PR target/58901: reload: Handle SUBREG of MEM with a mode-dependent address
[official-gcc.git] / gcc / cgraph.c
blobcb59a5a71fc0d18687697739a4f157f159c063b2
1 /* Callgraph handling code.
2 Copyright (C) 2003-2020 Free Software Foundation, Inc.
3 Contributed by Jan Hubicka
5 This file is part of GCC.
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.
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.
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/>. */
21 /* This file contains basic routines manipulating call graph
23 The call-graph is a data structure designed for inter-procedural
24 optimization. It represents a multi-graph where nodes are functions
25 (symbols within symbol table) and edges are call sites. */
27 #include "config.h"
28 #include "system.h"
29 #include "coretypes.h"
30 #include "backend.h"
31 #include "target.h"
32 #include "rtl.h"
33 #include "tree.h"
34 #include "gimple.h"
35 #include "predict.h"
36 #include "alloc-pool.h"
37 #include "gimple-ssa.h"
38 #include "cgraph.h"
39 #include "lto-streamer.h"
40 #include "fold-const.h"
41 #include "varasm.h"
42 #include "calls.h"
43 #include "print-tree.h"
44 #include "langhooks.h"
45 #include "intl.h"
46 #include "tree-eh.h"
47 #include "gimple-iterator.h"
48 #include "tree-cfg.h"
49 #include "tree-ssa.h"
50 #include "value-prof.h"
51 #include "ipa-utils.h"
52 #include "symbol-summary.h"
53 #include "tree-vrp.h"
54 #include "ipa-prop.h"
55 #include "ipa-fnsummary.h"
56 #include "cfgloop.h"
57 #include "gimple-pretty-print.h"
58 #include "tree-dfa.h"
59 #include "profile.h"
60 #include "context.h"
61 #include "gimplify.h"
62 #include "stringpool.h"
63 #include "attribs.h"
64 #include "selftest.h"
65 #include "tree-into-ssa.h"
66 #include "ipa-inline.h"
67 #include "tree-nested.h"
68 #include "symtab-thunks.h"
69 #include "symtab-clones.h"
71 /* FIXME: Only for PROP_loops, but cgraph shouldn't have to know about this. */
72 #include "tree-pass.h"
74 /* Queue of cgraph nodes scheduled to be lowered. */
75 symtab_node *x_cgraph_nodes_queue;
76 #define cgraph_nodes_queue ((cgraph_node *)x_cgraph_nodes_queue)
78 /* Symbol table global context. */
79 symbol_table *symtab;
81 /* List of hooks triggered on cgraph_edge events. */
82 struct cgraph_edge_hook_list {
83 cgraph_edge_hook hook;
84 void *data;
85 struct cgraph_edge_hook_list *next;
88 /* List of hooks triggered on cgraph_node events. */
89 struct cgraph_node_hook_list {
90 cgraph_node_hook hook;
91 void *data;
92 struct cgraph_node_hook_list *next;
95 /* List of hooks triggered on events involving two cgraph_edges. */
96 struct cgraph_2edge_hook_list {
97 cgraph_2edge_hook hook;
98 void *data;
99 struct cgraph_2edge_hook_list *next;
102 /* List of hooks triggered on events involving two cgraph_nodes. */
103 struct cgraph_2node_hook_list {
104 cgraph_2node_hook hook;
105 void *data;
106 struct cgraph_2node_hook_list *next;
109 /* Hash descriptor for cgraph_function_version_info. */
111 struct function_version_hasher : ggc_ptr_hash<cgraph_function_version_info>
113 static hashval_t hash (cgraph_function_version_info *);
114 static bool equal (cgraph_function_version_info *,
115 cgraph_function_version_info *);
118 /* Map a cgraph_node to cgraph_function_version_info using this htab.
119 The cgraph_function_version_info has a THIS_NODE field that is the
120 corresponding cgraph_node.. */
122 static GTY(()) hash_table<function_version_hasher> *cgraph_fnver_htab = NULL;
124 /* Hash function for cgraph_fnver_htab. */
125 hashval_t
126 function_version_hasher::hash (cgraph_function_version_info *ptr)
128 int uid = ptr->this_node->get_uid ();
129 return (hashval_t)(uid);
132 /* eq function for cgraph_fnver_htab. */
133 bool
134 function_version_hasher::equal (cgraph_function_version_info *n1,
135 cgraph_function_version_info *n2)
137 return n1->this_node->get_uid () == n2->this_node->get_uid ();
140 /* Mark as GC root all allocated nodes. */
141 static GTY(()) struct cgraph_function_version_info *
142 version_info_node = NULL;
144 /* Return true if NODE's address can be compared. */
146 bool
147 symtab_node::address_can_be_compared_p ()
149 /* Address of virtual tables and functions is never compared. */
150 if (DECL_VIRTUAL_P (decl))
151 return false;
152 /* Address of C++ cdtors is never compared. */
153 if (is_a <cgraph_node *> (this)
154 && (DECL_CXX_CONSTRUCTOR_P (decl)
155 || DECL_CXX_DESTRUCTOR_P (decl)))
156 return false;
157 /* Constant pool symbols addresses are never compared.
158 flag_merge_constants permits us to assume the same on readonly vars. */
159 if (is_a <varpool_node *> (this)
160 && (DECL_IN_CONSTANT_POOL (decl)
161 || (flag_merge_constants >= 2
162 && TREE_READONLY (decl) && !TREE_THIS_VOLATILE (decl))))
163 return false;
164 return true;
167 /* Get the cgraph_function_version_info node corresponding to node. */
168 cgraph_function_version_info *
169 cgraph_node::function_version (void)
171 cgraph_function_version_info key;
172 key.this_node = this;
174 if (cgraph_fnver_htab == NULL)
175 return NULL;
177 return cgraph_fnver_htab->find (&key);
180 /* Insert a new cgraph_function_version_info node into cgraph_fnver_htab
181 corresponding to cgraph_node NODE. */
182 cgraph_function_version_info *
183 cgraph_node::insert_new_function_version (void)
185 version_info_node = NULL;
186 version_info_node = ggc_cleared_alloc<cgraph_function_version_info> ();
187 version_info_node->this_node = this;
189 if (cgraph_fnver_htab == NULL)
190 cgraph_fnver_htab = hash_table<function_version_hasher>::create_ggc (2);
192 *cgraph_fnver_htab->find_slot (version_info_node, INSERT)
193 = version_info_node;
194 return version_info_node;
197 /* Remove the cgraph_function_version_info node given by DECL_V. */
198 static void
199 delete_function_version (cgraph_function_version_info *decl_v)
201 if (decl_v == NULL)
202 return;
204 if (version_info_node == decl_v)
205 version_info_node = NULL;
207 if (decl_v->prev != NULL)
208 decl_v->prev->next = decl_v->next;
210 if (decl_v->next != NULL)
211 decl_v->next->prev = decl_v->prev;
213 if (cgraph_fnver_htab != NULL)
214 cgraph_fnver_htab->remove_elt (decl_v);
217 /* Remove the cgraph_function_version_info and cgraph_node for DECL. This
218 DECL is a duplicate declaration. */
219 void
220 cgraph_node::delete_function_version_by_decl (tree decl)
222 cgraph_node *decl_node = cgraph_node::get (decl);
224 if (decl_node == NULL)
225 return;
227 delete_function_version (decl_node->function_version ());
229 decl_node->remove ();
232 /* Record that DECL1 and DECL2 are semantically identical function
233 versions. */
234 void
235 cgraph_node::record_function_versions (tree decl1, tree decl2)
237 cgraph_node *decl1_node = cgraph_node::get_create (decl1);
238 cgraph_node *decl2_node = cgraph_node::get_create (decl2);
239 cgraph_function_version_info *decl1_v = NULL;
240 cgraph_function_version_info *decl2_v = NULL;
241 cgraph_function_version_info *before;
242 cgraph_function_version_info *after;
244 gcc_assert (decl1_node != NULL && decl2_node != NULL);
245 decl1_v = decl1_node->function_version ();
246 decl2_v = decl2_node->function_version ();
248 if (decl1_v != NULL && decl2_v != NULL)
249 return;
251 if (decl1_v == NULL)
252 decl1_v = decl1_node->insert_new_function_version ();
254 if (decl2_v == NULL)
255 decl2_v = decl2_node->insert_new_function_version ();
257 /* Chain decl2_v and decl1_v. All semantically identical versions
258 will be chained together. */
260 before = decl1_v;
261 after = decl2_v;
263 while (before->next != NULL)
264 before = before->next;
266 while (after->prev != NULL)
267 after= after->prev;
269 before->next = after;
270 after->prev = before;
273 /* Initialize callgraph dump file. */
275 void
276 symbol_table::initialize (void)
278 if (!dump_file)
279 dump_file = dump_begin (TDI_cgraph, NULL);
281 if (!ipa_clones_dump_file)
282 ipa_clones_dump_file = dump_begin (TDI_clones, NULL);
285 /* Allocate new callgraph node and insert it into basic data structures. */
287 cgraph_node *
288 symbol_table::create_empty (void)
290 cgraph_count++;
291 return new (ggc_alloc<cgraph_node> ()) cgraph_node (cgraph_max_uid++);
294 /* Register HOOK to be called with DATA on each removed edge. */
295 cgraph_edge_hook_list *
296 symbol_table::add_edge_removal_hook (cgraph_edge_hook hook, void *data)
298 cgraph_edge_hook_list *entry;
299 cgraph_edge_hook_list **ptr = &m_first_edge_removal_hook;
301 entry = (cgraph_edge_hook_list *) xmalloc (sizeof (*entry));
302 entry->hook = hook;
303 entry->data = data;
304 entry->next = NULL;
305 while (*ptr)
306 ptr = &(*ptr)->next;
307 *ptr = entry;
308 return entry;
311 /* Remove ENTRY from the list of hooks called on removing edges. */
312 void
313 symbol_table::remove_edge_removal_hook (cgraph_edge_hook_list *entry)
315 cgraph_edge_hook_list **ptr = &m_first_edge_removal_hook;
317 while (*ptr != entry)
318 ptr = &(*ptr)->next;
319 *ptr = entry->next;
320 free (entry);
323 /* Call all edge removal hooks. */
324 void
325 symbol_table::call_edge_removal_hooks (cgraph_edge *e)
327 cgraph_edge_hook_list *entry = m_first_edge_removal_hook;
328 while (entry)
330 entry->hook (e, entry->data);
331 entry = entry->next;
335 /* Register HOOK to be called with DATA on each removed node. */
336 cgraph_node_hook_list *
337 symbol_table::add_cgraph_removal_hook (cgraph_node_hook hook, void *data)
339 cgraph_node_hook_list *entry;
340 cgraph_node_hook_list **ptr = &m_first_cgraph_removal_hook;
342 entry = (cgraph_node_hook_list *) xmalloc (sizeof (*entry));
343 entry->hook = hook;
344 entry->data = data;
345 entry->next = NULL;
346 while (*ptr)
347 ptr = &(*ptr)->next;
348 *ptr = entry;
349 return entry;
352 /* Remove ENTRY from the list of hooks called on removing nodes. */
353 void
354 symbol_table::remove_cgraph_removal_hook (cgraph_node_hook_list *entry)
356 cgraph_node_hook_list **ptr = &m_first_cgraph_removal_hook;
358 while (*ptr != entry)
359 ptr = &(*ptr)->next;
360 *ptr = entry->next;
361 free (entry);
364 /* Call all node removal hooks. */
365 void
366 symbol_table::call_cgraph_removal_hooks (cgraph_node *node)
368 cgraph_node_hook_list *entry = m_first_cgraph_removal_hook;
369 while (entry)
371 entry->hook (node, entry->data);
372 entry = entry->next;
376 /* Call all node removal hooks. */
377 void
378 symbol_table::call_cgraph_insertion_hooks (cgraph_node *node)
380 cgraph_node_hook_list *entry = m_first_cgraph_insertion_hook;
381 while (entry)
383 entry->hook (node, entry->data);
384 entry = entry->next;
389 /* Register HOOK to be called with DATA on each inserted node. */
390 cgraph_node_hook_list *
391 symbol_table::add_cgraph_insertion_hook (cgraph_node_hook hook, void *data)
393 cgraph_node_hook_list *entry;
394 cgraph_node_hook_list **ptr = &m_first_cgraph_insertion_hook;
396 entry = (cgraph_node_hook_list *) xmalloc (sizeof (*entry));
397 entry->hook = hook;
398 entry->data = data;
399 entry->next = NULL;
400 while (*ptr)
401 ptr = &(*ptr)->next;
402 *ptr = entry;
403 return entry;
406 /* Remove ENTRY from the list of hooks called on inserted nodes. */
407 void
408 symbol_table::remove_cgraph_insertion_hook (cgraph_node_hook_list *entry)
410 cgraph_node_hook_list **ptr = &m_first_cgraph_insertion_hook;
412 while (*ptr != entry)
413 ptr = &(*ptr)->next;
414 *ptr = entry->next;
415 free (entry);
418 /* Register HOOK to be called with DATA on each duplicated edge. */
419 cgraph_2edge_hook_list *
420 symbol_table::add_edge_duplication_hook (cgraph_2edge_hook hook, void *data)
422 cgraph_2edge_hook_list *entry;
423 cgraph_2edge_hook_list **ptr = &m_first_edge_duplicated_hook;
425 entry = (cgraph_2edge_hook_list *) xmalloc (sizeof (*entry));
426 entry->hook = hook;
427 entry->data = data;
428 entry->next = NULL;
429 while (*ptr)
430 ptr = &(*ptr)->next;
431 *ptr = entry;
432 return entry;
435 /* Remove ENTRY from the list of hooks called on duplicating edges. */
436 void
437 symbol_table::remove_edge_duplication_hook (cgraph_2edge_hook_list *entry)
439 cgraph_2edge_hook_list **ptr = &m_first_edge_duplicated_hook;
441 while (*ptr != entry)
442 ptr = &(*ptr)->next;
443 *ptr = entry->next;
444 free (entry);
447 /* Call all edge duplication hooks. */
448 void
449 symbol_table::call_edge_duplication_hooks (cgraph_edge *cs1, cgraph_edge *cs2)
451 cgraph_2edge_hook_list *entry = m_first_edge_duplicated_hook;
452 while (entry)
454 entry->hook (cs1, cs2, entry->data);
455 entry = entry->next;
459 /* Register HOOK to be called with DATA on each duplicated node. */
460 cgraph_2node_hook_list *
461 symbol_table::add_cgraph_duplication_hook (cgraph_2node_hook hook, void *data)
463 cgraph_2node_hook_list *entry;
464 cgraph_2node_hook_list **ptr = &m_first_cgraph_duplicated_hook;
466 entry = (cgraph_2node_hook_list *) xmalloc (sizeof (*entry));
467 entry->hook = hook;
468 entry->data = data;
469 entry->next = NULL;
470 while (*ptr)
471 ptr = &(*ptr)->next;
472 *ptr = entry;
473 return entry;
476 /* Remove ENTRY from the list of hooks called on duplicating nodes. */
477 void
478 symbol_table::remove_cgraph_duplication_hook (cgraph_2node_hook_list *entry)
480 cgraph_2node_hook_list **ptr = &m_first_cgraph_duplicated_hook;
482 while (*ptr != entry)
483 ptr = &(*ptr)->next;
484 *ptr = entry->next;
485 free (entry);
488 /* Call all node duplication hooks. */
489 void
490 symbol_table::call_cgraph_duplication_hooks (cgraph_node *node,
491 cgraph_node *node2)
493 cgraph_2node_hook_list *entry = m_first_cgraph_duplicated_hook;
494 while (entry)
496 entry->hook (node, node2, entry->data);
497 entry = entry->next;
501 /* Return cgraph node assigned to DECL. Create new one when needed. */
503 cgraph_node *
504 cgraph_node::create (tree decl)
506 cgraph_node *node = symtab->create_empty ();
507 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL);
509 node->decl = decl;
511 if ((flag_openacc || flag_openmp)
512 && lookup_attribute ("omp declare target", DECL_ATTRIBUTES (decl)))
514 node->offloadable = 1;
515 if (ENABLE_OFFLOADING)
516 g->have_offload = true;
519 if (lookup_attribute ("ifunc", DECL_ATTRIBUTES (decl)))
520 node->ifunc_resolver = true;
522 node->register_symbol ();
523 maybe_record_nested_function (node);
525 return node;
528 /* Try to find a call graph node for declaration DECL and if it does not exist
529 or if it corresponds to an inline clone, create a new one. */
531 cgraph_node *
532 cgraph_node::get_create (tree decl)
534 cgraph_node *first_clone = cgraph_node::get (decl);
536 if (first_clone && !first_clone->inlined_to)
537 return first_clone;
539 cgraph_node *node = cgraph_node::create (decl);
540 if (first_clone)
542 first_clone->clone_of = node;
543 node->clones = first_clone;
544 node->order = first_clone->order;
545 symtab->symtab_prevail_in_asm_name_hash (node);
546 node->decl->decl_with_vis.symtab_node = node;
547 if (dump_file)
548 fprintf (dump_file, "Introduced new external node "
549 "(%s) and turned into root of the clone tree.\n",
550 node->dump_name ());
552 else if (dump_file)
553 fprintf (dump_file, "Introduced new external node "
554 "(%s).\n", node->dump_name ());
555 return node;
558 /* Mark ALIAS as an alias to DECL. DECL_NODE is cgraph node representing
559 the function body is associated with
560 (not necessarily cgraph_node (DECL)). */
562 cgraph_node *
563 cgraph_node::create_alias (tree alias, tree target)
565 cgraph_node *alias_node;
567 gcc_assert (TREE_CODE (target) == FUNCTION_DECL
568 || TREE_CODE (target) == IDENTIFIER_NODE);
569 gcc_assert (TREE_CODE (alias) == FUNCTION_DECL);
570 alias_node = cgraph_node::get_create (alias);
571 gcc_assert (!alias_node->definition);
572 alias_node->alias_target = target;
573 alias_node->definition = true;
574 alias_node->alias = true;
575 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (alias)) != NULL)
576 alias_node->transparent_alias = alias_node->weakref = true;
577 if (lookup_attribute ("ifunc", DECL_ATTRIBUTES (alias)))
578 alias_node->ifunc_resolver = true;
579 return alias_node;
582 /* Attempt to mark ALIAS as an alias to DECL. Return alias node if successful
583 and NULL otherwise.
584 Same body aliases are output whenever the body of DECL is output,
585 and cgraph_node::get (ALIAS) transparently returns
586 cgraph_node::get (DECL). */
588 cgraph_node *
589 cgraph_node::create_same_body_alias (tree alias, tree decl)
591 cgraph_node *n;
593 /* If aliases aren't supported by the assembler, fail. */
594 if (!TARGET_SUPPORTS_ALIASES)
595 return NULL;
597 /* Langhooks can create same body aliases of symbols not defined.
598 Those are useless. Drop them on the floor. */
599 if (symtab->global_info_ready)
600 return NULL;
602 n = cgraph_node::create_alias (alias, decl);
603 n->cpp_implicit_alias = true;
604 if (symtab->cpp_implicit_aliases_done)
605 n->resolve_alias (cgraph_node::get (decl));
606 return n;
609 /* Add thunk alias into callgraph. The alias declaration is ALIAS and it
610 aliases DECL with an adjustments made into the first parameter.
611 See comments in struct cgraph_thunk_info for detail on the parameters. */
613 cgraph_node *
614 cgraph_node::create_thunk (tree alias, tree, bool this_adjusting,
615 HOST_WIDE_INT fixed_offset,
616 HOST_WIDE_INT virtual_value,
617 HOST_WIDE_INT indirect_offset,
618 tree virtual_offset,
619 tree real_alias)
621 cgraph_node *node;
623 node = cgraph_node::get (alias);
624 if (node)
625 node->reset ();
626 else
627 node = cgraph_node::create (alias);
629 /* Make sure that if VIRTUAL_OFFSET is in sync with VIRTUAL_VALUE. */
630 gcc_checking_assert (virtual_offset
631 ? virtual_value == wi::to_wide (virtual_offset)
632 : virtual_value == 0);
634 node->thunk = true;
635 node->definition = true;
637 thunk_info *i;
638 thunk_info local_info;
639 if (symtab->state < CONSTRUCTION)
640 i = &local_info;
641 else
642 i = thunk_info::get_create (node);
643 i->fixed_offset = fixed_offset;
644 i->virtual_value = virtual_value;
645 i->indirect_offset = indirect_offset;
646 i->alias = real_alias;
647 i->this_adjusting = this_adjusting;
648 i->virtual_offset_p = virtual_offset != NULL;
649 if (symtab->state < CONSTRUCTION)
650 i->register_early (node);
652 return node;
655 /* Return the cgraph node that has ASMNAME for its DECL_ASSEMBLER_NAME.
656 Return NULL if there's no such node. */
658 cgraph_node *
659 cgraph_node::get_for_asmname (tree asmname)
661 /* We do not want to look at inline clones. */
662 for (symtab_node *node = symtab_node::get_for_asmname (asmname);
663 node;
664 node = node->next_sharing_asm_name)
666 cgraph_node *cn = dyn_cast <cgraph_node *> (node);
667 if (cn && !cn->inlined_to)
668 return cn;
670 return NULL;
673 /* Returns a hash value for X (which really is a cgraph_edge). */
675 hashval_t
676 cgraph_edge_hasher::hash (cgraph_edge *e)
678 /* This is a really poor hash function, but it is what htab_hash_pointer
679 uses. */
680 return (hashval_t) ((intptr_t)e->call_stmt >> 3);
683 /* Returns a hash value for X (which really is a cgraph_edge). */
685 hashval_t
686 cgraph_edge_hasher::hash (gimple *call_stmt)
688 /* This is a really poor hash function, but it is what htab_hash_pointer
689 uses. */
690 return (hashval_t) ((intptr_t)call_stmt >> 3);
693 /* Return nonzero if the call_stmt of cgraph_edge X is stmt *Y. */
695 inline bool
696 cgraph_edge_hasher::equal (cgraph_edge *x, gimple *y)
698 return x->call_stmt == y;
701 /* Add call graph edge E to call site hash of its caller. */
703 static inline void
704 cgraph_update_edge_in_call_site_hash (cgraph_edge *e)
706 gimple *call = e->call_stmt;
707 *e->caller->call_site_hash->find_slot_with_hash
708 (call, cgraph_edge_hasher::hash (call), INSERT) = e;
711 /* Add call graph edge E to call site hash of its caller. */
713 static inline void
714 cgraph_add_edge_to_call_site_hash (cgraph_edge *e)
716 /* There are two speculative edges for every statement (one direct,
717 one indirect); always hash the direct one. */
718 if (e->speculative && e->indirect_unknown_callee)
719 return;
720 cgraph_edge **slot = e->caller->call_site_hash->find_slot_with_hash
721 (e->call_stmt, cgraph_edge_hasher::hash (e->call_stmt), INSERT);
722 if (*slot)
724 gcc_assert (((cgraph_edge *)*slot)->speculative);
725 if (e->callee && (!e->prev_callee
726 || !e->prev_callee->speculative
727 || e->prev_callee->call_stmt != e->call_stmt))
728 *slot = e;
729 return;
731 gcc_assert (!*slot || e->speculative);
732 *slot = e;
735 /* Return the callgraph edge representing the GIMPLE_CALL statement
736 CALL_STMT. */
738 cgraph_edge *
739 cgraph_node::get_edge (gimple *call_stmt)
741 cgraph_edge *e, *e2;
742 int n = 0;
744 if (call_site_hash)
745 return call_site_hash->find_with_hash
746 (call_stmt, cgraph_edge_hasher::hash (call_stmt));
748 /* This loop may turn out to be performance problem. In such case adding
749 hashtables into call nodes with very many edges is probably best
750 solution. It is not good idea to add pointer into CALL_EXPR itself
751 because we want to make possible having multiple cgraph nodes representing
752 different clones of the same body before the body is actually cloned. */
753 for (e = callees; e; e = e->next_callee)
755 if (e->call_stmt == call_stmt)
756 break;
757 n++;
760 if (!e)
761 for (e = indirect_calls; e; e = e->next_callee)
763 if (e->call_stmt == call_stmt)
764 break;
765 n++;
768 if (n > 100)
770 call_site_hash = hash_table<cgraph_edge_hasher>::create_ggc (120);
771 for (e2 = callees; e2; e2 = e2->next_callee)
772 cgraph_add_edge_to_call_site_hash (e2);
773 for (e2 = indirect_calls; e2; e2 = e2->next_callee)
774 cgraph_add_edge_to_call_site_hash (e2);
777 return e;
781 /* Change field call_stmt of edge E to NEW_STMT. If UPDATE_SPECULATIVE and E
782 is any component of speculative edge, then update all components.
783 Speculations can be resolved in the process and EDGE can be removed and
784 deallocated. Return the edge that now represents the call. */
786 cgraph_edge *
787 cgraph_edge::set_call_stmt (cgraph_edge *e, gcall *new_stmt,
788 bool update_speculative)
790 tree decl;
792 /* Speculative edges has three component, update all of them
793 when asked to. */
794 if (update_speculative && e->speculative)
796 cgraph_edge *direct, *indirect, *next;
797 ipa_ref *ref;
798 bool e_indirect = e->indirect_unknown_callee;
799 int n = 0;
801 direct = e->first_speculative_call_target ();
802 indirect = e->speculative_call_indirect_edge ();
804 gcall *old_stmt = direct->call_stmt;
805 for (cgraph_edge *d = direct; d; d = next)
807 next = d->next_speculative_call_target ();
808 cgraph_edge *d2 = set_call_stmt (d, new_stmt, false);
809 gcc_assert (d2 == d);
810 n++;
812 gcc_checking_assert (indirect->num_speculative_call_targets_p () == n);
813 for (unsigned int i = 0; e->caller->iterate_reference (i, ref); i++)
814 if (ref->speculative && ref->stmt == old_stmt)
816 ref->stmt = new_stmt;
817 n--;
820 indirect = set_call_stmt (indirect, new_stmt, false);
821 return e_indirect ? indirect : direct;
824 /* Only direct speculative edges go to call_site_hash. */
825 if (e->caller->call_site_hash
826 && (!e->speculative || !e->indirect_unknown_callee)
827 /* It is possible that edge was previously speculative. In this case
828 we have different value in call stmt hash which needs preserving. */
829 && e->caller->get_edge (e->call_stmt) == e)
830 e->caller->call_site_hash->remove_elt_with_hash
831 (e->call_stmt, cgraph_edge_hasher::hash (e->call_stmt));
833 e->call_stmt = new_stmt;
834 if (e->indirect_unknown_callee
835 && (decl = gimple_call_fndecl (new_stmt)))
837 /* Constant propagation (and possibly also inlining?) can turn an
838 indirect call into a direct one. */
839 cgraph_node *new_callee = cgraph_node::get (decl);
841 gcc_checking_assert (new_callee);
842 e = make_direct (e, new_callee);
845 function *fun = DECL_STRUCT_FUNCTION (e->caller->decl);
846 e->can_throw_external = stmt_can_throw_external (fun, new_stmt);
847 /* Update call stite hash. For speculative calls we only record the first
848 direct edge. */
849 if (e->caller->call_site_hash
850 && (!e->speculative
851 || (e->callee
852 && (!e->prev_callee || !e->prev_callee->speculative
853 || e->prev_callee->call_stmt != e->call_stmt))
854 || (e->speculative && !e->callee)))
855 cgraph_add_edge_to_call_site_hash (e);
856 return e;
859 /* Allocate a cgraph_edge structure and fill it with data according to the
860 parameters of which only CALLEE can be NULL (when creating an indirect call
861 edge). CLONING_P should be set if properties that are copied from an
862 original edge should not be calculated. */
864 cgraph_edge *
865 symbol_table::create_edge (cgraph_node *caller, cgraph_node *callee,
866 gcall *call_stmt, profile_count count,
867 bool indir_unknown_callee, bool cloning_p)
869 cgraph_edge *edge;
871 /* LTO does not actually have access to the call_stmt since these
872 have not been loaded yet. */
873 if (call_stmt)
875 /* This is a rather expensive check possibly triggering
876 construction of call stmt hashtable. */
877 cgraph_edge *e;
878 gcc_checking_assert (!(e = caller->get_edge (call_stmt))
879 || e->speculative);
881 gcc_assert (is_gimple_call (call_stmt));
884 edge = ggc_alloc<cgraph_edge> ();
885 edge->m_summary_id = -1;
886 edges_count++;
888 gcc_assert (++edges_max_uid != 0);
889 edge->m_uid = edges_max_uid;
890 edge->aux = NULL;
891 edge->caller = caller;
892 edge->callee = callee;
893 edge->prev_caller = NULL;
894 edge->next_caller = NULL;
895 edge->prev_callee = NULL;
896 edge->next_callee = NULL;
897 edge->lto_stmt_uid = 0;
898 edge->speculative_id = 0;
900 edge->count = count;
901 edge->call_stmt = call_stmt;
902 edge->indirect_info = NULL;
903 edge->indirect_inlining_edge = 0;
904 edge->speculative = false;
905 edge->indirect_unknown_callee = indir_unknown_callee;
906 if (call_stmt && caller->call_site_hash)
907 cgraph_add_edge_to_call_site_hash (edge);
909 if (cloning_p)
910 return edge;
912 edge->can_throw_external
913 = call_stmt ? stmt_can_throw_external (DECL_STRUCT_FUNCTION (caller->decl),
914 call_stmt) : false;
915 edge->inline_failed = CIF_FUNCTION_NOT_CONSIDERED;
916 edge->call_stmt_cannot_inline_p = false;
918 if (opt_for_fn (edge->caller->decl, flag_devirtualize)
919 && call_stmt && DECL_STRUCT_FUNCTION (caller->decl))
920 edge->in_polymorphic_cdtor
921 = decl_maybe_in_construction_p (NULL, NULL, call_stmt,
922 caller->decl);
923 else
924 edge->in_polymorphic_cdtor = caller->thunk;
925 if (callee)
926 caller->calls_declare_variant_alt |= callee->declare_variant_alt;
928 if (callee && symtab->state != LTO_STREAMING
929 && edge->callee->comdat_local_p ())
930 edge->caller->calls_comdat_local = true;
932 return edge;
935 /* Create edge from a given function to CALLEE in the cgraph. CLONING_P should
936 be set if properties that are copied from an original edge should not be
937 calculated. */
939 cgraph_edge *
940 cgraph_node::create_edge (cgraph_node *callee,
941 gcall *call_stmt, profile_count count, bool cloning_p)
943 cgraph_edge *edge = symtab->create_edge (this, callee, call_stmt, count,
944 false, cloning_p);
946 if (!cloning_p)
947 initialize_inline_failed (edge);
949 edge->next_caller = callee->callers;
950 if (callee->callers)
951 callee->callers->prev_caller = edge;
952 edge->next_callee = callees;
953 if (callees)
954 callees->prev_callee = edge;
955 callees = edge;
956 callee->callers = edge;
958 return edge;
961 /* Allocate cgraph_indirect_call_info and set its fields to default values. */
963 cgraph_indirect_call_info *
964 cgraph_allocate_init_indirect_info (void)
966 cgraph_indirect_call_info *ii;
968 ii = ggc_cleared_alloc<cgraph_indirect_call_info> ();
969 ii->param_index = -1;
970 return ii;
973 /* Create an indirect edge with a yet-undetermined callee where the call
974 statement destination is a formal parameter of the caller with index
975 PARAM_INDEX. CLONING_P should be set if properties that are copied from an
976 original edge should not be calculated and indirect_info structure should
977 not be calculated. */
979 cgraph_edge *
980 cgraph_node::create_indirect_edge (gcall *call_stmt, int ecf_flags,
981 profile_count count,
982 bool cloning_p)
984 cgraph_edge *edge = symtab->create_edge (this, NULL, call_stmt, count, true,
985 cloning_p);
986 tree target;
988 if (!cloning_p)
989 initialize_inline_failed (edge);
991 edge->indirect_info = cgraph_allocate_init_indirect_info ();
992 edge->indirect_info->ecf_flags = ecf_flags;
993 edge->indirect_info->vptr_changed = true;
995 /* Record polymorphic call info. */
996 if (!cloning_p
997 && call_stmt
998 && (target = gimple_call_fn (call_stmt))
999 && virtual_method_call_p (target))
1001 ipa_polymorphic_call_context context (decl, target, call_stmt);
1003 /* Only record types can have virtual calls. */
1004 edge->indirect_info->polymorphic = true;
1005 edge->indirect_info->param_index = -1;
1006 edge->indirect_info->otr_token
1007 = tree_to_uhwi (OBJ_TYPE_REF_TOKEN (target));
1008 edge->indirect_info->otr_type = obj_type_ref_class (target);
1009 gcc_assert (TREE_CODE (edge->indirect_info->otr_type) == RECORD_TYPE);
1010 edge->indirect_info->context = context;
1013 edge->next_callee = indirect_calls;
1014 if (indirect_calls)
1015 indirect_calls->prev_callee = edge;
1016 indirect_calls = edge;
1018 return edge;
1021 /* Remove the edge from the list of the callees of the caller. */
1023 void
1024 cgraph_edge::remove_caller (void)
1026 if (prev_callee)
1027 prev_callee->next_callee = next_callee;
1028 if (next_callee)
1029 next_callee->prev_callee = prev_callee;
1030 if (!prev_callee)
1032 if (indirect_unknown_callee)
1033 caller->indirect_calls = next_callee;
1034 else
1035 caller->callees = next_callee;
1037 if (caller->call_site_hash
1038 && this == caller->get_edge (call_stmt))
1039 caller->call_site_hash->remove_elt_with_hash
1040 (call_stmt, cgraph_edge_hasher::hash (call_stmt));
1043 /* Put the edge onto the free list. */
1045 void
1046 symbol_table::free_edge (cgraph_edge *e)
1048 edges_count--;
1049 if (e->m_summary_id != -1)
1050 edge_released_summary_ids.safe_push (e->m_summary_id);
1052 if (e->indirect_info)
1053 ggc_free (e->indirect_info);
1054 ggc_free (e);
1057 /* Remove the edge in the cgraph. */
1059 void
1060 cgraph_edge::remove (cgraph_edge *edge)
1062 /* Call all edge removal hooks. */
1063 symtab->call_edge_removal_hooks (edge);
1065 if (!edge->indirect_unknown_callee)
1066 /* Remove from callers list of the callee. */
1067 edge->remove_callee ();
1069 /* Remove from callees list of the callers. */
1070 edge->remove_caller ();
1072 /* Put the edge onto the free list. */
1073 symtab->free_edge (edge);
1076 /* Turn edge into speculative call calling N2. Update
1077 the profile so the direct call is taken COUNT times
1078 with FREQUENCY.
1080 At clone materialization time, the indirect call E will
1081 be expanded as:
1083 if (call_dest == N2)
1084 n2 ();
1085 else
1086 call call_dest
1088 At this time the function just creates the direct call,
1089 the reference representing the if conditional and attaches
1090 them all to the original indirect call statement.
1092 speculative_id is used to link direct calls with their corresponding
1093 IPA_REF_ADDR references when representing speculative calls.
1095 Return direct edge created. */
1097 cgraph_edge *
1098 cgraph_edge::make_speculative (cgraph_node *n2, profile_count direct_count,
1099 unsigned int speculative_id)
1101 cgraph_node *n = caller;
1102 ipa_ref *ref = NULL;
1103 cgraph_edge *e2;
1105 if (dump_file)
1106 fprintf (dump_file, "Indirect call -> speculative call %s => %s\n",
1107 n->dump_name (), n2->dump_name ());
1108 speculative = true;
1109 e2 = n->create_edge (n2, call_stmt, direct_count);
1110 initialize_inline_failed (e2);
1111 e2->speculative = true;
1112 if (TREE_NOTHROW (n2->decl))
1113 e2->can_throw_external = false;
1114 else
1115 e2->can_throw_external = can_throw_external;
1116 e2->lto_stmt_uid = lto_stmt_uid;
1117 e2->speculative_id = speculative_id;
1118 e2->in_polymorphic_cdtor = in_polymorphic_cdtor;
1119 indirect_info->num_speculative_call_targets++;
1120 count -= e2->count;
1121 symtab->call_edge_duplication_hooks (this, e2);
1122 ref = n->create_reference (n2, IPA_REF_ADDR, call_stmt);
1123 ref->lto_stmt_uid = lto_stmt_uid;
1124 ref->speculative_id = speculative_id;
1125 ref->speculative = speculative;
1126 n2->mark_address_taken ();
1127 return e2;
1130 /* Speculative call consists of an indirect edge and one or more
1131 direct edge+ref pairs.
1133 Given an edge which is part of speculative call, return the first
1134 direct call edge in the speculative call sequence. */
1136 cgraph_edge *
1137 cgraph_edge::first_speculative_call_target ()
1139 cgraph_edge *e = this;
1141 gcc_checking_assert (e->speculative);
1142 if (e->callee)
1144 while (e->prev_callee && e->prev_callee->speculative
1145 && e->prev_callee->call_stmt == e->call_stmt
1146 && e->prev_callee->lto_stmt_uid == e->lto_stmt_uid)
1147 e = e->prev_callee;
1148 return e;
1150 /* Call stmt site hash always points to the first target of the
1151 speculative call sequence. */
1152 if (e->call_stmt)
1153 return e->caller->get_edge (e->call_stmt);
1154 for (cgraph_edge *e2 = e->caller->callees; true; e2 = e2->next_callee)
1155 if (e2->speculative
1156 && e->call_stmt == e2->call_stmt
1157 && e->lto_stmt_uid == e2->lto_stmt_uid)
1158 return e2;
1161 /* We always maintain first direct edge in the call site hash, if one
1162 exists. E is going to be removed. See if it is first one and update
1163 hash accordingly. INDIRECT is the indirect edge of speculative call.
1164 We assume that INDIRECT->num_speculative_call_targets_p () is already
1165 updated for removal of E. */
1166 static void
1167 update_call_stmt_hash_for_removing_direct_edge (cgraph_edge *e,
1168 cgraph_edge *indirect)
1170 if (e->caller->call_site_hash)
1172 if (e->caller->get_edge (e->call_stmt) != e)
1174 else if (!indirect->num_speculative_call_targets_p ())
1175 cgraph_update_edge_in_call_site_hash (indirect);
1176 else
1178 gcc_checking_assert (e->next_callee && e->next_callee->speculative
1179 && e->next_callee->call_stmt == e->call_stmt);
1180 cgraph_update_edge_in_call_site_hash (e->next_callee);
1185 /* Speculative call EDGE turned out to be direct call to CALLEE_DECL. Remove
1186 the speculative call sequence and return edge representing the call, the
1187 original EDGE can be removed and deallocated. Return the edge that now
1188 represents the call.
1190 For "speculative" indirect call that contains multiple "speculative"
1191 targets (i.e. edge->indirect_info->num_speculative_call_targets > 1),
1192 decrease the count and only remove current direct edge.
1194 If no speculative direct call left to the speculative indirect call, remove
1195 the speculative of both the indirect call and corresponding direct edge.
1197 It is up to caller to iteratively resolve each "speculative" direct call and
1198 redirect the call as appropriate. */
1200 cgraph_edge *
1201 cgraph_edge::resolve_speculation (cgraph_edge *edge, tree callee_decl)
1203 cgraph_edge *e2;
1204 ipa_ref *ref;
1206 gcc_assert (edge->speculative && (!callee_decl || edge->callee));
1207 if (!edge->callee)
1208 e2 = edge->first_speculative_call_target ();
1209 else
1210 e2 = edge;
1211 ref = e2->speculative_call_target_ref ();
1212 edge = edge->speculative_call_indirect_edge ();
1213 if (!callee_decl
1214 || !ref->referred->semantically_equivalent_p
1215 (symtab_node::get (callee_decl)))
1217 if (dump_file)
1219 if (callee_decl)
1221 fprintf (dump_file, "Speculative indirect call %s => %s has "
1222 "turned out to have contradicting known target ",
1223 edge->caller->dump_name (),
1224 e2->callee->dump_name ());
1225 print_generic_expr (dump_file, callee_decl);
1226 fprintf (dump_file, "\n");
1228 else
1230 fprintf (dump_file, "Removing speculative call %s => %s\n",
1231 edge->caller->dump_name (),
1232 e2->callee->dump_name ());
1236 else
1238 cgraph_edge *tmp = edge;
1239 if (dump_file)
1240 fprintf (dump_file, "Speculative call turned into direct call.\n");
1241 edge = e2;
1242 e2 = tmp;
1243 /* FIXME: If EDGE is inlined, we should scale up the frequencies
1244 and counts in the functions inlined through it. */
1246 edge->count += e2->count;
1247 if (edge->num_speculative_call_targets_p ())
1249 /* The indirect edge has multiple speculative targets, don't remove
1250 speculative until all related direct edges are resolved. */
1251 edge->indirect_info->num_speculative_call_targets--;
1252 if (!edge->indirect_info->num_speculative_call_targets)
1253 edge->speculative = false;
1255 else
1256 edge->speculative = false;
1257 e2->speculative = false;
1258 update_call_stmt_hash_for_removing_direct_edge (e2, edge);
1259 ref->remove_reference ();
1260 if (e2->indirect_unknown_callee || e2->inline_failed)
1261 remove (e2);
1262 else
1263 e2->callee->remove_symbol_and_inline_clones ();
1264 return edge;
1267 /* Return edge corresponding to speculative call to a given target.
1268 NULL if speculative call does not have one. */
1270 cgraph_edge *
1271 cgraph_edge::speculative_call_for_target (cgraph_node *target)
1273 for (cgraph_edge *direct = first_speculative_call_target ();
1274 direct;
1275 direct = direct->next_speculative_call_target ())
1276 if (direct->speculative_call_target_ref ()
1277 ->referred->semantically_equivalent_p (target))
1278 return direct;
1279 return NULL;
1282 /* Make an indirect edge with an unknown callee an ordinary edge leading to
1283 CALLEE. Speculations can be resolved in the process and EDGE can be removed
1284 and deallocated. Return the edge that now represents the call. */
1286 cgraph_edge *
1287 cgraph_edge::make_direct (cgraph_edge *edge, cgraph_node *callee)
1289 gcc_assert (edge->indirect_unknown_callee);
1291 /* If we are redirecting speculative call, make it non-speculative. */
1292 if (edge->speculative)
1294 cgraph_edge *found = NULL;
1295 cgraph_edge *direct, *next;
1297 edge = edge->speculative_call_indirect_edge ();
1299 /* Look all speculative targets and remove all but one corresponding
1300 to callee (if it exists). */
1301 for (direct = edge->first_speculative_call_target ();
1302 direct;
1303 direct = next)
1305 next = direct->next_speculative_call_target ();
1307 /* Compare ref not direct->callee. Direct edge is possibly
1308 inlined or redirected. */
1309 if (!direct->speculative_call_target_ref ()
1310 ->referred->semantically_equivalent_p (callee))
1311 edge = direct->resolve_speculation (direct, NULL);
1312 else
1314 gcc_checking_assert (!found);
1315 found = direct;
1319 /* On successful speculation just remove the indirect edge and
1320 return the pre existing direct edge.
1321 It is important to not remove it and redirect because the direct
1322 edge may be inlined or redirected. */
1323 if (found)
1325 cgraph_edge *e2 = resolve_speculation (found, callee->decl);
1326 gcc_checking_assert (!found->speculative && e2 == found);
1327 return found;
1329 gcc_checking_assert (!edge->speculative);
1332 edge->indirect_unknown_callee = 0;
1333 ggc_free (edge->indirect_info);
1334 edge->indirect_info = NULL;
1336 /* Get the edge out of the indirect edge list. */
1337 if (edge->prev_callee)
1338 edge->prev_callee->next_callee = edge->next_callee;
1339 if (edge->next_callee)
1340 edge->next_callee->prev_callee = edge->prev_callee;
1341 if (!edge->prev_callee)
1342 edge->caller->indirect_calls = edge->next_callee;
1344 /* Put it into the normal callee list */
1345 edge->prev_callee = NULL;
1346 edge->next_callee = edge->caller->callees;
1347 if (edge->caller->callees)
1348 edge->caller->callees->prev_callee = edge;
1349 edge->caller->callees = edge;
1351 /* Insert to callers list of the new callee. */
1352 edge->set_callee (callee);
1354 /* We need to re-determine the inlining status of the edge. */
1355 initialize_inline_failed (edge);
1356 return edge;
1359 /* Redirect callee of the edge to N. The function does not update underlying
1360 call expression. */
1362 void
1363 cgraph_edge::redirect_callee (cgraph_node *n)
1365 bool loc = callee->comdat_local_p ();
1366 /* Remove from callers list of the current callee. */
1367 remove_callee ();
1369 /* Insert to callers list of the new callee. */
1370 set_callee (n);
1372 if (!inline_failed)
1373 return;
1374 if (!loc && n->comdat_local_p ())
1376 cgraph_node *to = caller->inlined_to ? caller->inlined_to : caller;
1377 to->calls_comdat_local = true;
1379 else if (loc && !n->comdat_local_p ())
1381 cgraph_node *to = caller->inlined_to ? caller->inlined_to : caller;
1382 gcc_checking_assert (to->calls_comdat_local);
1383 to->calls_comdat_local = to->check_calls_comdat_local_p ();
1387 /* If necessary, change the function declaration in the call statement
1388 associated with E so that it corresponds to the edge callee. Speculations
1389 can be resolved in the process and EDGE can be removed and deallocated.
1391 The edge could be one of speculative direct call generated from speculative
1392 indirect call. In this circumstance, decrease the speculative targets
1393 count (i.e. num_speculative_call_targets) and redirect call stmt to the
1394 corresponding i-th target. If no speculative direct call left to the
1395 speculative indirect call, remove "speculative" of the indirect call and
1396 also redirect stmt to it's final direct target.
1398 It is up to caller to iteratively transform each "speculative"
1399 direct call as appropriate. */
1401 gimple *
1402 cgraph_edge::redirect_call_stmt_to_callee (cgraph_edge *e)
1404 tree decl = gimple_call_fndecl (e->call_stmt);
1405 gcall *new_stmt;
1406 gimple_stmt_iterator gsi;
1408 if (e->speculative)
1410 /* If there already is an direct call (i.e. as a result of inliner's
1411 substitution), forget about speculating. */
1412 if (decl)
1413 e = make_direct (e->speculative_call_indirect_edge (),
1414 cgraph_node::get (decl));
1415 else
1417 /* Be sure we redirect all speculative targets before poking
1418 abou tindirect edge. */
1419 gcc_checking_assert (e->callee);
1420 cgraph_edge *indirect = e->speculative_call_indirect_edge ();
1421 gcall *new_stmt;
1422 ipa_ref *ref;
1424 /* Expand speculation into GIMPLE code. */
1425 if (dump_file)
1427 fprintf (dump_file,
1428 "Expanding speculative call of %s -> %s count: ",
1429 e->caller->dump_name (),
1430 e->callee->dump_name ());
1431 e->count.dump (dump_file);
1432 fprintf (dump_file, "\n");
1434 push_cfun (DECL_STRUCT_FUNCTION (e->caller->decl));
1436 profile_count all = indirect->count;
1437 for (cgraph_edge *e2 = e->first_speculative_call_target ();
1439 e2 = e2->next_speculative_call_target ())
1440 all = all + e2->count;
1441 profile_probability prob = e->count.probability_in (all);
1442 if (!prob.initialized_p ())
1443 prob = profile_probability::even ();
1444 ref = e->speculative_call_target_ref ();
1445 new_stmt = gimple_ic (e->call_stmt,
1446 dyn_cast<cgraph_node *> (ref->referred),
1447 prob);
1448 e->speculative = false;
1449 if (indirect->num_speculative_call_targets_p ())
1451 /* The indirect edge has multiple speculative targets, don't
1452 remove speculative until all related direct edges are
1453 redirected. */
1454 indirect->indirect_info->num_speculative_call_targets--;
1455 if (!indirect->indirect_info->num_speculative_call_targets)
1456 indirect->speculative = false;
1458 else
1459 indirect->speculative = false;
1460 /* Indirect edges are not both in the call site hash.
1461 get it updated. */
1462 update_call_stmt_hash_for_removing_direct_edge (e, indirect);
1463 cgraph_edge::set_call_stmt (e, new_stmt, false);
1464 e->count = gimple_bb (e->call_stmt)->count;
1466 /* Once we are done with expanding the sequence, update also indirect
1467 call probability. Until then the basic block accounts for the
1468 sum of indirect edge and all non-expanded speculations. */
1469 if (!indirect->speculative)
1470 indirect->count = gimple_bb (indirect->call_stmt)->count;
1471 ref->speculative = false;
1472 ref->stmt = NULL;
1473 pop_cfun ();
1474 /* Continue redirecting E to proper target. */
1479 if (e->indirect_unknown_callee
1480 || decl == e->callee->decl)
1481 return e->call_stmt;
1483 if (decl && ipa_saved_clone_sources)
1485 tree *p = ipa_saved_clone_sources->get (e->callee);
1486 if (p && decl == *p)
1488 gimple_call_set_fndecl (e->call_stmt, e->callee->decl);
1489 return e->call_stmt;
1492 if (flag_checking && decl)
1494 if (cgraph_node *node = cgraph_node::get (decl))
1496 clone_info *info = clone_info::get (node);
1497 gcc_assert (!info || !info->param_adjustments);
1501 clone_info *callee_info = clone_info::get (e->callee);
1502 clone_info *caller_info = clone_info::get (e->caller);
1504 if (symtab->dump_file)
1506 fprintf (symtab->dump_file, "updating call of %s -> %s: ",
1507 e->caller->dump_name (), e->callee->dump_name ());
1508 print_gimple_stmt (symtab->dump_file, e->call_stmt, 0, dump_flags);
1509 if (callee_info && callee_info->param_adjustments)
1510 callee_info->param_adjustments->dump (symtab->dump_file);
1511 unsigned performed_len
1512 = caller_info ? vec_safe_length (caller_info->performed_splits) : 0;
1513 if (performed_len > 0)
1514 fprintf (symtab->dump_file, "Performed splits records:\n");
1515 for (unsigned i = 0; i < performed_len; i++)
1517 ipa_param_performed_split *sm
1518 = &(*caller_info->performed_splits)[i];
1519 print_node_brief (symtab->dump_file, " dummy_decl: ", sm->dummy_decl,
1520 TDF_UID);
1521 fprintf (symtab->dump_file, ", unit_offset: %u\n", sm->unit_offset);
1525 if (ipa_param_adjustments *padjs
1526 = callee_info ? callee_info->param_adjustments : NULL)
1528 /* We need to defer cleaning EH info on the new statement to
1529 fixup-cfg. We may not have dominator information at this point
1530 and thus would end up with unreachable blocks and have no way
1531 to communicate that we need to run CFG cleanup then. */
1532 int lp_nr = lookup_stmt_eh_lp (e->call_stmt);
1533 if (lp_nr != 0)
1534 remove_stmt_from_eh_lp (e->call_stmt);
1536 tree old_fntype = gimple_call_fntype (e->call_stmt);
1537 new_stmt = padjs->modify_call (e->call_stmt,
1538 caller_info
1539 ? caller_info->performed_splits : NULL,
1540 e->callee->decl, false);
1541 cgraph_node *origin = e->callee;
1542 while (origin->clone_of)
1543 origin = origin->clone_of;
1545 if ((origin->former_clone_of
1546 && old_fntype == TREE_TYPE (origin->former_clone_of))
1547 || old_fntype == TREE_TYPE (origin->decl))
1548 gimple_call_set_fntype (new_stmt, TREE_TYPE (e->callee->decl));
1549 else
1551 tree new_fntype = padjs->build_new_function_type (old_fntype, true);
1552 gimple_call_set_fntype (new_stmt, new_fntype);
1555 if (lp_nr != 0)
1556 add_stmt_to_eh_lp (new_stmt, lp_nr);
1558 else
1560 new_stmt = e->call_stmt;
1561 gimple_call_set_fndecl (new_stmt, e->callee->decl);
1562 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt);
1565 /* If changing the call to __cxa_pure_virtual or similar noreturn function,
1566 adjust gimple_call_fntype too. */
1567 if (gimple_call_noreturn_p (new_stmt)
1568 && VOID_TYPE_P (TREE_TYPE (TREE_TYPE (e->callee->decl)))
1569 && TYPE_ARG_TYPES (TREE_TYPE (e->callee->decl))
1570 && (TREE_VALUE (TYPE_ARG_TYPES (TREE_TYPE (e->callee->decl)))
1571 == void_type_node))
1572 gimple_call_set_fntype (new_stmt, TREE_TYPE (e->callee->decl));
1574 /* If the call becomes noreturn, remove the LHS if possible. */
1575 tree lhs = gimple_call_lhs (new_stmt);
1576 if (lhs
1577 && gimple_call_noreturn_p (new_stmt)
1578 && (VOID_TYPE_P (TREE_TYPE (gimple_call_fntype (new_stmt)))
1579 || should_remove_lhs_p (lhs)))
1581 if (TREE_CODE (lhs) == SSA_NAME)
1583 tree var = create_tmp_reg_fn (DECL_STRUCT_FUNCTION (e->caller->decl),
1584 TREE_TYPE (lhs), NULL);
1585 var = get_or_create_ssa_default_def
1586 (DECL_STRUCT_FUNCTION (e->caller->decl), var);
1587 gimple *set_stmt = gimple_build_assign (lhs, var);
1588 gsi = gsi_for_stmt (new_stmt);
1589 gsi_insert_before_without_update (&gsi, set_stmt, GSI_SAME_STMT);
1590 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), set_stmt);
1592 gimple_call_set_lhs (new_stmt, NULL_TREE);
1593 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt);
1596 /* If new callee has no static chain, remove it. */
1597 if (gimple_call_chain (new_stmt) && !DECL_STATIC_CHAIN (e->callee->decl))
1599 gimple_call_set_chain (new_stmt, NULL);
1600 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt);
1603 maybe_remove_unused_call_args (DECL_STRUCT_FUNCTION (e->caller->decl),
1604 new_stmt);
1606 e->caller->set_call_stmt_including_clones (e->call_stmt, new_stmt, false);
1608 if (symtab->dump_file)
1610 fprintf (symtab->dump_file, " updated to:");
1611 print_gimple_stmt (symtab->dump_file, e->call_stmt, 0, dump_flags);
1613 return new_stmt;
1616 /* Update or remove the corresponding cgraph edge if a GIMPLE_CALL
1617 OLD_STMT changed into NEW_STMT. OLD_CALL is gimple_call_fndecl
1618 of OLD_STMT if it was previously call statement.
1619 If NEW_STMT is NULL, the call has been dropped without any
1620 replacement. */
1622 static void
1623 cgraph_update_edges_for_call_stmt_node (cgraph_node *node,
1624 gimple *old_stmt, tree old_call,
1625 gimple *new_stmt)
1627 tree new_call = (new_stmt && is_gimple_call (new_stmt))
1628 ? gimple_call_fndecl (new_stmt) : 0;
1630 /* We are seeing indirect calls, then there is nothing to update. */
1631 if (!new_call && !old_call)
1632 return;
1633 /* See if we turned indirect call into direct call or folded call to one builtin
1634 into different builtin. */
1635 if (old_call != new_call)
1637 cgraph_edge *e = node->get_edge (old_stmt);
1638 cgraph_edge *ne = NULL;
1639 profile_count count;
1641 if (e)
1643 /* Keep calls marked as dead dead. */
1644 if (new_stmt && is_gimple_call (new_stmt) && e->callee
1645 && fndecl_built_in_p (e->callee->decl, BUILT_IN_UNREACHABLE))
1647 cgraph_edge::set_call_stmt (node->get_edge (old_stmt),
1648 as_a <gcall *> (new_stmt));
1649 return;
1651 /* See if the edge is already there and has the correct callee. It
1652 might be so because of indirect inlining has already updated
1653 it. We also might've cloned and redirected the edge. */
1654 if (new_call && e->callee)
1656 cgraph_node *callee = e->callee;
1657 while (callee)
1659 if (callee->decl == new_call
1660 || callee->former_clone_of == new_call)
1662 cgraph_edge::set_call_stmt (e, as_a <gcall *> (new_stmt));
1663 return;
1665 callee = callee->clone_of;
1669 /* Otherwise remove edge and create new one; we can't simply redirect
1670 since function has changed, so inline plan and other information
1671 attached to edge is invalid. */
1672 count = e->count;
1673 if (e->indirect_unknown_callee || e->inline_failed)
1674 cgraph_edge::remove (e);
1675 else
1676 e->callee->remove_symbol_and_inline_clones ();
1678 else if (new_call)
1680 /* We are seeing new direct call; compute profile info based on BB. */
1681 basic_block bb = gimple_bb (new_stmt);
1682 count = bb->count;
1685 if (new_call)
1687 ne = node->create_edge (cgraph_node::get_create (new_call),
1688 as_a <gcall *> (new_stmt), count);
1689 gcc_assert (ne->inline_failed);
1692 /* We only updated the call stmt; update pointer in cgraph edge.. */
1693 else if (old_stmt != new_stmt)
1694 cgraph_edge::set_call_stmt (node->get_edge (old_stmt),
1695 as_a <gcall *> (new_stmt));
1698 /* Update or remove the corresponding cgraph edge if a GIMPLE_CALL
1699 OLD_STMT changed into NEW_STMT. OLD_DECL is gimple_call_fndecl
1700 of OLD_STMT before it was updated (updating can happen inplace). */
1702 void
1703 cgraph_update_edges_for_call_stmt (gimple *old_stmt, tree old_decl,
1704 gimple *new_stmt)
1706 cgraph_node *orig = cgraph_node::get (cfun->decl);
1707 cgraph_node *node;
1709 gcc_checking_assert (orig);
1710 cgraph_update_edges_for_call_stmt_node (orig, old_stmt, old_decl, new_stmt);
1711 if (orig->clones)
1712 for (node = orig->clones; node != orig;)
1714 cgraph_update_edges_for_call_stmt_node (node, old_stmt, old_decl,
1715 new_stmt);
1716 if (node->clones)
1717 node = node->clones;
1718 else if (node->next_sibling_clone)
1719 node = node->next_sibling_clone;
1720 else
1722 while (node != orig && !node->next_sibling_clone)
1723 node = node->clone_of;
1724 if (node != orig)
1725 node = node->next_sibling_clone;
1731 /* Remove all callees from the node. */
1733 void
1734 cgraph_node::remove_callees (void)
1736 cgraph_edge *e, *f;
1738 calls_comdat_local = false;
1740 /* It is sufficient to remove the edges from the lists of callers of
1741 the callees. The callee list of the node can be zapped with one
1742 assignment. */
1743 for (e = callees; e; e = f)
1745 f = e->next_callee;
1746 symtab->call_edge_removal_hooks (e);
1747 if (!e->indirect_unknown_callee)
1748 e->remove_callee ();
1749 symtab->free_edge (e);
1751 for (e = indirect_calls; e; e = f)
1753 f = e->next_callee;
1754 symtab->call_edge_removal_hooks (e);
1755 if (!e->indirect_unknown_callee)
1756 e->remove_callee ();
1757 symtab->free_edge (e);
1759 indirect_calls = NULL;
1760 callees = NULL;
1761 if (call_site_hash)
1763 call_site_hash->empty ();
1764 call_site_hash = NULL;
1768 /* Remove all callers from the node. */
1770 void
1771 cgraph_node::remove_callers (void)
1773 cgraph_edge *e, *f;
1775 /* It is sufficient to remove the edges from the lists of callees of
1776 the callers. The caller list of the node can be zapped with one
1777 assignment. */
1778 for (e = callers; e; e = f)
1780 f = e->next_caller;
1781 symtab->call_edge_removal_hooks (e);
1782 e->remove_caller ();
1783 symtab->free_edge (e);
1785 callers = NULL;
1788 /* Helper function for cgraph_release_function_body and free_lang_data.
1789 It releases body from function DECL without having to inspect its
1790 possibly non-existent symtab node. */
1792 void
1793 release_function_body (tree decl)
1795 function *fn = DECL_STRUCT_FUNCTION (decl);
1796 if (fn)
1798 if (fn->cfg
1799 && loops_for_fn (fn))
1801 fn->curr_properties &= ~PROP_loops;
1802 loop_optimizer_finalize (fn);
1804 if (fn->gimple_df)
1806 delete_tree_ssa (fn);
1807 fn->eh = NULL;
1809 if (fn->cfg)
1811 gcc_assert (!dom_info_available_p (fn, CDI_DOMINATORS));
1812 gcc_assert (!dom_info_available_p (fn, CDI_POST_DOMINATORS));
1813 delete_tree_cfg_annotations (fn);
1814 free_cfg (fn);
1815 fn->cfg = NULL;
1817 if (fn->value_histograms)
1818 free_histograms (fn);
1819 gimple_set_body (decl, NULL);
1820 /* Struct function hangs a lot of data that would leak if we didn't
1821 removed all pointers to it. */
1822 ggc_free (fn);
1823 DECL_STRUCT_FUNCTION (decl) = NULL;
1825 DECL_SAVED_TREE (decl) = NULL;
1828 /* Release memory used to represent body of function.
1829 Use this only for functions that are released before being translated to
1830 target code (i.e. RTL). Functions that are compiled to RTL and beyond
1831 are free'd in final.c via free_after_compilation().
1832 KEEP_ARGUMENTS are useful only if you want to rebuild body as thunk. */
1834 void
1835 cgraph_node::release_body (bool keep_arguments)
1837 ipa_transforms_to_apply.release ();
1838 if (!used_as_abstract_origin && symtab->state != PARSING)
1840 DECL_RESULT (decl) = NULL;
1842 if (!keep_arguments)
1843 DECL_ARGUMENTS (decl) = NULL;
1845 /* If the node is abstract and needed, then do not clear
1846 DECL_INITIAL of its associated function declaration because it's
1847 needed to emit debug info later. */
1848 if (!used_as_abstract_origin && DECL_INITIAL (decl))
1849 DECL_INITIAL (decl) = error_mark_node;
1850 release_function_body (decl);
1851 if (lto_file_data)
1853 lto_free_function_in_decl_state_for_node (this);
1854 lto_file_data = NULL;
1858 /* Remove function from symbol table. */
1860 void
1861 cgraph_node::remove (void)
1863 bool clone_info_set = false;
1864 clone_info *info, saved_info;
1865 if (symtab->ipa_clones_dump_file && symtab->cloned_nodes.contains (this))
1866 fprintf (symtab->ipa_clones_dump_file,
1867 "Callgraph removal;%s;%d;%s;%d;%d\n", asm_name (), order,
1868 DECL_SOURCE_FILE (decl), DECL_SOURCE_LINE (decl),
1869 DECL_SOURCE_COLUMN (decl));
1871 if ((info = clone_info::get (this)) != NULL)
1873 saved_info = *info;
1874 clone_info_set = true;
1876 symtab->call_cgraph_removal_hooks (this);
1877 remove_callers ();
1878 remove_callees ();
1879 ipa_transforms_to_apply.release ();
1880 delete_function_version (function_version ());
1882 /* Incremental inlining access removed nodes stored in the postorder list.
1884 force_output = false;
1885 forced_by_abi = false;
1887 unregister (clone_info_set ? &saved_info : NULL);
1888 if (prev_sibling_clone)
1889 prev_sibling_clone->next_sibling_clone = next_sibling_clone;
1890 else if (clone_of)
1891 clone_of->clones = next_sibling_clone;
1892 if (next_sibling_clone)
1893 next_sibling_clone->prev_sibling_clone = prev_sibling_clone;
1894 if (clones)
1896 cgraph_node *n, *next;
1898 if (clone_of)
1900 for (n = clones; n->next_sibling_clone; n = n->next_sibling_clone)
1901 n->clone_of = clone_of;
1902 n->clone_of = clone_of;
1903 n->next_sibling_clone = clone_of->clones;
1904 if (clone_of->clones)
1905 clone_of->clones->prev_sibling_clone = n;
1906 clone_of->clones = clones;
1908 else
1910 /* We are removing node with clones. This makes clones inconsistent,
1911 but assume they will be removed subsequently and just keep clone
1912 tree intact. This can happen in unreachable function removal since
1913 we remove unreachable functions in random order, not by bottom-up
1914 walk of clone trees. */
1915 for (n = clones; n; n = next)
1917 next = n->next_sibling_clone;
1918 n->next_sibling_clone = NULL;
1919 n->prev_sibling_clone = NULL;
1920 n->clone_of = NULL;
1925 /* While all the clones are removed after being proceeded, the function
1926 itself is kept in the cgraph even after it is compiled. Check whether
1927 we are done with this body and reclaim it proactively if this is the case.
1929 if (symtab->state != LTO_STREAMING)
1931 cgraph_node *n = cgraph_node::get (decl);
1932 if (!n
1933 || (!n->clones && !n->clone_of && !n->inlined_to
1934 && ((symtab->global_info_ready || in_lto_p)
1935 && (TREE_ASM_WRITTEN (n->decl)
1936 || DECL_EXTERNAL (n->decl)
1937 || !n->analyzed
1938 || (!flag_wpa && n->in_other_partition)))))
1939 release_body ();
1941 else
1943 lto_free_function_in_decl_state_for_node (this);
1944 lto_file_data = NULL;
1947 decl = NULL;
1948 if (call_site_hash)
1950 call_site_hash->empty ();
1951 call_site_hash = NULL;
1954 symtab->release_symbol (this);
1957 /* Likewise indicate that a node is having address taken. */
1959 void
1960 cgraph_node::mark_address_taken (void)
1962 /* Indirect inlining can figure out that all uses of the address are
1963 inlined. */
1964 if (inlined_to)
1966 gcc_assert (cfun->after_inlining);
1967 gcc_assert (callers->indirect_inlining_edge);
1968 return;
1970 /* FIXME: address_taken flag is used both as a shortcut for testing whether
1971 IPA_REF_ADDR reference exists (and thus it should be set on node
1972 representing alias we take address of) and as a test whether address
1973 of the object was taken (and thus it should be set on node alias is
1974 referring to). We should remove the first use and the remove the
1975 following set. */
1976 address_taken = 1;
1977 cgraph_node *node = ultimate_alias_target ();
1978 node->address_taken = 1;
1981 /* Return local info node for the compiled function. */
1983 cgraph_node *
1984 cgraph_node::local_info_node (tree decl)
1986 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL);
1987 cgraph_node *node = get (decl);
1988 if (!node)
1989 return NULL;
1990 return node->ultimate_alias_target ();
1993 /* Return RTL info for the compiled function. */
1995 cgraph_rtl_info *
1996 cgraph_node::rtl_info (const_tree decl)
1998 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL);
1999 cgraph_node *node = get (decl);
2000 if (!node)
2001 return NULL;
2002 enum availability avail;
2003 node = node->ultimate_alias_target (&avail);
2004 if (decl != current_function_decl
2005 && (avail < AVAIL_AVAILABLE
2006 || (node->decl != current_function_decl
2007 && !TREE_ASM_WRITTEN (node->decl))))
2008 return NULL;
2009 /* Allocate if it doesn't exist. */
2010 if (node->rtl == NULL)
2012 node->rtl = ggc_cleared_alloc<cgraph_rtl_info> ();
2013 SET_HARD_REG_SET (node->rtl->function_used_regs);
2015 return node->rtl;
2018 /* Return a string describing the failure REASON. */
2020 const char*
2021 cgraph_inline_failed_string (cgraph_inline_failed_t reason)
2023 #undef DEFCIFCODE
2024 #define DEFCIFCODE(code, type, string) string,
2026 static const char *cif_string_table[CIF_N_REASONS] = {
2027 #include "cif-code.def"
2030 /* Signedness of an enum type is implementation defined, so cast it
2031 to unsigned before testing. */
2032 gcc_assert ((unsigned) reason < CIF_N_REASONS);
2033 return cif_string_table[reason];
2036 /* Return a type describing the failure REASON. */
2038 cgraph_inline_failed_type_t
2039 cgraph_inline_failed_type (cgraph_inline_failed_t reason)
2041 #undef DEFCIFCODE
2042 #define DEFCIFCODE(code, type, string) type,
2044 static cgraph_inline_failed_type_t cif_type_table[CIF_N_REASONS] = {
2045 #include "cif-code.def"
2048 /* Signedness of an enum type is implementation defined, so cast it
2049 to unsigned before testing. */
2050 gcc_assert ((unsigned) reason < CIF_N_REASONS);
2051 return cif_type_table[reason];
2054 /* Names used to print out the availability enum. */
2055 const char * const cgraph_availability_names[] =
2056 {"unset", "not_available", "overwritable", "available", "local"};
2058 /* Output flags of edge to a file F. */
2060 void
2061 cgraph_edge::dump_edge_flags (FILE *f)
2063 if (speculative)
2064 fprintf (f, "(speculative) ");
2065 if (!inline_failed)
2066 fprintf (f, "(inlined) ");
2067 if (call_stmt_cannot_inline_p)
2068 fprintf (f, "(call_stmt_cannot_inline_p) ");
2069 if (indirect_inlining_edge)
2070 fprintf (f, "(indirect_inlining) ");
2071 if (count.initialized_p ())
2073 fprintf (f, "(");
2074 count.dump (f);
2075 fprintf (f, ",");
2076 fprintf (f, "%.2f per call) ", sreal_frequency ().to_double ());
2078 if (can_throw_external)
2079 fprintf (f, "(can throw external) ");
2082 /* Dump edge to stderr. */
2084 void
2085 cgraph_edge::debug (void)
2087 fprintf (stderr, "%s -> %s ", caller->dump_asm_name (),
2088 callee == NULL ? "(null)" : callee->dump_asm_name ());
2089 dump_edge_flags (stderr);
2090 fprintf (stderr, "\n\n");
2091 caller->debug ();
2092 if (callee != NULL)
2093 callee->debug ();
2096 /* Dump call graph node to file F. */
2098 void
2099 cgraph_node::dump (FILE *f)
2101 cgraph_edge *edge;
2103 dump_base (f);
2105 if (inlined_to)
2106 fprintf (f, " Function %s is inline copy in %s\n",
2107 dump_name (),
2108 inlined_to->dump_name ());
2109 if (clone_of)
2110 fprintf (f, " Clone of %s\n", clone_of->dump_asm_name ());
2111 if (symtab->function_flags_ready)
2112 fprintf (f, " Availability: %s\n",
2113 cgraph_availability_names [get_availability ()]);
2115 if (profile_id)
2116 fprintf (f, " Profile id: %i\n",
2117 profile_id);
2118 if (unit_id)
2119 fprintf (f, " Unit id: %i\n",
2120 unit_id);
2121 cgraph_function_version_info *vi = function_version ();
2122 if (vi != NULL)
2124 fprintf (f, " Version info: ");
2125 if (vi->prev != NULL)
2127 fprintf (f, "prev: ");
2128 fprintf (f, "%s ", vi->prev->this_node->dump_asm_name ());
2130 if (vi->next != NULL)
2132 fprintf (f, "next: ");
2133 fprintf (f, "%s ", vi->next->this_node->dump_asm_name ());
2135 if (vi->dispatcher_resolver != NULL_TREE)
2136 fprintf (f, "dispatcher: %s",
2137 lang_hooks.decl_printable_name (vi->dispatcher_resolver, 2));
2139 fprintf (f, "\n");
2141 fprintf (f, " Function flags:");
2142 if (count.initialized_p ())
2144 fprintf (f, " count:");
2145 count.dump (f);
2147 if (tp_first_run > 0)
2148 fprintf (f, " first_run:%" PRId64, (int64_t) tp_first_run);
2149 if (cgraph_node *origin = nested_function_origin (this))
2150 fprintf (f, " nested in:%s", origin->dump_asm_name ());
2151 if (gimple_has_body_p (decl))
2152 fprintf (f, " body");
2153 if (process)
2154 fprintf (f, " process");
2155 if (local)
2156 fprintf (f, " local");
2157 if (redefined_extern_inline)
2158 fprintf (f, " redefined_extern_inline");
2159 if (only_called_at_startup)
2160 fprintf (f, " only_called_at_startup");
2161 if (only_called_at_exit)
2162 fprintf (f, " only_called_at_exit");
2163 if (tm_clone)
2164 fprintf (f, " tm_clone");
2165 if (calls_comdat_local)
2166 fprintf (f, " calls_comdat_local");
2167 if (icf_merged)
2168 fprintf (f, " icf_merged");
2169 if (merged_comdat)
2170 fprintf (f, " merged_comdat");
2171 if (merged_extern_inline)
2172 fprintf (f, " merged_extern_inline");
2173 if (split_part)
2174 fprintf (f, " split_part");
2175 if (indirect_call_target)
2176 fprintf (f, " indirect_call_target");
2177 if (nonfreeing_fn)
2178 fprintf (f, " nonfreeing_fn");
2179 if (DECL_STATIC_CONSTRUCTOR (decl))
2180 fprintf (f," static_constructor (priority:%i)", get_init_priority ());
2181 if (DECL_STATIC_DESTRUCTOR (decl))
2182 fprintf (f," static_destructor (priority:%i)", get_fini_priority ());
2183 if (frequency == NODE_FREQUENCY_HOT)
2184 fprintf (f, " hot");
2185 if (frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED)
2186 fprintf (f, " unlikely_executed");
2187 if (frequency == NODE_FREQUENCY_EXECUTED_ONCE)
2188 fprintf (f, " executed_once");
2189 if (opt_for_fn (decl, optimize_size))
2190 fprintf (f, " optimize_size");
2191 if (parallelized_function)
2192 fprintf (f, " parallelized_function");
2193 if (DECL_IS_MALLOC (decl))
2194 fprintf (f, " decl_is_malloc");
2195 if (DECL_IS_OPERATOR_NEW_P (decl))
2196 fprintf (f, " %soperator_new",
2197 DECL_IS_REPLACEABLE_OPERATOR (decl) ? "replaceable_" : "");
2198 if (DECL_IS_OPERATOR_DELETE_P (decl))
2199 fprintf (f, " %soperator_delete",
2200 DECL_IS_REPLACEABLE_OPERATOR (decl) ? "replaceable_" : "");
2202 fprintf (f, "\n");
2204 if (thunk)
2206 fprintf (f, " Thunk");
2207 thunk_info::get (this)->dump (f);
2209 else if (former_thunk_p ())
2211 fprintf (f, " Former thunk ");
2212 thunk_info::get (this)->dump (f);
2214 else gcc_checking_assert (!thunk_info::get (this));
2216 fprintf (f, " Called by: ");
2218 profile_count sum = profile_count::zero ();
2219 for (edge = callers; edge; edge = edge->next_caller)
2221 fprintf (f, "%s ", edge->caller->dump_asm_name ());
2222 edge->dump_edge_flags (f);
2223 if (edge->count.initialized_p ())
2224 sum += edge->count.ipa ();
2227 fprintf (f, "\n Calls: ");
2228 for (edge = callees; edge; edge = edge->next_callee)
2230 fprintf (f, "%s ", edge->callee->dump_asm_name ());
2231 edge->dump_edge_flags (f);
2233 fprintf (f, "\n");
2235 if (count.ipa ().initialized_p ())
2237 bool ok = true;
2238 bool min = false;
2239 ipa_ref *ref;
2241 FOR_EACH_ALIAS (this, ref)
2242 if (dyn_cast <cgraph_node *> (ref->referring)->count.initialized_p ())
2243 sum += dyn_cast <cgraph_node *> (ref->referring)->count.ipa ();
2245 if (inlined_to
2246 || (symtab->state < EXPANSION
2247 && ultimate_alias_target () == this && only_called_directly_p ()))
2248 ok = !count.ipa ().differs_from_p (sum);
2249 else if (count.ipa () > profile_count::from_gcov_type (100)
2250 && count.ipa () < sum.apply_scale (99, 100))
2251 ok = false, min = true;
2252 if (!ok)
2254 fprintf (f, " Invalid sum of caller counts ");
2255 sum.dump (f);
2256 if (min)
2257 fprintf (f, ", should be at most ");
2258 else
2259 fprintf (f, ", should be ");
2260 count.ipa ().dump (f);
2261 fprintf (f, "\n");
2265 for (edge = indirect_calls; edge; edge = edge->next_callee)
2267 if (edge->indirect_info->polymorphic)
2269 fprintf (f, " Polymorphic indirect call of type ");
2270 print_generic_expr (f, edge->indirect_info->otr_type, TDF_SLIM);
2271 fprintf (f, " token:%i", (int) edge->indirect_info->otr_token);
2273 else
2274 fprintf (f, " Indirect call");
2275 edge->dump_edge_flags (f);
2276 if (edge->indirect_info->param_index != -1)
2278 fprintf (f, "of param:%i ", edge->indirect_info->param_index);
2279 if (edge->indirect_info->agg_contents)
2280 fprintf (f, "loaded from %s %s at offset %i ",
2281 edge->indirect_info->member_ptr ? "member ptr" : "aggregate",
2282 edge->indirect_info->by_ref ? "passed by reference":"",
2283 (int)edge->indirect_info->offset);
2284 if (edge->indirect_info->vptr_changed)
2285 fprintf (f, "(vptr maybe changed) ");
2287 fprintf (f, "num speculative call targets: %i\n",
2288 edge->indirect_info->num_speculative_call_targets);
2289 if (edge->indirect_info->polymorphic)
2290 edge->indirect_info->context.dump (f);
2294 /* Dump call graph node to file F in graphviz format. */
2296 void
2297 cgraph_node::dump_graphviz (FILE *f)
2299 cgraph_edge *edge;
2301 for (edge = callees; edge; edge = edge->next_callee)
2303 cgraph_node *callee = edge->callee;
2305 fprintf (f, "\t\"%s\" -> \"%s\"\n", dump_name (), callee->dump_name ());
2310 /* Dump call graph node NODE to stderr. */
2312 DEBUG_FUNCTION void
2313 cgraph_node::debug (void)
2315 dump (stderr);
2318 /* Dump the callgraph to file F. */
2320 void
2321 cgraph_node::dump_cgraph (FILE *f)
2323 cgraph_node *node;
2325 fprintf (f, "callgraph:\n\n");
2326 FOR_EACH_FUNCTION (node)
2327 node->dump (f);
2330 /* Return true when the DECL can possibly be inlined. */
2332 bool
2333 cgraph_function_possibly_inlined_p (tree decl)
2335 if (!symtab->global_info_ready)
2336 return !DECL_UNINLINABLE (decl);
2337 return DECL_POSSIBLY_INLINED (decl);
2340 /* Return function availability. See cgraph.h for description of individual
2341 return values. */
2342 enum availability
2343 cgraph_node::get_availability (symtab_node *ref)
2345 if (ref)
2347 cgraph_node *cref = dyn_cast <cgraph_node *> (ref);
2348 if (cref)
2349 ref = cref->inlined_to;
2351 enum availability avail;
2352 if (!analyzed && !in_other_partition)
2353 avail = AVAIL_NOT_AVAILABLE;
2354 else if (local)
2355 avail = AVAIL_LOCAL;
2356 else if (inlined_to)
2357 avail = AVAIL_AVAILABLE;
2358 else if (transparent_alias)
2359 ultimate_alias_target (&avail, ref);
2360 else if (ifunc_resolver
2361 || lookup_attribute ("noipa", DECL_ATTRIBUTES (decl)))
2362 avail = AVAIL_INTERPOSABLE;
2363 else if (!externally_visible)
2364 avail = AVAIL_AVAILABLE;
2365 /* If this is a reference from symbol itself and there are no aliases, we
2366 may be sure that the symbol was not interposed by something else because
2367 the symbol itself would be unreachable otherwise.
2369 Also comdat groups are always resolved in groups. */
2370 else if ((this == ref && !has_aliases_p ())
2371 || (ref && get_comdat_group ()
2372 && get_comdat_group () == ref->get_comdat_group ()))
2373 avail = AVAIL_AVAILABLE;
2374 /* Inline functions are safe to be analyzed even if their symbol can
2375 be overwritten at runtime. It is not meaningful to enforce any sane
2376 behavior on replacing inline function by different body. */
2377 else if (DECL_DECLARED_INLINE_P (decl))
2378 avail = AVAIL_AVAILABLE;
2380 /* If the function can be overwritten, return OVERWRITABLE. Take
2381 care at least of two notable extensions - the COMDAT functions
2382 used to share template instantiations in C++ (this is symmetric
2383 to code cp_cannot_inline_tree_fn and probably shall be shared and
2384 the inlinability hooks completely eliminated). */
2386 else if (decl_replaceable_p (decl) && !DECL_EXTERNAL (decl))
2387 avail = AVAIL_INTERPOSABLE;
2388 else avail = AVAIL_AVAILABLE;
2390 return avail;
2393 /* Worker for cgraph_node_can_be_local_p. */
2394 static bool
2395 cgraph_node_cannot_be_local_p_1 (cgraph_node *node, void *)
2397 return !(!node->force_output
2398 && !node->ifunc_resolver
2399 /* Limitation of gas requires us to output targets of symver aliases
2400 as global symbols. This is binutils PR 25295. */
2401 && !node->symver
2402 && ((DECL_COMDAT (node->decl)
2403 && !node->forced_by_abi
2404 && !node->used_from_object_file_p ()
2405 && !node->same_comdat_group)
2406 || !node->externally_visible));
2409 /* Return true if cgraph_node can be made local for API change.
2410 Extern inline functions and C++ COMDAT functions can be made local
2411 at the expense of possible code size growth if function is used in multiple
2412 compilation units. */
2413 bool
2414 cgraph_node::can_be_local_p (void)
2416 return (!address_taken
2417 && !call_for_symbol_thunks_and_aliases (cgraph_node_cannot_be_local_p_1,
2418 NULL, true));
2421 /* Call callback on cgraph_node, thunks and aliases associated to cgraph_node.
2422 When INCLUDE_OVERWRITABLE is false, overwritable symbols are
2423 skipped. When EXCLUDE_VIRTUAL_THUNKS is true, virtual thunks are
2424 skipped. */
2425 bool
2426 cgraph_node::call_for_symbol_thunks_and_aliases (bool (*callback)
2427 (cgraph_node *, void *),
2428 void *data,
2429 bool include_overwritable,
2430 bool exclude_virtual_thunks)
2432 cgraph_edge *e;
2433 ipa_ref *ref;
2434 enum availability avail = AVAIL_AVAILABLE;
2436 if (include_overwritable
2437 || (avail = get_availability ()) > AVAIL_INTERPOSABLE)
2439 if (callback (this, data))
2440 return true;
2442 FOR_EACH_ALIAS (this, ref)
2444 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
2445 if (include_overwritable
2446 || alias->get_availability () > AVAIL_INTERPOSABLE)
2447 if (alias->call_for_symbol_thunks_and_aliases (callback, data,
2448 include_overwritable,
2449 exclude_virtual_thunks))
2450 return true;
2452 if (avail <= AVAIL_INTERPOSABLE)
2453 return false;
2454 for (e = callers; e; e = e->next_caller)
2455 if (e->caller->thunk
2456 && (include_overwritable
2457 || e->caller->get_availability () > AVAIL_INTERPOSABLE)
2458 && !(exclude_virtual_thunks
2459 && thunk_info::get (e->caller)->virtual_offset_p))
2460 if (e->caller->call_for_symbol_thunks_and_aliases (callback, data,
2461 include_overwritable,
2462 exclude_virtual_thunks))
2463 return true;
2465 return false;
2468 /* Worker to bring NODE local. */
2470 bool
2471 cgraph_node::make_local (cgraph_node *node, void *)
2473 gcc_checking_assert (node->can_be_local_p ());
2474 if (DECL_COMDAT (node->decl) || DECL_EXTERNAL (node->decl))
2476 node->make_decl_local ();
2477 node->set_section (NULL);
2478 node->set_comdat_group (NULL);
2479 node->externally_visible = false;
2480 node->forced_by_abi = false;
2481 node->local = true;
2482 node->set_section (NULL);
2483 node->unique_name = ((node->resolution == LDPR_PREVAILING_DEF_IRONLY
2484 || node->resolution == LDPR_PREVAILING_DEF_IRONLY_EXP)
2485 && !flag_incremental_link);
2486 node->resolution = LDPR_PREVAILING_DEF_IRONLY;
2487 gcc_assert (node->get_availability () == AVAIL_LOCAL);
2489 return false;
2492 /* Bring cgraph node local. */
2494 void
2495 cgraph_node::make_local (void)
2497 call_for_symbol_thunks_and_aliases (cgraph_node::make_local, NULL, true);
2500 /* Worker to set nothrow flag. */
2502 static void
2503 set_nothrow_flag_1 (cgraph_node *node, bool nothrow, bool non_call,
2504 bool *changed)
2506 cgraph_edge *e;
2508 if (nothrow && !TREE_NOTHROW (node->decl))
2510 /* With non-call exceptions we can't say for sure if other function body
2511 was not possibly optimized to still throw. */
2512 if (!non_call || node->binds_to_current_def_p ())
2514 TREE_NOTHROW (node->decl) = true;
2515 *changed = true;
2516 for (e = node->callers; e; e = e->next_caller)
2517 e->can_throw_external = false;
2520 else if (!nothrow && TREE_NOTHROW (node->decl))
2522 TREE_NOTHROW (node->decl) = false;
2523 *changed = true;
2525 ipa_ref *ref;
2526 FOR_EACH_ALIAS (node, ref)
2528 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
2529 if (!nothrow || alias->get_availability () > AVAIL_INTERPOSABLE)
2530 set_nothrow_flag_1 (alias, nothrow, non_call, changed);
2532 for (cgraph_edge *e = node->callers; e; e = e->next_caller)
2533 if (e->caller->thunk
2534 && (!nothrow || e->caller->get_availability () > AVAIL_INTERPOSABLE))
2535 set_nothrow_flag_1 (e->caller, nothrow, non_call, changed);
2538 /* Set TREE_NOTHROW on NODE's decl and on aliases of NODE
2539 if any to NOTHROW. */
2541 bool
2542 cgraph_node::set_nothrow_flag (bool nothrow)
2544 bool changed = false;
2545 bool non_call = opt_for_fn (decl, flag_non_call_exceptions);
2547 if (!nothrow || get_availability () > AVAIL_INTERPOSABLE)
2548 set_nothrow_flag_1 (this, nothrow, non_call, &changed);
2549 else
2551 ipa_ref *ref;
2553 FOR_EACH_ALIAS (this, ref)
2555 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
2556 if (!nothrow || alias->get_availability () > AVAIL_INTERPOSABLE)
2557 set_nothrow_flag_1 (alias, nothrow, non_call, &changed);
2560 return changed;
2563 /* Worker to set malloc flag. */
2564 static void
2565 set_malloc_flag_1 (cgraph_node *node, bool malloc_p, bool *changed)
2567 if (malloc_p && !DECL_IS_MALLOC (node->decl))
2569 DECL_IS_MALLOC (node->decl) = true;
2570 *changed = true;
2573 ipa_ref *ref;
2574 FOR_EACH_ALIAS (node, ref)
2576 cgraph_node *alias = dyn_cast<cgraph_node *> (ref->referring);
2577 if (!malloc_p || alias->get_availability () > AVAIL_INTERPOSABLE)
2578 set_malloc_flag_1 (alias, malloc_p, changed);
2581 for (cgraph_edge *e = node->callers; e; e = e->next_caller)
2582 if (e->caller->thunk
2583 && (!malloc_p || e->caller->get_availability () > AVAIL_INTERPOSABLE))
2584 set_malloc_flag_1 (e->caller, malloc_p, changed);
2587 /* Set DECL_IS_MALLOC on NODE's decl and on NODE's aliases if any. */
2589 bool
2590 cgraph_node::set_malloc_flag (bool malloc_p)
2592 bool changed = false;
2594 if (!malloc_p || get_availability () > AVAIL_INTERPOSABLE)
2595 set_malloc_flag_1 (this, malloc_p, &changed);
2596 else
2598 ipa_ref *ref;
2600 FOR_EACH_ALIAS (this, ref)
2602 cgraph_node *alias = dyn_cast<cgraph_node *> (ref->referring);
2603 if (!malloc_p || alias->get_availability () > AVAIL_INTERPOSABLE)
2604 set_malloc_flag_1 (alias, malloc_p, &changed);
2607 return changed;
2610 /* Worker to set_const_flag. */
2612 static void
2613 set_const_flag_1 (cgraph_node *node, bool set_const, bool looping,
2614 bool *changed)
2616 /* Static constructors and destructors without a side effect can be
2617 optimized out. */
2618 if (set_const && !looping)
2620 if (DECL_STATIC_CONSTRUCTOR (node->decl))
2622 DECL_STATIC_CONSTRUCTOR (node->decl) = 0;
2623 *changed = true;
2625 if (DECL_STATIC_DESTRUCTOR (node->decl))
2627 DECL_STATIC_DESTRUCTOR (node->decl) = 0;
2628 *changed = true;
2631 if (!set_const)
2633 if (TREE_READONLY (node->decl))
2635 TREE_READONLY (node->decl) = 0;
2636 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = false;
2637 *changed = true;
2640 else
2642 /* Consider function:
2644 bool a(int *p)
2646 return *p==*p;
2649 During early optimization we will turn this into:
2651 bool a(int *p)
2653 return true;
2656 Now if this function will be detected as CONST however when interposed
2657 it may end up being just pure. We always must assume the worst
2658 scenario here. */
2659 if (TREE_READONLY (node->decl))
2661 if (!looping && DECL_LOOPING_CONST_OR_PURE_P (node->decl))
2663 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = false;
2664 *changed = true;
2667 else if (node->binds_to_current_def_p ())
2669 TREE_READONLY (node->decl) = true;
2670 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = looping;
2671 DECL_PURE_P (node->decl) = false;
2672 *changed = true;
2674 else
2676 if (dump_file && (dump_flags & TDF_DETAILS))
2677 fprintf (dump_file, "Dropping state to PURE because function does "
2678 "not bind to current def.\n");
2679 if (!DECL_PURE_P (node->decl))
2681 DECL_PURE_P (node->decl) = true;
2682 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = looping;
2683 *changed = true;
2685 else if (!looping && DECL_LOOPING_CONST_OR_PURE_P (node->decl))
2687 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = false;
2688 *changed = true;
2693 ipa_ref *ref;
2694 FOR_EACH_ALIAS (node, ref)
2696 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
2697 if (!set_const || alias->get_availability () > AVAIL_INTERPOSABLE)
2698 set_const_flag_1 (alias, set_const, looping, changed);
2700 for (cgraph_edge *e = node->callers; e; e = e->next_caller)
2701 if (e->caller->thunk
2702 && (!set_const || e->caller->get_availability () > AVAIL_INTERPOSABLE))
2704 /* Virtual thunks access virtual offset in the vtable, so they can
2705 only be pure, never const. */
2706 if (set_const
2707 && (thunk_info::get (e->caller)->virtual_offset_p
2708 || !node->binds_to_current_def_p (e->caller)))
2709 *changed |= e->caller->set_pure_flag (true, looping);
2710 else
2711 set_const_flag_1 (e->caller, set_const, looping, changed);
2715 /* If SET_CONST is true, mark function, aliases and thunks to be ECF_CONST.
2716 If SET_CONST if false, clear the flag.
2718 When setting the flag be careful about possible interposition and
2719 do not set the flag for functions that can be interposed and set pure
2720 flag for functions that can bind to other definition.
2722 Return true if any change was done. */
2724 bool
2725 cgraph_node::set_const_flag (bool set_const, bool looping)
2727 bool changed = false;
2728 if (!set_const || get_availability () > AVAIL_INTERPOSABLE)
2729 set_const_flag_1 (this, set_const, looping, &changed);
2730 else
2732 ipa_ref *ref;
2734 FOR_EACH_ALIAS (this, ref)
2736 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
2737 if (!set_const || alias->get_availability () > AVAIL_INTERPOSABLE)
2738 set_const_flag_1 (alias, set_const, looping, &changed);
2741 return changed;
2744 /* Info used by set_pure_flag_1. */
2746 struct set_pure_flag_info
2748 bool pure;
2749 bool looping;
2750 bool changed;
2753 /* Worker to set_pure_flag. */
2755 static bool
2756 set_pure_flag_1 (cgraph_node *node, void *data)
2758 struct set_pure_flag_info *info = (struct set_pure_flag_info *)data;
2759 /* Static constructors and destructors without a side effect can be
2760 optimized out. */
2761 if (info->pure && !info->looping)
2763 if (DECL_STATIC_CONSTRUCTOR (node->decl))
2765 DECL_STATIC_CONSTRUCTOR (node->decl) = 0;
2766 info->changed = true;
2768 if (DECL_STATIC_DESTRUCTOR (node->decl))
2770 DECL_STATIC_DESTRUCTOR (node->decl) = 0;
2771 info->changed = true;
2774 if (info->pure)
2776 if (!DECL_PURE_P (node->decl) && !TREE_READONLY (node->decl))
2778 DECL_PURE_P (node->decl) = true;
2779 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = info->looping;
2780 info->changed = true;
2782 else if (DECL_LOOPING_CONST_OR_PURE_P (node->decl)
2783 && !info->looping)
2785 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = false;
2786 info->changed = true;
2789 else
2791 if (DECL_PURE_P (node->decl))
2793 DECL_PURE_P (node->decl) = false;
2794 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = false;
2795 info->changed = true;
2798 return false;
2801 /* Set DECL_PURE_P on cgraph_node's decl and on aliases of the node
2802 if any to PURE.
2804 When setting the flag, be careful about possible interposition.
2805 Return true if any change was done. */
2807 bool
2808 cgraph_node::set_pure_flag (bool pure, bool looping)
2810 struct set_pure_flag_info info = {pure, looping, false};
2811 call_for_symbol_thunks_and_aliases (set_pure_flag_1, &info, !pure, true);
2812 return info.changed;
2815 /* Return true when cgraph_node cannot return or throw and thus
2816 it is safe to ignore its side effects for IPA analysis. */
2818 bool
2819 cgraph_node::cannot_return_p (void)
2821 int flags = flags_from_decl_or_type (decl);
2822 if (!opt_for_fn (decl, flag_exceptions))
2823 return (flags & ECF_NORETURN) != 0;
2824 else
2825 return ((flags & (ECF_NORETURN | ECF_NOTHROW))
2826 == (ECF_NORETURN | ECF_NOTHROW));
2829 /* Return true when call of edge cannot lead to return from caller
2830 and thus it is safe to ignore its side effects for IPA analysis
2831 when computing side effects of the caller.
2832 FIXME: We could actually mark all edges that have no reaching
2833 patch to the exit block or throw to get better results. */
2834 bool
2835 cgraph_edge::cannot_lead_to_return_p (void)
2837 if (caller->cannot_return_p ())
2838 return true;
2839 if (indirect_unknown_callee)
2841 int flags = indirect_info->ecf_flags;
2842 if (!opt_for_fn (caller->decl, flag_exceptions))
2843 return (flags & ECF_NORETURN) != 0;
2844 else
2845 return ((flags & (ECF_NORETURN | ECF_NOTHROW))
2846 == (ECF_NORETURN | ECF_NOTHROW));
2848 else
2849 return callee->cannot_return_p ();
2852 /* Return true if the edge may be considered hot. */
2854 bool
2855 cgraph_edge::maybe_hot_p (void)
2857 if (!maybe_hot_count_p (NULL, count.ipa ()))
2858 return false;
2859 if (caller->frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED
2860 || (callee
2861 && callee->frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED))
2862 return false;
2863 if (caller->frequency > NODE_FREQUENCY_UNLIKELY_EXECUTED
2864 && (callee
2865 && callee->frequency <= NODE_FREQUENCY_EXECUTED_ONCE))
2866 return false;
2867 if (opt_for_fn (caller->decl, optimize_size))
2868 return false;
2869 if (caller->frequency == NODE_FREQUENCY_HOT)
2870 return true;
2871 if (!count.initialized_p ())
2872 return true;
2873 cgraph_node *where = caller->inlined_to ? caller->inlined_to : caller;
2874 if (!where->count.initialized_p ())
2875 return false;
2876 if (caller->frequency == NODE_FREQUENCY_EXECUTED_ONCE)
2878 if (count.apply_scale (2, 1) < where->count.apply_scale (3, 1))
2879 return false;
2881 else if (count.apply_scale (param_hot_bb_frequency_fraction , 1)
2882 < where->count)
2883 return false;
2884 return true;
2887 /* Worker for cgraph_can_remove_if_no_direct_calls_p. */
2889 static bool
2890 nonremovable_p (cgraph_node *node, void *)
2892 return !node->can_remove_if_no_direct_calls_and_refs_p ();
2895 /* Return true if whole comdat group can be removed if there are no direct
2896 calls to THIS. */
2898 bool
2899 cgraph_node::can_remove_if_no_direct_calls_p (bool will_inline)
2901 struct ipa_ref *ref;
2903 /* For local symbols or non-comdat group it is the same as
2904 can_remove_if_no_direct_calls_p. */
2905 if (!externally_visible || !same_comdat_group)
2907 if (DECL_EXTERNAL (decl))
2908 return true;
2909 if (address_taken)
2910 return false;
2911 return !call_for_symbol_and_aliases (nonremovable_p, NULL, true);
2914 if (will_inline && address_taken)
2915 return false;
2917 /* Otherwise check if we can remove the symbol itself and then verify
2918 that only uses of the comdat groups are direct call to THIS
2919 or its aliases. */
2920 if (!can_remove_if_no_direct_calls_and_refs_p ())
2921 return false;
2923 /* Check that all refs come from within the comdat group. */
2924 for (int i = 0; iterate_referring (i, ref); i++)
2925 if (ref->referring->get_comdat_group () != get_comdat_group ())
2926 return false;
2928 struct cgraph_node *target = ultimate_alias_target ();
2929 for (cgraph_node *next = dyn_cast<cgraph_node *> (same_comdat_group);
2930 next != this; next = dyn_cast<cgraph_node *> (next->same_comdat_group))
2932 if (!externally_visible)
2933 continue;
2934 if (!next->alias
2935 && !next->can_remove_if_no_direct_calls_and_refs_p ())
2936 return false;
2938 /* If we see different symbol than THIS, be sure to check calls. */
2939 if (next->ultimate_alias_target () != target)
2940 for (cgraph_edge *e = next->callers; e; e = e->next_caller)
2941 if (e->caller->get_comdat_group () != get_comdat_group ()
2942 || will_inline)
2943 return false;
2945 /* If function is not being inlined, we care only about
2946 references outside of the comdat group. */
2947 if (!will_inline)
2948 for (int i = 0; next->iterate_referring (i, ref); i++)
2949 if (ref->referring->get_comdat_group () != get_comdat_group ())
2950 return false;
2952 return true;
2955 /* Return true when function cgraph_node can be expected to be removed
2956 from program when direct calls in this compilation unit are removed.
2958 As a special case COMDAT functions are
2959 cgraph_can_remove_if_no_direct_calls_p while the are not
2960 cgraph_only_called_directly_p (it is possible they are called from other
2961 unit)
2963 This function behaves as cgraph_only_called_directly_p because eliminating
2964 all uses of COMDAT function does not make it necessarily disappear from
2965 the program unless we are compiling whole program or we do LTO. In this
2966 case we know we win since dynamic linking will not really discard the
2967 linkonce section. */
2969 bool
2970 cgraph_node::will_be_removed_from_program_if_no_direct_calls_p
2971 (bool will_inline)
2973 gcc_assert (!inlined_to);
2974 if (DECL_EXTERNAL (decl))
2975 return true;
2977 if (!in_lto_p && !flag_whole_program)
2979 /* If the symbol is in comdat group, we need to verify that whole comdat
2980 group becomes unreachable. Technically we could skip references from
2981 within the group, too. */
2982 if (!only_called_directly_p ())
2983 return false;
2984 if (same_comdat_group && externally_visible)
2986 struct cgraph_node *target = ultimate_alias_target ();
2988 if (will_inline && address_taken)
2989 return true;
2990 for (cgraph_node *next = dyn_cast<cgraph_node *> (same_comdat_group);
2991 next != this;
2992 next = dyn_cast<cgraph_node *> (next->same_comdat_group))
2994 if (!externally_visible)
2995 continue;
2996 if (!next->alias
2997 && !next->only_called_directly_p ())
2998 return false;
3000 /* If we see different symbol than THIS,
3001 be sure to check calls. */
3002 if (next->ultimate_alias_target () != target)
3003 for (cgraph_edge *e = next->callers; e; e = e->next_caller)
3004 if (e->caller->get_comdat_group () != get_comdat_group ()
3005 || will_inline)
3006 return false;
3009 return true;
3011 else
3012 return can_remove_if_no_direct_calls_p (will_inline);
3016 /* Worker for cgraph_only_called_directly_p. */
3018 static bool
3019 cgraph_not_only_called_directly_p_1 (cgraph_node *node, void *)
3021 return !node->only_called_directly_or_aliased_p ();
3024 /* Return true when function cgraph_node and all its aliases are only called
3025 directly.
3026 i.e. it is not externally visible, address was not taken and
3027 it is not used in any other non-standard way. */
3029 bool
3030 cgraph_node::only_called_directly_p (void)
3032 gcc_assert (ultimate_alias_target () == this);
3033 return !call_for_symbol_and_aliases (cgraph_not_only_called_directly_p_1,
3034 NULL, true);
3038 /* Collect all callers of NODE. Worker for collect_callers_of_node. */
3040 static bool
3041 collect_callers_of_node_1 (cgraph_node *node, void *data)
3043 vec<cgraph_edge *> *redirect_callers = (vec<cgraph_edge *> *)data;
3044 cgraph_edge *cs;
3045 enum availability avail;
3046 node->ultimate_alias_target (&avail);
3048 if (avail > AVAIL_INTERPOSABLE)
3049 for (cs = node->callers; cs != NULL; cs = cs->next_caller)
3050 if (!cs->indirect_inlining_edge
3051 && !cs->caller->thunk)
3052 redirect_callers->safe_push (cs);
3053 return false;
3056 /* Collect all callers of cgraph_node and its aliases that are known to lead to
3057 cgraph_node (i.e. are not overwritable). */
3059 vec<cgraph_edge *>
3060 cgraph_node::collect_callers (void)
3062 vec<cgraph_edge *> redirect_callers = vNULL;
3063 call_for_symbol_thunks_and_aliases (collect_callers_of_node_1,
3064 &redirect_callers, false);
3065 return redirect_callers;
3069 /* Return TRUE if NODE2 a clone of NODE or is equivalent to it. Return
3070 optimistically true if this cannot be determined. */
3072 static bool
3073 clone_of_p (cgraph_node *node, cgraph_node *node2)
3075 node = node->ultimate_alias_target ();
3076 node2 = node2->ultimate_alias_target ();
3078 if (node2->clone_of == node
3079 || node2->former_clone_of == node->decl)
3080 return true;
3082 if (!node->thunk && !node->former_thunk_p ())
3084 while (node2 && node->decl != node2->decl)
3085 node2 = node2->clone_of;
3086 return node2 != NULL;
3089 /* There are no virtual clones of thunks so check former_clone_of or if we
3090 might have skipped thunks because this adjustments are no longer
3091 necessary. */
3092 while (node->thunk || node->former_thunk_p ())
3094 if (!thunk_info::get (node)->this_adjusting)
3095 return false;
3096 /* In case of instrumented expanded thunks, which can have multiple calls
3097 in them, we do not know how to continue and just have to be
3098 optimistic. The same applies if all calls have already been inlined
3099 into the thunk. */
3100 if (!node->callees || node->callees->next_callee)
3101 return true;
3102 node = node->callees->callee->ultimate_alias_target ();
3104 clone_info *info = clone_info::get (node2);
3105 if (!info || !info->param_adjustments
3106 || info->param_adjustments->first_param_intact_p ())
3107 return false;
3108 if (node2->former_clone_of == node->decl
3109 || node2->former_clone_of == node->former_clone_of)
3110 return true;
3112 cgraph_node *n2 = node2;
3113 while (n2 && node->decl != n2->decl)
3114 n2 = n2->clone_of;
3115 if (n2)
3116 return true;
3119 return false;
3122 /* Verify edge count and frequency. */
3124 bool
3125 cgraph_edge::verify_count ()
3127 bool error_found = false;
3128 if (!count.verify ())
3130 error ("caller edge count invalid");
3131 error_found = true;
3133 return error_found;
3136 /* Switch to THIS_CFUN if needed and print STMT to stderr. */
3137 static void
3138 cgraph_debug_gimple_stmt (function *this_cfun, gimple *stmt)
3140 bool fndecl_was_null = false;
3141 /* debug_gimple_stmt needs correct cfun */
3142 if (cfun != this_cfun)
3143 set_cfun (this_cfun);
3144 /* ...and an actual current_function_decl */
3145 if (!current_function_decl)
3147 current_function_decl = this_cfun->decl;
3148 fndecl_was_null = true;
3150 debug_gimple_stmt (stmt);
3151 if (fndecl_was_null)
3152 current_function_decl = NULL;
3155 /* Verify that call graph edge corresponds to DECL from the associated
3156 statement. Return true if the verification should fail. */
3158 bool
3159 cgraph_edge::verify_corresponds_to_fndecl (tree decl)
3161 cgraph_node *node;
3163 if (!decl || callee->inlined_to)
3164 return false;
3165 if (symtab->state == LTO_STREAMING)
3166 return false;
3167 node = cgraph_node::get (decl);
3169 /* We do not know if a node from a different partition is an alias or what it
3170 aliases and therefore cannot do the former_clone_of check reliably. When
3171 body_removed is set, we have lost all information about what was alias or
3172 thunk of and also cannot proceed. */
3173 if (!node
3174 || node->body_removed
3175 || node->in_other_partition
3176 || callee->icf_merged
3177 || callee->in_other_partition)
3178 return false;
3180 node = node->ultimate_alias_target ();
3182 /* Optimizers can redirect unreachable calls or calls triggering undefined
3183 behavior to builtin_unreachable. */
3185 if (fndecl_built_in_p (callee->decl, BUILT_IN_UNREACHABLE))
3186 return false;
3188 if (callee->former_clone_of != node->decl
3189 && (node != callee->ultimate_alias_target ())
3190 && !clone_of_p (node, callee))
3191 return true;
3192 else
3193 return false;
3196 /* Disable warnings about missing quoting in GCC diagnostics for
3197 the verification errors. Their format strings don't follow GCC
3198 diagnostic conventions and the calls are ultimately followed by
3199 one to internal_error. */
3200 #if __GNUC__ >= 10
3201 # pragma GCC diagnostic push
3202 # pragma GCC diagnostic ignored "-Wformat-diag"
3203 #endif
3205 /* Verify consistency of speculative call in NODE corresponding to STMT
3206 and LTO_STMT_UID. If INDIRECT is set, assume that it is the indirect
3207 edge of call sequence. Return true if error is found.
3209 This function is called to every component of indirect call (direct edges,
3210 indirect edge and refs). To save duplicated work, do full testing only
3211 in that case. */
3212 static bool
3213 verify_speculative_call (struct cgraph_node *node, gimple *stmt,
3214 unsigned int lto_stmt_uid,
3215 struct cgraph_edge *indirect)
3217 if (indirect == NULL)
3219 for (indirect = node->indirect_calls; indirect;
3220 indirect = indirect->next_callee)
3221 if (indirect->call_stmt == stmt
3222 && indirect->lto_stmt_uid == lto_stmt_uid)
3223 break;
3224 if (!indirect)
3226 error ("missing indirect call in speculative call sequence");
3227 return true;
3229 if (!indirect->speculative)
3231 error ("indirect call in speculative call sequence has no "
3232 "speculative flag");
3233 return true;
3235 return false;
3238 /* Maximal number of targets. We probably will never want to have more than
3239 this. */
3240 const unsigned int num = 256;
3241 cgraph_edge *direct_calls[num];
3242 ipa_ref *refs[num];
3244 for (unsigned int i = 0; i < num; i++)
3246 direct_calls[i] = NULL;
3247 refs[i] = NULL;
3250 cgraph_edge *first_call = NULL;
3251 cgraph_edge *prev_call = NULL;
3253 for (cgraph_edge *direct = node->callees; direct;
3254 direct = direct->next_callee)
3255 if (direct->call_stmt == stmt && direct->lto_stmt_uid == lto_stmt_uid)
3257 if (!first_call)
3258 first_call = direct;
3259 if (prev_call && direct != prev_call->next_callee)
3261 error ("speculative edges are not adjacent");
3262 return true;
3264 prev_call = direct;
3265 if (!direct->speculative)
3267 error ("direct call to %s in speculative call sequence has no "
3268 "speculative flag", direct->callee->dump_name ());
3269 return true;
3271 if (direct->speculative_id >= num)
3273 error ("direct call to %s in speculative call sequence has "
3274 "speculative_id %i out of range",
3275 direct->callee->dump_name (), direct->speculative_id);
3276 return true;
3278 if (direct_calls[direct->speculative_id])
3280 error ("duplicate direct call to %s in speculative call sequence "
3281 "with speculative_id %i",
3282 direct->callee->dump_name (), direct->speculative_id);
3283 return true;
3285 direct_calls[direct->speculative_id] = direct;
3288 if (first_call->call_stmt
3289 && first_call != node->get_edge (first_call->call_stmt))
3291 error ("call stmt hash does not point to first direct edge of "
3292 "speculative call sequence");
3293 return true;
3296 ipa_ref *ref;
3297 for (int i = 0; node->iterate_reference (i, ref); i++)
3298 if (ref->speculative
3299 && ref->stmt == stmt && ref->lto_stmt_uid == lto_stmt_uid)
3301 if (ref->speculative_id >= num)
3303 error ("direct call to %s in speculative call sequence has "
3304 "speculative_id %i out of range",
3305 ref->referred->dump_name (), ref->speculative_id);
3306 return true;
3308 if (refs[ref->speculative_id])
3310 error ("duplicate reference %s in speculative call sequence "
3311 "with speculative_id %i",
3312 ref->referred->dump_name (), ref->speculative_id);
3313 return true;
3315 refs[ref->speculative_id] = ref;
3318 int num_targets = 0;
3319 for (unsigned int i = 0 ; i < num ; i++)
3321 if (refs[i] && !direct_calls[i])
3323 error ("missing direct call for speculation %i", i);
3324 return true;
3326 if (!refs[i] && direct_calls[i])
3328 error ("missing ref for speculation %i", i);
3329 return true;
3331 if (refs[i] != NULL)
3332 num_targets++;
3335 if (num_targets != indirect->num_speculative_call_targets_p ())
3337 error ("number of speculative targets %i mismatched with "
3338 "num_speculative_call_targets %i",
3339 num_targets,
3340 indirect->num_speculative_call_targets_p ());
3341 return true;
3343 return false;
3346 /* Verify cgraph nodes of given cgraph node. */
3347 DEBUG_FUNCTION void
3348 cgraph_node::verify_node (void)
3350 cgraph_edge *e;
3351 function *this_cfun = DECL_STRUCT_FUNCTION (decl);
3352 basic_block this_block;
3353 gimple_stmt_iterator gsi;
3354 bool error_found = false;
3355 int i;
3356 ipa_ref *ref = NULL;
3358 if (seen_error ())
3359 return;
3361 timevar_push (TV_CGRAPH_VERIFY);
3362 error_found |= verify_base ();
3363 for (e = callees; e; e = e->next_callee)
3364 if (e->aux)
3366 error ("aux field set for edge %s->%s",
3367 identifier_to_locale (e->caller->name ()),
3368 identifier_to_locale (e->callee->name ()));
3369 error_found = true;
3371 if (!count.verify ())
3373 error ("cgraph count invalid");
3374 error_found = true;
3376 if (inlined_to && same_comdat_group)
3378 error ("inline clone in same comdat group list");
3379 error_found = true;
3381 if (inlined_to && !count.compatible_p (inlined_to->count))
3383 error ("inline clone count is not compatible");
3384 count.debug ();
3385 inlined_to->count.debug ();
3386 error_found = true;
3388 if (tp_first_run < 0)
3390 error ("tp_first_run must be non-negative");
3391 error_found = true;
3393 if (!definition && !in_other_partition && local)
3395 error ("local symbols must be defined");
3396 error_found = true;
3398 if (inlined_to && externally_visible)
3400 error ("externally visible inline clone");
3401 error_found = true;
3403 if (inlined_to && address_taken)
3405 error ("inline clone with address taken");
3406 error_found = true;
3408 if (inlined_to && force_output)
3410 error ("inline clone is forced to output");
3411 error_found = true;
3413 if (symtab->state != LTO_STREAMING)
3415 if (calls_comdat_local && !same_comdat_group)
3417 error ("calls_comdat_local is set outside of a comdat group");
3418 error_found = true;
3420 if (!inlined_to && calls_comdat_local != check_calls_comdat_local_p ())
3422 error ("invalid calls_comdat_local flag");
3423 error_found = true;
3426 if (DECL_IS_MALLOC (decl)
3427 && !POINTER_TYPE_P (TREE_TYPE (TREE_TYPE (decl))))
3429 error ("malloc attribute should be used for a function that "
3430 "returns a pointer");
3431 error_found = true;
3433 for (e = indirect_calls; e; e = e->next_callee)
3435 if (e->aux)
3437 error ("aux field set for indirect edge from %s",
3438 identifier_to_locale (e->caller->name ()));
3439 error_found = true;
3441 if (!e->count.compatible_p (count))
3443 error ("edge count is not compatible with function count");
3444 e->count.debug ();
3445 count.debug ();
3446 error_found = true;
3448 if (!e->indirect_unknown_callee
3449 || !e->indirect_info)
3451 error ("An indirect edge from %s is not marked as indirect or has "
3452 "associated indirect_info, the corresponding statement is: ",
3453 identifier_to_locale (e->caller->name ()));
3454 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt);
3455 error_found = true;
3457 if (e->call_stmt && e->lto_stmt_uid)
3459 error ("edge has both call_stmt and lto_stmt_uid set");
3460 error_found = true;
3463 bool check_comdat = comdat_local_p ();
3464 for (e = callers; e; e = e->next_caller)
3466 if (e->verify_count ())
3467 error_found = true;
3468 if (check_comdat
3469 && !in_same_comdat_group_p (e->caller))
3471 error ("comdat-local function called by %s outside its comdat",
3472 identifier_to_locale (e->caller->name ()));
3473 error_found = true;
3475 if (!e->inline_failed)
3477 if (inlined_to
3478 != (e->caller->inlined_to
3479 ? e->caller->inlined_to : e->caller))
3481 error ("inlined_to pointer is wrong");
3482 error_found = true;
3484 if (callers->next_caller)
3486 error ("multiple inline callers");
3487 error_found = true;
3490 else
3491 if (inlined_to)
3493 error ("inlined_to pointer set for noninline callers");
3494 error_found = true;
3497 for (e = callees; e; e = e->next_callee)
3499 if (e->verify_count ())
3500 error_found = true;
3501 if (!e->count.compatible_p (count))
3503 error ("edge count is not compatible with function count");
3504 e->count.debug ();
3505 count.debug ();
3506 error_found = true;
3508 if (gimple_has_body_p (e->caller->decl)
3509 && !e->caller->inlined_to
3510 && !e->speculative
3511 /* Optimized out calls are redirected to __builtin_unreachable. */
3512 && (e->count.nonzero_p ()
3513 || ! e->callee->decl
3514 || !fndecl_built_in_p (e->callee->decl, BUILT_IN_UNREACHABLE))
3515 && count
3516 == ENTRY_BLOCK_PTR_FOR_FN (DECL_STRUCT_FUNCTION (decl))->count
3517 && (!e->count.ipa_p ()
3518 && e->count.differs_from_p (gimple_bb (e->call_stmt)->count)))
3520 error ("caller edge count does not match BB count");
3521 fprintf (stderr, "edge count: ");
3522 e->count.dump (stderr);
3523 fprintf (stderr, "\n bb count: ");
3524 gimple_bb (e->call_stmt)->count.dump (stderr);
3525 fprintf (stderr, "\n");
3526 error_found = true;
3528 if (e->call_stmt && e->lto_stmt_uid)
3530 error ("edge has both call_stmt and lto_stmt_uid set");
3531 error_found = true;
3533 if (e->speculative
3534 && verify_speculative_call (e->caller, e->call_stmt, e->lto_stmt_uid,
3535 NULL))
3536 error_found = true;
3538 for (e = indirect_calls; e; e = e->next_callee)
3540 if (e->verify_count ())
3541 error_found = true;
3542 if (gimple_has_body_p (e->caller->decl)
3543 && !e->caller->inlined_to
3544 && !e->speculative
3545 && e->count.ipa_p ()
3546 && count
3547 == ENTRY_BLOCK_PTR_FOR_FN (DECL_STRUCT_FUNCTION (decl))->count
3548 && (!e->count.ipa_p ()
3549 && e->count.differs_from_p (gimple_bb (e->call_stmt)->count)))
3551 error ("indirect call count does not match BB count");
3552 fprintf (stderr, "edge count: ");
3553 e->count.dump (stderr);
3554 fprintf (stderr, "\n bb count: ");
3555 gimple_bb (e->call_stmt)->count.dump (stderr);
3556 fprintf (stderr, "\n");
3557 error_found = true;
3559 if (e->speculative
3560 && verify_speculative_call (e->caller, e->call_stmt, e->lto_stmt_uid,
3562 error_found = true;
3564 for (i = 0; iterate_reference (i, ref); i++)
3566 if (ref->stmt && ref->lto_stmt_uid)
3568 error ("reference has both stmt and lto_stmt_uid set");
3569 error_found = true;
3571 if (ref->speculative
3572 && verify_speculative_call (this, ref->stmt,
3573 ref->lto_stmt_uid, NULL))
3574 error_found = true;
3577 if (!callers && inlined_to)
3579 error ("inlined_to pointer is set but no predecessors found");
3580 error_found = true;
3582 if (inlined_to == this)
3584 error ("inlined_to pointer refers to itself");
3585 error_found = true;
3588 if (clone_of)
3590 cgraph_node *first_clone = clone_of->clones;
3591 if (first_clone != this)
3593 if (prev_sibling_clone->clone_of != clone_of)
3595 error ("cgraph_node has wrong clone_of");
3596 error_found = true;
3600 if (clones)
3602 cgraph_node *n;
3603 for (n = clones; n; n = n->next_sibling_clone)
3604 if (n->clone_of != this)
3605 break;
3606 if (n)
3608 error ("cgraph_node has wrong clone list");
3609 error_found = true;
3612 if ((prev_sibling_clone || next_sibling_clone) && !clone_of)
3614 error ("cgraph_node is in clone list but it is not clone");
3615 error_found = true;
3617 if (!prev_sibling_clone && clone_of && clone_of->clones != this)
3619 error ("cgraph_node has wrong prev_clone pointer");
3620 error_found = true;
3622 if (prev_sibling_clone && prev_sibling_clone->next_sibling_clone != this)
3624 error ("double linked list of clones corrupted");
3625 error_found = true;
3628 if (analyzed && alias)
3630 bool ref_found = false;
3631 int i;
3632 ipa_ref *ref = NULL;
3634 if (callees)
3636 error ("Alias has call edges");
3637 error_found = true;
3639 for (i = 0; iterate_reference (i, ref); i++)
3640 if (ref->use != IPA_REF_ALIAS)
3642 error ("Alias has non-alias reference");
3643 error_found = true;
3645 else if (ref_found)
3647 error ("Alias has more than one alias reference");
3648 error_found = true;
3650 else
3651 ref_found = true;
3652 if (!ref_found)
3654 error ("Analyzed alias has no reference");
3655 error_found = true;
3659 if (analyzed && thunk)
3661 if (!callees)
3663 error ("No edge out of thunk node");
3664 error_found = true;
3666 else if (callees->next_callee)
3668 error ("More than one edge out of thunk node");
3669 error_found = true;
3671 if (gimple_has_body_p (decl) && !inlined_to)
3673 error ("Thunk is not supposed to have body");
3674 error_found = true;
3677 else if (analyzed && gimple_has_body_p (decl)
3678 && !TREE_ASM_WRITTEN (decl)
3679 && (!DECL_EXTERNAL (decl) || inlined_to)
3680 && !flag_wpa)
3682 if (this_cfun->cfg)
3684 hash_set<gimple *> stmts;
3686 /* Reach the trees by walking over the CFG, and note the
3687 enclosing basic-blocks in the call edges. */
3688 FOR_EACH_BB_FN (this_block, this_cfun)
3690 for (gsi = gsi_start_phis (this_block);
3691 !gsi_end_p (gsi); gsi_next (&gsi))
3692 stmts.add (gsi_stmt (gsi));
3693 for (gsi = gsi_start_bb (this_block);
3694 !gsi_end_p (gsi);
3695 gsi_next (&gsi))
3697 gimple *stmt = gsi_stmt (gsi);
3698 stmts.add (stmt);
3699 if (is_gimple_call (stmt))
3701 cgraph_edge *e = get_edge (stmt);
3702 tree decl = gimple_call_fndecl (stmt);
3703 if (e)
3705 if (e->aux)
3707 error ("shared call_stmt:");
3708 cgraph_debug_gimple_stmt (this_cfun, stmt);
3709 error_found = true;
3711 if (!e->indirect_unknown_callee)
3713 if (e->verify_corresponds_to_fndecl (decl))
3715 error ("edge points to wrong declaration:");
3716 debug_tree (e->callee->decl);
3717 fprintf (stderr," Instead of:");
3718 debug_tree (decl);
3719 error_found = true;
3722 else if (decl)
3724 error ("an indirect edge with unknown callee "
3725 "corresponding to a call_stmt with "
3726 "a known declaration:");
3727 error_found = true;
3728 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt);
3730 e->aux = (void *)1;
3732 else if (decl)
3734 error ("missing callgraph edge for call stmt:");
3735 cgraph_debug_gimple_stmt (this_cfun, stmt);
3736 error_found = true;
3741 for (i = 0; iterate_reference (i, ref); i++)
3742 if (ref->stmt && !stmts.contains (ref->stmt))
3744 error ("reference to dead statement");
3745 cgraph_debug_gimple_stmt (this_cfun, ref->stmt);
3746 error_found = true;
3749 else
3750 /* No CFG available?! */
3751 gcc_unreachable ();
3753 for (e = callees; e; e = e->next_callee)
3755 if (!e->aux && !e->speculative)
3757 error ("edge %s->%s has no corresponding call_stmt",
3758 identifier_to_locale (e->caller->name ()),
3759 identifier_to_locale (e->callee->name ()));
3760 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt);
3761 error_found = true;
3763 e->aux = 0;
3765 for (e = indirect_calls; e; e = e->next_callee)
3767 if (!e->aux && !e->speculative)
3769 error ("an indirect edge from %s has no corresponding call_stmt",
3770 identifier_to_locale (e->caller->name ()));
3771 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt);
3772 error_found = true;
3774 e->aux = 0;
3778 if (nested_function_info *info = nested_function_info::get (this))
3780 if (info->nested != NULL)
3782 for (cgraph_node *n = info->nested; n != NULL;
3783 n = next_nested_function (n))
3785 nested_function_info *ninfo = nested_function_info::get (n);
3786 if (ninfo->origin == NULL)
3788 error ("missing origin for a node in a nested list");
3789 error_found = true;
3791 else if (ninfo->origin != this)
3793 error ("origin points to a different parent");
3794 error_found = true;
3795 break;
3799 if (info->next_nested != NULL && info->origin == NULL)
3801 error ("missing origin for a node in a nested list");
3802 error_found = true;
3806 if (error_found)
3808 dump (stderr);
3809 internal_error ("verify_cgraph_node failed");
3811 timevar_pop (TV_CGRAPH_VERIFY);
3814 /* Verify whole cgraph structure. */
3815 DEBUG_FUNCTION void
3816 cgraph_node::verify_cgraph_nodes (void)
3818 cgraph_node *node;
3820 if (seen_error ())
3821 return;
3823 FOR_EACH_FUNCTION (node)
3824 node->verify ();
3827 #if __GNUC__ >= 10
3828 # pragma GCC diagnostic pop
3829 #endif
3831 /* Walk the alias chain to return the function cgraph_node is alias of.
3832 Walk through thunks, too.
3833 When AVAILABILITY is non-NULL, get minimal availability in the chain.
3834 When REF is non-NULL, assume that reference happens in symbol REF
3835 when determining the availability. */
3837 cgraph_node *
3838 cgraph_node::function_symbol (enum availability *availability,
3839 struct symtab_node *ref)
3841 cgraph_node *node = ultimate_alias_target (availability, ref);
3843 while (node->thunk)
3845 enum availability a;
3847 ref = node;
3848 node = node->callees->callee;
3849 node = node->ultimate_alias_target (availability ? &a : NULL, ref);
3850 if (availability && a < *availability)
3851 *availability = a;
3853 return node;
3856 /* Walk the alias chain to return the function cgraph_node is alias of.
3857 Walk through non virtual thunks, too. Thus we return either a function
3858 or a virtual thunk node.
3859 When AVAILABILITY is non-NULL, get minimal availability in the chain.
3860 When REF is non-NULL, assume that reference happens in symbol REF
3861 when determining the availability. */
3863 cgraph_node *
3864 cgraph_node::function_or_virtual_thunk_symbol
3865 (enum availability *availability,
3866 struct symtab_node *ref)
3868 cgraph_node *node = ultimate_alias_target (availability, ref);
3870 while (node->thunk && !thunk_info::get (node)->virtual_offset_p)
3872 enum availability a;
3874 ref = node;
3875 node = node->callees->callee;
3876 node = node->ultimate_alias_target (availability ? &a : NULL, ref);
3877 if (availability && a < *availability)
3878 *availability = a;
3880 return node;
3883 /* When doing LTO, read cgraph_node's body from disk if it is not already
3884 present. Also perform any necessary clone materializations. */
3886 bool
3887 cgraph_node::get_untransformed_body ()
3889 lto_file_decl_data *file_data;
3890 const char *data, *name;
3891 size_t len;
3892 tree decl = this->decl;
3894 /* See if there is clone to be materialized.
3895 (inline clones does not need materialization, but we can be seeing
3896 an inline clone of real clone). */
3897 cgraph_node *p = this;
3898 for (cgraph_node *c = clone_of; c; c = c->clone_of)
3900 if (c->decl != decl)
3901 p->materialize_clone ();
3902 p = c;
3905 /* Check if body is already there. Either we have gimple body or
3906 the function is thunk and in that case we set DECL_ARGUMENTS. */
3907 if (DECL_ARGUMENTS (decl) || gimple_has_body_p (decl))
3908 return false;
3910 gcc_assert (in_lto_p && !DECL_RESULT (decl));
3912 timevar_push (TV_IPA_LTO_GIMPLE_IN);
3914 file_data = lto_file_data;
3915 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
3917 /* We may have renamed the declaration, e.g., a static function. */
3918 name = lto_get_decl_name_mapping (file_data, name);
3919 struct lto_in_decl_state *decl_state
3920 = lto_get_function_in_decl_state (file_data, decl);
3922 cgraph_node *origin = this;
3923 while (origin->clone_of)
3924 origin = origin->clone_of;
3926 int stream_order = origin->order - file_data->order_base;
3927 data = lto_get_section_data (file_data, LTO_section_function_body,
3928 name, stream_order, &len,
3929 decl_state->compressed);
3930 if (!data)
3931 fatal_error (input_location, "%s: section %s.%d is missing",
3932 file_data->file_name, name, stream_order);
3934 gcc_assert (DECL_STRUCT_FUNCTION (decl) == NULL);
3936 if (!quiet_flag)
3937 fprintf (stderr, " in:%s", IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)));
3938 lto_input_function_body (file_data, this, data);
3939 lto_stats.num_function_bodies++;
3940 lto_free_section_data (file_data, LTO_section_function_body, name,
3941 data, len, decl_state->compressed);
3942 lto_free_function_in_decl_state_for_node (this);
3943 /* Keep lto file data so ipa-inline-analysis knows about cross module
3944 inlining. */
3946 timevar_pop (TV_IPA_LTO_GIMPLE_IN);
3948 return true;
3951 /* Prepare function body. When doing LTO, read cgraph_node's body from disk
3952 if it is not already present. When some IPA transformations are scheduled,
3953 apply them. */
3955 bool
3956 cgraph_node::get_body (void)
3958 bool updated;
3960 updated = get_untransformed_body ();
3962 /* Getting transformed body makes no sense for inline clones;
3963 we should never use this on real clones because they are materialized
3964 early.
3965 TODO: Materializing clones here will likely lead to smaller LTRANS
3966 footprint. */
3967 gcc_assert (!inlined_to && !clone_of);
3968 if (ipa_transforms_to_apply.exists ())
3970 opt_pass *saved_current_pass = current_pass;
3971 FILE *saved_dump_file = dump_file;
3972 const char *saved_dump_file_name = dump_file_name;
3973 dump_flags_t saved_dump_flags = dump_flags;
3974 dump_file_name = NULL;
3975 set_dump_file (NULL);
3977 push_cfun (DECL_STRUCT_FUNCTION (decl));
3979 update_ssa (TODO_update_ssa_only_virtuals);
3980 execute_all_ipa_transforms (true);
3981 cgraph_edge::rebuild_edges ();
3982 free_dominance_info (CDI_DOMINATORS);
3983 free_dominance_info (CDI_POST_DOMINATORS);
3984 pop_cfun ();
3985 updated = true;
3987 current_pass = saved_current_pass;
3988 set_dump_file (saved_dump_file);
3989 dump_file_name = saved_dump_file_name;
3990 dump_flags = saved_dump_flags;
3992 return updated;
3995 /* Return the DECL_STRUCT_FUNCTION of the function. */
3997 struct function *
3998 cgraph_node::get_fun () const
4000 const cgraph_node *node = this;
4001 struct function *fun = DECL_STRUCT_FUNCTION (node->decl);
4003 while (!fun && node->clone_of)
4005 node = node->clone_of;
4006 fun = DECL_STRUCT_FUNCTION (node->decl);
4009 return fun;
4012 /* Reset all state within cgraph.c so that we can rerun the compiler
4013 within the same process. For use by toplev::finalize. */
4015 void
4016 cgraph_c_finalize (void)
4018 nested_function_info::release ();
4019 thunk_info::release ();
4020 clone_info::release ();
4021 symtab = NULL;
4023 x_cgraph_nodes_queue = NULL;
4025 cgraph_fnver_htab = NULL;
4026 version_info_node = NULL;
4029 /* A worker for call_for_symbol_and_aliases. */
4031 bool
4032 cgraph_node::call_for_symbol_and_aliases_1 (bool (*callback) (cgraph_node *,
4033 void *),
4034 void *data,
4035 bool include_overwritable)
4037 ipa_ref *ref;
4038 FOR_EACH_ALIAS (this, ref)
4040 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring);
4041 if (include_overwritable
4042 || alias->get_availability () > AVAIL_INTERPOSABLE)
4043 if (alias->call_for_symbol_and_aliases (callback, data,
4044 include_overwritable))
4045 return true;
4047 return false;
4050 /* Return true if NODE has thunk. */
4052 bool
4053 cgraph_node::has_thunk_p (cgraph_node *node, void *)
4055 for (cgraph_edge *e = node->callers; e; e = e->next_caller)
4056 if (e->caller->thunk)
4057 return true;
4058 return false;
4061 /* Expected frequency of executions within the function. */
4063 sreal
4064 cgraph_edge::sreal_frequency ()
4066 return count.to_sreal_scale (caller->inlined_to
4067 ? caller->inlined_to->count
4068 : caller->count);
4072 /* During LTO stream in this can be used to check whether call can possibly
4073 be internal to the current translation unit. */
4075 bool
4076 cgraph_edge::possibly_call_in_translation_unit_p (void)
4078 gcc_checking_assert (in_lto_p && caller->prevailing_p ());
4080 /* While incremental linking we may end up getting function body later. */
4081 if (flag_incremental_link == INCREMENTAL_LINK_LTO)
4082 return true;
4084 /* We may be smarter here and avoid streaming in indirect calls we can't
4085 track, but that would require arranging streaming the indirect call
4086 summary first. */
4087 if (!callee)
4088 return true;
4090 /* If callee is local to the original translation unit, it will be
4091 defined. */
4092 if (!TREE_PUBLIC (callee->decl) && !DECL_EXTERNAL (callee->decl))
4093 return true;
4095 /* Otherwise we need to lookup prevailing symbol (symbol table is not merged,
4096 yet) and see if it is a definition. In fact we may also resolve aliases,
4097 but that is probably not too important. */
4098 symtab_node *node = callee;
4099 for (int n = 10; node->previous_sharing_asm_name && n ; n--)
4100 node = node->previous_sharing_asm_name;
4101 if (node->previous_sharing_asm_name)
4102 node = symtab_node::get_for_asmname (DECL_ASSEMBLER_NAME (callee->decl));
4103 gcc_assert (TREE_PUBLIC (node->decl));
4104 return node->get_availability () >= AVAIL_INTERPOSABLE;
4107 /* Return num_speculative_targets of this edge. */
4110 cgraph_edge::num_speculative_call_targets_p (void)
4112 return indirect_info ? indirect_info->num_speculative_call_targets : 0;
4115 /* Check if function calls comdat local. This is used to recompute
4116 calls_comdat_local flag after function transformations. */
4117 bool
4118 cgraph_node::check_calls_comdat_local_p ()
4120 for (cgraph_edge *e = callees; e; e = e->next_callee)
4121 if (e->inline_failed
4122 ? e->callee->comdat_local_p ()
4123 : e->callee->check_calls_comdat_local_p ())
4124 return true;
4125 return false;
4128 /* Return true if this node represents a former, i.e. an expanded, thunk. */
4130 bool
4131 cgraph_node::former_thunk_p (void)
4133 if (thunk)
4134 return false;
4135 thunk_info *i = thunk_info::get (this);
4136 if (!i)
4137 return false;
4138 gcc_checking_assert (i->fixed_offset || i->virtual_offset_p
4139 || i->indirect_offset);
4140 return true;
4143 /* A stashed copy of "symtab" for use by selftest::symbol_table_test.
4144 This needs to be a global so that it can be a GC root, and thus
4145 prevent the stashed copy from being garbage-collected if the GC runs
4146 during a symbol_table_test. */
4148 symbol_table *saved_symtab;
4150 #if CHECKING_P
4152 namespace selftest {
4154 /* class selftest::symbol_table_test. */
4156 /* Constructor. Store the old value of symtab, and create a new one. */
4158 symbol_table_test::symbol_table_test ()
4160 gcc_assert (saved_symtab == NULL);
4161 saved_symtab = symtab;
4162 symtab = new (ggc_alloc<symbol_table> ()) symbol_table ();
4165 /* Destructor. Restore the old value of symtab. */
4167 symbol_table_test::~symbol_table_test ()
4169 gcc_assert (saved_symtab != NULL);
4170 symtab = saved_symtab;
4171 saved_symtab = NULL;
4174 /* Verify that symbol_table_test works. */
4176 static void
4177 test_symbol_table_test ()
4179 /* Simulate running two selftests involving symbol tables. */
4180 for (int i = 0; i < 2; i++)
4182 symbol_table_test stt;
4183 tree test_decl = build_decl (UNKNOWN_LOCATION, FUNCTION_DECL,
4184 get_identifier ("test_decl"),
4185 build_function_type_list (void_type_node,
4186 NULL_TREE));
4187 cgraph_node *node = cgraph_node::get_create (test_decl);
4188 gcc_assert (node);
4190 /* Verify that the node has order 0 on both iterations,
4191 and thus that nodes have predictable dump names in selftests. */
4192 ASSERT_EQ (node->order, 0);
4193 ASSERT_STREQ (node->dump_name (), "test_decl/0");
4197 /* Run all of the selftests within this file. */
4199 void
4200 cgraph_c_tests ()
4202 test_symbol_table_test ();
4205 } // namespace selftest
4207 #endif /* CHECKING_P */
4209 #include "gt-cgraph.h"