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 "alloc-pool.h" 34 #include "timevar.h" 35 #include "memmodel.h" 36 #include "tm_p.h" 37 #include "optabs-libfuncs.h" 38 #include "insn-config.h" 39 #include "ira.h" 40 #include "recog.h" 41 #include "cgraph.h" 42 #include "coverage.h" 43 #include "diagnostic.h" 44 #include "varasm.h" 45 #include "tree-inline.h" 46 #include "realmpfr.h" /* For GMP/MPFR/MPC versions, in print_version. */ 47 #include "version.h" 48 #include "flags.h" 49 #include "insn-attr.h" 50 #include "output.h" 51 #include "toplev.h" 52 #include "expr.h" 53 #include "intl.h" 54 #include "tree-diagnostic.h" 55 #include "reload.h" 56 #include "lra.h" 57 #include "dwarf2asm.h" 58 #include "debug.h" 59 #include "common/common-target.h" 60 #include "langhooks.h" 61 #include "cfgloop.h" /* for init_set_costs */ 62 #include "hosthooks.h" 63 #include "opts.h" 64 #include "opts-diagnostic.h" 65 #include "stringpool.h" 66 #include "attribs.h" 67 #include "asan.h" 68 #include "tsan.h" 69 #include "plugin.h" 70 #include "context.h" 71 #include "pass_manager.h" 72 #include "auto-profile.h" 73 #include "dwarf2out.h" 74 #include "ipa-reference.h" 75 #include "symbol-summary.h" 76 #include "tree-vrp.h" 77 #include "ipa-prop.h" 78 #include "gcse.h" 79 #include "omp-offload.h" 80 #include "hsa-common.h" 81 #include "edit-context.h" 82 #include "tree-pass.h" 83 #include "dumpfile.h" 84 #include "ipa-fnsummary.h" 85 #include "dump-context.h" 86 #include "print-tree.h" 87 #include "optinfo-emit-json.h" 88 89 #if defined(DBX_DEBUGGING_INFO) || defined(XCOFF_DEBUGGING_INFO) 90 #include "dbxout.h" 91 #endif 92 93 #ifdef XCOFF_DEBUGGING_INFO 94 #include "xcoffout.h" /* Needed for external data declarations. */ 95 #endif 96 97 #include "selftest.h" 98 99 #ifdef HAVE_isl 100 #include <isl/version.h> 101 #endif 102 103 static void general_init (const char *, bool); 104 static void do_compile (); 105 static void process_options (void); 106 static void backend_init (void); 107 static int lang_dependent_init (const char *); 108 static void init_asm_output (const char *); 109 static void finalize (bool); 110 111 static void crash_signal (int) ATTRIBUTE_NORETURN; 112 static void compile_file (void); 113 114 /* True if we don't need a backend (e.g. preprocessing only). */ 115 static bool no_backend; 116 117 /* Length of line when printing switch values. */ 118 #define MAX_LINE 75 119 120 /* Decoded options, and number of such options. */ 121 struct cl_decoded_option *save_decoded_options; 122 unsigned int save_decoded_options_count; 123 124 /* Used to enable -fvar-tracking, -fweb and -frename-registers according 125 to optimize in process_options (). */ 126 #define AUTODETECT_VALUE 2 127 128 /* Debug hooks - dependent upon command line options. */ 129 130 const struct gcc_debug_hooks *debug_hooks; 131 132 /* The FUNCTION_DECL for the function currently being compiled, 133 or 0 if between functions. */ 134 tree current_function_decl; 135 136 /* Set to the FUNC_BEGIN label of the current function, or NULL 137 if none. */ 138 const char * current_function_func_begin_label; 139 140 /* A random sequence of characters, unless overridden by user. */ 141 static const char *flag_random_seed; 142 143 /* A local time stamp derived from the time of compilation. It will be 144 zero if the system cannot provide a time. It will be -1u, if the 145 user has specified a particular random seed. */ 146 unsigned local_tick; 147 148 /* Random number for this compilation */ 149 HOST_WIDE_INT random_seed; 150 151 /* -f flags. */ 152 153 /* When non-NULL, indicates that whenever space is allocated on the 154 stack, the resulting stack pointer must not pass this 155 address---that is, for stacks that grow downward, the stack pointer 156 must always be greater than or equal to this address; for stacks 157 that grow upward, the stack pointer must be less than this address. 158 At present, the rtx may be either a REG or a SYMBOL_REF, although 159 the support provided depends on the backend. */ 160 rtx stack_limit_rtx; 161 162 class target_flag_state default_target_flag_state; 163 #if SWITCHABLE_TARGET 164 class target_flag_state *this_target_flag_state = &default_target_flag_state; 165 #else 166 #define this_target_flag_state (&default_target_flag_state) 167 #endif 168 169 /* The user symbol prefix after having resolved same. */ 170 const char *user_label_prefix; 171 172 /* Output files for assembler code (real compiler output) 173 and debugging dumps. */ 174 175 FILE *asm_out_file; 176 FILE *aux_info_file; 177 FILE *callgraph_info_file = NULL; 178 static bitmap callgraph_info_external_printed; 179 FILE *stack_usage_file = NULL; 180 181 /* The current working directory of a translation. It's generally the 182 directory from which compilation was initiated, but a preprocessed 183 file may specify the original directory in which it was 184 created. */ 185 186 static const char *src_pwd; 187 188 /* Initialize src_pwd with the given string, and return true. If it 189 was already initialized, return false. As a special case, it may 190 be called with a NULL argument to test whether src_pwd has NOT been 191 initialized yet. */ 192 193 bool 194 set_src_pwd (const char *pwd) 195 { 196 if (src_pwd) 197 { 198 if (strcmp (src_pwd, pwd) == 0) 199 return true; 200 else 201 return false; 202 } 203 204 src_pwd = xstrdup (pwd); 205 return true; 206 } 207 208 /* Return the directory from which the translation unit was initiated, 209 in case set_src_pwd() was not called before to assign it a 210 different value. */ 211 212 const char * 213 get_src_pwd (void) 214 { 215 if (! src_pwd) 216 { 217 src_pwd = getpwd (); 218 if (!src_pwd) 219 src_pwd = "."; 220 } 221 222 return src_pwd; 223 } 224 225 /* Called when the start of a function definition is parsed, 226 this function prints on stderr the name of the function. */ 227 void 228 announce_function (tree decl) 229 { 230 if (!quiet_flag) 231 { 232 if (rtl_dump_and_exit) 233 fprintf (stderr, "%s ", 234 identifier_to_locale (IDENTIFIER_POINTER (DECL_NAME (decl)))); 235 else 236 fprintf (stderr, " %s", 237 identifier_to_locale (lang_hooks.decl_printable_name (decl, 2))); 238 fflush (stderr); 239 pp_needs_newline (global_dc->printer) = true; 240 diagnostic_set_last_function (global_dc, (diagnostic_info *) NULL); 241 } 242 } 243 244 /* Initialize local_tick with the time of day, or -1 if 245 flag_random_seed is set. */ 246 247 static void 248 init_local_tick (void) 249 { 250 if (!flag_random_seed) 251 { 252 #ifdef HAVE_GETTIMEOFDAY 253 { 254 struct timeval tv; 255 256 gettimeofday (&tv, NULL); 257 local_tick = (unsigned) tv.tv_sec * 1000 + tv.tv_usec / 1000; 258 } 259 #else 260 { 261 time_t now = time (NULL); 262 263 if (now != (time_t)-1) 264 local_tick = (unsigned) now; 265 } 266 #endif 267 } 268 else 269 local_tick = -1; 270 } 271 272 /* Obtain the random_seed. Unless NOINIT, initialize it if 273 it's not provided in the command line. */ 274 275 HOST_WIDE_INT 276 get_random_seed (bool noinit) 277 { 278 if (!random_seed && !noinit) 279 { 280 int fd = open ("/dev/urandom", O_RDONLY); 281 if (fd >= 0) 282 { 283 if (read (fd, &random_seed, sizeof (random_seed)) 284 != sizeof (random_seed)) 285 random_seed = 0; 286 close (fd); 287 } 288 if (!random_seed) 289 random_seed = local_tick ^ getpid (); 290 } 291 return random_seed; 292 } 293 294 /* Set flag_random_seed to VAL, and if non-null, reinitialize random_seed. */ 295 296 void 297 set_random_seed (const char *val) 298 { 299 flag_random_seed = val; 300 if (flag_random_seed) 301 { 302 char *endp; 303 304 /* When the driver passed in a hex number don't crc it again */ 305 random_seed = strtoul (flag_random_seed, &endp, 0); 306 if (!(endp > flag_random_seed && *endp == 0)) 307 random_seed = crc32_string (0, flag_random_seed); 308 } 309 } 310 311 /* Handler for fatal signals, such as SIGSEGV. These are transformed 312 into ICE messages, which is much more user friendly. In case the 313 error printer crashes, reset the signal to prevent infinite recursion. */ 314 315 static void 316 crash_signal (int signo) 317 { 318 signal (signo, SIG_DFL); 319 320 /* If we crashed while processing an ASM statement, then be a little more 321 graceful. It's most likely the user's fault. */ 322 if (this_is_asm_operands) 323 { 324 output_operand_lossage ("unrecoverable error"); 325 exit (FATAL_EXIT_CODE); 326 } 327 328 internal_error ("%s", strsignal (signo)); 329 } 330 331 /* A subroutine of wrapup_global_declarations. We've come to the end of 332 the compilation unit. All deferred variables should be undeferred, 333 and all incomplete decls should be finalized. */ 334 335 void 336 wrapup_global_declaration_1 (tree decl) 337 { 338 /* We're not deferring this any longer. Assignment is conditional to 339 avoid needlessly dirtying PCH pages. */ 340 if (CODE_CONTAINS_STRUCT (TREE_CODE (decl), TS_DECL_WITH_VIS) 341 && DECL_DEFER_OUTPUT (decl) != 0) 342 DECL_DEFER_OUTPUT (decl) = 0; 343 344 if (VAR_P (decl) && DECL_SIZE (decl) == 0) 345 lang_hooks.finish_incomplete_decl (decl); 346 } 347 348 /* A subroutine of wrapup_global_declarations. Decide whether or not DECL 349 needs to be output. Return true if it is output. */ 350 351 bool 352 wrapup_global_declaration_2 (tree decl) 353 { 354 if (TREE_ASM_WRITTEN (decl) || DECL_EXTERNAL (decl) 355 || (VAR_P (decl) && DECL_HAS_VALUE_EXPR_P (decl))) 356 return false; 357 358 /* Don't write out static consts, unless we still need them. 359 360 We also keep static consts if not optimizing (for debugging), 361 unless the user specified -fno-keep-static-consts. 362 ??? They might be better written into the debug information. 363 This is possible when using DWARF. 364 365 A language processor that wants static constants to be always 366 written out (even if it is not used) is responsible for 367 calling rest_of_decl_compilation itself. E.g. the C front-end 368 calls rest_of_decl_compilation from finish_decl. 369 One motivation for this is that is conventional in some 370 environments to write things like: 371 static const char rcsid[] = "... version string ..."; 372 intending to force the string to be in the executable. 373 374 A language processor that would prefer to have unneeded 375 static constants "optimized away" would just defer writing 376 them out until here. E.g. C++ does this, because static 377 constants are often defined in header files. 378 379 ??? A tempting alternative (for both C and C++) would be 380 to force a constant to be written if and only if it is 381 defined in a main file, as opposed to an include file. */ 382 383 if (VAR_P (decl) && TREE_STATIC (decl)) 384 { 385 varpool_node *node; 386 bool needed = true; 387 node = varpool_node::get (decl); 388 389 if (!node && flag_ltrans) 390 needed = false; 391 else if (node && node->definition) 392 needed = false; 393 else if (node && node->alias) 394 needed = false; 395 else if (!symtab->global_info_ready 396 && (TREE_USED (decl) 397 || TREE_USED (DECL_ASSEMBLER_NAME (decl)))) 398 /* needed */; 399 else if (node && node->analyzed) 400 /* needed */; 401 else if (DECL_COMDAT (decl)) 402 needed = false; 403 else if (TREE_READONLY (decl) && !TREE_PUBLIC (decl) 404 && (optimize || !flag_keep_static_consts 405 || DECL_ARTIFICIAL (decl))) 406 needed = false; 407 408 if (needed) 409 { 410 rest_of_decl_compilation (decl, 1, 1); 411 return true; 412 } 413 } 414 415 return false; 416 } 417 418 /* Do any final processing required for the declarations in VEC, of 419 which there are LEN. We write out inline functions and variables 420 that have been deferred until this point, but which are required. 421 Returns nonzero if anything was put out. */ 422 423 bool 424 wrapup_global_declarations (tree *vec, int len) 425 { 426 bool reconsider, output_something = false; 427 int i; 428 429 for (i = 0; i < len; i++) 430 wrapup_global_declaration_1 (vec[i]); 431 432 /* Now emit any global variables or functions that we have been 433 putting off. We need to loop in case one of the things emitted 434 here references another one which comes earlier in the list. */ 435 do 436 { 437 reconsider = false; 438 for (i = 0; i < len; i++) 439 reconsider |= wrapup_global_declaration_2 (vec[i]); 440 if (reconsider) 441 output_something = true; 442 } 443 while (reconsider); 444 445 return output_something; 446 } 447 448 /* Compile an entire translation unit. Write a file of assembly 449 output and various debugging dumps. */ 450 451 static void 452 compile_file (void) 453 { 454 timevar_start (TV_PHASE_PARSING); 455 timevar_push (TV_PARSE_GLOBAL); 456 457 /* Parse entire file and generate initial debug information. */ 458 lang_hooks.parse_file (); 459 460 timevar_pop (TV_PARSE_GLOBAL); 461 timevar_stop (TV_PHASE_PARSING); 462 463 if (flag_dump_locations) 464 dump_location_info (stderr); 465 466 /* Compilation is now finished except for writing 467 what's left of the symbol table output. */ 468 469 if (flag_syntax_only || flag_wpa) 470 return; 471 472 /* Reset maximum_field_alignment, it can be adjusted by #pragma pack 473 and this shouldn't influence any types built by the middle-end 474 from now on (like gcov_info_type). */ 475 maximum_field_alignment = initial_max_fld_align * BITS_PER_UNIT; 476 477 ggc_protect_identifiers = false; 478 479 /* Run the actual compilation process. */ 480 if (!in_lto_p) 481 { 482 timevar_start (TV_PHASE_OPT_GEN); 483 symtab->finalize_compilation_unit (); 484 timevar_stop (TV_PHASE_OPT_GEN); 485 } 486 487 /* Perform any post compilation-proper parser cleanups and 488 processing. This is currently only needed for the C++ parser, 489 which can be hopefully cleaned up so this hook is no longer 490 necessary. */ 491 if (lang_hooks.decls.post_compilation_parsing_cleanups) 492 lang_hooks.decls.post_compilation_parsing_cleanups (); 493 494 dump_context::get ().finish_any_json_writer (); 495 496 if (seen_error ()) 497 return; 498 499 timevar_start (TV_PHASE_LATE_ASM); 500 501 /* Compilation unit is finalized. When producing non-fat LTO object, we are 502 basically finished. */ 503 if ((in_lto_p && flag_incremental_link != INCREMENTAL_LINK_LTO) 504 || !flag_lto || flag_fat_lto_objects) 505 { 506 /* File-scope initialization for AddressSanitizer. */ 507 if (flag_sanitize & SANITIZE_ADDRESS) 508 asan_finish_file (); 509 510 if (flag_sanitize & SANITIZE_THREAD) 511 tsan_finish_file (); 512 513 omp_finish_file (); 514 515 hsa_output_brig (); 516 517 output_shared_constant_pool (); 518 output_object_blocks (); 519 finish_tm_clone_pairs (); 520 521 /* Write out any pending weak symbol declarations. */ 522 weak_finish (); 523 524 /* This must be at the end before unwind and debug info. 525 Some target ports emit PIC setup thunks here. */ 526 targetm.asm_out.code_end (); 527 528 /* Do dbx symbols. */ 529 timevar_push (TV_SYMOUT); 530 531 #if defined DWARF2_DEBUGGING_INFO || defined DWARF2_UNWIND_INFO 532 dwarf2out_frame_finish (); 533 #endif 534 535 debuginfo_start (); 536 (*debug_hooks->finish) (main_input_filename); 537 debuginfo_stop (); 538 timevar_pop (TV_SYMOUT); 539 540 /* Output some stuff at end of file if nec. */ 541 542 dw2_output_indirect_constants (); 543 544 /* Flush any pending external directives. */ 545 process_pending_assemble_externals (); 546 } 547 548 /* Let linker plugin know that this is a slim object and must be LTOed 549 even when user did not ask for it. */ 550 if (flag_generate_lto && !flag_fat_lto_objects) 551 { 552 #if defined ASM_OUTPUT_ALIGNED_DECL_COMMON 553 ASM_OUTPUT_ALIGNED_DECL_COMMON (asm_out_file, NULL_TREE, "__gnu_lto_slim", 554 HOST_WIDE_INT_1U, 8); 555 #elif defined ASM_OUTPUT_ALIGNED_COMMON 556 ASM_OUTPUT_ALIGNED_COMMON (asm_out_file, "__gnu_lto_slim", 557 HOST_WIDE_INT_1U, 8); 558 #else 559 ASM_OUTPUT_COMMON (asm_out_file, "__gnu_lto_slim", 560 HOST_WIDE_INT_1U, 561 HOST_WIDE_INT_1U); 562 #endif 563 } 564 565 /* Attach a special .ident directive to the end of the file to identify 566 the version of GCC which compiled this code. The format of the .ident 567 string is patterned after the ones produced by native SVR4 compilers. */ 568 if (!flag_no_ident) 569 { 570 const char *pkg_version = "(GNU) "; 571 char *ident_str; 572 573 if (strcmp ("(GCC) ", pkgversion_string)) 574 pkg_version = pkgversion_string; 575 576 ident_str = ACONCAT (("GCC: ", pkg_version, version_string, NULL)); 577 targetm.asm_out.output_ident (ident_str); 578 } 579 580 /* Auto profile finalization. */ 581 if (flag_auto_profile) 582 end_auto_profile (); 583 584 /* Invoke registered plugin callbacks. */ 585 invoke_plugin_callbacks (PLUGIN_FINISH_UNIT, NULL); 586 587 /* This must be at the end. Some target ports emit end of file directives 588 into the assembly file here, and hence we cannot output anything to the 589 assembly file after this point. */ 590 targetm.asm_out.file_end (); 591 592 timevar_stop (TV_PHASE_LATE_ASM); 593 } 594 595 /* Print version information to FILE. 596 Each line begins with INDENT (for the case where FILE is the 597 assembler output file). 598 599 If SHOW_GLOBAL_STATE is true (for cc1 etc), we are within the compiler 600 proper and can print pertinent state (e.g. params and plugins). 601 602 If SHOW_GLOBAL_STATE is false (for use by libgccjit), we are outside the 603 compiler, and we don't hold the mutex on the compiler's global state: 604 we can't print params and plugins, since they might not be initialized, 605 or might be being manipulated by a compile running in another 606 thread. */ 607 608 void 609 print_version (FILE *file, const char *indent, bool show_global_state) 610 { 611 static const char fmt1[] = 612 #ifdef __GNUC__ 613 N_("%s%s%s %sversion %s (%s)\n%s\tcompiled by GNU C version %s, ") 614 #else 615 N_("%s%s%s %sversion %s (%s) compiled by CC, ") 616 #endif 617 ; 618 static const char fmt2[] = 619 N_("GMP version %s, MPFR version %s, MPC version %s, isl version %s\n"); 620 static const char fmt3[] = 621 N_("%s%swarning: %s header version %s differs from library version %s.\n"); 622 static const char fmt4[] = 623 N_("%s%sGGC heuristics: --param ggc-min-expand=%d --param ggc-min-heapsize=%d\n"); 624 #ifndef __VERSION__ 625 #define __VERSION__ "[?]" 626 #endif 627 fprintf (file, 628 file == stderr ? _(fmt1) : fmt1, 629 indent, *indent != 0 ? " " : "", 630 lang_hooks.name, pkgversion_string, version_string, TARGET_NAME, 631 indent, __VERSION__); 632 633 /* We need to stringify the GMP macro values. Ugh, gmp_version has 634 two string formats, "i.j.k" and "i.j" when k is zero. As of 635 gmp-4.3.0, GMP always uses the 3 number format. */ 636 #define GCC_GMP_STRINGIFY_VERSION3(X) #X 637 #define GCC_GMP_STRINGIFY_VERSION2(X) GCC_GMP_STRINGIFY_VERSION3 (X) 638 #define GCC_GMP_VERSION_NUM(X,Y,Z) (((X) << 16L) | ((Y) << 8) | (Z)) 639 #define GCC_GMP_VERSION \ 640 GCC_GMP_VERSION_NUM(__GNU_MP_VERSION, __GNU_MP_VERSION_MINOR, __GNU_MP_VERSION_PATCHLEVEL) 641 #if GCC_GMP_VERSION < GCC_GMP_VERSION_NUM(4,3,0) && __GNU_MP_VERSION_PATCHLEVEL == 0 642 #define GCC_GMP_STRINGIFY_VERSION \ 643 GCC_GMP_STRINGIFY_VERSION2 (__GNU_MP_VERSION) "." \ 644 GCC_GMP_STRINGIFY_VERSION2 (__GNU_MP_VERSION_MINOR) 645 #else 646 #define GCC_GMP_STRINGIFY_VERSION \ 647 GCC_GMP_STRINGIFY_VERSION2 (__GNU_MP_VERSION) "." \ 648 GCC_GMP_STRINGIFY_VERSION2 (__GNU_MP_VERSION_MINOR) "." \ 649 GCC_GMP_STRINGIFY_VERSION2 (__GNU_MP_VERSION_PATCHLEVEL) 650 #endif 651 fprintf (file, 652 file == stderr ? _(fmt2) : fmt2, 653 GCC_GMP_STRINGIFY_VERSION, MPFR_VERSION_STRING, MPC_VERSION_STRING, 654 #ifndef HAVE_isl 655 "none" 656 #else 657 isl_version () 658 #endif 659 ); 660 if (strcmp (GCC_GMP_STRINGIFY_VERSION, gmp_version)) 661 fprintf (file, 662 file == stderr ? _(fmt3) : fmt3, 663 indent, *indent != 0 ? " " : "", 664 "GMP", GCC_GMP_STRINGIFY_VERSION, gmp_version); 665 if (strcmp (MPFR_VERSION_STRING, mpfr_get_version ())) 666 fprintf (file, 667 file == stderr ? _(fmt3) : fmt3, 668 indent, *indent != 0 ? " " : "", 669 "MPFR", MPFR_VERSION_STRING, mpfr_get_version ()); 670 if (strcmp (MPC_VERSION_STRING, mpc_get_version ())) 671 fprintf (file, 672 file == stderr ? _(fmt3) : fmt3, 673 indent, *indent != 0 ? " " : "", 674 "MPC", MPC_VERSION_STRING, mpc_get_version ()); 675 676 if (show_global_state) 677 { 678 fprintf (file, 679 file == stderr ? _(fmt4) : fmt4, 680 indent, *indent != 0 ? " " : "", 681 param_ggc_min_expand, param_ggc_min_heapsize); 682 683 print_plugins_versions (file, indent); 684 } 685 } 686 687 static int 688 print_to_asm_out_file (print_switch_type type, const char * text) 689 { 690 bool prepend_sep = true; 691 692 switch (type) 693 { 694 case SWITCH_TYPE_LINE_END: 695 putc ('\n', asm_out_file); 696 return 1; 697 698 case SWITCH_TYPE_LINE_START: 699 fputs (ASM_COMMENT_START, asm_out_file); 700 return strlen (ASM_COMMENT_START); 701 702 case SWITCH_TYPE_DESCRIPTIVE: 703 if (ASM_COMMENT_START[0] == 0) 704 prepend_sep = false; 705 /* FALLTHRU */ 706 case SWITCH_TYPE_PASSED: 707 case SWITCH_TYPE_ENABLED: 708 if (prepend_sep) 709 fputc (' ', asm_out_file); 710 fputs (text, asm_out_file); 711 /* No need to return the length here as 712 print_single_switch has already done it. */ 713 return 0; 714 715 default: 716 return -1; 717 } 718 } 719 720 static int 721 print_to_stderr (print_switch_type type, const char * text) 722 { 723 switch (type) 724 { 725 case SWITCH_TYPE_LINE_END: 726 putc ('\n', stderr); 727 return 1; 728 729 case SWITCH_TYPE_LINE_START: 730 return 0; 731 732 case SWITCH_TYPE_PASSED: 733 case SWITCH_TYPE_ENABLED: 734 fputc (' ', stderr); 735 /* FALLTHRU */ 736 737 case SWITCH_TYPE_DESCRIPTIVE: 738 fputs (text, stderr); 739 /* No need to return the length here as 740 print_single_switch has already done it. */ 741 return 0; 742 743 default: 744 return -1; 745 } 746 } 747 748 /* Print an option value and return the adjusted position in the line. 749 ??? print_fn doesn't handle errors, eg disk full; presumably other 750 code will catch a disk full though. */ 751 752 static int 753 print_single_switch (print_switch_fn_type print_fn, 754 int pos, 755 print_switch_type type, 756 const char * text) 757 { 758 /* The ultrix fprintf returns 0 on success, so compute the result 759 we want here since we need it for the following test. The +1 760 is for the separator character that will probably be emitted. */ 761 int len = strlen (text) + 1; 762 763 if (pos != 0 764 && pos + len > MAX_LINE) 765 { 766 print_fn (SWITCH_TYPE_LINE_END, NULL); 767 pos = 0; 768 } 769 770 if (pos == 0) 771 pos += print_fn (SWITCH_TYPE_LINE_START, NULL); 772 773 print_fn (type, text); 774 return pos + len; 775 } 776 777 /* Print active target switches using PRINT_FN. 778 POS is the current cursor position and MAX is the size of a "line". 779 Each line begins with INDENT and ends with TERM. 780 Each switch is separated from the next by SEP. */ 781 782 static void 783 print_switch_values (print_switch_fn_type print_fn) 784 { 785 int pos = 0; 786 size_t j; 787 788 /* Print the options as passed. */ 789 pos = print_single_switch (print_fn, pos, 790 SWITCH_TYPE_DESCRIPTIVE, _("options passed: ")); 791 792 for (j = 1; j < save_decoded_options_count; j++) 793 { 794 switch (save_decoded_options[j].opt_index) 795 { 796 case OPT_o: 797 case OPT_d: 798 case OPT_dumpbase: 799 case OPT_dumpdir: 800 case OPT_auxbase: 801 case OPT_quiet: 802 case OPT_version: 803 /* Ignore these. */ 804 continue; 805 } 806 807 pos = print_single_switch (print_fn, pos, SWITCH_TYPE_PASSED, 808 save_decoded_options[j].orig_option_with_args_text); 809 } 810 811 if (pos > 0) 812 print_fn (SWITCH_TYPE_LINE_END, NULL); 813 814 /* Print the -f and -m options that have been enabled. 815 We don't handle language specific options but printing argv 816 should suffice. */ 817 pos = print_single_switch (print_fn, 0, 818 SWITCH_TYPE_DESCRIPTIVE, _("options enabled: ")); 819 820 unsigned lang_mask = lang_hooks.option_lang_mask (); 821 for (j = 0; j < cl_options_count; j++) 822 if (cl_options[j].cl_report 823 && option_enabled (j, lang_mask, &global_options) > 0) 824 pos = print_single_switch (print_fn, pos, 825 SWITCH_TYPE_ENABLED, cl_options[j].opt_text); 826 827 print_fn (SWITCH_TYPE_LINE_END, NULL); 828 } 829 830 /* Open assembly code output file. Do this even if -fsyntax-only is 831 on, because then the driver will have provided the name of a 832 temporary file or bit bucket for us. NAME is the file specified on 833 the command line, possibly NULL. */ 834 static void 835 init_asm_output (const char *name) 836 { 837 if (name == NULL && asm_file_name == 0) 838 asm_out_file = stdout; 839 else 840 { 841 if (asm_file_name == 0) 842 { 843 int len = strlen (dump_base_name); 844 char *dumpname = XNEWVEC (char, len + 6); 845 846 memcpy (dumpname, dump_base_name, len + 1); 847 strip_off_ending (dumpname, len); 848 strcat (dumpname, ".s"); 849 asm_file_name = dumpname; 850 } 851 if (!strcmp (asm_file_name, "-")) 852 asm_out_file = stdout; 853 else if (!canonical_filename_eq (asm_file_name, name) 854 || !strcmp (asm_file_name, HOST_BIT_BUCKET)) 855 asm_out_file = fopen (asm_file_name, "w"); 856 else 857 /* Use UNKOWN_LOCATION to prevent gcc from printing the first 858 line in the current file. */ 859 fatal_error (UNKNOWN_LOCATION, 860 "input file %qs is the same as output file", 861 asm_file_name); 862 if (asm_out_file == 0) 863 fatal_error (UNKNOWN_LOCATION, 864 "cannot open %qs for writing: %m", asm_file_name); 865 } 866 867 if (!flag_syntax_only) 868 { 869 targetm.asm_out.file_start (); 870 871 if (flag_record_gcc_switches) 872 { 873 if (targetm.asm_out.record_gcc_switches) 874 { 875 /* Let the target know that we are about to start recording. */ 876 targetm.asm_out.record_gcc_switches (SWITCH_TYPE_DESCRIPTIVE, 877 NULL); 878 /* Now record the switches. */ 879 print_switch_values (targetm.asm_out.record_gcc_switches); 880 /* Let the target know that the recording is over. */ 881 targetm.asm_out.record_gcc_switches (SWITCH_TYPE_DESCRIPTIVE, 882 NULL); 883 } 884 else 885 inform (UNKNOWN_LOCATION, 886 "%<-frecord-gcc-switches%> is not supported by " 887 "the current target"); 888 } 889 890 if (flag_verbose_asm) 891 { 892 /* Print the list of switches in effect 893 into the assembler file as comments. */ 894 print_version (asm_out_file, ASM_COMMENT_START, true); 895 print_switch_values (print_to_asm_out_file); 896 putc ('\n', asm_out_file); 897 } 898 } 899 } 900 901 /* A helper function; used as the reallocator function for cpp's line 902 table. */ 903 static void * 904 realloc_for_line_map (void *ptr, size_t len) 905 { 906 return ggc_realloc (ptr, len); 907 } 908 909 /* A helper function: used as the allocator function for 910 identifier_to_locale. */ 911 static void * 912 alloc_for_identifier_to_locale (size_t len) 913 { 914 return ggc_alloc_atomic (len); 915 } 916 917 /* Output stack usage information. */ 918 static void 919 output_stack_usage_1 (FILE *cf) 920 { 921 static bool warning_issued = false; 922 enum stack_usage_kind_type { STATIC = 0, DYNAMIC, DYNAMIC_BOUNDED }; 923 const char *stack_usage_kind_str[] = { 924 "static", 925 "dynamic", 926 "dynamic,bounded" 927 }; 928 HOST_WIDE_INT stack_usage = current_function_static_stack_size; 929 enum stack_usage_kind_type stack_usage_kind; 930 931 if (stack_usage < 0) 932 { 933 if (!warning_issued) 934 { 935 warning (0, "stack usage computation not supported for this target"); 936 warning_issued = true; 937 } 938 return; 939 } 940 941 stack_usage_kind = STATIC; 942 943 /* Add the maximum amount of space pushed onto the stack. */ 944 if (maybe_ne (current_function_pushed_stack_size, 0)) 945 { 946 HOST_WIDE_INT extra; 947 if (current_function_pushed_stack_size.is_constant (&extra)) 948 { 949 stack_usage += extra; 950 stack_usage_kind = DYNAMIC_BOUNDED; 951 } 952 else 953 { 954 extra = constant_lower_bound (current_function_pushed_stack_size); 955 stack_usage += extra; 956 stack_usage_kind = DYNAMIC; 957 } 958 } 959 960 /* Now on to the tricky part: dynamic stack allocation. */ 961 if (current_function_allocates_dynamic_stack_space) 962 { 963 if (stack_usage_kind != DYNAMIC) 964 { 965 if (current_function_has_unbounded_dynamic_stack_size) 966 stack_usage_kind = DYNAMIC; 967 else 968 stack_usage_kind = DYNAMIC_BOUNDED; 969 } 970 971 /* Add the size even in the unbounded case, this can't hurt. */ 972 stack_usage += current_function_dynamic_stack_size; 973 } 974 975 if (cf && flag_callgraph_info & CALLGRAPH_INFO_STACK_USAGE) 976 fprintf (cf, "\\n" HOST_WIDE_INT_PRINT_DEC " bytes (%s)", 977 stack_usage, 978 stack_usage_kind_str[stack_usage_kind]); 979 980 if (stack_usage_file) 981 { 982 print_decl_identifier (stack_usage_file, current_function_decl, 983 PRINT_DECL_ORIGIN | PRINT_DECL_NAME); 984 fprintf (stack_usage_file, "\t" HOST_WIDE_INT_PRINT_DEC"\t%s\n", 985 stack_usage, stack_usage_kind_str[stack_usage_kind]); 986 } 987 988 if (warn_stack_usage >= 0 && warn_stack_usage < HOST_WIDE_INT_MAX) 989 { 990 const location_t loc = DECL_SOURCE_LOCATION (current_function_decl); 991 992 if (stack_usage_kind == DYNAMIC) 993 warning_at (loc, OPT_Wstack_usage_, "stack usage might be unbounded"); 994 else if (stack_usage > warn_stack_usage) 995 { 996 if (stack_usage_kind == DYNAMIC_BOUNDED) 997 warning_at (loc, 998 OPT_Wstack_usage_, "stack usage might be %wu bytes", 999 stack_usage); 1000 else 1001 warning_at (loc, OPT_Wstack_usage_, "stack usage is %wu bytes", 1002 stack_usage); 1003 } 1004 } 1005 } 1006 1007 /* Dump placeholder node for indirect calls in VCG format. */ 1008 1009 #define INDIRECT_CALL_NAME "__indirect_call" 1010 1011 static void 1012 dump_final_node_vcg_start (FILE *f, tree decl) 1013 { 1014 fputs ("node: { title: \"", f); 1015 if (decl) 1016 print_decl_identifier (f, decl, PRINT_DECL_UNIQUE_NAME); 1017 else 1018 fputs (INDIRECT_CALL_NAME, f); 1019 fputs ("\" label: \"", f); 1020 if (decl) 1021 { 1022 print_decl_identifier (f, decl, PRINT_DECL_NAME); 1023 fputs ("\\n", f); 1024 print_decl_identifier (f, decl, PRINT_DECL_ORIGIN); 1025 } 1026 else 1027 fputs ("Indirect Call Placeholder", f); 1028 } 1029 1030 /* Dump final cgraph edge in VCG format. */ 1031 1032 static void 1033 dump_final_callee_vcg (FILE *f, location_t location, tree callee) 1034 { 1035 if ((!callee || DECL_EXTERNAL (callee)) 1036 && bitmap_set_bit (callgraph_info_external_printed, 1037 callee ? DECL_UID (callee) + 1 : 0)) 1038 { 1039 dump_final_node_vcg_start (f, callee); 1040 fputs ("\" shape : ellipse }\n", f); 1041 } 1042 1043 fputs ("edge: { sourcename: \"", f); 1044 print_decl_identifier (f, current_function_decl, PRINT_DECL_UNIQUE_NAME); 1045 fputs ("\" targetname: \"", f); 1046 if (callee) 1047 print_decl_identifier (f, callee, PRINT_DECL_UNIQUE_NAME); 1048 else 1049 fputs (INDIRECT_CALL_NAME, f); 1050 if (LOCATION_LOCUS (location) != UNKNOWN_LOCATION) 1051 { 1052 expanded_location loc; 1053 fputs ("\" label: \"", f); 1054 loc = expand_location (location); 1055 fprintf (f, "%s:%d:%d", loc.file, loc.line, loc.column); 1056 } 1057 fputs ("\" }\n", f); 1058 } 1059 1060 /* Dump final cgraph node in VCG format. */ 1061 1062 static void 1063 dump_final_node_vcg (FILE *f) 1064 { 1065 dump_final_node_vcg_start (f, current_function_decl); 1066 1067 if (flag_stack_usage_info 1068 || (flag_callgraph_info & CALLGRAPH_INFO_STACK_USAGE)) 1069 output_stack_usage_1 (f); 1070 1071 if (flag_callgraph_info & CALLGRAPH_INFO_DYNAMIC_ALLOC) 1072 { 1073 fprintf (f, "\\n%u dynamic objects", vec_safe_length (cfun->su->dallocs)); 1074 1075 unsigned i; 1076 callinfo_dalloc *cda; 1077 FOR_EACH_VEC_SAFE_ELT (cfun->su->dallocs, i, cda) 1078 { 1079 expanded_location loc = expand_location (cda->location); 1080 fprintf (f, "\\n %s", cda->name); 1081 fprintf (f, " %s:%d:%d", loc.file, loc.line, loc.column); 1082 } 1083 1084 vec_free (cfun->su->dallocs); 1085 cfun->su->dallocs = NULL; 1086 } 1087 1088 fputs ("\" }\n", f); 1089 1090 unsigned i; 1091 callinfo_callee *c; 1092 FOR_EACH_VEC_SAFE_ELT (cfun->su->callees, i, c) 1093 dump_final_callee_vcg (f, c->location, c->decl); 1094 vec_free (cfun->su->callees); 1095 cfun->su->callees = NULL; 1096 } 1097 1098 /* Output stack usage and callgraph info, as requested. */ 1099 void 1100 output_stack_usage (void) 1101 { 1102 if (flag_callgraph_info) 1103 dump_final_node_vcg (callgraph_info_file); 1104 else 1105 output_stack_usage_1 (NULL); 1106 } 1107 1108 /* Open an auxiliary output file. */ 1109 static FILE * 1110 open_auxiliary_file (const char *ext) 1111 { 1112 char *filename; 1113 FILE *file; 1114 1115 filename = concat (aux_base_name, ".", ext, NULL); 1116 file = fopen (filename, "w"); 1117 if (!file) 1118 fatal_error (input_location, "cannot open %s for writing: %m", filename); 1119 free (filename); 1120 return file; 1121 } 1122 1123 /* Alternative diagnostics callback for reentered ICE reporting. */ 1124 1125 static void 1126 internal_error_reentered (diagnostic_context *, const char *, va_list *) 1127 { 1128 /* Flush the dump file if emergency_dump_function itself caused an ICE. */ 1129 if (dump_file) 1130 fflush (dump_file); 1131 } 1132 1133 /* Auxiliary callback for the diagnostics code. */ 1134 1135 static void 1136 internal_error_function (diagnostic_context *, const char *, va_list *) 1137 { 1138 global_dc->internal_error = internal_error_reentered; 1139 warn_if_plugins (); 1140 emergency_dump_function (); 1141 } 1142 1143 /* Initialization of the front end environment, before command line 1144 options are parsed. Signal handlers, internationalization etc. 1145 ARGV0 is main's argv[0]. */ 1146 static void 1147 general_init (const char *argv0, bool init_signals) 1148 { 1149 const char *p; 1150 1151 p = argv0 + strlen (argv0); 1152 while (p != argv0 && !IS_DIR_SEPARATOR (p[-1])) 1153 --p; 1154 progname = p; 1155 1156 xmalloc_set_program_name (progname); 1157 1158 hex_init (); 1159 1160 /* Unlock the stdio streams. */ 1161 unlock_std_streams (); 1162 1163 gcc_init_libintl (); 1164 1165 identifier_to_locale_alloc = alloc_for_identifier_to_locale; 1166 identifier_to_locale_free = ggc_free; 1167 1168 /* Initialize the diagnostics reporting machinery, so option parsing 1169 can give warnings and errors. */ 1170 diagnostic_initialize (global_dc, N_OPTS); 1171 global_dc->lang_mask = lang_hooks.option_lang_mask (); 1172 /* Set a default printer. Language specific initializations will 1173 override it later. */ 1174 tree_diagnostics_defaults (global_dc); 1175 1176 global_dc->show_caret 1177 = global_options_init.x_flag_diagnostics_show_caret; 1178 global_dc->show_labels_p 1179 = global_options_init.x_flag_diagnostics_show_labels; 1180 global_dc->show_line_numbers_p 1181 = global_options_init.x_flag_diagnostics_show_line_numbers; 1182 global_dc->show_cwe 1183 = global_options_init.x_flag_diagnostics_show_cwe; 1184 global_dc->path_format 1185 = (enum diagnostic_path_format)global_options_init.x_flag_diagnostics_path_format; 1186 global_dc->show_path_depths 1187 = global_options_init.x_flag_diagnostics_show_path_depths; 1188 global_dc->show_option_requested 1189 = global_options_init.x_flag_diagnostics_show_option; 1190 global_dc->min_margin_width 1191 = global_options_init.x_diagnostics_minimum_margin_width; 1192 global_dc->show_column 1193 = global_options_init.x_flag_show_column; 1194 global_dc->internal_error = internal_error_function; 1195 global_dc->option_enabled = option_enabled; 1196 global_dc->option_state = &global_options; 1197 global_dc->option_name = option_name; 1198 global_dc->get_option_url = get_option_url; 1199 1200 if (init_signals) 1201 { 1202 /* Trap fatal signals, e.g. SIGSEGV, and convert them to ICE messages. */ 1203 #ifdef SIGSEGV 1204 signal (SIGSEGV, crash_signal); 1205 #endif 1206 #ifdef SIGILL 1207 signal (SIGILL, crash_signal); 1208 #endif 1209 #ifdef SIGBUS 1210 signal (SIGBUS, crash_signal); 1211 #endif 1212 #ifdef SIGABRT 1213 signal (SIGABRT, crash_signal); 1214 #endif 1215 #if defined SIGIOT && (!defined SIGABRT || SIGABRT != SIGIOT) 1216 signal (SIGIOT, crash_signal); 1217 #endif 1218 #ifdef SIGFPE 1219 signal (SIGFPE, crash_signal); 1220 #endif 1221 1222 /* Other host-specific signal setup. */ 1223 (*host_hooks.extra_signals)(); 1224 } 1225 1226 /* Initialize the garbage-collector, string pools and tree type hash 1227 table. */ 1228 init_ggc (); 1229 init_stringpool (); 1230 input_location = UNKNOWN_LOCATION; 1231 line_table = ggc_alloc<line_maps> (); 1232 linemap_init (line_table, BUILTINS_LOCATION); 1233 line_table->reallocator = realloc_for_line_map; 1234 line_table->round_alloc_size = ggc_round_alloc_size; 1235 line_table->default_range_bits = 5; 1236 init_ttree (); 1237 1238 /* Initialize register usage now so switches may override. */ 1239 init_reg_sets (); 1240 1241 /* Create the singleton holder for global state. This creates the 1242 dump manager. */ 1243 g = new gcc::context (); 1244 1245 /* Allow languages and middle-end to register their dumps before the 1246 optimization passes. */ 1247 g->get_dumps ()->register_dumps (); 1248 1249 /* Create the passes. */ 1250 g->set_passes (new gcc::pass_manager (g)); 1251 1252 symtab = new (ggc_alloc <symbol_table> ()) symbol_table (); 1253 1254 statistics_early_init (); 1255 debuginfo_early_init (); 1256 } 1257 1258 /* Return true if the current target supports -fsection-anchors. */ 1259 1260 static bool 1261 target_supports_section_anchors_p (void) 1262 { 1263 if (targetm.min_anchor_offset == 0 && targetm.max_anchor_offset == 0) 1264 return false; 1265 1266 if (targetm.asm_out.output_anchor == NULL) 1267 return false; 1268 1269 return true; 1270 } 1271 1272 /* Parse "N[:M][:...]" into struct align_flags A. 1273 VALUES contains parsed values (in reverse order), all processed 1274 values are popped. */ 1275 1276 static void 1277 read_log_maxskip (auto_vec<unsigned> &values, align_flags_tuple *a) 1278 { 1279 unsigned n = values.pop (); 1280 if (n != 0) 1281 a->log = floor_log2 (n * 2 - 1); 1282 1283 if (values.is_empty ()) 1284 a->maxskip = n ? n - 1 : 0; 1285 else 1286 { 1287 unsigned m = values.pop (); 1288 /* -falign-foo=N:M means M-1 max bytes of padding, not M. */ 1289 if (m > 0) 1290 m--; 1291 a->maxskip = m; 1292 } 1293 1294 /* Normalize the tuple. */ 1295 a->normalize (); 1296 } 1297 1298 /* Parse "N[:M[:N2[:M2]]]" string FLAG into a pair of struct align_flags. */ 1299 1300 static void 1301 parse_N_M (const char *flag, align_flags &a) 1302 { 1303 if (flag) 1304 { 1305 static hash_map <nofree_string_hash, align_flags> cache; 1306 align_flags *entry = cache.get (flag); 1307 if (entry) 1308 { 1309 a = *entry; 1310 return; 1311 } 1312 1313 auto_vec<unsigned> result_values; 1314 bool r = parse_and_check_align_values (flag, NULL, result_values, false, 1315 UNKNOWN_LOCATION); 1316 if (!r) 1317 return; 1318 1319 /* Reverse values for easier manipulation. */ 1320 result_values.reverse (); 1321 1322 read_log_maxskip (result_values, &a.levels[0]); 1323 if (!result_values.is_empty ()) 1324 read_log_maxskip (result_values, &a.levels[1]); 1325 #ifdef SUBALIGN_LOG 1326 else 1327 { 1328 /* N2[:M2] is not specified. This arch has a default for N2. 1329 Before -falign-foo=N:M:N2:M2 was introduced, x86 had a tweak. 1330 -falign-functions=N with N > 8 was adding secondary alignment. 1331 -falign-functions=10 was emitting this before every function: 1332 .p2align 4,,9 1333 .p2align 3 1334 Now this behavior (and more) can be explicitly requested: 1335 -falign-functions=16:10:8 1336 Retain old behavior if N2 is missing: */ 1337 1338 int align = 1 << a.levels[0].log; 1339 int subalign = 1 << SUBALIGN_LOG; 1340 1341 if (a.levels[0].log > SUBALIGN_LOG 1342 && a.levels[0].maxskip >= subalign - 1) 1343 { 1344 /* Set N2 unless subalign can never have any effect. */ 1345 if (align > a.levels[0].maxskip + 1) 1346 { 1347 a.levels[1].log = SUBALIGN_LOG; 1348 a.levels[1].normalize (); 1349 } 1350 } 1351 } 1352 #endif 1353 1354 /* Cache seen value. */ 1355 cache.put (flag, a); 1356 } 1357 } 1358 1359 /* Process -falign-foo=N[:M[:N2[:M2]]] options. */ 1360 1361 void 1362 parse_alignment_opts (void) 1363 { 1364 parse_N_M (str_align_loops, align_loops); 1365 parse_N_M (str_align_jumps, align_jumps); 1366 parse_N_M (str_align_labels, align_labels); 1367 parse_N_M (str_align_functions, align_functions); 1368 } 1369 1370 /* Process the options that have been parsed. */ 1371 static void 1372 process_options (void) 1373 { 1374 /* Just in case lang_hooks.post_options ends up calling a debug_hook. 1375 This can happen with incorrect pre-processed input. */ 1376 debug_hooks = &do_nothing_debug_hooks; 1377 1378 maximum_field_alignment = initial_max_fld_align * BITS_PER_UNIT; 1379 1380 /* Allow the front end to perform consistency checks and do further 1381 initialization based on the command line options. This hook also 1382 sets the original filename if appropriate (e.g. foo.i -> foo.c) 1383 so we can correctly initialize debug output. */ 1384 no_backend = lang_hooks.post_options (&main_input_filename); 1385 1386 /* Some machines may reject certain combinations of options. */ 1387 location_t saved_location = input_location; 1388 input_location = UNKNOWN_LOCATION; 1389 targetm.target_option.override (); 1390 input_location = saved_location; 1391 1392 if (flag_diagnostics_generate_patch) 1393 global_dc->edit_context_ptr = new edit_context (); 1394 1395 /* Avoid any informative notes in the second run of -fcompare-debug. */ 1396 if (flag_compare_debug) 1397 diagnostic_inhibit_notes (global_dc); 1398 1399 if (flag_section_anchors && !target_supports_section_anchors_p ()) 1400 { 1401 warning_at (UNKNOWN_LOCATION, OPT_fsection_anchors, 1402 "this target does not support %qs", 1403 "-fsection-anchors"); 1404 flag_section_anchors = 0; 1405 } 1406 1407 if (flag_short_enums == 2) 1408 flag_short_enums = targetm.default_short_enums (); 1409 1410 /* Set aux_base_name if not already set. */ 1411 if (aux_base_name) 1412 ; 1413 else if (main_input_filename) 1414 { 1415 char *name = xstrdup (lbasename (main_input_filename)); 1416 1417 strip_off_ending (name, strlen (name)); 1418 aux_base_name = name; 1419 } 1420 else 1421 aux_base_name = "gccaux"; 1422 1423 #ifndef HAVE_isl 1424 if (flag_graphite 1425 || flag_loop_nest_optimize 1426 || flag_graphite_identity 1427 || flag_loop_parallelize_all) 1428 sorry ("Graphite loop optimizations cannot be used (isl is not available) " 1429 "(%<-fgraphite%>, %<-fgraphite-identity%>, " 1430 "%<-floop-nest-optimize%>, %<-floop-parallelize-all%>)"); 1431 #endif 1432 1433 if (flag_cf_protection != CF_NONE 1434 && !(flag_cf_protection & CF_SET)) 1435 { 1436 if (flag_cf_protection == CF_FULL) 1437 { 1438 error_at (UNKNOWN_LOCATION, 1439 "%<-fcf-protection=full%> is not supported for this " 1440 "target"); 1441 flag_cf_protection = CF_NONE; 1442 } 1443 if (flag_cf_protection == CF_BRANCH) 1444 { 1445 error_at (UNKNOWN_LOCATION, 1446 "%<-fcf-protection=branch%> is not supported for this " 1447 "target"); 1448 flag_cf_protection = CF_NONE; 1449 } 1450 if (flag_cf_protection == CF_RETURN) 1451 { 1452 error_at (UNKNOWN_LOCATION, 1453 "%<-fcf-protection=return%> is not supported for this " 1454 "target"); 1455 flag_cf_protection = CF_NONE; 1456 } 1457 } 1458 1459 /* One region RA really helps to decrease the code size. */ 1460 if (flag_ira_region == IRA_REGION_AUTODETECT) 1461 flag_ira_region 1462 = optimize_size || !optimize ? IRA_REGION_ONE : IRA_REGION_MIXED; 1463 1464 if (!abi_version_at_least (2)) 1465 { 1466 /* -fabi-version=1 support was removed after GCC 4.9. */ 1467 error_at (UNKNOWN_LOCATION, 1468 "%<-fabi-version=1%> is no longer supported"); 1469 flag_abi_version = 2; 1470 } 1471 1472 /* web and rename-registers help when run after loop unrolling. */ 1473 if (flag_web == AUTODETECT_VALUE) 1474 flag_web = flag_unroll_loops; 1475 1476 if (flag_rename_registers == AUTODETECT_VALUE) 1477 flag_rename_registers = flag_unroll_loops; 1478 1479 if (flag_non_call_exceptions) 1480 flag_asynchronous_unwind_tables = 1; 1481 if (flag_asynchronous_unwind_tables) 1482 flag_unwind_tables = 1; 1483 1484 if (flag_value_profile_transformations) 1485 flag_profile_values = 1; 1486 1487 /* Warn about options that are not supported on this machine. */ 1488 #ifndef INSN_SCHEDULING 1489 if (flag_schedule_insns || flag_schedule_insns_after_reload) 1490 warning_at (UNKNOWN_LOCATION, 0, 1491 "instruction scheduling not supported on this target machine"); 1492 #endif 1493 if (!DELAY_SLOTS && flag_delayed_branch) 1494 warning_at (UNKNOWN_LOCATION, 0, 1495 "this target machine does not have delayed branches"); 1496 1497 user_label_prefix = USER_LABEL_PREFIX; 1498 if (flag_leading_underscore != -1) 1499 { 1500 /* If the default prefix is more complicated than "" or "_", 1501 issue a warning and ignore this option. */ 1502 if (user_label_prefix[0] == 0 || 1503 (user_label_prefix[0] == '_' && user_label_prefix[1] == 0)) 1504 { 1505 user_label_prefix = flag_leading_underscore ? "_" : ""; 1506 } 1507 else 1508 warning_at (UNKNOWN_LOCATION, 0, 1509 "%<-f%sleading-underscore%> not supported on this " 1510 "target machine", flag_leading_underscore ? "" : "no-"); 1511 } 1512 1513 /* If we are in verbose mode, write out the version and maybe all the 1514 option flags in use. */ 1515 if (version_flag) 1516 { 1517 print_version (stderr, "", true); 1518 if (! quiet_flag) 1519 print_switch_values (print_to_stderr); 1520 } 1521 1522 if (flag_syntax_only) 1523 { 1524 write_symbols = NO_DEBUG; 1525 profile_flag = 0; 1526 } 1527 1528 if (flag_gtoggle) 1529 { 1530 if (debug_info_level == DINFO_LEVEL_NONE) 1531 { 1532 debug_info_level = DINFO_LEVEL_NORMAL; 1533 1534 if (write_symbols == NO_DEBUG) 1535 write_symbols = PREFERRED_DEBUGGING_TYPE; 1536 } 1537 else 1538 debug_info_level = DINFO_LEVEL_NONE; 1539 } 1540 1541 if (flag_dump_final_insns && !flag_syntax_only && !no_backend) 1542 { 1543 FILE *final_output = fopen (flag_dump_final_insns, "w"); 1544 if (!final_output) 1545 { 1546 error_at (UNKNOWN_LOCATION, 1547 "could not open final insn dump file %qs: %m", 1548 flag_dump_final_insns); 1549 flag_dump_final_insns = NULL; 1550 } 1551 else if (fclose (final_output)) 1552 { 1553 error_at (UNKNOWN_LOCATION, 1554 "could not close zeroed insn dump file %qs: %m", 1555 flag_dump_final_insns); 1556 flag_dump_final_insns = NULL; 1557 } 1558 } 1559 1560 /* A lot of code assumes write_symbols == NO_DEBUG if the debugging 1561 level is 0. */ 1562 if (debug_info_level == DINFO_LEVEL_NONE) 1563 write_symbols = NO_DEBUG; 1564 1565 if (write_symbols == NO_DEBUG) 1566 ; 1567 #if defined(DBX_DEBUGGING_INFO) 1568 else if (write_symbols == DBX_DEBUG) 1569 debug_hooks = &dbx_debug_hooks; 1570 #endif 1571 #if defined(XCOFF_DEBUGGING_INFO) 1572 else if (write_symbols == XCOFF_DEBUG) 1573 debug_hooks = &xcoff_debug_hooks; 1574 #endif 1575 #ifdef DWARF2_DEBUGGING_INFO 1576 else if (write_symbols == DWARF2_DEBUG) 1577 debug_hooks = &dwarf2_debug_hooks; 1578 #endif 1579 #ifdef VMS_DEBUGGING_INFO 1580 else if (write_symbols == VMS_DEBUG || write_symbols == VMS_AND_DWARF2_DEBUG) 1581 debug_hooks = &vmsdbg_debug_hooks; 1582 #endif 1583 #ifdef DWARF2_LINENO_DEBUGGING_INFO 1584 else if (write_symbols == DWARF2_DEBUG) 1585 debug_hooks = &dwarf2_lineno_debug_hooks; 1586 #endif 1587 else 1588 error_at (UNKNOWN_LOCATION, 1589 "target system does not support the %qs debug format", 1590 debug_type_names[write_symbols]); 1591 1592 /* We know which debug output will be used so we can set flag_var_tracking 1593 and flag_var_tracking_uninit if the user has not specified them. */ 1594 if (debug_info_level < DINFO_LEVEL_NORMAL 1595 || debug_hooks->var_location == do_nothing_debug_hooks.var_location) 1596 { 1597 if (flag_var_tracking == 1 1598 || flag_var_tracking_uninit == 1) 1599 { 1600 if (debug_info_level < DINFO_LEVEL_NORMAL) 1601 warning_at (UNKNOWN_LOCATION, 0, 1602 "variable tracking requested, but useless unless " 1603 "producing debug info"); 1604 else 1605 warning_at (UNKNOWN_LOCATION, 0, 1606 "variable tracking requested, but not supported " 1607 "by this debug format"); 1608 } 1609 flag_var_tracking = 0; 1610 flag_var_tracking_uninit = 0; 1611 } 1612 1613 /* The debug hooks are used to implement -fdump-go-spec because it 1614 gives a simple and stable API for all the information we need to 1615 dump. */ 1616 if (flag_dump_go_spec != NULL) 1617 debug_hooks = dump_go_spec_init (flag_dump_go_spec, debug_hooks); 1618 1619 /* If the user specifically requested variable tracking with tagging 1620 uninitialized variables, we need to turn on variable tracking. 1621 (We already determined above that variable tracking is feasible.) */ 1622 if (flag_var_tracking_uninit == 1) 1623 flag_var_tracking = 1; 1624 1625 if (flag_var_tracking == AUTODETECT_VALUE) 1626 flag_var_tracking = optimize >= 1; 1627 1628 if (flag_var_tracking_uninit == AUTODETECT_VALUE) 1629 flag_var_tracking_uninit = flag_var_tracking; 1630 1631 if (flag_var_tracking_assignments == AUTODETECT_VALUE) 1632 flag_var_tracking_assignments 1633 = (flag_var_tracking 1634 && !(flag_selective_scheduling || flag_selective_scheduling2)); 1635 1636 if (flag_var_tracking_assignments_toggle) 1637 flag_var_tracking_assignments = !flag_var_tracking_assignments; 1638 1639 if (flag_var_tracking_assignments && !flag_var_tracking) 1640 flag_var_tracking = flag_var_tracking_assignments = -1; 1641 1642 if (flag_var_tracking_assignments 1643 && (flag_selective_scheduling || flag_selective_scheduling2)) 1644 warning_at (UNKNOWN_LOCATION, 0, 1645 "var-tracking-assignments changes selective scheduling"); 1646 1647 if (debug_nonbind_markers_p == AUTODETECT_VALUE) 1648 debug_nonbind_markers_p 1649 = (optimize 1650 && debug_info_level >= DINFO_LEVEL_NORMAL 1651 && (write_symbols == DWARF2_DEBUG 1652 || write_symbols == VMS_AND_DWARF2_DEBUG) 1653 && !(flag_selective_scheduling || flag_selective_scheduling2)); 1654 1655 if (dwarf2out_as_loc_support == AUTODETECT_VALUE) 1656 dwarf2out_as_loc_support 1657 = dwarf2out_default_as_loc_support (); 1658 if (dwarf2out_as_locview_support == AUTODETECT_VALUE) 1659 dwarf2out_as_locview_support 1660 = dwarf2out_default_as_locview_support (); 1661 1662 if (debug_variable_location_views == AUTODETECT_VALUE) 1663 { 1664 debug_variable_location_views 1665 = (flag_var_tracking 1666 && debug_info_level >= DINFO_LEVEL_NORMAL 1667 && (write_symbols == DWARF2_DEBUG 1668 || write_symbols == VMS_AND_DWARF2_DEBUG) 1669 && !dwarf_strict 1670 && dwarf2out_as_loc_support 1671 && dwarf2out_as_locview_support); 1672 } 1673 else if (debug_variable_location_views == -1 && dwarf_version != 5) 1674 { 1675 warning_at (UNKNOWN_LOCATION, 0, 1676 "without %<-gdwarf-5%>, " 1677 "%<-gvariable-location-views=incompat5%> " 1678 "is equivalent to %<-gvariable-location-views%>"); 1679 debug_variable_location_views = 1; 1680 } 1681 1682 if (debug_internal_reset_location_views == 2) 1683 { 1684 debug_internal_reset_location_views 1685 = (debug_variable_location_views 1686 && targetm.reset_location_view); 1687 } 1688 else if (debug_internal_reset_location_views 1689 && !debug_variable_location_views) 1690 { 1691 warning_at (UNKNOWN_LOCATION, 0, 1692 "%<-ginternal-reset-location-views%> is forced disabled " 1693 "without %<-gvariable-location-views%>"); 1694 debug_internal_reset_location_views = 0; 1695 } 1696 1697 if (debug_inline_points == AUTODETECT_VALUE) 1698 debug_inline_points = debug_variable_location_views; 1699 else if (debug_inline_points && !debug_nonbind_markers_p) 1700 { 1701 warning_at (UNKNOWN_LOCATION, 0, 1702 "%<-ginline-points%> is forced disabled without " 1703 "%<-gstatement-frontiers%>"); 1704 debug_inline_points = 0; 1705 } 1706 1707 if (flag_tree_cselim == AUTODETECT_VALUE) 1708 { 1709 if (HAVE_conditional_move) 1710 flag_tree_cselim = 1; 1711 else 1712 flag_tree_cselim = 0; 1713 } 1714 1715 /* If auxiliary info generation is desired, open the output file. 1716 This goes in the same directory as the source file--unlike 1717 all the other output files. */ 1718 if (flag_gen_aux_info) 1719 { 1720 aux_info_file = fopen (aux_info_file_name, "w"); 1721 if (aux_info_file == 0) 1722 fatal_error (UNKNOWN_LOCATION, 1723 "cannot open %s: %m", aux_info_file_name); 1724 } 1725 1726 if (!targetm_common.have_named_sections) 1727 { 1728 if (flag_function_sections) 1729 { 1730 warning_at (UNKNOWN_LOCATION, 0, 1731 "%<-ffunction-sections%> not supported for this target"); 1732 flag_function_sections = 0; 1733 } 1734 if (flag_data_sections) 1735 { 1736 warning_at (UNKNOWN_LOCATION, 0, 1737 "%<-fdata-sections%> not supported for this target"); 1738 flag_data_sections = 0; 1739 } 1740 } 1741 1742 if (flag_prefetch_loop_arrays > 0 && !targetm.code_for_prefetch) 1743 { 1744 warning_at (UNKNOWN_LOCATION, 0, 1745 "%<-fprefetch-loop-arrays%> not supported for this target"); 1746 flag_prefetch_loop_arrays = 0; 1747 } 1748 else if (flag_prefetch_loop_arrays > 0 && !targetm.have_prefetch ()) 1749 { 1750 warning_at (UNKNOWN_LOCATION, 0, 1751 "%<-fprefetch-loop-arrays%> not supported for this target " 1752 "(try %<-march%> switches)"); 1753 flag_prefetch_loop_arrays = 0; 1754 } 1755 1756 /* This combination of options isn't handled for i386 targets and doesn't 1757 make much sense anyway, so don't allow it. */ 1758 if (flag_prefetch_loop_arrays > 0 && optimize_size) 1759 { 1760 warning_at (UNKNOWN_LOCATION, 0, 1761 "%<-fprefetch-loop-arrays%> is not supported with %<-Os%>"); 1762 flag_prefetch_loop_arrays = 0; 1763 } 1764 1765 /* The presence of IEEE signaling NaNs, implies all math can trap. */ 1766 if (flag_signaling_nans) 1767 flag_trapping_math = 1; 1768 1769 /* We cannot reassociate if we want traps or signed zeros. */ 1770 if (flag_associative_math && (flag_trapping_math || flag_signed_zeros)) 1771 { 1772 warning_at (UNKNOWN_LOCATION, 0, 1773 "%<-fassociative-math%> disabled; other options take " 1774 "precedence"); 1775 flag_associative_math = 0; 1776 } 1777 1778 /* -fstack-clash-protection is not currently supported on targets 1779 where the stack grows up. */ 1780 if (flag_stack_clash_protection && !STACK_GROWS_DOWNWARD) 1781 { 1782 warning_at (UNKNOWN_LOCATION, 0, 1783 "%<-fstack-clash-protection%> is not supported on targets " 1784 "where the stack grows from lower to higher addresses"); 1785 flag_stack_clash_protection = 0; 1786 } 1787 1788 /* We cannot support -fstack-check= and -fstack-clash-protection at 1789 the same time. */ 1790 if (flag_stack_check != NO_STACK_CHECK && flag_stack_clash_protection) 1791 { 1792 warning_at (UNKNOWN_LOCATION, 0, 1793 "%<-fstack-check=%> and %<-fstack-clash_protection%> are " 1794 "mutually exclusive; disabling %<-fstack-check=%>"); 1795 flag_stack_check = NO_STACK_CHECK; 1796 } 1797 1798 /* With -fcx-limited-range, we do cheap and quick complex arithmetic. */ 1799 if (flag_cx_limited_range) 1800 flag_complex_method = 0; 1801 1802 /* With -fcx-fortran-rules, we do something in-between cheap and C99. */ 1803 if (flag_cx_fortran_rules) 1804 flag_complex_method = 1; 1805 1806 /* Targets must be able to place spill slots at lower addresses. If the 1807 target already uses a soft frame pointer, the transition is trivial. */ 1808 if (!FRAME_GROWS_DOWNWARD && flag_stack_protect) 1809 { 1810 warning_at (UNKNOWN_LOCATION, 0, 1811 "%<-fstack-protector%> not supported for this target"); 1812 flag_stack_protect = 0; 1813 } 1814 if (!flag_stack_protect) 1815 warn_stack_protect = 0; 1816 1817 /* Address Sanitizer needs porting to each target architecture. */ 1818 1819 if ((flag_sanitize & SANITIZE_ADDRESS) 1820 && !FRAME_GROWS_DOWNWARD) 1821 { 1822 warning_at (UNKNOWN_LOCATION, 0, 1823 "%<-fsanitize=address%> and %<-fsanitize=kernel-address%> " 1824 "are not supported for this target"); 1825 flag_sanitize &= ~SANITIZE_ADDRESS; 1826 } 1827 1828 if ((flag_sanitize & SANITIZE_USER_ADDRESS) 1829 && targetm.asan_shadow_offset == NULL) 1830 { 1831 warning_at (UNKNOWN_LOCATION, 0, 1832 "%<-fsanitize=address%> not supported for this target"); 1833 flag_sanitize &= ~SANITIZE_ADDRESS; 1834 } 1835 1836 if ((flag_sanitize & SANITIZE_KERNEL_ADDRESS) 1837 && (targetm.asan_shadow_offset == NULL 1838 && !asan_shadow_offset_set_p ())) 1839 { 1840 warning_at (UNKNOWN_LOCATION, 0, 1841 "%<-fsanitize=kernel-address%> with stack protection " 1842 "is not supported without %<-fasan-shadow-offset=%> " 1843 "for this target"); 1844 flag_sanitize &= ~SANITIZE_ADDRESS; 1845 } 1846 1847 /* Do not use IPA optimizations for register allocation if profiler is active 1848 or patchable function entries are inserted for run-time instrumentation 1849 or port does not emit prologue and epilogue as RTL. */ 1850 if (profile_flag || function_entry_patch_area_size 1851 || !targetm.have_prologue () || !targetm.have_epilogue ()) 1852 flag_ipa_ra = 0; 1853 1854 /* Enable -Werror=coverage-mismatch when -Werror and -Wno-error 1855 have not been set. */ 1856 if (!global_options_set.x_warnings_are_errors 1857 && warn_coverage_mismatch 1858 && (global_dc->classify_diagnostic[OPT_Wcoverage_mismatch] == 1859 DK_UNSPECIFIED)) 1860 diagnostic_classify_diagnostic (global_dc, OPT_Wcoverage_mismatch, 1861 DK_ERROR, UNKNOWN_LOCATION); 1862 1863 /* Save the current optimization options. */ 1864 optimization_default_node = build_optimization_node (&global_options); 1865 optimization_current_node = optimization_default_node; 1866 1867 if (flag_checking >= 2) 1868 hash_table_sanitize_eq_limit 1869 = param_hash_table_verification_limit; 1870 1871 /* Please don't change global_options after this point, those changes won't 1872 be reflected in optimization_{default,current}_node. */ 1873 } 1874 1875 /* This function can be called multiple times to reinitialize the compiler 1876 back end when register classes or instruction sets have changed, 1877 before each function. */ 1878 static void 1879 backend_init_target (void) 1880 { 1881 /* This depends on stack_pointer_rtx. */ 1882 init_fake_stack_mems (); 1883 1884 /* Sets static_base_value[HARD_FRAME_POINTER_REGNUM], which is 1885 mode-dependent. */ 1886 init_alias_target (); 1887 1888 /* Depends on HARD_FRAME_POINTER_REGNUM. */ 1889 if (!ira_use_lra_p) 1890 init_reload (); 1891 1892 /* Depends on the enabled attribute. */ 1893 recog_init (); 1894 1895 /* The following initialization functions need to generate rtl, so 1896 provide a dummy function context for them. */ 1897 init_dummy_function_start (); 1898 1899 /* rtx_cost is mode-dependent, so cached values need to be recomputed 1900 on a mode change. */ 1901 init_expmed (); 1902 init_lower_subreg (); 1903 init_set_costs (); 1904 1905 init_expr_target (); 1906 ira_init (); 1907 1908 /* We may need to recompute regno_save_code[] and regno_restore_code[] 1909 after a mode change as well. */ 1910 caller_save_initialized_p = false; 1911 1912 expand_dummy_function_end (); 1913 } 1914 1915 /* Initialize the compiler back end. This function is called only once, 1916 when starting the compiler. */ 1917 static void 1918 backend_init (void) 1919 { 1920 init_emit_once (); 1921 1922 init_rtlanal (); 1923 init_inline_once (); 1924 init_varasm_once (); 1925 save_register_info (); 1926 1927 /* Middle end needs this initialization for default mem attributes 1928 used by early calls to make_decl_rtl. */ 1929 init_emit_regs (); 1930 1931 /* Middle end needs this initialization for mode tables used to assign 1932 modes to vector variables. */ 1933 init_regs (); 1934 } 1935 1936 /* Initialize things that are both lang-dependent and target-dependent. 1937 This function can be called more than once if target parameters change. */ 1938 static void 1939 lang_dependent_init_target (void) 1940 { 1941 /* This creates various _DECL nodes, so needs to be called after the 1942 front end is initialized. It also depends on the HAVE_xxx macros 1943 generated from the target machine description. */ 1944 init_optabs (); 1945 1946 gcc_assert (!this_target_rtl->target_specific_initialized); 1947 } 1948 1949 /* Perform initializations that are lang-dependent or target-dependent. 1950 but matters only for late optimizations and RTL generation. */ 1951 1952 static int rtl_initialized; 1953 1954 void 1955 initialize_rtl (void) 1956 { 1957 auto_timevar tv (g_timer, TV_INITIALIZE_RTL); 1958 1959 /* Initialization done just once per compilation, but delayed 1960 till code generation. */ 1961 if (!rtl_initialized) 1962 ira_init_once (); 1963 rtl_initialized = true; 1964 1965 /* Target specific RTL backend initialization. */ 1966 if (!this_target_rtl->target_specific_initialized) 1967 { 1968 backend_init_target (); 1969 this_target_rtl->target_specific_initialized = true; 1970 } 1971 } 1972 1973 /* Language-dependent initialization. Returns nonzero on success. */ 1974 static int 1975 lang_dependent_init (const char *name) 1976 { 1977 location_t save_loc = input_location; 1978 if (dump_base_name == 0) 1979 dump_base_name = name && name[0] ? name : "gccdump"; 1980 1981 /* Other front-end initialization. */ 1982 input_location = BUILTINS_LOCATION; 1983 if (lang_hooks.init () == 0) 1984 return 0; 1985 input_location = save_loc; 1986 1987 if (!flag_wpa) 1988 { 1989 init_asm_output (name); 1990 1991 /* If stack usage information is desired, open the output file. */ 1992 if (flag_stack_usage && !flag_generate_lto) 1993 stack_usage_file = open_auxiliary_file ("su"); 1994 1995 /* If call graph information is desired, open the output file. */ 1996 if (flag_callgraph_info && !flag_generate_lto) 1997 { 1998 callgraph_info_file = open_auxiliary_file ("ci"); 1999 /* Write the file header. */ 2000 fprintf (callgraph_info_file, 2001 "graph: { title: \"%s\"\n", main_input_filename); 2002 bitmap_obstack_initialize (NULL); 2003 callgraph_info_external_printed = BITMAP_ALLOC (NULL); 2004 } 2005 } 2006 2007 /* This creates various _DECL nodes, so needs to be called after the 2008 front end is initialized. */ 2009 init_eh (); 2010 2011 /* Do the target-specific parts of the initialization. */ 2012 lang_dependent_init_target (); 2013 2014 if (!flag_wpa) 2015 { 2016 /* If dbx symbol table desired, initialize writing it and output the 2017 predefined types. */ 2018 timevar_push (TV_SYMOUT); 2019 2020 /* Now we have the correct original filename, we can initialize 2021 debug output. */ 2022 (*debug_hooks->init) (name); 2023 2024 timevar_pop (TV_SYMOUT); 2025 } 2026 2027 return 1; 2028 } 2029 2030 2031 /* Reinitialize everything when target parameters, such as register usage, 2032 have changed. */ 2033 void 2034 target_reinit (void) 2035 { 2036 struct rtl_data saved_x_rtl; 2037 rtx *saved_regno_reg_rtx; 2038 tree saved_optimization_current_node; 2039 struct target_optabs *saved_this_fn_optabs; 2040 2041 /* Temporarily switch to the default optimization node, so that 2042 *this_target_optabs is set to the default, not reflecting 2043 whatever a previous function used for the optimize 2044 attribute. */ 2045 saved_optimization_current_node = optimization_current_node; 2046 saved_this_fn_optabs = this_fn_optabs; 2047 if (saved_optimization_current_node != optimization_default_node) 2048 { 2049 optimization_current_node = optimization_default_node; 2050 cl_optimization_restore 2051 (&global_options, 2052 TREE_OPTIMIZATION (optimization_default_node)); 2053 } 2054 this_fn_optabs = this_target_optabs; 2055 2056 /* Save *crtl and regno_reg_rtx around the reinitialization 2057 to allow target_reinit being called even after prepare_function_start. */ 2058 saved_regno_reg_rtx = regno_reg_rtx; 2059 if (saved_regno_reg_rtx) 2060 { 2061 saved_x_rtl = *crtl; 2062 memset (crtl, '\0', sizeof (*crtl)); 2063 regno_reg_rtx = NULL; 2064 } 2065 2066 this_target_rtl->target_specific_initialized = false; 2067 2068 /* This initializes hard_frame_pointer, and calls init_reg_modes_target() 2069 to initialize reg_raw_mode[]. */ 2070 init_emit_regs (); 2071 2072 /* This invokes target hooks to set fixed_reg[] etc, which is 2073 mode-dependent. */ 2074 init_regs (); 2075 2076 /* Reinitialize lang-dependent parts. */ 2077 lang_dependent_init_target (); 2078 2079 /* Restore the original optimization node. */ 2080 if (saved_optimization_current_node != optimization_default_node) 2081 { 2082 optimization_current_node = saved_optimization_current_node; 2083 cl_optimization_restore (&global_options, 2084 TREE_OPTIMIZATION (optimization_current_node)); 2085 } 2086 this_fn_optabs = saved_this_fn_optabs; 2087 2088 /* Restore regno_reg_rtx at the end, as free_after_compilation from 2089 expand_dummy_function_end clears it. */ 2090 if (saved_regno_reg_rtx) 2091 { 2092 *crtl = saved_x_rtl; 2093 regno_reg_rtx = saved_regno_reg_rtx; 2094 saved_regno_reg_rtx = NULL; 2095 } 2096 } 2097 2098 void 2099 dump_memory_report (const char *header) 2100 { 2101 /* Print significant header. */ 2102 fputc ('\n', stderr); 2103 for (unsigned i = 0; i < 80; i++) 2104 fputc ('#', stderr); 2105 fprintf (stderr, "\n# %-77s#\n", header); 2106 for (unsigned i = 0; i < 80; i++) 2107 fputc ('#', stderr); 2108 fputs ("\n\n", stderr); 2109 2110 dump_line_table_statistics (); 2111 ggc_print_statistics (); 2112 stringpool_statistics (); 2113 dump_tree_statistics (); 2114 dump_gimple_statistics (); 2115 dump_rtx_statistics (); 2116 dump_alloc_pool_statistics (); 2117 dump_bitmap_statistics (); 2118 dump_hash_table_loc_statistics (); 2119 dump_vec_loc_statistics (); 2120 dump_ggc_loc_statistics (); 2121 dump_alias_stats (stderr); 2122 dump_pta_stats (stderr); 2123 } 2124 2125 /* Clean up: close opened files, etc. */ 2126 2127 static void 2128 finalize (bool no_backend) 2129 { 2130 /* Close the dump files. */ 2131 if (flag_gen_aux_info) 2132 { 2133 fclose (aux_info_file); 2134 aux_info_file = NULL; 2135 if (seen_error ()) 2136 unlink (aux_info_file_name); 2137 } 2138 2139 /* Close non-debugging input and output files. Take special care to note 2140 whether fclose returns an error, since the pages might still be on the 2141 buffer chain while the file is open. */ 2142 2143 if (asm_out_file) 2144 { 2145 if (ferror (asm_out_file) != 0) 2146 fatal_error (input_location, "error writing to %s: %m", asm_file_name); 2147 if (fclose (asm_out_file) != 0) 2148 fatal_error (input_location, "error closing %s: %m", asm_file_name); 2149 asm_out_file = NULL; 2150 } 2151 2152 if (stack_usage_file) 2153 { 2154 fclose (stack_usage_file); 2155 stack_usage_file = NULL; 2156 } 2157 2158 if (callgraph_info_file) 2159 { 2160 fputs ("}\n", callgraph_info_file); 2161 fclose (callgraph_info_file); 2162 callgraph_info_file = NULL; 2163 BITMAP_FREE (callgraph_info_external_printed); 2164 bitmap_obstack_release (NULL); 2165 } 2166 2167 if (seen_error ()) 2168 coverage_remove_note_file (); 2169 2170 if (!no_backend) 2171 { 2172 statistics_fini (); 2173 debuginfo_fini (); 2174 2175 g->get_passes ()->finish_optimization_passes (); 2176 2177 lra_finish_once (); 2178 } 2179 2180 if (mem_report) 2181 dump_memory_report ("Final"); 2182 2183 if (profile_report) 2184 dump_profile_report (); 2185 2186 /* Language-specific end of compilation actions. */ 2187 lang_hooks.finish (); 2188 } 2189 2190 static bool 2191 standard_type_bitsize (int bitsize) 2192 { 2193 /* As a special exception, we always want __int128 enabled if possible. */ 2194 if (bitsize == 128) 2195 return false; 2196 if (bitsize == CHAR_TYPE_SIZE 2197 || bitsize == SHORT_TYPE_SIZE 2198 || bitsize == INT_TYPE_SIZE 2199 || bitsize == LONG_TYPE_SIZE 2200 || bitsize == LONG_LONG_TYPE_SIZE) 2201 return true; 2202 return false; 2203 } 2204 2205 /* Initialize the compiler, and compile the input file. */ 2206 static void 2207 do_compile () 2208 { 2209 process_options (); 2210 2211 /* Don't do any more if an error has already occurred. */ 2212 if (!seen_error ()) 2213 { 2214 int i; 2215 2216 timevar_start (TV_PHASE_SETUP); 2217 2218 if (flag_save_optimization_record) 2219 { 2220 dump_context::get ().set_json_writer (new optrecord_json_writer ()); 2221 } 2222 2223 /* This must be run always, because it is needed to compute the FP 2224 predefined macros, such as __LDBL_MAX__, for targets using non 2225 default FP formats. */ 2226 init_adjust_machine_modes (); 2227 init_derived_machine_modes (); 2228 2229 /* This must happen after the backend has a chance to process 2230 command line options, but before the parsers are 2231 initialized. */ 2232 for (i = 0; i < NUM_INT_N_ENTS; i ++) 2233 if (targetm.scalar_mode_supported_p (int_n_data[i].m) 2234 && ! standard_type_bitsize (int_n_data[i].bitsize)) 2235 int_n_enabled_p[i] = true; 2236 else 2237 int_n_enabled_p[i] = false; 2238 2239 /* Initialize mpfrs exponent range. This is important to get 2240 underflow/overflow in a reasonable timeframe. */ 2241 machine_mode mode; 2242 int min_exp = -1; 2243 int max_exp = 1; 2244 FOR_EACH_MODE_IN_CLASS (mode, MODE_FLOAT) 2245 if (SCALAR_FLOAT_MODE_P (mode)) 2246 { 2247 const real_format *fmt = REAL_MODE_FORMAT (mode); 2248 if (fmt) 2249 { 2250 /* fmt->emin - fmt->p + 1 should be enough but the 2251 back-and-forth dance in real_to_decimal_for_mode we 2252 do for checking fails due to rounding effects then. */ 2253 if ((fmt->emin - fmt->p) < min_exp) 2254 min_exp = fmt->emin - fmt->p; 2255 if (fmt->emax > max_exp) 2256 max_exp = fmt->emax; 2257 } 2258 } 2259 /* E.g. mpc_norm assumes it can square a number without bothering with 2260 with range scaling, so until that is fixed, double the minimum 2261 and maximum exponents, plus add some buffer for arithmetics 2262 on the squared numbers. */ 2263 if (mpfr_set_emin (2 * (min_exp - 1)) 2264 || mpfr_set_emax (2 * (max_exp + 1))) 2265 sorry ("mpfr not configured to handle all floating modes"); 2266 2267 /* Set up the back-end if requested. */ 2268 if (!no_backend) 2269 backend_init (); 2270 2271 /* Language-dependent initialization. Returns true on success. */ 2272 if (lang_dependent_init (main_input_filename)) 2273 { 2274 /* Initialize yet another pass. */ 2275 2276 ggc_protect_identifiers = true; 2277 2278 symtab->initialize (); 2279 init_final (main_input_filename); 2280 coverage_init (aux_base_name); 2281 statistics_init (); 2282 debuginfo_init (); 2283 invoke_plugin_callbacks (PLUGIN_START_UNIT, NULL); 2284 2285 timevar_stop (TV_PHASE_SETUP); 2286 2287 compile_file (); 2288 } 2289 else 2290 { 2291 timevar_stop (TV_PHASE_SETUP); 2292 } 2293 2294 timevar_start (TV_PHASE_FINALIZE); 2295 2296 finalize (no_backend); 2297 2298 timevar_stop (TV_PHASE_FINALIZE); 2299 } 2300 } 2301 2302 toplev::toplev (timer *external_timer, 2303 bool init_signals) 2304 : m_use_TV_TOTAL (external_timer == NULL), 2305 m_init_signals (init_signals) 2306 { 2307 if (external_timer) 2308 g_timer = external_timer; 2309 } 2310 2311 toplev::~toplev () 2312 { 2313 if (g_timer && m_use_TV_TOTAL) 2314 { 2315 g_timer->stop (TV_TOTAL); 2316 g_timer->print (stderr); 2317 delete g_timer; 2318 g_timer = NULL; 2319 } 2320 } 2321 2322 /* Potentially call timevar_init (which will create g_timevars if it 2323 doesn't already exist). */ 2324 2325 void 2326 toplev::start_timevars () 2327 { 2328 if (time_report || !quiet_flag || flag_detailed_statistics) 2329 timevar_init (); 2330 2331 timevar_start (TV_TOTAL); 2332 } 2333 2334 /* Handle -fself-test. */ 2335 2336 void 2337 toplev::run_self_tests () 2338 { 2339 if (no_backend) 2340 { 2341 error_at (UNKNOWN_LOCATION, "self-tests incompatible with %<-E%>"); 2342 return; 2343 } 2344 #if CHECKING_P 2345 /* Reset some state. */ 2346 input_location = UNKNOWN_LOCATION; 2347 bitmap_obstack_initialize (NULL); 2348 2349 /* Run the tests; any failures will lead to an abort of the process. 2350 Use "make selftests-gdb" to run under the debugger. */ 2351 ::selftest::run_tests (); 2352 2353 /* Cleanup. */ 2354 bitmap_obstack_release (NULL); 2355 #else 2356 inform (UNKNOWN_LOCATION, "self-tests are not enabled in this build"); 2357 #endif /* #if CHECKING_P */ 2358 } 2359 2360 /* Entry point of cc1, cc1plus, jc1, f771, etc. 2361 Exit code is FATAL_EXIT_CODE if can't open files or if there were 2362 any errors, or SUCCESS_EXIT_CODE if compilation succeeded. 2363 2364 It is not safe to call this function more than once. */ 2365 2366 int 2367 toplev::main (int argc, char **argv) 2368 { 2369 /* Parsing and gimplification sometimes need quite large stack. 2370 Increase stack size limits if possible. */ 2371 stack_limit_increase (64 * 1024 * 1024); 2372 2373 expandargv (&argc, &argv); 2374 2375 /* Initialization of GCC's environment, and diagnostics. */ 2376 general_init (argv[0], m_init_signals); 2377 2378 /* One-off initialization of options that does not need to be 2379 repeated when options are added for particular functions. */ 2380 init_options_once (); 2381 init_opts_obstack (); 2382 2383 /* Initialize global options structures; this must be repeated for 2384 each structure used for parsing options. */ 2385 init_options_struct (&global_options, &global_options_set); 2386 lang_hooks.init_options_struct (&global_options); 2387 2388 /* Init GGC heuristics must be caller after we initialize 2389 options. */ 2390 init_ggc_heuristics (); 2391 2392 /* Convert the options to an array. */ 2393 decode_cmdline_options_to_array_default_mask (argc, 2394 CONST_CAST2 (const char **, 2395 char **, argv), 2396 &save_decoded_options, 2397 &save_decoded_options_count); 2398 2399 /* Perform language-specific options initialization. */ 2400 lang_hooks.init_options (save_decoded_options_count, save_decoded_options); 2401 2402 /* Parse the options and do minimal processing; basically just 2403 enough to default flags appropriately. */ 2404 decode_options (&global_options, &global_options_set, 2405 save_decoded_options, save_decoded_options_count, 2406 UNKNOWN_LOCATION, global_dc, 2407 targetm.target_option.override); 2408 2409 handle_common_deferred_options (); 2410 2411 init_local_tick (); 2412 2413 initialize_plugins (); 2414 2415 if (version_flag) 2416 print_version (stderr, "", true); 2417 2418 if (help_flag) 2419 print_plugins_help (stderr, ""); 2420 2421 /* Exit early if we can (e.g. -help). */ 2422 if (!exit_after_options) 2423 { 2424 if (m_use_TV_TOTAL) 2425 start_timevars (); 2426 do_compile (); 2427 } 2428 2429 if (warningcount || errorcount || werrorcount) 2430 print_ignored_options (); 2431 2432 if (flag_self_test) 2433 run_self_tests (); 2434 2435 /* Invoke registered plugin callbacks if any. Some plugins could 2436 emit some diagnostics here. */ 2437 invoke_plugin_callbacks (PLUGIN_FINISH, NULL); 2438 2439 if (flag_diagnostics_generate_patch) 2440 { 2441 gcc_assert (global_dc->edit_context_ptr); 2442 2443 pretty_printer pp; 2444 pp_show_color (&pp) = pp_show_color (global_dc->printer); 2445 global_dc->edit_context_ptr->print_diff (&pp, true); 2446 pp_flush (&pp); 2447 } 2448 2449 diagnostic_finish (global_dc); 2450 2451 finalize_plugins (); 2452 2453 after_memory_report = true; 2454 2455 if (seen_error () || werrorcount) 2456 return (FATAL_EXIT_CODE); 2457 2458 return (SUCCESS_EXIT_CODE); 2459 } 2460 2461 /* For those that want to, this function aims to clean up enough state that 2462 you can call toplev::main again. */ 2463 void 2464 toplev::finalize (void) 2465 { 2466 rtl_initialized = false; 2467 this_target_rtl->target_specific_initialized = false; 2468 2469 /* Needs to be called before cgraph_c_finalize since it uses symtab. */ 2470 ipa_reference_c_finalize (); 2471 ipa_fnsummary_c_finalize (); 2472 2473 cgraph_c_finalize (); 2474 cgraphunit_c_finalize (); 2475 dwarf2out_c_finalize (); 2476 gcse_c_finalize (); 2477 ipa_cp_c_finalize (); 2478 ira_costs_c_finalize (); 2479 2480 /* save_decoded_options uses opts_obstack, so these must 2481 be cleaned up together. */ 2482 obstack_free (&opts_obstack, NULL); 2483 XDELETEVEC (save_decoded_options); 2484 save_decoded_options = NULL; 2485 save_decoded_options_count = 0; 2486 2487 /* Clean up the context (and pass_manager etc). */ 2488 delete g; 2489 g = NULL; 2490 2491 } 2492