions.end();
9373 ++i)
9374 {
9375 // Added/Deleted functions.
9376 if (function_suppression_sptr fn_suppr = is_function_suppression(*i))
9377 {
9378 // Added functions
9379 for (string_function_ptr_map::const_iterator e = added_fns_.begin();
9380 e != added_fns_.end();
9381 ++e)
9382 if (function_is_suppressed(e->second, fn_suppr,
9383 function_suppression::ADDED_FUNCTION_CHANGE_KIND,
9384 ctxt))
9385 suppressed_added_fns_[e->first] = e->second;
9386
9387 // Deleted functions.
9388 for (string_function_ptr_map::const_iterator e = deleted_fns_.begin();
9389 e != deleted_fns_.end();
9390 ++e)
9391 if (function_is_suppressed(e->second, fn_suppr,
9392 function_suppression::DELETED_FUNCTION_CHANGE_KIND,
9393 ctxt))
9394 suppressed_deleted_fns_[e->first] = e->second;
9395
9396 // Added function symbols not referenced by any debug info
9397 for (string_elf_symbol_map::const_iterator e =
9398 added_unrefed_fn_syms_.begin();
9399 e != added_unrefed_fn_syms_.end();
9400 ++e)
9401 if (fn_suppr->suppresses_function_symbol(e->second,
9402 function_suppression::ADDED_FUNCTION_CHANGE_KIND,
9403 ctxt))
9404 suppressed_added_unrefed_fn_syms_[e->first] = e->second;
9405
9406 // Removed function symbols not referenced by any debug info
9407 for (string_elf_symbol_map::const_iterator e =
9408 deleted_unrefed_fn_syms_.begin();
9409 e != deleted_unrefed_fn_syms_.end();
9410 ++e)
9411 if (fn_suppr->suppresses_function_symbol(e->second,
9412 function_suppression::DELETED_FUNCTION_CHANGE_KIND,
9413 ctxt))
9414 suppressed_deleted_unrefed_fn_syms_[e->first] = e->second;
9415 }
9416 // Added/Delete virtual member functions changes that might be
9417 // suppressed by a type_suppression that matches the enclosing
9418 // class of the virtual member function.
9419 else if (type_suppression_sptr type_suppr = is_type_suppression(*i))
9420 {
9421 // Added virtual functions
9422 for (string_function_ptr_map::const_iterator e = added_fns_.begin();
9423 e != added_fns_.end();
9424 ++e)
9425 if (is_member_function(e->second)
9426 && get_member_function_is_virtual(e->second))
9427 {
9428 function_decl *f = e->second;
9429 class_decl_sptr c =
9430 is_class_type(is_method_type(f->get_type())->get_class_type());
9431 ABG_ASSERT(c);
9432 if (type_suppr->suppresses_type(c, ctxt))
9433 suppressed_added_fns_[e->first] = e->second;
9434 }
9435 // Deleted virtual functions
9436 for (string_function_ptr_map::const_iterator e = deleted_fns_.begin();
9437 e != deleted_fns_.end();
9438 ++e)
9439 if (is_member_function(e->second)
9440 && get_member_function_is_virtual(e->second))
9441 {
9442 function_decl *f = e->second;
9443 class_decl_sptr c =
9444 is_class_type(is_method_type(f->get_type())->get_class_type());
9445 ABG_ASSERT(c);
9446 if (type_suppr->suppresses_type(c, ctxt))
9447 suppressed_deleted_fns_[e->first] = e->second;
9448 }
9449
9450 // Apply this type suppression to deleted types
9451 // non-reachable from a public interface.
9452 for (string_type_base_sptr_map::const_iterator e =
9453 deleted_unreachable_types_.begin();
9454 e != deleted_unreachable_types_.end();
9455 ++e)
9456 if (type_suppr->suppresses_type(e->second, ctxt))
9457 suppressed_deleted_unreachable_types_[e->first] = e->second;
9458
9459 // Apply this type suppression to added types
9460 // non-reachable from a public interface.
9461 for (string_type_base_sptr_map::const_iterator e =
9462 added_unreachable_types_.begin();
9463 e != added_unreachable_types_.end();
9464 ++e)
9465 if (type_suppr->suppresses_type(e->second, ctxt))
9466 suppressed_added_unreachable_types_[e->first] = e->second;
9467 }
9468 // Added/Deleted variables
9469 else if (variable_suppression_sptr var_suppr =
9470 is_variable_suppression(*i))
9471 {
9472 // Added variables
9473 for (string_var_ptr_map::const_iterator e = added_vars_.begin();
9474 e != added_vars_.end();
9475 ++e)
9476 if (variable_is_suppressed(e->second, var_suppr,
9477 variable_suppression::ADDED_VARIABLE_CHANGE_KIND,
9478 ctxt))
9479 suppressed_added_vars_[e->first] = e->second;
9480
9481 //Deleted variables
9482 for (string_var_ptr_map::const_iterator e = deleted_vars_.begin();
9483 e != deleted_vars_.end();
9484 ++e)
9485 if (variable_is_suppressed(e->second, var_suppr,
9486 variable_suppression::DELETED_VARIABLE_CHANGE_KIND,
9487 ctxt))
9488 suppressed_deleted_vars_[e->first] = e->second;
9489
9490 // Added variable symbols not referenced by any debug info
9491 for (string_elf_symbol_map::const_iterator e =
9492 added_unrefed_var_syms_.begin();
9493 e != added_unrefed_var_syms_.end();
9494 ++e)
9495 if (var_suppr->suppresses_variable_symbol(e->second,
9496 variable_suppression::ADDED_VARIABLE_CHANGE_KIND,
9497 ctxt))
9498 suppressed_added_unrefed_var_syms_[e->first] = e->second;
9499
9500 // Removed variable symbols not referenced by any debug info
9501 for (string_elf_symbol_map::const_iterator e =
9502 deleted_unrefed_var_syms_.begin();
9503 e != deleted_unrefed_var_syms_.end();
9504 ++e)
9505 if (var_suppr->suppresses_variable_symbol(e->second,
9506 variable_suppression::DELETED_VARIABLE_CHANGE_KIND,
9507 ctxt))
9508 suppressed_deleted_unrefed_var_syms_[e->first] = e->second;
9509 }
9510 }
9511 }
9512
9513 /// Test if the change reports for a given deleted function have
9514 /// been deleted.
9515 ///
9516 /// @param fn the function to consider.
9517 ///
9518 /// @return true iff the change reports for a give given deleted
9519 /// function have been deleted.
9520 bool
deleted_function_is_suppressed(const function_decl * fn) const9521 corpus_diff::priv::deleted_function_is_suppressed(const function_decl* fn) const
9522 {
9523 if (!fn)
9524 return false;
9525
9526 string_function_ptr_map::const_iterator i =
9527 suppressed_deleted_fns_.find(fn->get_id());
9528
9529 return (i != suppressed_deleted_fns_.end());
9530 }
9531
9532 /// Test if an added type that is unreachable from public interface
9533 /// has been suppressed by a suppression specification.
9534 ///
9535 /// @param t the added unreachable type to be considered.
9536 ///
9537 /// @return true iff @p t has been suppressed by a suppression
9538 /// specification.
9539 bool
added_unreachable_type_is_suppressed(const type_base * t) const9540 corpus_diff::priv::added_unreachable_type_is_suppressed(const type_base *t)const
9541 {
9542 if (!t)
9543 return false;
9544
9545 string repr = abigail::ir::get_pretty_representation(t, /*internal=*/true);
9546 string_type_base_sptr_map::const_iterator i =
9547 suppressed_added_unreachable_types_.find(repr);
9548 if (i == suppressed_added_unreachable_types_.end())
9549 return false;
9550
9551 return true;
9552 }
9553
9554 /// Test if a deleted type that is unreachable from public interface
9555 /// has been suppressed by a suppression specification.
9556 ///
9557 /// @param t the deleted unreachable type to be considered.
9558 ///
9559 /// @return true iff @p t has been suppressed by a suppression
9560 /// specification.
9561 bool
deleted_unreachable_type_is_suppressed(const type_base * t) const9562 corpus_diff::priv::deleted_unreachable_type_is_suppressed(const type_base *t) const
9563 {
9564 if (!t)
9565 return false;
9566
9567 string repr = abigail::ir::get_pretty_representation(t, /*internal=*/true);
9568 string_type_base_sptr_map::const_iterator i =
9569 suppressed_deleted_unreachable_types_.find(repr);
9570 if (i == suppressed_deleted_unreachable_types_.end())
9571 return false;
9572
9573 return true;
9574 }
9575
9576 /// Test if the change reports for a give given added function has
9577 /// been deleted.
9578 ///
9579 /// @param fn the function to consider.
9580 ///
9581 /// @return true iff the change reports for a give given added
9582 /// function has been deleted.
9583 bool
added_function_is_suppressed(const function_decl * fn) const9584 corpus_diff::priv::added_function_is_suppressed(const function_decl* fn) const
9585 {
9586 if (!fn)
9587 return false;
9588
9589 string_function_ptr_map::const_iterator i =
9590 suppressed_added_fns_.find(fn->get_id());
9591
9592 return (i != suppressed_added_fns_.end());
9593 }
9594
9595 /// Test if the change reports for a give given deleted variable has
9596 /// been deleted.
9597 ///
9598 /// @param var the variable to consider.
9599 ///
9600 /// @return true iff the change reports for a give given deleted
9601 /// variable has been deleted.
9602 bool
deleted_variable_is_suppressed(const var_decl * var) const9603 corpus_diff::priv::deleted_variable_is_suppressed(const var_decl* var) const
9604 {
9605 if (!var)
9606 return false;
9607
9608 string_var_ptr_map::const_iterator i =
9609 suppressed_deleted_vars_.find(var->get_id());
9610
9611 return (i != suppressed_deleted_vars_.end());
9612 }
9613
9614 /// Test if the change reports for a given added variable have been
9615 /// suppressed.
9616 ///
9617 /// @param var the variable to consider.
9618 ///
9619 /// @return true iff the change reports for a given deleted
9620 /// variable has been deleted.
9621 bool
added_variable_is_suppressed(const var_decl * var) const9622 corpus_diff::priv::added_variable_is_suppressed(const var_decl* var) const
9623 {
9624 if (!var)
9625 return false;
9626
9627 string_var_ptr_map::const_iterator i =
9628 suppressed_added_vars_.find(var->get_id());
9629
9630 return (i != suppressed_added_vars_.end());
9631 }
9632
9633 /// Test if the change reports for a given deleted function symbol
9634 /// (that is not referenced by any debug info) has been suppressed.
9635 ///
9636 /// @param var the function to consider.
9637 ///
9638 /// @return true iff the change reports for a given deleted function
9639 /// symbol has been suppressed.
9640 bool
deleted_unrefed_fn_sym_is_suppressed(const elf_symbol * s) const9641 corpus_diff::priv::deleted_unrefed_fn_sym_is_suppressed(const elf_symbol* s) const
9642 {
9643 if (!s)
9644 return false;
9645
9646 string_elf_symbol_map::const_iterator i =
9647 suppressed_deleted_unrefed_fn_syms_.find(s->get_id_string());
9648
9649 return (i != suppressed_deleted_unrefed_fn_syms_.end());
9650 }
9651
9652 /// Test if the change reports for a given added function symbol
9653 /// (that is not referenced by any debug info) has been suppressed.
9654 ///
9655 /// @param var the function to consider.
9656 ///
9657 /// @return true iff the change reports for a given added function
9658 /// symbol has been suppressed.
9659 bool
added_unrefed_fn_sym_is_suppressed(const elf_symbol * s) const9660 corpus_diff::priv::added_unrefed_fn_sym_is_suppressed(const elf_symbol* s) const
9661 {
9662 if (!s)
9663 return false;
9664
9665 string_elf_symbol_map::const_iterator i =
9666 suppressed_added_unrefed_fn_syms_.find(s->get_id_string());
9667
9668 return (i != suppressed_added_unrefed_fn_syms_.end());
9669 }
9670
9671 /// Test if the change reports for a given deleted variable symbol
9672 /// (that is not referenced by any debug info) has been suppressed.
9673 ///
9674 /// @param var the variable to consider.
9675 ///
9676 /// @return true iff the change reports for a given deleted variable
9677 /// symbol has been suppressed.
9678 bool
deleted_unrefed_var_sym_is_suppressed(const elf_symbol * s) const9679 corpus_diff::priv::deleted_unrefed_var_sym_is_suppressed(const elf_symbol* s) const
9680 {
9681 if (!s)
9682 return false;
9683
9684 string_elf_symbol_map::const_iterator i =
9685 suppressed_deleted_unrefed_var_syms_.find(s->get_id_string());
9686
9687 return (i != suppressed_deleted_unrefed_var_syms_.end());
9688 }
9689
9690 /// Test if the change reports for a given added variable symbol
9691 /// (that is not referenced by any debug info) has been suppressed.
9692 ///
9693 /// @param var the variable to consider.
9694 ///
9695 /// @return true iff the change reports for a given added variable
9696 /// symbol has been suppressed.
9697 bool
added_unrefed_var_sym_is_suppressed(const elf_symbol * s) const9698 corpus_diff::priv::added_unrefed_var_sym_is_suppressed(const elf_symbol* s) const
9699 {
9700 if (!s)
9701 return false;
9702
9703 string_elf_symbol_map::const_iterator i =
9704 suppressed_added_unrefed_var_syms_.find(s->get_id_string());
9705
9706 return (i != suppressed_added_unrefed_var_syms_.end());
9707 }
9708
9709 #ifdef do_count_diff_map_changes
9710 #undef do_count_diff_map_changes
9711 #endif
9712 #define do_count_diff_map_changes(diff_map, n_changes, n_filtered) \
9713 { \
9714 string_diff_ptr_map::const_iterator i; \
9715 for (i = diff_map.begin(); \
9716 i != diff_map.end(); \
9717 ++i) \
9718 { \
9719 if (const var_diff* d = is_var_diff(i->second)) \
9720 if (is_data_member(d->first_var())) \
9721 continue; \
9722 \
9723 if (i->second->has_local_changes()) \
9724 ++n_changes; \
9725 if (!i->second->get_canonical_diff()->to_be_reported()) \
9726 ++n_filtered; \
9727 } \
9728 }
9729
9730 /// Count the number of leaf changes as well as the number of the
9731 /// changes that have been filtered out.
9732 ///
9733 /// @param num_changes out parameter. This is set to the total number
9734 /// of leaf changes.
9735 ///
9736 /// @param num_filtered out parameter. This is set to the number of
9737 /// leaf changes that have been filtered out.
9738 void
count_leaf_changes(size_t & num_changes,size_t & num_filtered)9739 corpus_diff::priv::count_leaf_changes(size_t &num_changes, size_t &num_filtered)
9740 {
9741 count_leaf_type_changes(num_changes, num_filtered);
9742
9743 // Now count the non-type changes.
9744 do_count_diff_map_changes(leaf_diffs_.get_function_decl_diff_map(),
9745 num_changes, num_filtered);
9746 do_count_diff_map_changes(leaf_diffs_.get_var_decl_diff_map(),
9747 num_changes, num_filtered);
9748 }
9749
9750 /// Count the number of leaf *type* changes as well as the number of
9751 /// the leaf type changes that have been filtered out.
9752 ///
9753 /// @param num_changes out parameter. This is set to the total number
9754 /// of leaf type changes.
9755 ///
9756 /// @param num_filtered out parameter. This is set to the number of
9757 /// leaf type changes that have been filtered out.
9758 void
count_leaf_type_changes(size_t & num_changes,size_t & num_filtered)9759 corpus_diff::priv::count_leaf_type_changes(size_t &num_changes,
9760 size_t &num_filtered)
9761 {
9762 do_count_diff_map_changes(leaf_diffs_.get_type_decl_diff_map(),
9763 num_changes, num_filtered);
9764 do_count_diff_map_changes(leaf_diffs_.get_enum_diff_map(),
9765 num_changes, num_filtered);
9766 do_count_diff_map_changes(leaf_diffs_.get_class_diff_map(),
9767 num_changes, num_filtered);
9768 do_count_diff_map_changes(leaf_diffs_.get_union_diff_map(),
9769 num_changes, num_filtered);
9770 do_count_diff_map_changes(leaf_diffs_.get_typedef_diff_map(),
9771 num_changes, num_filtered);
9772 do_count_diff_map_changes(leaf_diffs_.get_array_diff_map(),
9773 num_changes, num_filtered);
9774 do_count_diff_map_changes(leaf_diffs_.get_distinct_diff_map(),
9775 num_changes, num_filtered);
9776 do_count_diff_map_changes(leaf_diffs_.get_fn_parm_diff_map(),
9777 num_changes, num_filtered);
9778 }
9779
9780 /// Count the number of types not reachable from the interface (i.e,
9781 /// not reachable from global functions or variables).
9782 ///
9783 /// @param num_added this is set to the number of added types not
9784 /// reachable from the interface.
9785 ///
9786 /// @param num_deleted this is set to the number of deleted types not
9787 /// reachable from the interface.
9788 ///
9789 /// @param num_changed this is set to the number of changed types not
9790 /// reachable from the interface.
9791 ///
9792 /// @param num_filtered_added this is set to the number of added types
9793 /// not reachable from the interface and that have been filtered out
9794 /// by suppression specifications.
9795 ///
9796 /// @param num_filtered_deleted this is set to the number of deleted
9797 /// types not reachable from the interface and that have been filtered
9798 /// out by suppression specifications.
9799 ///
9800 /// @param num_filtered_changed this is set to the number of changed
9801 /// types not reachable from the interface and that have been filtered
9802 /// out by suppression specifications.
9803 void
count_unreachable_types(size_t & num_added,size_t & num_deleted,size_t & num_changed,size_t & num_filtered_added,size_t & num_filtered_deleted,size_t & num_filtered_changed)9804 corpus_diff::priv::count_unreachable_types(size_t &num_added,
9805 size_t &num_deleted,
9806 size_t &num_changed,
9807 size_t &num_filtered_added,
9808 size_t &num_filtered_deleted,
9809 size_t &num_filtered_changed)
9810 {
9811 num_added = added_unreachable_types_.size();
9812 num_deleted = deleted_unreachable_types_.size();
9813 num_changed = changed_unreachable_types_.size();
9814 num_filtered_added = suppressed_added_unreachable_types_.size();
9815 num_filtered_deleted = suppressed_deleted_unreachable_types_.size();
9816
9817 for (vector<diff_sptr>::const_iterator i =
9818 changed_unreachable_types_sorted().begin();
9819 i != changed_unreachable_types_sorted().end();
9820 ++i)
9821 if (!(*i)->to_be_reported())
9822 ++num_filtered_changed;
9823 }
9824
9825 /// Get the sorted vector of diff nodes representing changed
9826 /// unreachable types.
9827 ///
9828 /// Upon the first invocation of this method, if the vector is empty,
9829 /// this function gets the diff nodes representing changed
9830 /// unreachable, sort them, and return the sorted vector.
9831 ///
9832 /// @return the sorted vector of diff nodes representing changed
9833 /// unreachable types.
9834 const vector<diff_sptr>&
changed_unreachable_types_sorted() const9835 corpus_diff::priv::changed_unreachable_types_sorted() const
9836 {
9837 if (changed_unreachable_types_sorted_.empty())
9838 if (!changed_unreachable_types_.empty())
9839 sort_string_diff_sptr_map(changed_unreachable_types_,
9840 changed_unreachable_types_sorted_);
9841
9842 return changed_unreachable_types_sorted_;
9843 }
9844
9845 /// Compute the diff stats.
9846 ///
9847 /// To know the number of functions that got filtered out, this
9848 /// function applies the categorizing filters to the diff sub-trees of
9849 /// each function changes diff, prior to calculating the stats.
9850 ///
9851 /// @param num_removed the number of removed functions.
9852 ///
9853 /// @param num_added the number of added functions.
9854 ///
9855 /// @param num_changed the number of changed functions.
9856 ///
9857 /// @param num_filtered_out the number of changed functions that are
9858 /// got filtered out from the report
9859 void
apply_filters_and_compute_diff_stats(diff_stats & stat)9860 corpus_diff::priv::apply_filters_and_compute_diff_stats(diff_stats& stat)
9861 {
9862 stat.num_func_removed(deleted_fns_.size());
9863 stat.num_removed_func_filtered_out(suppressed_deleted_fns_.size());
9864 stat.num_func_added(added_fns_.size());
9865 stat.num_added_func_filtered_out(suppressed_added_fns_.size());
9866 stat.num_func_changed(changed_fns_map_.size());
9867
9868 stat.num_vars_removed(deleted_vars_.size());
9869 stat.num_removed_vars_filtered_out(suppressed_deleted_vars_.size());
9870 stat.num_vars_added(added_vars_.size());
9871 stat.num_added_vars_filtered_out(suppressed_added_vars_.size());
9872 stat.num_vars_changed(changed_vars_map_.size());
9873
9874 diff_context_sptr ctxt = get_context();
9875
9876 // Walk the changed function diff nodes to apply the categorization
9877 // filters.
9878 diff_sptr diff;
9879 for (function_decl_diff_sptrs_type::const_iterator i =
9880 changed_fns_.begin();
9881 i != changed_fns_.end();
9882 ++i)
9883 {
9884 diff_sptr diff = *i;
9885 ctxt->maybe_apply_filters(diff);
9886 }
9887
9888 // Walk the changed variable diff nodes to apply the categorization
9889 // filters.
9890 for (var_diff_sptrs_type::const_iterator i = sorted_changed_vars_.begin();
9891 i != sorted_changed_vars_.end();
9892 ++i)
9893 {
9894 diff_sptr diff = *i;
9895 ctxt->maybe_apply_filters(diff);
9896 }
9897
9898 // walk the changed unreachable types to apply categorization
9899 // filters
9900 for (diff_sptrs_type::const_iterator i =
9901 changed_unreachable_types_sorted().begin();
9902 i != changed_unreachable_types_sorted().end();
9903 ++i)
9904 {
9905 diff_sptr diff = *i;
9906 ctxt->maybe_apply_filters(diff);
9907 }
9908
9909 categorize_redundant_changed_sub_nodes();
9910
9911 // Walk the changed function diff nodes to count the number of
9912 // filtered-out functions and the number of functions with virtual
9913 // offset changes.
9914 for (function_decl_diff_sptrs_type::const_iterator i =
9915 changed_fns_.begin();
9916 i != changed_fns_.end();
9917 ++i)
9918 {
9919 if ((*i)->is_filtered_out())
9920 {
9921 stat.num_changed_func_filtered_out
9922 (stat.num_changed_func_filtered_out() + 1);
9923
9924 if ((*i)->has_local_changes())
9925 stat.num_leaf_func_changes_filtered_out
9926 (stat.num_leaf_func_changes_filtered_out() + 1);
9927 }
9928 else
9929 {
9930 if ((*i)->get_category() & VIRTUAL_MEMBER_CHANGE_CATEGORY)
9931 stat.num_func_with_virtual_offset_changes
9932 (stat.num_func_with_virtual_offset_changes() + 1);
9933 }
9934
9935 if ((*i)->has_local_changes())
9936 stat.num_leaf_func_changes
9937 (stat.num_leaf_func_changes() + 1);
9938 }
9939
9940 // Walk the changed variables diff nodes to count the number of
9941 // filtered-out variables.
9942 for (var_diff_sptrs_type ::const_iterator i = sorted_changed_vars_.begin();
9943 i != sorted_changed_vars_.end();
9944 ++i)
9945 {
9946 if ((*i)->is_filtered_out())
9947 {
9948 stat.num_changed_vars_filtered_out
9949 (stat.num_changed_vars_filtered_out() + 1);
9950
9951 if ((*i)->has_local_changes())
9952 stat.num_leaf_var_changes_filtered_out
9953 (stat.num_leaf_var_changes_filtered_out() + 1);
9954 }
9955 if ((*i)->has_local_changes())
9956 stat.num_leaf_var_changes
9957 (stat.num_leaf_var_changes() + 1);
9958 }
9959
9960 stat.num_func_syms_added(added_unrefed_fn_syms_.size());
9961 stat.num_added_func_syms_filtered_out(suppressed_added_unrefed_fn_syms_.size());
9962 stat.num_func_syms_removed(deleted_unrefed_fn_syms_.size());
9963 stat.num_removed_func_syms_filtered_out(suppressed_deleted_unrefed_fn_syms_.size());
9964 stat.num_var_syms_added(added_unrefed_var_syms_.size());
9965 stat.num_added_var_syms_filtered_out(suppressed_added_unrefed_var_syms_.size());
9966 stat.num_var_syms_removed(deleted_unrefed_var_syms_.size());
9967 stat.num_removed_var_syms_filtered_out(suppressed_deleted_unrefed_var_syms_.size());
9968
9969 // Walk the general leaf type diff nodes to count them
9970 {
9971 size_t num_type_changes = 0, num_type_filtered = 0;
9972 count_leaf_type_changes(num_type_changes, num_type_filtered);
9973
9974 stat.num_leaf_type_changes(num_type_changes);
9975 stat.num_leaf_type_changes_filtered_out(num_type_filtered);
9976 }
9977
9978 // Walk the general leaf artefacts diff nodes to count them
9979 {
9980 size_t num_changes = 0, num_filtered = 0;
9981 count_leaf_changes(num_changes, num_filtered);
9982
9983 stat.num_leaf_changes(num_changes);
9984 stat.num_leaf_changes_filtered_out(num_filtered);
9985 }
9986
9987 // Walk the unreachable types to count them
9988 {
9989 size_t num_added_unreachable_types = 0,
9990 num_changed_unreachable_types = 0,
9991 num_deleted_unreachable_types = 0,
9992 num_added_unreachable_types_filtered = 0,
9993 num_changed_unreachable_types_filtered = 0,
9994 num_deleted_unreachable_types_filtered = 0;
9995
9996 count_unreachable_types(num_added_unreachable_types,
9997 num_deleted_unreachable_types,
9998 num_changed_unreachable_types,
9999 num_added_unreachable_types_filtered,
10000 num_deleted_unreachable_types_filtered,
10001 num_changed_unreachable_types_filtered);
10002
10003 stat.num_added_unreachable_types(num_added_unreachable_types);
10004 stat.num_removed_unreachable_types(num_deleted_unreachable_types);
10005 stat.num_changed_unreachable_types(num_changed_unreachable_types);
10006 stat.num_added_unreachable_types_filtered_out
10007 (num_added_unreachable_types_filtered);
10008 stat.num_removed_unreachable_types_filtered_out
10009 (num_deleted_unreachable_types_filtered);
10010 stat.num_changed_unreachable_types_filtered_out
10011 (num_changed_unreachable_types_filtered);
10012 }
10013 }
10014
10015 /// Emit the summary of the functions & variables that got
10016 /// removed/changed/added.
10017 ///
10018 /// TODO: This should be handled by the reporters, just like what is
10019 /// done for reporter_base::diff_to_be_reported.
10020 ///
10021 /// @param out the output stream to emit the stats to.
10022 ///
10023 /// @param indent the indentation string to use in the summary.
10024 void
emit_diff_stats(const diff_stats & s,ostream & out,const string & indent)10025 corpus_diff::priv::emit_diff_stats(const diff_stats& s,
10026 ostream& out,
10027 const string& indent)
10028 {
10029 /// Report added/removed/changed functions.
10030 size_t net_num_leaf_changes =
10031 s.net_num_func_removed() +
10032 s.net_num_func_added() +
10033 s.net_num_leaf_func_changes() +
10034 s.net_num_vars_removed() +
10035 s.net_num_vars_added() +
10036 s.net_num_leaf_var_changes() +
10037 s.net_num_leaf_type_changes();
10038
10039 if (!sonames_equal_)
10040 out << indent << "ELF SONAME changed\n";
10041
10042 if (!architectures_equal_)
10043 out << indent << "ELF architecture changed\n";
10044
10045 diff_context_sptr ctxt = get_context();
10046
10047 if (ctxt->show_leaf_changes_only())
10048 {
10049 out << "Leaf changes summary: ";
10050 out << net_num_leaf_changes << " artifact";
10051 if (net_num_leaf_changes > 1)
10052 out << "s";
10053 out << " changed";
10054
10055 if (size_t num_filtered = s.num_leaf_changes_filtered_out())
10056 out << " (" << num_filtered << " filtered out)";
10057 out << "\n";
10058
10059 out << indent << "Changed leaf types summary: "
10060 << s.net_num_leaf_type_changes();
10061 if (s.num_leaf_type_changes_filtered_out())
10062 out << " (" << s.num_leaf_type_changes_filtered_out()
10063 << " filtered out)";
10064 out << " leaf type";
10065 if (s.num_leaf_type_changes() > 1)
10066 out << "s";
10067 out << " changed\n";
10068
10069 // function changes summary
10070 out << indent << "Removed/Changed/Added functions summary: ";
10071 out << s.net_num_func_removed() << " Removed";
10072 if (s.num_removed_func_filtered_out())
10073 out << " ("
10074 << s.num_removed_func_filtered_out()
10075 << " filtered out)";
10076 out << ", ";
10077
10078 out << s.net_num_leaf_func_changes() << " Changed";
10079 if (s.num_leaf_func_changes_filtered_out())
10080 out << " ("
10081 << s.num_leaf_func_changes_filtered_out()
10082 << " filtered out)";
10083 out << ", ";
10084
10085 out << s.net_num_func_added()<< " Added ";
10086 if (s.net_num_func_added() <= 1)
10087 out << "function";
10088 else
10089 out << "functions";
10090 if (s.num_added_func_filtered_out())
10091 out << " (" << s.num_added_func_filtered_out() << " filtered out)";
10092 out << "\n";
10093
10094 // variables changes summary
10095 out << indent << "Removed/Changed/Added variables summary: ";
10096 out << s.net_num_vars_removed() << " Removed";
10097 if (s.num_removed_vars_filtered_out())
10098 out << " (" << s.num_removed_vars_filtered_out()
10099 << " filtered out)";
10100 out << ", ";
10101
10102 out << s.net_num_leaf_var_changes() << " Changed";
10103 if (s.num_leaf_var_changes_filtered_out())
10104 out << " ("
10105 << s.num_leaf_var_changes_filtered_out()
10106 << " filtered out)";
10107 out << ", ";
10108
10109 out << s.net_num_vars_added() << " Added ";
10110 if (s.net_num_vars_added() <= 1)
10111 out << "variable";
10112 else
10113 out << "variables";
10114 if (s.num_added_vars_filtered_out())
10115 out << " (" << s.num_added_vars_filtered_out()
10116 << " filtered out)";
10117 out << "\n";
10118 }
10119 else // if (ctxt->show_leaf_changes_only())
10120 {
10121 size_t total_nb_function_changes = s.num_func_removed()
10122 + s.num_func_changed() + s.num_func_added();
10123
10124 // function changes summary
10125 out << indent << "Functions changes summary: ";
10126 out << s.net_num_func_removed() << " Removed";
10127 if (s.num_removed_func_filtered_out())
10128 out << " ("
10129 << s.num_removed_func_filtered_out()
10130 << " filtered out)";
10131 out << ", ";
10132
10133 out << s.net_num_func_changed() << " Changed";
10134 if (s.num_changed_func_filtered_out())
10135 out << " (" << s.num_changed_func_filtered_out() << " filtered out)";
10136 out << ", ";
10137
10138 out << s.net_num_func_added() << " Added";
10139 if (s.num_added_func_filtered_out())
10140 out << " (" << s.num_added_func_filtered_out() << " filtered out)";
10141 if (total_nb_function_changes <= 1)
10142 out << " function";
10143 else
10144 out << " functions";
10145 out << "\n";
10146
10147 // variables changes summary
10148 size_t total_nb_variable_changes = s.num_vars_removed()
10149 + s.num_vars_changed() + s.num_vars_added();
10150
10151 out << indent << "Variables changes summary: ";
10152 out << s.net_num_vars_removed() << " Removed";
10153 if (s.num_removed_vars_filtered_out())
10154 out << " (" << s.num_removed_vars_filtered_out()
10155 << " filtered out)";
10156 out << ", ";
10157
10158 out << s.num_vars_changed() - s.num_changed_vars_filtered_out() << " Changed";
10159 if (s.num_changed_vars_filtered_out())
10160 out << " (" << s.num_changed_vars_filtered_out() << " filtered out)";
10161 out << ", ";
10162
10163 out << s.net_num_vars_added() << " Added";
10164 if (s.num_added_vars_filtered_out())
10165 out << " (" << s.num_added_vars_filtered_out()
10166 << " filtered out)";
10167 if (total_nb_variable_changes <= 1)
10168 out << " variable";
10169 else
10170 out << " variables";
10171 out << "\n";
10172 }
10173
10174 // Show statistics about types not reachable from global
10175 // functions/variables.
10176 if (ctxt->show_unreachable_types())
10177 {
10178 size_t total_nb_unreachable_type_changes =
10179 s.num_removed_unreachable_types()
10180 + s.num_changed_unreachable_types()
10181 + s.num_added_unreachable_types();
10182
10183 // Show summary of unreachable types
10184 out << indent << "Unreachable types summary: "
10185 << s.net_num_removed_unreachable_types()
10186 << " removed";
10187 if (s.num_removed_unreachable_types_filtered_out())
10188 out << " (" << s.num_removed_unreachable_types_filtered_out()
10189 << " filtered out)";
10190 out << ", ";
10191
10192 out << s.net_num_changed_unreachable_types()
10193 << " changed";
10194 if (s.num_changed_unreachable_types_filtered_out())
10195 out << " (" << s.num_changed_unreachable_types_filtered_out()
10196 << " filtered out)";
10197 out << ", ";
10198
10199 out << s.net_num_added_unreachable_types()
10200 << " added";
10201 if (s.num_added_unreachable_types_filtered_out())
10202 out << " (" << s.num_added_unreachable_types_filtered_out()
10203 << " filtered out)";
10204 if (total_nb_unreachable_type_changes <= 1)
10205 out << " type";
10206 else
10207 out << " types";
10208 out << "\n";
10209 }
10210
10211 if (ctxt->show_symbols_unreferenced_by_debug_info()
10212 && (s.num_func_syms_removed()
10213 || s.num_func_syms_added()
10214 || s.num_var_syms_removed()
10215 || s.num_var_syms_added()))
10216 {
10217 // function symbols changes summary.
10218
10219 if (!ctxt->show_added_symbols_unreferenced_by_debug_info()
10220 && s.num_func_syms_removed() == 0
10221 && s.num_func_syms_added() != 0)
10222 // If the only unreferenced function symbol change is function
10223 // syms that got added, but we were forbidden to show function
10224 // syms being added, do nothing.
10225 ;
10226 else
10227 {
10228 out << indent
10229 << "Function symbols changes summary: "
10230 << s.net_num_removed_func_syms() << " Removed";
10231 if (s.num_removed_func_syms_filtered_out())
10232 out << " (" << s.num_removed_func_syms_filtered_out()
10233 << " filtered out)";
10234 out << ", ";
10235 out << s.net_num_added_func_syms() << " Added";
10236 if (s.num_added_func_syms_filtered_out())
10237 out << " (" << s.num_added_func_syms_filtered_out()
10238 << " filtered out)";
10239 out << " function symbol";
10240 if (s.num_func_syms_added() + s.num_func_syms_removed() > 1)
10241 out << "s";
10242 out << " not referenced by debug info\n";
10243 }
10244
10245 // variable symbol changes summary.
10246
10247 if (!ctxt->show_added_symbols_unreferenced_by_debug_info()
10248 && s.num_var_syms_removed() == 0
10249 && s.num_var_syms_added() != 0)
10250 // If the only unreferenced variable symbol change is variable
10251 // syms that got added, but we were forbidden to show variable
10252 // syms being added, do nothing.
10253 ;
10254 else
10255 {
10256 out << indent
10257 << "Variable symbols changes summary: "
10258 << s.net_num_removed_var_syms() << " Removed";
10259 if (s.num_removed_var_syms_filtered_out())
10260 out << " (" << s.num_removed_var_syms_filtered_out()
10261 << " filtered out)";
10262 out << ", ";
10263 out << s.net_num_added_var_syms() << " Added";
10264 if (s.num_added_var_syms_filtered_out())
10265 out << " (" << s.num_added_var_syms_filtered_out()
10266 << " filtered out)";
10267 out << " variable symbol";
10268 if (s.num_var_syms_added() + s.num_var_syms_removed() > 1)
10269 out << "s";
10270 out << " not referenced by debug info\n";
10271 }
10272 }
10273 }
10274
10275 /// Walk the changed functions and variables diff nodes to categorize
10276 /// redundant nodes.
10277 void
categorize_redundant_changed_sub_nodes()10278 corpus_diff::priv::categorize_redundant_changed_sub_nodes()
10279 {
10280 diff_sptr diff;
10281
10282 diff_context_sptr ctxt = get_context();
10283
10284 ctxt->forget_visited_diffs();
10285 for (function_decl_diff_sptrs_type::const_iterator i =
10286 changed_fns_.begin();
10287 i!= changed_fns_.end();
10288 ++i)
10289 {
10290 diff = *i;
10291 categorize_redundancy(diff);
10292 }
10293
10294 for (var_diff_sptrs_type::const_iterator i = sorted_changed_vars_.begin();
10295 i!= sorted_changed_vars_.end();
10296 ++i)
10297 {
10298 diff_sptr diff = *i;
10299 categorize_redundancy(diff);
10300 }
10301
10302 for (diff_sptrs_type::const_iterator i =
10303 changed_unreachable_types_sorted().begin();
10304 i!= changed_unreachable_types_sorted().end();
10305 ++i)
10306 {
10307 diff_sptr diff = *i;
10308 categorize_redundancy(diff);
10309 }
10310 }
10311
10312 /// Walk the changed functions and variables diff nodes and clear the
10313 /// redundancy categorization they might carry.
10314 void
clear_redundancy_categorization()10315 corpus_diff::priv::clear_redundancy_categorization()
10316 {
10317 diff_sptr diff;
10318 for (function_decl_diff_sptrs_type::const_iterator i = changed_fns_.begin();
10319 i!= changed_fns_.end();
10320 ++i)
10321 {
10322 diff = *i;
10323 abigail::comparison::clear_redundancy_categorization(diff);
10324 }
10325
10326 for (var_diff_sptrs_type::const_iterator i = sorted_changed_vars_.begin();
10327 i!= sorted_changed_vars_.end();
10328 ++i)
10329 {
10330 diff = *i;
10331 abigail::comparison::clear_redundancy_categorization(diff);
10332 }
10333 }
10334
10335 /// If the user asked to dump the diff tree node (for changed
10336 /// variables and functions) on the error output stream, then just do
10337 /// that.
10338 ///
10339 /// This function is used for debugging purposes.
10340 void
maybe_dump_diff_tree()10341 corpus_diff::priv::maybe_dump_diff_tree()
10342 {
10343 diff_context_sptr ctxt = get_context();
10344
10345 if (!ctxt->dump_diff_tree()
10346 || ctxt->error_output_stream() == 0)
10347 return;
10348
10349 if (!changed_fns_.empty())
10350 {
10351 *ctxt->error_output_stream() << "changed functions diff tree: \n\n";
10352 for (function_decl_diff_sptrs_type::const_iterator i =
10353 changed_fns_.begin();
10354 i != changed_fns_.end();
10355 ++i)
10356 {
10357 diff_sptr d = *i;
10358 print_diff_tree(d, *ctxt->error_output_stream());
10359 }
10360 }
10361
10362 if (!sorted_changed_vars_.empty())
10363 {
10364 *ctxt->error_output_stream() << "\nchanged variables diff tree: \n\n";
10365 for (var_diff_sptrs_type::const_iterator i =
10366 sorted_changed_vars_.begin();
10367 i != sorted_changed_vars_.end();
10368 ++i)
10369 {
10370 diff_sptr d = *i;
10371 print_diff_tree(d, *ctxt->error_output_stream());
10372 }
10373 }
10374
10375 if (!changed_unreachable_types_sorted().empty())
10376 {
10377 *ctxt->error_output_stream() << "\nchanged unreachable "
10378 "types diff tree: \n\n";
10379 for (vector<diff_sptr>::const_iterator i =
10380 changed_unreachable_types_sorted().begin();
10381 i != changed_unreachable_types_sorted().end();
10382 ++i)
10383 {
10384 diff_sptr d = *i;
10385 print_diff_tree(d, *ctxt->error_output_stream());
10386 }
10387 }
10388 }
10389
10390 /// Populate the vector of children node of the @ref corpus_diff type.
10391 ///
10392 /// The children node can then later be retrieved using
10393 /// corpus_diff::children_node().
10394 void
chain_into_hierarchy()10395 corpus_diff::chain_into_hierarchy()
10396 {
10397 for (function_decl_diff_sptrs_type::const_iterator i =
10398 changed_functions_sorted().begin();
10399 i != changed_functions_sorted().end();
10400 ++i)
10401 if (diff_sptr d = *i)
10402 append_child_node(d);
10403 }
10404
10405 /// Constructor for @ref corpus_diff.
10406 ///
10407 /// @param first the first corpus of the diff.
10408 ///
10409 /// @param second the second corpus of the diff.
10410 ///
10411 /// @param ctxt the diff context to use. Note that this context
10412 /// object must stay alive at least during the life time of the
10413 /// current instance of @ref corpus_diff. Otherwise memory corruption
10414 /// issues occur.
corpus_diff(corpus_sptr first,corpus_sptr second,diff_context_sptr ctxt)10415 corpus_diff::corpus_diff(corpus_sptr first,
10416 corpus_sptr second,
10417 diff_context_sptr ctxt)
10418 : priv_(new priv(first, second, ctxt))
10419 {}
10420
10421 corpus_diff::~corpus_diff() = default;
10422
10423 /// Finish building the current instance of @ref corpus_diff.
10424 void
finish_diff_type()10425 corpus_diff::finish_diff_type()
10426 {
10427 if (priv_->finished_)
10428 return;
10429 chain_into_hierarchy();
10430 priv_->finished_ = true;
10431 }
10432
10433 /// @return the first corpus of the diff.
10434 corpus_sptr
first_corpus() const10435 corpus_diff::first_corpus() const
10436 {return priv_->first_;}
10437
10438 /// @return the second corpus of the diff.
10439 corpus_sptr
second_corpus() const10440 corpus_diff::second_corpus() const
10441 {return priv_->second_;}
10442
10443 /// @return the children nodes of the current instance of corpus_diff.
10444 const vector<diff*>&
children_nodes() const10445 corpus_diff::children_nodes() const
10446 {return priv_->children_;}
10447
10448 /// Append a new child node to the vector of children nodes for the
10449 /// current instance of @ref corpus_diff node.
10450 ///
10451 /// Note that the vector of children nodes for the current instance of
10452 /// @ref corpus_diff node must remain sorted, using
10453 /// diff_less_than_functor.
10454 ///
10455 /// @param d the new child node. Note that the life time of the
10456 /// object held by @p d will thus equal the life time of the current
10457 /// instance of @ref corpus_diff.
10458 void
append_child_node(diff_sptr d)10459 corpus_diff::append_child_node(diff_sptr d)
10460 {
10461 ABG_ASSERT(d);
10462
10463 diff_less_than_functor is_less_than;
10464 bool inserted = false;
10465 for (vector<diff*>::iterator i = priv_->children_.begin();
10466 i != priv_->children_.end();
10467 ++i)
10468 // Look for the point where to insert the diff child node.
10469 if (!is_less_than(d.get(), *i))
10470 {
10471 context()->keep_diff_alive(d);
10472 priv_->children_.insert(i, d.get());
10473 // As we have just inserted 'd' into the vector, the iterator
10474 // 'i' is invalidated. We must *NOT* use it anymore.
10475 inserted = true;
10476 break;
10477 }
10478
10479 if (!inserted)
10480 {
10481 context()->keep_diff_alive(d);
10482 // We didn't insert anything to the vector, presumably b/c it was
10483 // empty or had one element that was "less than" 'd'. We can thus
10484 // just append 'd' to the end of the vector.
10485 priv_->children_.push_back(d.get());
10486 }
10487 }
10488
10489 /// @return the bare edit script of the functions changed as recorded
10490 /// by the diff.
10491 edit_script&
function_changes() const10492 corpus_diff::function_changes() const
10493 {return priv_->fns_edit_script_;}
10494
10495 /// @return the bare edit script of the variables changed as recorded
10496 /// by the diff.
10497 edit_script&
variable_changes() const10498 corpus_diff::variable_changes() const
10499 {return priv_->vars_edit_script_;}
10500
10501 /// Test if the soname of the underlying corpus has changed.
10502 ///
10503 /// @return true iff the soname has changed.
10504 bool
soname_changed() const10505 corpus_diff::soname_changed() const
10506 {return !priv_->sonames_equal_;}
10507
10508 /// Test if the architecture of the underlying corpus has changed.
10509 ///
10510 /// @return true iff the architecture has changed.
10511 bool
architecture_changed() const10512 corpus_diff::architecture_changed() const
10513 {return !priv_->architectures_equal_;}
10514
10515 /// Getter for the deleted functions of the diff.
10516 ///
10517 /// @return the the deleted functions of the diff.
10518 const string_function_ptr_map&
deleted_functions() const10519 corpus_diff::deleted_functions() const
10520 {return priv_->deleted_fns_;}
10521
10522 /// Getter for the added functions of the diff.
10523 ///
10524 /// @return the added functions of the diff.
10525 const string_function_ptr_map&
added_functions()10526 corpus_diff::added_functions()
10527 {return priv_->added_fns_;}
10528
10529 /// Getter for the functions which signature didn't change, but which
10530 /// do have some indirect changes in their parms.
10531 ///
10532 /// @return a non-sorted map of functions which signature didn't
10533 /// change, but which do have some indirect changes in their parms.
10534 /// The key of the map is a unique identifier for the function; it's
10535 /// usually made of the name and version of the underlying ELF symbol
10536 /// of the function for corpora that were built from ELF files.
10537 const string_function_decl_diff_sptr_map&
changed_functions()10538 corpus_diff::changed_functions()
10539 {return priv_->changed_fns_map_;}
10540
10541 /// Getter for a sorted vector of functions which signature didn't
10542 /// change, but which do have some indirect changes in their parms.
10543 ///
10544 /// @return a sorted vector of functions which signature didn't
10545 /// change, but which do have some indirect changes in their parms.
10546 const function_decl_diff_sptrs_type&
changed_functions_sorted()10547 corpus_diff::changed_functions_sorted()
10548 {return priv_->changed_fns_;}
10549
10550 /// Getter for the variables that got deleted from the first subject
10551 /// of the diff.
10552 ///
10553 /// @return the map of deleted variable.
10554 const string_var_ptr_map&
deleted_variables() const10555 corpus_diff::deleted_variables() const
10556 {return priv_->deleted_vars_;}
10557
10558 /// Getter for the added variables of the diff.
10559 ///
10560 /// @return the map of added variable.
10561 const string_var_ptr_map&
added_variables() const10562 corpus_diff::added_variables() const
10563 {return priv_->added_vars_;}
10564
10565 /// Getter for the non-sorted map of variables which signature didn't
10566 /// change but which do have some indirect changes in some sub-types.
10567 ///
10568 /// @return the non-sorted map of changed variables.
10569 const string_var_diff_sptr_map&
changed_variables()10570 corpus_diff::changed_variables()
10571 {return priv_->changed_vars_map_;}
10572
10573 /// Getter for the sorted vector of variables which signature didn't
10574 /// change but which do have some indirect changes in some sub-types.
10575 ///
10576 /// @return a sorted vector of changed variables.
10577 const var_diff_sptrs_type&
changed_variables_sorted()10578 corpus_diff::changed_variables_sorted()
10579 {return priv_->sorted_changed_vars_;}
10580
10581 /// Getter for function symbols not referenced by any debug info and
10582 /// that got deleted.
10583 ///
10584 /// @return a map of elf function symbols not referenced by any debug
10585 /// info and that got deleted.
10586 const string_elf_symbol_map&
deleted_unrefed_function_symbols() const10587 corpus_diff::deleted_unrefed_function_symbols() const
10588 {return priv_->deleted_unrefed_fn_syms_;}
10589
10590 /// Getter for function symbols not referenced by any debug info and
10591 /// that got added.
10592 ///
10593 /// @return a map of elf function symbols not referenced by any debug
10594 /// info and that got added.
10595 const string_elf_symbol_map&
added_unrefed_function_symbols() const10596 corpus_diff::added_unrefed_function_symbols() const
10597 {return priv_->added_unrefed_fn_syms_;}
10598
10599 /// Getter for variable symbols not referenced by any debug info and
10600 /// that got deleted.
10601 ///
10602 /// @return a map of elf variable symbols not referenced by any debug
10603 /// info and that got deleted.
10604 const string_elf_symbol_map&
deleted_unrefed_variable_symbols() const10605 corpus_diff::deleted_unrefed_variable_symbols() const
10606 {return priv_->deleted_unrefed_var_syms_;}
10607
10608 /// Getter for variable symbols not referenced by any debug info and
10609 /// that got added.
10610 ///
10611 /// @return a map of elf variable symbols not referenced by any debug
10612 /// info and that got added.
10613 const string_elf_symbol_map&
added_unrefed_variable_symbols() const10614 corpus_diff::added_unrefed_variable_symbols() const
10615 {return priv_->added_unrefed_var_syms_;}
10616
10617 /// Getter for a map of deleted types that are not reachable from
10618 /// global functions/variables.
10619 ///
10620 /// @return a map that associates pretty representation of deleted
10621 /// unreachable types and said types.
10622 const string_type_base_sptr_map&
deleted_unreachable_types() const10623 corpus_diff::deleted_unreachable_types() const
10624 {return priv_->deleted_unreachable_types_;}
10625
10626 /// Getter of a sorted vector of deleted types that are not reachable
10627 /// from global functions/variables.
10628 ///
10629 /// @return a sorted vector of deleted types that are not reachable
10630 /// from global functions/variables. The types are lexicographically
10631 /// sorted by considering their pretty representation.
10632 const vector<type_base_sptr>&
deleted_unreachable_types_sorted() const10633 corpus_diff::deleted_unreachable_types_sorted() const
10634 {
10635 if (priv_->deleted_unreachable_types_sorted_.empty())
10636 if (!priv_->deleted_unreachable_types_.empty())
10637 sort_string_type_base_sptr_map(priv_->deleted_unreachable_types_,
10638 priv_->deleted_unreachable_types_sorted_);
10639
10640 return priv_->deleted_unreachable_types_sorted_;
10641 }
10642
10643 /// Getter for a map of added types that are not reachable from global
10644 /// functions/variables.
10645 ///
10646 /// @return a map that associates pretty representation of added
10647 /// unreachable types and said types.
10648 const string_type_base_sptr_map&
added_unreachable_types() const10649 corpus_diff::added_unreachable_types() const
10650 {return priv_->added_unreachable_types_;}
10651
10652 /// Getter of a sorted vector of added types that are not reachable
10653 /// from global functions/variables.
10654 ///
10655 /// @return a sorted vector of added types that are not reachable from
10656 /// global functions/variables. The types are lexicographically
10657 /// sorted by considering their pretty representation.
10658 const vector<type_base_sptr>&
added_unreachable_types_sorted() const10659 corpus_diff::added_unreachable_types_sorted() const
10660 {
10661 if (priv_->added_unreachable_types_sorted_.empty())
10662 if (!priv_->added_unreachable_types_.empty())
10663 sort_string_type_base_sptr_map(priv_->added_unreachable_types_,
10664 priv_->added_unreachable_types_sorted_);
10665
10666 return priv_->added_unreachable_types_sorted_;
10667 }
10668
10669 /// Getter for a map of changed types that are not reachable from
10670 /// global functions/variables.
10671 ///
10672 /// @return a map that associates pretty representation of changed
10673 /// unreachable types and said types.
10674 const string_diff_sptr_map&
changed_unreachable_types() const10675 corpus_diff::changed_unreachable_types() const
10676 {return priv_->changed_unreachable_types_;}
10677
10678 /// Getter of a sorted vector of changed types that are not reachable
10679 /// from global functions/variables.
10680 ///
10681 /// @return a sorted vector of changed types that are not reachable
10682 /// from global functions/variables. The diffs are lexicographically
10683 /// sorted by considering their pretty representation.
10684 const vector<diff_sptr>&
changed_unreachable_types_sorted() const10685 corpus_diff::changed_unreachable_types_sorted() const
10686 {return priv_->changed_unreachable_types_sorted();}
10687
10688 /// Getter of the diff context of this diff
10689 ///
10690 /// @return the diff context for this diff.
10691 const diff_context_sptr
context() const10692 corpus_diff::context() const
10693 {return priv_->get_context();}
10694
10695 /// @return the pretty representation for the current instance of @ref
10696 /// corpus_diff
10697 const string&
get_pretty_representation() const10698 corpus_diff::get_pretty_representation() const
10699 {
10700 if (priv_->pretty_representation_.empty())
10701 {
10702 std::ostringstream o;
10703 o << "corpus_diff["
10704 << first_corpus()->get_path()
10705 << ", "
10706 << second_corpus()->get_path()
10707 << "]";
10708 priv_->pretty_representation_ = o.str();
10709 }
10710 return priv_->pretty_representation_;
10711 }
10712 /// Return true iff the current @ref corpus_diff node carries a
10713 /// change.
10714 ///
10715 /// @return true iff the current diff node carries a change.
10716 bool
has_changes() const10717 corpus_diff::has_changes() const
10718 {
10719 return (soname_changed()
10720 || architecture_changed()
10721 || !(priv_->deleted_fns_.empty()
10722 && priv_->added_fns_.empty()
10723 && priv_->changed_fns_map_.empty()
10724 && priv_->deleted_vars_.empty()
10725 && priv_->added_vars_.empty()
10726 && priv_->changed_vars_map_.empty()
10727 && priv_->added_unrefed_fn_syms_.empty()
10728 && priv_->deleted_unrefed_fn_syms_.empty()
10729 && priv_->added_unrefed_var_syms_.empty()
10730 && priv_->deleted_unrefed_var_syms_.empty()
10731 && priv_->deleted_unreachable_types_.empty()
10732 && priv_->added_unreachable_types_.empty()
10733 && priv_->changed_unreachable_types_.empty()));
10734 }
10735
10736 /// Test if the current instance of @ref corpus_diff carries changes
10737 /// that we are sure are incompatible. By incompatible change we mean
10738 /// a change that "breaks" the ABI of the corpus we are looking at.
10739 ///
10740 /// In concrete terms, this function considers the following changes
10741 /// as being ABI incompatible for sure:
10742 ///
10743 /// - a soname change
10744 /// - if exported functions or variables got removed
10745 ///
10746 /// Note that subtype changes *can* represent changes that break ABI
10747 /// too. But they also can be changes that are OK, ABI-wise.
10748 ///
10749 /// It's up to the user to provide suppression specifications to say
10750 /// explicitely which subtype change is OK. The remaining sub-type
10751 /// changes are then considered to be ABI incompatible. But to test
10752 /// if such ABI incompatible subtype changes are present you need to
10753 /// use the function @ref corpus_diff::has_net_subtype_changes()
10754 ///
10755 /// @return true iff the current instance of @ref corpus_diff carries
10756 /// changes that we are sure are ABI incompatible.
10757 bool
has_incompatible_changes() const10758 corpus_diff::has_incompatible_changes() const
10759 {
10760 const diff_stats& stats = const_cast<corpus_diff*>(this)->
10761 apply_filters_and_suppressions_before_reporting();
10762
10763 return (soname_changed() || architecture_changed()
10764 || stats.net_num_func_removed() != 0
10765 || (stats.num_func_with_virtual_offset_changes() != 0
10766 // If all reports about functions with sub-type changes
10767 // have been suppressed, then even those about functions
10768 // that are virtual don't matter anymore because the
10769 // user willingly requested to shut them down
10770 && stats.net_num_func_changed() != 0)
10771 || stats.net_num_vars_removed() != 0
10772 || stats.net_num_removed_func_syms() != 0
10773 || stats.net_num_removed_var_syms() != 0
10774 || stats.net_num_removed_unreachable_types() != 0
10775 || stats.net_num_changed_unreachable_types() != 0);
10776 }
10777
10778 /// Test if the current instance of @ref corpus_diff carries subtype
10779 /// changes whose reports are not suppressed by any suppression
10780 /// specification. In effect, these are deemed incompatible ABI
10781 /// changes.
10782 ///
10783 /// @return true iff the the current instance of @ref corpus_diff
10784 /// carries subtype changes that are deemed incompatible ABI changes.
10785 bool
has_net_subtype_changes() const10786 corpus_diff::has_net_subtype_changes() const
10787 {
10788 const diff_stats& stats = const_cast<corpus_diff*>(this)->
10789 apply_filters_and_suppressions_before_reporting();
10790
10791 return (stats.net_num_func_changed() != 0
10792 || stats.net_num_vars_changed() != 0
10793 || stats.net_num_removed_unreachable_types() != 0
10794 || stats.net_num_changed_unreachable_types() != 0);
10795 }
10796
10797 /// Test if the current instance of @ref corpus_diff carries changes
10798 /// whose reports are not suppressed by any suppression specification.
10799 /// In effect, these are deemed incompatible ABI changes.
10800 ///
10801 /// @return true iff the the current instance of @ref corpus_diff
10802 /// carries subtype changes that are deemed incompatible ABI changes.
10803 bool
has_net_changes() const10804 corpus_diff::has_net_changes() const
10805 {return context()->get_reporter()->diff_has_net_changes(this);}
10806
10807 /// Apply the different filters that are registered to be applied to
10808 /// the diff tree; that includes the categorization filters. Also,
10809 /// apply the suppression interpretation filters.
10810 ///
10811 /// After the filters are applied, this function calculates some
10812 /// statistics about the changes carried by the current instance of
10813 /// @ref corpus_diff. These statistics are represented by an instance
10814 /// of @ref corpus_diff::diff_stats.
10815 ///
10816 /// This member function is called by the reporting function
10817 /// corpus_diff::report().
10818 ///
10819 /// Note that for a given instance of corpus_diff, this function
10820 /// applies the filters and suppressions only the first time it is
10821 /// invoked. Subsequent invocations just return the instance of
10822 /// corpus_diff::diff_stats that was cached after the first
10823 /// invocation.
10824 ///
10825 /// @return a reference to the statistics about the changes carried by
10826 /// the current instance of @ref corpus_diff.
10827 const corpus_diff::diff_stats&
apply_filters_and_suppressions_before_reporting()10828 corpus_diff::apply_filters_and_suppressions_before_reporting()
10829 {
10830 if (priv_->diff_stats_)
10831 return *priv_->diff_stats_;
10832
10833 apply_suppressions(this);
10834 priv_->diff_stats_.reset(new diff_stats(context()));
10835 mark_leaf_diff_nodes();
10836 priv_->apply_filters_and_compute_diff_stats(*priv_->diff_stats_);
10837 return *priv_->diff_stats_;
10838 }
10839
10840 /// A visitor that marks leaf diff nodes by storing them in the
10841 /// instance of @ref diff_maps returned by
10842 /// corpus_diff::get_leaf_diffs() invoked on the current instance of
10843 /// corpus_diff.
10844 struct leaf_diff_node_marker_visitor : public diff_node_visitor
10845 {
10846 /// This is called when the visitor visits a diff node.
10847 ///
10848 /// It basically tests if the diff node being visited is a leaf diff
10849 /// node - that is, it contains local changes. If it does, then the
10850 /// node is added to the set of maps that hold leaf diffs in the
10851 /// current corpus_diff.
10852 ///
10853 /// Note that only leaf nodes that are reachable from public
10854 /// interfaces (global functions or variables) are collected by this
10855 /// visitor.
10856 ///
10857 /// @param d the diff node being visited.
10858 virtual void
visit_beginabigail::comparison::leaf_diff_node_marker_visitor10859 visit_begin(diff *d)
10860 {
10861 if (d->has_local_changes()
10862 // A leaf basic (or class/union) type name change makes no
10863 // sense when showing just leaf changes. It only makes sense
10864 // when it can explain the details about a non-leaf change.
10865 // In other words, it doesn't make sense to say that an "int"
10866 // became "unsigned int". But it does make sense to say that
10867 // a typedef changed because its underlying type was 'int' and
10868 // is now an "unsigned int".
10869 && !filtering::has_basic_or_class_type_name_change(d)
10870 // Similarly, a *local* change describing a type that changed
10871 // its nature doesn't make sense.
10872 && !is_distinct_diff(d)
10873 // Similarly, a pointer (or reference or array), a typedef or
10874 // qualified type change in itself doesn't make sense. It
10875 // would rather make sense to show that pointer change as part
10876 // of the variable change whose pointer type changed, for
10877 // instance.
10878 && !is_pointer_diff(d)
10879 && !is_reference_diff(d)
10880 && !is_qualified_type_diff(d)
10881 && !is_typedef_diff(d)
10882 && !is_array_diff(d)
10883 // Similarly a parameter change in itself doesn't make sense.
10884 // It should have already been reported as part of the change
10885 // of the function it belongs to.
10886 && !is_fn_parm_diff(d)
10887 // An anonymous class or union diff doesn't make sense on its
10888 // own. It must have been described already by the diff of
10889 // the enclosing struct or union if 'd' is from an anonymous
10890 // data member, or from a typedef change if 'd' is from a
10891 // typedef change which underlying type is an anonymous
10892 // struct/union.
10893 && !is_anonymous_class_or_union_diff(d)
10894 // Don't show decl-only-ness changes either.
10895 && !filtering::has_decl_only_def_change(d)
10896 // Sometime, we can encounter artifacts of bogus DWARF that
10897 // yield a diff node for a decl-only class (and empty class
10898 // with the is_declaration flag set) that carries a non-zero
10899 // size! And of course at some point that non-zero size
10900 // changes. We need to be able to detect that.
10901 && !filtering::is_decl_only_class_with_size_change(d))
10902 {
10903 diff_context_sptr ctxt = d->context();
10904 const corpus_diff *corpus_diff_node = ctxt->get_corpus_diff().get();
10905 ABG_ASSERT(corpus_diff_node);
10906
10907 if (diff *iface_diff = get_current_topmost_iface_diff())
10908 {
10909 type_or_decl_base_sptr iface = iface_diff->first_subject();
10910 // So, this diff node that is reachable from a global
10911 // function or variable carries a leaf change. Let's add
10912 // it to the set of of leaf diffs of corpus_diff_node.
10913 const_cast<corpus_diff*>(corpus_diff_node)->
10914 get_leaf_diffs().insert_diff_node(d, iface);
10915 }
10916 }
10917 }
10918 }; // end struct leaf_diff_node_marker_visitor
10919
10920 /// Walks the diff nodes associated to the current corpus diff and
10921 /// mark those that carry local changes. They are said to be leaf
10922 /// diff nodes.
10923 ///
10924 /// The marked nodes are available from the
10925 /// corpus_diff::get_leaf_diffs() function.
10926 void
mark_leaf_diff_nodes()10927 corpus_diff::mark_leaf_diff_nodes()
10928 {
10929 if (!has_changes())
10930 return;
10931
10932 if (!context()->show_leaf_changes_only())
10933 return;
10934
10935 leaf_diff_node_marker_visitor v;
10936 context()->forget_visited_diffs();
10937 bool s = context()->visiting_a_node_twice_is_forbidden();
10938 context()->forbid_visiting_a_node_twice(true);
10939 context()->forbid_visiting_a_node_twice_per_interface(true);
10940 traverse(v);
10941 context()->forbid_visiting_a_node_twice(s);
10942 context()->forbid_visiting_a_node_twice_per_interface(false);
10943 }
10944
10945 /// Get the set of maps that contain leaf nodes. A leaf node being a
10946 /// node with a local change.
10947 ///
10948 /// @return the set of maps that contain leaf nodes. A leaf node
10949 /// being a node with a local change.
10950 diff_maps&
get_leaf_diffs()10951 corpus_diff::get_leaf_diffs()
10952 {return priv_->leaf_diffs_;}
10953
10954 /// Get the set of maps that contain leaf nodes. A leaf node being a
10955 /// node with a local change.
10956 ///
10957 /// @return the set of maps that contain leaf nodes. A leaf node
10958 /// being a node with a local change.
10959 const diff_maps&
get_leaf_diffs() const10960 corpus_diff::get_leaf_diffs() const
10961 {return priv_->leaf_diffs_;}
10962
10963 /// Report the diff in a serialized form.
10964 ///
10965 /// @param out the stream to serialize the diff to.
10966 ///
10967 /// @param indent the prefix to use for the indentation of this
10968 /// serialization.
10969 void
report(ostream & out,const string & indent) const10970 corpus_diff::report(ostream& out, const string& indent) const
10971 {
10972 context()->get_reporter()->report(*this, out, indent);
10973 }
10974
10975 /// Traverse the diff sub-tree under the current instance corpus_diff.
10976 ///
10977 /// @param v the visitor to invoke on each diff node of the sub-tree.
10978 ///
10979 /// @return true if the traversing has to keep going on, false otherwise.
10980 bool
traverse(diff_node_visitor & v)10981 corpus_diff::traverse(diff_node_visitor& v)
10982 {
10983 finish_diff_type();
10984
10985 v.visit_begin(this);
10986
10987 if (!v.visit(this, true))
10988 {
10989 v.visit_end(this);
10990 return false;
10991 }
10992
10993 for (function_decl_diff_sptrs_type::const_iterator i =
10994 changed_functions_sorted().begin();
10995 i != changed_functions_sorted().end();
10996 ++i)
10997 {
10998 if (diff_sptr d = *i)
10999 {
11000 const diff_context_sptr &ctxt = context();
11001 if (ctxt->visiting_a_node_twice_is_forbidden_per_interface())
11002 ctxt->forget_visited_diffs();
11003
11004 v.set_current_topmost_iface_diff(d.get());
11005
11006 if (!d->traverse(v))
11007 {
11008 v.visit_end(this);
11009 v.set_current_topmost_iface_diff(0);
11010 return false;
11011 }
11012 }
11013 }
11014
11015 for (var_diff_sptrs_type::const_iterator i =
11016 changed_variables_sorted().begin();
11017 i != changed_variables_sorted().end();
11018 ++i)
11019 {
11020 if (diff_sptr d = *i)
11021 {
11022 const diff_context_sptr &ctxt = context();
11023 if (ctxt->visiting_a_node_twice_is_forbidden_per_interface())
11024 ctxt->forget_visited_diffs();
11025
11026 v.set_current_topmost_iface_diff(d.get());
11027
11028 if (!d->traverse(v))
11029 {
11030 v.visit_end(this);
11031 v.set_current_topmost_iface_diff(0);
11032 return false;
11033 }
11034 }
11035 }
11036
11037 v.set_current_topmost_iface_diff(0);
11038
11039 // Traverse the changed unreachable type diffs. These diffs are on
11040 // types that are not reachable from global functions or variables.
11041 for (vector<diff_sptr>::const_iterator i =
11042 changed_unreachable_types_sorted().begin();
11043 i != changed_unreachable_types_sorted().end();
11044 ++i)
11045 {
11046 if (diff_sptr d = *i)
11047 {
11048 const diff_context_sptr &ctxt = context();
11049 if (ctxt->visiting_a_node_twice_is_forbidden_per_interface())
11050 ctxt->forget_visited_diffs();
11051
11052 if (!d->traverse(v))
11053 {
11054 v.visit_end(this);
11055 return false;
11056 }
11057 }
11058 }
11059
11060 v.visit_end(this);
11061 return true;
11062 }
11063
11064 /// Compute the diff between two instances of @ref corpus.
11065 ///
11066 /// Note that the two corpora must have been created in the same @ref
11067 /// environment, otherwise, this function aborts.
11068 ///
11069 /// @param f the first @ref corpus to consider for the diff.
11070 ///
11071 /// @param s the second @ref corpus to consider for the diff.
11072 ///
11073 /// @param ctxt the diff context to use.
11074 ///
11075 /// @return the resulting diff between the two @ref corpus.
11076 corpus_diff_sptr
compute_diff(const corpus_sptr f,const corpus_sptr s,diff_context_sptr ctxt)11077 compute_diff(const corpus_sptr f,
11078 const corpus_sptr s,
11079 diff_context_sptr ctxt)
11080 {
11081 typedef corpus::functions::const_iterator fns_it_type;
11082 typedef corpus::variables::const_iterator vars_it_type;
11083 typedef elf_symbols::const_iterator symbols_it_type;
11084 typedef diff_utils::deep_ptr_eq_functor eq_type;
11085 typedef vector<type_base_wptr>::const_iterator type_base_wptr_it_type;
11086
11087 ABG_ASSERT(f && s);
11088
11089 // We can only compare two corpora that were built out of the same
11090 // environment.
11091 ABG_ASSERT(f->get_environment() == s->get_environment());
11092
11093 if (!ctxt)
11094 ctxt.reset(new diff_context);
11095
11096 corpus_diff_sptr r(new corpus_diff(f, s, ctxt));
11097
11098 ctxt->set_corpus_diff(r);
11099
11100 r->priv_->sonames_equal_ = f->get_soname() == s->get_soname();
11101
11102 r->priv_->architectures_equal_ =
11103 f->get_architecture_name() == s->get_architecture_name();
11104
11105 // Compute the diff of publicly defined and exported functions
11106 diff_utils::compute_diff<fns_it_type, eq_type>(f->get_functions().begin(),
11107 f->get_functions().end(),
11108 s->get_functions().begin(),
11109 s->get_functions().end(),
11110 r->priv_->fns_edit_script_);
11111
11112 // Compute the diff of publicly defined and exported variables.
11113 diff_utils::compute_diff<vars_it_type, eq_type>
11114 (f->get_variables().begin(), f->get_variables().end(),
11115 s->get_variables().begin(), s->get_variables().end(),
11116 r->priv_->vars_edit_script_);
11117
11118 // Compute the diff of function elf symbols not referenced by debug
11119 // info.
11120 diff_utils::compute_diff<symbols_it_type, eq_type>
11121 (f->get_unreferenced_function_symbols().begin(),
11122 f->get_unreferenced_function_symbols().end(),
11123 s->get_unreferenced_function_symbols().begin(),
11124 s->get_unreferenced_function_symbols().end(),
11125 r->priv_->unrefed_fn_syms_edit_script_);
11126
11127 // Compute the diff of variable elf symbols not referenced by debug
11128 // info.
11129 diff_utils::compute_diff<symbols_it_type, eq_type>
11130 (f->get_unreferenced_variable_symbols().begin(),
11131 f->get_unreferenced_variable_symbols().end(),
11132 s->get_unreferenced_variable_symbols().begin(),
11133 s->get_unreferenced_variable_symbols().end(),
11134 r->priv_->unrefed_var_syms_edit_script_);
11135
11136 if (ctxt->show_unreachable_types())
11137 // Compute the diff of types not reachable from public functions
11138 // or global variables that are exported.
11139 diff_utils::compute_diff<type_base_wptr_it_type, eq_type>
11140 (f->get_types_not_reachable_from_public_interfaces().begin(),
11141 f->get_types_not_reachable_from_public_interfaces().end(),
11142 s->get_types_not_reachable_from_public_interfaces().begin(),
11143 s->get_types_not_reachable_from_public_interfaces().end(),
11144 r->priv_->unreachable_types_edit_script_);
11145
11146 r->priv_->ensure_lookup_tables_populated();
11147
11148 return r;
11149 }
11150
11151 // </corpus stuff>
11152
11153 /// Compute the diff between two instances of @ref corpus_group.
11154 ///
11155 /// Note that the two corpus_diff must have been created in the same
11156 /// @ref environment, otherwise, this function aborts.
11157 ///
11158 /// @param f the first @ref corpus_group to consider for the diff.
11159 ///
11160 /// @param s the second @ref corpus_group to consider for the diff.
11161 ///
11162 /// @param ctxt the diff context to use.
11163 ///
11164 /// @return the resulting diff between the two @ref corpus_group.
11165 corpus_diff_sptr
compute_diff(const corpus_group_sptr & f,const corpus_group_sptr & s,diff_context_sptr ctxt)11166 compute_diff(const corpus_group_sptr& f,
11167 const corpus_group_sptr& s,
11168 diff_context_sptr ctxt)
11169 {
11170
11171 corpus_sptr c1 = f;
11172 corpus_sptr c2 = s;
11173
11174 return compute_diff(c1, c2, ctxt);
11175 }
11176
11177 // <corpus_group stuff>
11178
11179 // </corpus_group stuff>
11180 // <diff_node_visitor stuff>
11181
11182 /// The private data of the @diff_node_visitor type.
11183 struct diff_node_visitor::priv
11184 {
11185 diff* topmost_interface_diff;
11186 visiting_kind kind;
11187
privabigail::comparison::diff_node_visitor::priv11188 priv()
11189 : topmost_interface_diff(),
11190 kind()
11191 {}
11192
privabigail::comparison::diff_node_visitor::priv11193 priv(visiting_kind k)
11194 : topmost_interface_diff(),
11195 kind(k)
11196 {}
11197 }; // end struct diff_node_visitor
11198
11199 /// Default constructor of the @ref diff_node_visitor type.
diff_node_visitor()11200 diff_node_visitor::diff_node_visitor()
11201 : priv_(new priv)
11202 {}
11203
11204 diff_node_visitor::~diff_node_visitor() = default;
11205
11206 /// Constructor of the @ref diff_node_visitor type.
11207 ///
11208 /// @param k how the visiting has to be performed.
diff_node_visitor(visiting_kind k)11209 diff_node_visitor::diff_node_visitor(visiting_kind k)
11210 : priv_(new priv(k))
11211 {}
11212
11213 /// Getter for the visiting policy of the traversing code while
11214 /// invoking this visitor.
11215 ///
11216 /// @return the visiting policy used by the traversing code when
11217 /// invoking this visitor.
11218 visiting_kind
get_visiting_kind() const11219 diff_node_visitor::get_visiting_kind() const
11220 {return priv_->kind;}
11221
11222 /// Setter for the visiting policy of the traversing code while
11223 /// invoking this visitor.
11224 ///
11225 /// @param v a bit map representing the new visiting policy used by
11226 /// the traversing code when invoking this visitor.
11227 void
set_visiting_kind(visiting_kind v)11228 diff_node_visitor::set_visiting_kind(visiting_kind v)
11229 {priv_->kind = v;}
11230
11231 /// Setter for the visiting policy of the traversing code while
11232 /// invoking this visitor. This one makes a logical or between the
11233 /// current policy and the bitmap given in argument and assigns the
11234 /// current policy to the result.
11235 ///
11236 /// @param v a bitmap representing the visiting policy to or with
11237 /// the current policy.
11238 void
or_visiting_kind(visiting_kind v)11239 diff_node_visitor::or_visiting_kind(visiting_kind v)
11240 {priv_->kind = priv_->kind | v;}
11241
11242 /// Setter of the diff current topmost interface which is impacted by
11243 /// the current diff node being visited.
11244 ///
11245 /// @param d the current topmost interface diff impacted.
11246 void
set_current_topmost_iface_diff(diff * d)11247 diff_node_visitor::set_current_topmost_iface_diff(diff* d)
11248 {priv_->topmost_interface_diff = d;}
11249
11250 /// Getter of the diff current topmost interface which is impacted by
11251 /// the current diff node being visited.
11252 ///
11253 /// @return the current topmost interface diff impacted.
11254 diff*
get_current_topmost_iface_diff() const11255 diff_node_visitor::get_current_topmost_iface_diff() const
11256 {return priv_->topmost_interface_diff;}
11257
11258 /// This is called by the traversing code on a @ref diff node just
11259 /// before visiting it. That is, before visiting it and its children
11260 /// node.
11261 ///
11262 /// @param d the diff node to visit.
11263 void
visit_begin(diff *)11264 diff_node_visitor::visit_begin(diff* /*p*/)
11265 {}
11266
11267 /// This is called by the traversing code on a @ref diff node just
11268 /// after visiting it. That is after visiting it and its children
11269 /// nodes.
11270 ///
11271 /// @param d the diff node that got visited.
11272 void
visit_end(diff *)11273 diff_node_visitor::visit_end(diff* /*p*/)
11274 {}
11275
11276 /// This is called by the traversing code on a @ref corpus_diff node
11277 /// just before visiting it. That is, before visiting it and its
11278 /// children node.
11279 ///
11280 /// @param p the corpus_diff node to visit.
11281 ///
11282 void
visit_begin(corpus_diff *)11283 diff_node_visitor::visit_begin(corpus_diff* /*p*/)
11284 {}
11285
11286 /// This is called by the traversing code on a @ref corpus_diff node
11287 /// just after visiting it. That is after visiting it and its children
11288 /// nodes.
11289 ///
11290 /// @param d the diff node that got visited.
11291 void
visit_end(corpus_diff *)11292 diff_node_visitor::visit_end(corpus_diff* /*d*/)
11293 {}
11294
11295 /// Default visitor implementation
11296 ///
11297 /// @return true
11298 bool
visit(diff *,bool)11299 diff_node_visitor::visit(diff*, bool)
11300 {return true;}
11301
11302 /// Default visitor implementation.
11303 ///
11304 /// @return true
11305 bool
visit(distinct_diff * dif,bool pre)11306 diff_node_visitor::visit(distinct_diff* dif, bool pre)
11307 {
11308 diff* d = dif;
11309 visit(d, pre);
11310
11311 return true;
11312 }
11313
11314 /// Default visitor implementation.
11315 ///
11316 /// @return true
11317 bool
visit(var_diff * dif,bool pre)11318 diff_node_visitor::visit(var_diff* dif, bool pre)
11319 {
11320 diff* d = dif;
11321 visit(d, pre);
11322
11323 return true;
11324 }
11325
11326 /// Default visitor implementation.
11327 ///
11328 /// @return true
11329 bool
visit(pointer_diff * dif,bool pre)11330 diff_node_visitor::visit(pointer_diff* dif, bool pre)
11331 {
11332 diff* d = dif;
11333 visit(d, pre);
11334
11335 return true;
11336 }
11337
11338 /// Default visitor implementation.
11339 ///
11340 /// @return true
11341 bool
visit(reference_diff * dif,bool pre)11342 diff_node_visitor::visit(reference_diff* dif, bool pre)
11343 {
11344 diff* d = dif;
11345 visit(d, pre);
11346
11347 return true;
11348 }
11349
11350 /// Default visitor implementation.
11351 ///
11352 /// @return true
11353 bool
visit(qualified_type_diff * dif,bool pre)11354 diff_node_visitor::visit(qualified_type_diff* dif, bool pre)
11355 {
11356 diff* d = dif;
11357 visit(d, pre);
11358
11359 return true;
11360 }
11361
11362 /// Default visitor implementation.
11363 ///
11364 /// @return true
11365 bool
visit(enum_diff * dif,bool pre)11366 diff_node_visitor::visit(enum_diff* dif, bool pre)
11367 {
11368 diff* d = dif;
11369 visit(d, pre);
11370
11371 return true;
11372 }
11373
11374 /// Default visitor implementation.
11375 ///
11376 /// @return true
11377 bool
visit(class_diff * dif,bool pre)11378 diff_node_visitor::visit(class_diff* dif, bool pre)
11379 {
11380 diff* d = dif;
11381 visit(d, pre);
11382
11383 return true;
11384 }
11385
11386 /// Default visitor implementation.
11387 ///
11388 /// @return true
11389 bool
visit(base_diff * dif,bool pre)11390 diff_node_visitor::visit(base_diff* dif, bool pre)
11391 {
11392 diff* d = dif;
11393 visit(d, pre);
11394
11395 return true;
11396 }
11397
11398 /// Default visitor implementation.
11399 ///
11400 /// @return true
11401 bool
visit(scope_diff * dif,bool pre)11402 diff_node_visitor::visit(scope_diff* dif, bool pre)
11403 {
11404 diff* d = dif;
11405 visit(d, pre);
11406
11407 return true;
11408 }
11409
11410 /// Default visitor implementation.
11411 ///
11412 /// @return true
11413 bool
visit(function_decl_diff * dif,bool pre)11414 diff_node_visitor::visit(function_decl_diff* dif, bool pre)
11415 {
11416 diff* d = dif;
11417 visit(d, pre);
11418
11419 return true;
11420 }
11421
11422 /// Default visitor implementation.
11423 ///
11424 /// @return true
11425 bool
visit(type_decl_diff * dif,bool pre)11426 diff_node_visitor::visit(type_decl_diff* dif, bool pre)
11427 {
11428 diff* d = dif;
11429 visit(d, pre);
11430
11431 return true;
11432 }
11433
11434 /// Default visitor implementation.
11435 ///
11436 /// @return true
11437 bool
visit(typedef_diff * dif,bool pre)11438 diff_node_visitor::visit(typedef_diff* dif, bool pre)
11439 {
11440 diff* d = dif;
11441 visit(d, pre);
11442
11443 return true;
11444 }
11445
11446 /// Default visitor implementation.
11447 ///
11448 /// @return true
11449 bool
visit(translation_unit_diff * dif,bool pre)11450 diff_node_visitor::visit(translation_unit_diff* dif, bool pre)
11451 {
11452 diff* d = dif;
11453 visit(d, pre);
11454
11455 return true;
11456 }
11457
11458 /// Default visitor implementation.
11459 ///
11460 /// @return true
11461 bool
visit(corpus_diff *,bool)11462 diff_node_visitor::visit(corpus_diff*, bool)
11463 {return true;}
11464
11465 // </diff_node_visitor stuff>
11466
11467 // <redundant diff node marking>
11468
11469 // </redundant diff node marking>
11470
11471 // <diff tree category propagation>
11472
11473 /// A visitor to propagate the category of a node up to its parent
11474 /// nodes. This visitor doesn't touch the REDUNDANT_CATEGORY or the
11475 /// SUPPRESSED_CATEGORY because those are propagated using other
11476 /// specific visitors.
11477 struct category_propagation_visitor : public diff_node_visitor
11478 {
11479 virtual void
visit_endabigail::comparison::category_propagation_visitor11480 visit_end(diff* d)
11481 {
11482 // Has this diff node 'd' been already visited ?
11483 bool already_visited = d->context()->diff_has_been_visited(d);
11484
11485 // The canonical diff node of the class of equivalence of the diff
11486 // node 'd'.
11487 diff* canonical = d->get_canonical_diff();
11488
11489 // If this class of equivalence of diff node is being visited for
11490 // the first time, then update its canonical node's category too.
11491 bool update_canonical = !already_visited && canonical;
11492
11493 for (vector<diff*>::const_iterator i = d->children_nodes().begin();
11494 i != d->children_nodes().end();
11495 ++i)
11496 {
11497 // If we are visiting the class of equivalence of 'd' for the
11498 // first time, then let's look at the children of 'd' and
11499 // propagate their categories to 'd'.
11500 //
11501 // If the class of equivalence of 'd' has already been
11502 // visited, then let's look at the canonical diff nodes of the
11503 // children of 'd' and propagate their categories to 'd'.
11504 diff* diff = already_visited
11505 ? (*i)->get_canonical_diff()
11506 : *i;
11507
11508 ABG_ASSERT(diff);
11509
11510 diff_category c = diff->get_category();
11511 // Do not propagate redundant and suppressed categories. Those
11512 // are propagated in a specific pass elsewhere.
11513 c &= ~(REDUNDANT_CATEGORY
11514 | SUPPRESSED_CATEGORY
11515 | PRIVATE_TYPE_CATEGORY);
11516 // Also, if a (class) type has got a harmful name change, do not
11517 // propagate harmless name changes coming from its sub-types
11518 // (i.e, data members) to the class itself.
11519 if (filtering::has_harmful_name_change(d))
11520 c &= ~HARMLESS_DECL_NAME_CHANGE_CATEGORY;
11521
11522 d->add_to_category(c);
11523 if (!already_visited && canonical)
11524 if (update_canonical)
11525 canonical->add_to_category(c);
11526 }
11527 }
11528 };// end struct category_propagation_visitor
11529
11530 /// Visit all the nodes of a given sub-tree. For each node that has a
11531 /// particular category set, propagate that category set up to its
11532 /// parent nodes.
11533 ///
11534 /// @param diff_tree the diff sub-tree to walk for categorization
11535 /// purpose;
11536 void
propagate_categories(diff * diff_tree)11537 propagate_categories(diff* diff_tree)
11538 {
11539 category_propagation_visitor v;
11540 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
11541 diff_tree->context()->forbid_visiting_a_node_twice(true);
11542 diff_tree->context()->forget_visited_diffs();
11543 diff_tree->traverse(v);
11544 diff_tree->context()->forbid_visiting_a_node_twice(s);
11545 }
11546
11547 /// Visit all the nodes of a given sub-tree. For each node that has a
11548 /// particular category set, propagate that category set up to its
11549 /// parent nodes.
11550 ///
11551 /// @param diff_tree the diff sub-tree to walk for categorization
11552 /// purpose;
11553 void
propagate_categories(diff_sptr diff_tree)11554 propagate_categories(diff_sptr diff_tree)
11555 {propagate_categories(diff_tree.get());}
11556
11557 /// Visit all the nodes of a given corpus tree. For each node that
11558 /// has a particular category set, propagate that category set up to
11559 /// its parent nodes.
11560 ///
11561 /// @param diff_tree the corpus_diff tree to walk for categorization
11562 /// purpose;
11563 void
propagate_categories(corpus_diff * diff_tree)11564 propagate_categories(corpus_diff* diff_tree)
11565 {
11566 category_propagation_visitor v;
11567 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
11568 diff_tree->context()->forbid_visiting_a_node_twice(false);
11569 diff_tree->traverse(v);
11570 diff_tree->context()->forbid_visiting_a_node_twice(s);
11571 }
11572
11573 /// Visit all the nodes of a given corpus tree. For each node that
11574 /// has a particular category set, propagate that category set up to
11575 /// its parent nodes.
11576 ///
11577 /// @param diff_tree the corpus_diff tree to walk for categorization
11578 /// purpose;
11579 void
propagate_categories(corpus_diff_sptr diff_tree)11580 propagate_categories(corpus_diff_sptr diff_tree)
11581 {propagate_categories(diff_tree.get());}
11582
11583 /// A tree node visitor that knows how to categorizes a given diff
11584 /// node in the SUPPRESSED_CATEGORY category and how to propagate that
11585 /// categorization.
11586 struct suppression_categorization_visitor : public diff_node_visitor
11587 {
11588
11589 /// Before visiting the children of the diff node, check if the node
11590 /// is suppressed by a suppression specification. If it is, mark
11591 /// the node as belonging to the SUPPRESSED_CATEGORY category.
11592 ///
11593 /// @param p the diff node to visit.
11594 virtual void
visit_beginabigail::comparison::suppression_categorization_visitor11595 visit_begin(diff* d)
11596 {
11597 bool is_private_type = false;
11598 if (d->is_suppressed(is_private_type))
11599 {
11600 diff_category c = is_private_type
11601 ? PRIVATE_TYPE_CATEGORY
11602 : SUPPRESSED_CATEGORY;
11603 d->add_to_local_and_inherited_categories(c);
11604
11605 // If a node was suppressed, all the other nodes of its class
11606 // of equivalence are suppressed too.
11607 diff *canonical_diff = d->get_canonical_diff();
11608 if (canonical_diff != d)
11609 canonical_diff->add_to_category(c);
11610 }
11611 }
11612
11613 /// After visiting the children nodes of a given diff node,
11614 /// propagate the SUPPRESSED_CATEGORY from the children nodes to the
11615 /// diff node, if need be.
11616 ///
11617 /// That is, if all children nodes carry a suppressed change the
11618 /// current node should be marked as suppressed as well.
11619 ///
11620 /// In practice, this might be too strong of a condition. If the
11621 /// current node carries a local change (i.e, a change not carried
11622 /// by any of its children node) and if that change is not
11623 /// suppressed, then the current node should *NOT* be suppressed.
11624 ///
11625 /// But right now, the IR doesn't let us know about local vs
11626 /// children-carried changes. So we cannot be that precise yet.
11627 virtual void
visit_endabigail::comparison::suppression_categorization_visitor11628 visit_end(diff* d)
11629 {
11630 bool has_non_suppressed_child = false;
11631 bool has_non_empty_child = false;
11632 bool has_suppressed_child = false;
11633 bool has_non_private_child = false;
11634 bool has_private_child = false;
11635
11636 if (// A node to which we can propagate the "SUPPRESSED_CATEGORY"
11637 // (or the PRIVATE_TYPE_CATEGORY for the same matter)
11638 // category from its children is a node which:
11639 //
11640 // 1/ hasn't been suppressed already
11641 //
11642 // 2/ and has no local change (unless it's a pointer,
11643 // reference or qualified diff node).
11644 //
11645 // Note that qualified type and typedef diff nodes are a bit
11646 // special. The local changes of the underlying type are
11647 // considered local for the qualified/typedef type, just like
11648 // for pointer/reference types. But then the qualified or
11649 // typedef type itself can have local changes of its own, and
11650 // those changes are of the kind LOCAL_NON_TYPE_CHANGE_KIND.
11651 // So a qualified type which have local changes that are
11652 // *NOT* of LOCAL_NON_TYPE_CHANGE_KIND (or that has no local
11653 // changes at all) and which is in the PRIVATE_TYPE_CATEGORY
11654 // or SUPPRESSED_CATEGORY can see these categories be
11655 // propagated.
11656 //
11657 // Note that all pointer/reference diff node changes are
11658 // potentially considered local, i.e, local changes of the
11659 // pointed-to-type are considered local to the pointer itself.
11660 //
11661 // Similarly, changes local to the type of function parameters,
11662 // variables (and data members) and classes (that are not of
11663 // LOCAL_NON_TYPE_CHANGE_KIND kind) and that have been
11664 // suppressed can propagate their SUPPRESSED_CATEGORY-ness to
11665 // those kinds of diff node.
11666 !(d->get_category() & SUPPRESSED_CATEGORY)
11667 && (!d->has_local_changes()
11668 || is_pointer_diff(d)
11669 || is_reference_diff(d)
11670 || (is_qualified_type_diff(d)
11671 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11672 || (is_typedef_diff(d)
11673 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11674 || (is_function_decl_diff(d)
11675 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11676 || (is_fn_parm_diff(d)
11677 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11678 || (is_function_type_diff(d)
11679 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11680 || (is_var_diff(d)
11681 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))
11682 || (is_class_diff(d)
11683 && (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND)))))
11684 {
11685 // Note that we handle private diff nodes differently from
11686 // generally suppressed diff nodes. E.g, it's not because a
11687 // type is private (and suppressed because of that; i.e, in
11688 // the category PRIVATE_TYPE_CATEGORY) that a typedef to that
11689 // type should also be private and so suppressed. Private
11690 // diff nodes thus have different propagation rules than
11691 // generally suppressed rules.
11692 for (vector<diff*>::const_iterator i = d->children_nodes().begin();
11693 i != d->children_nodes().end();
11694 ++i)
11695 {
11696 diff* child = *i;
11697 if (child->has_changes())
11698 {
11699 has_non_empty_child = true;
11700 if (child->get_class_of_equiv_category() & SUPPRESSED_CATEGORY)
11701 has_suppressed_child = true;
11702 else if (child->get_class_of_equiv_category()
11703 & PRIVATE_TYPE_CATEGORY)
11704 // Propagation of the PRIVATE_TYPE_CATEGORY is going
11705 // to be handled later below.
11706 ;
11707 else
11708 has_non_suppressed_child = true;
11709
11710 if (child->get_class_of_equiv_category()
11711 & PRIVATE_TYPE_CATEGORY)
11712 has_private_child = true;
11713 else if (child->get_class_of_equiv_category()
11714 & SUPPRESSED_CATEGORY)
11715 // Propagation of the SUPPRESSED_CATEGORY has been
11716 // handled above already.
11717 ;
11718 else
11719 has_non_private_child = true;
11720 }
11721 }
11722
11723 if (has_non_empty_child
11724 && has_suppressed_child
11725 && !has_non_suppressed_child)
11726 {
11727 d->add_to_category(SUPPRESSED_CATEGORY);
11728 // If a node was suppressed, all the other nodes of its class
11729 // of equivalence are suppressed too.
11730 diff *canonical_diff = d->get_canonical_diff();
11731 if (canonical_diff != d)
11732 canonical_diff->add_to_category(SUPPRESSED_CATEGORY);
11733 }
11734
11735 // Note that the private-ness of a an underlying type won't be
11736 // propagated to its parent typedef, by virtue of the big "if"
11737 // clause at the beginning of this function. So we don't have
11738 // to handle that case here. So the idiom of defining
11739 // typedefs of private (opaque) types will be respected;
11740 // meaning that changes to opaque underlying type will be
11741 // flagged as private and the typedef will be flagged private
11742 // as well, unless the typedef itself has local non-type
11743 // changes. In the later case, changes to the typedef will be
11744 // emitted because the typedef won't inherit the privateness
11745 // of its underlying type. So in practise, the typedef
11746 // remains public for the purpose of change reporting.
11747 if (has_non_empty_child
11748 && has_private_child
11749 && !has_non_private_child)
11750 {
11751 d->add_to_category(PRIVATE_TYPE_CATEGORY);
11752 // If a node was suppressed, all the other nodes of its class
11753 // of equivalence are suppressed too.
11754 diff *canonical_diff = d->get_canonical_diff();
11755 if (canonical_diff != d)
11756 canonical_diff->add_to_category(PRIVATE_TYPE_CATEGORY);
11757 }
11758
11759 // If the underlying type of a typedef is private and carries
11760 // changes (that are implicitely suppressed because it's
11761 // private) then the typedef must be suppressed too, so that
11762 // those changes to the underlying type are not seen.
11763 if (is_typedef_diff(d)
11764 && !d->has_local_changes()
11765 && has_private_child
11766 && has_non_empty_child)
11767 {
11768 d->add_to_category(SUPPRESSED_CATEGORY|PRIVATE_TYPE_CATEGORY);
11769 // If a node was suppressed, all the other nodes of its class
11770 // of equivalence are suppressed too.
11771 diff *canonical_diff = d->get_canonical_diff();
11772 if (canonical_diff != d)
11773 canonical_diff->add_to_category
11774 (SUPPRESSED_CATEGORY|PRIVATE_TYPE_CATEGORY);
11775 }
11776
11777 if (const function_decl_diff *fn_diff = is_function_decl_diff(d))
11778 if (!(d->has_local_changes() & LOCAL_NON_TYPE_CHANGE_KIND))
11779 {
11780 // d is a function diff that carries a local *type*
11781 // change (that means it's a change to the function
11782 // type). Let's see if the child function type diff
11783 // node is suppressed. That would mean that we are
11784 // instructed to show details of a diff that is deemed
11785 // suppressed; this means the suppression conflicts with
11786 // a local type change. In that case, let's follow what
11787 // the user asked and suppress the function altogether,
11788 if (function_type_diff_sptr fn_type_diff = fn_diff->type_diff())
11789 if (fn_type_diff->is_suppressed())
11790 {
11791 d->add_to_category(SUPPRESSED_CATEGORY);
11792 // If a node was suppressed, all the other nodes
11793 // of its class of equivalence are suppressed too.
11794 diff *canonical_diff = d->get_canonical_diff();
11795 if (canonical_diff != d)
11796 canonical_diff->add_to_category(SUPPRESSED_CATEGORY);
11797 }
11798 }
11799 }
11800 }
11801 }; //end struct suppression_categorization_visitor
11802
11803 /// Walk a given diff-sub tree and appply the suppressions carried by
11804 /// the context. If the suppression applies to a given node than
11805 /// categorize the node into the SUPPRESSED_CATEGORY category and
11806 /// propagate that categorization.
11807 ///
11808 /// @param diff_tree the diff-sub tree to apply the suppressions to.
11809 void
apply_suppressions(diff * diff_tree)11810 apply_suppressions(diff* diff_tree)
11811 {
11812 if (diff_tree && !diff_tree->context()->suppressions().empty())
11813 {
11814 // Apply suppressions to functions and variables that have
11815 // changed sub-types.
11816 suppression_categorization_visitor v;
11817 diff_tree->context()->forget_visited_diffs();
11818 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
11819 diff_tree->context()->forbid_visiting_a_node_twice(true);
11820 diff_tree->traverse(v);
11821 diff_tree->context()->forbid_visiting_a_node_twice(s);
11822 }
11823 }
11824
11825 /// Walk a given diff-sub tree and appply the suppressions carried by
11826 /// the context. If the suppression applies to a given node than
11827 /// categorize the node into the SUPPRESSED_CATEGORY category and
11828 /// propagate that categorization.
11829 ///
11830 /// @param diff_tree the diff-sub tree to apply the suppressions to.
11831 void
apply_suppressions(diff_sptr diff_tree)11832 apply_suppressions(diff_sptr diff_tree)
11833 {apply_suppressions(diff_tree.get());}
11834
11835 /// Walk a @ref corpus_diff tree and appply the suppressions carried
11836 /// by the context. If the suppression applies to a given node then
11837 /// categorize the node into the SUPPRESSED_CATEGORY category and
11838 /// propagate that categorization.
11839 ///
11840 /// @param diff_tree the diff tree to apply the suppressions to.
11841 void
apply_suppressions(const corpus_diff * diff_tree)11842 apply_suppressions(const corpus_diff* diff_tree)
11843 {
11844 if (diff_tree && !diff_tree->context()->suppressions().empty())
11845 {
11846 // First, visit the children trees of changed constructs:
11847 // changed functions, variables, as well as sub-types of these,
11848 // and apply suppression specifications to these ...
11849 suppression_categorization_visitor v;
11850 diff_tree->context()->forget_visited_diffs();
11851 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
11852 diff_tree->context()->forbid_visiting_a_node_twice(true);
11853 const_cast<corpus_diff*>(diff_tree)->traverse(v);
11854 diff_tree->context()->forbid_visiting_a_node_twice(s);
11855
11856 // ... then also visit the set of added and removed functions,
11857 // variables, symbols, and types not reachable from global
11858 // functions and variables.
11859 diff_tree->priv_->
11860 apply_supprs_to_added_removed_fns_vars_unreachable_types();
11861 }
11862 }
11863
11864 /// Walk a diff tree and appply the suppressions carried by the
11865 /// context. If the suppression applies to a given node than
11866 /// categorize the node into the SUPPRESSED_CATEGORY category and
11867 /// propagate that categorization.
11868 ///
11869 /// @param diff_tree the diff tree to apply the suppressions to.
11870 void
apply_suppressions(corpus_diff_sptr diff_tree)11871 apply_suppressions(corpus_diff_sptr diff_tree)
11872 {apply_suppressions(diff_tree.get());}
11873
11874 // </diff tree category propagation>
11875
11876 // <diff tree printing stuff>
11877
11878 /// A visitor to print (to an output stream) a pretty representation
11879 /// of a @ref diff sub-tree or of a complete @ref corpus_diff tree.
11880 struct diff_node_printer : public diff_node_visitor
11881 {
11882 ostream& out_;
11883 unsigned level_;
11884
11885 /// Emit a certain number of spaces to the output stream associated
11886 /// to this diff_node_printer.
11887 ///
11888 /// @param level half of the numver of spaces to emit.
11889 void
do_indentabigail::comparison::diff_node_printer11890 do_indent(unsigned level)
11891 {
11892 for (unsigned i = 0; i < level; ++i)
11893 out_ << " ";
11894 }
11895
diff_node_printerabigail::comparison::diff_node_printer11896 diff_node_printer(ostream& out)
11897 : diff_node_visitor(DO_NOT_MARK_VISITED_NODES_AS_VISITED),
11898 out_(out),
11899 level_(0)
11900 {}
11901
11902 virtual void
visit_beginabigail::comparison::diff_node_printer11903 visit_begin(diff*)
11904 {
11905 ++level_;
11906 }
11907
11908 virtual void
visit_endabigail::comparison::diff_node_printer11909 visit_end(diff*)
11910 {
11911 --level_;
11912 }
11913
11914 virtual void
visit_beginabigail::comparison::diff_node_printer11915 visit_begin(corpus_diff*)
11916 {
11917 ++level_;
11918 }
11919
11920 virtual void
visit_endabigail::comparison::diff_node_printer11921 visit_end(corpus_diff*)
11922 {
11923 --level_;
11924 }
11925
11926 virtual bool
visitabigail::comparison::diff_node_printer11927 visit(diff* d, bool pre)
11928 {
11929 if (!pre)
11930 // We are post-visiting the diff node D. Which means, we have
11931 // printed a pretty representation for it already. So do
11932 // nothing now.
11933 return true;
11934
11935 do_indent(level_);
11936 out_ << d->get_pretty_representation();
11937 out_ << "\n";
11938 do_indent(level_);
11939 out_ << "{\n";
11940 do_indent(level_ + 1);
11941 out_ << "category: "<< d->get_category() << "\n";
11942 do_indent(level_ + 1);
11943 out_ << "@: " << std::hex << d << std::dec << "\n";
11944 do_indent(level_ + 1);
11945 out_ << "@-canonical: " << std::hex
11946 << d->get_canonical_diff()
11947 << std::dec << "\n";
11948 do_indent(level_);
11949 out_ << "}\n";
11950
11951 return true;
11952 }
11953
11954 virtual bool
visitabigail::comparison::diff_node_printer11955 visit(corpus_diff* d, bool pre)
11956 {
11957 if (!pre)
11958 // We are post-visiting the diff node D. Which means, we have
11959 // printed a pretty representation for it already. So do
11960 // nothing now.
11961 return true;
11962
11963 // indent
11964 for (unsigned i = 0; i < level_; ++i)
11965 out_ << ' ';
11966 out_ << d->get_pretty_representation();
11967 out_ << '\n';
11968 return true;
11969 }
11970 }; // end struct diff_printer_visitor
11971
11972 // </ diff tree printing stuff>
11973
11974 /// Emit a textual representation of a @ref diff sub-tree to an
11975 /// output stream.
11976 ///
11977 /// @param diff_tree the sub-tree to emit the textual representation
11978 /// for.
11979 ///
11980 /// @param out the output stream to emit the textual representation
11981 /// for @p diff_tree to.
11982 void
print_diff_tree(diff * diff_tree,ostream & out)11983 print_diff_tree(diff* diff_tree, ostream& out)
11984 {
11985 diff_node_printer p(out);
11986 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
11987 diff_tree->context()->forbid_visiting_a_node_twice(false);
11988 diff_tree->traverse(p);
11989 diff_tree->context()->forbid_visiting_a_node_twice(s);
11990 }
11991
11992 /// Emit a textual representation of a @ref corpus_diff tree to an
11993 /// output stream.
11994 ///
11995 /// @param diff_tree the @ref corpus_diff tree to emit the textual
11996 /// representation for.
11997 ///
11998 /// @param out the output stream to emit the textual representation
11999 /// for @p diff_tree to.
12000 void
print_diff_tree(corpus_diff * diff_tree,std::ostream & out)12001 print_diff_tree(corpus_diff* diff_tree, std::ostream& out)
12002 {
12003 diff_node_printer p(out);
12004 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
12005 diff_tree->context()->forbid_visiting_a_node_twice(false);
12006 diff_tree->traverse(p);
12007 diff_tree->context()->forbid_visiting_a_node_twice(s);
12008 }
12009
12010 /// Emit a textual representation of a @ref diff sub-tree to an
12011 /// output stream.
12012 ///
12013 /// @param diff_tree the sub-tree to emit the textual representation
12014 /// for.
12015 ///
12016 /// @param out the output stream to emit the textual representation
12017 /// for @p diff_tree to.
12018 void
print_diff_tree(diff_sptr diff_tree,std::ostream & o)12019 print_diff_tree(diff_sptr diff_tree,
12020 std::ostream& o)
12021 {print_diff_tree(diff_tree.get(), o);}
12022
12023 /// Emit a textual representation of a @ref corpus_diff tree to an
12024 /// output stream.
12025 ///
12026 /// @param diff_tree the @ref corpus_diff tree to emit the textual
12027 /// representation for.
12028 ///
12029 /// @param out the output stream to emit the textual representation
12030 /// for @p diff_tree to.
12031 void
print_diff_tree(corpus_diff_sptr diff_tree,std::ostream & o)12032 print_diff_tree(corpus_diff_sptr diff_tree,
12033 std::ostream& o)
12034 {print_diff_tree(diff_tree.get(), o);}
12035
12036 // <redundancy_marking_visitor>
12037
12038 /// A tree visitor to categorize nodes with respect to the
12039 /// REDUNDANT_CATEGORY. That is, detect if a node is redundant (is
12040 /// present on several spots of the tree) and mark such nodes
12041 /// appropriatly. This visitor also takes care of propagating the
12042 /// REDUNDANT_CATEGORY of a given node to its parent nodes as
12043 /// appropriate.
12044 struct redundancy_marking_visitor : public diff_node_visitor
12045 {
12046 bool skip_children_nodes_;
12047
redundancy_marking_visitorabigail::comparison::redundancy_marking_visitor12048 redundancy_marking_visitor()
12049 : skip_children_nodes_()
12050 {}
12051
12052 virtual void
visit_beginabigail::comparison::redundancy_marking_visitor12053 visit_begin(diff* d)
12054 {
12055 if (d->to_be_reported())
12056 {
12057 // A diff node that carries a change and that has been already
12058 // traversed elsewhere is considered redundant. So let's mark
12059 // it as such and let's not traverse it; that is, let's not
12060 // visit its children.
12061 if ((d->context()->diff_has_been_visited(d)
12062 || d->get_canonical_diff()->is_traversing())
12063 && d->has_changes())
12064 {
12065 // But if two diff nodes are redundant sibbling that carry
12066 // changes of base types, do not mark them as being
12067 // redundant. This is to avoid marking nodes as redundant
12068 // in this case:
12069 //
12070 // int foo(int a, int b);
12071 // compared with:
12072 // float foo(float a, float b); (in C).
12073 //
12074 // In this case, we want to report all the occurences of
12075 // the int->float change because logically, they are at
12076 // the same level in the diff tree.
12077
12078 bool redundant_with_sibling_node = false;
12079 const diff* p = d->parent_node();
12080
12081 // If this is a child node of a fn_parm_diff, look through
12082 // the fn_parm_diff node to get the function diff node.
12083 if (p && dynamic_cast<const fn_parm_diff*>(p))
12084 p = p->parent_node();
12085
12086 if (p)
12087 for (vector<diff*>::const_iterator s =
12088 p->children_nodes().begin();
12089 s != p->children_nodes().end();
12090 ++s)
12091 {
12092 if (*s == d)
12093 continue;
12094 diff* sib = *s;
12095 // If this is a fn_parm_diff, look through the
12096 // fn_parm_diff node to get at the real type node.
12097 if (fn_parm_diff* f = dynamic_cast<fn_parm_diff*>(*s))
12098 sib = f->type_diff().get();
12099 if (sib == d)
12100 continue;
12101 if (sib->get_canonical_diff() == d->get_canonical_diff()
12102 // Sibbling diff nodes that carry base type
12103 // changes ar to be marked as redundant.
12104 && (is_base_diff(sib) || is_distinct_diff(sib)))
12105 {
12106 redundant_with_sibling_node = true;
12107 break;
12108 }
12109 }
12110 if (!redundant_with_sibling_node
12111 // Changes to basic types should never be considered
12112 // redundant. For instance, if a member of integer
12113 // type is changed into a char type in both a struct A
12114 // and a struct B, we want to see both changes.
12115 && !has_basic_type_change_only(d)
12116 // The same goes for distinct type changes
12117 && !filtering::is_mostly_distinct_diff(d)
12118 // Functions with similar *local* changes are never marked
12119 // redundant because otherwise one could miss important
12120 // similar local changes that are applied to different
12121 // functions.
12122 && !is_function_type_diff_with_local_changes(d)
12123 // Changes involving variadic parameters of functions
12124 // should never be marked redundant because we want to see
12125 // them all.
12126 && !is_diff_of_variadic_parameter(d)
12127 && !is_diff_of_variadic_parameter_type(d)
12128 // If the canonical diff itself has been filtered out,
12129 // then this one is not marked redundant, unless the
12130 // canonical diff was already redundant.
12131 && (!d->get_canonical_diff()->is_filtered_out()
12132 || (d->get_canonical_diff()->get_category()
12133 & REDUNDANT_CATEGORY))
12134 // If the *same* diff node (not one that is merely
12135 // equivalent to this one) has already been visited
12136 // the do not mark it as beind redundant. It's only
12137 // the other nodes that are equivalent to this one
12138 // that must be marked redundant.
12139 && d->context()->diff_has_been_visited(d) != d
12140 // If the diff node is a function parameter and is not
12141 // a reference/pointer (to a non basic or a non
12142 // distinct type diff) then do not mark it as
12143 // redundant.
12144 //
12145 // Children nodes of base class diff nodes are never
12146 // redundant either, we want to see them all.
12147 && (is_reference_or_ptr_diff_to_non_basic_nor_distinct_types(d)
12148 || (!is_child_node_of_function_parm_diff(d)
12149 && !is_child_node_of_base_diff(d))))
12150 {
12151 d->add_to_category(REDUNDANT_CATEGORY);
12152 // As we said in preamble, as this node is marked as
12153 // being redundant, let's not visit its children.
12154 // This is not an optimization; it's needed for
12155 // correctness. In the case of a diff node involving
12156 // a class type that refers to himself, visiting the
12157 // children nodes might cause them to be wrongly
12158 // marked as redundant.
12159 set_visiting_kind(get_visiting_kind()
12160 | SKIP_CHILDREN_VISITING_KIND);
12161 skip_children_nodes_ = true;
12162 }
12163 }
12164 }
12165 else
12166 {
12167 // If the node is not to be reported, do not look at it children.
12168 set_visiting_kind(get_visiting_kind() | SKIP_CHILDREN_VISITING_KIND);
12169 skip_children_nodes_ = true;
12170 }
12171 }
12172
12173 virtual void
visit_beginabigail::comparison::redundancy_marking_visitor12174 visit_begin(corpus_diff*)
12175 {
12176 }
12177
12178 virtual void
visit_endabigail::comparison::redundancy_marking_visitor12179 visit_end(diff* d)
12180 {
12181 if (skip_children_nodes_)
12182 // When visiting this node, we decided to skip its children
12183 // node. Now that we are done visiting the node, lets stop
12184 // avoiding the children nodes visiting for the other tree
12185 // nodes.
12186 {
12187 set_visiting_kind(get_visiting_kind() & (~SKIP_CHILDREN_VISITING_KIND));
12188 skip_children_nodes_ = false;
12189 }
12190 else
12191 {
12192 // Propagate the redundancy categorization of the children nodes
12193 // to this node. But if this node has local changes, then it
12194 // doesn't inherit redundancy from its children nodes.
12195 if (!(d->get_category() & REDUNDANT_CATEGORY)
12196 && (!d->has_local_changes_to_be_reported()
12197 // By default, pointer, reference and qualified types
12198 // consider that a local changes to their underlying
12199 // type is always a local change for themselves.
12200 //
12201 // This is as if those types don't have local changes
12202 // in the same sense as other types. So we always
12203 // propagate redundancy to them, regardless of if they
12204 // have local changes or not.
12205 //
12206 // We also propagate redundancy to typedef types if
12207 // these /only/ carry changes to their underlying
12208 // type.
12209 //
12210 // Note that changes to the underlying type of a
12211 // typedef is considered local of
12212 // LOCAL_TYPE_CHANGE_KIND kind. The other changes to the
12213 // typedef itself are considered local of
12214 // LOCAL_NON_TYPE_CHANGE_KIND kind.
12215 || is_pointer_diff(d)
12216 || is_qualified_type_diff(d)
12217 // A typedef with local non-type changes should not
12218 // see redundancy propagation from its underlying
12219 // type, otherwise, the non-type change might be
12220 // "suppressed" away.
12221 || (is_typedef_diff(d)
12222 && (!(d->has_local_changes()
12223 & LOCAL_NON_TYPE_CHANGE_KIND)))
12224 // A (member) variable with non-type local changes
12225 // should not see redundacy propagation from its type.
12226 // If redundant local-type changes are carried by its
12227 // type however, then that redundancy is propagated to
12228 // the variable. This is key to keep the redundancy
12229 // consistency in the system; otherwise, a type change
12230 // would be rightfully considered redundant at some
12231 // places but not at others.
12232 || (is_var_diff(d)
12233 && (!(d->has_local_changes()
12234 & LOCAL_NON_TYPE_CHANGE_KIND)))
12235 ))
12236 {
12237 bool has_non_redundant_child = false;
12238 bool has_non_empty_child = false;
12239 for (vector<diff*>::const_iterator i =
12240 d->children_nodes().begin();
12241 i != d->children_nodes().end();
12242 ++i)
12243 {
12244 if ((*i)->has_changes())
12245 {
12246 has_non_empty_child = true;
12247 // Let's see if the current child node '*i' is
12248 // "non-redundant".
12249 //
12250 // A non-redundant node would be a node that
12251 // carries a change to be reported and has not
12252 // been marked as being redundant.
12253 if ((*i)->to_be_reported()
12254 && ((*i)->get_category() & REDUNDANT_CATEGORY) == 0)
12255 has_non_redundant_child = true;
12256 }
12257 if (has_non_redundant_child)
12258 break;
12259 }
12260
12261 // A diff node for which at least a child node carries a
12262 // change, and for which all the children are redundant is
12263 // deemed redundant too, unless it has local changes.
12264 if (has_non_empty_child
12265 && !has_non_redundant_child)
12266 d->add_to_category(REDUNDANT_CATEGORY);
12267 }
12268 }
12269 }
12270
12271 virtual void
visit_endabigail::comparison::redundancy_marking_visitor12272 visit_end(corpus_diff*)
12273 {
12274 }
12275
12276 virtual bool
visitabigail::comparison::redundancy_marking_visitor12277 visit(diff*, bool)
12278 {return true;}
12279
12280 virtual bool
visitabigail::comparison::redundancy_marking_visitor12281 visit(corpus_diff*, bool)
12282 {
12283 return true;
12284 }
12285 };// end struct redundancy_marking_visitor
12286
12287 /// A visitor of @ref diff nodes that clears the REDUNDANT_CATEGORY
12288 /// category out of the nodes.
12289 struct redundancy_clearing_visitor : public diff_node_visitor
12290 {
12291 bool
visitabigail::comparison::redundancy_clearing_visitor12292 visit(corpus_diff*, bool)
12293 {return true;}
12294
12295 bool
visitabigail::comparison::redundancy_clearing_visitor12296 visit(diff* d, bool)
12297 {
12298 // clear the REDUNDANT_CATEGORY out of the current node.
12299 diff_category c = d->get_category();
12300 c &= ~REDUNDANT_CATEGORY;
12301 d->set_category(c);
12302 return true;
12303 }
12304 }; // end struct redundancy_clearing_visitor
12305
12306 /// Walk a given @ref diff sub-tree to categorize each of the nodes
12307 /// with respect to the REDUNDANT_CATEGORY.
12308 ///
12309 /// @param diff_tree the @ref diff sub-tree to walk.
12310 void
categorize_redundancy(diff * diff_tree)12311 categorize_redundancy(diff* diff_tree)
12312 {
12313 if (diff_tree->context()->show_redundant_changes())
12314 return;
12315 redundancy_marking_visitor v;
12316 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
12317 diff_tree->context()->forbid_visiting_a_node_twice(false);
12318 diff_tree->traverse(v);
12319 diff_tree->context()->forbid_visiting_a_node_twice(s);
12320 }
12321
12322 /// Walk a given @ref diff sub-tree to categorize each of the nodes
12323 /// with respect to the REDUNDANT_CATEGORY.
12324 ///
12325 /// @param diff_tree the @ref diff sub-tree to walk.
12326 void
categorize_redundancy(diff_sptr diff_tree)12327 categorize_redundancy(diff_sptr diff_tree)
12328 {categorize_redundancy(diff_tree.get());}
12329
12330 /// Walk a given @ref corpus_diff tree to categorize each of the nodes
12331 /// with respect to the REDUNDANT_CATEGORY.
12332 ///
12333 /// @param diff_tree the @ref corpus_diff tree to walk.
12334 void
categorize_redundancy(corpus_diff * diff_tree)12335 categorize_redundancy(corpus_diff* diff_tree)
12336 {
12337 redundancy_marking_visitor v;
12338 diff_tree->context()->forget_visited_diffs();
12339 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
12340 diff_tree->context()->forbid_visiting_a_node_twice(false);
12341 diff_tree->traverse(v);
12342 diff_tree->context()->forbid_visiting_a_node_twice(s);
12343 }
12344
12345 /// Walk a given @ref corpus_diff tree to categorize each of the nodes
12346 /// with respect to the REDUNDANT_CATEGORY.
12347 ///
12348 /// @param diff_tree the @ref corpus_diff tree to walk.
12349 void
categorize_redundancy(corpus_diff_sptr diff_tree)12350 categorize_redundancy(corpus_diff_sptr diff_tree)
12351 {categorize_redundancy(diff_tree.get());}
12352
12353 // </redundancy_marking_visitor>
12354
12355 /// Walk a given @ref diff sub-tree to clear the REDUNDANT_CATEGORY
12356 /// out of the category of the nodes.
12357 ///
12358 /// @param diff_tree the @ref diff sub-tree to walk.
12359 void
clear_redundancy_categorization(diff * diff_tree)12360 clear_redundancy_categorization(diff* diff_tree)
12361 {
12362 redundancy_clearing_visitor v;
12363 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
12364 diff_tree->context()->forbid_visiting_a_node_twice(false);
12365 diff_tree->traverse(v);
12366 diff_tree->context()->forbid_visiting_a_node_twice(s);
12367 diff_tree->context()->forget_visited_diffs();
12368 }
12369
12370 /// Walk a given @ref diff sub-tree to clear the REDUNDANT_CATEGORY
12371 /// out of the category of the nodes.
12372 ///
12373 /// @param diff_tree the @ref diff sub-tree to walk.
12374 void
clear_redundancy_categorization(diff_sptr diff_tree)12375 clear_redundancy_categorization(diff_sptr diff_tree)
12376 {clear_redundancy_categorization(diff_tree.get());}
12377
12378 /// Walk a given @ref corpus_diff tree to clear the REDUNDANT_CATEGORY
12379 /// out of the category of the nodes.
12380 ///
12381 /// @param diff_tree the @ref corpus_diff tree to walk.
12382 void
clear_redundancy_categorization(corpus_diff * diff_tree)12383 clear_redundancy_categorization(corpus_diff* diff_tree)
12384 {
12385 redundancy_clearing_visitor v;
12386 bool s = diff_tree->context()->visiting_a_node_twice_is_forbidden();
12387 diff_tree->context()->forbid_visiting_a_node_twice(false);
12388 diff_tree->traverse(v);
12389 diff_tree->context()->forbid_visiting_a_node_twice(s);
12390 diff_tree->context()->forget_visited_diffs();
12391 }
12392
12393 /// Walk a given @ref corpus_diff tree to clear the REDUNDANT_CATEGORY
12394 /// out of the category of the nodes.
12395 ///
12396 /// @param diff_tree the @ref corpus_diff tree to walk.
12397 void
clear_redundancy_categorization(corpus_diff_sptr diff_tree)12398 clear_redundancy_categorization(corpus_diff_sptr diff_tree)
12399 {clear_redundancy_categorization(diff_tree.get());}
12400
12401 /// Apply the @ref diff tree filters that have been associated to the
12402 /// context of the a given @ref corpus_diff tree. As a result, the
12403 /// nodes of the @diff tree are going to be categorized into one of
12404 /// several of the categories of @ref diff_category.
12405 ///
12406 /// @param diff_tree the @ref corpus_diff instance which @ref diff are
12407 /// to be categorized.
12408 void
apply_filters(corpus_diff_sptr diff_tree)12409 apply_filters(corpus_diff_sptr diff_tree)
12410 {
12411 diff_tree->context()->maybe_apply_filters(diff_tree);
12412 propagate_categories(diff_tree);
12413 }
12414
12415 /// Test if a diff node represents the difference between a variadic
12416 /// parameter type and something else.
12417 ///
12418 /// @param d the diff node to consider.
12419 ///
12420 /// @return true iff @p d is a diff node that represents the
12421 /// difference between a variadic parameter type and something else.
12422 bool
is_diff_of_variadic_parameter_type(const diff * d)12423 is_diff_of_variadic_parameter_type(const diff* d)
12424 {
12425 if (!d)
12426 return false;
12427
12428 type_base_sptr t = is_type(d->first_subject());
12429 if (t && t->get_environment()->is_variadic_parameter_type(t))
12430 return true;
12431
12432 t = is_type(d->second_subject());
12433 if (t && t->get_environment()->is_variadic_parameter_type(t))
12434 return true;
12435
12436 return false;
12437 }
12438
12439 /// Test if a diff node represents the difference between a variadic
12440 /// parameter type and something else.
12441 ///
12442 /// @param d the diff node to consider.
12443 ///
12444 /// @return true iff @p d is a diff node that represents the
12445 /// difference between a variadic parameter type and something else.
12446 bool
is_diff_of_variadic_parameter_type(const diff_sptr & d)12447 is_diff_of_variadic_parameter_type(const diff_sptr& d)
12448 {return is_diff_of_variadic_parameter_type(d.get());}
12449
12450 /// Test if a diff node represents the difference between a variadic
12451 /// parameter and something else.
12452 ///
12453 /// @param d the diff node to consider.
12454 ///
12455 /// @return true iff @p d is a diff node that represents the
12456 /// difference between a variadic parameter and something else.
12457 bool
is_diff_of_variadic_parameter(const diff * d)12458 is_diff_of_variadic_parameter(const diff* d)
12459 {
12460 fn_parm_diff* diff =
12461 dynamic_cast<fn_parm_diff*>(const_cast<abigail::comparison::diff*>(d));
12462 return (diff && is_diff_of_variadic_parameter_type(diff->type_diff()));
12463 }
12464
12465 /// Test if a diff node represents the difference between a variadic
12466 /// parameter and something else.
12467 ///
12468 /// @param d the diff node to consider.
12469 ///
12470 /// @return true iff @p d is a diff node that represents the
12471 /// difference between a variadic parameter and something else.
12472 bool
is_diff_of_variadic_parameter(const diff_sptr & d)12473 is_diff_of_variadic_parameter(const diff_sptr& d)
12474 {return is_diff_of_variadic_parameter(d.get());}
12475
12476 /// Test if a diff node represents a diff between two basic types.
12477 ///
12478 /// @param d the diff node to consider.
12479 ///
12480 /// @return true iff @p d is a diff between two basic types.
12481 const type_decl_diff*
is_diff_of_basic_type(const diff * d)12482 is_diff_of_basic_type(const diff *d)
12483 {return dynamic_cast<const type_decl_diff*>(d);}
12484
12485 /// Test if a diff node represents a diff between two basic types, or
12486 /// between pointers, references or qualified type to basic types.
12487 ///
12488 /// @param diff the diff node to consider.
12489 ///
12490 /// @param allow_indirect_type if true, then this function looks into
12491 /// pointer, reference or qualified diff types to see if they "point
12492 /// to" basic types.
12493 ///
12494 /// @return true iff @p d is a diff between two basic types.
12495 const type_decl_diff*
is_diff_of_basic_type(const diff * diff,bool allow_indirect_type)12496 is_diff_of_basic_type(const diff* diff, bool allow_indirect_type)
12497 {
12498 if (allow_indirect_type)
12499 diff = peel_pointer_or_qualified_type_diff(diff);
12500 return is_diff_of_basic_type(diff);
12501 }
12502
12503 /// If a diff node is about changes between two typedef types, get the
12504 /// diff node about changes between the underlying types.
12505 ///
12506 /// Note that this function walks the tree of underlying diff nodes
12507 /// returns the first diff node about types that are not typedefs.
12508 ///
12509 /// @param dif the dif node to consider.
12510 ///
12511 /// @return the underlying diff node of @p dif, or just return @p dif
12512 /// if it's not a typedef diff node.
12513 const diff*
peel_typedef_diff(const diff * dif)12514 peel_typedef_diff(const diff* dif)
12515 {
12516 const typedef_diff *d = 0;
12517 while ((d = is_typedef_diff(dif)))
12518 dif = d->underlying_type_diff().get();
12519 return dif;
12520 }
12521
12522 /// If a diff node is about changes between two pointer types, get the
12523 /// diff node about changes between the underlying (pointed-to) types.
12524 ///
12525 /// Note that this function walks the tree of underlying diff nodes
12526 /// returns the first diff node about types that are not pointers.
12527 ///
12528 /// @param dif the dif node to consider.
12529 ///
12530 /// @return the underlying diff node of @p dif, or just return @p dif
12531 /// if it's not a pointer diff node.
12532 const diff*
peel_pointer_diff(const diff * dif)12533 peel_pointer_diff(const diff* dif)
12534 {
12535 const pointer_diff *d = 0;
12536 while ((d = is_pointer_diff(dif)))
12537 dif = d->underlying_type_diff().get();
12538 return dif;
12539 }
12540
12541 /// If a diff node is about changes between two reference types, get
12542 /// the diff node about changes between the underlying (pointed-to)
12543 /// types.
12544 ///
12545 /// Note that this function walks the tree of underlying diff nodes
12546 /// returns the first diff node about types that are not references.
12547 ///
12548 /// @param dif the dif node to consider.
12549 ///
12550 /// @return the underlying diff node of @p dif, or just return @p dif
12551 /// if it's not a reference diff node.
12552 const diff*
peel_reference_diff(const diff * dif)12553 peel_reference_diff(const diff* dif)
12554 {
12555 const reference_diff *d = 0;
12556 while ((d = is_reference_diff(dif)))
12557 dif = d->underlying_type_diff().get();
12558 return dif;
12559 }
12560
12561 /// If a diff node is about changes between two qualified types, get
12562 /// the diff node about changes between the underlying (non-qualified)
12563 /// types.
12564 ///
12565 /// Note that this function walks the tree of underlying diff nodes
12566 /// returns the first diff node about types that are not qualified.
12567 ///
12568 /// @param dif the dif node to consider.
12569 ///
12570 /// @return the underlying diff node of @p dif, or just return @p dif
12571 /// if it's not a qualified diff node.
12572 const diff*
peel_qualified_diff(const diff * dif)12573 peel_qualified_diff(const diff* dif)
12574 {
12575 const qualified_type_diff *d = 0;
12576 while ((d = is_qualified_type_diff(dif)))
12577 dif = d->underlying_type_diff().get();
12578 return dif;
12579 }
12580
12581 /// If a diff node is about changes between two pointer, reference or
12582 /// qualified types, get the diff node about changes between the
12583 /// underlying types.
12584 ///
12585 /// Note that this function walks the tree of underlying diff nodes
12586 /// returns the first diff node about types that are not pointer,
12587 /// reference or qualified.
12588 ///
12589 /// @param dif the dif node to consider.
12590 ///
12591 /// @return the underlying diff node of @p dif, or just return @p dif
12592 /// if it's not a pointer, reference or qualified diff node.
12593 const diff*
peel_pointer_or_qualified_type_diff(const diff * dif)12594 peel_pointer_or_qualified_type_diff(const diff*dif)
12595 {
12596 while (true)
12597 {
12598 if (const pointer_diff *d = is_pointer_diff(dif))
12599 dif = peel_pointer_diff(d);
12600 else if (const reference_diff *d = is_reference_diff(dif))
12601 dif = peel_reference_diff(d);
12602 else if (const qualified_type_diff *d = is_qualified_type_diff(dif))
12603 dif = peel_qualified_diff(d);
12604 else
12605 break;
12606 }
12607 return dif;
12608 }
12609
12610 /// If a diff node is about changes between two typedefs or qualified
12611 /// types, get the diff node about changes between the underlying
12612 /// types.
12613 ///
12614 /// Note that this function walks the tree of underlying diff nodes
12615 /// returns the first diff node about types that are not typedef or
12616 /// qualified types.
12617 ///
12618 /// @param dif the dif node to consider.
12619 ///
12620 /// @return the underlying diff node of @p dif, or just return @p dif
12621 /// if it's not typedef or qualified diff node.
12622 const diff*
peel_typedef_or_qualified_type_diff(const diff * dif)12623 peel_typedef_or_qualified_type_diff(const diff *dif)
12624 {
12625 while (true)
12626 {
12627 if (const typedef_diff *d = is_typedef_diff(dif))
12628 dif = peel_typedef_diff(d);
12629 else if (const qualified_type_diff *d = is_qualified_type_diff(dif))
12630 dif = peel_qualified_diff(d);
12631 else
12632 break;
12633 }
12634 return dif;
12635 }
12636
12637 /// Test if a diff node represents a diff between two class or union
12638 /// types.
12639 ///
12640 /// @param d the diff node to consider.
12641 ///
12642 /// @return iff @p is a diff between two class or union types then
12643 /// return the instance of @ref class_or_union_diff that @p derives
12644 /// from. Otherwise, return nil.
12645 const class_or_union_diff*
is_diff_of_class_or_union_type(const diff * d)12646 is_diff_of_class_or_union_type(const diff *d)
12647 {return dynamic_cast<const class_or_union_diff*>(d);}
12648
12649 /// Test if a given diff node carries *only* a local type change.
12650 ///
12651 /// @param d the diff node to consider.
12652 ///
12653 /// @return true iff @p has a change and that change is a local type
12654 /// change.
12655 static bool
has_local_type_change_only(const diff * d)12656 has_local_type_change_only(const diff *d)
12657 {
12658 if (enum change_kind k = d->has_local_changes())
12659 if ((k & LOCAL_NON_TYPE_CHANGE_KIND) == 0
12660 && (k & LOCAL_TYPE_CHANGE_KIND) != 0)
12661 return true;
12662
12663 return false;
12664 }
12665
12666 /// Test if a diff node is a decl diff that only carries a basic type
12667 /// change on its type diff sub-node.
12668 ///
12669 ///Note that that pointers/references/qualified types diffs to basic
12670 /// type diffs are considered as having basic type change only.
12671 ///
12672 /// @param d the diff node to consider.
12673 ///
12674 /// @return true iff @p d is a decl diff that only carries a basic
12675 /// type change on its type diff sub-node.
12676 bool
has_basic_type_change_only(const diff * d)12677 has_basic_type_change_only(const diff *d)
12678 {
12679 if (is_diff_of_basic_type(d, true) && d->has_changes())
12680 return true;
12681 else if (const var_diff * v = dynamic_cast<const var_diff*>(d))
12682 return (has_local_type_change_only(v)
12683 && is_diff_of_basic_type(v->type_diff().get(), true));
12684 else if (const fn_parm_diff * p = dynamic_cast<const fn_parm_diff*>(d))
12685 return (has_local_type_change_only(p)
12686 && is_diff_of_basic_type(p->type_diff().get(), true));
12687 else if (const function_decl_diff* f =
12688 dynamic_cast<const function_decl_diff*>(d))
12689 return (has_local_type_change_only(f)
12690 && f->type_diff()
12691 && is_diff_of_basic_type(f->type_diff()->return_type_diff().get(),
12692 true));
12693 return false;
12694 }
12695 }// end namespace comparison
12696 } // end namespace abigail
12697