use auto_bitmap more
[gcc.git] / gcc / ipa-reference.c
1 /* Callgraph based analysis of static variables.
2 Copyright (C) 2004-2017 Free Software Foundation, Inc.
3 Contributed by Kenneth Zadeck <zadeck@naturalbridge.com>
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 /* This file gathers information about how variables whose scope is
22 confined to the compilation unit are used.
23
24 The transitive call site specific clobber effects are computed
25 for the variables whose scope is contained within this compilation
26 unit.
27
28 First each function and static variable initialization is analyzed
29 to determine which local static variables are either read, written,
30 or have their address taken. Any local static that has its address
31 taken is removed from consideration. Once the local read and
32 writes are determined, a transitive closure of this information is
33 performed over the call graph to determine the worst case set of
34 side effects of each call. In later parts of the compiler, these
35 local and global sets are examined to make the call clobbering less
36 traumatic, promote some statics to registers, and improve aliasing
37 information. */
38
39 #include "config.h"
40 #include "system.h"
41 #include "coretypes.h"
42 #include "backend.h"
43 #include "tree.h"
44 #include "gimple.h"
45 #include "tree-pass.h"
46 #include "cgraph.h"
47 #include "data-streamer.h"
48 #include "calls.h"
49 #include "splay-tree.h"
50 #include "ipa-utils.h"
51 #include "ipa-reference.h"
52
53 static void remove_node_data (struct cgraph_node *node,
54 void *data ATTRIBUTE_UNUSED);
55 static void duplicate_node_data (struct cgraph_node *src,
56 struct cgraph_node *dst,
57 void *data ATTRIBUTE_UNUSED);
58
59 /* The static variables defined within the compilation unit that are
60 loaded or stored directly by function that owns this structure. */
61
62 struct ipa_reference_local_vars_info_d
63 {
64 bitmap statics_read;
65 bitmap statics_written;
66 };
67
68 /* Statics that are read and written by some set of functions. The
69 local ones are based on the loads and stores local to the function.
70 The global ones are based on the local info as well as the
71 transitive closure of the functions that are called. */
72
73 struct ipa_reference_global_vars_info_d
74 {
75 bitmap statics_read;
76 bitmap statics_written;
77 };
78
79 /* Information we save about every function after ipa-reference is completed. */
80
81 struct ipa_reference_optimization_summary_d
82 {
83 bitmap statics_not_read;
84 bitmap statics_not_written;
85 };
86
87 typedef struct ipa_reference_local_vars_info_d *ipa_reference_local_vars_info_t;
88 typedef struct ipa_reference_global_vars_info_d *ipa_reference_global_vars_info_t;
89 typedef struct ipa_reference_optimization_summary_d *ipa_reference_optimization_summary_t;
90
91 struct ipa_reference_vars_info_d
92 {
93 struct ipa_reference_local_vars_info_d local;
94 struct ipa_reference_global_vars_info_d global;
95 };
96
97 typedef struct ipa_reference_vars_info_d *ipa_reference_vars_info_t;
98
99 /* This splay tree contains all of the static variables that are
100 being considered by the compilation level alias analysis. */
101 static splay_tree reference_vars_to_consider;
102
103 /* Set of all interesting module statics. A bit is set for every module
104 static we are considering. This is added to the local info when asm
105 code is found that clobbers all memory. */
106 static bitmap all_module_statics;
107 /* Set of all statics that should be ignored because they are touched by
108 -fno-ipa-reference code. */
109 static bitmap ignore_module_statics;
110
111 /* Obstack holding bitmaps of local analysis (live from analysis to
112 propagation) */
113 static bitmap_obstack local_info_obstack;
114 /* Obstack holding global analysis live forever. */
115 static bitmap_obstack optimization_summary_obstack;
116
117 /* Holders of ipa cgraph hooks: */
118 static struct cgraph_2node_hook_list *node_duplication_hook_holder;
119 static struct cgraph_node_hook_list *node_removal_hook_holder;
120
121 /* Vector where the reference var infos are actually stored.
122 Indexed by UID of call graph nodes. */
123 static vec<ipa_reference_vars_info_t> ipa_reference_vars_vector;
124
125 /* TODO: find a place where we should release the vector. */
126 static vec<ipa_reference_optimization_summary_t> ipa_reference_opt_sum_vector;
127
128 /* Return the ipa_reference_vars structure starting from the cgraph NODE. */
129 static inline ipa_reference_vars_info_t
130 get_reference_vars_info (struct cgraph_node *node)
131 {
132 if (!ipa_reference_vars_vector.exists ()
133 || ipa_reference_vars_vector.length () <= (unsigned int) node->uid)
134 return NULL;
135 return ipa_reference_vars_vector[node->uid];
136 }
137
138 /* Return the ipa_reference_vars structure starting from the cgraph NODE. */
139 static inline ipa_reference_optimization_summary_t
140 get_reference_optimization_summary (struct cgraph_node *node)
141 {
142 if (!ipa_reference_opt_sum_vector.exists ()
143 || (ipa_reference_opt_sum_vector.length () <= (unsigned int) node->uid))
144 return NULL;
145 return ipa_reference_opt_sum_vector[node->uid];
146 }
147
148 /* Return the ipa_reference_vars structure starting from the cgraph NODE. */
149 static inline void
150 set_reference_vars_info (struct cgraph_node *node,
151 ipa_reference_vars_info_t info)
152 {
153 if (!ipa_reference_vars_vector.exists ()
154 || ipa_reference_vars_vector.length () <= (unsigned int) node->uid)
155 ipa_reference_vars_vector.safe_grow_cleared (node->uid + 1);
156 ipa_reference_vars_vector[node->uid] = info;
157 }
158
159 /* Return the ipa_reference_vars structure starting from the cgraph NODE. */
160 static inline void
161 set_reference_optimization_summary (struct cgraph_node *node,
162 ipa_reference_optimization_summary_t info)
163 {
164 if (!ipa_reference_opt_sum_vector.exists ()
165 || (ipa_reference_opt_sum_vector.length () <= (unsigned int) node->uid))
166 ipa_reference_opt_sum_vector.safe_grow_cleared (node->uid + 1);
167 ipa_reference_opt_sum_vector[node->uid] = info;
168 }
169
170 /* Return a bitmap indexed by ipa_reference_var_uid for the static variables
171 that are *not* read during the execution of the function FN. Returns
172 NULL if no data is available. */
173
174 bitmap
175 ipa_reference_get_not_read_global (struct cgraph_node *fn)
176 {
177 if (!opt_for_fn (current_function_decl, flag_ipa_reference))
178 return NULL;
179
180 enum availability avail;
181 struct cgraph_node *fn2 = fn->function_symbol (&avail);
182 ipa_reference_optimization_summary_t info =
183 get_reference_optimization_summary (fn2);
184
185 if (info
186 && (avail >= AVAIL_AVAILABLE
187 || (avail == AVAIL_INTERPOSABLE
188 && flags_from_decl_or_type (fn->decl) & ECF_LEAF))
189 && opt_for_fn (fn2->decl, flag_ipa_reference))
190 return info->statics_not_read;
191 else if (avail == AVAIL_NOT_AVAILABLE
192 && flags_from_decl_or_type (fn->decl) & ECF_LEAF)
193 return all_module_statics;
194 else
195 return NULL;
196 }
197
198 /* Return a bitmap indexed by ipa_reference_var_uid for the static variables
199 that are *not* written during the execution of the function FN. Note
200 that variables written may or may not be read during the function
201 call. Returns NULL if no data is available. */
202
203 bitmap
204 ipa_reference_get_not_written_global (struct cgraph_node *fn)
205 {
206 if (!opt_for_fn (current_function_decl, flag_ipa_reference))
207 return NULL;
208
209 enum availability avail;
210 struct cgraph_node *fn2 = fn->function_symbol (&avail);
211 ipa_reference_optimization_summary_t info =
212 get_reference_optimization_summary (fn2);
213
214 if (info
215 && (avail >= AVAIL_AVAILABLE
216 || (avail == AVAIL_INTERPOSABLE
217 && flags_from_decl_or_type (fn->decl) & ECF_LEAF))
218 && opt_for_fn (fn2->decl, flag_ipa_reference))
219 return info->statics_not_written;
220 else if (avail == AVAIL_NOT_AVAILABLE
221 && flags_from_decl_or_type (fn->decl) & ECF_LEAF)
222 return all_module_statics;
223 else
224 return NULL;
225 }
226 \f
227
228 /* Hepler for is_proper_for_analysis. */
229 static bool
230 is_improper (symtab_node *n, void *v ATTRIBUTE_UNUSED)
231 {
232 tree t = n->decl;
233 /* If the variable has the "used" attribute, treat it as if it had a
234 been touched by the devil. */
235 if (DECL_PRESERVE_P (t))
236 return true;
237
238 /* Do not want to do anything with volatile except mark any
239 function that uses one to be not const or pure. */
240 if (TREE_THIS_VOLATILE (t))
241 return true;
242
243 /* We do not need to analyze readonly vars, we already know they do not
244 alias. */
245 if (TREE_READONLY (t))
246 return true;
247
248 /* We can not track variables with address taken. */
249 if (TREE_ADDRESSABLE (t))
250 return true;
251
252 /* TODO: We could track public variables that are not addressable, but
253 currently frontends don't give us those. */
254 if (TREE_PUBLIC (t))
255 return true;
256
257 return false;
258 }
259
260 /* Return true if the variable T is the right kind of static variable to
261 perform compilation unit scope escape analysis. */
262
263 static inline bool
264 is_proper_for_analysis (tree t)
265 {
266 if (bitmap_bit_p (ignore_module_statics, ipa_reference_var_uid (t)))
267 return false;
268
269 if (symtab_node::get (t)
270 ->call_for_symbol_and_aliases (is_improper, NULL, true))
271 return false;
272
273 return true;
274 }
275
276 /* Lookup the tree node for the static variable that has UID and
277 convert the name to a string for debugging. */
278
279 static const char *
280 get_static_name (int index)
281 {
282 splay_tree_node stn =
283 splay_tree_lookup (reference_vars_to_consider, index);
284 return fndecl_name ((tree)(stn->value));
285 }
286
287 /* Dump a set of static vars to FILE. */
288 static void
289 dump_static_vars_set_to_file (FILE *f, bitmap set)
290 {
291 unsigned int index;
292 bitmap_iterator bi;
293 if (set == NULL)
294 return;
295 else if (set == all_module_statics)
296 fprintf (f, "ALL");
297 else
298 EXECUTE_IF_SET_IN_BITMAP (set, 0, index, bi)
299 {
300 fprintf (f, "%s ", get_static_name (index));
301 }
302 }
303
304 /* Compute X |= Y, taking into account the possibility that
305 either X or Y is already the maximum set.
306 Return true if X is the maximum set after taking the union with Y. */
307
308 static bool
309 union_static_var_sets (bitmap &x, bitmap y)
310 {
311 if (x != all_module_statics)
312 {
313 if (y == all_module_statics)
314 {
315 BITMAP_FREE (x);
316 x = all_module_statics;
317 }
318 else if (bitmap_ior_into (x, y))
319 {
320 /* The union may have reduced X to the maximum set.
321 In that case, we want to make that visible explicitly.
322 Even though bitmap_equal_p can be very expensive, it
323 turns out to be an overall win to check this here for
324 an LTO bootstrap of GCC itself. Liberally extrapoliate
325 that result to be applicable to all cases. */
326 if (bitmap_equal_p (x, all_module_statics))
327 {
328 BITMAP_FREE (x);
329 x = all_module_statics;
330 }
331 }
332 }
333 return x == all_module_statics;
334 }
335
336 /* Return a copy of SET on the bitmap obstack containing SET.
337 But if SET is NULL or the maximum set, return that instead. */
338
339 static bitmap
340 copy_static_var_set (bitmap set)
341 {
342 if (set == NULL || set == all_module_statics)
343 return set;
344 bitmap_obstack *o = set->obstack;
345 gcc_checking_assert (o);
346 bitmap copy = BITMAP_ALLOC (o);
347 bitmap_copy (copy, set);
348 return copy;
349 }
350
351 /* Compute the union all of the statics read and written by every callee of X
352 into X_GLOBAL->statics_read and X_GLOBAL->statics_written. X_GLOBAL is
353 actually the set representing the cycle containing X. If the read and
354 written sets of X_GLOBAL has been reduced to the maximum set, we don't
355 have to look at the remaining callees. */
356
357 static void
358 propagate_bits (ipa_reference_global_vars_info_t x_global, struct cgraph_node *x)
359 {
360 struct cgraph_edge *e;
361 bool read_all = x_global->statics_read == all_module_statics;
362 bool write_all = x_global->statics_written == all_module_statics;
363 for (e = x->callees;
364 e && !(read_all && write_all);
365 e = e->next_callee)
366 {
367 enum availability avail;
368 struct cgraph_node *y = e->callee->function_symbol (&avail);
369 if (!y)
370 continue;
371
372 /* Only look into nodes we can propagate something. */
373 int flags = flags_from_decl_or_type (y->decl);
374 if (opt_for_fn (y->decl, flag_ipa_reference)
375 && (avail > AVAIL_INTERPOSABLE
376 || (avail == AVAIL_INTERPOSABLE && (flags & ECF_LEAF))))
377 {
378 if (get_reference_vars_info (y))
379 {
380 ipa_reference_vars_info_t y_info = get_reference_vars_info (y);
381 ipa_reference_global_vars_info_t y_global = &y_info->global;
382
383 /* Calls in the current cycle do not have their global set
384 computed yet (but everything else does because we're
385 visiting nodes in topological order). */
386 if (!y_global->statics_read)
387 continue;
388
389 /* If the function is const, it reads no memory even if it
390 seems so to local analysis. */
391 if (flags & ECF_CONST)
392 continue;
393
394 union_static_var_sets (x_global->statics_read,
395 y_global->statics_read);
396
397 /* If the function is pure, it has no stores even if it
398 seems so to local analysis. If we cannot return from
399 the function, we can safely ignore the call. */
400 if ((flags & ECF_PURE)
401 || e->cannot_lead_to_return_p ())
402 continue;
403
404 union_static_var_sets (x_global->statics_written,
405 y_global->statics_written);
406 }
407 else
408 gcc_unreachable ();
409 }
410 }
411 }
412
413 static bool ipa_init_p = false;
414
415 /* The init routine for analyzing global static variable usage. See
416 comments at top for description. */
417 static void
418 ipa_init (void)
419 {
420 if (ipa_init_p)
421 return;
422
423 ipa_init_p = true;
424
425 if (dump_file)
426 reference_vars_to_consider = splay_tree_new (splay_tree_compare_ints, 0, 0);
427
428 bitmap_obstack_initialize (&local_info_obstack);
429 bitmap_obstack_initialize (&optimization_summary_obstack);
430 all_module_statics = BITMAP_ALLOC (&optimization_summary_obstack);
431 ignore_module_statics = BITMAP_ALLOC (&optimization_summary_obstack);
432
433 node_removal_hook_holder =
434 symtab->add_cgraph_removal_hook (&remove_node_data, NULL);
435 node_duplication_hook_holder =
436 symtab->add_cgraph_duplication_hook (&duplicate_node_data, NULL);
437 }
438
439
440 /* Set up the persistent info for FN. */
441
442 static ipa_reference_local_vars_info_t
443 init_function_info (struct cgraph_node *fn)
444 {
445 ipa_reference_vars_info_t info
446 = XCNEW (struct ipa_reference_vars_info_d);
447
448 /* Add the info to the tree's annotation. */
449 set_reference_vars_info (fn, info);
450
451 info->local.statics_read = BITMAP_ALLOC (&local_info_obstack);
452 info->local.statics_written = BITMAP_ALLOC (&local_info_obstack);
453
454 return &info->local;
455 }
456
457
458 /* This is the main routine for finding the reference patterns for
459 global variables within a function FN. */
460
461 static void
462 analyze_function (struct cgraph_node *fn)
463 {
464 ipa_reference_local_vars_info_t local;
465 struct ipa_ref *ref = NULL;
466 int i;
467 tree var;
468
469 if (!opt_for_fn (fn->decl, flag_ipa_reference))
470 return;
471 local = init_function_info (fn);
472 for (i = 0; fn->iterate_reference (i, ref); i++)
473 {
474 if (!is_a <varpool_node *> (ref->referred))
475 continue;
476 var = ref->referred->decl;
477 if (!is_proper_for_analysis (var))
478 continue;
479 /* This is a variable we care about. Check if we have seen it
480 before, and if not add it the set of variables we care about. */
481 if (all_module_statics
482 && bitmap_set_bit (all_module_statics, ipa_reference_var_uid (var)))
483 {
484 if (dump_file)
485 splay_tree_insert (reference_vars_to_consider,
486 ipa_reference_var_uid (var),
487 (splay_tree_value)var);
488 }
489 switch (ref->use)
490 {
491 case IPA_REF_LOAD:
492 bitmap_set_bit (local->statics_read, ipa_reference_var_uid (var));
493 break;
494 case IPA_REF_STORE:
495 if (ref->cannot_lead_to_return ())
496 break;
497 bitmap_set_bit (local->statics_written, ipa_reference_var_uid (var));
498 break;
499 case IPA_REF_ADDR:
500 break;
501 default:
502 gcc_unreachable ();
503 }
504 }
505
506 if (fn->cannot_return_p ())
507 bitmap_clear (local->statics_written);
508 }
509
510
511 /* Called when new clone is inserted to callgraph late. */
512
513 static void
514 duplicate_node_data (struct cgraph_node *src, struct cgraph_node *dst,
515 void *data ATTRIBUTE_UNUSED)
516 {
517 ipa_reference_optimization_summary_t ginfo;
518 ipa_reference_optimization_summary_t dst_ginfo;
519
520 ginfo = get_reference_optimization_summary (src);
521 if (!ginfo)
522 return;
523 dst_ginfo = XCNEW (struct ipa_reference_optimization_summary_d);
524 set_reference_optimization_summary (dst, dst_ginfo);
525 dst_ginfo->statics_not_read =
526 copy_static_var_set (ginfo->statics_not_read);
527 dst_ginfo->statics_not_written =
528 copy_static_var_set (ginfo->statics_not_written);
529 }
530
531 /* Called when node is removed. */
532
533 static void
534 remove_node_data (struct cgraph_node *node, void *data ATTRIBUTE_UNUSED)
535 {
536 ipa_reference_optimization_summary_t ginfo;
537 ginfo = get_reference_optimization_summary (node);
538 if (ginfo)
539 {
540 if (ginfo->statics_not_read
541 && ginfo->statics_not_read != all_module_statics)
542 BITMAP_FREE (ginfo->statics_not_read);
543
544 if (ginfo->statics_not_written
545 && ginfo->statics_not_written != all_module_statics)
546 BITMAP_FREE (ginfo->statics_not_written);
547 free (ginfo);
548 set_reference_optimization_summary (node, NULL);
549 }
550 }
551
552 /* Analyze each function in the cgraph to see which global or statics
553 are read or written. */
554
555 static void
556 generate_summary (void)
557 {
558 struct cgraph_node *node;
559 unsigned int index;
560 bitmap_iterator bi;
561
562 ipa_init ();
563
564 /* Process all of the functions next. */
565 FOR_EACH_DEFINED_FUNCTION (node)
566 if (!node->alias && !opt_for_fn (node->decl, flag_ipa_reference))
567 {
568 struct ipa_ref *ref = NULL;
569 int i;
570 tree var;
571 for (i = 0; node->iterate_reference (i, ref); i++)
572 {
573 if (!is_a <varpool_node *> (ref->referred))
574 continue;
575 var = ref->referred->decl;
576 if (!is_proper_for_analysis (var))
577 continue;
578 bitmap_set_bit (ignore_module_statics, ipa_reference_var_uid (var));
579 }
580 }
581 FOR_EACH_DEFINED_FUNCTION (node)
582 analyze_function (node);
583
584 if (dump_file)
585 EXECUTE_IF_SET_IN_BITMAP (all_module_statics, 0, index, bi)
586 {
587 fprintf (dump_file, "\nPromotable global:%s (uid=%u)\n",
588 get_static_name (index), index);
589 }
590
591 if (dump_file)
592 FOR_EACH_DEFINED_FUNCTION (node)
593 if (node->get_availability () >= AVAIL_INTERPOSABLE
594 && opt_for_fn (node->decl, flag_ipa_reference))
595 {
596 ipa_reference_local_vars_info_t l;
597 unsigned int index;
598 bitmap_iterator bi;
599
600 l = &get_reference_vars_info (node)->local;
601 fprintf (dump_file,
602 "\nFunction name:%s/%i:",
603 node->asm_name (), node->order);
604 fprintf (dump_file, "\n locals read: ");
605 if (l->statics_read)
606 EXECUTE_IF_SET_IN_BITMAP (l->statics_read,
607 0, index, bi)
608 {
609 fprintf (dump_file, "%s ",
610 get_static_name (index));
611 }
612 fprintf (dump_file, "\n locals written: ");
613 if (l->statics_written)
614 EXECUTE_IF_SET_IN_BITMAP (l->statics_written,
615 0, index, bi)
616 {
617 fprintf (dump_file, "%s ", get_static_name (index));
618 }
619 }
620 }
621 \f
622 /* Set READ_ALL/WRITE_ALL based on decl flags of NODE. */
623
624 static void
625 read_write_all_from_decl (struct cgraph_node *node,
626 bool &read_all, bool &write_all)
627 {
628 tree decl = node->decl;
629 int flags = flags_from_decl_or_type (decl);
630 if ((flags & ECF_LEAF)
631 && node->get_availability () < AVAIL_INTERPOSABLE)
632 ;
633 else if (flags & ECF_CONST)
634 ;
635 else if ((flags & ECF_PURE) || node->cannot_return_p ())
636 {
637 read_all = true;
638 if (dump_file && (dump_flags & TDF_DETAILS))
639 fprintf (dump_file, " %s/%i -> read all\n",
640 node->asm_name (), node->order);
641 }
642 else
643 {
644 /* TODO: To be able to produce sane results, we should also handle
645 common builtins, in particular throw. */
646 read_all = true;
647 write_all = true;
648 if (dump_file && (dump_flags & TDF_DETAILS))
649 fprintf (dump_file, " %s/%i -> read all, write all\n",
650 node->asm_name (), node->order);
651 }
652 }
653
654 /* Set READ_ALL/WRITE_ALL based on decl flags of NODE or any member
655 in the cycle of NODE. */
656
657 static void
658 get_read_write_all_from_node (struct cgraph_node *node,
659 bool &read_all, bool &write_all)
660 {
661 struct cgraph_edge *e, *ie;
662
663 /* When function is overwritable, we can not assume anything. */
664 if (node->get_availability () <= AVAIL_INTERPOSABLE
665 || (node->analyzed && !opt_for_fn (node->decl, flag_ipa_reference)))
666 read_write_all_from_decl (node, read_all, write_all);
667
668 for (e = node->callees;
669 e && !(read_all && write_all);
670 e = e->next_callee)
671 {
672 enum availability avail;
673 struct cgraph_node *callee = e->callee->function_symbol (&avail);
674 gcc_checking_assert (callee);
675 if (avail <= AVAIL_INTERPOSABLE
676 || (callee->analyzed && !opt_for_fn (callee->decl, flag_ipa_reference)))
677 read_write_all_from_decl (callee, read_all, write_all);
678 }
679
680 for (ie = node->indirect_calls;
681 ie && !(read_all && write_all);
682 ie = ie->next_callee)
683 if (!(ie->indirect_info->ecf_flags & ECF_CONST))
684 {
685 read_all = true;
686 if (dump_file && (dump_flags & TDF_DETAILS))
687 fprintf (dump_file, " indirect call -> read all\n");
688 if (!ie->cannot_lead_to_return_p ()
689 && !(ie->indirect_info->ecf_flags & ECF_PURE))
690 {
691 if (dump_file && (dump_flags & TDF_DETAILS))
692 fprintf (dump_file, " indirect call -> write all\n");
693 write_all = true;
694 }
695 }
696 }
697
698 /* Skip edges from and to nodes without ipa_reference enables. This leave
699 them out of strongy connected coponents and makes them easyto skip in the
700 propagation loop bellow. */
701
702 static bool
703 ignore_edge_p (cgraph_edge *e)
704 {
705 return (!opt_for_fn (e->caller->decl, flag_ipa_reference)
706 || !opt_for_fn (e->callee->function_symbol ()->decl,
707 flag_ipa_reference));
708 }
709
710 /* Produce the global information by preforming a transitive closure
711 on the local information that was produced by ipa_analyze_function. */
712
713 static unsigned int
714 propagate (void)
715 {
716 struct cgraph_node *node;
717 struct cgraph_node **order =
718 XCNEWVEC (struct cgraph_node *, symtab->cgraph_count);
719 int order_pos;
720 int i;
721 bool remove_p;
722
723 if (dump_file)
724 cgraph_node::dump_cgraph (dump_file);
725
726 remove_p = ipa_discover_readonly_nonaddressable_vars ();
727 generate_summary ();
728
729 /* Propagate the local information through the call graph to produce
730 the global information. All the nodes within a cycle will have
731 the same info so we collapse cycles first. Then we can do the
732 propagation in one pass from the leaves to the roots. */
733 order_pos = ipa_reduced_postorder (order, true, true, ignore_edge_p);
734 if (dump_file)
735 ipa_print_order (dump_file, "reduced", order, order_pos);
736
737 for (i = 0; i < order_pos; i++ )
738 {
739 unsigned x;
740 struct cgraph_node *w;
741 ipa_reference_vars_info_t node_info;
742 ipa_reference_global_vars_info_t node_g;
743 ipa_reference_local_vars_info_t node_l;
744 bool read_all = false;
745 bool write_all = false;
746
747 node = order[i];
748 if (node->alias || !opt_for_fn (node->decl, flag_ipa_reference))
749 continue;
750
751 node_info = get_reference_vars_info (node);
752 gcc_assert (node_info);
753 node_l = &node_info->local;
754 node_g = &node_info->global;
755
756 if (dump_file && (dump_flags & TDF_DETAILS))
757 fprintf (dump_file, "Starting cycle with %s/%i\n",
758 node->asm_name (), node->order);
759
760 vec<cgraph_node *> cycle_nodes = ipa_get_nodes_in_cycle (node);
761
762 /* If any node in a cycle is read_all or write_all, they all are. */
763 FOR_EACH_VEC_ELT (cycle_nodes, x, w)
764 {
765 if (dump_file && (dump_flags & TDF_DETAILS))
766 fprintf (dump_file, " Visiting %s/%i\n",
767 w->asm_name (), w->order);
768 get_read_write_all_from_node (w, read_all, write_all);
769 if (read_all && write_all)
770 break;
771 }
772
773 /* Initialized the bitmaps global sets for the reduced node. */
774 if (read_all)
775 node_g->statics_read = all_module_statics;
776 else
777 node_g->statics_read = copy_static_var_set (node_l->statics_read);
778 if (write_all)
779 node_g->statics_written = all_module_statics;
780 else
781 node_g->statics_written = copy_static_var_set (node_l->statics_written);
782
783 /* Merge the sets of this cycle with all sets of callees reached
784 from this cycle. */
785 FOR_EACH_VEC_ELT (cycle_nodes, x, w)
786 {
787 if (read_all && write_all)
788 break;
789
790 if (w != node)
791 {
792 ipa_reference_vars_info_t w_ri = get_reference_vars_info (w);
793 ipa_reference_local_vars_info_t w_l = &w_ri->local;
794 int flags = flags_from_decl_or_type (w->decl);
795
796 if (!(flags & ECF_CONST))
797 read_all = union_static_var_sets (node_g->statics_read,
798 w_l->statics_read);
799 if (!(flags & ECF_PURE)
800 && !w->cannot_return_p ())
801 write_all = union_static_var_sets (node_g->statics_written,
802 w_l->statics_written);
803 }
804
805 propagate_bits (node_g, w);
806 }
807
808 /* All nodes within a cycle have the same global info bitmaps. */
809 FOR_EACH_VEC_ELT (cycle_nodes, x, w)
810 {
811 ipa_reference_vars_info_t w_ri = get_reference_vars_info (w);
812 w_ri->global = *node_g;
813 }
814
815 cycle_nodes.release ();
816 }
817
818 if (dump_file)
819 {
820 for (i = 0; i < order_pos; i++)
821 {
822 unsigned x;
823 struct cgraph_node *w;
824
825 node = order[i];
826 if (node->alias || !opt_for_fn (node->decl, flag_ipa_reference))
827 continue;
828
829 fprintf (dump_file,
830 "\nFunction name:%s/%i:",
831 node->asm_name (), node->order);
832
833 ipa_reference_vars_info_t node_info = get_reference_vars_info (node);
834 ipa_reference_global_vars_info_t node_g = &node_info->global;
835
836 vec<cgraph_node *> cycle_nodes = ipa_get_nodes_in_cycle (node);
837 FOR_EACH_VEC_ELT (cycle_nodes, x, w)
838 {
839 ipa_reference_vars_info_t w_ri = get_reference_vars_info (w);
840 ipa_reference_local_vars_info_t w_l = &w_ri->local;
841 if (w != node)
842 fprintf (dump_file, "\n next cycle: %s/%i ",
843 w->asm_name (), w->order);
844 fprintf (dump_file, "\n locals read: ");
845 dump_static_vars_set_to_file (dump_file, w_l->statics_read);
846 fprintf (dump_file, "\n locals written: ");
847 dump_static_vars_set_to_file (dump_file, w_l->statics_written);
848 }
849 cycle_nodes.release ();
850
851 fprintf (dump_file, "\n globals read: ");
852 dump_static_vars_set_to_file (dump_file, node_g->statics_read);
853 fprintf (dump_file, "\n globals written: ");
854 dump_static_vars_set_to_file (dump_file, node_g->statics_written);
855 fprintf (dump_file, "\n");
856 }
857 }
858
859 /* Cleanup. */
860 FOR_EACH_DEFINED_FUNCTION (node)
861 {
862 ipa_reference_vars_info_t node_info;
863 ipa_reference_global_vars_info_t node_g;
864 ipa_reference_optimization_summary_t opt;
865
866 node_info = get_reference_vars_info (node);
867 if (!node->alias && opt_for_fn (node->decl, flag_ipa_reference)
868 && (node->get_availability () > AVAIL_INTERPOSABLE
869 || (flags_from_decl_or_type (node->decl) & ECF_LEAF)))
870 {
871 node_g = &node_info->global;
872
873 opt = XCNEW (struct ipa_reference_optimization_summary_d);
874 set_reference_optimization_summary (node, opt);
875
876 /* Create the complimentary sets. */
877
878 if (bitmap_empty_p (node_g->statics_read))
879 opt->statics_not_read = all_module_statics;
880 else
881 {
882 opt->statics_not_read
883 = BITMAP_ALLOC (&optimization_summary_obstack);
884 if (node_g->statics_read != all_module_statics)
885 bitmap_and_compl (opt->statics_not_read,
886 all_module_statics,
887 node_g->statics_read);
888 }
889
890 if (bitmap_empty_p (node_g->statics_written))
891 opt->statics_not_written = all_module_statics;
892 else
893 {
894 opt->statics_not_written
895 = BITMAP_ALLOC (&optimization_summary_obstack);
896 if (node_g->statics_written != all_module_statics)
897 bitmap_and_compl (opt->statics_not_written,
898 all_module_statics,
899 node_g->statics_written);
900 }
901 }
902 free (node_info);
903 }
904
905 ipa_free_postorder_info ();
906 free (order);
907
908 bitmap_obstack_release (&local_info_obstack);
909 ipa_reference_vars_vector.release ();
910 if (dump_file)
911 splay_tree_delete (reference_vars_to_consider);
912 reference_vars_to_consider = NULL;
913 return remove_p ? TODO_remove_functions : 0;
914 }
915
916 /* Return true if we need to write summary of NODE. */
917
918 static bool
919 write_node_summary_p (struct cgraph_node *node,
920 lto_symtab_encoder_t encoder,
921 bitmap ltrans_statics)
922 {
923 ipa_reference_optimization_summary_t info;
924
925 /* See if we have (non-empty) info. */
926 if (!node->definition || node->global.inlined_to)
927 return false;
928 info = get_reference_optimization_summary (node);
929 if (!info || (bitmap_empty_p (info->statics_not_read)
930 && bitmap_empty_p (info->statics_not_written)))
931 return false;
932
933 /* See if we want to encode it.
934 Encode also referenced functions since constant folding might turn it into
935 a direct call.
936
937 In future we might also want to include summaries of functions references
938 by initializers of constant variables references in current unit. */
939 if (!reachable_from_this_partition_p (node, encoder)
940 && !referenced_from_this_partition_p (node, encoder))
941 return false;
942
943 /* See if the info has non-empty intersections with vars we want to encode. */
944 if (!bitmap_intersect_p (info->statics_not_read, ltrans_statics)
945 && !bitmap_intersect_p (info->statics_not_written, ltrans_statics))
946 return false;
947 return true;
948 }
949
950 /* Stream out BITS&LTRANS_STATICS as list of decls to OB.
951 LTRANS_STATICS_BITCOUNT specify number of bits in LTRANS_STATICS
952 or -1. When it is positive, just output -1 when
953 BITS&LTRANS_STATICS == BITS&LTRANS_STATICS. */
954
955 static void
956 stream_out_bitmap (struct lto_simple_output_block *ob,
957 bitmap bits, bitmap ltrans_statics,
958 int ltrans_statics_bitcount)
959 {
960 int count = 0;
961 unsigned int index;
962 bitmap_iterator bi;
963 if (bits == all_module_statics)
964 {
965 streamer_write_hwi_stream (ob->main_stream, -1);
966 return;
967 }
968 EXECUTE_IF_AND_IN_BITMAP (bits, ltrans_statics, 0, index, bi)
969 count ++;
970 if (count == ltrans_statics_bitcount)
971 {
972 streamer_write_hwi_stream (ob->main_stream, -1);
973 return;
974 }
975 streamer_write_hwi_stream (ob->main_stream, count);
976 if (!count)
977 return;
978 EXECUTE_IF_AND_IN_BITMAP (bits, ltrans_statics, 0, index, bi)
979 {
980 tree decl = (tree)splay_tree_lookup (reference_vars_to_consider, index)->value;
981 lto_output_var_decl_index (ob->decl_state, ob->main_stream, decl);
982 }
983 }
984
985 /* Serialize the ipa info for lto. */
986
987 static void
988 ipa_reference_write_optimization_summary (void)
989 {
990 struct lto_simple_output_block *ob
991 = lto_create_simple_output_block (LTO_section_ipa_reference);
992 unsigned int count = 0;
993 int ltrans_statics_bitcount = 0;
994 lto_symtab_encoder_t encoder = ob->decl_state->symtab_node_encoder;
995 auto_bitmap ltrans_statics;
996 int i;
997
998 reference_vars_to_consider = splay_tree_new (splay_tree_compare_ints, 0, 0);
999
1000 /* See what variables we are interested in. */
1001 for (i = 0; i < lto_symtab_encoder_size (encoder); i++)
1002 {
1003 symtab_node *snode = lto_symtab_encoder_deref (encoder, i);
1004 varpool_node *vnode = dyn_cast <varpool_node *> (snode);
1005 if (vnode
1006 && bitmap_bit_p (all_module_statics,
1007 ipa_reference_var_uid (vnode->decl))
1008 && referenced_from_this_partition_p (vnode, encoder))
1009 {
1010 tree decl = vnode->decl;
1011 bitmap_set_bit (ltrans_statics, ipa_reference_var_uid (decl));
1012 splay_tree_insert (reference_vars_to_consider,
1013 ipa_reference_var_uid (decl),
1014 (splay_tree_value)decl);
1015 ltrans_statics_bitcount ++;
1016 }
1017 }
1018
1019
1020 if (ltrans_statics_bitcount)
1021 for (i = 0; i < lto_symtab_encoder_size (encoder); i++)
1022 {
1023 symtab_node *snode = lto_symtab_encoder_deref (encoder, i);
1024 cgraph_node *cnode = dyn_cast <cgraph_node *> (snode);
1025 if (cnode && write_node_summary_p (cnode, encoder, ltrans_statics))
1026 count++;
1027 }
1028
1029 streamer_write_uhwi_stream (ob->main_stream, count);
1030 if (count)
1031 stream_out_bitmap (ob, ltrans_statics, ltrans_statics,
1032 -1);
1033
1034 /* Process all of the functions. */
1035 if (ltrans_statics_bitcount)
1036 for (i = 0; i < lto_symtab_encoder_size (encoder); i++)
1037 {
1038 symtab_node *snode = lto_symtab_encoder_deref (encoder, i);
1039 cgraph_node *cnode = dyn_cast <cgraph_node *> (snode);
1040 if (cnode && write_node_summary_p (cnode, encoder, ltrans_statics))
1041 {
1042 ipa_reference_optimization_summary_t info;
1043 int node_ref;
1044
1045 info = get_reference_optimization_summary (cnode);
1046 node_ref = lto_symtab_encoder_encode (encoder, snode);
1047 streamer_write_uhwi_stream (ob->main_stream, node_ref);
1048
1049 stream_out_bitmap (ob, info->statics_not_read, ltrans_statics,
1050 ltrans_statics_bitcount);
1051 stream_out_bitmap (ob, info->statics_not_written, ltrans_statics,
1052 ltrans_statics_bitcount);
1053 }
1054 }
1055 lto_destroy_simple_output_block (ob);
1056 splay_tree_delete (reference_vars_to_consider);
1057 }
1058
1059 /* Deserialize the ipa info for lto. */
1060
1061 static void
1062 ipa_reference_read_optimization_summary (void)
1063 {
1064 struct lto_file_decl_data ** file_data_vec
1065 = lto_get_file_decl_data ();
1066 struct lto_file_decl_data * file_data;
1067 unsigned int j = 0;
1068 bitmap_obstack_initialize (&optimization_summary_obstack);
1069
1070 node_removal_hook_holder =
1071 symtab->add_cgraph_removal_hook (&remove_node_data, NULL);
1072 node_duplication_hook_holder =
1073 symtab->add_cgraph_duplication_hook (&duplicate_node_data, NULL);
1074 all_module_statics = BITMAP_ALLOC (&optimization_summary_obstack);
1075
1076 while ((file_data = file_data_vec[j++]))
1077 {
1078 const char *data;
1079 size_t len;
1080 struct lto_input_block *ib
1081 = lto_create_simple_input_block (file_data,
1082 LTO_section_ipa_reference,
1083 &data, &len);
1084 if (ib)
1085 {
1086 unsigned int i;
1087 unsigned int f_count = streamer_read_uhwi (ib);
1088 int b_count;
1089 if (!f_count)
1090 continue;
1091 b_count = streamer_read_hwi (ib);
1092 if (dump_file)
1093 fprintf (dump_file, "all module statics:");
1094 for (i = 0; i < (unsigned int)b_count; i++)
1095 {
1096 unsigned int var_index = streamer_read_uhwi (ib);
1097 tree v_decl = lto_file_decl_data_get_var_decl (file_data,
1098 var_index);
1099 bitmap_set_bit (all_module_statics,
1100 ipa_reference_var_uid (v_decl));
1101 if (dump_file)
1102 fprintf (dump_file, " %s", fndecl_name (v_decl));
1103 }
1104
1105 for (i = 0; i < f_count; i++)
1106 {
1107 unsigned int j, index;
1108 struct cgraph_node *node;
1109 ipa_reference_optimization_summary_t info;
1110 int v_count;
1111 lto_symtab_encoder_t encoder;
1112
1113 index = streamer_read_uhwi (ib);
1114 encoder = file_data->symtab_node_encoder;
1115 node = dyn_cast<cgraph_node *> (lto_symtab_encoder_deref
1116 (encoder, index));
1117 info = XCNEW (struct ipa_reference_optimization_summary_d);
1118 set_reference_optimization_summary (node, info);
1119 info->statics_not_read = BITMAP_ALLOC (&optimization_summary_obstack);
1120 info->statics_not_written = BITMAP_ALLOC (&optimization_summary_obstack);
1121 if (dump_file)
1122 fprintf (dump_file,
1123 "\nFunction name:%s/%i:\n static not read:",
1124 node->asm_name (), node->order);
1125
1126 /* Set the statics not read. */
1127 v_count = streamer_read_hwi (ib);
1128 if (v_count == -1)
1129 {
1130 info->statics_not_read = all_module_statics;
1131 if (dump_file)
1132 fprintf (dump_file, " all module statics");
1133 }
1134 else
1135 for (j = 0; j < (unsigned int)v_count; j++)
1136 {
1137 unsigned int var_index = streamer_read_uhwi (ib);
1138 tree v_decl = lto_file_decl_data_get_var_decl (file_data,
1139 var_index);
1140 bitmap_set_bit (info->statics_not_read,
1141 ipa_reference_var_uid (v_decl));
1142 if (dump_file)
1143 fprintf (dump_file, " %s", fndecl_name (v_decl));
1144 }
1145
1146 if (dump_file)
1147 fprintf (dump_file,
1148 "\n static not written:");
1149 /* Set the statics not written. */
1150 v_count = streamer_read_hwi (ib);
1151 if (v_count == -1)
1152 {
1153 info->statics_not_written = all_module_statics;
1154 if (dump_file)
1155 fprintf (dump_file, " all module statics");
1156 }
1157 else
1158 for (j = 0; j < (unsigned int)v_count; j++)
1159 {
1160 unsigned int var_index = streamer_read_uhwi (ib);
1161 tree v_decl = lto_file_decl_data_get_var_decl (file_data,
1162 var_index);
1163 bitmap_set_bit (info->statics_not_written,
1164 ipa_reference_var_uid (v_decl));
1165 if (dump_file)
1166 fprintf (dump_file, " %s", fndecl_name (v_decl));
1167 }
1168 if (dump_file)
1169 fprintf (dump_file, "\n");
1170 }
1171
1172 lto_destroy_simple_input_block (file_data,
1173 LTO_section_ipa_reference,
1174 ib, data, len);
1175 }
1176 else
1177 /* Fatal error here. We do not want to support compiling ltrans units with
1178 different version of compiler or different flags than the WPA unit, so
1179 this should never happen. */
1180 fatal_error (input_location,
1181 "ipa reference summary is missing in ltrans unit");
1182 }
1183 }
1184
1185 namespace {
1186
1187 const pass_data pass_data_ipa_reference =
1188 {
1189 IPA_PASS, /* type */
1190 "static-var", /* name */
1191 OPTGROUP_NONE, /* optinfo_flags */
1192 TV_IPA_REFERENCE, /* tv_id */
1193 0, /* properties_required */
1194 0, /* properties_provided */
1195 0, /* properties_destroyed */
1196 0, /* todo_flags_start */
1197 0, /* todo_flags_finish */
1198 };
1199
1200 class pass_ipa_reference : public ipa_opt_pass_d
1201 {
1202 public:
1203 pass_ipa_reference (gcc::context *ctxt)
1204 : ipa_opt_pass_d (pass_data_ipa_reference, ctxt,
1205 NULL, /* generate_summary */
1206 NULL, /* write_summary */
1207 NULL, /* read_summary */
1208 ipa_reference_write_optimization_summary, /*
1209 write_optimization_summary */
1210 ipa_reference_read_optimization_summary, /*
1211 read_optimization_summary */
1212 NULL, /* stmt_fixup */
1213 0, /* function_transform_todo_flags_start */
1214 NULL, /* function_transform */
1215 NULL) /* variable_transform */
1216 {}
1217
1218 /* opt_pass methods: */
1219 virtual bool gate (function *)
1220 {
1221 return ((in_lto_p || flag_ipa_reference)
1222 /* Don't bother doing anything if the program has errors. */
1223 && !seen_error ());
1224 }
1225
1226 virtual unsigned int execute (function *) { return propagate (); }
1227
1228 }; // class pass_ipa_reference
1229
1230 } // anon namespace
1231
1232 ipa_opt_pass_d *
1233 make_pass_ipa_reference (gcc::context *ctxt)
1234 {
1235 return new pass_ipa_reference (ctxt);
1236 }
1237
1238 /* Reset all state within ipa-reference.c so that we can rerun the compiler
1239 within the same process. For use by toplev::finalize. */
1240
1241 void
1242 ipa_reference_c_finalize (void)
1243 {
1244 if (ipa_init_p)
1245 {
1246 bitmap_obstack_release (&optimization_summary_obstack);
1247 ipa_init_p = false;
1248 }
1249
1250 if (node_removal_hook_holder)
1251 {
1252 symtab->remove_cgraph_removal_hook (node_removal_hook_holder);
1253 node_removal_hook_holder = NULL;
1254 }
1255 if (node_duplication_hook_holder)
1256 {
1257 symtab->remove_cgraph_duplication_hook (node_duplication_hook_holder);
1258 node_duplication_hook_holder = NULL;
1259 }
1260 }