(Synchronize with addition made to binutils sources):
[gcc.git] / gcc / coverage.c
1 /* Read and write coverage files, and associated functionality.
2 Copyright (C) 1990, 1991, 1992, 1993, 1994, 1996, 1997, 1998, 1999,
3 2000, 2001, 2003, 2004, 2005, 2007, 2008 Free Software Foundation,
4 Inc.
5 Contributed by James E. Wilson, UC Berkeley/Cygnus Support;
6 based on some ideas from Dain Samples of UC Berkeley.
7 Further mangling by Bob Manson, Cygnus Support.
8 Further mangled by Nathan Sidwell, CodeSourcery
9
10 This file is part of GCC.
11
12 GCC is free software; you can redistribute it and/or modify it under
13 the terms of the GNU General Public License as published by the Free
14 Software Foundation; either version 3, or (at your option) any later
15 version.
16
17 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
18 WARRANTY; without even the implied warranty of MERCHANTABILITY or
19 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
20 for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with GCC; see the file COPYING3. If not see
24 <http://www.gnu.org/licenses/>. */
25
26
27 #define GCOV_LINKAGE
28
29 #include "config.h"
30 #include "system.h"
31 #include "coretypes.h"
32 #include "tm.h"
33 #include "rtl.h"
34 #include "tree.h"
35 #include "flags.h"
36 #include "output.h"
37 #include "regs.h"
38 #include "expr.h"
39 #include "function.h"
40 #include "toplev.h"
41 #include "tm_p.h"
42 #include "ggc.h"
43 #include "coverage.h"
44 #include "langhooks.h"
45 #include "hashtab.h"
46 #include "tree-iterator.h"
47 #include "cgraph.h"
48 #include "tree-pass.h"
49
50 #include "gcov-io.c"
51
52 struct function_list
53 {
54 struct function_list *next; /* next function */
55 unsigned ident; /* function ident */
56 unsigned checksum; /* function checksum */
57 unsigned n_ctrs[GCOV_COUNTERS];/* number of counters. */
58 };
59
60 /* Counts information for a function. */
61 typedef struct counts_entry
62 {
63 /* We hash by */
64 unsigned ident;
65 unsigned ctr;
66
67 /* Store */
68 unsigned checksum;
69 gcov_type *counts;
70 struct gcov_ctr_summary summary;
71
72 /* Workspace */
73 struct counts_entry *chain;
74
75 } counts_entry_t;
76
77 static struct function_list *functions_head = 0;
78 static struct function_list **functions_tail = &functions_head;
79 static unsigned no_coverage = 0;
80
81 /* Cumulative counter information for whole program. */
82 static unsigned prg_ctr_mask; /* Mask of counter types generated. */
83 static unsigned prg_n_ctrs[GCOV_COUNTERS]; /* Total counters allocated. */
84
85 /* Counter information for current function. */
86 static unsigned fn_ctr_mask; /* Mask of counters used. */
87 static unsigned fn_n_ctrs[GCOV_COUNTERS]; /* Counters allocated. */
88 static unsigned fn_b_ctrs[GCOV_COUNTERS]; /* Allocation base. */
89
90 /* Name of the output file for coverage output file. */
91 static char *bbg_file_name;
92 static unsigned bbg_file_opened;
93 static int bbg_function_announced;
94
95 /* Name of the count data file. */
96 static char *da_file_name;
97
98 /* Hash table of count data. */
99 static htab_t counts_hash = NULL;
100
101 /* Trees representing the counter table arrays. */
102 static GTY(()) tree tree_ctr_tables[GCOV_COUNTERS];
103
104 /* The names of the counter tables. Not used if we're
105 generating counters at tree level. */
106 static GTY(()) rtx ctr_labels[GCOV_COUNTERS];
107
108 /* The names of merge functions for counters. */
109 static const char *const ctr_merge_functions[GCOV_COUNTERS] = GCOV_MERGE_FUNCTIONS;
110 static const char *const ctr_names[GCOV_COUNTERS] = GCOV_COUNTER_NAMES;
111
112 /* Forward declarations. */
113 static hashval_t htab_counts_entry_hash (const void *);
114 static int htab_counts_entry_eq (const void *, const void *);
115 static void htab_counts_entry_del (void *);
116 static void read_counts_file (void);
117 static unsigned compute_checksum (void);
118 static unsigned coverage_checksum_string (unsigned, const char *);
119 static tree build_fn_info_type (unsigned);
120 static tree build_fn_info_value (const struct function_list *, tree);
121 static tree build_ctr_info_type (void);
122 static tree build_ctr_info_value (unsigned, tree);
123 static tree build_gcov_info (void);
124 static void create_coverage (void);
125 \f
126 /* Return the type node for gcov_type. */
127
128 tree
129 get_gcov_type (void)
130 {
131 return lang_hooks.types.type_for_size (GCOV_TYPE_SIZE, false);
132 }
133
134 /* Return the type node for gcov_unsigned_t. */
135
136 static tree
137 get_gcov_unsigned_t (void)
138 {
139 return lang_hooks.types.type_for_size (32, true);
140 }
141 \f
142 static hashval_t
143 htab_counts_entry_hash (const void *of)
144 {
145 const counts_entry_t *const entry = (const counts_entry_t *) of;
146
147 return entry->ident * GCOV_COUNTERS + entry->ctr;
148 }
149
150 static int
151 htab_counts_entry_eq (const void *of1, const void *of2)
152 {
153 const counts_entry_t *const entry1 = (const counts_entry_t *) of1;
154 const counts_entry_t *const entry2 = (const counts_entry_t *) of2;
155
156 return entry1->ident == entry2->ident && entry1->ctr == entry2->ctr;
157 }
158
159 static void
160 htab_counts_entry_del (void *of)
161 {
162 counts_entry_t *const entry = (counts_entry_t *) of;
163
164 free (entry->counts);
165 free (entry);
166 }
167
168 /* Read in the counts file, if available. */
169
170 static void
171 read_counts_file (void)
172 {
173 gcov_unsigned_t fn_ident = 0;
174 gcov_unsigned_t checksum = -1;
175 counts_entry_t *summaried = NULL;
176 unsigned seen_summary = 0;
177 gcov_unsigned_t tag;
178 int is_error = 0;
179
180 if (!gcov_open (da_file_name, 1))
181 return;
182
183 if (!gcov_magic (gcov_read_unsigned (), GCOV_DATA_MAGIC))
184 {
185 warning (0, "%qs is not a gcov data file", da_file_name);
186 gcov_close ();
187 return;
188 }
189 else if ((tag = gcov_read_unsigned ()) != GCOV_VERSION)
190 {
191 char v[4], e[4];
192
193 GCOV_UNSIGNED2STRING (v, tag);
194 GCOV_UNSIGNED2STRING (e, GCOV_VERSION);
195
196 warning (0, "%qs is version %q.*s, expected version %q.*s",
197 da_file_name, 4, v, 4, e);
198 gcov_close ();
199 return;
200 }
201
202 /* Read and discard the stamp. */
203 gcov_read_unsigned ();
204
205 counts_hash = htab_create (10,
206 htab_counts_entry_hash, htab_counts_entry_eq,
207 htab_counts_entry_del);
208 while ((tag = gcov_read_unsigned ()))
209 {
210 gcov_unsigned_t length;
211 gcov_position_t offset;
212
213 length = gcov_read_unsigned ();
214 offset = gcov_position ();
215 if (tag == GCOV_TAG_FUNCTION)
216 {
217 fn_ident = gcov_read_unsigned ();
218 checksum = gcov_read_unsigned ();
219 if (seen_summary)
220 {
221 /* We have already seen a summary, this means that this
222 new function begins a new set of program runs. We
223 must unlink the summaried chain. */
224 counts_entry_t *entry, *chain;
225
226 for (entry = summaried; entry; entry = chain)
227 {
228 chain = entry->chain;
229 entry->chain = NULL;
230 }
231 summaried = NULL;
232 seen_summary = 0;
233 }
234 }
235 else if (tag == GCOV_TAG_PROGRAM_SUMMARY)
236 {
237 counts_entry_t *entry;
238 struct gcov_summary summary;
239
240 gcov_read_summary (&summary);
241 seen_summary = 1;
242 for (entry = summaried; entry; entry = entry->chain)
243 {
244 struct gcov_ctr_summary *csum = &summary.ctrs[entry->ctr];
245
246 entry->summary.runs += csum->runs;
247 entry->summary.sum_all += csum->sum_all;
248 if (entry->summary.run_max < csum->run_max)
249 entry->summary.run_max = csum->run_max;
250 entry->summary.sum_max += csum->sum_max;
251 }
252 }
253 else if (GCOV_TAG_IS_COUNTER (tag) && fn_ident)
254 {
255 counts_entry_t **slot, *entry, elt;
256 unsigned n_counts = GCOV_TAG_COUNTER_NUM (length);
257 unsigned ix;
258
259 elt.ident = fn_ident;
260 elt.ctr = GCOV_COUNTER_FOR_TAG (tag);
261
262 slot = (counts_entry_t **) htab_find_slot
263 (counts_hash, &elt, INSERT);
264 entry = *slot;
265 if (!entry)
266 {
267 *slot = entry = XCNEW (counts_entry_t);
268 entry->ident = elt.ident;
269 entry->ctr = elt.ctr;
270 entry->checksum = checksum;
271 entry->summary.num = n_counts;
272 entry->counts = XCNEWVEC (gcov_type, n_counts);
273 }
274 else if (entry->checksum != checksum)
275 {
276 error ("coverage mismatch for function %u while reading execution counters",
277 fn_ident);
278 error ("checksum is %x instead of %x", entry->checksum, checksum);
279 htab_delete (counts_hash);
280 break;
281 }
282 else if (entry->summary.num != n_counts)
283 {
284 error ("coverage mismatch for function %u while reading execution counters",
285 fn_ident);
286 error ("number of counters is %d instead of %d", entry->summary.num, n_counts);
287 htab_delete (counts_hash);
288 break;
289 }
290 else if (elt.ctr >= GCOV_COUNTERS_SUMMABLE)
291 {
292 error ("cannot merge separate %s counters for function %u",
293 ctr_names[elt.ctr], fn_ident);
294 goto skip_merge;
295 }
296
297 if (elt.ctr < GCOV_COUNTERS_SUMMABLE
298 /* This should always be true for a just allocated entry,
299 and always false for an existing one. Check this way, in
300 case the gcov file is corrupt. */
301 && (!entry->chain || summaried != entry))
302 {
303 entry->chain = summaried;
304 summaried = entry;
305 }
306 for (ix = 0; ix != n_counts; ix++)
307 entry->counts[ix] += gcov_read_counter ();
308 skip_merge:;
309 }
310 gcov_sync (offset, length);
311 if ((is_error = gcov_is_error ()))
312 {
313 error (is_error < 0 ? "%qs has overflowed" : "%qs is corrupted",
314 da_file_name);
315 htab_delete (counts_hash);
316 break;
317 }
318 }
319
320 gcov_close ();
321 }
322
323 /* Returns the counters for a particular tag. */
324
325 gcov_type *
326 get_coverage_counts (unsigned counter, unsigned expected,
327 const struct gcov_ctr_summary **summary)
328 {
329 counts_entry_t *entry, elt;
330 gcov_unsigned_t checksum = -1;
331
332 /* No hash table, no counts. */
333 if (!counts_hash)
334 {
335 static int warned = 0;
336
337 if (!warned++)
338 inform (input_location, (flag_guess_branch_prob
339 ? "file %s not found, execution counts estimated"
340 : "file %s not found, execution counts assumed to be zero"),
341 da_file_name);
342 return NULL;
343 }
344
345 elt.ident = current_function_funcdef_no + 1;
346 elt.ctr = counter;
347 entry = (counts_entry_t *) htab_find (counts_hash, &elt);
348 if (!entry)
349 {
350 warning (0, "no coverage for function %qE found",
351 DECL_ASSEMBLER_NAME (current_function_decl));
352 return NULL;
353 }
354
355 checksum = compute_checksum ();
356 if (entry->checksum != checksum
357 || entry->summary.num != expected)
358 {
359 static int warned = 0;
360 tree id = DECL_ASSEMBLER_NAME (current_function_decl);
361
362 if (warn_coverage_mismatch)
363 warning (OPT_Wcoverage_mismatch, "coverage mismatch for function "
364 "%qE while reading counter %qs", id, ctr_names[counter]);
365 else
366 error ("coverage mismatch for function %qE while reading counter %qs",
367 id, ctr_names[counter]);
368
369 if (!inhibit_warnings)
370 {
371 if (entry->checksum != checksum)
372 inform (input_location, "checksum is %x instead of %x", entry->checksum, checksum);
373 else
374 inform (input_location, "number of counters is %d instead of %d",
375 entry->summary.num, expected);
376 }
377
378 if (warn_coverage_mismatch
379 && !inhibit_warnings
380 && !warned++)
381 {
382 inform (input_location, "coverage mismatch ignored due to -Wcoverage-mismatch");
383 inform (input_location, flag_guess_branch_prob
384 ? "execution counts estimated"
385 : "execution counts assumed to be zero");
386 if (!flag_guess_branch_prob)
387 inform (input_location, "this can result in poorly optimized code");
388 }
389
390 return NULL;
391 }
392
393 if (summary)
394 *summary = &entry->summary;
395
396 return entry->counts;
397 }
398
399 /* Allocate NUM counters of type COUNTER. Returns nonzero if the
400 allocation succeeded. */
401
402 int
403 coverage_counter_alloc (unsigned counter, unsigned num)
404 {
405 if (no_coverage)
406 return 0;
407
408 if (!num)
409 return 1;
410
411 if (!tree_ctr_tables[counter])
412 {
413 /* Generate and save a copy of this so it can be shared. Leave
414 the index type unspecified for now; it will be set after all
415 functions have been compiled. */
416 char buf[20];
417 tree gcov_type_node = get_gcov_type ();
418 tree gcov_type_array_type
419 = build_array_type (gcov_type_node, NULL_TREE);
420 tree_ctr_tables[counter]
421 = build_decl (VAR_DECL, NULL_TREE, gcov_type_array_type);
422 TREE_STATIC (tree_ctr_tables[counter]) = 1;
423 ASM_GENERATE_INTERNAL_LABEL (buf, "LPBX", counter + 1);
424 DECL_NAME (tree_ctr_tables[counter]) = get_identifier (buf);
425 DECL_ALIGN (tree_ctr_tables[counter]) = TYPE_ALIGN (gcov_type_node);
426
427 if (dump_file)
428 fprintf (dump_file, "Using data file %s\n", da_file_name);
429 }
430 fn_b_ctrs[counter] = fn_n_ctrs[counter];
431 fn_n_ctrs[counter] += num;
432 fn_ctr_mask |= 1 << counter;
433 return 1;
434 }
435
436 /* Generate a tree to access COUNTER NO. */
437
438 tree
439 tree_coverage_counter_ref (unsigned counter, unsigned no)
440 {
441 tree gcov_type_node = get_gcov_type ();
442
443 gcc_assert (no < fn_n_ctrs[counter] - fn_b_ctrs[counter]);
444 no += prg_n_ctrs[counter] + fn_b_ctrs[counter];
445
446 /* "no" here is an array index, scaled to bytes later. */
447 return build4 (ARRAY_REF, gcov_type_node, tree_ctr_tables[counter],
448 build_int_cst (NULL_TREE, no), NULL, NULL);
449 }
450
451 /* Generate a tree to access the address of COUNTER NO. */
452
453 tree
454 tree_coverage_counter_addr (unsigned counter, unsigned no)
455 {
456 tree gcov_type_node = get_gcov_type ();
457
458 gcc_assert (no < fn_n_ctrs[counter] - fn_b_ctrs[counter]);
459 no += prg_n_ctrs[counter] + fn_b_ctrs[counter];
460
461 TREE_ADDRESSABLE (tree_ctr_tables[counter]) = 1;
462
463 /* "no" here is an array index, scaled to bytes later. */
464 return build_fold_addr_expr (build4 (ARRAY_REF, gcov_type_node,
465 tree_ctr_tables[counter],
466 build_int_cst (NULL_TREE, no),
467 NULL, NULL));
468 }
469 \f
470 /* Generate a checksum for a string. CHKSUM is the current
471 checksum. */
472
473 static unsigned
474 coverage_checksum_string (unsigned chksum, const char *string)
475 {
476 int i;
477 char *dup = NULL;
478
479 /* Look for everything that looks if it were produced by
480 get_file_function_name and zero out the second part
481 that may result from flag_random_seed. This is not critical
482 as the checksums are used only for sanity checking. */
483 for (i = 0; string[i]; i++)
484 {
485 int offset = 0;
486 if (!strncmp (string + i, "_GLOBAL__N_", 11))
487 offset = 11;
488 if (!strncmp (string + i, "_GLOBAL__", 9))
489 offset = 9;
490
491 /* C++ namespaces do have scheme:
492 _GLOBAL__N_<filename>_<wrongmagicnumber>_<magicnumber>functionname
493 since filename might contain extra underscores there seems
494 to be no better chance then walk all possible offsets looking
495 for magicnumber. */
496 if (offset)
497 {
498 for (i = i + offset; string[i]; i++)
499 if (string[i]=='_')
500 {
501 int y;
502
503 for (y = 1; y < 9; y++)
504 if (!(string[i + y] >= '0' && string[i + y] <= '9')
505 && !(string[i + y] >= 'A' && string[i + y] <= 'F'))
506 break;
507 if (y != 9 || string[i + 9] != '_')
508 continue;
509 for (y = 10; y < 18; y++)
510 if (!(string[i + y] >= '0' && string[i + y] <= '9')
511 && !(string[i + y] >= 'A' && string[i + y] <= 'F'))
512 break;
513 if (y != 18)
514 continue;
515 if (!dup)
516 string = dup = xstrdup (string);
517 for (y = 10; y < 18; y++)
518 dup[i + y] = '0';
519 }
520 break;
521 }
522 }
523
524 chksum = crc32_string (chksum, string);
525 if (dup)
526 free (dup);
527
528 return chksum;
529 }
530
531 /* Compute checksum for the current function. We generate a CRC32. */
532
533 static unsigned
534 compute_checksum (void)
535 {
536 expanded_location xloc
537 = expand_location (DECL_SOURCE_LOCATION (current_function_decl));
538 unsigned chksum = xloc.line;
539
540 chksum = coverage_checksum_string (chksum, xloc.file);
541 chksum = coverage_checksum_string
542 (chksum, IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl)));
543
544 return chksum;
545 }
546 \f
547 /* Begin output to the graph file for the current function.
548 Opens the output file, if not already done. Writes the
549 function header, if not already done. Returns nonzero if data
550 should be output. */
551
552 int
553 coverage_begin_output (void)
554 {
555 /* We don't need to output .gcno file unless we're under -ftest-coverage
556 (e.g. -fprofile-arcs/generate/use don't need .gcno to work). */
557 if (no_coverage || !flag_test_coverage)
558 return 0;
559
560 if (!bbg_function_announced)
561 {
562 expanded_location xloc
563 = expand_location (DECL_SOURCE_LOCATION (current_function_decl));
564 unsigned long offset;
565
566 if (!bbg_file_opened)
567 {
568 if (!gcov_open (bbg_file_name, -1))
569 error ("cannot open %s", bbg_file_name);
570 else
571 {
572 gcov_write_unsigned (GCOV_NOTE_MAGIC);
573 gcov_write_unsigned (GCOV_VERSION);
574 gcov_write_unsigned (local_tick);
575 }
576 bbg_file_opened = 1;
577 }
578
579 /* Announce function */
580 offset = gcov_write_tag (GCOV_TAG_FUNCTION);
581 gcov_write_unsigned (current_function_funcdef_no + 1);
582 gcov_write_unsigned (compute_checksum ());
583 gcov_write_string (IDENTIFIER_POINTER
584 (DECL_ASSEMBLER_NAME (current_function_decl)));
585 gcov_write_string (xloc.file);
586 gcov_write_unsigned (xloc.line);
587 gcov_write_length (offset);
588
589 bbg_function_announced = 1;
590 }
591 return !gcov_is_error ();
592 }
593
594 /* Finish coverage data for the current function. Verify no output
595 error has occurred. Save function coverage counts. */
596
597 void
598 coverage_end_function (void)
599 {
600 unsigned i;
601
602 if (bbg_file_opened > 1 && gcov_is_error ())
603 {
604 warning (0, "error writing %qs", bbg_file_name);
605 bbg_file_opened = -1;
606 }
607
608 if (fn_ctr_mask)
609 {
610 struct function_list *item;
611
612 item = XNEW (struct function_list);
613
614 *functions_tail = item;
615 functions_tail = &item->next;
616
617 item->next = 0;
618 item->ident = current_function_funcdef_no + 1;
619 item->checksum = compute_checksum ();
620 for (i = 0; i != GCOV_COUNTERS; i++)
621 {
622 item->n_ctrs[i] = fn_n_ctrs[i];
623 prg_n_ctrs[i] += fn_n_ctrs[i];
624 fn_n_ctrs[i] = fn_b_ctrs[i] = 0;
625 }
626 prg_ctr_mask |= fn_ctr_mask;
627 fn_ctr_mask = 0;
628 }
629 bbg_function_announced = 0;
630 }
631
632 /* Creates the gcov_fn_info RECORD_TYPE. */
633
634 static tree
635 build_fn_info_type (unsigned int counters)
636 {
637 tree type = lang_hooks.types.make_type (RECORD_TYPE);
638 tree field, fields;
639 tree array_type;
640
641 /* ident */
642 fields = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
643
644 /* checksum */
645 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
646 TREE_CHAIN (field) = fields;
647 fields = field;
648
649 array_type = build_int_cst (NULL_TREE, counters - 1);
650 array_type = build_index_type (array_type);
651 array_type = build_array_type (get_gcov_unsigned_t (), array_type);
652
653 /* counters */
654 field = build_decl (FIELD_DECL, NULL_TREE, array_type);
655 TREE_CHAIN (field) = fields;
656 fields = field;
657
658 finish_builtin_struct (type, "__gcov_fn_info", fields, NULL_TREE);
659
660 return type;
661 }
662
663 /* Creates a CONSTRUCTOR for a gcov_fn_info. FUNCTION is
664 the function being processed and TYPE is the gcov_fn_info
665 RECORD_TYPE. */
666
667 static tree
668 build_fn_info_value (const struct function_list *function, tree type)
669 {
670 tree value = NULL_TREE;
671 tree fields = TYPE_FIELDS (type);
672 unsigned ix;
673 tree array_value = NULL_TREE;
674
675 /* ident */
676 value = tree_cons (fields, build_int_cstu (get_gcov_unsigned_t (),
677 function->ident), value);
678 fields = TREE_CHAIN (fields);
679
680 /* checksum */
681 value = tree_cons (fields, build_int_cstu (get_gcov_unsigned_t (),
682 function->checksum), value);
683 fields = TREE_CHAIN (fields);
684
685 /* counters */
686 for (ix = 0; ix != GCOV_COUNTERS; ix++)
687 if (prg_ctr_mask & (1 << ix))
688 {
689 tree counters = build_int_cstu (get_gcov_unsigned_t (),
690 function->n_ctrs[ix]);
691
692 array_value = tree_cons (NULL_TREE, counters, array_value);
693 }
694
695 /* FIXME: use build_constructor directly. */
696 array_value = build_constructor_from_list (TREE_TYPE (fields),
697 nreverse (array_value));
698 value = tree_cons (fields, array_value, value);
699
700 /* FIXME: use build_constructor directly. */
701 value = build_constructor_from_list (type, nreverse (value));
702
703 return value;
704 }
705
706 /* Creates the gcov_ctr_info RECORD_TYPE. */
707
708 static tree
709 build_ctr_info_type (void)
710 {
711 tree type = lang_hooks.types.make_type (RECORD_TYPE);
712 tree field, fields = NULL_TREE;
713 tree gcov_ptr_type = build_pointer_type (get_gcov_type ());
714 tree gcov_merge_fn_type;
715
716 /* counters */
717 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
718 TREE_CHAIN (field) = fields;
719 fields = field;
720
721 /* values */
722 field = build_decl (FIELD_DECL, NULL_TREE, gcov_ptr_type);
723 TREE_CHAIN (field) = fields;
724 fields = field;
725
726 /* merge */
727 gcov_merge_fn_type =
728 build_function_type_list (void_type_node,
729 gcov_ptr_type, get_gcov_unsigned_t (),
730 NULL_TREE);
731 field = build_decl (FIELD_DECL, NULL_TREE,
732 build_pointer_type (gcov_merge_fn_type));
733 TREE_CHAIN (field) = fields;
734 fields = field;
735
736 finish_builtin_struct (type, "__gcov_ctr_info", fields, NULL_TREE);
737
738 return type;
739 }
740
741 /* Creates a CONSTRUCTOR for a gcov_ctr_info. COUNTER is
742 the counter being processed and TYPE is the gcov_ctr_info
743 RECORD_TYPE. */
744
745 static tree
746 build_ctr_info_value (unsigned int counter, tree type)
747 {
748 tree value = NULL_TREE;
749 tree fields = TYPE_FIELDS (type);
750 tree fn;
751
752 /* counters */
753 value = tree_cons (fields,
754 build_int_cstu (get_gcov_unsigned_t (),
755 prg_n_ctrs[counter]),
756 value);
757 fields = TREE_CHAIN (fields);
758
759 if (prg_n_ctrs[counter])
760 {
761 tree array_type;
762
763 array_type = build_int_cstu (get_gcov_unsigned_t (),
764 prg_n_ctrs[counter] - 1);
765 array_type = build_index_type (array_type);
766 array_type = build_array_type (TREE_TYPE (TREE_TYPE (fields)),
767 array_type);
768
769 TREE_TYPE (tree_ctr_tables[counter]) = array_type;
770 DECL_SIZE (tree_ctr_tables[counter]) = TYPE_SIZE (array_type);
771 DECL_SIZE_UNIT (tree_ctr_tables[counter]) = TYPE_SIZE_UNIT (array_type);
772 assemble_variable (tree_ctr_tables[counter], 0, 0, 0);
773
774 value = tree_cons (fields,
775 build1 (ADDR_EXPR, TREE_TYPE (fields),
776 tree_ctr_tables[counter]),
777 value);
778 }
779 else
780 value = tree_cons (fields, null_pointer_node, value);
781 fields = TREE_CHAIN (fields);
782
783 fn = build_decl (FUNCTION_DECL,
784 get_identifier (ctr_merge_functions[counter]),
785 TREE_TYPE (TREE_TYPE (fields)));
786 DECL_EXTERNAL (fn) = 1;
787 TREE_PUBLIC (fn) = 1;
788 DECL_ARTIFICIAL (fn) = 1;
789 TREE_NOTHROW (fn) = 1;
790 value = tree_cons (fields,
791 build1 (ADDR_EXPR, TREE_TYPE (fields), fn),
792 value);
793
794 /* FIXME: use build_constructor directly. */
795 value = build_constructor_from_list (type, nreverse (value));
796
797 return value;
798 }
799
800 /* Creates the gcov_info RECORD_TYPE and initializer for it. Returns a
801 CONSTRUCTOR. */
802
803 static tree
804 build_gcov_info (void)
805 {
806 unsigned n_ctr_types, ix;
807 tree type, const_type;
808 tree fn_info_type, fn_info_value = NULL_TREE;
809 tree fn_info_ptr_type;
810 tree ctr_info_type, ctr_info_ary_type, ctr_info_value = NULL_TREE;
811 tree field, fields = NULL_TREE;
812 tree value = NULL_TREE;
813 tree filename_string;
814 int da_file_name_len;
815 unsigned n_fns;
816 const struct function_list *fn;
817 tree string_type;
818
819 /* Count the number of active counters. */
820 for (n_ctr_types = 0, ix = 0; ix != GCOV_COUNTERS; ix++)
821 if (prg_ctr_mask & (1 << ix))
822 n_ctr_types++;
823
824 type = lang_hooks.types.make_type (RECORD_TYPE);
825 const_type = build_qualified_type (type, TYPE_QUAL_CONST);
826
827 /* Version ident */
828 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
829 TREE_CHAIN (field) = fields;
830 fields = field;
831 value = tree_cons (field, build_int_cstu (TREE_TYPE (field), GCOV_VERSION),
832 value);
833
834 /* next -- NULL */
835 field = build_decl (FIELD_DECL, NULL_TREE, build_pointer_type (const_type));
836 TREE_CHAIN (field) = fields;
837 fields = field;
838 value = tree_cons (field, null_pointer_node, value);
839
840 /* stamp */
841 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
842 TREE_CHAIN (field) = fields;
843 fields = field;
844 value = tree_cons (field, build_int_cstu (TREE_TYPE (field), local_tick),
845 value);
846
847 /* Filename */
848 string_type = build_pointer_type (build_qualified_type (char_type_node,
849 TYPE_QUAL_CONST));
850 field = build_decl (FIELD_DECL, NULL_TREE, string_type);
851 TREE_CHAIN (field) = fields;
852 fields = field;
853 da_file_name_len = strlen (da_file_name);
854 filename_string = build_string (da_file_name_len + 1, da_file_name);
855 TREE_TYPE (filename_string) = build_array_type
856 (char_type_node, build_index_type
857 (build_int_cst (NULL_TREE, da_file_name_len)));
858 value = tree_cons (field, build1 (ADDR_EXPR, string_type, filename_string),
859 value);
860
861 /* Build the fn_info type and initializer. */
862 fn_info_type = build_fn_info_type (n_ctr_types);
863 fn_info_ptr_type = build_pointer_type (build_qualified_type
864 (fn_info_type, TYPE_QUAL_CONST));
865 for (fn = functions_head, n_fns = 0; fn; fn = fn->next, n_fns++)
866 fn_info_value = tree_cons (NULL_TREE,
867 build_fn_info_value (fn, fn_info_type),
868 fn_info_value);
869 if (n_fns)
870 {
871 tree array_type;
872
873 array_type = build_index_type (build_int_cst (NULL_TREE, n_fns - 1));
874 array_type = build_array_type (fn_info_type, array_type);
875
876 /* FIXME: use build_constructor directly. */
877 fn_info_value = build_constructor_from_list (array_type,
878 nreverse (fn_info_value));
879 fn_info_value = build1 (ADDR_EXPR, fn_info_ptr_type, fn_info_value);
880 }
881 else
882 fn_info_value = null_pointer_node;
883
884 /* number of functions */
885 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
886 TREE_CHAIN (field) = fields;
887 fields = field;
888 value = tree_cons (field,
889 build_int_cstu (get_gcov_unsigned_t (), n_fns),
890 value);
891
892 /* fn_info table */
893 field = build_decl (FIELD_DECL, NULL_TREE, fn_info_ptr_type);
894 TREE_CHAIN (field) = fields;
895 fields = field;
896 value = tree_cons (field, fn_info_value, value);
897
898 /* counter_mask */
899 field = build_decl (FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
900 TREE_CHAIN (field) = fields;
901 fields = field;
902 value = tree_cons (field,
903 build_int_cstu (get_gcov_unsigned_t (), prg_ctr_mask),
904 value);
905
906 /* counters */
907 ctr_info_type = build_ctr_info_type ();
908 ctr_info_ary_type = build_index_type (build_int_cst (NULL_TREE,
909 n_ctr_types));
910 ctr_info_ary_type = build_array_type (ctr_info_type, ctr_info_ary_type);
911 for (ix = 0; ix != GCOV_COUNTERS; ix++)
912 if (prg_ctr_mask & (1 << ix))
913 ctr_info_value = tree_cons (NULL_TREE,
914 build_ctr_info_value (ix, ctr_info_type),
915 ctr_info_value);
916 /* FIXME: use build_constructor directly. */
917 ctr_info_value = build_constructor_from_list (ctr_info_ary_type,
918 nreverse (ctr_info_value));
919
920 field = build_decl (FIELD_DECL, NULL_TREE, ctr_info_ary_type);
921 TREE_CHAIN (field) = fields;
922 fields = field;
923 value = tree_cons (field, ctr_info_value, value);
924
925 finish_builtin_struct (type, "__gcov_info", fields, NULL_TREE);
926
927 /* FIXME: use build_constructor directly. */
928 value = build_constructor_from_list (type, nreverse (value));
929
930 return value;
931 }
932
933 /* Write out the structure which libgcov uses to locate all the
934 counters. The structures used here must match those defined in
935 gcov-io.h. Write out the constructor to call __gcov_init. */
936
937 static void
938 create_coverage (void)
939 {
940 tree gcov_info, gcov_init, body, t;
941 char name_buf[32];
942
943 no_coverage = 1; /* Disable any further coverage. */
944
945 if (!prg_ctr_mask)
946 return;
947
948 t = build_gcov_info ();
949
950 gcov_info = build_decl (VAR_DECL, NULL_TREE, TREE_TYPE (t));
951 TREE_STATIC (gcov_info) = 1;
952 ASM_GENERATE_INTERNAL_LABEL (name_buf, "LPBX", 0);
953 DECL_NAME (gcov_info) = get_identifier (name_buf);
954 DECL_INITIAL (gcov_info) = t;
955
956 /* Build structure. */
957 assemble_variable (gcov_info, 0, 0, 0);
958
959 /* Build a decl for __gcov_init. */
960 t = build_pointer_type (TREE_TYPE (gcov_info));
961 t = build_function_type_list (void_type_node, t, NULL);
962 t = build_decl (FUNCTION_DECL, get_identifier ("__gcov_init"), t);
963 TREE_PUBLIC (t) = 1;
964 DECL_EXTERNAL (t) = 1;
965 gcov_init = t;
966
967 /* Generate a call to __gcov_init(&gcov_info). */
968 body = NULL;
969 t = build_fold_addr_expr (gcov_info);
970 t = build_call_expr (gcov_init, 1, t);
971 append_to_statement_list (t, &body);
972
973 /* Generate a constructor to run it. */
974 cgraph_build_static_cdtor ('I', body, DEFAULT_INIT_PRIORITY);
975 }
976 \f
977 /* Perform file-level initialization. Read in data file, generate name
978 of graph file. */
979
980 void
981 coverage_init (const char *filename)
982 {
983 int len = strlen (filename);
984 /* + 1 for extra '/', in case prefix doesn't end with /. */
985 int prefix_len;
986
987 if (profile_data_prefix == 0 && filename[0] != '/')
988 profile_data_prefix = getpwd ();
989
990 prefix_len = (profile_data_prefix) ? strlen (profile_data_prefix) + 1 : 0;
991
992 /* Name of da file. */
993 da_file_name = XNEWVEC (char, len + strlen (GCOV_DATA_SUFFIX)
994 + prefix_len + 1);
995
996 if (profile_data_prefix)
997 {
998 strcpy (da_file_name, profile_data_prefix);
999 da_file_name[prefix_len - 1] = '/';
1000 da_file_name[prefix_len] = 0;
1001 }
1002 else
1003 da_file_name[0] = 0;
1004 strcat (da_file_name, filename);
1005 strcat (da_file_name, GCOV_DATA_SUFFIX);
1006
1007 /* Name of bbg file. */
1008 bbg_file_name = XNEWVEC (char, len + strlen (GCOV_NOTE_SUFFIX) + 1);
1009 strcpy (bbg_file_name, filename);
1010 strcat (bbg_file_name, GCOV_NOTE_SUFFIX);
1011
1012 if (flag_profile_use)
1013 read_counts_file ();
1014 }
1015
1016 /* Performs file-level cleanup. Close graph file, generate coverage
1017 variables and constructor. */
1018
1019 void
1020 coverage_finish (void)
1021 {
1022 create_coverage ();
1023 if (bbg_file_opened)
1024 {
1025 int error = gcov_close ();
1026
1027 if (error)
1028 unlink (bbg_file_name);
1029 if (!local_tick)
1030 /* Only remove the da file, if we cannot stamp it. If we can
1031 stamp it, libgcov will DTRT. */
1032 unlink (da_file_name);
1033 }
1034 }
1035
1036 #include "gt-coverage.h"