1 /* Top level of GCC compilers (cc1, cc1plus, etc.) 2 Copyright (C) 1987-2020 Free Software Foundation, Inc. 3 4 This file is part of GCC. 5 6 GCC is free software; you can redistribute it and/or modify it under 7 the terms of the GNU General Public License as published by the Free 8 Software Foundation; either version 3, or (at your option) any later 9 version. 10 11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY 12 WARRANTY; without even the implied warranty of MERCHANTABILITY or 13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 14 for more details. 15 16 You should have received a copy of the GNU General Public License 17 along with GCC; see the file COPYING3. If not see 18 <http://www.gnu.org/licenses/>. */ 19 20 /* This is the top level of cc1/c++. 21 It parses command args, opens files, invokes the various passes 22 in the proper order, and counts the time used by each. 23 Error messages and low-level interface to malloc also handled here. */ 24 25 #include "config.h" 26 #include "system.h" 27 #include "coretypes.h" 28 #include "backend.h" 29 #include "target.h" 30 #include "rtl.h" 31 #include "tree.h" 32 #include "gimple.h" 33 #include "cfghooks.h" 34 #include "df.h" 35 #include "memmodel.h" 36 #include "tm_p.h" 37 #include "ssa.h" 38 #include "emit-rtl.h" 39 #include "cgraph.h" 40 #include "lto-streamer.h" 41 #include "fold-const.h" 42 #include "varasm.h" 43 #include "output.h" 44 #include "graph.h" 45 #include "debug.h" 46 #include "cfgloop.h" 47 #include "value-prof.h" 48 #include "tree-cfg.h" 49 #include "tree-ssa-loop-manip.h" 50 #include "tree-into-ssa.h" 51 #include "tree-dfa.h" 52 #include "tree-ssa.h" 53 #include "tree-pass.h" 54 #include "plugin.h" 55 #include "ipa-utils.h" 56 #include "tree-pretty-print.h" /* for dump_function_header */ 57 #include "context.h" 58 #include "pass_manager.h" 59 #include "cfgrtl.h" 60 #include "tree-ssa-live.h" /* For remove_unused_locals. */ 61 #include "tree-cfgcleanup.h" 62 #include "insn-addr.h" /* for INSN_ADDRESSES_ALLOC. */ 63 #include "diagnostic-core.h" /* for fnotice */ 64 #include "stringpool.h" 65 #include "attribs.h" 66 67 using namespace gcc; 68 69 /* This is used for debugging. It allows the current pass to printed 70 from anywhere in compilation. 71 The variable current_pass is also used for statistics and plugins. */ 72 opt_pass *current_pass; 73 74 /* Most passes are single-instance (within their context) and thus don't 75 need to implement cloning, but passes that support multiple instances 76 *must* provide their own implementation of the clone method. 77 78 Handle this by providing a default implemenation, but make it a fatal 79 error to call it. */ 80 81 opt_pass * 82 opt_pass::clone () 83 { 84 internal_error ("pass %s does not support cloning", name); 85 } 86 87 void 88 opt_pass::set_pass_param (unsigned int, bool) 89 { 90 internal_error ("pass %s needs a %<set_pass_param%> implementation " 91 "to handle the extra argument in %<NEXT_PASS%>", name); 92 } 93 94 bool 95 opt_pass::gate (function *) 96 { 97 return true; 98 } 99 100 unsigned int 101 opt_pass::execute (function *) 102 { 103 return 0; 104 } 105 106 opt_pass::opt_pass (const pass_data &data, context *ctxt) 107 : pass_data (data), 108 sub (NULL), 109 next (NULL), 110 static_pass_number (0), 111 m_ctxt (ctxt) 112 { 113 } 114 115 116 void 117 pass_manager::execute_early_local_passes () 118 { 119 execute_pass_list (cfun, pass_build_ssa_passes_1->sub); 120 execute_pass_list (cfun, pass_local_optimization_passes_1->sub); 121 } 122 123 unsigned int 124 pass_manager::execute_pass_mode_switching () 125 { 126 return pass_mode_switching_1->execute (cfun); 127 } 128 129 130 /* Call from anywhere to find out what pass this is. Useful for 131 printing out debugging information deep inside an service 132 routine. */ 133 void 134 print_current_pass (FILE *file) 135 { 136 if (current_pass) 137 fprintf (file, "current pass = %s (%d)\n", 138 current_pass->name, current_pass->static_pass_number); 139 else 140 fprintf (file, "no current pass.\n"); 141 } 142 143 144 /* Call from the debugger to get the current pass name. */ 145 DEBUG_FUNCTION void 146 debug_pass (void) 147 { 148 print_current_pass (stderr); 149 } 150 151 152 153 /* Global variables used to communicate with passes. */ 154 bool in_gimple_form; 155 156 157 /* This is called from various places for FUNCTION_DECL, VAR_DECL, 158 and TYPE_DECL nodes. 159 160 This does nothing for local (non-static) variables, unless the 161 variable is a register variable with DECL_ASSEMBLER_NAME set. In 162 that case, or if the variable is not an automatic, it sets up the 163 RTL and outputs any assembler code (label definition, storage 164 allocation and initialization). 165 166 DECL is the declaration. TOP_LEVEL is nonzero 167 if this declaration is not within a function. */ 168 169 void 170 rest_of_decl_compilation (tree decl, 171 int top_level, 172 int at_end) 173 { 174 bool finalize = true; 175 176 /* We deferred calling assemble_alias so that we could collect 177 other attributes such as visibility. Emit the alias now. */ 178 if (!in_lto_p) 179 { 180 tree alias; 181 alias = lookup_attribute ("alias", DECL_ATTRIBUTES (decl)); 182 if (alias) 183 { 184 alias = TREE_VALUE (TREE_VALUE (alias)); 185 alias = get_identifier (TREE_STRING_POINTER (alias)); 186 /* A quirk of the initial implementation of aliases required that the 187 user add "extern" to all of them. Which is silly, but now 188 historical. Do note that the symbol is in fact locally defined. */ 189 DECL_EXTERNAL (decl) = 0; 190 TREE_STATIC (decl) = 1; 191 assemble_alias (decl, alias); 192 finalize = false; 193 } 194 } 195 196 /* Can't defer this, because it needs to happen before any 197 later function definitions are processed. */ 198 if (HAS_DECL_ASSEMBLER_NAME_P (decl) 199 && DECL_ASSEMBLER_NAME_SET_P (decl) 200 && DECL_REGISTER (decl)) 201 make_decl_rtl (decl); 202 203 /* Forward declarations for nested functions are not "external", 204 but we need to treat them as if they were. */ 205 if (TREE_STATIC (decl) || DECL_EXTERNAL (decl) 206 || TREE_CODE (decl) == FUNCTION_DECL) 207 { 208 timevar_push (TV_VARCONST); 209 210 /* Don't output anything when a tentative file-scope definition 211 is seen. But at end of compilation, do output code for them. 212 213 We do output all variables and rely on 214 callgraph code to defer them except for forward declarations 215 (see gcc.c-torture/compile/920624-1.c) */ 216 if ((at_end 217 || !DECL_DEFER_OUTPUT (decl) 218 || DECL_INITIAL (decl)) 219 && (!VAR_P (decl) || !DECL_HAS_VALUE_EXPR_P (decl)) 220 && !DECL_EXTERNAL (decl)) 221 { 222 /* When reading LTO unit, we also read varpool, so do not 223 rebuild it. */ 224 if (in_lto_p && !at_end) 225 ; 226 else if (finalize && TREE_CODE (decl) != FUNCTION_DECL) 227 varpool_node::finalize_decl (decl); 228 } 229 230 #ifdef ASM_FINISH_DECLARE_OBJECT 231 if (decl == last_assemble_variable_decl) 232 { 233 ASM_FINISH_DECLARE_OBJECT (asm_out_file, decl, 234 top_level, at_end); 235 } 236 #endif 237 238 /* Now that we have activated any function-specific attributes 239 that might affect function decl, particularly align, relayout it. */ 240 if (TREE_CODE (decl) == FUNCTION_DECL) 241 targetm.target_option.relayout_function (decl); 242 243 timevar_pop (TV_VARCONST); 244 } 245 else if (TREE_CODE (decl) == TYPE_DECL 246 /* Like in rest_of_type_compilation, avoid confusing the debug 247 information machinery when there are errors. */ 248 && !seen_error ()) 249 { 250 timevar_push (TV_SYMOUT); 251 debug_hooks->type_decl (decl, !top_level); 252 timevar_pop (TV_SYMOUT); 253 } 254 255 /* Let cgraph know about the existence of variables. */ 256 if (in_lto_p && !at_end) 257 ; 258 else if (VAR_P (decl) && !DECL_EXTERNAL (decl) 259 && TREE_STATIC (decl)) 260 varpool_node::get_create (decl); 261 262 /* Generate early debug for global variables. Any local variables will 263 be handled by either handling reachable functions from 264 finalize_compilation_unit (and by consequence, locally scoped 265 symbols), or by rest_of_type_compilation below. 266 267 For Go's hijack of the debug_hooks to implement -fdump-go-spec, pick up 268 function prototypes. Go's debug_hooks will not forward them to the 269 wrapped hooks. */ 270 if (!in_lto_p 271 && (TREE_CODE (decl) != FUNCTION_DECL 272 /* This will pick up function prototypes with no bodies, 273 which are not visible in finalize_compilation_unit() 274 while iterating with FOR_EACH_*_FUNCTION through the 275 symbol table. */ 276 || (flag_dump_go_spec != NULL 277 && !DECL_SAVED_TREE (decl) 278 && DECL_STRUCT_FUNCTION (decl) == NULL)) 279 280 /* We need to check both decl_function_context and 281 current_function_decl here to make sure local extern 282 declarations end up with the correct context. 283 284 For local extern declarations, decl_function_context is 285 empty, but current_function_decl is set to the function where 286 the extern was declared . Without the check for 287 !current_function_decl below, the local extern ends up 288 incorrectly with a top-level context. 289 290 For example: 291 292 namespace S 293 { 294 int 295 f() 296 { 297 { 298 int i = 42; 299 { 300 extern int i; // Local extern declaration. 301 return i; 302 } 303 } 304 } 305 } 306 */ 307 && !decl_function_context (decl) 308 && !current_function_decl 309 && DECL_SOURCE_LOCATION (decl) != BUILTINS_LOCATION 310 && (!decl_type_context (decl) 311 /* If we created a varpool node for the decl make sure to 312 call early_global_decl. Otherwise we miss changes 313 introduced by member definitions like 314 struct A { static int staticdatamember; }; 315 int A::staticdatamember; 316 and thus have incomplete early debug and late debug 317 called from varpool node removal fails to handle it 318 properly. */ 319 || (finalize 320 && VAR_P (decl) 321 && TREE_STATIC (decl) && !DECL_EXTERNAL (decl))) 322 /* Avoid confusing the debug information machinery when there are 323 errors. */ 324 && !seen_error ()) 325 (*debug_hooks->early_global_decl) (decl); 326 } 327 328 /* Called after finishing a record, union or enumeral type. */ 329 330 void 331 rest_of_type_compilation (tree type, int toplev) 332 { 333 /* Avoid confusing the debug information machinery when there are 334 errors. */ 335 if (seen_error ()) 336 return; 337 338 timevar_push (TV_SYMOUT); 339 debug_hooks->type_decl (TYPE_STUB_DECL (type), !toplev); 340 timevar_pop (TV_SYMOUT); 341 } 342 343 344 345 void 346 pass_manager:: 347 finish_optimization_passes (void) 348 { 349 int i; 350 struct dump_file_info *dfi; 351 char *name; 352 gcc::dump_manager *dumps = m_ctxt->get_dumps (); 353 354 timevar_push (TV_DUMP); 355 if (profile_arc_flag || flag_test_coverage || flag_branch_probabilities) 356 { 357 dumps->dump_start (pass_profile_1->static_pass_number, NULL); 358 end_branch_prob (); 359 dumps->dump_finish (pass_profile_1->static_pass_number); 360 } 361 362 if (optimize > 0) 363 { 364 dumps->dump_start (pass_combine_1->static_pass_number, NULL); 365 print_combine_total_stats (); 366 dumps->dump_finish (pass_combine_1->static_pass_number); 367 } 368 369 /* Do whatever is necessary to finish printing the graphs. */ 370 for (i = TDI_end; (dfi = dumps->get_dump_file_info (i)) != NULL; ++i) 371 if (dfi->graph_dump_initialized) 372 { 373 name = dumps->get_dump_file_name (dfi); 374 finish_graph_dump_file (name); 375 free (name); 376 } 377 378 timevar_pop (TV_DUMP); 379 } 380 381 static unsigned int 382 execute_build_ssa_passes (void) 383 { 384 /* Once this pass (and its sub-passes) are complete, all functions 385 will be in SSA form. Technically this state change is happening 386 a tad early, since the sub-passes have not yet run, but since 387 none of the sub-passes are IPA passes and do not create new 388 functions, this is ok. We're setting this value for the benefit 389 of IPA passes that follow. */ 390 if (symtab->state < IPA_SSA) 391 symtab->state = IPA_SSA; 392 return 0; 393 } 394 395 namespace { 396 397 const pass_data pass_data_build_ssa_passes = 398 { 399 SIMPLE_IPA_PASS, /* type */ 400 "build_ssa_passes", /* name */ 401 OPTGROUP_NONE, /* optinfo_flags */ 402 TV_EARLY_LOCAL, /* tv_id */ 403 0, /* properties_required */ 404 0, /* properties_provided */ 405 0, /* properties_destroyed */ 406 0, /* todo_flags_start */ 407 /* todo_flags_finish is executed before subpases. For this reason 408 it makes no sense to remove unreachable functions here. */ 409 0, /* todo_flags_finish */ 410 }; 411 412 class pass_build_ssa_passes : public simple_ipa_opt_pass 413 { 414 public: 415 pass_build_ssa_passes (gcc::context *ctxt) 416 : simple_ipa_opt_pass (pass_data_build_ssa_passes, ctxt) 417 {} 418 419 /* opt_pass methods: */ 420 virtual bool gate (function *) 421 { 422 /* Don't bother doing anything if the program has errors. */ 423 return (!seen_error () && !in_lto_p); 424 } 425 426 virtual unsigned int execute (function *) 427 { 428 return execute_build_ssa_passes (); 429 } 430 431 }; // class pass_build_ssa_passes 432 433 const pass_data pass_data_local_optimization_passes = 434 { 435 SIMPLE_IPA_PASS, /* type */ 436 "opt_local_passes", /* name */ 437 OPTGROUP_NONE, /* optinfo_flags */ 438 TV_NONE, /* tv_id */ 439 0, /* properties_required */ 440 0, /* properties_provided */ 441 0, /* properties_destroyed */ 442 0, /* todo_flags_start */ 443 0, /* todo_flags_finish */ 444 }; 445 446 class pass_local_optimization_passes : public simple_ipa_opt_pass 447 { 448 public: 449 pass_local_optimization_passes (gcc::context *ctxt) 450 : simple_ipa_opt_pass (pass_data_local_optimization_passes, ctxt) 451 {} 452 453 /* opt_pass methods: */ 454 virtual bool gate (function *) 455 { 456 /* Don't bother doing anything if the program has errors. */ 457 return (!seen_error () && !in_lto_p); 458 } 459 460 }; // class pass_local_optimization_passes 461 462 const pass_data pass_data_ipa_remove_symbols = 463 { 464 SIMPLE_IPA_PASS, /* type */ 465 "remove_symbols", /* name */ 466 OPTGROUP_NONE, /* optinfo_flags */ 467 TV_NONE, /* tv_id */ 468 0, /* properties_required */ 469 0, /* properties_provided */ 470 0, /* properties_destroyed */ 471 0, /* todo_flags_start */ 472 TODO_remove_functions | TODO_dump_symtab, /* todo_flags_finish */ 473 }; 474 475 class pass_ipa_remove_symbols : public simple_ipa_opt_pass 476 { 477 public: 478 pass_ipa_remove_symbols (gcc::context *ctxt) 479 : simple_ipa_opt_pass (pass_data_ipa_remove_symbols, ctxt) 480 {} 481 482 /* opt_pass methods: */ 483 virtual bool gate (function *) 484 { 485 /* Don't bother doing anything if the program has errors. */ 486 return (!seen_error () && !in_lto_p); 487 } 488 489 }; // class pass_local_optimization_passes 490 491 } // anon namespace 492 493 simple_ipa_opt_pass * 494 make_pass_build_ssa_passes (gcc::context *ctxt) 495 { 496 return new pass_build_ssa_passes (ctxt); 497 } 498 499 simple_ipa_opt_pass * 500 make_pass_local_optimization_passes (gcc::context *ctxt) 501 { 502 return new pass_local_optimization_passes (ctxt); 503 } 504 505 simple_ipa_opt_pass * 506 make_pass_ipa_remove_symbols (gcc::context *ctxt) 507 { 508 return new pass_ipa_remove_symbols (ctxt); 509 } 510 511 namespace { 512 513 const pass_data pass_data_all_early_optimizations = 514 { 515 GIMPLE_PASS, /* type */ 516 "early_optimizations", /* name */ 517 OPTGROUP_NONE, /* optinfo_flags */ 518 TV_NONE, /* tv_id */ 519 0, /* properties_required */ 520 0, /* properties_provided */ 521 0, /* properties_destroyed */ 522 0, /* todo_flags_start */ 523 0, /* todo_flags_finish */ 524 }; 525 526 class pass_all_early_optimizations : public gimple_opt_pass 527 { 528 public: 529 pass_all_early_optimizations (gcc::context *ctxt) 530 : gimple_opt_pass (pass_data_all_early_optimizations, ctxt) 531 {} 532 533 /* opt_pass methods: */ 534 virtual bool gate (function *) 535 { 536 return (optimize >= 1 537 /* Don't bother doing anything if the program has errors. */ 538 && !seen_error ()); 539 } 540 541 }; // class pass_all_early_optimizations 542 543 } // anon namespace 544 545 static gimple_opt_pass * 546 make_pass_all_early_optimizations (gcc::context *ctxt) 547 { 548 return new pass_all_early_optimizations (ctxt); 549 } 550 551 namespace { 552 553 const pass_data pass_data_all_optimizations = 554 { 555 GIMPLE_PASS, /* type */ 556 "*all_optimizations", /* name */ 557 OPTGROUP_NONE, /* optinfo_flags */ 558 TV_OPTIMIZE, /* tv_id */ 559 0, /* properties_required */ 560 0, /* properties_provided */ 561 0, /* properties_destroyed */ 562 0, /* todo_flags_start */ 563 0, /* todo_flags_finish */ 564 }; 565 566 class pass_all_optimizations : public gimple_opt_pass 567 { 568 public: 569 pass_all_optimizations (gcc::context *ctxt) 570 : gimple_opt_pass (pass_data_all_optimizations, ctxt) 571 {} 572 573 /* opt_pass methods: */ 574 virtual bool gate (function *) { return optimize >= 1 && !optimize_debug; } 575 576 }; // class pass_all_optimizations 577 578 } // anon namespace 579 580 static gimple_opt_pass * 581 make_pass_all_optimizations (gcc::context *ctxt) 582 { 583 return new pass_all_optimizations (ctxt); 584 } 585 586 namespace { 587 588 const pass_data pass_data_all_optimizations_g = 589 { 590 GIMPLE_PASS, /* type */ 591 "*all_optimizations_g", /* name */ 592 OPTGROUP_NONE, /* optinfo_flags */ 593 TV_OPTIMIZE, /* tv_id */ 594 0, /* properties_required */ 595 0, /* properties_provided */ 596 0, /* properties_destroyed */ 597 0, /* todo_flags_start */ 598 0, /* todo_flags_finish */ 599 }; 600 601 class pass_all_optimizations_g : public gimple_opt_pass 602 { 603 public: 604 pass_all_optimizations_g (gcc::context *ctxt) 605 : gimple_opt_pass (pass_data_all_optimizations_g, ctxt) 606 {} 607 608 /* opt_pass methods: */ 609 virtual bool gate (function *) { return optimize >= 1 && optimize_debug; } 610 611 }; // class pass_all_optimizations_g 612 613 } // anon namespace 614 615 static gimple_opt_pass * 616 make_pass_all_optimizations_g (gcc::context *ctxt) 617 { 618 return new pass_all_optimizations_g (ctxt); 619 } 620 621 namespace { 622 623 const pass_data pass_data_rest_of_compilation = 624 { 625 RTL_PASS, /* type */ 626 "*rest_of_compilation", /* name */ 627 OPTGROUP_NONE, /* optinfo_flags */ 628 TV_REST_OF_COMPILATION, /* tv_id */ 629 PROP_rtl, /* properties_required */ 630 0, /* properties_provided */ 631 0, /* properties_destroyed */ 632 0, /* todo_flags_start */ 633 0, /* todo_flags_finish */ 634 }; 635 636 class pass_rest_of_compilation : public rtl_opt_pass 637 { 638 public: 639 pass_rest_of_compilation (gcc::context *ctxt) 640 : rtl_opt_pass (pass_data_rest_of_compilation, ctxt) 641 {} 642 643 /* opt_pass methods: */ 644 virtual bool gate (function *) 645 { 646 /* Early return if there were errors. We can run afoul of our 647 consistency checks, and there's not really much point in fixing them. */ 648 return !(rtl_dump_and_exit || flag_syntax_only || seen_error ()); 649 } 650 651 }; // class pass_rest_of_compilation 652 653 } // anon namespace 654 655 static rtl_opt_pass * 656 make_pass_rest_of_compilation (gcc::context *ctxt) 657 { 658 return new pass_rest_of_compilation (ctxt); 659 } 660 661 namespace { 662 663 const pass_data pass_data_postreload = 664 { 665 RTL_PASS, /* type */ 666 "*all-postreload", /* name */ 667 OPTGROUP_NONE, /* optinfo_flags */ 668 TV_POSTRELOAD, /* tv_id */ 669 PROP_rtl, /* properties_required */ 670 0, /* properties_provided */ 671 0, /* properties_destroyed */ 672 0, /* todo_flags_start */ 673 0, /* todo_flags_finish */ 674 }; 675 676 class pass_postreload : public rtl_opt_pass 677 { 678 public: 679 pass_postreload (gcc::context *ctxt) 680 : rtl_opt_pass (pass_data_postreload, ctxt) 681 {} 682 683 /* opt_pass methods: */ 684 virtual bool gate (function *) { return reload_completed; } 685 686 }; // class pass_postreload 687 688 } // anon namespace 689 690 static rtl_opt_pass * 691 make_pass_postreload (gcc::context *ctxt) 692 { 693 return new pass_postreload (ctxt); 694 } 695 696 namespace { 697 698 const pass_data pass_data_late_compilation = 699 { 700 RTL_PASS, /* type */ 701 "*all-late_compilation", /* name */ 702 OPTGROUP_NONE, /* optinfo_flags */ 703 TV_LATE_COMPILATION, /* tv_id */ 704 PROP_rtl, /* properties_required */ 705 0, /* properties_provided */ 706 0, /* properties_destroyed */ 707 0, /* todo_flags_start */ 708 0, /* todo_flags_finish */ 709 }; 710 711 class pass_late_compilation : public rtl_opt_pass 712 { 713 public: 714 pass_late_compilation (gcc::context *ctxt) 715 : rtl_opt_pass (pass_data_late_compilation, ctxt) 716 {} 717 718 /* opt_pass methods: */ 719 virtual bool gate (function *) 720 { 721 return reload_completed || targetm.no_register_allocation; 722 } 723 724 }; // class pass_late_compilation 725 726 } // anon namespace 727 728 static rtl_opt_pass * 729 make_pass_late_compilation (gcc::context *ctxt) 730 { 731 return new pass_late_compilation (ctxt); 732 } 733 734 735 736 /* Set the static pass number of pass PASS to ID and record that 737 in the mapping from static pass number to pass. */ 738 739 void 740 pass_manager:: 741 set_pass_for_id (int id, opt_pass *pass) 742 { 743 pass->static_pass_number = id; 744 if (passes_by_id_size <= id) 745 { 746 passes_by_id = XRESIZEVEC (opt_pass *, passes_by_id, id + 1); 747 memset (passes_by_id + passes_by_id_size, 0, 748 (id + 1 - passes_by_id_size) * sizeof (void *)); 749 passes_by_id_size = id + 1; 750 } 751 passes_by_id[id] = pass; 752 } 753 754 /* Return the pass with the static pass number ID. */ 755 756 opt_pass * 757 pass_manager::get_pass_for_id (int id) const 758 { 759 if (id >= passes_by_id_size) 760 return NULL; 761 return passes_by_id[id]; 762 } 763 764 /* Iterate over the pass tree allocating dump file numbers. We want 765 to do this depth first, and independent of whether the pass is 766 enabled or not. */ 767 768 void 769 register_one_dump_file (opt_pass *pass) 770 { 771 g->get_passes ()->register_one_dump_file (pass); 772 } 773 774 void 775 pass_manager::register_one_dump_file (opt_pass *pass) 776 { 777 char *dot_name, *flag_name, *glob_name; 778 const char *name, *full_name, *prefix; 779 780 /* Buffer big enough to format a 32-bit UINT_MAX into. */ 781 char num[11]; 782 dump_kind dkind; 783 int id; 784 optgroup_flags_t optgroup_flags = OPTGROUP_NONE; 785 gcc::dump_manager *dumps = m_ctxt->get_dumps (); 786 787 /* See below in next_pass_1. */ 788 num[0] = '\0'; 789 if (pass->static_pass_number != -1) 790 sprintf (num, "%u", ((int) pass->static_pass_number < 0 791 ? 1 : pass->static_pass_number)); 792 793 /* The name is both used to identify the pass for the purposes of plugins, 794 and to specify dump file name and option. 795 The latter two might want something short which is not quite unique; for 796 that reason, we may have a disambiguating prefix, followed by a space 797 to mark the start of the following dump file name / option string. */ 798 name = strchr (pass->name, ' '); 799 name = name ? name + 1 : pass->name; 800 dot_name = concat (".", name, num, NULL); 801 if (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS) 802 { 803 prefix = "ipa-"; 804 dkind = DK_ipa; 805 optgroup_flags |= OPTGROUP_IPA; 806 } 807 else if (pass->type == GIMPLE_PASS) 808 { 809 prefix = "tree-"; 810 dkind = DK_tree; 811 } 812 else 813 { 814 prefix = "rtl-"; 815 dkind = DK_rtl; 816 } 817 818 flag_name = concat (prefix, name, num, NULL); 819 glob_name = concat (prefix, name, NULL); 820 optgroup_flags |= pass->optinfo_flags; 821 /* For any passes that do not have an optgroup set, and which are not 822 IPA passes setup above, set the optgroup to OPTGROUP_OTHER so that 823 any dump messages are emitted properly under -fopt-info(-optall). */ 824 if (optgroup_flags == OPTGROUP_NONE) 825 optgroup_flags = OPTGROUP_OTHER; 826 id = dumps->dump_register (dot_name, flag_name, glob_name, dkind, 827 optgroup_flags, 828 true); 829 set_pass_for_id (id, pass); 830 full_name = concat (prefix, pass->name, num, NULL); 831 register_pass_name (pass, full_name); 832 free (CONST_CAST (char *, full_name)); 833 } 834 835 /* Register the dump files for the pass_manager starting at PASS. */ 836 837 void 838 pass_manager::register_dump_files (opt_pass *pass) 839 { 840 do 841 { 842 if (pass->name && pass->name[0] != '*') 843 register_one_dump_file (pass); 844 845 if (pass->sub) 846 register_dump_files (pass->sub); 847 848 pass = pass->next; 849 } 850 while (pass); 851 } 852 853 /* Register PASS with NAME. */ 854 855 void 856 pass_manager::register_pass_name (opt_pass *pass, const char *name) 857 { 858 if (!m_name_to_pass_map) 859 m_name_to_pass_map = new hash_map<nofree_string_hash, opt_pass *> (256); 860 861 if (m_name_to_pass_map->get (name)) 862 return; /* Ignore plugin passes. */ 863 864 const char *unique_name = xstrdup (name); 865 m_name_to_pass_map->put (unique_name, pass); 866 } 867 868 /* Map from pass id to canonicalized pass name. */ 869 870 typedef const char *char_ptr; 871 static vec<char_ptr> pass_tab; 872 873 /* Callback function for traversing NAME_TO_PASS_MAP. */ 874 875 bool 876 passes_pass_traverse (const char *const &name, opt_pass *const &pass, void *) 877 { 878 gcc_assert (pass->static_pass_number > 0); 879 gcc_assert (pass_tab.exists ()); 880 881 pass_tab[pass->static_pass_number] = name; 882 883 return 1; 884 } 885 886 /* The function traverses NAME_TO_PASS_MAP and creates a pass info 887 table for dumping purpose. */ 888 889 void 890 pass_manager::create_pass_tab (void) const 891 { 892 if (!flag_dump_passes) 893 return; 894 895 pass_tab.safe_grow_cleared (passes_by_id_size + 1); 896 m_name_to_pass_map->traverse <void *, passes_pass_traverse> (NULL); 897 } 898 899 static bool override_gate_status (opt_pass *, tree, bool); 900 901 /* Dump the instantiated name for PASS. IS_ON indicates if PASS 902 is turned on or not. */ 903 904 static void 905 dump_one_pass (opt_pass *pass, int pass_indent) 906 { 907 int indent = 3 * pass_indent; 908 const char *pn; 909 bool is_on, is_really_on; 910 911 is_on = pass->gate (cfun); 912 is_really_on = override_gate_status (pass, current_function_decl, is_on); 913 914 if (pass->static_pass_number <= 0) 915 pn = pass->name; 916 else 917 pn = pass_tab[pass->static_pass_number]; 918 919 fprintf (stderr, "%*s%-40s%*s:%s%s\n", indent, " ", pn, 920 (15 - indent < 0 ? 0 : 15 - indent), " ", 921 is_on ? " ON" : " OFF", 922 ((!is_on) == (!is_really_on) ? "" 923 : (is_really_on ? " (FORCED_ON)" : " (FORCED_OFF)"))); 924 } 925 926 /* Dump pass list PASS with indentation INDENT. */ 927 928 static void 929 dump_pass_list (opt_pass *pass, int indent) 930 { 931 do 932 { 933 dump_one_pass (pass, indent); 934 if (pass->sub) 935 dump_pass_list (pass->sub, indent + 1); 936 pass = pass->next; 937 } 938 while (pass); 939 } 940 941 /* Dump all optimization passes. */ 942 943 void 944 dump_passes (void) 945 { 946 g->get_passes ()->dump_passes (); 947 } 948 949 void 950 pass_manager::dump_passes () const 951 { 952 push_dummy_function (true); 953 cgraph_node *node = cgraph_node::get_create (current_function_decl); 954 955 create_pass_tab (); 956 957 dump_pass_list (all_lowering_passes, 1); 958 dump_pass_list (all_small_ipa_passes, 1); 959 dump_pass_list (all_regular_ipa_passes, 1); 960 dump_pass_list (all_late_ipa_passes, 1); 961 dump_pass_list (all_passes, 1); 962 963 node->remove (); 964 pop_dummy_function (); 965 } 966 967 /* Returns the pass with NAME. */ 968 969 opt_pass * 970 pass_manager::get_pass_by_name (const char *name) 971 { 972 opt_pass **p = m_name_to_pass_map->get (name); 973 if (p) 974 return *p; 975 976 return NULL; 977 } 978 979 980 /* Range [start, last]. */ 981 982 struct uid_range 983 { 984 unsigned int start; 985 unsigned int last; 986 const char *assem_name; 987 struct uid_range *next; 988 }; 989 990 typedef struct uid_range *uid_range_p; 991 992 993 static vec<uid_range_p> enabled_pass_uid_range_tab; 994 static vec<uid_range_p> disabled_pass_uid_range_tab; 995 996 997 /* Parse option string for -fdisable- and -fenable- 998 The syntax of the options: 999 1000 -fenable-<pass_name> 1001 -fdisable-<pass_name> 1002 1003 -fenable-<pass_name>=s1:e1,s2:e2,... 1004 -fdisable-<pass_name>=s1:e1,s2:e2,... 1005 */ 1006 1007 static void 1008 enable_disable_pass (const char *arg, bool is_enable) 1009 { 1010 opt_pass *pass; 1011 char *range_str, *phase_name; 1012 char *argstr = xstrdup (arg); 1013 vec<uid_range_p> *tab = 0; 1014 1015 range_str = strchr (argstr,'='); 1016 if (range_str) 1017 { 1018 *range_str = '\0'; 1019 range_str++; 1020 } 1021 1022 phase_name = argstr; 1023 if (!*phase_name) 1024 { 1025 if (is_enable) 1026 error ("unrecognized option %<-fenable%>"); 1027 else 1028 error ("unrecognized option %<-fdisable%>"); 1029 free (argstr); 1030 return; 1031 } 1032 pass = g->get_passes ()->get_pass_by_name (phase_name); 1033 if (!pass || pass->static_pass_number == -1) 1034 { 1035 if (is_enable) 1036 error ("unknown pass %s specified in %<-fenable%>", phase_name); 1037 else 1038 error ("unknown pass %s specified in %<-fdisable%>", phase_name); 1039 free (argstr); 1040 return; 1041 } 1042 1043 if (is_enable) 1044 tab = &enabled_pass_uid_range_tab; 1045 else 1046 tab = &disabled_pass_uid_range_tab; 1047 1048 if ((unsigned) pass->static_pass_number >= tab->length ()) 1049 tab->safe_grow_cleared (pass->static_pass_number + 1); 1050 1051 if (!range_str) 1052 { 1053 uid_range_p slot; 1054 uid_range_p new_range = XCNEW (struct uid_range); 1055 1056 new_range->start = 0; 1057 new_range->last = (unsigned)-1; 1058 1059 slot = (*tab)[pass->static_pass_number]; 1060 new_range->next = slot; 1061 (*tab)[pass->static_pass_number] = new_range; 1062 if (is_enable) 1063 inform (UNKNOWN_LOCATION, "enable pass %s for functions in the range " 1064 "of [%u, %u]", phase_name, new_range->start, new_range->last); 1065 else 1066 inform (UNKNOWN_LOCATION, "disable pass %s for functions in the range " 1067 "of [%u, %u]", phase_name, new_range->start, new_range->last); 1068 } 1069 else 1070 { 1071 char *next_range = NULL; 1072 char *one_range = range_str; 1073 char *end_val = NULL; 1074 1075 do 1076 { 1077 uid_range_p slot; 1078 uid_range_p new_range; 1079 char *invalid = NULL; 1080 long start; 1081 char *func_name = NULL; 1082 1083 next_range = strchr (one_range, ','); 1084 if (next_range) 1085 { 1086 *next_range = '\0'; 1087 next_range++; 1088 } 1089 1090 end_val = strchr (one_range, ':'); 1091 if (end_val) 1092 { 1093 *end_val = '\0'; 1094 end_val++; 1095 } 1096 start = strtol (one_range, &invalid, 10); 1097 if (*invalid || start < 0) 1098 { 1099 if (end_val || (one_range[0] >= '0' 1100 && one_range[0] <= '9')) 1101 { 1102 error ("Invalid range %s in option %s", 1103 one_range, 1104 is_enable ? "-fenable" : "-fdisable"); 1105 free (argstr); 1106 return; 1107 } 1108 func_name = one_range; 1109 } 1110 if (!end_val) 1111 { 1112 new_range = XCNEW (struct uid_range); 1113 if (!func_name) 1114 { 1115 new_range->start = (unsigned) start; 1116 new_range->last = (unsigned) start; 1117 } 1118 else 1119 { 1120 new_range->start = (unsigned) -1; 1121 new_range->last = (unsigned) -1; 1122 new_range->assem_name = xstrdup (func_name); 1123 } 1124 } 1125 else 1126 { 1127 long last = strtol (end_val, &invalid, 10); 1128 if (*invalid || last < start) 1129 { 1130 error ("Invalid range %s in option %s", 1131 end_val, 1132 is_enable ? "-fenable" : "-fdisable"); 1133 free (argstr); 1134 return; 1135 } 1136 new_range = XCNEW (struct uid_range); 1137 new_range->start = (unsigned) start; 1138 new_range->last = (unsigned) last; 1139 } 1140 1141 slot = (*tab)[pass->static_pass_number]; 1142 new_range->next = slot; 1143 (*tab)[pass->static_pass_number] = new_range; 1144 if (is_enable) 1145 { 1146 if (new_range->assem_name) 1147 inform (UNKNOWN_LOCATION, 1148 "enable pass %s for function %s", 1149 phase_name, new_range->assem_name); 1150 else 1151 inform (UNKNOWN_LOCATION, 1152 "enable pass %s for functions in the range of [%u, %u]", 1153 phase_name, new_range->start, new_range->last); 1154 } 1155 else 1156 { 1157 if (new_range->assem_name) 1158 inform (UNKNOWN_LOCATION, 1159 "disable pass %s for function %s", 1160 phase_name, new_range->assem_name); 1161 else 1162 inform (UNKNOWN_LOCATION, 1163 "disable pass %s for functions in the range of [%u, %u]", 1164 phase_name, new_range->start, new_range->last); 1165 } 1166 1167 one_range = next_range; 1168 } while (next_range); 1169 } 1170 1171 free (argstr); 1172 } 1173 1174 /* Enable pass specified by ARG. */ 1175 1176 void 1177 enable_pass (const char *arg) 1178 { 1179 enable_disable_pass (arg, true); 1180 } 1181 1182 /* Disable pass specified by ARG. */ 1183 1184 void 1185 disable_pass (const char *arg) 1186 { 1187 enable_disable_pass (arg, false); 1188 } 1189 1190 /* Returns true if PASS is explicitly enabled/disabled for FUNC. */ 1191 1192 static bool 1193 is_pass_explicitly_enabled_or_disabled (opt_pass *pass, 1194 tree func, 1195 vec<uid_range_p> tab) 1196 { 1197 uid_range_p slot, range; 1198 int cgraph_uid; 1199 const char *aname = NULL; 1200 1201 if (!tab.exists () 1202 || (unsigned) pass->static_pass_number >= tab.length () 1203 || pass->static_pass_number == -1) 1204 return false; 1205 1206 slot = tab[pass->static_pass_number]; 1207 if (!slot) 1208 return false; 1209 1210 cgraph_uid = func ? cgraph_node::get (func)->get_uid () : 0; 1211 if (func && DECL_ASSEMBLER_NAME_SET_P (func)) 1212 aname = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (func)); 1213 1214 range = slot; 1215 while (range) 1216 { 1217 if ((unsigned) cgraph_uid >= range->start 1218 && (unsigned) cgraph_uid <= range->last) 1219 return true; 1220 if (range->assem_name && aname 1221 && !strcmp (range->assem_name, aname)) 1222 return true; 1223 range = range->next; 1224 } 1225 1226 return false; 1227 } 1228 1229 1230 /* Update static_pass_number for passes (and the flag 1231 TODO_mark_first_instance). 1232 1233 Passes are constructed with static_pass_number preinitialized to 0 1234 1235 This field is used in two different ways: initially as instance numbers 1236 of their kind, and then as ids within the entire pass manager. 1237 1238 Within pass_manager::pass_manager: 1239 1240 * In add_pass_instance(), as called by next_pass_1 in 1241 NEXT_PASS in init_optimization_passes 1242 1243 * When the initial instance of a pass within a pass manager is seen, 1244 it is flagged, and its static_pass_number is set to -1 1245 1246 * On subsequent times that it is seen, the static pass number 1247 is decremented each time, so that if there are e.g. 4 dups, 1248 they have static_pass_number -4, 2, 3, 4 respectively (note 1249 how the initial one is negative and gives the count); these 1250 can be thought of as instance numbers of the specific pass 1251 1252 * Within the register_dump_files () traversal, set_pass_for_id() 1253 is called on each pass, using these instance numbers to create 1254 dumpfile switches, and then overwriting them with a pass id, 1255 which are global to the whole pass manager (based on 1256 (TDI_end + current value of extra_dump_files_in_use) ) */ 1257 1258 static void 1259 add_pass_instance (opt_pass *new_pass, bool track_duplicates, 1260 opt_pass *initial_pass) 1261 { 1262 /* Are we dealing with the first pass of its kind, or a clone? */ 1263 if (new_pass != initial_pass) 1264 { 1265 /* We're dealing with a clone. */ 1266 new_pass->todo_flags_start &= ~TODO_mark_first_instance; 1267 1268 /* Indicate to register_dump_files that this pass has duplicates, 1269 and so it should rename the dump file. The first instance will 1270 be -1, and be number of duplicates = -static_pass_number - 1. 1271 Subsequent instances will be > 0 and just the duplicate number. */ 1272 if ((new_pass->name && new_pass->name[0] != '*') || track_duplicates) 1273 { 1274 initial_pass->static_pass_number -= 1; 1275 new_pass->static_pass_number = -initial_pass->static_pass_number; 1276 } 1277 } 1278 else 1279 { 1280 /* We're dealing with the first pass of its kind. */ 1281 new_pass->todo_flags_start |= TODO_mark_first_instance; 1282 new_pass->static_pass_number = -1; 1283 1284 invoke_plugin_callbacks (PLUGIN_NEW_PASS, new_pass); 1285 } 1286 } 1287 1288 /* Add a pass to the pass list. Duplicate the pass if it's already 1289 in the list. */ 1290 1291 static opt_pass ** 1292 next_pass_1 (opt_pass **list, opt_pass *pass, opt_pass *initial_pass) 1293 { 1294 /* Every pass should have a name so that plugins can refer to them. */ 1295 gcc_assert (pass->name != NULL); 1296 1297 add_pass_instance (pass, false, initial_pass); 1298 *list = pass; 1299 1300 return &(*list)->next; 1301 } 1302 1303 /* List node for an inserted pass instance. We need to keep track of all 1304 the newly-added pass instances (with 'added_pass_nodes' defined below) 1305 so that we can register their dump files after pass-positioning is finished. 1306 Registering dumping files needs to be post-processed or the 1307 static_pass_number of the opt_pass object would be modified and mess up 1308 the dump file names of future pass instances to be added. */ 1309 1310 struct pass_list_node 1311 { 1312 opt_pass *pass; 1313 struct pass_list_node *next; 1314 }; 1315 1316 static struct pass_list_node *added_pass_nodes = NULL; 1317 static struct pass_list_node *prev_added_pass_node; 1318 1319 /* Insert the pass at the proper position. Return true if the pass 1320 is successfully added. 1321 1322 NEW_PASS_INFO - new pass to be inserted 1323 PASS_LIST - root of the pass list to insert the new pass to */ 1324 1325 static bool 1326 position_pass (struct register_pass_info *new_pass_info, opt_pass **pass_list) 1327 { 1328 opt_pass *pass = *pass_list, *prev_pass = NULL; 1329 bool success = false; 1330 1331 for ( ; pass; prev_pass = pass, pass = pass->next) 1332 { 1333 /* Check if the current pass is of the same type as the new pass and 1334 matches the name and the instance number of the reference pass. */ 1335 if (pass->type == new_pass_info->pass->type 1336 && pass->name 1337 && !strcmp (pass->name, new_pass_info->reference_pass_name) 1338 && ((new_pass_info->ref_pass_instance_number == 0) 1339 || (new_pass_info->ref_pass_instance_number == 1340 pass->static_pass_number) 1341 || (new_pass_info->ref_pass_instance_number == 1 1342 && pass->todo_flags_start & TODO_mark_first_instance))) 1343 { 1344 opt_pass *new_pass; 1345 struct pass_list_node *new_pass_node; 1346 1347 if (new_pass_info->ref_pass_instance_number == 0) 1348 { 1349 new_pass = new_pass_info->pass->clone (); 1350 add_pass_instance (new_pass, true, new_pass_info->pass); 1351 } 1352 else 1353 { 1354 new_pass = new_pass_info->pass; 1355 add_pass_instance (new_pass, true, new_pass); 1356 } 1357 1358 /* Insert the new pass instance based on the positioning op. */ 1359 switch (new_pass_info->pos_op) 1360 { 1361 case PASS_POS_INSERT_AFTER: 1362 new_pass->next = pass->next; 1363 pass->next = new_pass; 1364 1365 /* Skip newly inserted pass to avoid repeated 1366 insertions in the case where the new pass and the 1367 existing one have the same name. */ 1368 pass = new_pass; 1369 break; 1370 case PASS_POS_INSERT_BEFORE: 1371 new_pass->next = pass; 1372 if (prev_pass) 1373 prev_pass->next = new_pass; 1374 else 1375 *pass_list = new_pass; 1376 break; 1377 case PASS_POS_REPLACE: 1378 new_pass->next = pass->next; 1379 if (prev_pass) 1380 prev_pass->next = new_pass; 1381 else 1382 *pass_list = new_pass; 1383 new_pass->sub = pass->sub; 1384 new_pass->tv_id = pass->tv_id; 1385 pass = new_pass; 1386 break; 1387 default: 1388 error ("invalid pass positioning operation"); 1389 return false; 1390 } 1391 1392 /* Save the newly added pass (instance) in the added_pass_nodes 1393 list so that we can register its dump file later. Note that 1394 we cannot register the dump file now because doing so will modify 1395 the static_pass_number of the opt_pass object and therefore 1396 mess up the dump file name of future instances. */ 1397 new_pass_node = XCNEW (struct pass_list_node); 1398 new_pass_node->pass = new_pass; 1399 if (!added_pass_nodes) 1400 added_pass_nodes = new_pass_node; 1401 else 1402 prev_added_pass_node->next = new_pass_node; 1403 prev_added_pass_node = new_pass_node; 1404 1405 success = true; 1406 } 1407 1408 if (pass->sub && position_pass (new_pass_info, &pass->sub)) 1409 success = true; 1410 } 1411 1412 return success; 1413 } 1414 1415 /* Hooks a new pass into the pass lists. 1416 1417 PASS_INFO - pass information that specifies the opt_pass object, 1418 reference pass, instance number, and how to position 1419 the pass */ 1420 1421 void 1422 register_pass (struct register_pass_info *pass_info) 1423 { 1424 g->get_passes ()->register_pass (pass_info); 1425 } 1426 1427 void 1428 register_pass (opt_pass* pass, pass_positioning_ops pos, 1429 const char* ref_pass_name, int ref_pass_inst_number) 1430 { 1431 register_pass_info i; 1432 i.pass = pass; 1433 i.reference_pass_name = ref_pass_name; 1434 i.ref_pass_instance_number = ref_pass_inst_number; 1435 i.pos_op = pos; 1436 1437 g->get_passes ()->register_pass (&i); 1438 } 1439 1440 void 1441 pass_manager::register_pass (struct register_pass_info *pass_info) 1442 { 1443 bool all_instances, success; 1444 1445 /* The checks below could fail in buggy plugins. Existing GCC 1446 passes should never fail these checks, so we mention plugin in 1447 the messages. */ 1448 if (!pass_info->pass) 1449 fatal_error (input_location, "plugin cannot register a missing pass"); 1450 1451 if (!pass_info->pass->name) 1452 fatal_error (input_location, "plugin cannot register an unnamed pass"); 1453 1454 if (!pass_info->reference_pass_name) 1455 fatal_error 1456 (input_location, 1457 "plugin cannot register pass %qs without reference pass name", 1458 pass_info->pass->name); 1459 1460 /* Try to insert the new pass to the pass lists. We need to check 1461 all five lists as the reference pass could be in one (or all) of 1462 them. */ 1463 all_instances = pass_info->ref_pass_instance_number == 0; 1464 success = position_pass (pass_info, &all_lowering_passes); 1465 if (!success || all_instances) 1466 success |= position_pass (pass_info, &all_small_ipa_passes); 1467 if (!success || all_instances) 1468 success |= position_pass (pass_info, &all_regular_ipa_passes); 1469 if (!success || all_instances) 1470 success |= position_pass (pass_info, &all_late_ipa_passes); 1471 if (!success || all_instances) 1472 success |= position_pass (pass_info, &all_passes); 1473 if (!success) 1474 fatal_error 1475 (input_location, 1476 "pass %qs not found but is referenced by new pass %qs", 1477 pass_info->reference_pass_name, pass_info->pass->name); 1478 1479 /* OK, we have successfully inserted the new pass. We need to register 1480 the dump files for the newly added pass and its duplicates (if any). 1481 While doing so, we also delete the pass_list_node 1482 objects created during pass positioning. */ 1483 gcc::dump_manager *dumps = m_ctxt->get_dumps (); 1484 while (added_pass_nodes) 1485 { 1486 struct pass_list_node *next_node = added_pass_nodes->next; 1487 1488 /* Handle -fdump-* and -fopt-info. */ 1489 dumps->register_pass (added_pass_nodes->pass); 1490 1491 XDELETE (added_pass_nodes); 1492 added_pass_nodes = next_node; 1493 } 1494 } 1495 1496 /* Construct the pass tree. The sequencing of passes is driven by 1497 the cgraph routines: 1498 1499 finalize_compilation_unit () 1500 for each node N in the cgraph 1501 cgraph_analyze_function (N) 1502 cgraph_lower_function (N) -> all_lowering_passes 1503 1504 If we are optimizing, compile is then invoked: 1505 1506 compile () 1507 ipa_passes () -> all_small_ipa_passes 1508 -> Analysis of all_regular_ipa_passes 1509 * possible LTO streaming at copmilation time * 1510 -> Execution of all_regular_ipa_passes 1511 * possible LTO streaming at link time * 1512 -> all_late_ipa_passes 1513 expand_all_functions () 1514 for each node N in the cgraph 1515 expand_function (N) -> Transformation of all_regular_ipa_passes 1516 -> all_passes 1517 */ 1518 1519 pass_manager::pass_manager (context *ctxt) 1520 : all_passes (NULL), all_small_ipa_passes (NULL), all_lowering_passes (NULL), 1521 all_regular_ipa_passes (NULL), 1522 all_late_ipa_passes (NULL), passes_by_id (NULL), passes_by_id_size (0), 1523 m_ctxt (ctxt), m_name_to_pass_map (NULL) 1524 { 1525 opt_pass **p; 1526 1527 /* Zero-initialize pass members. */ 1528 #define INSERT_PASSES_AFTER(PASS) 1529 #define PUSH_INSERT_PASSES_WITHIN(PASS) 1530 #define POP_INSERT_PASSES() 1531 #define NEXT_PASS(PASS, NUM) PASS ## _ ## NUM = NULL 1532 #define NEXT_PASS_WITH_ARG(PASS, NUM, ARG) NEXT_PASS (PASS, NUM) 1533 #define TERMINATE_PASS_LIST(PASS) 1534 #include "pass-instances.def" 1535 #undef INSERT_PASSES_AFTER 1536 #undef PUSH_INSERT_PASSES_WITHIN 1537 #undef POP_INSERT_PASSES 1538 #undef NEXT_PASS 1539 #undef NEXT_PASS_WITH_ARG 1540 #undef TERMINATE_PASS_LIST 1541 1542 /* Initialize the pass_lists array. */ 1543 #define DEF_PASS_LIST(LIST) pass_lists[PASS_LIST_NO_##LIST] = &LIST; 1544 GCC_PASS_LISTS 1545 #undef DEF_PASS_LIST 1546 1547 /* Build the tree of passes. */ 1548 1549 #define INSERT_PASSES_AFTER(PASS) \ 1550 { \ 1551 opt_pass **p_start; \ 1552 p_start = p = &(PASS); 1553 1554 #define TERMINATE_PASS_LIST(PASS) \ 1555 gcc_assert (p_start == &PASS); \ 1556 *p = NULL; \ 1557 } 1558 1559 #define PUSH_INSERT_PASSES_WITHIN(PASS) \ 1560 { \ 1561 opt_pass **p = &(PASS ## _1)->sub; 1562 1563 #define POP_INSERT_PASSES() \ 1564 } 1565 1566 #define NEXT_PASS(PASS, NUM) \ 1567 do { \ 1568 gcc_assert (PASS ## _ ## NUM == NULL); \ 1569 if ((NUM) == 1) \ 1570 PASS ## _1 = make_##PASS (m_ctxt); \ 1571 else \ 1572 { \ 1573 gcc_assert (PASS ## _1); \ 1574 PASS ## _ ## NUM = PASS ## _1->clone (); \ 1575 } \ 1576 p = next_pass_1 (p, PASS ## _ ## NUM, PASS ## _1); \ 1577 } while (0) 1578 1579 #define NEXT_PASS_WITH_ARG(PASS, NUM, ARG) \ 1580 do { \ 1581 NEXT_PASS (PASS, NUM); \ 1582 PASS ## _ ## NUM->set_pass_param (0, ARG); \ 1583 } while (0) 1584 1585 #include "pass-instances.def" 1586 1587 #undef INSERT_PASSES_AFTER 1588 #undef PUSH_INSERT_PASSES_WITHIN 1589 #undef POP_INSERT_PASSES 1590 #undef NEXT_PASS 1591 #undef NEXT_PASS_WITH_ARG 1592 #undef TERMINATE_PASS_LIST 1593 1594 /* Register the passes with the tree dump code. */ 1595 register_dump_files (all_lowering_passes); 1596 register_dump_files (all_small_ipa_passes); 1597 register_dump_files (all_regular_ipa_passes); 1598 register_dump_files (all_late_ipa_passes); 1599 register_dump_files (all_passes); 1600 } 1601 1602 static void 1603 delete_pass_tree (opt_pass *pass) 1604 { 1605 while (pass) 1606 { 1607 /* Recurse into child passes. */ 1608 delete_pass_tree (pass->sub); 1609 1610 opt_pass *next = pass->next; 1611 1612 /* Delete this pass. */ 1613 delete pass; 1614 1615 /* Iterate onto sibling passes. */ 1616 pass = next; 1617 } 1618 } 1619 1620 pass_manager::~pass_manager () 1621 { 1622 XDELETEVEC (passes_by_id); 1623 1624 /* Call delete_pass_tree on each of the pass_lists. */ 1625 #define DEF_PASS_LIST(LIST) \ 1626 delete_pass_tree (*pass_lists[PASS_LIST_NO_##LIST]); 1627 GCC_PASS_LISTS 1628 #undef DEF_PASS_LIST 1629 1630 } 1631 1632 /* If we are in IPA mode (i.e., current_function_decl is NULL), call 1633 function CALLBACK for every function in the call graph. Otherwise, 1634 call CALLBACK on the current function. */ 1635 1636 static void 1637 do_per_function (void (*callback) (function *, void *data), void *data) 1638 { 1639 if (current_function_decl) 1640 callback (cfun, data); 1641 else 1642 { 1643 struct cgraph_node *node; 1644 FOR_EACH_DEFINED_FUNCTION (node) 1645 if (node->analyzed && (gimple_has_body_p (node->decl) && !in_lto_p) 1646 && (!node->clone_of || node->decl != node->clone_of->decl)) 1647 callback (DECL_STRUCT_FUNCTION (node->decl), data); 1648 } 1649 } 1650 1651 /* Hook called when NODE is removed and therefore should be 1652 excluded from order vector. DATA is a hash set with removed nodes. */ 1653 1654 static void 1655 remove_cgraph_node_from_order (cgraph_node *node, void *data) 1656 { 1657 hash_set<cgraph_node *> *removed_nodes = (hash_set<cgraph_node *> *)data; 1658 removed_nodes->add (node); 1659 } 1660 1661 /* Hook called when NODE is insert and therefore should be 1662 excluded from removed_nodes. DATA is a hash set with removed nodes. */ 1663 1664 static void 1665 insert_cgraph_node_to_order (cgraph_node *node, void *data) 1666 { 1667 hash_set<cgraph_node *> *removed_nodes = (hash_set<cgraph_node *> *)data; 1668 removed_nodes->remove (node); 1669 } 1670 1671 /* Hook called when NODE is duplicated and therefore should be 1672 excluded from removed_nodes. DATA is a hash set with removed nodes. */ 1673 1674 static void 1675 duplicate_cgraph_node_to_order (cgraph_node *node, cgraph_node *node2, 1676 void *data) 1677 { 1678 hash_set<cgraph_node *> *removed_nodes = (hash_set<cgraph_node *> *)data; 1679 gcc_checking_assert (!removed_nodes->contains (node)); 1680 removed_nodes->remove (node2); 1681 } 1682 1683 1684 /* If we are in IPA mode (i.e., current_function_decl is NULL), call 1685 function CALLBACK for every function in the call graph. Otherwise, 1686 call CALLBACK on the current function. 1687 This function is global so that plugins can use it. */ 1688 void 1689 do_per_function_toporder (void (*callback) (function *, void *data), void *data) 1690 { 1691 int i; 1692 1693 if (current_function_decl) 1694 callback (cfun, data); 1695 else 1696 { 1697 hash_set<cgraph_node *> removed_nodes; 1698 unsigned nnodes = symtab->cgraph_count; 1699 cgraph_node **order = XNEWVEC (cgraph_node *, nnodes); 1700 1701 nnodes = ipa_reverse_postorder (order); 1702 for (i = nnodes - 1; i >= 0; i--) 1703 order[i]->process = 1; 1704 cgraph_node_hook_list *removal_hook 1705 = symtab->add_cgraph_removal_hook (remove_cgraph_node_from_order, 1706 &removed_nodes); 1707 cgraph_node_hook_list *insertion_hook 1708 = symtab->add_cgraph_insertion_hook (insert_cgraph_node_to_order, 1709 &removed_nodes); 1710 cgraph_2node_hook_list *duplication_hook 1711 = symtab->add_cgraph_duplication_hook (duplicate_cgraph_node_to_order, 1712 &removed_nodes); 1713 for (i = nnodes - 1; i >= 0; i--) 1714 { 1715 cgraph_node *node = order[i]; 1716 1717 /* Function could be inlined and removed as unreachable. */ 1718 if (node == NULL || removed_nodes.contains (node)) 1719 continue; 1720 1721 node->process = 0; 1722 if (node->has_gimple_body_p ()) 1723 { 1724 struct function *fn = DECL_STRUCT_FUNCTION (node->decl); 1725 push_cfun (fn); 1726 callback (fn, data); 1727 pop_cfun (); 1728 } 1729 } 1730 symtab->remove_cgraph_removal_hook (removal_hook); 1731 symtab->remove_cgraph_insertion_hook (insertion_hook); 1732 symtab->remove_cgraph_duplication_hook (duplication_hook); 1733 1734 free (order); 1735 } 1736 } 1737 1738 /* Helper function to perform function body dump. */ 1739 1740 static void 1741 execute_function_dump (function *fn, void *data) 1742 { 1743 opt_pass *pass = (opt_pass *)data; 1744 1745 if (dump_file) 1746 { 1747 push_cfun (fn); 1748 1749 if (fn->curr_properties & PROP_trees) 1750 dump_function_to_file (fn->decl, dump_file, dump_flags); 1751 else 1752 print_rtl_with_bb (dump_file, get_insns (), dump_flags); 1753 1754 /* Flush the file. If verification fails, we won't be able to 1755 close the file before aborting. */ 1756 fflush (dump_file); 1757 1758 if ((fn->curr_properties & PROP_cfg) 1759 && (dump_flags & TDF_GRAPH)) 1760 { 1761 gcc::dump_manager *dumps = g->get_dumps (); 1762 struct dump_file_info *dfi 1763 = dumps->get_dump_file_info (pass->static_pass_number); 1764 if (!dfi->graph_dump_initialized) 1765 { 1766 clean_graph_dump_file (dump_file_name); 1767 dfi->graph_dump_initialized = true; 1768 } 1769 print_graph_cfg (dump_file_name, fn); 1770 } 1771 1772 pop_cfun (); 1773 } 1774 } 1775 1776 /* This function is called when an internal compiler error is encountered. 1777 Ensure that function dump is made available before compiler is aborted. */ 1778 1779 void 1780 emergency_dump_function () 1781 { 1782 if (!current_pass) 1783 return; 1784 enum opt_pass_type pt = current_pass->type; 1785 fnotice (stderr, "during %s pass: %s\n", 1786 pt == GIMPLE_PASS ? "GIMPLE" : pt == RTL_PASS ? "RTL" : "IPA", 1787 current_pass->name); 1788 if (!dump_file || !cfun) 1789 return; 1790 fnotice (stderr, "dump file: %s\n", dump_file_name); 1791 fprintf (dump_file, "\n\n\nEMERGENCY DUMP:\n\n"); 1792 execute_function_dump (cfun, current_pass); 1793 } 1794 1795 static struct profile_record *profile_record; 1796 1797 /* Do profile consistency book-keeping for the pass with static number INDEX. 1798 RUN is true if the pass really runs, or FALSE 1799 if we are only book-keeping on passes that may have selectively disabled 1800 themselves on a given function. */ 1801 1802 static void 1803 check_profile_consistency (int index, bool run) 1804 { 1805 pass_manager *passes = g->get_passes (); 1806 if (index == -1) 1807 return; 1808 if (!profile_record) 1809 profile_record = XCNEWVEC (struct profile_record, 1810 passes->passes_by_id_size); 1811 gcc_assert (index < passes->passes_by_id_size && index >= 0); 1812 profile_record[index].run |= run; 1813 profile_record_check_consistency (&profile_record[index]); 1814 } 1815 1816 /* Account profile the pass with static number INDEX. 1817 RUN is true if the pass really runs, or FALSE 1818 if we are only book-keeping on passes that may have selectively disabled 1819 themselves on a given function. */ 1820 1821 static void 1822 account_profile (int index, bool run) 1823 { 1824 pass_manager *passes = g->get_passes (); 1825 if (index == -1) 1826 return; 1827 if (!profile_record) 1828 profile_record = XCNEWVEC (struct profile_record, 1829 passes->passes_by_id_size); 1830 gcc_assert (index < passes->passes_by_id_size && index >= 0); 1831 profile_record[index].run |= run; 1832 profile_record_account_profile (&profile_record[index]); 1833 } 1834 1835 /* Output profile consistency. */ 1836 1837 void 1838 dump_profile_report (void) 1839 { 1840 g->get_passes ()->dump_profile_report (); 1841 } 1842 1843 void 1844 pass_manager::dump_profile_report () const 1845 { 1846 int last_freq_in = 0, last_count_in = 0, last_freq_out = 0, last_count_out = 0; 1847 gcov_type last_time = 0, last_size = 0; 1848 double rel_time_change, rel_size_change; 1849 int last_reported = 0; 1850 1851 if (!profile_record) 1852 return; 1853 fprintf (stderr, "\nProfile consistency report:\n\n"); 1854 fprintf (stderr, " |mismatch |mismatch | |\n"); 1855 fprintf (stderr, "Pass name |IN |IN |OUT |OUT |overall |\n"); 1856 fprintf (stderr, " |freq |count |freq |count |size |time |\n"); 1857 1858 for (int i = 1; i < passes_by_id_size; i++) 1859 if (profile_record[i].run) 1860 { 1861 if (last_time) 1862 rel_time_change = (profile_record[i].time 1863 - (double)last_time) * 100 / (double)last_time; 1864 else 1865 rel_time_change = 0; 1866 if (last_size) 1867 rel_size_change = (profile_record[i].size 1868 - (double)last_size) * 100 / (double)last_size; 1869 else 1870 rel_size_change = 0; 1871 1872 if (profile_record[i].num_mismatched_freq_in != last_freq_in 1873 || profile_record[i].num_mismatched_freq_out != last_freq_out 1874 || profile_record[i].num_mismatched_count_in != last_count_in 1875 || profile_record[i].num_mismatched_count_out != last_count_out 1876 || rel_time_change || rel_size_change) 1877 { 1878 last_reported = i; 1879 fprintf (stderr, "%-33s", passes_by_id[i]->name); 1880 if (profile_record[i].num_mismatched_freq_in != last_freq_in) 1881 fprintf (stderr, "| %+5i", 1882 profile_record[i].num_mismatched_freq_in 1883 - last_freq_in); 1884 else 1885 fprintf (stderr, "| "); 1886 if (profile_record[i].num_mismatched_count_in != last_count_in) 1887 fprintf (stderr, "| %+5i", 1888 profile_record[i].num_mismatched_count_in 1889 - last_count_in); 1890 else 1891 fprintf (stderr, "| "); 1892 if (profile_record[i].num_mismatched_freq_out != last_freq_out) 1893 fprintf (stderr, "| %+5i", 1894 profile_record[i].num_mismatched_freq_out 1895 - last_freq_out); 1896 else 1897 fprintf (stderr, "| "); 1898 if (profile_record[i].num_mismatched_count_out != last_count_out) 1899 fprintf (stderr, "| %+5i", 1900 profile_record[i].num_mismatched_count_out 1901 - last_count_out); 1902 else 1903 fprintf (stderr, "| "); 1904 1905 /* Size/time units change across gimple and RTL. */ 1906 if (i == pass_expand_1->static_pass_number) 1907 fprintf (stderr, "|----------|----------"); 1908 else 1909 { 1910 if (rel_size_change) 1911 fprintf (stderr, "| %+8.1f%%", rel_size_change); 1912 else 1913 fprintf (stderr, "| "); 1914 if (rel_time_change) 1915 fprintf (stderr, "| %+8.1f%%", rel_time_change); 1916 else 1917 fprintf (stderr, "| "); 1918 } 1919 fprintf (stderr, "|\n"); 1920 last_freq_in = profile_record[i].num_mismatched_freq_in; 1921 last_freq_out = profile_record[i].num_mismatched_freq_out; 1922 last_count_in = profile_record[i].num_mismatched_count_in; 1923 last_count_out = profile_record[i].num_mismatched_count_out; 1924 } 1925 else if (last_reported != i) 1926 { 1927 last_reported = i; 1928 fprintf (stderr, "%-20s ------------| | | | | | |\n", 1929 passes_by_id[i]->name); 1930 } 1931 last_time = profile_record[i].time; 1932 last_size = profile_record[i].size; 1933 } 1934 } 1935 1936 /* Perform all TODO actions that ought to be done on each function. */ 1937 1938 static void 1939 execute_function_todo (function *fn, void *data) 1940 { 1941 bool from_ipa_pass = (cfun == NULL); 1942 unsigned int flags = (size_t)data; 1943 flags &= ~fn->last_verified; 1944 if (!flags) 1945 return; 1946 1947 push_cfun (fn); 1948 1949 /* If we need to cleanup the CFG let it perform a needed SSA update. */ 1950 if (flags & TODO_cleanup_cfg) 1951 cleanup_tree_cfg (flags & TODO_update_ssa_any); 1952 else if (flags & TODO_update_ssa_any) 1953 update_ssa (flags & TODO_update_ssa_any); 1954 gcc_assert (!need_ssa_update_p (fn)); 1955 1956 if (flag_tree_pta && (flags & TODO_rebuild_alias)) 1957 compute_may_aliases (); 1958 1959 if (optimize && (flags & TODO_update_address_taken)) 1960 execute_update_addresses_taken (); 1961 1962 if (flags & TODO_remove_unused_locals) 1963 remove_unused_locals (); 1964 1965 if (flags & TODO_rebuild_frequencies) 1966 rebuild_frequencies (); 1967 1968 if (flags & TODO_rebuild_cgraph_edges) 1969 cgraph_edge::rebuild_edges (); 1970 1971 gcc_assert (dom_info_state (fn, CDI_POST_DOMINATORS) == DOM_NONE); 1972 /* If we've seen errors do not bother running any verifiers. */ 1973 if (flag_checking && !seen_error ()) 1974 { 1975 dom_state pre_verify_state = dom_info_state (fn, CDI_DOMINATORS); 1976 dom_state pre_verify_pstate = dom_info_state (fn, CDI_POST_DOMINATORS); 1977 1978 if (flags & TODO_verify_il) 1979 { 1980 if (cfun->curr_properties & PROP_trees) 1981 { 1982 if (cfun->curr_properties & PROP_cfg) 1983 /* IPA passes leave stmts to be fixed up, so make sure to 1984 not verify stmts really throw. */ 1985 verify_gimple_in_cfg (cfun, !from_ipa_pass); 1986 else 1987 verify_gimple_in_seq (gimple_body (cfun->decl)); 1988 } 1989 if (cfun->curr_properties & PROP_ssa) 1990 /* IPA passes leave stmts to be fixed up, so make sure to 1991 not verify SSA operands whose verifier will choke on that. */ 1992 verify_ssa (true, !from_ipa_pass); 1993 /* IPA passes leave basic-blocks unsplit, so make sure to 1994 not trip on that. */ 1995 if ((cfun->curr_properties & PROP_cfg) 1996 && !from_ipa_pass) 1997 verify_flow_info (); 1998 if (current_loops 1999 && ! loops_state_satisfies_p (LOOPS_NEED_FIXUP)) 2000 { 2001 verify_loop_structure (); 2002 if (loops_state_satisfies_p (LOOP_CLOSED_SSA)) 2003 verify_loop_closed_ssa (false); 2004 } 2005 if (cfun->curr_properties & PROP_rtl) 2006 verify_rtl_sharing (); 2007 } 2008 2009 /* Make sure verifiers don't change dominator state. */ 2010 gcc_assert (dom_info_state (fn, CDI_DOMINATORS) == pre_verify_state); 2011 gcc_assert (dom_info_state (fn, CDI_POST_DOMINATORS) == pre_verify_pstate); 2012 } 2013 2014 fn->last_verified = flags & TODO_verify_all; 2015 2016 pop_cfun (); 2017 2018 /* For IPA passes make sure to release dominator info, it can be 2019 computed by non-verifying TODOs. */ 2020 if (from_ipa_pass) 2021 { 2022 free_dominance_info (fn, CDI_DOMINATORS); 2023 free_dominance_info (fn, CDI_POST_DOMINATORS); 2024 } 2025 } 2026 2027 /* Perform all TODO actions. */ 2028 static void 2029 execute_todo (unsigned int flags) 2030 { 2031 if (flag_checking 2032 && cfun 2033 && need_ssa_update_p (cfun)) 2034 gcc_assert (flags & TODO_update_ssa_any); 2035 2036 statistics_fini_pass (); 2037 2038 if (flags) 2039 do_per_function (execute_function_todo, (void *)(size_t) flags); 2040 2041 /* At this point we should not have any unreachable code in the 2042 CFG, so it is safe to flush the pending freelist for SSA_NAMES. */ 2043 if (cfun && cfun->gimple_df) 2044 flush_ssaname_freelist (); 2045 2046 /* Always remove functions just as before inlining: IPA passes might be 2047 interested to see bodies of extern inline functions that are not inlined 2048 to analyze side effects. The full removal is done just at the end 2049 of IPA pass queue. */ 2050 if (flags & TODO_remove_functions) 2051 { 2052 gcc_assert (!cfun); 2053 symtab->remove_unreachable_nodes (dump_file); 2054 } 2055 2056 if ((flags & TODO_dump_symtab) && dump_file && !current_function_decl) 2057 { 2058 gcc_assert (!cfun); 2059 symtab->dump (dump_file); 2060 /* Flush the file. If verification fails, we won't be able to 2061 close the file before aborting. */ 2062 fflush (dump_file); 2063 } 2064 2065 /* Now that the dumping has been done, we can get rid of the optional 2066 df problems. */ 2067 if (flags & TODO_df_finish) 2068 df_finish_pass ((flags & TODO_df_verify) != 0); 2069 } 2070 2071 /* Verify invariants that should hold between passes. This is a place 2072 to put simple sanity checks. */ 2073 2074 static void 2075 verify_interpass_invariants (void) 2076 { 2077 gcc_checking_assert (!fold_deferring_overflow_warnings_p ()); 2078 } 2079 2080 /* Clear the last verified flag. */ 2081 2082 static void 2083 clear_last_verified (function *fn, void *data ATTRIBUTE_UNUSED) 2084 { 2085 fn->last_verified = 0; 2086 } 2087 2088 /* Helper function. Verify that the properties has been turn into the 2089 properties expected by the pass. */ 2090 2091 static void 2092 verify_curr_properties (function *fn, void *data) 2093 { 2094 unsigned int props = (size_t)data; 2095 gcc_assert ((fn->curr_properties & props) == props); 2096 } 2097 2098 /* Release dump file name if set. */ 2099 2100 static void 2101 release_dump_file_name (void) 2102 { 2103 if (dump_file_name) 2104 { 2105 free (CONST_CAST (char *, dump_file_name)); 2106 dump_file_name = NULL; 2107 } 2108 } 2109 2110 /* Initialize pass dump file. */ 2111 /* This is non-static so that the plugins can use it. */ 2112 2113 bool 2114 pass_init_dump_file (opt_pass *pass) 2115 { 2116 /* If a dump file name is present, open it if enabled. */ 2117 if (pass->static_pass_number != -1) 2118 { 2119 timevar_push (TV_DUMP); 2120 gcc::dump_manager *dumps = g->get_dumps (); 2121 bool initializing_dump = 2122 !dumps->dump_initialized_p (pass->static_pass_number); 2123 release_dump_file_name (); 2124 dump_file_name = dumps->get_dump_file_name (pass->static_pass_number); 2125 dumps->dump_start (pass->static_pass_number, &dump_flags); 2126 if (dump_file && current_function_decl && ! (dump_flags & TDF_GIMPLE)) 2127 dump_function_header (dump_file, current_function_decl, dump_flags); 2128 if (initializing_dump 2129 && dump_file && (dump_flags & TDF_GRAPH) 2130 && cfun && (cfun->curr_properties & PROP_cfg)) 2131 { 2132 clean_graph_dump_file (dump_file_name); 2133 struct dump_file_info *dfi 2134 = dumps->get_dump_file_info (pass->static_pass_number); 2135 dfi->graph_dump_initialized = true; 2136 } 2137 timevar_pop (TV_DUMP); 2138 return initializing_dump; 2139 } 2140 else 2141 return false; 2142 } 2143 2144 /* Flush PASS dump file. */ 2145 /* This is non-static so that plugins can use it. */ 2146 2147 void 2148 pass_fini_dump_file (opt_pass *pass) 2149 { 2150 timevar_push (TV_DUMP); 2151 2152 /* Flush and close dump file. */ 2153 release_dump_file_name (); 2154 2155 g->get_dumps ()->dump_finish (pass->static_pass_number); 2156 timevar_pop (TV_DUMP); 2157 } 2158 2159 /* After executing the pass, apply expected changes to the function 2160 properties. */ 2161 2162 static void 2163 update_properties_after_pass (function *fn, void *data) 2164 { 2165 opt_pass *pass = (opt_pass *) data; 2166 fn->curr_properties = (fn->curr_properties | pass->properties_provided) 2167 & ~pass->properties_destroyed; 2168 } 2169 2170 /* Execute summary generation for all of the passes in IPA_PASS. */ 2171 2172 void 2173 execute_ipa_summary_passes (ipa_opt_pass_d *ipa_pass) 2174 { 2175 while (ipa_pass) 2176 { 2177 opt_pass *pass = ipa_pass; 2178 2179 /* Execute all of the IPA_PASSes in the list. */ 2180 if (ipa_pass->type == IPA_PASS 2181 && pass->gate (cfun) 2182 && ipa_pass->generate_summary) 2183 { 2184 pass_init_dump_file (pass); 2185 2186 /* If a timevar is present, start it. */ 2187 if (pass->tv_id) 2188 timevar_push (pass->tv_id); 2189 2190 current_pass = pass; 2191 ipa_pass->generate_summary (); 2192 2193 /* Stop timevar. */ 2194 if (pass->tv_id) 2195 timevar_pop (pass->tv_id); 2196 2197 pass_fini_dump_file (pass); 2198 } 2199 ipa_pass = (ipa_opt_pass_d *)ipa_pass->next; 2200 } 2201 } 2202 2203 /* Execute IPA_PASS function transform on NODE. */ 2204 2205 static void 2206 execute_one_ipa_transform_pass (struct cgraph_node *node, 2207 ipa_opt_pass_d *ipa_pass, bool do_not_collect) 2208 { 2209 opt_pass *pass = ipa_pass; 2210 unsigned int todo_after = 0; 2211 2212 current_pass = pass; 2213 if (!ipa_pass->function_transform) 2214 return; 2215 2216 /* Note that the folders should only create gimple expressions. 2217 This is a hack until the new folder is ready. */ 2218 in_gimple_form = (cfun && (cfun->curr_properties & PROP_trees)) != 0; 2219 2220 pass_init_dump_file (pass); 2221 2222 /* If a timevar is present, start it. */ 2223 if (pass->tv_id != TV_NONE) 2224 timevar_push (pass->tv_id); 2225 2226 if (profile_report && cfun && (cfun->curr_properties & PROP_cfg)) 2227 check_profile_consistency (pass->static_pass_number, true); 2228 2229 /* Run pre-pass verification. */ 2230 execute_todo (ipa_pass->function_transform_todo_flags_start); 2231 2232 /* Do it! */ 2233 todo_after = ipa_pass->function_transform (node); 2234 2235 /* Run post-pass cleanup and verification. */ 2236 execute_todo (todo_after); 2237 verify_interpass_invariants (); 2238 if (profile_report && cfun && (cfun->curr_properties & PROP_cfg)) 2239 account_profile (pass->static_pass_number, true); 2240 2241 /* Stop timevar. */ 2242 if (pass->tv_id != TV_NONE) 2243 timevar_pop (pass->tv_id); 2244 2245 if (dump_file) 2246 do_per_function (execute_function_dump, pass); 2247 pass_fini_dump_file (pass); 2248 2249 current_pass = NULL; 2250 redirect_edge_var_map_empty (); 2251 2252 /* Signal this is a suitable GC collection point. */ 2253 if (!do_not_collect && !(todo_after & TODO_do_not_ggc_collect)) 2254 ggc_collect (); 2255 } 2256 2257 /* For the current function, execute all ipa transforms. */ 2258 2259 void 2260 execute_all_ipa_transforms (bool do_not_collect) 2261 { 2262 struct cgraph_node *node; 2263 if (!cfun) 2264 return; 2265 node = cgraph_node::get (current_function_decl); 2266 2267 if (node->ipa_transforms_to_apply.exists ()) 2268 { 2269 unsigned int i; 2270 2271 for (i = 0; i < node->ipa_transforms_to_apply.length (); i++) 2272 execute_one_ipa_transform_pass (node, node->ipa_transforms_to_apply[i], 2273 do_not_collect); 2274 node->ipa_transforms_to_apply.release (); 2275 } 2276 } 2277 2278 /* Check if PASS is explicitly disabled or enabled and return 2279 the gate status. FUNC is the function to be processed, and 2280 GATE_STATUS is the gate status determined by pass manager by 2281 default. */ 2282 2283 static bool 2284 override_gate_status (opt_pass *pass, tree func, bool gate_status) 2285 { 2286 bool explicitly_enabled = false; 2287 bool explicitly_disabled = false; 2288 2289 explicitly_enabled 2290 = is_pass_explicitly_enabled_or_disabled (pass, func, 2291 enabled_pass_uid_range_tab); 2292 explicitly_disabled 2293 = is_pass_explicitly_enabled_or_disabled (pass, func, 2294 disabled_pass_uid_range_tab); 2295 2296 gate_status = !explicitly_disabled && (gate_status || explicitly_enabled); 2297 2298 return gate_status; 2299 } 2300 2301 /* Determine if PASS_NAME matches CRITERION. 2302 Not a pure predicate, since it can update CRITERION, to support 2303 matching the Nth invocation of a pass. 2304 Subroutine of should_skip_pass_p. */ 2305 2306 static bool 2307 determine_pass_name_match (const char *pass_name, char *criterion) 2308 { 2309 size_t namelen = strlen (pass_name); 2310 if (! strncmp (pass_name, criterion, namelen)) 2311 { 2312 /* The following supports starting with the Nth invocation 2313 of a pass (where N does not necessarily is equal to the 2314 dump file suffix). */ 2315 if (criterion[namelen] == '\0' 2316 || (criterion[namelen] == '1' 2317 && criterion[namelen + 1] == '\0')) 2318 return true; 2319 else 2320 { 2321 if (criterion[namelen + 1] == '\0') 2322 --criterion[namelen]; 2323 return false; 2324 } 2325 } 2326 else 2327 return false; 2328 } 2329 2330 /* For skipping passes until "startwith" pass. 2331 Return true iff PASS should be skipped. 2332 Clear cfun->pass_startwith when encountering the "startwith" pass, 2333 so that all subsequent passes are run. */ 2334 2335 static bool 2336 should_skip_pass_p (opt_pass *pass) 2337 { 2338 if (!cfun) 2339 return false; 2340 if (!cfun->pass_startwith) 2341 return false; 2342 2343 /* For __GIMPLE functions, we have to at least start when we leave 2344 SSA. Hence, we need to detect the "expand" pass, and stop skipping 2345 when we encounter it. A cheap way to identify "expand" is it to 2346 detect the destruction of PROP_ssa. 2347 For __RTL functions, we invoke "rest_of_compilation" directly, which 2348 is after "expand", and hence we don't reach this conditional. */ 2349 if (pass->properties_destroyed & PROP_ssa) 2350 { 2351 if (!quiet_flag) 2352 fprintf (stderr, "starting anyway when leaving SSA: %s\n", pass->name); 2353 cfun->pass_startwith = NULL; 2354 return false; 2355 } 2356 2357 if (determine_pass_name_match (pass->name, cfun->pass_startwith)) 2358 { 2359 if (!quiet_flag) 2360 fprintf (stderr, "found starting pass: %s\n", pass->name); 2361 cfun->pass_startwith = NULL; 2362 return false; 2363 } 2364 2365 /* For GIMPLE passes, run any property provider (but continue skipping 2366 afterwards). 2367 We don't want to force running RTL passes that are property providers: 2368 "expand" is covered above, and the only pass other than "expand" that 2369 provides a property is "into_cfglayout" (PROP_cfglayout), which does 2370 too much for a dumped __RTL function. */ 2371 if (pass->type == GIMPLE_PASS 2372 && pass->properties_provided != 0) 2373 return false; 2374 2375 /* We need to (re-)build cgraph edges as needed. */ 2376 if (strstr (pass->name, "build_cgraph_edges") != NULL) 2377 return false; 2378 2379 /* Don't skip df init; later RTL passes need it. */ 2380 if (strstr (pass->name, "dfinit") != NULL 2381 || strstr (pass->name, "dfinish") != NULL) 2382 return false; 2383 2384 if (!quiet_flag) 2385 fprintf (stderr, "skipping pass: %s\n", pass->name); 2386 2387 /* If we get here, then we have a "startwith" that we haven't seen yet; 2388 skip the pass. */ 2389 return true; 2390 } 2391 2392 /* Skip the given pass, for handling passes before "startwith" 2393 in __GIMPLE and__RTL-marked functions. 2394 In theory, this ought to be a no-op, but some of the RTL passes 2395 need additional processing here. */ 2396 2397 static void 2398 skip_pass (opt_pass *pass) 2399 { 2400 /* Pass "reload" sets the global "reload_completed", and many 2401 things depend on this (e.g. instructions in .md files). */ 2402 if (strcmp (pass->name, "reload") == 0) 2403 reload_completed = 1; 2404 2405 /* Similar for pass "pro_and_epilogue" and the "epilogue_completed" global 2406 variable. */ 2407 if (strcmp (pass->name, "pro_and_epilogue") == 0) 2408 epilogue_completed = 1; 2409 2410 /* The INSN_ADDRESSES vec is normally set up by 2411 shorten_branches; set it up for the benefit of passes that 2412 run after this. */ 2413 if (strcmp (pass->name, "shorten") == 0) 2414 INSN_ADDRESSES_ALLOC (get_max_uid ()); 2415 2416 /* Update the cfg hooks as appropriate. */ 2417 if (strcmp (pass->name, "into_cfglayout") == 0) 2418 { 2419 cfg_layout_rtl_register_cfg_hooks (); 2420 cfun->curr_properties |= PROP_cfglayout; 2421 } 2422 if (strcmp (pass->name, "outof_cfglayout") == 0) 2423 { 2424 rtl_register_cfg_hooks (); 2425 cfun->curr_properties &= ~PROP_cfglayout; 2426 } 2427 } 2428 2429 /* Execute PASS. */ 2430 2431 bool 2432 execute_one_pass (opt_pass *pass) 2433 { 2434 unsigned int todo_after = 0; 2435 2436 bool gate_status; 2437 2438 /* IPA passes are executed on whole program, so cfun should be NULL. 2439 Other passes need function context set. */ 2440 if (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS) 2441 gcc_assert (!cfun && !current_function_decl); 2442 else 2443 gcc_assert (cfun && current_function_decl); 2444 2445 current_pass = pass; 2446 2447 /* Check whether gate check should be avoided. 2448 User controls the value of the gate through the parameter "gate_status". */ 2449 gate_status = pass->gate (cfun); 2450 gate_status = override_gate_status (pass, current_function_decl, gate_status); 2451 2452 /* Override gate with plugin. */ 2453 invoke_plugin_callbacks (PLUGIN_OVERRIDE_GATE, &gate_status); 2454 2455 if (!gate_status) 2456 { 2457 /* Run so passes selectively disabling themselves on a given function 2458 are not miscounted. */ 2459 if (profile_report && cfun && (cfun->curr_properties & PROP_cfg)) 2460 { 2461 check_profile_consistency (pass->static_pass_number, false); 2462 account_profile (pass->static_pass_number, false); 2463 } 2464 current_pass = NULL; 2465 return false; 2466 } 2467 2468 if (should_skip_pass_p (pass)) 2469 { 2470 skip_pass (pass); 2471 return true; 2472 } 2473 2474 /* Pass execution event trigger: useful to identify passes being 2475 executed. */ 2476 invoke_plugin_callbacks (PLUGIN_PASS_EXECUTION, pass); 2477 2478 if (!quiet_flag && !cfun) 2479 fprintf (stderr, " <%s>", pass->name ? pass->name : ""); 2480 2481 /* Note that the folders should only create gimple expressions. 2482 This is a hack until the new folder is ready. */ 2483 in_gimple_form = (cfun && (cfun->curr_properties & PROP_trees)) != 0; 2484 2485 pass_init_dump_file (pass); 2486 2487 /* If a timevar is present, start it. */ 2488 if (pass->tv_id != TV_NONE) 2489 timevar_push (pass->tv_id); 2490 2491 if (profile_report && cfun && (cfun->curr_properties & PROP_cfg)) 2492 check_profile_consistency (pass->static_pass_number, true); 2493 2494 /* Run pre-pass verification. */ 2495 execute_todo (pass->todo_flags_start); 2496 2497 if (flag_checking) 2498 do_per_function (verify_curr_properties, 2499 (void *)(size_t)pass->properties_required); 2500 2501 /* Do it! */ 2502 todo_after = pass->execute (cfun); 2503 2504 if (todo_after & TODO_discard_function) 2505 { 2506 /* Stop timevar. */ 2507 if (pass->tv_id != TV_NONE) 2508 timevar_pop (pass->tv_id); 2509 2510 pass_fini_dump_file (pass); 2511 2512 gcc_assert (cfun); 2513 /* As cgraph_node::release_body expects release dominators info, 2514 we have to release it. */ 2515 if (dom_info_available_p (CDI_DOMINATORS)) 2516 free_dominance_info (CDI_DOMINATORS); 2517 2518 if (dom_info_available_p (CDI_POST_DOMINATORS)) 2519 free_dominance_info (CDI_POST_DOMINATORS); 2520 2521 tree fn = cfun->decl; 2522 pop_cfun (); 2523 gcc_assert (!cfun); 2524 cgraph_node::get (fn)->release_body (); 2525 2526 current_pass = NULL; 2527 redirect_edge_var_map_empty (); 2528 2529 ggc_collect (); 2530 2531 return true; 2532 } 2533 2534 do_per_function (clear_last_verified, NULL); 2535 2536 do_per_function (update_properties_after_pass, pass); 2537 2538 /* Run post-pass cleanup and verification. */ 2539 execute_todo (todo_after | pass->todo_flags_finish | TODO_verify_il); 2540 if (profile_report && cfun && (cfun->curr_properties & PROP_cfg)) 2541 account_profile (pass->static_pass_number, true); 2542 2543 verify_interpass_invariants (); 2544 2545 /* Stop timevar. */ 2546 if (pass->tv_id != TV_NONE) 2547 timevar_pop (pass->tv_id); 2548 2549 if (pass->type == IPA_PASS 2550 && ((ipa_opt_pass_d *)pass)->function_transform) 2551 { 2552 struct cgraph_node *node; 2553 FOR_EACH_FUNCTION_WITH_GIMPLE_BODY (node) 2554 node->ipa_transforms_to_apply.safe_push ((ipa_opt_pass_d *)pass); 2555 } 2556 else if (dump_file) 2557 do_per_function (execute_function_dump, pass); 2558 2559 if (!current_function_decl) 2560 symtab->process_new_functions (); 2561 2562 pass_fini_dump_file (pass); 2563 2564 if (pass->type != SIMPLE_IPA_PASS && pass->type != IPA_PASS) 2565 gcc_assert (!(cfun->curr_properties & PROP_trees) 2566 || pass->type != RTL_PASS); 2567 2568 current_pass = NULL; 2569 redirect_edge_var_map_empty (); 2570 2571 /* Signal this is a suitable GC collection point. */ 2572 if (!((todo_after | pass->todo_flags_finish) & TODO_do_not_ggc_collect)) 2573 ggc_collect (); 2574 2575 if (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS) 2576 report_heap_memory_use (); 2577 return true; 2578 } 2579 2580 static void 2581 execute_pass_list_1 (opt_pass *pass) 2582 { 2583 do 2584 { 2585 gcc_assert (pass->type == GIMPLE_PASS 2586 || pass->type == RTL_PASS); 2587 2588 if (cfun == NULL) 2589 return; 2590 if (execute_one_pass (pass) && pass->sub) 2591 execute_pass_list_1 (pass->sub); 2592 pass = pass->next; 2593 } 2594 while (pass); 2595 } 2596 2597 void 2598 execute_pass_list (function *fn, opt_pass *pass) 2599 { 2600 gcc_assert (fn == cfun); 2601 execute_pass_list_1 (pass); 2602 if (cfun && fn->cfg) 2603 { 2604 free_dominance_info (CDI_DOMINATORS); 2605 free_dominance_info (CDI_POST_DOMINATORS); 2606 } 2607 } 2608 2609 /* Write out all LTO data. */ 2610 static void 2611 write_lto (void) 2612 { 2613 timevar_push (TV_IPA_LTO_GIMPLE_OUT); 2614 lto_output (); 2615 timevar_pop (TV_IPA_LTO_GIMPLE_OUT); 2616 timevar_push (TV_IPA_LTO_DECL_OUT); 2617 produce_asm_for_decls (); 2618 timevar_pop (TV_IPA_LTO_DECL_OUT); 2619 } 2620 2621 /* Same as execute_pass_list but assume that subpasses of IPA passes 2622 are local passes. If SET is not NULL, write out summaries of only 2623 those node in SET. */ 2624 2625 static void 2626 ipa_write_summaries_2 (opt_pass *pass, struct lto_out_decl_state *state) 2627 { 2628 while (pass) 2629 { 2630 ipa_opt_pass_d *ipa_pass = (ipa_opt_pass_d *)pass; 2631 gcc_assert (!current_function_decl); 2632 gcc_assert (!cfun); 2633 gcc_assert (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS); 2634 if (pass->type == IPA_PASS 2635 && ipa_pass->write_summary 2636 && pass->gate (cfun)) 2637 { 2638 /* If a timevar is present, start it. */ 2639 if (pass->tv_id) 2640 timevar_push (pass->tv_id); 2641 2642 pass_init_dump_file (pass); 2643 2644 current_pass = pass; 2645 ipa_pass->write_summary (); 2646 2647 pass_fini_dump_file (pass); 2648 2649 /* If a timevar is present, start it. */ 2650 if (pass->tv_id) 2651 timevar_pop (pass->tv_id); 2652 } 2653 2654 if (pass->sub && pass->sub->type != GIMPLE_PASS) 2655 ipa_write_summaries_2 (pass->sub, state); 2656 2657 pass = pass->next; 2658 } 2659 } 2660 2661 /* Helper function of ipa_write_summaries. Creates and destroys the 2662 decl state and calls ipa_write_summaries_2 for all passes that have 2663 summaries. SET is the set of nodes to be written. */ 2664 2665 static void 2666 ipa_write_summaries_1 (lto_symtab_encoder_t encoder) 2667 { 2668 pass_manager *passes = g->get_passes (); 2669 struct lto_out_decl_state *state = lto_new_out_decl_state (); 2670 state->symtab_node_encoder = encoder; 2671 2672 lto_output_init_mode_table (); 2673 lto_push_out_decl_state (state); 2674 2675 gcc_assert (!flag_wpa); 2676 ipa_write_summaries_2 (passes->all_regular_ipa_passes, state); 2677 2678 write_lto (); 2679 2680 gcc_assert (lto_get_out_decl_state () == state); 2681 lto_pop_out_decl_state (); 2682 lto_delete_out_decl_state (state); 2683 } 2684 2685 /* Write out summaries for all the nodes in the callgraph. */ 2686 2687 void 2688 ipa_write_summaries (void) 2689 { 2690 lto_symtab_encoder_t encoder; 2691 int i, order_pos; 2692 varpool_node *vnode; 2693 struct cgraph_node *node; 2694 struct cgraph_node **order; 2695 2696 if ((!flag_generate_lto && !flag_generate_offload) || seen_error ()) 2697 return; 2698 2699 gcc_assert (!dump_file); 2700 streamer_dump_file = dump_begin (TDI_lto_stream_out, NULL); 2701 2702 select_what_to_stream (); 2703 2704 encoder = lto_symtab_encoder_new (false); 2705 2706 /* Create the callgraph set in the same order used in 2707 cgraph_expand_all_functions. This mostly facilitates debugging, 2708 since it causes the gimple file to be processed in the same order 2709 as the source code. */ 2710 order = XCNEWVEC (struct cgraph_node *, symtab->cgraph_count); 2711 order_pos = ipa_reverse_postorder (order); 2712 gcc_assert (order_pos == symtab->cgraph_count); 2713 2714 for (i = order_pos - 1; i >= 0; i--) 2715 { 2716 struct cgraph_node *node = order[i]; 2717 2718 if (node->definition && node->need_lto_streaming) 2719 { 2720 if (gimple_has_body_p (node->decl)) 2721 lto_prepare_function_for_streaming (node); 2722 lto_set_symtab_encoder_in_partition (encoder, node); 2723 } 2724 } 2725 2726 FOR_EACH_DEFINED_FUNCTION (node) 2727 if (node->alias && node->need_lto_streaming) 2728 lto_set_symtab_encoder_in_partition (encoder, node); 2729 FOR_EACH_DEFINED_VARIABLE (vnode) 2730 if (vnode->need_lto_streaming) 2731 lto_set_symtab_encoder_in_partition (encoder, vnode); 2732 2733 ipa_write_summaries_1 (compute_ltrans_boundary (encoder)); 2734 2735 free (order); 2736 if (streamer_dump_file) 2737 { 2738 dump_end (TDI_lto_stream_out, streamer_dump_file); 2739 streamer_dump_file = NULL; 2740 } 2741 } 2742 2743 /* Same as execute_pass_list but assume that subpasses of IPA passes 2744 are local passes. If SET is not NULL, write out optimization summaries of 2745 only those node in SET. */ 2746 2747 static void 2748 ipa_write_optimization_summaries_1 (opt_pass *pass, 2749 struct lto_out_decl_state *state) 2750 { 2751 while (pass) 2752 { 2753 ipa_opt_pass_d *ipa_pass = (ipa_opt_pass_d *)pass; 2754 gcc_assert (!current_function_decl); 2755 gcc_assert (!cfun); 2756 gcc_assert (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS); 2757 if (pass->type == IPA_PASS 2758 && ipa_pass->write_optimization_summary 2759 && pass->gate (cfun)) 2760 { 2761 /* If a timevar is present, start it. */ 2762 if (pass->tv_id) 2763 timevar_push (pass->tv_id); 2764 2765 pass_init_dump_file (pass); 2766 2767 current_pass = pass; 2768 ipa_pass->write_optimization_summary (); 2769 2770 pass_fini_dump_file (pass); 2771 2772 /* If a timevar is present, start it. */ 2773 if (pass->tv_id) 2774 timevar_pop (pass->tv_id); 2775 } 2776 2777 if (pass->sub && pass->sub->type != GIMPLE_PASS) 2778 ipa_write_optimization_summaries_1 (pass->sub, state); 2779 2780 pass = pass->next; 2781 } 2782 } 2783 2784 /* Write all the optimization summaries for the cgraph nodes in SET. If SET is 2785 NULL, write out all summaries of all nodes. */ 2786 2787 void 2788 ipa_write_optimization_summaries (lto_symtab_encoder_t encoder) 2789 { 2790 struct lto_out_decl_state *state = lto_new_out_decl_state (); 2791 state->symtab_node_encoder = encoder; 2792 2793 lto_output_init_mode_table (); 2794 lto_push_out_decl_state (state); 2795 2796 /* Be sure that we did not forget to renumber stmt uids. */ 2797 gcc_checking_assert (flag_wpa); 2798 2799 gcc_assert (flag_wpa); 2800 pass_manager *passes = g->get_passes (); 2801 ipa_write_optimization_summaries_1 (passes->all_regular_ipa_passes, state); 2802 2803 write_lto (); 2804 2805 gcc_assert (lto_get_out_decl_state () == state); 2806 lto_pop_out_decl_state (); 2807 lto_delete_out_decl_state (state); 2808 } 2809 2810 /* Same as execute_pass_list but assume that subpasses of IPA passes 2811 are local passes. */ 2812 2813 static void 2814 ipa_read_summaries_1 (opt_pass *pass) 2815 { 2816 while (pass) 2817 { 2818 ipa_opt_pass_d *ipa_pass = (ipa_opt_pass_d *) pass; 2819 2820 gcc_assert (!current_function_decl); 2821 gcc_assert (!cfun); 2822 gcc_assert (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS); 2823 2824 if (pass->gate (cfun)) 2825 { 2826 if (pass->type == IPA_PASS && ipa_pass->read_summary) 2827 { 2828 /* If a timevar is present, start it. */ 2829 if (pass->tv_id) 2830 timevar_push (pass->tv_id); 2831 if (!quiet_flag) 2832 fprintf (stderr, " <%s>", pass->name ? pass->name : ""); 2833 2834 pass_init_dump_file (pass); 2835 2836 current_pass = pass; 2837 ipa_pass->read_summary (); 2838 2839 pass_fini_dump_file (pass); 2840 2841 /* Stop timevar. */ 2842 if (pass->tv_id) 2843 timevar_pop (pass->tv_id); 2844 ggc_grow (); 2845 report_heap_memory_use (); 2846 } 2847 2848 if (pass->sub && pass->sub->type != GIMPLE_PASS) 2849 ipa_read_summaries_1 (pass->sub); 2850 } 2851 pass = pass->next; 2852 } 2853 } 2854 2855 2856 /* Read all the summaries for all_regular_ipa_passes. */ 2857 2858 void 2859 ipa_read_summaries (void) 2860 { 2861 pass_manager *passes = g->get_passes (); 2862 ipa_read_summaries_1 (passes->all_regular_ipa_passes); 2863 } 2864 2865 /* Same as execute_pass_list but assume that subpasses of IPA passes 2866 are local passes. */ 2867 2868 static void 2869 ipa_read_optimization_summaries_1 (opt_pass *pass) 2870 { 2871 while (pass) 2872 { 2873 ipa_opt_pass_d *ipa_pass = (ipa_opt_pass_d *) pass; 2874 2875 gcc_assert (!current_function_decl); 2876 gcc_assert (!cfun); 2877 gcc_assert (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS); 2878 2879 if (pass->gate (cfun)) 2880 { 2881 if (pass->type == IPA_PASS && ipa_pass->read_optimization_summary) 2882 { 2883 /* If a timevar is present, start it. */ 2884 if (pass->tv_id) 2885 timevar_push (pass->tv_id); 2886 if (!quiet_flag) 2887 fprintf (stderr, " <%s>", pass->name ? pass->name : ""); 2888 2889 pass_init_dump_file (pass); 2890 2891 current_pass = pass; 2892 ipa_pass->read_optimization_summary (); 2893 2894 pass_fini_dump_file (pass); 2895 2896 /* Stop timevar. */ 2897 if (pass->tv_id) 2898 timevar_pop (pass->tv_id); 2899 } 2900 2901 if (pass->sub && pass->sub->type != GIMPLE_PASS) 2902 ipa_read_optimization_summaries_1 (pass->sub); 2903 ggc_grow (); 2904 report_heap_memory_use (); 2905 } 2906 pass = pass->next; 2907 } 2908 } 2909 2910 /* Read all the summaries for all_regular_ipa_passes. */ 2911 2912 void 2913 ipa_read_optimization_summaries (void) 2914 { 2915 pass_manager *passes = g->get_passes (); 2916 ipa_read_optimization_summaries_1 (passes->all_regular_ipa_passes); 2917 } 2918 2919 /* Same as execute_pass_list but assume that subpasses of IPA passes 2920 are local passes. */ 2921 void 2922 execute_ipa_pass_list (opt_pass *pass) 2923 { 2924 do 2925 { 2926 gcc_assert (!current_function_decl); 2927 gcc_assert (!cfun); 2928 gcc_assert (pass->type == SIMPLE_IPA_PASS || pass->type == IPA_PASS); 2929 if (execute_one_pass (pass) && pass->sub) 2930 { 2931 if (pass->sub->type == GIMPLE_PASS) 2932 { 2933 invoke_plugin_callbacks (PLUGIN_EARLY_GIMPLE_PASSES_START, NULL); 2934 do_per_function_toporder ((void (*)(function *, void *)) 2935 execute_pass_list, 2936 pass->sub); 2937 invoke_plugin_callbacks (PLUGIN_EARLY_GIMPLE_PASSES_END, NULL); 2938 } 2939 else if (pass->sub->type == SIMPLE_IPA_PASS 2940 || pass->sub->type == IPA_PASS) 2941 execute_ipa_pass_list (pass->sub); 2942 else 2943 gcc_unreachable (); 2944 } 2945 gcc_assert (!current_function_decl); 2946 symtab->process_new_functions (); 2947 pass = pass->next; 2948 } 2949 while (pass); 2950 } 2951 2952 /* Execute stmt fixup hooks of all passes in PASS for NODE and STMTS. */ 2953 2954 static void 2955 execute_ipa_stmt_fixups (opt_pass *pass, 2956 struct cgraph_node *node, gimple **stmts) 2957 { 2958 while (pass) 2959 { 2960 /* Execute all of the IPA_PASSes in the list. */ 2961 if (pass->type == IPA_PASS 2962 && pass->gate (cfun)) 2963 { 2964 ipa_opt_pass_d *ipa_pass = (ipa_opt_pass_d *) pass; 2965 2966 if (ipa_pass->stmt_fixup) 2967 { 2968 pass_init_dump_file (pass); 2969 /* If a timevar is present, start it. */ 2970 if (pass->tv_id) 2971 timevar_push (pass->tv_id); 2972 2973 current_pass = pass; 2974 ipa_pass->stmt_fixup (node, stmts); 2975 2976 /* Stop timevar. */ 2977 if (pass->tv_id) 2978 timevar_pop (pass->tv_id); 2979 pass_fini_dump_file (pass); 2980 } 2981 if (pass->sub) 2982 execute_ipa_stmt_fixups (pass->sub, node, stmts); 2983 } 2984 pass = pass->next; 2985 } 2986 } 2987 2988 /* Execute stmt fixup hooks of all IPA passes for NODE and STMTS. */ 2989 2990 void 2991 execute_all_ipa_stmt_fixups (struct cgraph_node *node, gimple **stmts) 2992 { 2993 pass_manager *passes = g->get_passes (); 2994 execute_ipa_stmt_fixups (passes->all_regular_ipa_passes, node, stmts); 2995 } 2996 2997 2998 extern void debug_properties (unsigned int); 2999 extern void dump_properties (FILE *, unsigned int); 3000 3001 DEBUG_FUNCTION void 3002 dump_properties (FILE *dump, unsigned int props) 3003 { 3004 fprintf (dump, "Properties:\n"); 3005 if (props & PROP_gimple_any) 3006 fprintf (dump, "PROP_gimple_any\n"); 3007 if (props & PROP_gimple_lcf) 3008 fprintf (dump, "PROP_gimple_lcf\n"); 3009 if (props & PROP_gimple_leh) 3010 fprintf (dump, "PROP_gimple_leh\n"); 3011 if (props & PROP_cfg) 3012 fprintf (dump, "PROP_cfg\n"); 3013 if (props & PROP_ssa) 3014 fprintf (dump, "PROP_ssa\n"); 3015 if (props & PROP_no_crit_edges) 3016 fprintf (dump, "PROP_no_crit_edges\n"); 3017 if (props & PROP_rtl) 3018 fprintf (dump, "PROP_rtl\n"); 3019 if (props & PROP_gimple_lomp) 3020 fprintf (dump, "PROP_gimple_lomp\n"); 3021 if (props & PROP_gimple_lomp_dev) 3022 fprintf (dump, "PROP_gimple_lomp_dev\n"); 3023 if (props & PROP_gimple_lcx) 3024 fprintf (dump, "PROP_gimple_lcx\n"); 3025 if (props & PROP_gimple_lvec) 3026 fprintf (dump, "PROP_gimple_lvec\n"); 3027 if (props & PROP_cfglayout) 3028 fprintf (dump, "PROP_cfglayout\n"); 3029 } 3030 3031 DEBUG_FUNCTION void 3032 debug_properties (unsigned int props) 3033 { 3034 dump_properties (stderr, props); 3035 } 3036 3037 /* Called by local passes to see if function is called by already processed nodes. 3038 Because we process nodes in topological order, this means that function is 3039 in recursive cycle or we introduced new direct calls. */ 3040 bool 3041 function_called_by_processed_nodes_p (void) 3042 { 3043 struct cgraph_edge *e; 3044 for (e = cgraph_node::get (current_function_decl)->callers; 3045 e; 3046 e = e->next_caller) 3047 { 3048 if (e->caller->decl == current_function_decl) 3049 continue; 3050 if (!e->caller->has_gimple_body_p ()) 3051 continue; 3052 if (TREE_ASM_WRITTEN (e->caller->decl)) 3053 continue; 3054 if (!e->caller->process && !e->caller->inlined_to) 3055 break; 3056 } 3057 if (dump_file && e) 3058 { 3059 fprintf (dump_file, "Already processed call to:\n"); 3060 e->caller->dump (dump_file); 3061 } 3062 return e != NULL; 3063 } 3064