1 /* Callgraph handling code. 2 Copyright (C) 2003-2015 Free Software Foundation, Inc. 3 Contributed by Jan Hubicka 4 5 This file is part of GCC. 6 7 GCC is free software; you can redistribute it and/or modify it under 8 the terms of the GNU General Public License as published by the Free 9 Software Foundation; either version 3, or (at your option) any later 10 version. 11 12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY 13 WARRANTY; without even the implied warranty of MERCHANTABILITY or 14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 15 for more details. 16 17 You should have received a copy of the GNU General Public License 18 along with GCC; see the file COPYING3. If not see 19 <http://www.gnu.org/licenses/>. */ 20 21 /* This file contains basic routines manipulating call graph 22 23 The call-graph is a data structure designed for intra-procedural optimization. 24 It represents a multi-graph where nodes are functions and edges are call sites. */ 25 26 #include "config.h" 27 #include "system.h" 28 #include "coretypes.h" 29 #include "tm.h" 30 #include "hash-set.h" 31 #include "machmode.h" 32 #include "vec.h" 33 #include "double-int.h" 34 #include "input.h" 35 #include "alias.h" 36 #include "symtab.h" 37 #include "wide-int.h" 38 #include "inchash.h" 39 #include "tree.h" 40 #include "fold-const.h" 41 #include "varasm.h" 42 #include "calls.h" 43 #include "print-tree.h" 44 #include "tree-inline.h" 45 #include "langhooks.h" 46 #include "hashtab.h" 47 #include "toplev.h" 48 #include "flags.h" 49 #include "debug.h" 50 #include "target.h" 51 #include "predict.h" 52 #include "dominance.h" 53 #include "cfg.h" 54 #include "basic-block.h" 55 #include "hash-map.h" 56 #include "is-a.h" 57 #include "plugin-api.h" 58 #include "hard-reg-set.h" 59 #include "function.h" 60 #include "ipa-ref.h" 61 #include "cgraph.h" 62 #include "intl.h" 63 #include "tree-ssa-alias.h" 64 #include "internal-fn.h" 65 #include "tree-eh.h" 66 #include "gimple-expr.h" 67 #include "gimple.h" 68 #include "gimple-iterator.h" 69 #include "timevar.h" 70 #include "dumpfile.h" 71 #include "gimple-ssa.h" 72 #include "tree-cfg.h" 73 #include "tree-ssa.h" 74 #include "value-prof.h" 75 #include "except.h" 76 #include "diagnostic-core.h" 77 #include "rtl.h" 78 #include "ipa-utils.h" 79 #include "lto-streamer.h" 80 #include "alloc-pool.h" 81 #include "symbol-summary.h" 82 #include "ipa-prop.h" 83 #include "ipa-inline.h" 84 #include "cfgloop.h" 85 #include "gimple-pretty-print.h" 86 #include "statistics.h" 87 #include "real.h" 88 #include "fixed-value.h" 89 #include "insn-config.h" 90 #include "expmed.h" 91 #include "dojump.h" 92 #include "explow.h" 93 #include "emit-rtl.h" 94 #include "stmt.h" 95 #include "expr.h" 96 #include "tree-dfa.h" 97 #include "profile.h" 98 #include "params.h" 99 #include "tree-chkp.h" 100 #include "context.h" 101 102 /* FIXME: Only for PROP_loops, but cgraph shouldn't have to know about this. */ 103 #include "tree-pass.h" 104 105 /* Queue of cgraph nodes scheduled to be lowered. */ 106 symtab_node *x_cgraph_nodes_queue; 107 #define cgraph_nodes_queue ((cgraph_node *)x_cgraph_nodes_queue) 108 109 /* Symbol table global context. */ 110 symbol_table *symtab; 111 112 /* List of hooks triggered on cgraph_edge events. */ 113 struct cgraph_edge_hook_list { 114 cgraph_edge_hook hook; 115 void *data; 116 struct cgraph_edge_hook_list *next; 117 }; 118 119 /* List of hooks triggered on cgraph_node events. */ 120 struct cgraph_node_hook_list { 121 cgraph_node_hook hook; 122 void *data; 123 struct cgraph_node_hook_list *next; 124 }; 125 126 /* List of hooks triggered on events involving two cgraph_edges. */ 127 struct cgraph_2edge_hook_list { 128 cgraph_2edge_hook hook; 129 void *data; 130 struct cgraph_2edge_hook_list *next; 131 }; 132 133 /* List of hooks triggered on events involving two cgraph_nodes. */ 134 struct cgraph_2node_hook_list { 135 cgraph_2node_hook hook; 136 void *data; 137 struct cgraph_2node_hook_list *next; 138 }; 139 140 /* Hash descriptor for cgraph_function_version_info. */ 141 142 struct function_version_hasher : ggc_hasher<cgraph_function_version_info *> 143 { 144 static hashval_t hash (cgraph_function_version_info *); 145 static bool equal (cgraph_function_version_info *, 146 cgraph_function_version_info *); 147 }; 148 149 /* Map a cgraph_node to cgraph_function_version_info using this htab. 150 The cgraph_function_version_info has a THIS_NODE field that is the 151 corresponding cgraph_node.. */ 152 153 static GTY(()) hash_table<function_version_hasher> *cgraph_fnver_htab = NULL; 154 155 /* Hash function for cgraph_fnver_htab. */ 156 hashval_t 157 function_version_hasher::hash (cgraph_function_version_info *ptr) 158 { 159 int uid = ptr->this_node->uid; 160 return (hashval_t)(uid); 161 } 162 163 /* eq function for cgraph_fnver_htab. */ 164 bool 165 function_version_hasher::equal (cgraph_function_version_info *n1, 166 cgraph_function_version_info *n2) 167 { 168 return n1->this_node->uid == n2->this_node->uid; 169 } 170 171 /* Mark as GC root all allocated nodes. */ 172 static GTY(()) struct cgraph_function_version_info * 173 version_info_node = NULL; 174 175 /* Get the cgraph_function_version_info node corresponding to node. */ 176 cgraph_function_version_info * 177 cgraph_node::function_version (void) 178 { 179 cgraph_function_version_info key; 180 key.this_node = this; 181 182 if (cgraph_fnver_htab == NULL) 183 return NULL; 184 185 return cgraph_fnver_htab->find (&key); 186 } 187 188 /* Insert a new cgraph_function_version_info node into cgraph_fnver_htab 189 corresponding to cgraph_node NODE. */ 190 cgraph_function_version_info * 191 cgraph_node::insert_new_function_version (void) 192 { 193 version_info_node = NULL; 194 version_info_node = ggc_cleared_alloc<cgraph_function_version_info> (); 195 version_info_node->this_node = this; 196 197 if (cgraph_fnver_htab == NULL) 198 cgraph_fnver_htab = hash_table<function_version_hasher>::create_ggc (2); 199 200 *cgraph_fnver_htab->find_slot (version_info_node, INSERT) 201 = version_info_node; 202 return version_info_node; 203 } 204 205 /* Remove the cgraph_function_version_info and cgraph_node for DECL. This 206 DECL is a duplicate declaration. */ 207 void 208 cgraph_node::delete_function_version (tree decl) 209 { 210 cgraph_node *decl_node = cgraph_node::get (decl); 211 cgraph_function_version_info *decl_v = NULL; 212 213 if (decl_node == NULL) 214 return; 215 216 decl_v = decl_node->function_version (); 217 218 if (decl_v == NULL) 219 return; 220 221 if (decl_v->prev != NULL) 222 decl_v->prev->next = decl_v->next; 223 224 if (decl_v->next != NULL) 225 decl_v->next->prev = decl_v->prev; 226 227 if (cgraph_fnver_htab != NULL) 228 cgraph_fnver_htab->remove_elt (decl_v); 229 230 decl_node->remove (); 231 } 232 233 /* Record that DECL1 and DECL2 are semantically identical function 234 versions. */ 235 void 236 cgraph_node::record_function_versions (tree decl1, tree decl2) 237 { 238 cgraph_node *decl1_node = cgraph_node::get_create (decl1); 239 cgraph_node *decl2_node = cgraph_node::get_create (decl2); 240 cgraph_function_version_info *decl1_v = NULL; 241 cgraph_function_version_info *decl2_v = NULL; 242 cgraph_function_version_info *before; 243 cgraph_function_version_info *after; 244 245 gcc_assert (decl1_node != NULL && decl2_node != NULL); 246 decl1_v = decl1_node->function_version (); 247 decl2_v = decl2_node->function_version (); 248 249 if (decl1_v != NULL && decl2_v != NULL) 250 return; 251 252 if (decl1_v == NULL) 253 decl1_v = decl1_node->insert_new_function_version (); 254 255 if (decl2_v == NULL) 256 decl2_v = decl2_node->insert_new_function_version (); 257 258 /* Chain decl2_v and decl1_v. All semantically identical versions 259 will be chained together. */ 260 261 before = decl1_v; 262 after = decl2_v; 263 264 while (before->next != NULL) 265 before = before->next; 266 267 while (after->prev != NULL) 268 after= after->prev; 269 270 before->next = after; 271 after->prev = before; 272 } 273 274 /* Initialize callgraph dump file. */ 275 276 void 277 symbol_table::initialize (void) 278 { 279 if (!dump_file) 280 dump_file = dump_begin (TDI_cgraph, NULL); 281 } 282 283 /* Allocate new callgraph node and insert it into basic data structures. */ 284 285 cgraph_node * 286 symbol_table::create_empty (void) 287 { 288 cgraph_node *node = allocate_cgraph_symbol (); 289 290 node->type = SYMTAB_FUNCTION; 291 node->frequency = NODE_FREQUENCY_NORMAL; 292 node->count_materialization_scale = REG_BR_PROB_BASE; 293 cgraph_count++; 294 295 return node; 296 } 297 298 /* Register HOOK to be called with DATA on each removed edge. */ 299 cgraph_edge_hook_list * 300 symbol_table::add_edge_removal_hook (cgraph_edge_hook hook, void *data) 301 { 302 cgraph_edge_hook_list *entry; 303 cgraph_edge_hook_list **ptr = &m_first_edge_removal_hook; 304 305 entry = (cgraph_edge_hook_list *) xmalloc (sizeof (*entry)); 306 entry->hook = hook; 307 entry->data = data; 308 entry->next = NULL; 309 while (*ptr) 310 ptr = &(*ptr)->next; 311 *ptr = entry; 312 return entry; 313 } 314 315 /* Remove ENTRY from the list of hooks called on removing edges. */ 316 void 317 symbol_table::remove_edge_removal_hook (cgraph_edge_hook_list *entry) 318 { 319 cgraph_edge_hook_list **ptr = &m_first_edge_removal_hook; 320 321 while (*ptr != entry) 322 ptr = &(*ptr)->next; 323 *ptr = entry->next; 324 free (entry); 325 } 326 327 /* Call all edge removal hooks. */ 328 void 329 symbol_table::call_edge_removal_hooks (cgraph_edge *e) 330 { 331 cgraph_edge_hook_list *entry = m_first_edge_removal_hook; 332 while (entry) 333 { 334 entry->hook (e, entry->data); 335 entry = entry->next; 336 } 337 } 338 339 /* Register HOOK to be called with DATA on each removed node. */ 340 cgraph_node_hook_list * 341 symbol_table::add_cgraph_removal_hook (cgraph_node_hook hook, void *data) 342 { 343 cgraph_node_hook_list *entry; 344 cgraph_node_hook_list **ptr = &m_first_cgraph_removal_hook; 345 346 entry = (cgraph_node_hook_list *) xmalloc (sizeof (*entry)); 347 entry->hook = hook; 348 entry->data = data; 349 entry->next = NULL; 350 while (*ptr) 351 ptr = &(*ptr)->next; 352 *ptr = entry; 353 return entry; 354 } 355 356 /* Remove ENTRY from the list of hooks called on removing nodes. */ 357 void 358 symbol_table::remove_cgraph_removal_hook (cgraph_node_hook_list *entry) 359 { 360 cgraph_node_hook_list **ptr = &m_first_cgraph_removal_hook; 361 362 while (*ptr != entry) 363 ptr = &(*ptr)->next; 364 *ptr = entry->next; 365 free (entry); 366 } 367 368 /* Call all node removal hooks. */ 369 void 370 symbol_table::call_cgraph_removal_hooks (cgraph_node *node) 371 { 372 cgraph_node_hook_list *entry = m_first_cgraph_removal_hook; 373 while (entry) 374 { 375 entry->hook (node, entry->data); 376 entry = entry->next; 377 } 378 } 379 380 /* Call all node removal hooks. */ 381 void 382 symbol_table::call_cgraph_insertion_hooks (cgraph_node *node) 383 { 384 cgraph_node_hook_list *entry = m_first_cgraph_insertion_hook; 385 while (entry) 386 { 387 entry->hook (node, entry->data); 388 entry = entry->next; 389 } 390 } 391 392 393 /* Register HOOK to be called with DATA on each inserted node. */ 394 cgraph_node_hook_list * 395 symbol_table::add_cgraph_insertion_hook (cgraph_node_hook hook, void *data) 396 { 397 cgraph_node_hook_list *entry; 398 cgraph_node_hook_list **ptr = &m_first_cgraph_insertion_hook; 399 400 entry = (cgraph_node_hook_list *) xmalloc (sizeof (*entry)); 401 entry->hook = hook; 402 entry->data = data; 403 entry->next = NULL; 404 while (*ptr) 405 ptr = &(*ptr)->next; 406 *ptr = entry; 407 return entry; 408 } 409 410 /* Remove ENTRY from the list of hooks called on inserted nodes. */ 411 void 412 symbol_table::remove_cgraph_insertion_hook (cgraph_node_hook_list *entry) 413 { 414 cgraph_node_hook_list **ptr = &m_first_cgraph_insertion_hook; 415 416 while (*ptr != entry) 417 ptr = &(*ptr)->next; 418 *ptr = entry->next; 419 free (entry); 420 } 421 422 /* Register HOOK to be called with DATA on each duplicated edge. */ 423 cgraph_2edge_hook_list * 424 symbol_table::add_edge_duplication_hook (cgraph_2edge_hook hook, void *data) 425 { 426 cgraph_2edge_hook_list *entry; 427 cgraph_2edge_hook_list **ptr = &m_first_edge_duplicated_hook; 428 429 entry = (cgraph_2edge_hook_list *) xmalloc (sizeof (*entry)); 430 entry->hook = hook; 431 entry->data = data; 432 entry->next = NULL; 433 while (*ptr) 434 ptr = &(*ptr)->next; 435 *ptr = entry; 436 return entry; 437 } 438 439 /* Remove ENTRY from the list of hooks called on duplicating edges. */ 440 void 441 symbol_table::remove_edge_duplication_hook (cgraph_2edge_hook_list *entry) 442 { 443 cgraph_2edge_hook_list **ptr = &m_first_edge_duplicated_hook; 444 445 while (*ptr != entry) 446 ptr = &(*ptr)->next; 447 *ptr = entry->next; 448 free (entry); 449 } 450 451 /* Call all edge duplication hooks. */ 452 void 453 symbol_table::call_edge_duplication_hooks (cgraph_edge *cs1, cgraph_edge *cs2) 454 { 455 cgraph_2edge_hook_list *entry = m_first_edge_duplicated_hook; 456 while (entry) 457 { 458 entry->hook (cs1, cs2, entry->data); 459 entry = entry->next; 460 } 461 } 462 463 /* Register HOOK to be called with DATA on each duplicated node. */ 464 cgraph_2node_hook_list * 465 symbol_table::add_cgraph_duplication_hook (cgraph_2node_hook hook, void *data) 466 { 467 cgraph_2node_hook_list *entry; 468 cgraph_2node_hook_list **ptr = &m_first_cgraph_duplicated_hook; 469 470 entry = (cgraph_2node_hook_list *) xmalloc (sizeof (*entry)); 471 entry->hook = hook; 472 entry->data = data; 473 entry->next = NULL; 474 while (*ptr) 475 ptr = &(*ptr)->next; 476 *ptr = entry; 477 return entry; 478 } 479 480 /* Remove ENTRY from the list of hooks called on duplicating nodes. */ 481 void 482 symbol_table::remove_cgraph_duplication_hook (cgraph_2node_hook_list *entry) 483 { 484 cgraph_2node_hook_list **ptr = &m_first_cgraph_duplicated_hook; 485 486 while (*ptr != entry) 487 ptr = &(*ptr)->next; 488 *ptr = entry->next; 489 free (entry); 490 } 491 492 /* Call all node duplication hooks. */ 493 void 494 symbol_table::call_cgraph_duplication_hooks (cgraph_node *node, 495 cgraph_node *node2) 496 { 497 cgraph_2node_hook_list *entry = m_first_cgraph_duplicated_hook; 498 while (entry) 499 { 500 entry->hook (node, node2, entry->data); 501 entry = entry->next; 502 } 503 } 504 505 /* Return cgraph node assigned to DECL. Create new one when needed. */ 506 507 cgraph_node * 508 cgraph_node::create (tree decl) 509 { 510 cgraph_node *node = symtab->create_empty (); 511 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL); 512 513 node->decl = decl; 514 515 if ((flag_openacc || flag_openmp) 516 && lookup_attribute ("omp declare target", DECL_ATTRIBUTES (decl))) 517 { 518 node->offloadable = 1; 519 #ifdef ENABLE_OFFLOADING 520 g->have_offload = true; 521 #endif 522 } 523 524 node->register_symbol (); 525 526 if (DECL_CONTEXT (decl) && TREE_CODE (DECL_CONTEXT (decl)) == FUNCTION_DECL) 527 { 528 node->origin = cgraph_node::get_create (DECL_CONTEXT (decl)); 529 node->next_nested = node->origin->nested; 530 node->origin->nested = node; 531 } 532 return node; 533 } 534 535 /* Try to find a call graph node for declaration DECL and if it does not exist 536 or if it corresponds to an inline clone, create a new one. */ 537 538 cgraph_node * 539 cgraph_node::get_create (tree decl) 540 { 541 cgraph_node *first_clone = cgraph_node::get (decl); 542 543 if (first_clone && !first_clone->global.inlined_to) 544 return first_clone; 545 546 cgraph_node *node = cgraph_node::create (decl); 547 if (first_clone) 548 { 549 first_clone->clone_of = node; 550 node->clones = first_clone; 551 symtab->symtab_prevail_in_asm_name_hash (node); 552 node->decl->decl_with_vis.symtab_node = node; 553 if (dump_file) 554 fprintf (dump_file, "Introduced new external node " 555 "(%s/%i) and turned into root of the clone tree.\n", 556 node->name (), node->order); 557 } 558 else if (dump_file) 559 fprintf (dump_file, "Introduced new external node " 560 "(%s/%i).\n", node->name (), node->order); 561 return node; 562 } 563 564 /* Mark ALIAS as an alias to DECL. DECL_NODE is cgraph node representing 565 the function body is associated with (not necessarily cgraph_node (DECL). */ 566 567 cgraph_node * 568 cgraph_node::create_alias (tree alias, tree target) 569 { 570 cgraph_node *alias_node; 571 572 gcc_assert (TREE_CODE (target) == FUNCTION_DECL 573 || TREE_CODE (target) == IDENTIFIER_NODE); 574 gcc_assert (TREE_CODE (alias) == FUNCTION_DECL); 575 alias_node = cgraph_node::get_create (alias); 576 gcc_assert (!alias_node->definition); 577 alias_node->alias_target = target; 578 alias_node->definition = true; 579 alias_node->alias = true; 580 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (alias)) != NULL) 581 alias_node->weakref = true; 582 return alias_node; 583 } 584 585 /* Attempt to mark ALIAS as an alias to DECL. Return alias node if successful 586 and NULL otherwise. 587 Same body aliases are output whenever the body of DECL is output, 588 and cgraph_node::get (ALIAS) transparently returns 589 cgraph_node::get (DECL). */ 590 591 cgraph_node * 592 cgraph_node::create_same_body_alias (tree alias, tree decl) 593 { 594 cgraph_node *n; 595 #ifndef ASM_OUTPUT_DEF 596 /* If aliases aren't supported by the assembler, fail. */ 597 return NULL; 598 #endif 599 /* Langhooks can create same body aliases of symbols not defined. 600 Those are useless. Drop them on the floor. */ 601 if (symtab->global_info_ready) 602 return NULL; 603 604 n = cgraph_node::create_alias (alias, decl); 605 n->cpp_implicit_alias = true; 606 if (symtab->cpp_implicit_aliases_done) 607 n->resolve_alias (cgraph_node::get (decl)); 608 return n; 609 } 610 611 /* Add thunk alias into callgraph. The alias declaration is ALIAS and it 612 aliases DECL with an adjustments made into the first parameter. 613 See comments in thunk_adjust for detail on the parameters. */ 614 615 cgraph_node * 616 cgraph_node::create_thunk (tree alias, tree, bool this_adjusting, 617 HOST_WIDE_INT fixed_offset, 618 HOST_WIDE_INT virtual_value, 619 tree virtual_offset, 620 tree real_alias) 621 { 622 cgraph_node *node; 623 624 node = cgraph_node::get (alias); 625 if (node) 626 node->reset (); 627 else 628 node = cgraph_node::create (alias); 629 gcc_checking_assert (!virtual_offset 630 || wi::eq_p (virtual_offset, virtual_value)); 631 node->thunk.fixed_offset = fixed_offset; 632 node->thunk.this_adjusting = this_adjusting; 633 node->thunk.virtual_value = virtual_value; 634 node->thunk.virtual_offset_p = virtual_offset != NULL; 635 node->thunk.alias = real_alias; 636 node->thunk.thunk_p = true; 637 node->definition = true; 638 639 return node; 640 } 641 642 /* Return the cgraph node that has ASMNAME for its DECL_ASSEMBLER_NAME. 643 Return NULL if there's no such node. */ 644 645 cgraph_node * 646 cgraph_node::get_for_asmname (tree asmname) 647 { 648 /* We do not want to look at inline clones. */ 649 for (symtab_node *node = symtab_node::get_for_asmname (asmname); 650 node; 651 node = node->next_sharing_asm_name) 652 { 653 cgraph_node *cn = dyn_cast <cgraph_node *> (node); 654 if (cn && !cn->global.inlined_to) 655 return cn; 656 } 657 return NULL; 658 } 659 660 /* Returns a hash value for X (which really is a cgraph_edge). */ 661 662 hashval_t 663 cgraph_edge_hasher::hash (cgraph_edge *e) 664 { 665 /* This is a really poor hash function, but it is what htab_hash_pointer 666 uses. */ 667 return (hashval_t) ((intptr_t)e->call_stmt >> 3); 668 } 669 670 /* Returns a hash value for X (which really is a cgraph_edge). */ 671 672 hashval_t 673 cgraph_edge_hasher::hash (gimple call_stmt) 674 { 675 /* This is a really poor hash function, but it is what htab_hash_pointer 676 uses. */ 677 return (hashval_t) ((intptr_t)call_stmt >> 3); 678 } 679 680 /* Return nonzero if the call_stmt of of cgraph_edge X is stmt *Y. */ 681 682 inline bool 683 cgraph_edge_hasher::equal (cgraph_edge *x, gimple y) 684 { 685 return x->call_stmt == y; 686 } 687 688 /* Add call graph edge E to call site hash of its caller. */ 689 690 static inline void 691 cgraph_update_edge_in_call_site_hash (cgraph_edge *e) 692 { 693 gimple call = e->call_stmt; 694 *e->caller->call_site_hash->find_slot_with_hash 695 (call, cgraph_edge_hasher::hash (call), INSERT) = e; 696 } 697 698 /* Add call graph edge E to call site hash of its caller. */ 699 700 static inline void 701 cgraph_add_edge_to_call_site_hash (cgraph_edge *e) 702 { 703 /* There are two speculative edges for every statement (one direct, 704 one indirect); always hash the direct one. */ 705 if (e->speculative && e->indirect_unknown_callee) 706 return; 707 cgraph_edge **slot = e->caller->call_site_hash->find_slot_with_hash 708 (e->call_stmt, cgraph_edge_hasher::hash (e->call_stmt), INSERT); 709 if (*slot) 710 { 711 gcc_assert (((cgraph_edge *)*slot)->speculative); 712 if (e->callee) 713 *slot = e; 714 return; 715 } 716 gcc_assert (!*slot || e->speculative); 717 *slot = e; 718 } 719 720 /* Return the callgraph edge representing the GIMPLE_CALL statement 721 CALL_STMT. */ 722 723 cgraph_edge * 724 cgraph_node::get_edge (gimple call_stmt) 725 { 726 cgraph_edge *e, *e2; 727 int n = 0; 728 729 if (call_site_hash) 730 return call_site_hash->find_with_hash 731 (call_stmt, cgraph_edge_hasher::hash (call_stmt)); 732 733 /* This loop may turn out to be performance problem. In such case adding 734 hashtables into call nodes with very many edges is probably best 735 solution. It is not good idea to add pointer into CALL_EXPR itself 736 because we want to make possible having multiple cgraph nodes representing 737 different clones of the same body before the body is actually cloned. */ 738 for (e = callees; e; e = e->next_callee) 739 { 740 if (e->call_stmt == call_stmt) 741 break; 742 n++; 743 } 744 745 if (!e) 746 for (e = indirect_calls; e; e = e->next_callee) 747 { 748 if (e->call_stmt == call_stmt) 749 break; 750 n++; 751 } 752 753 if (n > 100) 754 { 755 call_site_hash = hash_table<cgraph_edge_hasher>::create_ggc (120); 756 for (e2 = callees; e2; e2 = e2->next_callee) 757 cgraph_add_edge_to_call_site_hash (e2); 758 for (e2 = indirect_calls; e2; e2 = e2->next_callee) 759 cgraph_add_edge_to_call_site_hash (e2); 760 } 761 762 return e; 763 } 764 765 766 /* Change field call_stmt of edge to NEW_STMT. 767 If UPDATE_SPECULATIVE and E is any component of speculative 768 edge, then update all components. */ 769 770 void 771 cgraph_edge::set_call_stmt (gcall *new_stmt, bool update_speculative) 772 { 773 tree decl; 774 775 /* Speculative edges has three component, update all of them 776 when asked to. */ 777 if (update_speculative && speculative) 778 { 779 cgraph_edge *direct, *indirect; 780 ipa_ref *ref; 781 782 speculative_call_info (direct, indirect, ref); 783 direct->set_call_stmt (new_stmt, false); 784 indirect->set_call_stmt (new_stmt, false); 785 ref->stmt = new_stmt; 786 return; 787 } 788 789 /* Only direct speculative edges go to call_site_hash. */ 790 if (caller->call_site_hash 791 && (!speculative || !indirect_unknown_callee)) 792 { 793 caller->call_site_hash->remove_elt_with_hash 794 (call_stmt, cgraph_edge_hasher::hash (call_stmt)); 795 } 796 797 cgraph_edge *e = this; 798 799 call_stmt = new_stmt; 800 if (indirect_unknown_callee 801 && (decl = gimple_call_fndecl (new_stmt))) 802 { 803 /* Constant propagation (and possibly also inlining?) can turn an 804 indirect call into a direct one. */ 805 cgraph_node *new_callee = cgraph_node::get (decl); 806 807 gcc_checking_assert (new_callee); 808 e = make_direct (new_callee); 809 } 810 811 push_cfun (DECL_STRUCT_FUNCTION (e->caller->decl)); 812 e->can_throw_external = stmt_can_throw_external (new_stmt); 813 pop_cfun (); 814 if (e->caller->call_site_hash) 815 cgraph_add_edge_to_call_site_hash (e); 816 } 817 818 /* Allocate a cgraph_edge structure and fill it with data according to the 819 parameters of which only CALLEE can be NULL (when creating an indirect call 820 edge). */ 821 822 cgraph_edge * 823 symbol_table::create_edge (cgraph_node *caller, cgraph_node *callee, 824 gcall *call_stmt, gcov_type count, int freq, 825 bool indir_unknown_callee) 826 { 827 cgraph_edge *edge; 828 829 /* LTO does not actually have access to the call_stmt since these 830 have not been loaded yet. */ 831 if (call_stmt) 832 { 833 /* This is a rather expensive check possibly triggering 834 construction of call stmt hashtable. */ 835 #ifdef ENABLE_CHECKING 836 cgraph_edge *e; 837 gcc_checking_assert ( 838 !(e = caller->get_edge (call_stmt)) || e->speculative); 839 #endif 840 841 gcc_assert (is_gimple_call (call_stmt)); 842 } 843 844 if (free_edges) 845 { 846 edge = free_edges; 847 free_edges = NEXT_FREE_EDGE (edge); 848 } 849 else 850 { 851 edge = ggc_alloc<cgraph_edge> (); 852 edge->uid = edges_max_uid++; 853 } 854 855 edges_count++; 856 857 edge->aux = NULL; 858 edge->caller = caller; 859 edge->callee = callee; 860 edge->prev_caller = NULL; 861 edge->next_caller = NULL; 862 edge->prev_callee = NULL; 863 edge->next_callee = NULL; 864 edge->lto_stmt_uid = 0; 865 866 edge->count = count; 867 gcc_assert (count >= 0); 868 edge->frequency = freq; 869 gcc_assert (freq >= 0); 870 gcc_assert (freq <= CGRAPH_FREQ_MAX); 871 872 edge->call_stmt = call_stmt; 873 push_cfun (DECL_STRUCT_FUNCTION (caller->decl)); 874 edge->can_throw_external 875 = call_stmt ? stmt_can_throw_external (call_stmt) : false; 876 pop_cfun (); 877 if (call_stmt 878 && callee && callee->decl 879 && !gimple_check_call_matching_types (call_stmt, callee->decl, 880 false)) 881 edge->call_stmt_cannot_inline_p = true; 882 else 883 edge->call_stmt_cannot_inline_p = false; 884 885 edge->indirect_info = NULL; 886 edge->indirect_inlining_edge = 0; 887 edge->speculative = false; 888 edge->indirect_unknown_callee = indir_unknown_callee; 889 if (opt_for_fn (edge->caller->decl, flag_devirtualize) 890 && call_stmt && DECL_STRUCT_FUNCTION (caller->decl)) 891 edge->in_polymorphic_cdtor 892 = decl_maybe_in_construction_p (NULL, NULL, call_stmt, 893 caller->decl); 894 else 895 edge->in_polymorphic_cdtor = caller->thunk.thunk_p; 896 if (call_stmt && caller->call_site_hash) 897 cgraph_add_edge_to_call_site_hash (edge); 898 899 return edge; 900 } 901 902 /* Create edge from a given function to CALLEE in the cgraph. */ 903 904 cgraph_edge * 905 cgraph_node::create_edge (cgraph_node *callee, 906 gcall *call_stmt, gcov_type count, int freq) 907 { 908 cgraph_edge *edge = symtab->create_edge (this, callee, call_stmt, count, 909 freq, false); 910 911 initialize_inline_failed (edge); 912 913 edge->next_caller = callee->callers; 914 if (callee->callers) 915 callee->callers->prev_caller = edge; 916 edge->next_callee = callees; 917 if (callees) 918 callees->prev_callee = edge; 919 callees = edge; 920 callee->callers = edge; 921 922 return edge; 923 } 924 925 /* Allocate cgraph_indirect_call_info and set its fields to default values. */ 926 927 cgraph_indirect_call_info * 928 cgraph_allocate_init_indirect_info (void) 929 { 930 cgraph_indirect_call_info *ii; 931 932 ii = ggc_cleared_alloc<cgraph_indirect_call_info> (); 933 ii->param_index = -1; 934 return ii; 935 } 936 937 /* Create an indirect edge with a yet-undetermined callee where the call 938 statement destination is a formal parameter of the caller with index 939 PARAM_INDEX. */ 940 941 cgraph_edge * 942 cgraph_node::create_indirect_edge (gcall *call_stmt, int ecf_flags, 943 gcov_type count, int freq, 944 bool compute_indirect_info) 945 { 946 cgraph_edge *edge = symtab->create_edge (this, NULL, call_stmt, 947 count, freq, true); 948 tree target; 949 950 initialize_inline_failed (edge); 951 952 edge->indirect_info = cgraph_allocate_init_indirect_info (); 953 edge->indirect_info->ecf_flags = ecf_flags; 954 edge->indirect_info->vptr_changed = true; 955 956 /* Record polymorphic call info. */ 957 if (compute_indirect_info 958 && call_stmt 959 && (target = gimple_call_fn (call_stmt)) 960 && virtual_method_call_p (target)) 961 { 962 ipa_polymorphic_call_context context (decl, target, call_stmt); 963 964 /* Only record types can have virtual calls. */ 965 edge->indirect_info->polymorphic = true; 966 edge->indirect_info->param_index = -1; 967 edge->indirect_info->otr_token 968 = tree_to_uhwi (OBJ_TYPE_REF_TOKEN (target)); 969 edge->indirect_info->otr_type = obj_type_ref_class (target); 970 gcc_assert (TREE_CODE (edge->indirect_info->otr_type) == RECORD_TYPE); 971 edge->indirect_info->context = context; 972 } 973 974 edge->next_callee = indirect_calls; 975 if (indirect_calls) 976 indirect_calls->prev_callee = edge; 977 indirect_calls = edge; 978 979 return edge; 980 } 981 982 /* Remove the edge from the list of the callees of the caller. */ 983 984 void 985 cgraph_edge::remove_caller (void) 986 { 987 if (prev_callee) 988 prev_callee->next_callee = next_callee; 989 if (next_callee) 990 next_callee->prev_callee = prev_callee; 991 if (!prev_callee) 992 { 993 if (indirect_unknown_callee) 994 caller->indirect_calls = next_callee; 995 else 996 caller->callees = next_callee; 997 } 998 if (caller->call_site_hash) 999 caller->call_site_hash->remove_elt_with_hash 1000 (call_stmt, cgraph_edge_hasher::hash (call_stmt)); 1001 } 1002 1003 /* Put the edge onto the free list. */ 1004 1005 void 1006 symbol_table::free_edge (cgraph_edge *e) 1007 { 1008 int uid = e->uid; 1009 1010 if (e->indirect_info) 1011 ggc_free (e->indirect_info); 1012 1013 /* Clear out the edge so we do not dangle pointers. */ 1014 memset (e, 0, sizeof (*e)); 1015 e->uid = uid; 1016 NEXT_FREE_EDGE (e) = free_edges; 1017 free_edges = e; 1018 edges_count--; 1019 } 1020 1021 /* Remove the edge in the cgraph. */ 1022 1023 void 1024 cgraph_edge::remove (void) 1025 { 1026 /* Call all edge removal hooks. */ 1027 symtab->call_edge_removal_hooks (this); 1028 1029 if (!indirect_unknown_callee) 1030 /* Remove from callers list of the callee. */ 1031 remove_callee (); 1032 1033 /* Remove from callees list of the callers. */ 1034 remove_caller (); 1035 1036 /* Put the edge onto the free list. */ 1037 symtab->free_edge (this); 1038 } 1039 1040 /* Turn edge into speculative call calling N2. Update 1041 the profile so the direct call is taken COUNT times 1042 with FREQUENCY. 1043 1044 At clone materialization time, the indirect call E will 1045 be expanded as: 1046 1047 if (call_dest == N2) 1048 n2 (); 1049 else 1050 call call_dest 1051 1052 At this time the function just creates the direct call, 1053 the referencd representing the if conditional and attaches 1054 them all to the orginal indirect call statement. 1055 1056 Return direct edge created. */ 1057 1058 cgraph_edge * 1059 cgraph_edge::make_speculative (cgraph_node *n2, gcov_type direct_count, 1060 int direct_frequency) 1061 { 1062 cgraph_node *n = caller; 1063 ipa_ref *ref = NULL; 1064 cgraph_edge *e2; 1065 1066 if (dump_file) 1067 { 1068 fprintf (dump_file, "Indirect call -> speculative call" 1069 " %s/%i => %s/%i\n", 1070 xstrdup_for_dump (n->name ()), n->order, 1071 xstrdup_for_dump (n2->name ()), n2->order); 1072 } 1073 speculative = true; 1074 e2 = n->create_edge (n2, call_stmt, direct_count, direct_frequency); 1075 initialize_inline_failed (e2); 1076 e2->speculative = true; 1077 if (TREE_NOTHROW (n2->decl)) 1078 e2->can_throw_external = false; 1079 else 1080 e2->can_throw_external = can_throw_external; 1081 e2->lto_stmt_uid = lto_stmt_uid; 1082 e2->in_polymorphic_cdtor = in_polymorphic_cdtor; 1083 count -= e2->count; 1084 frequency -= e2->frequency; 1085 symtab->call_edge_duplication_hooks (this, e2); 1086 ref = n->create_reference (n2, IPA_REF_ADDR, call_stmt); 1087 ref->lto_stmt_uid = lto_stmt_uid; 1088 ref->speculative = speculative; 1089 n2->mark_address_taken (); 1090 return e2; 1091 } 1092 1093 /* Speculative call consist of three components: 1094 1) an indirect edge representing the original call 1095 2) an direct edge representing the new call 1096 3) ADDR_EXPR reference representing the speculative check. 1097 All three components are attached to single statement (the indirect 1098 call) and if one of them exists, all of them must exist. 1099 1100 Given speculative call edge, return all three components. 1101 */ 1102 1103 void 1104 cgraph_edge::speculative_call_info (cgraph_edge *&direct, 1105 cgraph_edge *&indirect, 1106 ipa_ref *&reference) 1107 { 1108 ipa_ref *ref; 1109 int i; 1110 cgraph_edge *e2; 1111 cgraph_edge *e = this; 1112 1113 if (!e->indirect_unknown_callee) 1114 for (e2 = e->caller->indirect_calls; 1115 e2->call_stmt != e->call_stmt || e2->lto_stmt_uid != e->lto_stmt_uid; 1116 e2 = e2->next_callee) 1117 ; 1118 else 1119 { 1120 e2 = e; 1121 /* We can take advantage of the call stmt hash. */ 1122 if (e2->call_stmt) 1123 { 1124 e = e->caller->get_edge (e2->call_stmt); 1125 gcc_assert (e->speculative && !e->indirect_unknown_callee); 1126 } 1127 else 1128 for (e = e->caller->callees; 1129 e2->call_stmt != e->call_stmt 1130 || e2->lto_stmt_uid != e->lto_stmt_uid; 1131 e = e->next_callee) 1132 ; 1133 } 1134 gcc_assert (e->speculative && e2->speculative); 1135 direct = e; 1136 indirect = e2; 1137 1138 reference = NULL; 1139 for (i = 0; e->caller->iterate_reference (i, ref); i++) 1140 if (ref->speculative 1141 && ((ref->stmt && ref->stmt == e->call_stmt) 1142 || (!ref->stmt && ref->lto_stmt_uid == e->lto_stmt_uid))) 1143 { 1144 reference = ref; 1145 break; 1146 } 1147 1148 /* Speculative edge always consist of all three components - direct edge, 1149 indirect and reference. */ 1150 1151 gcc_assert (e && e2 && ref); 1152 } 1153 1154 /* Speculative call edge turned out to be direct call to CALLE_DECL. 1155 Remove the speculative call sequence and return edge representing the call. 1156 It is up to caller to redirect the call as appropriate. */ 1157 1158 cgraph_edge * 1159 cgraph_edge::resolve_speculation (tree callee_decl) 1160 { 1161 cgraph_edge *edge = this; 1162 cgraph_edge *e2; 1163 ipa_ref *ref; 1164 1165 gcc_assert (edge->speculative); 1166 edge->speculative_call_info (e2, edge, ref); 1167 if (!callee_decl 1168 || !ref->referred->semantically_equivalent_p 1169 (symtab_node::get (callee_decl))) 1170 { 1171 if (dump_file) 1172 { 1173 if (callee_decl) 1174 { 1175 fprintf (dump_file, "Speculative indirect call %s/%i => %s/%i has " 1176 "turned out to have contradicting known target ", 1177 xstrdup_for_dump (edge->caller->name ()), 1178 edge->caller->order, 1179 xstrdup_for_dump (e2->callee->name ()), 1180 e2->callee->order); 1181 print_generic_expr (dump_file, callee_decl, 0); 1182 fprintf (dump_file, "\n"); 1183 } 1184 else 1185 { 1186 fprintf (dump_file, "Removing speculative call %s/%i => %s/%i\n", 1187 xstrdup_for_dump (edge->caller->name ()), 1188 edge->caller->order, 1189 xstrdup_for_dump (e2->callee->name ()), 1190 e2->callee->order); 1191 } 1192 } 1193 } 1194 else 1195 { 1196 cgraph_edge *tmp = edge; 1197 if (dump_file) 1198 fprintf (dump_file, "Speculative call turned into direct call.\n"); 1199 edge = e2; 1200 e2 = tmp; 1201 /* FIXME: If EDGE is inlined, we should scale up the frequencies and counts 1202 in the functions inlined through it. */ 1203 } 1204 edge->count += e2->count; 1205 edge->frequency += e2->frequency; 1206 if (edge->frequency > CGRAPH_FREQ_MAX) 1207 edge->frequency = CGRAPH_FREQ_MAX; 1208 edge->speculative = false; 1209 e2->speculative = false; 1210 ref->remove_reference (); 1211 if (e2->indirect_unknown_callee || e2->inline_failed) 1212 e2->remove (); 1213 else 1214 e2->callee->remove_symbol_and_inline_clones (); 1215 if (edge->caller->call_site_hash) 1216 cgraph_update_edge_in_call_site_hash (edge); 1217 return edge; 1218 } 1219 1220 /* Make an indirect edge with an unknown callee an ordinary edge leading to 1221 CALLEE. DELTA is an integer constant that is to be added to the this 1222 pointer (first parameter) to compensate for skipping a thunk adjustment. */ 1223 1224 cgraph_edge * 1225 cgraph_edge::make_direct (cgraph_node *callee) 1226 { 1227 cgraph_edge *edge = this; 1228 gcc_assert (indirect_unknown_callee); 1229 1230 /* If we are redirecting speculative call, make it non-speculative. */ 1231 if (indirect_unknown_callee && speculative) 1232 { 1233 edge = edge->resolve_speculation (callee->decl); 1234 1235 /* On successful speculation just return the pre existing direct edge. */ 1236 if (!indirect_unknown_callee) 1237 return edge; 1238 } 1239 1240 indirect_unknown_callee = 0; 1241 ggc_free (indirect_info); 1242 indirect_info = NULL; 1243 1244 /* Get the edge out of the indirect edge list. */ 1245 if (prev_callee) 1246 prev_callee->next_callee = next_callee; 1247 if (next_callee) 1248 next_callee->prev_callee = prev_callee; 1249 if (!prev_callee) 1250 caller->indirect_calls = next_callee; 1251 1252 /* Put it into the normal callee list */ 1253 prev_callee = NULL; 1254 next_callee = caller->callees; 1255 if (caller->callees) 1256 caller->callees->prev_callee = edge; 1257 caller->callees = edge; 1258 1259 /* Insert to callers list of the new callee. */ 1260 edge->set_callee (callee); 1261 1262 if (call_stmt) 1263 call_stmt_cannot_inline_p 1264 = !gimple_check_call_matching_types (call_stmt, callee->decl, 1265 false); 1266 1267 /* We need to re-determine the inlining status of the edge. */ 1268 initialize_inline_failed (edge); 1269 return edge; 1270 } 1271 1272 /* If necessary, change the function declaration in the call statement 1273 associated with E so that it corresponds to the edge callee. */ 1274 1275 gimple 1276 cgraph_edge::redirect_call_stmt_to_callee (void) 1277 { 1278 cgraph_edge *e = this; 1279 1280 tree decl = gimple_call_fndecl (e->call_stmt); 1281 tree lhs = gimple_call_lhs (e->call_stmt); 1282 gcall *new_stmt; 1283 gimple_stmt_iterator gsi; 1284 bool skip_bounds = false; 1285 #ifdef ENABLE_CHECKING 1286 cgraph_node *node; 1287 #endif 1288 1289 if (e->speculative) 1290 { 1291 cgraph_edge *e2; 1292 gcall *new_stmt; 1293 ipa_ref *ref; 1294 1295 e->speculative_call_info (e, e2, ref); 1296 /* If there already is an direct call (i.e. as a result of inliner's 1297 substitution), forget about speculating. */ 1298 if (decl) 1299 e = e->resolve_speculation (decl); 1300 /* If types do not match, speculation was likely wrong. 1301 The direct edge was posisbly redirected to the clone with a different 1302 signature. We did not update the call statement yet, so compare it 1303 with the reference that still points to the proper type. */ 1304 else if (!gimple_check_call_matching_types (e->call_stmt, 1305 ref->referred->decl, 1306 true)) 1307 { 1308 if (dump_file) 1309 fprintf (dump_file, "Not expanding speculative call of %s/%i -> %s/%i\n" 1310 "Type mismatch.\n", 1311 xstrdup_for_dump (e->caller->name ()), 1312 e->caller->order, 1313 xstrdup_for_dump (e->callee->name ()), 1314 e->callee->order); 1315 e = e->resolve_speculation (); 1316 /* We are producing the final function body and will throw away the 1317 callgraph edges really soon. Reset the counts/frequencies to 1318 keep verifier happy in the case of roundoff errors. */ 1319 e->count = gimple_bb (e->call_stmt)->count; 1320 e->frequency = compute_call_stmt_bb_frequency 1321 (e->caller->decl, gimple_bb (e->call_stmt)); 1322 } 1323 /* Expand speculation into GIMPLE code. */ 1324 else 1325 { 1326 if (dump_file) 1327 fprintf (dump_file, 1328 "Expanding speculative call of %s/%i -> %s/%i count:" 1329 "%"PRId64"\n", 1330 xstrdup_for_dump (e->caller->name ()), 1331 e->caller->order, 1332 xstrdup_for_dump (e->callee->name ()), 1333 e->callee->order, 1334 (int64_t)e->count); 1335 gcc_assert (e2->speculative); 1336 push_cfun (DECL_STRUCT_FUNCTION (e->caller->decl)); 1337 new_stmt = gimple_ic (e->call_stmt, 1338 dyn_cast<cgraph_node *> (ref->referred), 1339 e->count || e2->count 1340 ? RDIV (e->count * REG_BR_PROB_BASE, 1341 e->count + e2->count) 1342 : e->frequency || e2->frequency 1343 ? RDIV (e->frequency * REG_BR_PROB_BASE, 1344 e->frequency + e2->frequency) 1345 : REG_BR_PROB_BASE / 2, 1346 e->count, e->count + e2->count); 1347 e->speculative = false; 1348 e->caller->set_call_stmt_including_clones (e->call_stmt, new_stmt, 1349 false); 1350 1351 /* Fix edges for BUILT_IN_CHKP_BNDRET calls attached to the 1352 processed call stmt. */ 1353 if (gimple_call_with_bounds_p (new_stmt) 1354 && gimple_call_lhs (new_stmt) 1355 && chkp_retbnd_call_by_val (gimple_call_lhs (e2->call_stmt))) 1356 { 1357 tree dresult = gimple_call_lhs (new_stmt); 1358 tree iresult = gimple_call_lhs (e2->call_stmt); 1359 gcall *dbndret = chkp_retbnd_call_by_val (dresult); 1360 gcall *ibndret = chkp_retbnd_call_by_val (iresult); 1361 struct cgraph_edge *iedge 1362 = e2->caller->cgraph_node::get_edge (ibndret); 1363 struct cgraph_edge *dedge; 1364 1365 if (dbndret) 1366 { 1367 dedge = iedge->caller->create_edge (iedge->callee, 1368 dbndret, e->count, 1369 e->frequency); 1370 dedge->frequency = compute_call_stmt_bb_frequency 1371 (dedge->caller->decl, gimple_bb (dedge->call_stmt)); 1372 } 1373 iedge->frequency = compute_call_stmt_bb_frequency 1374 (iedge->caller->decl, gimple_bb (iedge->call_stmt)); 1375 } 1376 1377 e->frequency = compute_call_stmt_bb_frequency 1378 (e->caller->decl, gimple_bb (e->call_stmt)); 1379 e2->frequency = compute_call_stmt_bb_frequency 1380 (e2->caller->decl, gimple_bb (e2->call_stmt)); 1381 e2->speculative = false; 1382 ref->speculative = false; 1383 ref->stmt = NULL; 1384 /* Indirect edges are not both in the call site hash. 1385 get it updated. */ 1386 if (e->caller->call_site_hash) 1387 cgraph_update_edge_in_call_site_hash (e2); 1388 pop_cfun (); 1389 /* Continue redirecting E to proper target. */ 1390 } 1391 } 1392 1393 /* We might propagate instrumented function pointer into 1394 not instrumented function and vice versa. In such a 1395 case we need to either fix function declaration or 1396 remove bounds from call statement. */ 1397 if (flag_check_pointer_bounds && e->callee) 1398 skip_bounds = chkp_redirect_edge (e); 1399 1400 if (e->indirect_unknown_callee 1401 || (decl == e->callee->decl 1402 && !skip_bounds)) 1403 return e->call_stmt; 1404 1405 #ifdef ENABLE_CHECKING 1406 if (decl) 1407 { 1408 node = cgraph_node::get (decl); 1409 gcc_assert (!node || !node->clone.combined_args_to_skip); 1410 } 1411 #endif 1412 1413 if (symtab->dump_file) 1414 { 1415 fprintf (symtab->dump_file, "updating call of %s/%i -> %s/%i: ", 1416 xstrdup_for_dump (e->caller->name ()), e->caller->order, 1417 xstrdup_for_dump (e->callee->name ()), e->callee->order); 1418 print_gimple_stmt (symtab->dump_file, e->call_stmt, 0, dump_flags); 1419 if (e->callee->clone.combined_args_to_skip) 1420 { 1421 fprintf (symtab->dump_file, " combined args to skip: "); 1422 dump_bitmap (symtab->dump_file, 1423 e->callee->clone.combined_args_to_skip); 1424 } 1425 } 1426 1427 if (e->callee->clone.combined_args_to_skip 1428 || skip_bounds) 1429 { 1430 int lp_nr; 1431 1432 new_stmt = e->call_stmt; 1433 if (e->callee->clone.combined_args_to_skip) 1434 new_stmt 1435 = gimple_call_copy_skip_args (new_stmt, 1436 e->callee->clone.combined_args_to_skip); 1437 if (skip_bounds) 1438 new_stmt = chkp_copy_call_skip_bounds (new_stmt); 1439 1440 tree old_fntype = gimple_call_fntype (e->call_stmt); 1441 gimple_call_set_fndecl (new_stmt, e->callee->decl); 1442 cgraph_node *origin = e->callee; 1443 while (origin->clone_of) 1444 origin = origin->clone_of; 1445 1446 if ((origin->former_clone_of 1447 && old_fntype == TREE_TYPE (origin->former_clone_of)) 1448 || old_fntype == TREE_TYPE (origin->decl)) 1449 gimple_call_set_fntype (new_stmt, TREE_TYPE (e->callee->decl)); 1450 else 1451 { 1452 bitmap skip = e->callee->clone.combined_args_to_skip; 1453 tree t = cgraph_build_function_type_skip_args (old_fntype, skip, 1454 false); 1455 gimple_call_set_fntype (new_stmt, t); 1456 } 1457 1458 if (gimple_vdef (new_stmt) 1459 && TREE_CODE (gimple_vdef (new_stmt)) == SSA_NAME) 1460 SSA_NAME_DEF_STMT (gimple_vdef (new_stmt)) = new_stmt; 1461 1462 gsi = gsi_for_stmt (e->call_stmt); 1463 gsi_replace (&gsi, new_stmt, false); 1464 /* We need to defer cleaning EH info on the new statement to 1465 fixup-cfg. We may not have dominator information at this point 1466 and thus would end up with unreachable blocks and have no way 1467 to communicate that we need to run CFG cleanup then. */ 1468 lp_nr = lookup_stmt_eh_lp (e->call_stmt); 1469 if (lp_nr != 0) 1470 { 1471 remove_stmt_from_eh_lp (e->call_stmt); 1472 add_stmt_to_eh_lp (new_stmt, lp_nr); 1473 } 1474 } 1475 else 1476 { 1477 new_stmt = e->call_stmt; 1478 gimple_call_set_fndecl (new_stmt, e->callee->decl); 1479 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt); 1480 } 1481 1482 /* If the call becomes noreturn, remove the lhs. */ 1483 if (lhs && (gimple_call_flags (new_stmt) & ECF_NORETURN)) 1484 { 1485 if (TREE_CODE (lhs) == SSA_NAME) 1486 { 1487 tree var = create_tmp_reg_fn (DECL_STRUCT_FUNCTION (e->caller->decl), 1488 TREE_TYPE (lhs), NULL); 1489 var = get_or_create_ssa_default_def 1490 (DECL_STRUCT_FUNCTION (e->caller->decl), var); 1491 gimple set_stmt = gimple_build_assign (lhs, var); 1492 gsi = gsi_for_stmt (new_stmt); 1493 gsi_insert_before_without_update (&gsi, set_stmt, GSI_SAME_STMT); 1494 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), set_stmt); 1495 } 1496 gimple_call_set_lhs (new_stmt, NULL_TREE); 1497 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt); 1498 } 1499 1500 /* If new callee has no static chain, remove it. */ 1501 if (gimple_call_chain (new_stmt) && !DECL_STATIC_CHAIN (e->callee->decl)) 1502 { 1503 gimple_call_set_chain (new_stmt, NULL); 1504 update_stmt_fn (DECL_STRUCT_FUNCTION (e->caller->decl), new_stmt); 1505 } 1506 1507 maybe_remove_unused_call_args (DECL_STRUCT_FUNCTION (e->caller->decl), 1508 new_stmt); 1509 1510 e->caller->set_call_stmt_including_clones (e->call_stmt, new_stmt, false); 1511 1512 if (symtab->dump_file) 1513 { 1514 fprintf (symtab->dump_file, " updated to:"); 1515 print_gimple_stmt (symtab->dump_file, e->call_stmt, 0, dump_flags); 1516 } 1517 return new_stmt; 1518 } 1519 1520 /* Update or remove the corresponding cgraph edge if a GIMPLE_CALL 1521 OLD_STMT changed into NEW_STMT. OLD_CALL is gimple_call_fndecl 1522 of OLD_STMT if it was previously call statement. 1523 If NEW_STMT is NULL, the call has been dropped without any 1524 replacement. */ 1525 1526 static void 1527 cgraph_update_edges_for_call_stmt_node (cgraph_node *node, 1528 gimple old_stmt, tree old_call, 1529 gimple new_stmt) 1530 { 1531 tree new_call = (new_stmt && is_gimple_call (new_stmt)) 1532 ? gimple_call_fndecl (new_stmt) : 0; 1533 1534 /* We are seeing indirect calls, then there is nothing to update. */ 1535 if (!new_call && !old_call) 1536 return; 1537 /* See if we turned indirect call into direct call or folded call to one builtin 1538 into different builtin. */ 1539 if (old_call != new_call) 1540 { 1541 cgraph_edge *e = node->get_edge (old_stmt); 1542 cgraph_edge *ne = NULL; 1543 gcov_type count; 1544 int frequency; 1545 1546 if (e) 1547 { 1548 /* Keep calls marked as dead dead. */ 1549 if (new_stmt && is_gimple_call (new_stmt) && e->callee 1550 && DECL_BUILT_IN_CLASS (e->callee->decl) == BUILT_IN_NORMAL 1551 && DECL_FUNCTION_CODE (e->callee->decl) == BUILT_IN_UNREACHABLE) 1552 { 1553 node->get_edge (old_stmt)->set_call_stmt 1554 (as_a <gcall *> (new_stmt)); 1555 return; 1556 } 1557 /* See if the edge is already there and has the correct callee. It 1558 might be so because of indirect inlining has already updated 1559 it. We also might've cloned and redirected the edge. */ 1560 if (new_call && e->callee) 1561 { 1562 cgraph_node *callee = e->callee; 1563 while (callee) 1564 { 1565 if (callee->decl == new_call 1566 || callee->former_clone_of == new_call) 1567 { 1568 e->set_call_stmt (as_a <gcall *> (new_stmt)); 1569 return; 1570 } 1571 callee = callee->clone_of; 1572 } 1573 } 1574 1575 /* Otherwise remove edge and create new one; we can't simply redirect 1576 since function has changed, so inline plan and other information 1577 attached to edge is invalid. */ 1578 count = e->count; 1579 frequency = e->frequency; 1580 if (e->indirect_unknown_callee || e->inline_failed) 1581 e->remove (); 1582 else 1583 e->callee->remove_symbol_and_inline_clones (); 1584 } 1585 else if (new_call) 1586 { 1587 /* We are seeing new direct call; compute profile info based on BB. */ 1588 basic_block bb = gimple_bb (new_stmt); 1589 count = bb->count; 1590 frequency = compute_call_stmt_bb_frequency (current_function_decl, 1591 bb); 1592 } 1593 1594 if (new_call) 1595 { 1596 ne = node->create_edge (cgraph_node::get_create (new_call), 1597 as_a <gcall *> (new_stmt), count, 1598 frequency); 1599 gcc_assert (ne->inline_failed); 1600 } 1601 } 1602 /* We only updated the call stmt; update pointer in cgraph edge.. */ 1603 else if (old_stmt != new_stmt) 1604 node->get_edge (old_stmt)->set_call_stmt (as_a <gcall *> (new_stmt)); 1605 } 1606 1607 /* Update or remove the corresponding cgraph edge if a GIMPLE_CALL 1608 OLD_STMT changed into NEW_STMT. OLD_DECL is gimple_call_fndecl 1609 of OLD_STMT before it was updated (updating can happen inplace). */ 1610 1611 void 1612 cgraph_update_edges_for_call_stmt (gimple old_stmt, tree old_decl, gimple new_stmt) 1613 { 1614 cgraph_node *orig = cgraph_node::get (cfun->decl); 1615 cgraph_node *node; 1616 1617 gcc_checking_assert (orig); 1618 cgraph_update_edges_for_call_stmt_node (orig, old_stmt, old_decl, new_stmt); 1619 if (orig->clones) 1620 for (node = orig->clones; node != orig;) 1621 { 1622 cgraph_update_edges_for_call_stmt_node (node, old_stmt, old_decl, new_stmt); 1623 if (node->clones) 1624 node = node->clones; 1625 else if (node->next_sibling_clone) 1626 node = node->next_sibling_clone; 1627 else 1628 { 1629 while (node != orig && !node->next_sibling_clone) 1630 node = node->clone_of; 1631 if (node != orig) 1632 node = node->next_sibling_clone; 1633 } 1634 } 1635 } 1636 1637 1638 /* Remove all callees from the node. */ 1639 1640 void 1641 cgraph_node::remove_callees (void) 1642 { 1643 cgraph_edge *e, *f; 1644 1645 /* It is sufficient to remove the edges from the lists of callers of 1646 the callees. The callee list of the node can be zapped with one 1647 assignment. */ 1648 for (e = callees; e; e = f) 1649 { 1650 f = e->next_callee; 1651 symtab->call_edge_removal_hooks (e); 1652 if (!e->indirect_unknown_callee) 1653 e->remove_callee (); 1654 symtab->free_edge (e); 1655 } 1656 for (e = indirect_calls; e; e = f) 1657 { 1658 f = e->next_callee; 1659 symtab->call_edge_removal_hooks (e); 1660 if (!e->indirect_unknown_callee) 1661 e->remove_callee (); 1662 symtab->free_edge (e); 1663 } 1664 indirect_calls = NULL; 1665 callees = NULL; 1666 if (call_site_hash) 1667 { 1668 call_site_hash->empty (); 1669 call_site_hash = NULL; 1670 } 1671 } 1672 1673 /* Remove all callers from the node. */ 1674 1675 void 1676 cgraph_node::remove_callers (void) 1677 { 1678 cgraph_edge *e, *f; 1679 1680 /* It is sufficient to remove the edges from the lists of callees of 1681 the callers. The caller list of the node can be zapped with one 1682 assignment. */ 1683 for (e = callers; e; e = f) 1684 { 1685 f = e->next_caller; 1686 symtab->call_edge_removal_hooks (e); 1687 e->remove_caller (); 1688 symtab->free_edge (e); 1689 } 1690 callers = NULL; 1691 } 1692 1693 /* Helper function for cgraph_release_function_body and free_lang_data. 1694 It releases body from function DECL without having to inspect its 1695 possibly non-existent symtab node. */ 1696 1697 void 1698 release_function_body (tree decl) 1699 { 1700 if (DECL_STRUCT_FUNCTION (decl)) 1701 { 1702 if (DECL_STRUCT_FUNCTION (decl)->cfg 1703 || DECL_STRUCT_FUNCTION (decl)->gimple_df) 1704 { 1705 push_cfun (DECL_STRUCT_FUNCTION (decl)); 1706 if (cfun->cfg 1707 && current_loops) 1708 { 1709 cfun->curr_properties &= ~PROP_loops; 1710 loop_optimizer_finalize (); 1711 } 1712 if (cfun->gimple_df) 1713 { 1714 delete_tree_ssa (); 1715 delete_tree_cfg_annotations (); 1716 cfun->eh = NULL; 1717 } 1718 if (cfun->cfg) 1719 { 1720 gcc_assert (!dom_info_available_p (CDI_DOMINATORS)); 1721 gcc_assert (!dom_info_available_p (CDI_POST_DOMINATORS)); 1722 clear_edges (); 1723 cfun->cfg = NULL; 1724 } 1725 if (cfun->value_histograms) 1726 free_histograms (); 1727 pop_cfun (); 1728 } 1729 gimple_set_body (decl, NULL); 1730 /* Struct function hangs a lot of data that would leak if we didn't 1731 removed all pointers to it. */ 1732 ggc_free (DECL_STRUCT_FUNCTION (decl)); 1733 DECL_STRUCT_FUNCTION (decl) = NULL; 1734 } 1735 DECL_SAVED_TREE (decl) = NULL; 1736 } 1737 1738 /* Release memory used to represent body of function. 1739 Use this only for functions that are released before being translated to 1740 target code (i.e. RTL). Functions that are compiled to RTL and beyond 1741 are free'd in final.c via free_after_compilation(). 1742 KEEP_ARGUMENTS are useful only if you want to rebuild body as thunk. */ 1743 1744 void 1745 cgraph_node::release_body (bool keep_arguments) 1746 { 1747 ipa_transforms_to_apply.release (); 1748 if (!used_as_abstract_origin && symtab->state != PARSING) 1749 { 1750 DECL_RESULT (decl) = NULL; 1751 1752 if (!keep_arguments) 1753 DECL_ARGUMENTS (decl) = NULL; 1754 } 1755 /* If the node is abstract and needed, then do not clear DECL_INITIAL 1756 of its associated function function declaration because it's 1757 needed to emit debug info later. */ 1758 if (!used_as_abstract_origin && DECL_INITIAL (decl)) 1759 DECL_INITIAL (decl) = error_mark_node; 1760 release_function_body (decl); 1761 if (lto_file_data) 1762 { 1763 lto_free_function_in_decl_state_for_node (this); 1764 lto_file_data = NULL; 1765 } 1766 } 1767 1768 /* Remove function from symbol table. */ 1769 1770 void 1771 cgraph_node::remove (void) 1772 { 1773 cgraph_node *n; 1774 int uid = this->uid; 1775 1776 symtab->call_cgraph_removal_hooks (this); 1777 remove_callers (); 1778 remove_callees (); 1779 ipa_transforms_to_apply.release (); 1780 1781 /* Incremental inlining access removed nodes stored in the postorder list. 1782 */ 1783 force_output = false; 1784 forced_by_abi = false; 1785 for (n = nested; n; n = n->next_nested) 1786 n->origin = NULL; 1787 nested = NULL; 1788 if (origin) 1789 { 1790 cgraph_node **node2 = &origin->nested; 1791 1792 while (*node2 != this) 1793 node2 = &(*node2)->next_nested; 1794 *node2 = next_nested; 1795 } 1796 unregister (); 1797 if (prev_sibling_clone) 1798 prev_sibling_clone->next_sibling_clone = next_sibling_clone; 1799 else if (clone_of) 1800 clone_of->clones = next_sibling_clone; 1801 if (next_sibling_clone) 1802 next_sibling_clone->prev_sibling_clone = prev_sibling_clone; 1803 if (clones) 1804 { 1805 cgraph_node *n, *next; 1806 1807 if (clone_of) 1808 { 1809 for (n = clones; n->next_sibling_clone; n = n->next_sibling_clone) 1810 n->clone_of = clone_of; 1811 n->clone_of = clone_of; 1812 n->next_sibling_clone = clone_of->clones; 1813 if (clone_of->clones) 1814 clone_of->clones->prev_sibling_clone = n; 1815 clone_of->clones = clones; 1816 } 1817 else 1818 { 1819 /* We are removing node with clones. This makes clones inconsistent, 1820 but assume they will be removed subsequently and just keep clone 1821 tree intact. This can happen in unreachable function removal since 1822 we remove unreachable functions in random order, not by bottom-up 1823 walk of clone trees. */ 1824 for (n = clones; n; n = next) 1825 { 1826 next = n->next_sibling_clone; 1827 n->next_sibling_clone = NULL; 1828 n->prev_sibling_clone = NULL; 1829 n->clone_of = NULL; 1830 } 1831 } 1832 } 1833 1834 /* While all the clones are removed after being proceeded, the function 1835 itself is kept in the cgraph even after it is compiled. Check whether 1836 we are done with this body and reclaim it proactively if this is the case. 1837 */ 1838 if (symtab->state != LTO_STREAMING) 1839 { 1840 n = cgraph_node::get (decl); 1841 if (!n 1842 || (!n->clones && !n->clone_of && !n->global.inlined_to 1843 && ((symtab->global_info_ready || in_lto_p) 1844 && (TREE_ASM_WRITTEN (n->decl) 1845 || DECL_EXTERNAL (n->decl) 1846 || !n->analyzed 1847 || (!flag_wpa && n->in_other_partition))))) 1848 release_body (); 1849 } 1850 else 1851 { 1852 lto_free_function_in_decl_state_for_node (this); 1853 lto_file_data = NULL; 1854 } 1855 1856 decl = NULL; 1857 if (call_site_hash) 1858 { 1859 call_site_hash->empty (); 1860 call_site_hash = NULL; 1861 } 1862 1863 if (instrumented_version) 1864 { 1865 instrumented_version->instrumented_version = NULL; 1866 instrumented_version = NULL; 1867 } 1868 1869 symtab->release_symbol (this, uid); 1870 } 1871 1872 /* Likewise indicate that a node is having address taken. */ 1873 1874 void 1875 cgraph_node::mark_address_taken (void) 1876 { 1877 /* Indirect inlining can figure out that all uses of the address are 1878 inlined. */ 1879 if (global.inlined_to) 1880 { 1881 gcc_assert (cfun->after_inlining); 1882 gcc_assert (callers->indirect_inlining_edge); 1883 return; 1884 } 1885 /* FIXME: address_taken flag is used both as a shortcut for testing whether 1886 IPA_REF_ADDR reference exists (and thus it should be set on node 1887 representing alias we take address of) and as a test whether address 1888 of the object was taken (and thus it should be set on node alias is 1889 referring to). We should remove the first use and the remove the 1890 following set. */ 1891 address_taken = 1; 1892 cgraph_node *node = ultimate_alias_target (); 1893 node->address_taken = 1; 1894 } 1895 1896 /* Return local info for the compiled function. */ 1897 1898 cgraph_local_info * 1899 cgraph_node::local_info (tree decl) 1900 { 1901 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL); 1902 cgraph_node *node = get (decl); 1903 if (!node) 1904 return NULL; 1905 return &node->ultimate_alias_target ()->local; 1906 } 1907 1908 /* Return local info for the compiled function. */ 1909 1910 cgraph_rtl_info * 1911 cgraph_node::rtl_info (tree decl) 1912 { 1913 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL); 1914 cgraph_node *node = get (decl); 1915 if (!node) 1916 return NULL; 1917 enum availability avail; 1918 node = node->ultimate_alias_target (&avail); 1919 if (decl != current_function_decl 1920 && (avail < AVAIL_AVAILABLE 1921 || (node->decl != current_function_decl 1922 && !TREE_ASM_WRITTEN (node->decl)))) 1923 return NULL; 1924 return &node->rtl; 1925 } 1926 1927 /* Return a string describing the failure REASON. */ 1928 1929 const char* 1930 cgraph_inline_failed_string (cgraph_inline_failed_t reason) 1931 { 1932 #undef DEFCIFCODE 1933 #define DEFCIFCODE(code, type, string) string, 1934 1935 static const char *cif_string_table[CIF_N_REASONS] = { 1936 #include "cif-code.def" 1937 }; 1938 1939 /* Signedness of an enum type is implementation defined, so cast it 1940 to unsigned before testing. */ 1941 gcc_assert ((unsigned) reason < CIF_N_REASONS); 1942 return cif_string_table[reason]; 1943 } 1944 1945 /* Return a type describing the failure REASON. */ 1946 1947 cgraph_inline_failed_type_t 1948 cgraph_inline_failed_type (cgraph_inline_failed_t reason) 1949 { 1950 #undef DEFCIFCODE 1951 #define DEFCIFCODE(code, type, string) type, 1952 1953 static cgraph_inline_failed_type_t cif_type_table[CIF_N_REASONS] = { 1954 #include "cif-code.def" 1955 }; 1956 1957 /* Signedness of an enum type is implementation defined, so cast it 1958 to unsigned before testing. */ 1959 gcc_assert ((unsigned) reason < CIF_N_REASONS); 1960 return cif_type_table[reason]; 1961 } 1962 1963 /* Names used to print out the availability enum. */ 1964 const char * const cgraph_availability_names[] = 1965 {"unset", "not_available", "overwritable", "available", "local"}; 1966 1967 /* Output flags of edge to a file F. */ 1968 1969 void 1970 cgraph_edge::dump_edge_flags (FILE *f) 1971 { 1972 if (speculative) 1973 fprintf (f, "(speculative) "); 1974 if (!inline_failed) 1975 fprintf (f, "(inlined) "); 1976 if (indirect_inlining_edge) 1977 fprintf (f, "(indirect_inlining) "); 1978 if (count) 1979 fprintf (f, "(%"PRId64"x) ", (int64_t)count); 1980 if (frequency) 1981 fprintf (f, "(%.2f per call) ", frequency / (double)CGRAPH_FREQ_BASE); 1982 if (can_throw_external) 1983 fprintf (f, "(can throw external) "); 1984 } 1985 1986 /* Dump call graph node to file F. */ 1987 1988 void 1989 cgraph_node::dump (FILE *f) 1990 { 1991 cgraph_edge *edge; 1992 1993 dump_base (f); 1994 1995 if (global.inlined_to) 1996 fprintf (f, " Function %s/%i is inline copy in %s/%i\n", 1997 xstrdup_for_dump (name ()), 1998 order, 1999 xstrdup_for_dump (global.inlined_to->name ()), 2000 global.inlined_to->order); 2001 if (clone_of) 2002 fprintf (f, " Clone of %s/%i\n", 2003 clone_of->asm_name (), 2004 clone_of->order); 2005 if (symtab->function_flags_ready) 2006 fprintf (f, " Availability: %s\n", 2007 cgraph_availability_names [get_availability ()]); 2008 2009 if (profile_id) 2010 fprintf (f, " Profile id: %i\n", 2011 profile_id); 2012 fprintf (f, " First run: %i\n", tp_first_run); 2013 fprintf (f, " Function flags:"); 2014 if (count) 2015 fprintf (f, " executed %"PRId64"x", 2016 (int64_t)count); 2017 if (origin) 2018 fprintf (f, " nested in: %s", origin->asm_name ()); 2019 if (gimple_has_body_p (decl)) 2020 fprintf (f, " body"); 2021 if (process) 2022 fprintf (f, " process"); 2023 if (local.local) 2024 fprintf (f, " local"); 2025 if (local.redefined_extern_inline) 2026 fprintf (f, " redefined_extern_inline"); 2027 if (only_called_at_startup) 2028 fprintf (f, " only_called_at_startup"); 2029 if (only_called_at_exit) 2030 fprintf (f, " only_called_at_exit"); 2031 if (tm_clone) 2032 fprintf (f, " tm_clone"); 2033 if (calls_comdat_local) 2034 fprintf (f, " calls_comdat_local"); 2035 if (icf_merged) 2036 fprintf (f, " icf_merged"); 2037 if (nonfreeing_fn) 2038 fprintf (f, " nonfreeing_fn"); 2039 if (DECL_STATIC_CONSTRUCTOR (decl)) 2040 fprintf (f," static_constructor (priority:%i)", get_init_priority ()); 2041 if (DECL_STATIC_DESTRUCTOR (decl)) 2042 fprintf (f," static_destructor (priority:%i)", get_fini_priority ()); 2043 if (frequency == NODE_FREQUENCY_HOT) 2044 fprintf (f, " hot"); 2045 if (frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED) 2046 fprintf (f, " unlikely_executed"); 2047 if (frequency == NODE_FREQUENCY_EXECUTED_ONCE) 2048 fprintf (f, " executed_once"); 2049 if (only_called_at_startup) 2050 fprintf (f, " only_called_at_startup"); 2051 if (only_called_at_exit) 2052 fprintf (f, " only_called_at_exit"); 2053 if (opt_for_fn (decl, optimize_size)) 2054 fprintf (f, " optimize_size"); 2055 if (parallelized_function) 2056 fprintf (f, " parallelized_function"); 2057 2058 fprintf (f, "\n"); 2059 2060 if (thunk.thunk_p) 2061 { 2062 fprintf (f, " Thunk"); 2063 if (thunk.alias) 2064 fprintf (f, " of %s (asm: %s)", 2065 lang_hooks.decl_printable_name (thunk.alias, 2), 2066 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (thunk.alias))); 2067 fprintf (f, " fixed offset %i virtual value %i has " 2068 "virtual offset %i)\n", 2069 (int)thunk.fixed_offset, 2070 (int)thunk.virtual_value, 2071 (int)thunk.virtual_offset_p); 2072 } 2073 if (alias && thunk.alias 2074 && DECL_P (thunk.alias)) 2075 { 2076 fprintf (f, " Alias of %s", 2077 lang_hooks.decl_printable_name (thunk.alias, 2)); 2078 if (DECL_ASSEMBLER_NAME_SET_P (thunk.alias)) 2079 fprintf (f, " (asm: %s)", 2080 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (thunk.alias))); 2081 fprintf (f, "\n"); 2082 } 2083 2084 fprintf (f, " Called by: "); 2085 2086 for (edge = callers; edge; edge = edge->next_caller) 2087 { 2088 fprintf (f, "%s/%i ", edge->caller->asm_name (), 2089 edge->caller->order); 2090 edge->dump_edge_flags (f); 2091 } 2092 2093 fprintf (f, "\n Calls: "); 2094 for (edge = callees; edge; edge = edge->next_callee) 2095 { 2096 fprintf (f, "%s/%i ", edge->callee->asm_name (), 2097 edge->callee->order); 2098 edge->dump_edge_flags (f); 2099 } 2100 fprintf (f, "\n"); 2101 2102 for (edge = indirect_calls; edge; edge = edge->next_callee) 2103 { 2104 if (edge->indirect_info->polymorphic) 2105 { 2106 fprintf (f, " Polymorphic indirect call of type "); 2107 print_generic_expr (f, edge->indirect_info->otr_type, TDF_SLIM); 2108 fprintf (f, " token:%i", (int) edge->indirect_info->otr_token); 2109 } 2110 else 2111 fprintf (f, " Indirect call"); 2112 edge->dump_edge_flags (f); 2113 if (edge->indirect_info->param_index != -1) 2114 { 2115 fprintf (f, " of param:%i", edge->indirect_info->param_index); 2116 if (edge->indirect_info->agg_contents) 2117 fprintf (f, " loaded from %s %s at offset %i", 2118 edge->indirect_info->member_ptr ? "member ptr" : "aggregate", 2119 edge->indirect_info->by_ref ? "passed by reference":"", 2120 (int)edge->indirect_info->offset); 2121 if (edge->indirect_info->vptr_changed) 2122 fprintf (f, " (vptr maybe changed)"); 2123 } 2124 fprintf (f, "\n"); 2125 if (edge->indirect_info->polymorphic) 2126 edge->indirect_info->context.dump (f); 2127 } 2128 2129 if (instrumentation_clone) 2130 fprintf (f, " Is instrumented version.\n"); 2131 else if (instrumented_version) 2132 fprintf (f, " Has instrumented version.\n"); 2133 } 2134 2135 /* Dump call graph node NODE to stderr. */ 2136 2137 DEBUG_FUNCTION void 2138 cgraph_node::debug (void) 2139 { 2140 dump (stderr); 2141 } 2142 2143 /* Dump the callgraph to file F. */ 2144 2145 void 2146 cgraph_node::dump_cgraph (FILE *f) 2147 { 2148 cgraph_node *node; 2149 2150 fprintf (f, "callgraph:\n\n"); 2151 FOR_EACH_FUNCTION (node) 2152 node->dump (f); 2153 } 2154 2155 /* Return true when the DECL can possibly be inlined. */ 2156 2157 bool 2158 cgraph_function_possibly_inlined_p (tree decl) 2159 { 2160 if (!symtab->global_info_ready) 2161 return !DECL_UNINLINABLE (decl); 2162 return DECL_POSSIBLY_INLINED (decl); 2163 } 2164 2165 /* cgraph_node is no longer nested function; update cgraph accordingly. */ 2166 void 2167 cgraph_node::unnest (void) 2168 { 2169 cgraph_node **node2 = &origin->nested; 2170 gcc_assert (origin); 2171 2172 while (*node2 != this) 2173 node2 = &(*node2)->next_nested; 2174 *node2 = next_nested; 2175 origin = NULL; 2176 } 2177 2178 /* Return function availability. See cgraph.h for description of individual 2179 return values. */ 2180 enum availability 2181 cgraph_node::get_availability (void) 2182 { 2183 enum availability avail; 2184 if (!analyzed) 2185 avail = AVAIL_NOT_AVAILABLE; 2186 else if (local.local) 2187 avail = AVAIL_LOCAL; 2188 else if (alias && weakref) 2189 ultimate_alias_target (&avail); 2190 else if (lookup_attribute ("ifunc", DECL_ATTRIBUTES (decl))) 2191 avail = AVAIL_INTERPOSABLE; 2192 else if (!externally_visible) 2193 avail = AVAIL_AVAILABLE; 2194 /* Inline functions are safe to be analyzed even if their symbol can 2195 be overwritten at runtime. It is not meaningful to enforce any sane 2196 behaviour on replacing inline function by different body. */ 2197 else if (DECL_DECLARED_INLINE_P (decl)) 2198 avail = AVAIL_AVAILABLE; 2199 2200 /* If the function can be overwritten, return OVERWRITABLE. Take 2201 care at least of two notable extensions - the COMDAT functions 2202 used to share template instantiations in C++ (this is symmetric 2203 to code cp_cannot_inline_tree_fn and probably shall be shared and 2204 the inlinability hooks completely eliminated). 2205 2206 ??? Does the C++ one definition rule allow us to always return 2207 AVAIL_AVAILABLE here? That would be good reason to preserve this 2208 bit. */ 2209 2210 else if (decl_replaceable_p (decl) && !DECL_EXTERNAL (decl)) 2211 avail = AVAIL_INTERPOSABLE; 2212 else avail = AVAIL_AVAILABLE; 2213 2214 return avail; 2215 } 2216 2217 /* Worker for cgraph_node_can_be_local_p. */ 2218 static bool 2219 cgraph_node_cannot_be_local_p_1 (cgraph_node *node, void *) 2220 { 2221 return !(!node->force_output 2222 && ((DECL_COMDAT (node->decl) 2223 && !node->forced_by_abi 2224 && !node->used_from_object_file_p () 2225 && !node->same_comdat_group) 2226 || !node->externally_visible)); 2227 } 2228 2229 /* Return true if cgraph_node can be made local for API change. 2230 Extern inline functions and C++ COMDAT functions can be made local 2231 at the expense of possible code size growth if function is used in multiple 2232 compilation units. */ 2233 bool 2234 cgraph_node::can_be_local_p (void) 2235 { 2236 return (!address_taken 2237 && !call_for_symbol_thunks_and_aliases (cgraph_node_cannot_be_local_p_1, 2238 NULL, true)); 2239 } 2240 2241 /* Call callback on cgraph_node, thunks and aliases associated to cgraph_node. 2242 When INCLUDE_OVERWRITABLE is false, overwritable aliases and thunks are 2243 skipped. When EXCLUDE_VIRTUAL_THUNKS is true, virtual thunks are 2244 skipped. */ 2245 bool 2246 cgraph_node::call_for_symbol_thunks_and_aliases (bool (*callback) 2247 (cgraph_node *, void *), 2248 void *data, 2249 bool include_overwritable, 2250 bool exclude_virtual_thunks) 2251 { 2252 cgraph_edge *e; 2253 ipa_ref *ref; 2254 2255 if (callback (this, data)) 2256 return true; 2257 FOR_EACH_ALIAS (this, ref) 2258 { 2259 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring); 2260 if (include_overwritable 2261 || alias->get_availability () > AVAIL_INTERPOSABLE) 2262 if (alias->call_for_symbol_thunks_and_aliases (callback, data, 2263 include_overwritable, 2264 exclude_virtual_thunks)) 2265 return true; 2266 } 2267 for (e = callers; e; e = e->next_caller) 2268 if (e->caller->thunk.thunk_p 2269 && (include_overwritable 2270 || e->caller->get_availability () > AVAIL_INTERPOSABLE) 2271 && !(exclude_virtual_thunks 2272 && e->caller->thunk.virtual_offset_p)) 2273 if (e->caller->call_for_symbol_thunks_and_aliases (callback, data, 2274 include_overwritable, 2275 exclude_virtual_thunks)) 2276 return true; 2277 2278 return false; 2279 } 2280 2281 /* Worker to bring NODE local. */ 2282 2283 bool 2284 cgraph_node::make_local (cgraph_node *node, void *) 2285 { 2286 gcc_checking_assert (node->can_be_local_p ()); 2287 if (DECL_COMDAT (node->decl) || DECL_EXTERNAL (node->decl)) 2288 { 2289 node->make_decl_local (); 2290 node->set_section (NULL); 2291 node->set_comdat_group (NULL); 2292 node->externally_visible = false; 2293 node->forced_by_abi = false; 2294 node->local.local = true; 2295 node->set_section (NULL); 2296 node->unique_name = (node->resolution == LDPR_PREVAILING_DEF_IRONLY 2297 || node->resolution == LDPR_PREVAILING_DEF_IRONLY_EXP); 2298 node->resolution = LDPR_PREVAILING_DEF_IRONLY; 2299 gcc_assert (node->get_availability () == AVAIL_LOCAL); 2300 } 2301 return false; 2302 } 2303 2304 /* Bring cgraph node local. */ 2305 2306 void 2307 cgraph_node::make_local (void) 2308 { 2309 call_for_symbol_thunks_and_aliases (cgraph_node::make_local, NULL, true); 2310 } 2311 2312 /* Worker to set nothrow flag. */ 2313 2314 static bool 2315 cgraph_set_nothrow_flag_1 (cgraph_node *node, void *data) 2316 { 2317 cgraph_edge *e; 2318 2319 TREE_NOTHROW (node->decl) = data != NULL; 2320 2321 if (data != NULL) 2322 for (e = node->callers; e; e = e->next_caller) 2323 e->can_throw_external = false; 2324 return false; 2325 } 2326 2327 /* Set TREE_NOTHROW on NODE's decl and on aliases of NODE 2328 if any to NOTHROW. */ 2329 2330 void 2331 cgraph_node::set_nothrow_flag (bool nothrow) 2332 { 2333 call_for_symbol_thunks_and_aliases (cgraph_set_nothrow_flag_1, 2334 (void *)(size_t)nothrow, false); 2335 } 2336 2337 /* Worker to set const flag. */ 2338 2339 static bool 2340 cgraph_set_const_flag_1 (cgraph_node *node, void *data) 2341 { 2342 /* Static constructors and destructors without a side effect can be 2343 optimized out. */ 2344 if (data && !((size_t)data & 2)) 2345 { 2346 if (DECL_STATIC_CONSTRUCTOR (node->decl)) 2347 DECL_STATIC_CONSTRUCTOR (node->decl) = 0; 2348 if (DECL_STATIC_DESTRUCTOR (node->decl)) 2349 DECL_STATIC_DESTRUCTOR (node->decl) = 0; 2350 } 2351 TREE_READONLY (node->decl) = data != NULL; 2352 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = ((size_t)data & 2) != 0; 2353 return false; 2354 } 2355 2356 /* Set TREE_READONLY on cgraph_node's decl and on aliases of the node 2357 if any to READONLY. */ 2358 2359 void 2360 cgraph_node::set_const_flag (bool readonly, bool looping) 2361 { 2362 call_for_symbol_thunks_and_aliases (cgraph_set_const_flag_1, 2363 (void *)(size_t)(readonly + (int)looping * 2), 2364 false, true); 2365 } 2366 2367 /* Worker to set pure flag. */ 2368 2369 static bool 2370 cgraph_set_pure_flag_1 (cgraph_node *node, void *data) 2371 { 2372 /* Static constructors and destructors without a side effect can be 2373 optimized out. */ 2374 if (data && !((size_t)data & 2)) 2375 { 2376 if (DECL_STATIC_CONSTRUCTOR (node->decl)) 2377 DECL_STATIC_CONSTRUCTOR (node->decl) = 0; 2378 if (DECL_STATIC_DESTRUCTOR (node->decl)) 2379 DECL_STATIC_DESTRUCTOR (node->decl) = 0; 2380 } 2381 DECL_PURE_P (node->decl) = data != NULL; 2382 DECL_LOOPING_CONST_OR_PURE_P (node->decl) = ((size_t)data & 2) != 0; 2383 return false; 2384 } 2385 2386 /* Set DECL_PURE_P on cgraph_node's decl and on aliases of the node 2387 if any to PURE. */ 2388 2389 void 2390 cgraph_node::set_pure_flag (bool pure, bool looping) 2391 { 2392 call_for_symbol_thunks_and_aliases (cgraph_set_pure_flag_1, 2393 (void *)(size_t)(pure + (int)looping * 2), 2394 false, true); 2395 } 2396 2397 /* Return true when cgraph_node can not return or throw and thus 2398 it is safe to ignore its side effects for IPA analysis. */ 2399 2400 bool 2401 cgraph_node::cannot_return_p (void) 2402 { 2403 int flags = flags_from_decl_or_type (decl); 2404 if (!opt_for_fn (decl, flag_exceptions)) 2405 return (flags & ECF_NORETURN) != 0; 2406 else 2407 return ((flags & (ECF_NORETURN | ECF_NOTHROW)) 2408 == (ECF_NORETURN | ECF_NOTHROW)); 2409 } 2410 2411 /* Return true when call of edge can not lead to return from caller 2412 and thus it is safe to ignore its side effects for IPA analysis 2413 when computing side effects of the caller. 2414 FIXME: We could actually mark all edges that have no reaching 2415 patch to the exit block or throw to get better results. */ 2416 bool 2417 cgraph_edge::cannot_lead_to_return_p (void) 2418 { 2419 if (caller->cannot_return_p ()) 2420 return true; 2421 if (indirect_unknown_callee) 2422 { 2423 int flags = indirect_info->ecf_flags; 2424 if (!opt_for_fn (caller->decl, flag_exceptions)) 2425 return (flags & ECF_NORETURN) != 0; 2426 else 2427 return ((flags & (ECF_NORETURN | ECF_NOTHROW)) 2428 == (ECF_NORETURN | ECF_NOTHROW)); 2429 } 2430 else 2431 return callee->cannot_return_p (); 2432 } 2433 2434 /* Return true if the call can be hot. */ 2435 2436 bool 2437 cgraph_edge::maybe_hot_p (void) 2438 { 2439 /* TODO: Export profile_status from cfun->cfg to cgraph_node. */ 2440 if (profile_info 2441 && opt_for_fn (caller->decl, flag_branch_probabilities) 2442 && !maybe_hot_count_p (NULL, count)) 2443 return false; 2444 if (caller->frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED 2445 || (callee 2446 && callee->frequency == NODE_FREQUENCY_UNLIKELY_EXECUTED)) 2447 return false; 2448 if (caller->frequency > NODE_FREQUENCY_UNLIKELY_EXECUTED 2449 && (callee 2450 && callee->frequency <= NODE_FREQUENCY_EXECUTED_ONCE)) 2451 return false; 2452 if (opt_for_fn (caller->decl, optimize_size)) 2453 return false; 2454 if (caller->frequency == NODE_FREQUENCY_HOT) 2455 return true; 2456 if (caller->frequency == NODE_FREQUENCY_EXECUTED_ONCE 2457 && frequency < CGRAPH_FREQ_BASE * 3 / 2) 2458 return false; 2459 if (opt_for_fn (caller->decl, flag_guess_branch_prob)) 2460 { 2461 if (PARAM_VALUE (HOT_BB_FREQUENCY_FRACTION) == 0 2462 || frequency <= (CGRAPH_FREQ_BASE 2463 / PARAM_VALUE (HOT_BB_FREQUENCY_FRACTION))) 2464 return false; 2465 } 2466 return true; 2467 } 2468 2469 /* Worker for cgraph_can_remove_if_no_direct_calls_p. */ 2470 2471 static bool 2472 nonremovable_p (cgraph_node *node, void *) 2473 { 2474 return !node->can_remove_if_no_direct_calls_and_refs_p (); 2475 } 2476 2477 /* Return true if whole comdat group can be removed if there are no direct 2478 calls to THIS. */ 2479 2480 bool 2481 cgraph_node::can_remove_if_no_direct_calls_p (bool will_inline) 2482 { 2483 struct ipa_ref *ref; 2484 2485 /* For local symbols or non-comdat group it is the same as 2486 can_remove_if_no_direct_calls_p. */ 2487 if (!externally_visible || !same_comdat_group) 2488 { 2489 if (DECL_EXTERNAL (decl)) 2490 return true; 2491 if (address_taken) 2492 return false; 2493 return !call_for_symbol_and_aliases (nonremovable_p, NULL, true); 2494 } 2495 2496 if (will_inline && address_taken) 2497 return false; 2498 2499 /* Otheriwse check if we can remove the symbol itself and then verify 2500 that only uses of the comdat groups are direct call to THIS 2501 or its aliases. */ 2502 if (!can_remove_if_no_direct_calls_and_refs_p ()) 2503 return false; 2504 2505 /* Check that all refs come from within the comdat group. */ 2506 for (int i = 0; iterate_referring (i, ref); i++) 2507 if (ref->referring->get_comdat_group () != get_comdat_group ()) 2508 return false; 2509 2510 struct cgraph_node *target = ultimate_alias_target (); 2511 for (cgraph_node *next = dyn_cast<cgraph_node *> (same_comdat_group); 2512 next != this; next = dyn_cast<cgraph_node *> (next->same_comdat_group)) 2513 { 2514 if (!externally_visible) 2515 continue; 2516 if (!next->alias 2517 && !next->can_remove_if_no_direct_calls_and_refs_p ()) 2518 return false; 2519 2520 /* If we see different symbol than THIS, be sure to check calls. */ 2521 if (next->ultimate_alias_target () != target) 2522 for (cgraph_edge *e = next->callers; e; e = e->next_caller) 2523 if (e->caller->get_comdat_group () != get_comdat_group () 2524 || will_inline) 2525 return false; 2526 2527 /* If function is not being inlined, we care only about 2528 references outside of the comdat group. */ 2529 if (!will_inline) 2530 for (int i = 0; next->iterate_referring (i, ref); i++) 2531 if (ref->referring->get_comdat_group () != get_comdat_group ()) 2532 return false; 2533 } 2534 return true; 2535 } 2536 2537 /* Return true when function cgraph_node can be expected to be removed 2538 from program when direct calls in this compilation unit are removed. 2539 2540 As a special case COMDAT functions are 2541 cgraph_can_remove_if_no_direct_calls_p while the are not 2542 cgraph_only_called_directly_p (it is possible they are called from other 2543 unit) 2544 2545 This function behaves as cgraph_only_called_directly_p because eliminating 2546 all uses of COMDAT function does not make it necessarily disappear from 2547 the program unless we are compiling whole program or we do LTO. In this 2548 case we know we win since dynamic linking will not really discard the 2549 linkonce section. */ 2550 2551 bool 2552 cgraph_node::will_be_removed_from_program_if_no_direct_calls_p 2553 (bool will_inline) 2554 { 2555 gcc_assert (!global.inlined_to); 2556 if (DECL_EXTERNAL (decl)) 2557 return true; 2558 2559 if (!in_lto_p && !flag_whole_program) 2560 { 2561 /* If the symbol is in comdat group, we need to verify that whole comdat 2562 group becomes unreachable. Technically we could skip references from 2563 within the group, too. */ 2564 if (!only_called_directly_p ()) 2565 return false; 2566 if (same_comdat_group && externally_visible) 2567 { 2568 struct cgraph_node *target = ultimate_alias_target (); 2569 2570 if (will_inline && address_taken) 2571 return true; 2572 for (cgraph_node *next = dyn_cast<cgraph_node *> (same_comdat_group); 2573 next != this; 2574 next = dyn_cast<cgraph_node *> (next->same_comdat_group)) 2575 { 2576 if (!externally_visible) 2577 continue; 2578 if (!next->alias 2579 && !next->only_called_directly_p ()) 2580 return false; 2581 2582 /* If we see different symbol than THIS, 2583 be sure to check calls. */ 2584 if (next->ultimate_alias_target () != target) 2585 for (cgraph_edge *e = next->callers; e; e = e->next_caller) 2586 if (e->caller->get_comdat_group () != get_comdat_group () 2587 || will_inline) 2588 return false; 2589 } 2590 } 2591 return true; 2592 } 2593 else 2594 return can_remove_if_no_direct_calls_p (will_inline); 2595 } 2596 2597 2598 /* Worker for cgraph_only_called_directly_p. */ 2599 2600 static bool 2601 cgraph_not_only_called_directly_p_1 (cgraph_node *node, void *) 2602 { 2603 return !node->only_called_directly_or_aliased_p (); 2604 } 2605 2606 /* Return true when function cgraph_node and all its aliases are only called 2607 directly. 2608 i.e. it is not externally visible, address was not taken and 2609 it is not used in any other non-standard way. */ 2610 2611 bool 2612 cgraph_node::only_called_directly_p (void) 2613 { 2614 gcc_assert (ultimate_alias_target () == this); 2615 return !call_for_symbol_and_aliases (cgraph_not_only_called_directly_p_1, 2616 NULL, true); 2617 } 2618 2619 2620 /* Collect all callers of NODE. Worker for collect_callers_of_node. */ 2621 2622 static bool 2623 collect_callers_of_node_1 (cgraph_node *node, void *data) 2624 { 2625 vec<cgraph_edge *> *redirect_callers = (vec<cgraph_edge *> *)data; 2626 cgraph_edge *cs; 2627 enum availability avail; 2628 node->ultimate_alias_target (&avail); 2629 2630 if (avail > AVAIL_INTERPOSABLE) 2631 for (cs = node->callers; cs != NULL; cs = cs->next_caller) 2632 if (!cs->indirect_inlining_edge 2633 && !cs->caller->thunk.thunk_p) 2634 redirect_callers->safe_push (cs); 2635 return false; 2636 } 2637 2638 /* Collect all callers of cgraph_node and its aliases that are known to lead to 2639 cgraph_node (i.e. are not overwritable). */ 2640 2641 vec<cgraph_edge *> 2642 cgraph_node::collect_callers (void) 2643 { 2644 vec<cgraph_edge *> redirect_callers = vNULL; 2645 call_for_symbol_thunks_and_aliases (collect_callers_of_node_1, 2646 &redirect_callers, false); 2647 return redirect_callers; 2648 } 2649 2650 /* Return TRUE if NODE2 a clone of NODE or is equivalent to it. */ 2651 2652 static bool 2653 clone_of_p (cgraph_node *node, cgraph_node *node2) 2654 { 2655 bool skipped_thunk = false; 2656 node = node->ultimate_alias_target (); 2657 node2 = node2->ultimate_alias_target (); 2658 2659 /* There are no virtual clones of thunks so check former_clone_of or if we 2660 might have skipped thunks because this adjustments are no longer 2661 necessary. */ 2662 while (node->thunk.thunk_p) 2663 { 2664 if (node2->former_clone_of == node->decl) 2665 return true; 2666 if (!node->thunk.this_adjusting) 2667 return false; 2668 node = node->callees->callee->ultimate_alias_target (); 2669 skipped_thunk = true; 2670 } 2671 2672 if (skipped_thunk) 2673 { 2674 if (!node2->clone.args_to_skip 2675 || !bitmap_bit_p (node2->clone.args_to_skip, 0)) 2676 return false; 2677 if (node2->former_clone_of == node->decl) 2678 return true; 2679 else if (!node2->clone_of) 2680 return false; 2681 } 2682 2683 while (node != node2 && node2) 2684 node2 = node2->clone_of; 2685 return node2 != NULL; 2686 } 2687 2688 /* Verify edge count and frequency. */ 2689 2690 bool 2691 cgraph_edge::verify_count_and_frequency () 2692 { 2693 bool error_found = false; 2694 if (count < 0) 2695 { 2696 error ("caller edge count is negative"); 2697 error_found = true; 2698 } 2699 if (frequency < 0) 2700 { 2701 error ("caller edge frequency is negative"); 2702 error_found = true; 2703 } 2704 if (frequency > CGRAPH_FREQ_MAX) 2705 { 2706 error ("caller edge frequency is too large"); 2707 error_found = true; 2708 } 2709 return error_found; 2710 } 2711 2712 /* Switch to THIS_CFUN if needed and print STMT to stderr. */ 2713 static void 2714 cgraph_debug_gimple_stmt (function *this_cfun, gimple stmt) 2715 { 2716 bool fndecl_was_null = false; 2717 /* debug_gimple_stmt needs correct cfun */ 2718 if (cfun != this_cfun) 2719 set_cfun (this_cfun); 2720 /* ...and an actual current_function_decl */ 2721 if (!current_function_decl) 2722 { 2723 current_function_decl = this_cfun->decl; 2724 fndecl_was_null = true; 2725 } 2726 debug_gimple_stmt (stmt); 2727 if (fndecl_was_null) 2728 current_function_decl = NULL; 2729 } 2730 2731 /* Verify that call graph edge corresponds to DECL from the associated 2732 statement. Return true if the verification should fail. */ 2733 2734 bool 2735 cgraph_edge::verify_corresponds_to_fndecl (tree decl) 2736 { 2737 cgraph_node *node; 2738 2739 if (!decl || callee->global.inlined_to) 2740 return false; 2741 if (symtab->state == LTO_STREAMING) 2742 return false; 2743 node = cgraph_node::get (decl); 2744 2745 /* We do not know if a node from a different partition is an alias or what it 2746 aliases and therefore cannot do the former_clone_of check reliably. When 2747 body_removed is set, we have lost all information about what was alias or 2748 thunk of and also cannot proceed. */ 2749 if (!node 2750 || node->body_removed 2751 || node->in_other_partition 2752 || callee->icf_merged 2753 || callee->in_other_partition) 2754 return false; 2755 2756 node = node->ultimate_alias_target (); 2757 2758 /* Optimizers can redirect unreachable calls or calls triggering undefined 2759 behaviour to builtin_unreachable. */ 2760 if (DECL_BUILT_IN_CLASS (callee->decl) == BUILT_IN_NORMAL 2761 && DECL_FUNCTION_CODE (callee->decl) == BUILT_IN_UNREACHABLE) 2762 return false; 2763 2764 if (callee->former_clone_of != node->decl 2765 && (node != callee->ultimate_alias_target ()) 2766 && !clone_of_p (node, callee)) 2767 return true; 2768 else 2769 return false; 2770 } 2771 2772 /* Verify cgraph nodes of given cgraph node. */ 2773 DEBUG_FUNCTION void 2774 cgraph_node::verify_node (void) 2775 { 2776 cgraph_edge *e; 2777 function *this_cfun = DECL_STRUCT_FUNCTION (decl); 2778 basic_block this_block; 2779 gimple_stmt_iterator gsi; 2780 bool error_found = false; 2781 2782 if (seen_error ()) 2783 return; 2784 2785 timevar_push (TV_CGRAPH_VERIFY); 2786 error_found |= verify_base (); 2787 for (e = callees; e; e = e->next_callee) 2788 if (e->aux) 2789 { 2790 error ("aux field set for edge %s->%s", 2791 identifier_to_locale (e->caller->name ()), 2792 identifier_to_locale (e->callee->name ())); 2793 error_found = true; 2794 } 2795 if (count < 0) 2796 { 2797 error ("execution count is negative"); 2798 error_found = true; 2799 } 2800 if (global.inlined_to && same_comdat_group) 2801 { 2802 error ("inline clone in same comdat group list"); 2803 error_found = true; 2804 } 2805 if (!definition && !in_other_partition && local.local) 2806 { 2807 error ("local symbols must be defined"); 2808 error_found = true; 2809 } 2810 if (global.inlined_to && externally_visible) 2811 { 2812 error ("externally visible inline clone"); 2813 error_found = true; 2814 } 2815 if (global.inlined_to && address_taken) 2816 { 2817 error ("inline clone with address taken"); 2818 error_found = true; 2819 } 2820 if (global.inlined_to && force_output) 2821 { 2822 error ("inline clone is forced to output"); 2823 error_found = true; 2824 } 2825 for (e = indirect_calls; e; e = e->next_callee) 2826 { 2827 if (e->aux) 2828 { 2829 error ("aux field set for indirect edge from %s", 2830 identifier_to_locale (e->caller->name ())); 2831 error_found = true; 2832 } 2833 if (!e->indirect_unknown_callee 2834 || !e->indirect_info) 2835 { 2836 error ("An indirect edge from %s is not marked as indirect or has " 2837 "associated indirect_info, the corresponding statement is: ", 2838 identifier_to_locale (e->caller->name ())); 2839 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt); 2840 error_found = true; 2841 } 2842 } 2843 bool check_comdat = comdat_local_p (); 2844 for (e = callers; e; e = e->next_caller) 2845 { 2846 if (e->verify_count_and_frequency ()) 2847 error_found = true; 2848 if (check_comdat 2849 && !in_same_comdat_group_p (e->caller)) 2850 { 2851 error ("comdat-local function called by %s outside its comdat", 2852 identifier_to_locale (e->caller->name ())); 2853 error_found = true; 2854 } 2855 if (!e->inline_failed) 2856 { 2857 if (global.inlined_to 2858 != (e->caller->global.inlined_to 2859 ? e->caller->global.inlined_to : e->caller)) 2860 { 2861 error ("inlined_to pointer is wrong"); 2862 error_found = true; 2863 } 2864 if (callers->next_caller) 2865 { 2866 error ("multiple inline callers"); 2867 error_found = true; 2868 } 2869 } 2870 else 2871 if (global.inlined_to) 2872 { 2873 error ("inlined_to pointer set for noninline callers"); 2874 error_found = true; 2875 } 2876 } 2877 for (e = callees; e; e = e->next_callee) 2878 { 2879 if (e->verify_count_and_frequency ()) 2880 error_found = true; 2881 if (gimple_has_body_p (e->caller->decl) 2882 && !e->caller->global.inlined_to 2883 && !e->speculative 2884 /* Optimized out calls are redirected to __builtin_unreachable. */ 2885 && (e->frequency 2886 || e->callee->decl 2887 != builtin_decl_implicit (BUILT_IN_UNREACHABLE)) 2888 && (e->frequency 2889 != compute_call_stmt_bb_frequency (e->caller->decl, 2890 gimple_bb (e->call_stmt)))) 2891 { 2892 error ("caller edge frequency %i does not match BB frequency %i", 2893 e->frequency, 2894 compute_call_stmt_bb_frequency (e->caller->decl, 2895 gimple_bb (e->call_stmt))); 2896 error_found = true; 2897 } 2898 } 2899 for (e = indirect_calls; e; e = e->next_callee) 2900 { 2901 if (e->verify_count_and_frequency ()) 2902 error_found = true; 2903 if (gimple_has_body_p (e->caller->decl) 2904 && !e->caller->global.inlined_to 2905 && !e->speculative 2906 && (e->frequency 2907 != compute_call_stmt_bb_frequency (e->caller->decl, 2908 gimple_bb (e->call_stmt)))) 2909 { 2910 error ("indirect call frequency %i does not match BB frequency %i", 2911 e->frequency, 2912 compute_call_stmt_bb_frequency (e->caller->decl, 2913 gimple_bb (e->call_stmt))); 2914 error_found = true; 2915 } 2916 } 2917 if (!callers && global.inlined_to) 2918 { 2919 error ("inlined_to pointer is set but no predecessors found"); 2920 error_found = true; 2921 } 2922 if (global.inlined_to == this) 2923 { 2924 error ("inlined_to pointer refers to itself"); 2925 error_found = true; 2926 } 2927 2928 if (clone_of) 2929 { 2930 cgraph_node *n; 2931 for (n = clone_of->clones; n; n = n->next_sibling_clone) 2932 if (n == this) 2933 break; 2934 if (!n) 2935 { 2936 error ("cgraph_node has wrong clone_of"); 2937 error_found = true; 2938 } 2939 } 2940 if (clones) 2941 { 2942 cgraph_node *n; 2943 for (n = clones; n; n = n->next_sibling_clone) 2944 if (n->clone_of != this) 2945 break; 2946 if (n) 2947 { 2948 error ("cgraph_node has wrong clone list"); 2949 error_found = true; 2950 } 2951 } 2952 if ((prev_sibling_clone || next_sibling_clone) && !clone_of) 2953 { 2954 error ("cgraph_node is in clone list but it is not clone"); 2955 error_found = true; 2956 } 2957 if (!prev_sibling_clone && clone_of && clone_of->clones != this) 2958 { 2959 error ("cgraph_node has wrong prev_clone pointer"); 2960 error_found = true; 2961 } 2962 if (prev_sibling_clone && prev_sibling_clone->next_sibling_clone != this) 2963 { 2964 error ("double linked list of clones corrupted"); 2965 error_found = true; 2966 } 2967 2968 if (analyzed && alias) 2969 { 2970 bool ref_found = false; 2971 int i; 2972 ipa_ref *ref = NULL; 2973 2974 if (callees) 2975 { 2976 error ("Alias has call edges"); 2977 error_found = true; 2978 } 2979 for (i = 0; iterate_reference (i, ref); i++) 2980 if (ref->use == IPA_REF_CHKP) 2981 ; 2982 else if (ref->use != IPA_REF_ALIAS) 2983 { 2984 error ("Alias has non-alias reference"); 2985 error_found = true; 2986 } 2987 else if (ref_found) 2988 { 2989 error ("Alias has more than one alias reference"); 2990 error_found = true; 2991 } 2992 else 2993 ref_found = true; 2994 if (!ref_found) 2995 { 2996 error ("Analyzed alias has no reference"); 2997 error_found = true; 2998 } 2999 } 3000 3001 /* Check instrumented version reference. */ 3002 if (instrumented_version 3003 && instrumented_version->instrumented_version != this) 3004 { 3005 error ("Instrumentation clone does not reference original node"); 3006 error_found = true; 3007 } 3008 3009 /* Cannot have orig_decl for not instrumented nodes. */ 3010 if (!instrumentation_clone && orig_decl) 3011 { 3012 error ("Not instrumented node has non-NULL original declaration"); 3013 error_found = true; 3014 } 3015 3016 /* If original not instrumented node still exists then we may check 3017 original declaration is set properly. */ 3018 if (instrumented_version 3019 && orig_decl 3020 && orig_decl != instrumented_version->decl) 3021 { 3022 error ("Instrumented node has wrong original declaration"); 3023 error_found = true; 3024 } 3025 3026 /* Check all nodes have chkp reference to their instrumented versions. */ 3027 if (analyzed 3028 && instrumented_version 3029 && !instrumentation_clone) 3030 { 3031 bool ref_found = false; 3032 int i; 3033 struct ipa_ref *ref; 3034 3035 for (i = 0; iterate_reference (i, ref); i++) 3036 if (ref->use == IPA_REF_CHKP) 3037 { 3038 if (ref_found) 3039 { 3040 error ("Node has more than one chkp reference"); 3041 error_found = true; 3042 } 3043 if (ref->referred != instrumented_version) 3044 { 3045 error ("Wrong node is referenced with chkp reference"); 3046 error_found = true; 3047 } 3048 ref_found = true; 3049 } 3050 3051 if (!ref_found) 3052 { 3053 error ("Analyzed node has no reference to instrumented version"); 3054 error_found = true; 3055 } 3056 } 3057 3058 if (instrumentation_clone 3059 && DECL_BUILT_IN_CLASS (decl) == NOT_BUILT_IN) 3060 { 3061 tree name = DECL_ASSEMBLER_NAME (decl); 3062 tree orig_name = DECL_ASSEMBLER_NAME (orig_decl); 3063 3064 if (!IDENTIFIER_TRANSPARENT_ALIAS (name) 3065 || TREE_CHAIN (name) != orig_name) 3066 { 3067 error ("Alias chain for instrumented node is broken"); 3068 error_found = true; 3069 } 3070 } 3071 3072 if (analyzed && thunk.thunk_p) 3073 { 3074 if (!callees) 3075 { 3076 error ("No edge out of thunk node"); 3077 error_found = true; 3078 } 3079 else if (callees->next_callee) 3080 { 3081 error ("More than one edge out of thunk node"); 3082 error_found = true; 3083 } 3084 if (gimple_has_body_p (decl)) 3085 { 3086 error ("Thunk is not supposed to have body"); 3087 error_found = true; 3088 } 3089 if (thunk.add_pointer_bounds_args 3090 && !instrumented_version->semantically_equivalent_p (callees->callee)) 3091 { 3092 error ("Instrumentation thunk has wrong edge callee"); 3093 error_found = true; 3094 } 3095 } 3096 else if (analyzed && gimple_has_body_p (decl) 3097 && !TREE_ASM_WRITTEN (decl) 3098 && (!DECL_EXTERNAL (decl) || global.inlined_to) 3099 && !flag_wpa) 3100 { 3101 if (this_cfun->cfg) 3102 { 3103 hash_set<gimple> stmts; 3104 int i; 3105 ipa_ref *ref = NULL; 3106 3107 /* Reach the trees by walking over the CFG, and note the 3108 enclosing basic-blocks in the call edges. */ 3109 FOR_EACH_BB_FN (this_block, this_cfun) 3110 { 3111 for (gsi = gsi_start_phis (this_block); 3112 !gsi_end_p (gsi); gsi_next (&gsi)) 3113 stmts.add (gsi_stmt (gsi)); 3114 for (gsi = gsi_start_bb (this_block); 3115 !gsi_end_p (gsi); 3116 gsi_next (&gsi)) 3117 { 3118 gimple stmt = gsi_stmt (gsi); 3119 stmts.add (stmt); 3120 if (is_gimple_call (stmt)) 3121 { 3122 cgraph_edge *e = get_edge (stmt); 3123 tree decl = gimple_call_fndecl (stmt); 3124 if (e) 3125 { 3126 if (e->aux) 3127 { 3128 error ("shared call_stmt:"); 3129 cgraph_debug_gimple_stmt (this_cfun, stmt); 3130 error_found = true; 3131 } 3132 if (!e->indirect_unknown_callee) 3133 { 3134 if (e->verify_corresponds_to_fndecl (decl)) 3135 { 3136 error ("edge points to wrong declaration:"); 3137 debug_tree (e->callee->decl); 3138 fprintf (stderr," Instead of:"); 3139 debug_tree (decl); 3140 error_found = true; 3141 } 3142 } 3143 else if (decl) 3144 { 3145 error ("an indirect edge with unknown callee " 3146 "corresponding to a call_stmt with " 3147 "a known declaration:"); 3148 error_found = true; 3149 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt); 3150 } 3151 e->aux = (void *)1; 3152 } 3153 else if (decl) 3154 { 3155 error ("missing callgraph edge for call stmt:"); 3156 cgraph_debug_gimple_stmt (this_cfun, stmt); 3157 error_found = true; 3158 } 3159 } 3160 } 3161 } 3162 for (i = 0; iterate_reference (i, ref); i++) 3163 if (ref->stmt && !stmts.contains (ref->stmt)) 3164 { 3165 error ("reference to dead statement"); 3166 cgraph_debug_gimple_stmt (this_cfun, ref->stmt); 3167 error_found = true; 3168 } 3169 } 3170 else 3171 /* No CFG available?! */ 3172 gcc_unreachable (); 3173 3174 for (e = callees; e; e = e->next_callee) 3175 { 3176 if (!e->aux) 3177 { 3178 error ("edge %s->%s has no corresponding call_stmt", 3179 identifier_to_locale (e->caller->name ()), 3180 identifier_to_locale (e->callee->name ())); 3181 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt); 3182 error_found = true; 3183 } 3184 e->aux = 0; 3185 } 3186 for (e = indirect_calls; e; e = e->next_callee) 3187 { 3188 if (!e->aux && !e->speculative) 3189 { 3190 error ("an indirect edge from %s has no corresponding call_stmt", 3191 identifier_to_locale (e->caller->name ())); 3192 cgraph_debug_gimple_stmt (this_cfun, e->call_stmt); 3193 error_found = true; 3194 } 3195 e->aux = 0; 3196 } 3197 } 3198 if (error_found) 3199 { 3200 dump (stderr); 3201 internal_error ("verify_cgraph_node failed"); 3202 } 3203 timevar_pop (TV_CGRAPH_VERIFY); 3204 } 3205 3206 /* Verify whole cgraph structure. */ 3207 DEBUG_FUNCTION void 3208 cgraph_node::verify_cgraph_nodes (void) 3209 { 3210 cgraph_node *node; 3211 3212 if (seen_error ()) 3213 return; 3214 3215 FOR_EACH_FUNCTION (node) 3216 node->verify (); 3217 } 3218 3219 /* Walk the alias chain to return the function cgraph_node is alias of. 3220 Walk through thunks, too. 3221 When AVAILABILITY is non-NULL, get minimal availability in the chain. */ 3222 3223 cgraph_node * 3224 cgraph_node::function_symbol (enum availability *availability) 3225 { 3226 cgraph_node *node = ultimate_alias_target (availability); 3227 3228 while (node->thunk.thunk_p) 3229 { 3230 node = node->callees->callee; 3231 if (availability) 3232 { 3233 enum availability a; 3234 a = node->get_availability (); 3235 if (a < *availability) 3236 *availability = a; 3237 } 3238 node = node->ultimate_alias_target (availability); 3239 } 3240 return node; 3241 } 3242 3243 /* Walk the alias chain to return the function cgraph_node is alias of. 3244 Walk through non virtual thunks, too. Thus we return either a function 3245 or a virtual thunk node. 3246 When AVAILABILITY is non-NULL, get minimal availability in the chain. */ 3247 3248 cgraph_node * 3249 cgraph_node::function_or_virtual_thunk_symbol 3250 (enum availability *availability) 3251 { 3252 cgraph_node *node = ultimate_alias_target (availability); 3253 3254 while (node->thunk.thunk_p && !node->thunk.virtual_offset_p) 3255 { 3256 node = node->callees->callee; 3257 if (availability) 3258 { 3259 enum availability a; 3260 a = node->get_availability (); 3261 if (a < *availability) 3262 *availability = a; 3263 } 3264 node = node->ultimate_alias_target (availability); 3265 } 3266 return node; 3267 } 3268 3269 /* When doing LTO, read cgraph_node's body from disk if it is not already 3270 present. */ 3271 3272 bool 3273 cgraph_node::get_untransformed_body (void) 3274 { 3275 lto_file_decl_data *file_data; 3276 const char *data, *name; 3277 size_t len; 3278 tree decl = this->decl; 3279 3280 if (DECL_RESULT (decl)) 3281 return false; 3282 3283 gcc_assert (in_lto_p); 3284 3285 timevar_push (TV_IPA_LTO_GIMPLE_IN); 3286 3287 file_data = lto_file_data; 3288 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)); 3289 3290 /* We may have renamed the declaration, e.g., a static function. */ 3291 name = lto_get_decl_name_mapping (file_data, name); 3292 3293 data = lto_get_section_data (file_data, LTO_section_function_body, 3294 name, &len); 3295 if (!data) 3296 fatal_error (input_location, "%s: section %s is missing", 3297 file_data->file_name, 3298 name); 3299 3300 gcc_assert (DECL_STRUCT_FUNCTION (decl) == NULL); 3301 3302 lto_input_function_body (file_data, this, data); 3303 lto_stats.num_function_bodies++; 3304 lto_free_section_data (file_data, LTO_section_function_body, name, 3305 data, len); 3306 lto_free_function_in_decl_state_for_node (this); 3307 /* Keep lto file data so ipa-inline-analysis knows about cross module 3308 inlining. */ 3309 3310 timevar_pop (TV_IPA_LTO_GIMPLE_IN); 3311 3312 return true; 3313 } 3314 3315 /* Prepare function body. When doing LTO, read cgraph_node's body from disk 3316 if it is not already present. When some IPA transformations are scheduled, 3317 apply them. */ 3318 3319 bool 3320 cgraph_node::get_body (void) 3321 { 3322 bool updated; 3323 3324 updated = get_untransformed_body (); 3325 3326 /* Getting transformed body makes no sense for inline clones; 3327 we should never use this on real clones becuase they are materialized 3328 early. 3329 TODO: Materializing clones here will likely lead to smaller LTRANS 3330 footprint. */ 3331 gcc_assert (!global.inlined_to && !clone_of); 3332 if (ipa_transforms_to_apply.exists ()) 3333 { 3334 opt_pass *saved_current_pass = current_pass; 3335 FILE *saved_dump_file = dump_file; 3336 const char *saved_dump_file_name = dump_file_name; 3337 int saved_dump_flags = dump_flags; 3338 dump_file_name = NULL; 3339 dump_file = NULL; 3340 3341 push_cfun (DECL_STRUCT_FUNCTION (decl)); 3342 execute_all_ipa_transforms (); 3343 cgraph_edge::rebuild_edges (); 3344 free_dominance_info (CDI_DOMINATORS); 3345 free_dominance_info (CDI_POST_DOMINATORS); 3346 pop_cfun (); 3347 updated = true; 3348 3349 current_pass = saved_current_pass; 3350 dump_file = saved_dump_file; 3351 dump_file_name = saved_dump_file_name; 3352 dump_flags = saved_dump_flags; 3353 } 3354 return updated; 3355 } 3356 3357 /* Return the DECL_STRUCT_FUNCTION of the function. */ 3358 3359 struct function * 3360 cgraph_node::get_fun (void) 3361 { 3362 cgraph_node *node = this; 3363 struct function *fun = DECL_STRUCT_FUNCTION (node->decl); 3364 3365 while (!fun && node->clone_of) 3366 { 3367 node = node->clone_of; 3368 fun = DECL_STRUCT_FUNCTION (node->decl); 3369 } 3370 3371 return fun; 3372 } 3373 3374 /* Verify if the type of the argument matches that of the function 3375 declaration. If we cannot verify this or there is a mismatch, 3376 return false. */ 3377 3378 static bool 3379 gimple_check_call_args (gimple stmt, tree fndecl, bool args_count_match) 3380 { 3381 tree parms, p; 3382 unsigned int i, nargs; 3383 3384 /* Calls to internal functions always match their signature. */ 3385 if (gimple_call_internal_p (stmt)) 3386 return true; 3387 3388 nargs = gimple_call_num_args (stmt); 3389 3390 /* Get argument types for verification. */ 3391 if (fndecl) 3392 parms = TYPE_ARG_TYPES (TREE_TYPE (fndecl)); 3393 else 3394 parms = TYPE_ARG_TYPES (gimple_call_fntype (stmt)); 3395 3396 /* Verify if the type of the argument matches that of the function 3397 declaration. If we cannot verify this or there is a mismatch, 3398 return false. */ 3399 if (fndecl && DECL_ARGUMENTS (fndecl)) 3400 { 3401 for (i = 0, p = DECL_ARGUMENTS (fndecl); 3402 i < nargs; 3403 i++, p = DECL_CHAIN (p)) 3404 { 3405 tree arg; 3406 /* We cannot distinguish a varargs function from the case 3407 of excess parameters, still deferring the inlining decision 3408 to the callee is possible. */ 3409 if (!p) 3410 break; 3411 arg = gimple_call_arg (stmt, i); 3412 if (p == error_mark_node 3413 || DECL_ARG_TYPE (p) == error_mark_node 3414 || arg == error_mark_node 3415 || (!types_compatible_p (DECL_ARG_TYPE (p), TREE_TYPE (arg)) 3416 && !fold_convertible_p (DECL_ARG_TYPE (p), arg))) 3417 return false; 3418 } 3419 if (args_count_match && p) 3420 return false; 3421 } 3422 else if (parms) 3423 { 3424 for (i = 0, p = parms; i < nargs; i++, p = TREE_CHAIN (p)) 3425 { 3426 tree arg; 3427 /* If this is a varargs function defer inlining decision 3428 to callee. */ 3429 if (!p) 3430 break; 3431 arg = gimple_call_arg (stmt, i); 3432 if (TREE_VALUE (p) == error_mark_node 3433 || arg == error_mark_node 3434 || TREE_CODE (TREE_VALUE (p)) == VOID_TYPE 3435 || (!types_compatible_p (TREE_VALUE (p), TREE_TYPE (arg)) 3436 && !fold_convertible_p (TREE_VALUE (p), arg))) 3437 return false; 3438 } 3439 } 3440 else 3441 { 3442 if (nargs != 0) 3443 return false; 3444 } 3445 return true; 3446 } 3447 3448 /* Verify if the type of the argument and lhs of CALL_STMT matches 3449 that of the function declaration CALLEE. If ARGS_COUNT_MATCH is 3450 true, the arg count needs to be the same. 3451 If we cannot verify this or there is a mismatch, return false. */ 3452 3453 bool 3454 gimple_check_call_matching_types (gimple call_stmt, tree callee, 3455 bool args_count_match) 3456 { 3457 tree lhs; 3458 3459 if ((DECL_RESULT (callee) 3460 && !DECL_BY_REFERENCE (DECL_RESULT (callee)) 3461 && (lhs = gimple_call_lhs (call_stmt)) != NULL_TREE 3462 && !useless_type_conversion_p (TREE_TYPE (DECL_RESULT (callee)), 3463 TREE_TYPE (lhs)) 3464 && !fold_convertible_p (TREE_TYPE (DECL_RESULT (callee)), lhs)) 3465 || !gimple_check_call_args (call_stmt, callee, args_count_match)) 3466 return false; 3467 return true; 3468 } 3469 3470 /* Reset all state within cgraph.c so that we can rerun the compiler 3471 within the same process. For use by toplev::finalize. */ 3472 3473 void 3474 cgraph_c_finalize (void) 3475 { 3476 symtab = NULL; 3477 3478 x_cgraph_nodes_queue = NULL; 3479 3480 cgraph_fnver_htab = NULL; 3481 version_info_node = NULL; 3482 } 3483 3484 /* A wroker for call_for_symbol_and_aliases. */ 3485 3486 bool 3487 cgraph_node::call_for_symbol_and_aliases_1 (bool (*callback) (cgraph_node *, 3488 void *), 3489 void *data, 3490 bool include_overwritable) 3491 { 3492 ipa_ref *ref; 3493 FOR_EACH_ALIAS (this, ref) 3494 { 3495 cgraph_node *alias = dyn_cast <cgraph_node *> (ref->referring); 3496 if (include_overwritable 3497 || alias->get_availability () > AVAIL_INTERPOSABLE) 3498 if (alias->call_for_symbol_and_aliases (callback, data, 3499 include_overwritable)) 3500 return true; 3501 } 3502 return false; 3503 } 3504 3505 /* Return true if NODE has thunk. */ 3506 3507 bool 3508 cgraph_node::has_thunk_p (cgraph_node *node, void *) 3509 { 3510 for (cgraph_edge *e = node->callers; e; e = e->next_caller) 3511 if (e->caller->thunk.thunk_p) 3512 return true; 3513 return false; 3514 } 3515 3516 #include "gt-cgraph.h" 3517