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[binutils-gdb.git] / gdb / dictionary.c
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1 /* Routines for name->symbol lookups in GDB.
3 Copyright (C) 2003-2022 Free Software Foundation, Inc.
5 Contributed by David Carlton <carlton@bactrian.org> and by Kealia,
6 Inc.
8 This file is part of GDB.
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 3 of the License, or
13 (at your option) any later version.
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
20 You should have received a copy of the GNU General Public License
21 along with this program. If not, see <http://www.gnu.org/licenses/>. */
23 #include "defs.h"
24 #include <ctype.h>
25 #include "gdbsupport/gdb_obstack.h"
26 #include "symtab.h"
27 #include "buildsym.h"
28 #include "dictionary.h"
29 #include "safe-ctype.h"
30 #include <unordered_map>
31 #include "language.h"
33 /* This file implements dictionaries, which are tables that associate
34 symbols to names. They are represented by an opaque type 'struct
35 dictionary'. That type has various internal implementations, which
36 you can choose between depending on what properties you need
37 (e.g. fast lookup, order-preserving, expandable).
39 Each dictionary starts with a 'virtual function table' that
40 contains the functions that actually implement the various
41 operations that dictionaries provide. (Note, however, that, for
42 the sake of client code, we also provide some functions that can be
43 implemented generically in terms of the functions in the vtable.)
45 To add a new dictionary implementation <impl>, what you should do
46 is:
48 * Add a new element DICT_<IMPL> to dict_type.
50 * Create a new structure dictionary_<impl>. If your new
51 implementation is a variant of an existing one, make sure that
52 their structs have the same initial data members. Define accessor
53 macros for your new data members.
55 * Implement all the functions in dict_vector as static functions,
56 whose name is the same as the corresponding member of dict_vector
57 plus _<impl>. You don't have to do this for those members where
58 you can reuse existing generic functions
59 (e.g. add_symbol_nonexpandable, free_obstack) or in the case where
60 your new implementation is a variant of an existing implementation
61 and where the variant doesn't affect the member function in
62 question.
64 * Define a static const struct dict_vector dict_<impl>_vector.
66 * Define a function dict_create_<impl> to create these
67 gizmos. Add its declaration to dictionary.h.
69 To add a new operation <op> on all existing implementations, what
70 you should do is:
72 * Add a new member <op> to struct dict_vector.
74 * If there is useful generic behavior <op>, define a static
75 function <op>_something_informative that implements that behavior.
76 (E.g. add_symbol_nonexpandable, free_obstack.)
78 * For every implementation <impl> that should have its own specific
79 behavior for <op>, define a static function <op>_<impl>
80 implementing it.
82 * Modify all existing dict_vector_<impl>'s to include the appropriate
83 member.
85 * Define a function dict_<op> that looks up <op> in the dict_vector
86 and calls the appropriate function. Add a declaration for
87 dict_<op> to dictionary.h. */
89 /* An enum representing the various implementations of dictionaries.
90 Used only for debugging. */
92 enum dict_type
94 /* Symbols are stored in a fixed-size hash table. */
95 DICT_HASHED,
96 /* Symbols are stored in an expandable hash table. */
97 DICT_HASHED_EXPANDABLE,
98 /* Symbols are stored in a fixed-size array. */
99 DICT_LINEAR,
100 /* Symbols are stored in an expandable array. */
101 DICT_LINEAR_EXPANDABLE
104 /* The virtual function table. */
106 struct dict_vector
108 /* The type of the dictionary. This is only here to make debugging
109 a bit easier; it's not actually used. */
110 enum dict_type type;
111 /* The function to free a dictionary. */
112 void (*free) (struct dictionary *dict);
113 /* Add a symbol to a dictionary, if possible. */
114 void (*add_symbol) (struct dictionary *dict, struct symbol *sym);
115 /* Iterator functions. */
116 struct symbol *(*iterator_first) (const struct dictionary *dict,
117 struct dict_iterator *iterator);
118 struct symbol *(*iterator_next) (struct dict_iterator *iterator);
119 /* Functions to iterate over symbols with a given name. */
120 struct symbol *(*iter_match_first) (const struct dictionary *dict,
121 const lookup_name_info &name,
122 struct dict_iterator *iterator);
123 struct symbol *(*iter_match_next) (const lookup_name_info &name,
124 struct dict_iterator *iterator);
125 /* A size function, for maint print symtabs. */
126 int (*size) (const struct dictionary *dict);
129 /* Now comes the structs used to store the data for different
130 implementations. If two implementations have data in common, put
131 the common data at the top of their structs, ordered in the same
132 way. */
134 struct dictionary_hashed
136 int nbuckets;
137 struct symbol **buckets;
140 struct dictionary_hashed_expandable
142 /* How many buckets we currently have. */
143 int nbuckets;
144 struct symbol **buckets;
145 /* How many syms we currently have; we need this so we will know
146 when to add more buckets. */
147 int nsyms;
150 struct dictionary_linear
152 int nsyms;
153 struct symbol **syms;
156 struct dictionary_linear_expandable
158 /* How many symbols we currently have. */
159 int nsyms;
160 struct symbol **syms;
161 /* How many symbols we can store before needing to reallocate. */
162 int capacity;
165 /* And now, the star of our show. */
167 struct dictionary
169 const struct language_defn *language;
170 const struct dict_vector *vector;
171 union
173 struct dictionary_hashed hashed;
174 struct dictionary_hashed_expandable hashed_expandable;
175 struct dictionary_linear linear;
176 struct dictionary_linear_expandable linear_expandable;
178 data;
181 /* Accessor macros. */
183 #define DICT_VECTOR(d) (d)->vector
184 #define DICT_LANGUAGE(d) (d)->language
186 /* These can be used for DICT_HASHED_EXPANDABLE, too. */
188 #define DICT_HASHED_NBUCKETS(d) (d)->data.hashed.nbuckets
189 #define DICT_HASHED_BUCKETS(d) (d)->data.hashed.buckets
190 #define DICT_HASHED_BUCKET(d,i) DICT_HASHED_BUCKETS (d) [i]
192 #define DICT_HASHED_EXPANDABLE_NSYMS(d) (d)->data.hashed_expandable.nsyms
194 /* These can be used for DICT_LINEAR_EXPANDABLEs, too. */
196 #define DICT_LINEAR_NSYMS(d) (d)->data.linear.nsyms
197 #define DICT_LINEAR_SYMS(d) (d)->data.linear.syms
198 #define DICT_LINEAR_SYM(d,i) DICT_LINEAR_SYMS (d) [i]
200 #define DICT_LINEAR_EXPANDABLE_CAPACITY(d) \
201 (d)->data.linear_expandable.capacity
203 /* The initial size of a DICT_*_EXPANDABLE dictionary. */
205 #define DICT_EXPANDABLE_INITIAL_CAPACITY 10
207 /* This calculates the number of buckets we'll use in a hashtable,
208 given the number of symbols that it will contain. */
210 #define DICT_HASHTABLE_SIZE(n) ((n)/5 + 1)
212 /* Accessor macros for dict_iterators; they're here rather than
213 dictionary.h because code elsewhere should treat dict_iterators as
214 opaque. */
216 /* The dictionary that the iterator is associated to. */
217 #define DICT_ITERATOR_DICT(iter) (iter)->dict
218 /* For linear dictionaries, the index of the last symbol returned; for
219 hashed dictionaries, the bucket of the last symbol returned. */
220 #define DICT_ITERATOR_INDEX(iter) (iter)->index
221 /* For hashed dictionaries, this points to the last symbol returned;
222 otherwise, this is unused. */
223 #define DICT_ITERATOR_CURRENT(iter) (iter)->current
225 /* Declarations of functions for vectors. */
227 /* Functions that might work across a range of dictionary types. */
229 static void add_symbol_nonexpandable (struct dictionary *dict,
230 struct symbol *sym);
232 static void free_obstack (struct dictionary *dict);
234 /* Functions for DICT_HASHED and DICT_HASHED_EXPANDABLE
235 dictionaries. */
237 static struct symbol *iterator_first_hashed (const struct dictionary *dict,
238 struct dict_iterator *iterator);
240 static struct symbol *iterator_next_hashed (struct dict_iterator *iterator);
242 static struct symbol *iter_match_first_hashed (const struct dictionary *dict,
243 const lookup_name_info &name,
244 struct dict_iterator *iterator);
246 static struct symbol *iter_match_next_hashed (const lookup_name_info &name,
247 struct dict_iterator *iterator);
249 /* Functions only for DICT_HASHED. */
251 static int size_hashed (const struct dictionary *dict);
253 /* Functions only for DICT_HASHED_EXPANDABLE. */
255 static void free_hashed_expandable (struct dictionary *dict);
257 static void add_symbol_hashed_expandable (struct dictionary *dict,
258 struct symbol *sym);
260 static int size_hashed_expandable (const struct dictionary *dict);
262 /* Functions for DICT_LINEAR and DICT_LINEAR_EXPANDABLE
263 dictionaries. */
265 static struct symbol *iterator_first_linear (const struct dictionary *dict,
266 struct dict_iterator *iterator);
268 static struct symbol *iterator_next_linear (struct dict_iterator *iterator);
270 static struct symbol *iter_match_first_linear (const struct dictionary *dict,
271 const lookup_name_info &name,
272 struct dict_iterator *iterator);
274 static struct symbol *iter_match_next_linear (const lookup_name_info &name,
275 struct dict_iterator *iterator);
277 static int size_linear (const struct dictionary *dict);
279 /* Functions only for DICT_LINEAR_EXPANDABLE. */
281 static void free_linear_expandable (struct dictionary *dict);
283 static void add_symbol_linear_expandable (struct dictionary *dict,
284 struct symbol *sym);
286 /* Various vectors that we'll actually use. */
288 static const struct dict_vector dict_hashed_vector =
290 DICT_HASHED, /* type */
291 free_obstack, /* free */
292 add_symbol_nonexpandable, /* add_symbol */
293 iterator_first_hashed, /* iterator_first */
294 iterator_next_hashed, /* iterator_next */
295 iter_match_first_hashed, /* iter_name_first */
296 iter_match_next_hashed, /* iter_name_next */
297 size_hashed, /* size */
300 static const struct dict_vector dict_hashed_expandable_vector =
302 DICT_HASHED_EXPANDABLE, /* type */
303 free_hashed_expandable, /* free */
304 add_symbol_hashed_expandable, /* add_symbol */
305 iterator_first_hashed, /* iterator_first */
306 iterator_next_hashed, /* iterator_next */
307 iter_match_first_hashed, /* iter_name_first */
308 iter_match_next_hashed, /* iter_name_next */
309 size_hashed_expandable, /* size */
312 static const struct dict_vector dict_linear_vector =
314 DICT_LINEAR, /* type */
315 free_obstack, /* free */
316 add_symbol_nonexpandable, /* add_symbol */
317 iterator_first_linear, /* iterator_first */
318 iterator_next_linear, /* iterator_next */
319 iter_match_first_linear, /* iter_name_first */
320 iter_match_next_linear, /* iter_name_next */
321 size_linear, /* size */
324 static const struct dict_vector dict_linear_expandable_vector =
326 DICT_LINEAR_EXPANDABLE, /* type */
327 free_linear_expandable, /* free */
328 add_symbol_linear_expandable, /* add_symbol */
329 iterator_first_linear, /* iterator_first */
330 iterator_next_linear, /* iterator_next */
331 iter_match_first_linear, /* iter_name_first */
332 iter_match_next_linear, /* iter_name_next */
333 size_linear, /* size */
336 /* Declarations of helper functions (i.e. ones that don't go into
337 vectors). */
339 static struct symbol *iterator_hashed_advance (struct dict_iterator *iter);
341 static void insert_symbol_hashed (struct dictionary *dict,
342 struct symbol *sym);
344 static void expand_hashtable (struct dictionary *dict);
346 /* The creation functions. */
348 /* Create a hashed dictionary of a given language. */
350 static struct dictionary *
351 dict_create_hashed (struct obstack *obstack,
352 enum language language,
353 const std::vector<symbol *> &symbol_list)
355 /* Allocate the dictionary. */
356 struct dictionary *retval = XOBNEW (obstack, struct dictionary);
357 DICT_VECTOR (retval) = &dict_hashed_vector;
358 DICT_LANGUAGE (retval) = language_def (language);
360 /* Allocate space for symbols. */
361 int nsyms = symbol_list.size ();
362 int nbuckets = DICT_HASHTABLE_SIZE (nsyms);
363 DICT_HASHED_NBUCKETS (retval) = nbuckets;
364 struct symbol **buckets = XOBNEWVEC (obstack, struct symbol *, nbuckets);
365 memset (buckets, 0, nbuckets * sizeof (struct symbol *));
366 DICT_HASHED_BUCKETS (retval) = buckets;
368 /* Now fill the buckets. */
369 for (const auto &sym : symbol_list)
370 insert_symbol_hashed (retval, sym);
372 return retval;
375 /* Create an expandable hashed dictionary of a given language. */
377 static struct dictionary *
378 dict_create_hashed_expandable (enum language language)
380 struct dictionary *retval = XNEW (struct dictionary);
382 DICT_VECTOR (retval) = &dict_hashed_expandable_vector;
383 DICT_LANGUAGE (retval) = language_def (language);
384 DICT_HASHED_NBUCKETS (retval) = DICT_EXPANDABLE_INITIAL_CAPACITY;
385 DICT_HASHED_BUCKETS (retval) = XCNEWVEC (struct symbol *,
386 DICT_EXPANDABLE_INITIAL_CAPACITY);
387 DICT_HASHED_EXPANDABLE_NSYMS (retval) = 0;
389 return retval;
392 /* Create a linear dictionary of a given language. */
394 static struct dictionary *
395 dict_create_linear (struct obstack *obstack,
396 enum language language,
397 const std::vector<symbol *> &symbol_list)
399 struct dictionary *retval = XOBNEW (obstack, struct dictionary);
400 DICT_VECTOR (retval) = &dict_linear_vector;
401 DICT_LANGUAGE (retval) = language_def (language);
403 /* Allocate space for symbols. */
404 int nsyms = symbol_list.size ();
405 DICT_LINEAR_NSYMS (retval) = nsyms;
406 struct symbol **syms = XOBNEWVEC (obstack, struct symbol *, nsyms);
407 DICT_LINEAR_SYMS (retval) = syms;
409 /* Now fill in the symbols. */
410 int idx = nsyms - 1;
411 for (const auto &sym : symbol_list)
412 syms[idx--] = sym;
414 return retval;
417 /* Create an expandable linear dictionary of a given language. */
419 static struct dictionary *
420 dict_create_linear_expandable (enum language language)
422 struct dictionary *retval = XNEW (struct dictionary);
424 DICT_VECTOR (retval) = &dict_linear_expandable_vector;
425 DICT_LANGUAGE (retval) = language_def (language);
426 DICT_LINEAR_NSYMS (retval) = 0;
427 DICT_LINEAR_EXPANDABLE_CAPACITY (retval) = DICT_EXPANDABLE_INITIAL_CAPACITY;
428 DICT_LINEAR_SYMS (retval)
429 = XNEWVEC (struct symbol *, DICT_LINEAR_EXPANDABLE_CAPACITY (retval));
431 return retval;
434 /* The functions providing the dictionary interface. */
436 /* Free the memory used by a dictionary that's not on an obstack. (If
437 any.) */
439 static void
440 dict_free (struct dictionary *dict)
442 (DICT_VECTOR (dict))->free (dict);
445 /* Add SYM to DICT. DICT had better be expandable. */
447 static void
448 dict_add_symbol (struct dictionary *dict, struct symbol *sym)
450 (DICT_VECTOR (dict))->add_symbol (dict, sym);
453 /* Utility to add a list of symbols to a dictionary.
454 DICT must be an expandable dictionary. */
456 static void
457 dict_add_pending (struct dictionary *dict,
458 const std::vector<symbol *> &symbol_list)
460 /* Preserve ordering by reversing the list. */
461 for (auto sym = symbol_list.rbegin (); sym != symbol_list.rend (); ++sym)
462 dict_add_symbol (dict, *sym);
465 /* Initialize ITERATOR to point at the first symbol in DICT, and
466 return that first symbol, or NULL if DICT is empty. */
468 static struct symbol *
469 dict_iterator_first (const struct dictionary *dict,
470 struct dict_iterator *iterator)
472 return (DICT_VECTOR (dict))->iterator_first (dict, iterator);
475 /* Advance ITERATOR, and return the next symbol, or NULL if there are
476 no more symbols. */
478 static struct symbol *
479 dict_iterator_next (struct dict_iterator *iterator)
481 return (DICT_VECTOR (DICT_ITERATOR_DICT (iterator)))
482 ->iterator_next (iterator);
485 static struct symbol *
486 dict_iter_match_first (const struct dictionary *dict,
487 const lookup_name_info &name,
488 struct dict_iterator *iterator)
490 return (DICT_VECTOR (dict))->iter_match_first (dict, name, iterator);
493 static struct symbol *
494 dict_iter_match_next (const lookup_name_info &name,
495 struct dict_iterator *iterator)
497 return (DICT_VECTOR (DICT_ITERATOR_DICT (iterator)))
498 ->iter_match_next (name, iterator);
501 static int
502 dict_size (const struct dictionary *dict)
504 return (DICT_VECTOR (dict))->size (dict);
507 /* Now come functions (well, one function, currently) that are
508 implemented generically by means of the vtable. Typically, they're
509 rarely used. */
512 /* The functions implementing the dictionary interface. */
514 /* Generic functions, where appropriate. */
516 static void
517 free_obstack (struct dictionary *dict)
519 /* Do nothing! */
522 static void
523 add_symbol_nonexpandable (struct dictionary *dict, struct symbol *sym)
525 internal_error (__FILE__, __LINE__,
526 _("dict_add_symbol: non-expandable dictionary"));
529 /* Functions for DICT_HASHED and DICT_HASHED_EXPANDABLE. */
531 static struct symbol *
532 iterator_first_hashed (const struct dictionary *dict,
533 struct dict_iterator *iterator)
535 DICT_ITERATOR_DICT (iterator) = dict;
536 DICT_ITERATOR_INDEX (iterator) = -1;
537 return iterator_hashed_advance (iterator);
540 static struct symbol *
541 iterator_next_hashed (struct dict_iterator *iterator)
543 struct symbol *next;
545 next = DICT_ITERATOR_CURRENT (iterator)->hash_next;
547 if (next == NULL)
548 return iterator_hashed_advance (iterator);
549 else
551 DICT_ITERATOR_CURRENT (iterator) = next;
552 return next;
556 static struct symbol *
557 iterator_hashed_advance (struct dict_iterator *iterator)
559 const struct dictionary *dict = DICT_ITERATOR_DICT (iterator);
560 int nbuckets = DICT_HASHED_NBUCKETS (dict);
561 int i;
563 for (i = DICT_ITERATOR_INDEX (iterator) + 1; i < nbuckets; ++i)
565 struct symbol *sym = DICT_HASHED_BUCKET (dict, i);
567 if (sym != NULL)
569 DICT_ITERATOR_INDEX (iterator) = i;
570 DICT_ITERATOR_CURRENT (iterator) = sym;
571 return sym;
575 return NULL;
578 static struct symbol *
579 iter_match_first_hashed (const struct dictionary *dict,
580 const lookup_name_info &name,
581 struct dict_iterator *iterator)
583 const language_defn *lang = DICT_LANGUAGE (dict);
584 unsigned int hash_index = (name.search_name_hash (lang->la_language)
585 % DICT_HASHED_NBUCKETS (dict));
586 symbol_name_matcher_ftype *matches_name
587 = lang->get_symbol_name_matcher (name);
588 struct symbol *sym;
590 DICT_ITERATOR_DICT (iterator) = dict;
592 /* Loop through the symbols in the given bucket, breaking when SYM
593 first matches. If SYM never matches, it will be set to NULL;
594 either way, we have the right return value. */
596 for (sym = DICT_HASHED_BUCKET (dict, hash_index);
597 sym != NULL;
598 sym = sym->hash_next)
600 /* Warning: the order of arguments to compare matters! */
601 if (matches_name (sym->search_name (), name, NULL))
602 break;
605 DICT_ITERATOR_CURRENT (iterator) = sym;
606 return sym;
609 static struct symbol *
610 iter_match_next_hashed (const lookup_name_info &name,
611 struct dict_iterator *iterator)
613 const language_defn *lang = DICT_LANGUAGE (DICT_ITERATOR_DICT (iterator));
614 symbol_name_matcher_ftype *matches_name
615 = lang->get_symbol_name_matcher (name);
616 struct symbol *next;
618 for (next = DICT_ITERATOR_CURRENT (iterator)->hash_next;
619 next != NULL;
620 next = next->hash_next)
622 if (matches_name (next->search_name (), name, NULL))
623 break;
626 DICT_ITERATOR_CURRENT (iterator) = next;
628 return next;
631 /* Insert SYM into DICT. */
633 static void
634 insert_symbol_hashed (struct dictionary *dict,
635 struct symbol *sym)
637 unsigned int hash_index;
638 unsigned int hash;
639 struct symbol **buckets = DICT_HASHED_BUCKETS (dict);
641 /* We don't want to insert a symbol into a dictionary of a different
642 language. The two may not use the same hashing algorithm. */
643 gdb_assert (sym->language () == DICT_LANGUAGE (dict)->la_language);
645 hash = search_name_hash (sym->language (), sym->search_name ());
646 hash_index = hash % DICT_HASHED_NBUCKETS (dict);
647 sym->hash_next = buckets[hash_index];
648 buckets[hash_index] = sym;
651 static int
652 size_hashed (const struct dictionary *dict)
654 return DICT_HASHED_NBUCKETS (dict);
657 /* Functions only for DICT_HASHED_EXPANDABLE. */
659 static void
660 free_hashed_expandable (struct dictionary *dict)
662 xfree (DICT_HASHED_BUCKETS (dict));
663 xfree (dict);
666 static void
667 add_symbol_hashed_expandable (struct dictionary *dict,
668 struct symbol *sym)
670 int nsyms = ++DICT_HASHED_EXPANDABLE_NSYMS (dict);
672 if (DICT_HASHTABLE_SIZE (nsyms) > DICT_HASHED_NBUCKETS (dict))
673 expand_hashtable (dict);
675 insert_symbol_hashed (dict, sym);
676 DICT_HASHED_EXPANDABLE_NSYMS (dict) = nsyms;
679 static int
680 size_hashed_expandable (const struct dictionary *dict)
682 return DICT_HASHED_EXPANDABLE_NSYMS (dict);
685 static void
686 expand_hashtable (struct dictionary *dict)
688 int old_nbuckets = DICT_HASHED_NBUCKETS (dict);
689 struct symbol **old_buckets = DICT_HASHED_BUCKETS (dict);
690 int new_nbuckets = 2 * old_nbuckets + 1;
691 struct symbol **new_buckets = XCNEWVEC (struct symbol *, new_nbuckets);
692 int i;
694 DICT_HASHED_NBUCKETS (dict) = new_nbuckets;
695 DICT_HASHED_BUCKETS (dict) = new_buckets;
697 for (i = 0; i < old_nbuckets; ++i)
699 struct symbol *sym, *next_sym;
701 sym = old_buckets[i];
702 if (sym != NULL)
704 for (next_sym = sym->hash_next;
705 next_sym != NULL;
706 next_sym = sym->hash_next)
708 insert_symbol_hashed (dict, sym);
709 sym = next_sym;
712 insert_symbol_hashed (dict, sym);
716 xfree (old_buckets);
719 /* See dictionary.h. */
721 unsigned int
722 language_defn::search_name_hash (const char *string0) const
724 /* The Ada-encoded version of a name P1.P2...Pn has either the form
725 P1__P2__...Pn<suffix> or _ada_P1__P2__...Pn<suffix> (where the Pi
726 are lower-cased identifiers). The <suffix> (which can be empty)
727 encodes additional information about the denoted entity. This
728 routine hashes such names to msymbol_hash_iw(Pn). It actually
729 does this for a superset of both valid Pi and of <suffix>, but
730 in other cases it simply returns msymbol_hash_iw(STRING0). */
732 const char *string;
733 unsigned int hash;
735 string = string0;
736 if (*string == '_')
738 if (startswith (string, "_ada_"))
739 string += 5;
740 else
741 return msymbol_hash_iw (string0);
744 hash = 0;
745 while (*string)
747 switch (*string)
749 case '$':
750 case '.':
751 case 'X':
752 if (string0 == string)
753 return msymbol_hash_iw (string0);
754 else
755 return hash;
756 case ' ':
757 case '(':
758 return msymbol_hash_iw (string0);
759 case '_':
760 if (string[1] == '_' && string != string0)
762 int c = string[2];
764 if (c == 'B' && string[3] == '_')
766 for (string += 4; ISDIGIT (*string); ++string)
768 continue;
771 if ((c < 'a' || c > 'z') && c != 'O')
772 return hash;
773 hash = 0;
774 string += 2;
775 continue;
777 break;
778 case 'T':
779 /* Ignore "TKB" suffixes.
781 These are used by Ada for subprograms implementing a task body.
782 For instance for a task T inside package Pck, the name of the
783 subprogram implementing T's body is `pck__tTKB'. We need to
784 ignore the "TKB" suffix because searches for this task body
785 subprogram are going to be performed using `pck__t' (the encoded
786 version of the natural name `pck.t'). */
787 if (strcmp (string, "TKB") == 0)
788 return hash;
789 break;
792 hash = SYMBOL_HASH_NEXT (hash, *string);
793 string += 1;
795 return hash;
798 /* Functions for DICT_LINEAR and DICT_LINEAR_EXPANDABLE. */
800 static struct symbol *
801 iterator_first_linear (const struct dictionary *dict,
802 struct dict_iterator *iterator)
804 DICT_ITERATOR_DICT (iterator) = dict;
805 DICT_ITERATOR_INDEX (iterator) = 0;
806 return DICT_LINEAR_NSYMS (dict) ? DICT_LINEAR_SYM (dict, 0) : NULL;
809 static struct symbol *
810 iterator_next_linear (struct dict_iterator *iterator)
812 const struct dictionary *dict = DICT_ITERATOR_DICT (iterator);
814 if (++DICT_ITERATOR_INDEX (iterator) >= DICT_LINEAR_NSYMS (dict))
815 return NULL;
816 else
817 return DICT_LINEAR_SYM (dict, DICT_ITERATOR_INDEX (iterator));
820 static struct symbol *
821 iter_match_first_linear (const struct dictionary *dict,
822 const lookup_name_info &name,
823 struct dict_iterator *iterator)
825 DICT_ITERATOR_DICT (iterator) = dict;
826 DICT_ITERATOR_INDEX (iterator) = -1;
828 return iter_match_next_linear (name, iterator);
831 static struct symbol *
832 iter_match_next_linear (const lookup_name_info &name,
833 struct dict_iterator *iterator)
835 const struct dictionary *dict = DICT_ITERATOR_DICT (iterator);
836 const language_defn *lang = DICT_LANGUAGE (dict);
837 symbol_name_matcher_ftype *matches_name
838 = lang->get_symbol_name_matcher (name);
840 int i, nsyms = DICT_LINEAR_NSYMS (dict);
841 struct symbol *sym, *retval = NULL;
843 for (i = DICT_ITERATOR_INDEX (iterator) + 1; i < nsyms; ++i)
845 sym = DICT_LINEAR_SYM (dict, i);
847 if (matches_name (sym->search_name (), name, NULL))
849 retval = sym;
850 break;
854 DICT_ITERATOR_INDEX (iterator) = i;
856 return retval;
859 static int
860 size_linear (const struct dictionary *dict)
862 return DICT_LINEAR_NSYMS (dict);
865 /* Functions only for DICT_LINEAR_EXPANDABLE. */
867 static void
868 free_linear_expandable (struct dictionary *dict)
870 xfree (DICT_LINEAR_SYMS (dict));
871 xfree (dict);
875 static void
876 add_symbol_linear_expandable (struct dictionary *dict,
877 struct symbol *sym)
879 int nsyms = ++DICT_LINEAR_NSYMS (dict);
881 /* Do we have enough room? If not, grow it. */
882 if (nsyms > DICT_LINEAR_EXPANDABLE_CAPACITY (dict))
884 DICT_LINEAR_EXPANDABLE_CAPACITY (dict) *= 2;
885 DICT_LINEAR_SYMS (dict)
886 = XRESIZEVEC (struct symbol *, DICT_LINEAR_SYMS (dict),
887 DICT_LINEAR_EXPANDABLE_CAPACITY (dict));
890 DICT_LINEAR_SYM (dict, nsyms - 1) = sym;
893 /* Multi-language dictionary support. */
895 /* The structure describing a multi-language dictionary. */
897 struct multidictionary
899 /* An array of dictionaries, one per language. All dictionaries
900 must be of the same type. This should be free'd for expandable
901 dictionary types. */
902 struct dictionary **dictionaries;
904 /* The number of language dictionaries currently allocated.
905 Only used for expandable dictionaries. */
906 unsigned short n_allocated_dictionaries;
909 /* A hasher for enum language. Injecting this into std is a convenience
910 when using unordered_map with C++11. */
912 namespace std
914 template<> struct hash<enum language>
916 typedef enum language argument_type;
917 typedef std::size_t result_type;
919 result_type operator() (const argument_type &l) const noexcept
921 return static_cast<result_type> (l);
924 } /* namespace std */
926 /* A helper function to collate symbols on the pending list by language. */
928 static std::unordered_map<enum language, std::vector<symbol *>>
929 collate_pending_symbols_by_language (const struct pending *symbol_list)
931 std::unordered_map<enum language, std::vector<symbol *>> nsyms;
933 for (const pending *list_counter = symbol_list;
934 list_counter != nullptr; list_counter = list_counter->next)
936 for (int i = list_counter->nsyms - 1; i >= 0; --i)
938 enum language language = list_counter->symbol[i]->language ();
939 nsyms[language].push_back (list_counter->symbol[i]);
943 return nsyms;
946 /* See dictionary.h. */
948 struct multidictionary *
949 mdict_create_hashed (struct obstack *obstack,
950 const struct pending *symbol_list)
952 struct multidictionary *retval
953 = XOBNEW (obstack, struct multidictionary);
954 std::unordered_map<enum language, std::vector<symbol *>> nsyms
955 = collate_pending_symbols_by_language (symbol_list);
957 /* Loop over all languages and create/populate dictionaries. */
958 retval->dictionaries
959 = XOBNEWVEC (obstack, struct dictionary *, nsyms.size ());
960 retval->n_allocated_dictionaries = nsyms.size ();
962 int idx = 0;
963 for (const auto &pair : nsyms)
965 enum language language = pair.first;
966 std::vector<symbol *> symlist = pair.second;
968 retval->dictionaries[idx++]
969 = dict_create_hashed (obstack, language, symlist);
972 return retval;
975 /* See dictionary.h. */
977 struct multidictionary *
978 mdict_create_hashed_expandable (enum language language)
980 struct multidictionary *retval = XNEW (struct multidictionary);
982 /* We have no symbol list to populate, but we create an empty
983 dictionary of the requested language to populate later. */
984 retval->n_allocated_dictionaries = 1;
985 retval->dictionaries = XNEW (struct dictionary *);
986 retval->dictionaries[0] = dict_create_hashed_expandable (language);
988 return retval;
991 /* See dictionary.h. */
993 struct multidictionary *
994 mdict_create_linear (struct obstack *obstack,
995 const struct pending *symbol_list)
997 struct multidictionary *retval
998 = XOBNEW (obstack, struct multidictionary);
999 std::unordered_map<enum language, std::vector<symbol *>> nsyms
1000 = collate_pending_symbols_by_language (symbol_list);
1002 /* Loop over all languages and create/populate dictionaries. */
1003 retval->dictionaries
1004 = XOBNEWVEC (obstack, struct dictionary *, nsyms.size ());
1005 retval->n_allocated_dictionaries = nsyms.size ();
1007 int idx = 0;
1008 for (const auto &pair : nsyms)
1010 enum language language = pair.first;
1011 std::vector<symbol *> symlist = pair.second;
1013 retval->dictionaries[idx++]
1014 = dict_create_linear (obstack, language, symlist);
1017 return retval;
1020 /* See dictionary.h. */
1022 struct multidictionary *
1023 mdict_create_linear_expandable (enum language language)
1025 struct multidictionary *retval = XNEW (struct multidictionary);
1027 /* We have no symbol list to populate, but we create an empty
1028 dictionary to populate later. */
1029 retval->n_allocated_dictionaries = 1;
1030 retval->dictionaries = XNEW (struct dictionary *);
1031 retval->dictionaries[0] = dict_create_linear_expandable (language);
1033 return retval;
1036 /* See dictionary.h. */
1038 void
1039 mdict_free (struct multidictionary *mdict)
1041 /* Grab the type of dictionary being used. */
1042 enum dict_type type = mdict->dictionaries[0]->vector->type;
1044 /* Loop over all dictionaries and free them. */
1045 for (unsigned short idx = 0; idx < mdict->n_allocated_dictionaries; ++idx)
1046 dict_free (mdict->dictionaries[idx]);
1048 /* Free the dictionary list, if needed. */
1049 switch (type)
1051 case DICT_HASHED:
1052 case DICT_LINEAR:
1053 /* Memory was allocated on an obstack when created. */
1054 break;
1056 case DICT_HASHED_EXPANDABLE:
1057 case DICT_LINEAR_EXPANDABLE:
1058 xfree (mdict->dictionaries);
1059 break;
1063 /* Helper function to find the dictionary associated with LANGUAGE
1064 or NULL if there is no dictionary of that language. */
1066 static struct dictionary *
1067 find_language_dictionary (const struct multidictionary *mdict,
1068 enum language language)
1070 for (unsigned short idx = 0; idx < mdict->n_allocated_dictionaries; ++idx)
1072 if (DICT_LANGUAGE (mdict->dictionaries[idx])->la_language == language)
1073 return mdict->dictionaries[idx];
1076 return nullptr;
1079 /* Create a new language dictionary for LANGUAGE and add it to the
1080 multidictionary MDICT's list of dictionaries. If MDICT is not
1081 based on expandable dictionaries, this function throws an
1082 internal error. */
1084 static struct dictionary *
1085 create_new_language_dictionary (struct multidictionary *mdict,
1086 enum language language)
1088 struct dictionary *retval = nullptr;
1090 /* We use the first dictionary entry to decide what create function
1091 to call. Not optimal but sufficient. */
1092 gdb_assert (mdict->dictionaries[0] != nullptr);
1093 switch (mdict->dictionaries[0]->vector->type)
1095 case DICT_HASHED:
1096 case DICT_LINEAR:
1097 internal_error (__FILE__, __LINE__,
1098 _("create_new_language_dictionary: attempted to expand "
1099 "non-expandable multidictionary"));
1101 case DICT_HASHED_EXPANDABLE:
1102 retval = dict_create_hashed_expandable (language);
1103 break;
1105 case DICT_LINEAR_EXPANDABLE:
1106 retval = dict_create_linear_expandable (language);
1107 break;
1110 /* Grow the dictionary vector and save the new dictionary. */
1111 mdict->dictionaries
1112 = (struct dictionary **) xrealloc (mdict->dictionaries,
1113 (++mdict->n_allocated_dictionaries
1114 * sizeof (struct dictionary *)));
1115 mdict->dictionaries[mdict->n_allocated_dictionaries - 1] = retval;
1117 return retval;
1120 /* See dictionary.h. */
1122 void
1123 mdict_add_symbol (struct multidictionary *mdict, struct symbol *sym)
1125 struct dictionary *dict
1126 = find_language_dictionary (mdict, sym->language ());
1128 if (dict == nullptr)
1130 /* SYM is of a new language that we haven't previously seen.
1131 Create a new dictionary for it. */
1132 dict = create_new_language_dictionary (mdict, sym->language ());
1135 dict_add_symbol (dict, sym);
1138 /* See dictionary.h. */
1140 void
1141 mdict_add_pending (struct multidictionary *mdict,
1142 const struct pending *symbol_list)
1144 std::unordered_map<enum language, std::vector<symbol *>> nsyms
1145 = collate_pending_symbols_by_language (symbol_list);
1147 for (const auto &pair : nsyms)
1149 enum language language = pair.first;
1150 std::vector<symbol *> symlist = pair.second;
1151 struct dictionary *dict = find_language_dictionary (mdict, language);
1153 if (dict == nullptr)
1155 /* The language was not previously seen. Create a new dictionary
1156 for it. */
1157 dict = create_new_language_dictionary (mdict, language);
1160 dict_add_pending (dict, symlist);
1164 /* See dictionary.h. */
1166 struct symbol *
1167 mdict_iterator_first (const multidictionary *mdict,
1168 struct mdict_iterator *miterator)
1170 miterator->mdict = mdict;
1171 miterator->current_idx = 0;
1173 for (unsigned short idx = miterator->current_idx;
1174 idx < mdict->n_allocated_dictionaries; ++idx)
1176 struct symbol *result
1177 = dict_iterator_first (mdict->dictionaries[idx], &miterator->iterator);
1179 if (result != nullptr)
1181 miterator->current_idx = idx;
1182 return result;
1186 return nullptr;
1189 /* See dictionary.h. */
1191 struct symbol *
1192 mdict_iterator_next (struct mdict_iterator *miterator)
1194 struct symbol *result = dict_iterator_next (&miterator->iterator);
1196 if (result != nullptr)
1197 return result;
1199 /* The current dictionary had no matches -- move to the next
1200 dictionary, if any. */
1201 for (unsigned short idx = ++miterator->current_idx;
1202 idx < miterator->mdict->n_allocated_dictionaries; ++idx)
1204 result
1205 = dict_iterator_first (miterator->mdict->dictionaries[idx],
1206 &miterator->iterator);
1207 if (result != nullptr)
1209 miterator->current_idx = idx;
1210 return result;
1214 return nullptr;
1217 /* See dictionary.h. */
1219 struct symbol *
1220 mdict_iter_match_first (const struct multidictionary *mdict,
1221 const lookup_name_info &name,
1222 struct mdict_iterator *miterator)
1224 miterator->mdict = mdict;
1225 miterator->current_idx = 0;
1227 for (unsigned short idx = miterator->current_idx;
1228 idx < mdict->n_allocated_dictionaries; ++idx)
1230 struct symbol *result
1231 = dict_iter_match_first (mdict->dictionaries[idx], name,
1232 &miterator->iterator);
1234 if (result != nullptr)
1235 return result;
1238 return nullptr;
1241 /* See dictionary.h. */
1243 struct symbol *
1244 mdict_iter_match_next (const lookup_name_info &name,
1245 struct mdict_iterator *miterator)
1247 /* Search the current dictionary. */
1248 struct symbol *result = dict_iter_match_next (name, &miterator->iterator);
1250 if (result != nullptr)
1251 return result;
1253 /* The current dictionary had no matches -- move to the next
1254 dictionary, if any. */
1255 for (unsigned short idx = ++miterator->current_idx;
1256 idx < miterator->mdict->n_allocated_dictionaries; ++idx)
1258 result
1259 = dict_iter_match_first (miterator->mdict->dictionaries[idx],
1260 name, &miterator->iterator);
1261 if (result != nullptr)
1263 miterator->current_idx = idx;
1264 return result;
1268 return nullptr;
1271 /* See dictionary.h. */
1274 mdict_size (const struct multidictionary *mdict)
1276 int size = 0;
1278 for (unsigned short idx = 0; idx < mdict->n_allocated_dictionaries; ++idx)
1279 size += dict_size (mdict->dictionaries[idx]);
1281 return size;