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1 /* Command line option handling.
2 Copyright (C) 2002-2019 Free Software Foundation, Inc.
3 Contributed by Neil Booth.
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "intl.h"
24 #include "coretypes.h"
25 #include "opts.h"
26 #include "tm.h"
27 #include "flags.h"
28 #include "params.h"
29 #include "diagnostic.h"
30 #include "opts-diagnostic.h"
31 #include "insn-attr-common.h"
32 #include "common/common-target.h"
33 #include "spellcheck.h"
34
35 static void set_Wstrict_aliasing (struct gcc_options *opts, int onoff);
36
37 /* Indexed by enum debug_info_type. */
38 const char *const debug_type_names[] =
39 {
40 "none", "stabs", "dwarf-2", "xcoff", "vms"
41 };
42
43 /* Parse the -femit-struct-debug-detailed option value
44 and set the flag variables. */
45
46 #define MATCH( prefix, string ) \
47 ((strncmp (prefix, string, sizeof prefix - 1) == 0) \
48 ? ((string += sizeof prefix - 1), 1) : 0)
49
50 void
51 set_struct_debug_option (struct gcc_options *opts, location_t loc,
52 const char *spec)
53 {
54 /* various labels for comparison */
55 static const char dfn_lbl[] = "dfn:", dir_lbl[] = "dir:", ind_lbl[] = "ind:";
56 static const char ord_lbl[] = "ord:", gen_lbl[] = "gen:";
57 static const char none_lbl[] = "none", any_lbl[] = "any";
58 static const char base_lbl[] = "base", sys_lbl[] = "sys";
59
60 enum debug_struct_file files = DINFO_STRUCT_FILE_ANY;
61 /* Default is to apply to as much as possible. */
62 enum debug_info_usage usage = DINFO_USAGE_NUM_ENUMS;
63 int ord = 1, gen = 1;
64
65 /* What usage? */
66 if (MATCH (dfn_lbl, spec))
67 usage = DINFO_USAGE_DFN;
68 else if (MATCH (dir_lbl, spec))
69 usage = DINFO_USAGE_DIR_USE;
70 else if (MATCH (ind_lbl, spec))
71 usage = DINFO_USAGE_IND_USE;
72
73 /* Generics or not? */
74 if (MATCH (ord_lbl, spec))
75 gen = 0;
76 else if (MATCH (gen_lbl, spec))
77 ord = 0;
78
79 /* What allowable environment? */
80 if (MATCH (none_lbl, spec))
81 files = DINFO_STRUCT_FILE_NONE;
82 else if (MATCH (any_lbl, spec))
83 files = DINFO_STRUCT_FILE_ANY;
84 else if (MATCH (sys_lbl, spec))
85 files = DINFO_STRUCT_FILE_SYS;
86 else if (MATCH (base_lbl, spec))
87 files = DINFO_STRUCT_FILE_BASE;
88 else
89 error_at (loc,
90 "argument %qs to %<-femit-struct-debug-detailed%> "
91 "not recognized",
92 spec);
93
94 /* Effect the specification. */
95 if (usage == DINFO_USAGE_NUM_ENUMS)
96 {
97 if (ord)
98 {
99 opts->x_debug_struct_ordinary[DINFO_USAGE_DFN] = files;
100 opts->x_debug_struct_ordinary[DINFO_USAGE_DIR_USE] = files;
101 opts->x_debug_struct_ordinary[DINFO_USAGE_IND_USE] = files;
102 }
103 if (gen)
104 {
105 opts->x_debug_struct_generic[DINFO_USAGE_DFN] = files;
106 opts->x_debug_struct_generic[DINFO_USAGE_DIR_USE] = files;
107 opts->x_debug_struct_generic[DINFO_USAGE_IND_USE] = files;
108 }
109 }
110 else
111 {
112 if (ord)
113 opts->x_debug_struct_ordinary[usage] = files;
114 if (gen)
115 opts->x_debug_struct_generic[usage] = files;
116 }
117
118 if (*spec == ',')
119 set_struct_debug_option (opts, loc, spec+1);
120 else
121 {
122 /* No more -femit-struct-debug-detailed specifications.
123 Do final checks. */
124 if (*spec != '\0')
125 error_at (loc,
126 "argument %qs to %<-femit-struct-debug-detailed%> unknown",
127 spec);
128 if (opts->x_debug_struct_ordinary[DINFO_USAGE_DIR_USE]
129 < opts->x_debug_struct_ordinary[DINFO_USAGE_IND_USE]
130 || opts->x_debug_struct_generic[DINFO_USAGE_DIR_USE]
131 < opts->x_debug_struct_generic[DINFO_USAGE_IND_USE])
132 error_at (loc,
133 "%<-femit-struct-debug-detailed=dir:...%> must allow "
134 "at least as much as "
135 "%<-femit-struct-debug-detailed=ind:...%>");
136 }
137 }
138
139 /* Strip off a legitimate source ending from the input string NAME of
140 length LEN. Rather than having to know the names used by all of
141 our front ends, we strip off an ending of a period followed by
142 up to fource characters. (C++ uses ".cpp".) */
143
144 void
145 strip_off_ending (char *name, int len)
146 {
147 int i;
148 for (i = 2; i < 5 && len > i; i++)
149 {
150 if (name[len - i] == '.')
151 {
152 name[len - i] = '\0';
153 break;
154 }
155 }
156 }
157
158 /* Find the base name of a path, stripping off both directories and
159 a single final extension. */
160 int
161 base_of_path (const char *path, const char **base_out)
162 {
163 const char *base = path;
164 const char *dot = 0;
165 const char *p = path;
166 char c = *p;
167 while (c)
168 {
169 if (IS_DIR_SEPARATOR (c))
170 {
171 base = p + 1;
172 dot = 0;
173 }
174 else if (c == '.')
175 dot = p;
176 c = *++p;
177 }
178 if (!dot)
179 dot = p;
180 *base_out = base;
181 return dot - base;
182 }
183
184 /* What to print when a switch has no documentation. */
185 static const char undocumented_msg[] = N_("This option lacks documentation.");
186 static const char use_diagnosed_msg[] = N_("Uses of this option are diagnosed.");
187
188 typedef char *char_p; /* For DEF_VEC_P. */
189
190 static void handle_param (struct gcc_options *opts,
191 struct gcc_options *opts_set, location_t loc,
192 const char *carg);
193 static void set_debug_level (enum debug_info_type type, int extended,
194 const char *arg, struct gcc_options *opts,
195 struct gcc_options *opts_set,
196 location_t loc);
197 static void set_fast_math_flags (struct gcc_options *opts, int set);
198 static void decode_d_option (const char *arg, struct gcc_options *opts,
199 location_t loc, diagnostic_context *dc);
200 static void set_unsafe_math_optimizations_flags (struct gcc_options *opts,
201 int set);
202 static void enable_warning_as_error (const char *arg, int value,
203 unsigned int lang_mask,
204 const struct cl_option_handlers *handlers,
205 struct gcc_options *opts,
206 struct gcc_options *opts_set,
207 location_t loc,
208 diagnostic_context *dc);
209
210 /* Handle a back-end option; arguments and return value as for
211 handle_option. */
212
213 bool
214 target_handle_option (struct gcc_options *opts,
215 struct gcc_options *opts_set,
216 const struct cl_decoded_option *decoded,
217 unsigned int lang_mask ATTRIBUTE_UNUSED, int kind,
218 location_t loc,
219 const struct cl_option_handlers *handlers ATTRIBUTE_UNUSED,
220 diagnostic_context *dc, void (*) (void))
221 {
222 gcc_assert (dc == global_dc);
223 gcc_assert (kind == DK_UNSPECIFIED);
224 return targetm_common.handle_option (opts, opts_set, decoded, loc);
225 }
226
227 /* Add comma-separated strings to a char_p vector. */
228
229 static void
230 add_comma_separated_to_vector (void **pvec, const char *arg)
231 {
232 char *tmp;
233 char *r;
234 char *w;
235 char *token_start;
236 vec<char_p> *v = (vec<char_p> *) *pvec;
237
238 vec_check_alloc (v, 1);
239
240 /* We never free this string. */
241 tmp = xstrdup (arg);
242
243 r = tmp;
244 w = tmp;
245 token_start = tmp;
246
247 while (*r != '\0')
248 {
249 if (*r == ',')
250 {
251 *w++ = '\0';
252 ++r;
253 v->safe_push (token_start);
254 token_start = w;
255 }
256 if (*r == '\\' && r[1] == ',')
257 {
258 *w++ = ',';
259 r += 2;
260 }
261 else
262 *w++ = *r++;
263 }
264 if (*token_start != '\0')
265 v->safe_push (token_start);
266
267 *pvec = v;
268 }
269
270 /* Initialize opts_obstack. */
271
272 void
273 init_opts_obstack (void)
274 {
275 gcc_obstack_init (&opts_obstack);
276 }
277
278 /* Initialize OPTS and OPTS_SET before using them in parsing options. */
279
280 void
281 init_options_struct (struct gcc_options *opts, struct gcc_options *opts_set)
282 {
283 size_t num_params = get_num_compiler_params ();
284
285 /* Ensure that opts_obstack has already been initialized by the time
286 that we initialize any gcc_options instances (PR jit/68446). */
287 gcc_assert (opts_obstack.chunk_size > 0);
288
289 *opts = global_options_init;
290
291 if (opts_set)
292 memset (opts_set, 0, sizeof (*opts_set));
293
294 opts->x_param_values = XNEWVEC (int, num_params);
295
296 if (opts_set)
297 opts_set->x_param_values = XCNEWVEC (int, num_params);
298
299 init_param_values (opts->x_param_values);
300
301 /* Initialize whether `char' is signed. */
302 opts->x_flag_signed_char = DEFAULT_SIGNED_CHAR;
303 /* Set this to a special "uninitialized" value. The actual default
304 is set after target options have been processed. */
305 opts->x_flag_short_enums = 2;
306
307 /* Initialize target_flags before default_options_optimization
308 so the latter can modify it. */
309 opts->x_target_flags = targetm_common.default_target_flags;
310
311 /* Some targets have ABI-specified unwind tables. */
312 opts->x_flag_unwind_tables = targetm_common.unwind_tables_default;
313
314 /* Some targets have other target-specific initialization. */
315 targetm_common.option_init_struct (opts);
316 }
317
318 /* Release any allocations owned by OPTS. */
319
320 void
321 finalize_options_struct (struct gcc_options *opts)
322 {
323 XDELETEVEC (opts->x_param_values);
324 }
325
326 /* If indicated by the optimization level LEVEL (-Os if SIZE is set,
327 -Ofast if FAST is set, -Og if DEBUG is set), apply the option DEFAULT_OPT
328 to OPTS and OPTS_SET, diagnostic context DC, location LOC, with language
329 mask LANG_MASK and option handlers HANDLERS. */
330
331 static void
332 maybe_default_option (struct gcc_options *opts,
333 struct gcc_options *opts_set,
334 const struct default_options *default_opt,
335 int level, bool size, bool fast, bool debug,
336 unsigned int lang_mask,
337 const struct cl_option_handlers *handlers,
338 location_t loc,
339 diagnostic_context *dc)
340 {
341 const struct cl_option *option = &cl_options[default_opt->opt_index];
342 bool enabled;
343
344 if (size)
345 gcc_assert (level == 2);
346 if (fast)
347 gcc_assert (level == 3);
348 if (debug)
349 gcc_assert (level == 1);
350
351 switch (default_opt->levels)
352 {
353 case OPT_LEVELS_ALL:
354 enabled = true;
355 break;
356
357 case OPT_LEVELS_0_ONLY:
358 enabled = (level == 0);
359 break;
360
361 case OPT_LEVELS_1_PLUS:
362 enabled = (level >= 1);
363 break;
364
365 case OPT_LEVELS_1_PLUS_SPEED_ONLY:
366 enabled = (level >= 1 && !size && !debug);
367 break;
368
369 case OPT_LEVELS_1_PLUS_NOT_DEBUG:
370 enabled = (level >= 1 && !debug);
371 break;
372
373 case OPT_LEVELS_2_PLUS:
374 enabled = (level >= 2);
375 break;
376
377 case OPT_LEVELS_2_PLUS_SPEED_ONLY:
378 enabled = (level >= 2 && !size && !debug);
379 break;
380
381 case OPT_LEVELS_3_PLUS:
382 enabled = (level >= 3);
383 break;
384
385 case OPT_LEVELS_3_PLUS_AND_SIZE:
386 enabled = (level >= 3 || size);
387 break;
388
389 case OPT_LEVELS_SIZE:
390 enabled = size;
391 break;
392
393 case OPT_LEVELS_FAST:
394 enabled = fast;
395 break;
396
397 case OPT_LEVELS_NONE:
398 default:
399 gcc_unreachable ();
400 }
401
402 if (enabled)
403 handle_generated_option (opts, opts_set, default_opt->opt_index,
404 default_opt->arg, default_opt->value,
405 lang_mask, DK_UNSPECIFIED, loc,
406 handlers, true, dc);
407 else if (default_opt->arg == NULL
408 && !option->cl_reject_negative)
409 handle_generated_option (opts, opts_set, default_opt->opt_index,
410 default_opt->arg, !default_opt->value,
411 lang_mask, DK_UNSPECIFIED, loc,
412 handlers, true, dc);
413 }
414
415 /* As indicated by the optimization level LEVEL (-Os if SIZE is set,
416 -Ofast if FAST is set), apply the options in array DEFAULT_OPTS to
417 OPTS and OPTS_SET, diagnostic context DC, location LOC, with
418 language mask LANG_MASK and option handlers HANDLERS. */
419
420 static void
421 maybe_default_options (struct gcc_options *opts,
422 struct gcc_options *opts_set,
423 const struct default_options *default_opts,
424 int level, bool size, bool fast, bool debug,
425 unsigned int lang_mask,
426 const struct cl_option_handlers *handlers,
427 location_t loc,
428 diagnostic_context *dc)
429 {
430 size_t i;
431
432 for (i = 0; default_opts[i].levels != OPT_LEVELS_NONE; i++)
433 maybe_default_option (opts, opts_set, &default_opts[i],
434 level, size, fast, debug,
435 lang_mask, handlers, loc, dc);
436 }
437
438 /* Table of options enabled by default at different levels.
439 Please keep this list sorted by level and alphabetized within
440 each level; this makes it easier to keep the documentation
441 in sync. */
442
443 static const struct default_options default_options_table[] =
444 {
445 /* -O1 and -Og optimizations. */
446 { OPT_LEVELS_1_PLUS, OPT_fcombine_stack_adjustments, NULL, 1 },
447 { OPT_LEVELS_1_PLUS, OPT_fcompare_elim, NULL, 1 },
448 { OPT_LEVELS_1_PLUS, OPT_fcprop_registers, NULL, 1 },
449 { OPT_LEVELS_1_PLUS, OPT_fdefer_pop, NULL, 1 },
450 { OPT_LEVELS_1_PLUS, OPT_fforward_propagate, NULL, 1 },
451 { OPT_LEVELS_1_PLUS, OPT_fguess_branch_probability, NULL, 1 },
452 { OPT_LEVELS_1_PLUS, OPT_fipa_profile, NULL, 1 },
453 { OPT_LEVELS_1_PLUS, OPT_fipa_pure_const, NULL, 1 },
454 { OPT_LEVELS_1_PLUS, OPT_fipa_reference, NULL, 1 },
455 { OPT_LEVELS_1_PLUS, OPT_fipa_reference_addressable, NULL, 1 },
456 { OPT_LEVELS_1_PLUS, OPT_fmerge_constants, NULL, 1 },
457 { OPT_LEVELS_1_PLUS, OPT_fomit_frame_pointer, NULL, 1 },
458 { OPT_LEVELS_1_PLUS, OPT_freorder_blocks, NULL, 1 },
459 { OPT_LEVELS_1_PLUS, OPT_fshrink_wrap, NULL, 1 },
460 { OPT_LEVELS_1_PLUS, OPT_fsplit_wide_types, NULL, 1 },
461 { OPT_LEVELS_1_PLUS, OPT_ftree_builtin_call_dce, NULL, 1 },
462 { OPT_LEVELS_1_PLUS, OPT_ftree_ccp, NULL, 1 },
463 { OPT_LEVELS_1_PLUS, OPT_ftree_ch, NULL, 1 },
464 { OPT_LEVELS_1_PLUS, OPT_ftree_coalesce_vars, NULL, 1 },
465 { OPT_LEVELS_1_PLUS, OPT_ftree_copy_prop, NULL, 1 },
466 { OPT_LEVELS_1_PLUS, OPT_ftree_dce, NULL, 1 },
467 { OPT_LEVELS_1_PLUS, OPT_ftree_dominator_opts, NULL, 1 },
468 { OPT_LEVELS_1_PLUS, OPT_ftree_dse, NULL, 1 },
469 { OPT_LEVELS_1_PLUS, OPT_ftree_fre, NULL, 1 },
470 { OPT_LEVELS_1_PLUS, OPT_ftree_sink, NULL, 1 },
471 { OPT_LEVELS_1_PLUS, OPT_ftree_slsr, NULL, 1 },
472 { OPT_LEVELS_1_PLUS, OPT_ftree_ter, NULL, 1 },
473
474 /* -O1 (and not -Og) optimizations. */
475 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fbranch_count_reg, NULL, 1 },
476 #if DELAY_SLOTS
477 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fdelayed_branch, NULL, 1 },
478 #endif
479 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fif_conversion, NULL, 1 },
480 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fif_conversion2, NULL, 1 },
481 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_finline_functions_called_once, NULL, 1 },
482 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fmove_loop_invariants, NULL, 1 },
483 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_fssa_phiopt, NULL, 1 },
484 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_ftree_bit_ccp, NULL, 1 },
485 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_ftree_sra, NULL, 1 },
486 { OPT_LEVELS_1_PLUS_NOT_DEBUG, OPT_ftree_pta, NULL, 1 },
487
488 /* -O2 and -Os optimizations. */
489 { OPT_LEVELS_2_PLUS, OPT_fcaller_saves, NULL, 1 },
490 { OPT_LEVELS_2_PLUS, OPT_fcode_hoisting, NULL, 1 },
491 { OPT_LEVELS_2_PLUS, OPT_fcrossjumping, NULL, 1 },
492 { OPT_LEVELS_2_PLUS, OPT_fcse_follow_jumps, NULL, 1 },
493 { OPT_LEVELS_2_PLUS, OPT_fdevirtualize, NULL, 1 },
494 { OPT_LEVELS_2_PLUS, OPT_fdevirtualize_speculatively, NULL, 1 },
495 { OPT_LEVELS_2_PLUS, OPT_fexpensive_optimizations, NULL, 1 },
496 { OPT_LEVELS_2_PLUS, OPT_fgcse, NULL, 1 },
497 { OPT_LEVELS_2_PLUS, OPT_fhoist_adjacent_loads, NULL, 1 },
498 { OPT_LEVELS_2_PLUS, OPT_findirect_inlining, NULL, 1 },
499 { OPT_LEVELS_2_PLUS, OPT_finline_small_functions, NULL, 1 },
500 { OPT_LEVELS_2_PLUS, OPT_fipa_bit_cp, NULL, 1 },
501 { OPT_LEVELS_2_PLUS, OPT_fipa_cp, NULL, 1 },
502 { OPT_LEVELS_2_PLUS, OPT_fipa_icf, NULL, 1 },
503 { OPT_LEVELS_2_PLUS, OPT_fipa_ra, NULL, 1 },
504 { OPT_LEVELS_2_PLUS, OPT_fipa_sra, NULL, 1 },
505 { OPT_LEVELS_2_PLUS, OPT_fipa_vrp, NULL, 1 },
506 { OPT_LEVELS_2_PLUS, OPT_fisolate_erroneous_paths_dereference, NULL, 1 },
507 { OPT_LEVELS_2_PLUS, OPT_flra_remat, NULL, 1 },
508 { OPT_LEVELS_2_PLUS, OPT_foptimize_sibling_calls, NULL, 1 },
509 { OPT_LEVELS_2_PLUS, OPT_fpartial_inlining, NULL, 1 },
510 { OPT_LEVELS_2_PLUS, OPT_fpeephole2, NULL, 1 },
511 { OPT_LEVELS_2_PLUS, OPT_freorder_functions, NULL, 1 },
512 { OPT_LEVELS_2_PLUS, OPT_frerun_cse_after_loop, NULL, 1 },
513 #ifdef INSN_SCHEDULING
514 { OPT_LEVELS_2_PLUS, OPT_fschedule_insns2, NULL, 1 },
515 #endif
516 { OPT_LEVELS_2_PLUS, OPT_fstrict_aliasing, NULL, 1 },
517 { OPT_LEVELS_2_PLUS, OPT_fstore_merging, NULL, 1 },
518 { OPT_LEVELS_2_PLUS, OPT_fthread_jumps, NULL, 1 },
519 { OPT_LEVELS_2_PLUS, OPT_ftree_pre, NULL, 1 },
520 { OPT_LEVELS_2_PLUS, OPT_ftree_switch_conversion, NULL, 1 },
521 { OPT_LEVELS_2_PLUS, OPT_ftree_tail_merge, NULL, 1 },
522 { OPT_LEVELS_2_PLUS, OPT_ftree_vrp, NULL, 1 },
523 { OPT_LEVELS_2_PLUS, OPT_fvect_cost_model_, NULL, VECT_COST_MODEL_CHEAP },
524
525 /* -O2 and -Os optimizations. */
526 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_falign_functions, NULL, 1 },
527 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_falign_jumps, NULL, 1 },
528 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_falign_labels, NULL, 1 },
529 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_falign_loops, NULL, 1 },
530 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_foptimize_strlen, NULL, 1 },
531 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_freorder_blocks_algorithm_, NULL,
532 REORDER_BLOCKS_ALGORITHM_STC },
533 #ifdef INSN_SCHEDULING
534 /* Only run the pre-regalloc scheduling pass if optimizing for speed. */
535 { OPT_LEVELS_2_PLUS_SPEED_ONLY, OPT_fschedule_insns, NULL, 1 },
536 #endif
537
538 /* -O3 and -Os optimizations. */
539 /* Inlining of functions reducing size is a good idea with -Os
540 regardless of them being declared inline. */
541 { OPT_LEVELS_3_PLUS_AND_SIZE, OPT_finline_functions, NULL, 1 },
542
543 /* -O3 optimizations. */
544 { OPT_LEVELS_3_PLUS, OPT_fgcse_after_reload, NULL, 1 },
545 { OPT_LEVELS_3_PLUS, OPT_fipa_cp_clone, NULL, 1 },
546 { OPT_LEVELS_3_PLUS, OPT_floop_interchange, NULL, 1 },
547 { OPT_LEVELS_3_PLUS, OPT_floop_unroll_and_jam, NULL, 1 },
548 { OPT_LEVELS_3_PLUS, OPT_fpeel_loops, NULL, 1 },
549 { OPT_LEVELS_3_PLUS, OPT_fpredictive_commoning, NULL, 1 },
550 { OPT_LEVELS_3_PLUS, OPT_fsplit_loops, NULL, 1 },
551 { OPT_LEVELS_3_PLUS, OPT_fsplit_paths, NULL, 1 },
552 { OPT_LEVELS_3_PLUS, OPT_ftree_loop_distribute_patterns, NULL, 1 },
553 { OPT_LEVELS_3_PLUS, OPT_ftree_loop_distribution, NULL, 1 },
554 { OPT_LEVELS_3_PLUS, OPT_ftree_loop_vectorize, NULL, 1 },
555 { OPT_LEVELS_3_PLUS, OPT_ftree_partial_pre, NULL, 1 },
556 { OPT_LEVELS_3_PLUS, OPT_ftree_slp_vectorize, NULL, 1 },
557 { OPT_LEVELS_3_PLUS, OPT_funswitch_loops, NULL, 1 },
558 { OPT_LEVELS_3_PLUS, OPT_fvect_cost_model_, NULL, VECT_COST_MODEL_DYNAMIC },
559 { OPT_LEVELS_3_PLUS, OPT_fversion_loops_for_strides, NULL, 1 },
560
561 /* -Ofast adds optimizations to -O3. */
562 { OPT_LEVELS_FAST, OPT_ffast_math, NULL, 1 },
563
564 { OPT_LEVELS_NONE, 0, NULL, 0 }
565 };
566
567 /* Default the options in OPTS and OPTS_SET based on the optimization
568 settings in DECODED_OPTIONS and DECODED_OPTIONS_COUNT. */
569 void
570 default_options_optimization (struct gcc_options *opts,
571 struct gcc_options *opts_set,
572 struct cl_decoded_option *decoded_options,
573 unsigned int decoded_options_count,
574 location_t loc,
575 unsigned int lang_mask,
576 const struct cl_option_handlers *handlers,
577 diagnostic_context *dc)
578 {
579 unsigned int i;
580 int opt2;
581 bool openacc_mode = false;
582
583 /* Scan to see what optimization level has been specified. That will
584 determine the default value of many flags. */
585 for (i = 1; i < decoded_options_count; i++)
586 {
587 struct cl_decoded_option *opt = &decoded_options[i];
588 switch (opt->opt_index)
589 {
590 case OPT_O:
591 if (*opt->arg == '\0')
592 {
593 opts->x_optimize = 1;
594 opts->x_optimize_size = 0;
595 opts->x_optimize_fast = 0;
596 opts->x_optimize_debug = 0;
597 }
598 else
599 {
600 const int optimize_val = integral_argument (opt->arg);
601 if (optimize_val == -1)
602 error_at (loc, "argument to %<-O%> should be a non-negative "
603 "integer, %<g%>, %<s%> or %<fast%>");
604 else
605 {
606 opts->x_optimize = optimize_val;
607 if ((unsigned int) opts->x_optimize > 255)
608 opts->x_optimize = 255;
609 opts->x_optimize_size = 0;
610 opts->x_optimize_fast = 0;
611 opts->x_optimize_debug = 0;
612 }
613 }
614 break;
615
616 case OPT_Os:
617 opts->x_optimize_size = 1;
618
619 /* Optimizing for size forces optimize to be 2. */
620 opts->x_optimize = 2;
621 opts->x_optimize_fast = 0;
622 opts->x_optimize_debug = 0;
623 break;
624
625 case OPT_Ofast:
626 /* -Ofast only adds flags to -O3. */
627 opts->x_optimize_size = 0;
628 opts->x_optimize = 3;
629 opts->x_optimize_fast = 1;
630 opts->x_optimize_debug = 0;
631 break;
632
633 case OPT_Og:
634 /* -Og selects optimization level 1. */
635 opts->x_optimize_size = 0;
636 opts->x_optimize = 1;
637 opts->x_optimize_fast = 0;
638 opts->x_optimize_debug = 1;
639 break;
640
641 case OPT_fopenacc:
642 if (opt->value)
643 openacc_mode = true;
644 break;
645
646 default:
647 /* Ignore other options in this prescan. */
648 break;
649 }
650 }
651
652 maybe_default_options (opts, opts_set, default_options_table,
653 opts->x_optimize, opts->x_optimize_size,
654 opts->x_optimize_fast, opts->x_optimize_debug,
655 lang_mask, handlers, loc, dc);
656
657 /* -O2 param settings. */
658 opt2 = (opts->x_optimize >= 2);
659
660 if (openacc_mode
661 && !opts_set->x_flag_ipa_pta)
662 opts->x_flag_ipa_pta = true;
663
664 /* Track fields in field-sensitive alias analysis. */
665 maybe_set_param_value
666 (PARAM_MAX_FIELDS_FOR_FIELD_SENSITIVE,
667 opt2 ? 100 : default_param_value (PARAM_MAX_FIELDS_FOR_FIELD_SENSITIVE),
668 opts->x_param_values, opts_set->x_param_values);
669
670 /* For -O1 only do loop invariant motion for very small loops. */
671 maybe_set_param_value
672 (PARAM_LOOP_INVARIANT_MAX_BBS_IN_LOOP,
673 opt2 ? default_param_value (PARAM_LOOP_INVARIANT_MAX_BBS_IN_LOOP) : 1000,
674 opts->x_param_values, opts_set->x_param_values);
675
676 /* At -Ofast, allow store motion to introduce potential race conditions. */
677 maybe_set_param_value
678 (PARAM_ALLOW_STORE_DATA_RACES,
679 opts->x_optimize_fast ? 1
680 : default_param_value (PARAM_ALLOW_STORE_DATA_RACES),
681 opts->x_param_values, opts_set->x_param_values);
682
683 if (opts->x_optimize_size)
684 /* We want to crossjump as much as possible. */
685 maybe_set_param_value (PARAM_MIN_CROSSJUMP_INSNS, 1,
686 opts->x_param_values, opts_set->x_param_values);
687 else
688 maybe_set_param_value (PARAM_MIN_CROSSJUMP_INSNS,
689 default_param_value (PARAM_MIN_CROSSJUMP_INSNS),
690 opts->x_param_values, opts_set->x_param_values);
691
692 /* Restrict the amount of work combine does at -Og while retaining
693 most of its useful transforms. */
694 if (opts->x_optimize_debug)
695 maybe_set_param_value (PARAM_MAX_COMBINE_INSNS, 2,
696 opts->x_param_values, opts_set->x_param_values);
697
698 /* Allow default optimizations to be specified on a per-machine basis. */
699 maybe_default_options (opts, opts_set,
700 targetm_common.option_optimization_table,
701 opts->x_optimize, opts->x_optimize_size,
702 opts->x_optimize_fast, opts->x_optimize_debug,
703 lang_mask, handlers, loc, dc);
704 }
705
706 /* Control IPA optimizations based on different live patching LEVEL. */
707 static void
708 control_options_for_live_patching (struct gcc_options *opts,
709 struct gcc_options *opts_set,
710 enum live_patching_level level,
711 location_t loc)
712 {
713 gcc_assert (level > LIVE_PATCHING_NONE);
714
715 switch (level)
716 {
717 case LIVE_PATCHING_INLINE_ONLY_STATIC:
718 if (opts_set->x_flag_ipa_cp_clone && opts->x_flag_ipa_cp_clone)
719 error_at (loc,
720 "%<-fipa-cp-clone%> is incompatible with "
721 "%<-flive-patching=inline-only-static%>");
722 else
723 opts->x_flag_ipa_cp_clone = 0;
724
725 if (opts_set->x_flag_ipa_sra && opts->x_flag_ipa_sra)
726 error_at (loc,
727 "%<-fipa-sra%> is incompatible with "
728 "%<-flive-patching=inline-only-static%>");
729 else
730 opts->x_flag_ipa_sra = 0;
731
732 if (opts_set->x_flag_partial_inlining && opts->x_flag_partial_inlining)
733 error_at (loc,
734 "%<-fpartial-inlining%> is incompatible with "
735 "%<-flive-patching=inline-only-static%>");
736 else
737 opts->x_flag_partial_inlining = 0;
738
739 if (opts_set->x_flag_ipa_cp && opts->x_flag_ipa_cp)
740 error_at (loc,
741 "%<-fipa-cp%> is incompatible with "
742 "%<-flive-patching=inline-only-static%>");
743 else
744 opts->x_flag_ipa_cp = 0;
745
746 /* FALLTHROUGH. */
747 case LIVE_PATCHING_INLINE_CLONE:
748 /* live patching should disable whole-program optimization. */
749 if (opts_set->x_flag_whole_program && opts->x_flag_whole_program)
750 error_at (loc,
751 "%<-fwhole-program%> is incompatible with "
752 "%<-flive-patching=inline-only-static|inline-clone%>");
753 else
754 opts->x_flag_whole_program = 0;
755
756 /* visibility change should be excluded by !flag_whole_program
757 && !in_lto_p && !flag_ipa_cp_clone && !flag_ipa_sra
758 && !flag_partial_inlining. */
759
760 if (opts_set->x_flag_ipa_pta && opts->x_flag_ipa_pta)
761 error_at (loc,
762 "%<-fipa-pta%> is incompatible with "
763 "%<-flive-patching=inline-only-static|inline-clone%>");
764 else
765 opts->x_flag_ipa_pta = 0;
766
767 if (opts_set->x_flag_ipa_reference && opts->x_flag_ipa_reference)
768 error_at (loc,
769 "%<-fipa-reference%> is incompatible with "
770 "%<-flive-patching=inline-only-static|inline-clone%>");
771 else
772 opts->x_flag_ipa_reference = 0;
773
774 if (opts_set->x_flag_ipa_ra && opts->x_flag_ipa_ra)
775 error_at (loc,
776 "%<-fipa-ra%> is incompatible with "
777 "%<-flive-patching=inline-only-static|inline-clone%>");
778 else
779 opts->x_flag_ipa_ra = 0;
780
781 if (opts_set->x_flag_ipa_icf && opts->x_flag_ipa_icf)
782 error_at (loc,
783 "%<-fipa-icf%> is incompatible with "
784 "%<-flive-patching=inline-only-static|inline-clone%>");
785 else
786 opts->x_flag_ipa_icf = 0;
787
788 if (opts_set->x_flag_ipa_icf_functions && opts->x_flag_ipa_icf_functions)
789 error_at (loc,
790 "%<-fipa-icf-functions%> is incompatible with "
791 "%<-flive-patching=inline-only-static|inline-clone%>");
792 else
793 opts->x_flag_ipa_icf_functions = 0;
794
795 if (opts_set->x_flag_ipa_icf_variables && opts->x_flag_ipa_icf_variables)
796 error_at (loc,
797 "%<-fipa-icf-variables%> is incompatible with "
798 "%<-flive-patching=inline-only-static|inline-clone%>");
799 else
800 opts->x_flag_ipa_icf_variables = 0;
801
802 if (opts_set->x_flag_ipa_bit_cp && opts->x_flag_ipa_bit_cp)
803 error_at (loc,
804 "%<-fipa-bit-cp%> is incompatible with "
805 "%<-flive-patching=inline-only-static|inline-clone%>");
806 else
807 opts->x_flag_ipa_bit_cp = 0;
808
809 if (opts_set->x_flag_ipa_vrp && opts->x_flag_ipa_vrp)
810 error_at (loc,
811 "%<-fipa-vrp%> is incompatible with "
812 "%<-flive-patching=inline-only-static|inline-clone%>");
813 else
814 opts->x_flag_ipa_vrp = 0;
815
816 if (opts_set->x_flag_ipa_pure_const && opts->x_flag_ipa_pure_const)
817 error_at (loc,
818 "%<-fipa-pure-const%> is incompatible with "
819 "%<-flive-patching=inline-only-static|inline-clone%>");
820 else
821 opts->x_flag_ipa_pure_const = 0;
822
823 /* FIXME: disable unreachable code removal. */
824
825 /* discovery of functions/variables with no address taken. */
826 if (opts_set->x_flag_ipa_reference_addressable
827 && opts->x_flag_ipa_reference_addressable)
828 error_at (loc,
829 "%<-fipa-reference-addressable%> is incompatible with "
830 "%<-flive-patching=inline-only-static|inline-clone%>");
831 else
832 opts->x_flag_ipa_reference_addressable = 0;
833
834 /* ipa stack alignment propagation. */
835 if (opts_set->x_flag_ipa_stack_alignment
836 && opts->x_flag_ipa_stack_alignment)
837 error_at (loc,
838 "%<-fipa-stack-alignment%> is incompatible with "
839 "%<-flive-patching=inline-only-static|inline-clone%>");
840 else
841 opts->x_flag_ipa_stack_alignment = 0;
842 break;
843 default:
844 gcc_unreachable ();
845 }
846 }
847
848 /* After all options at LOC have been read into OPTS and OPTS_SET,
849 finalize settings of those options and diagnose incompatible
850 combinations. */
851 void
852 finish_options (struct gcc_options *opts, struct gcc_options *opts_set,
853 location_t loc)
854 {
855 enum unwind_info_type ui_except;
856
857 if (opts->x_dump_base_name
858 && ! opts->x_dump_base_name_prefixed)
859 {
860 const char *sep = opts->x_dump_base_name;
861
862 for (; *sep; sep++)
863 if (IS_DIR_SEPARATOR (*sep))
864 break;
865
866 if (*sep)
867 /* If dump_base_path contains subdirectories, don't prepend
868 anything. */;
869 else if (opts->x_dump_dir_name)
870 /* We have a DUMP_DIR_NAME, prepend that. */
871 opts->x_dump_base_name = opts_concat (opts->x_dump_dir_name,
872 opts->x_dump_base_name, NULL);
873 else if (opts->x_aux_base_name
874 && strcmp (opts->x_aux_base_name, HOST_BIT_BUCKET) != 0)
875 /* AUX_BASE_NAME is set and is not the bit bucket. If it
876 contains a directory component, prepend those directories.
877 Typically this places things in the same directory as the
878 object file. */
879 {
880 const char *aux_base;
881
882 base_of_path (opts->x_aux_base_name, &aux_base);
883 if (opts->x_aux_base_name != aux_base)
884 {
885 int dir_len = aux_base - opts->x_aux_base_name;
886 char *new_dump_base_name
887 = XOBNEWVEC (&opts_obstack, char,
888 strlen (opts->x_dump_base_name) + dir_len + 1);
889
890 /* Copy directory component from OPTS->X_AUX_BASE_NAME. */
891 memcpy (new_dump_base_name, opts->x_aux_base_name, dir_len);
892 /* Append existing OPTS->X_DUMP_BASE_NAME. */
893 strcpy (new_dump_base_name + dir_len, opts->x_dump_base_name);
894 opts->x_dump_base_name = new_dump_base_name;
895 }
896 }
897
898 /* It is definitely prefixed now. */
899 opts->x_dump_base_name_prefixed = true;
900 }
901
902 /* Handle related options for unit-at-a-time, toplevel-reorder, and
903 section-anchors. */
904 if (!opts->x_flag_unit_at_a_time)
905 {
906 if (opts->x_flag_section_anchors && opts_set->x_flag_section_anchors)
907 error_at (loc, "section anchors must be disabled when unit-at-a-time "
908 "is disabled");
909 opts->x_flag_section_anchors = 0;
910 if (opts->x_flag_toplevel_reorder == 1)
911 error_at (loc, "toplevel reorder must be disabled when unit-at-a-time "
912 "is disabled");
913 opts->x_flag_toplevel_reorder = 0;
914 }
915
916 /* -fself-test depends on the state of the compiler prior to
917 compiling anything. Ideally it should be run on an empty source
918 file. However, in case we get run with actual source, assume
919 -fsyntax-only which will inhibit any compiler initialization
920 which may confuse the self tests. */
921 if (opts->x_flag_self_test)
922 opts->x_flag_syntax_only = 1;
923
924 if (opts->x_flag_tm && opts->x_flag_non_call_exceptions)
925 sorry ("transactional memory is not supported with non-call exceptions");
926
927 /* Unless the user has asked for section anchors, we disable toplevel
928 reordering at -O0 to disable transformations that might be surprising
929 to end users and to get -fno-toplevel-reorder tested. */
930 if (!opts->x_optimize
931 && opts->x_flag_toplevel_reorder == 2
932 && !(opts->x_flag_section_anchors && opts_set->x_flag_section_anchors))
933 {
934 opts->x_flag_toplevel_reorder = 0;
935 opts->x_flag_section_anchors = 0;
936 }
937 if (!opts->x_flag_toplevel_reorder)
938 {
939 if (opts->x_flag_section_anchors && opts_set->x_flag_section_anchors)
940 error_at (loc, "section anchors must be disabled when toplevel reorder"
941 " is disabled");
942 opts->x_flag_section_anchors = 0;
943 }
944
945 if (!opts->x_flag_opts_finished)
946 {
947 /* We initialize opts->x_flag_pie to -1 so that targets can set a
948 default value. */
949 if (opts->x_flag_pie == -1)
950 {
951 /* We initialize opts->x_flag_pic to -1 so that we can tell if
952 -fpic, -fPIC, -fno-pic or -fno-PIC is used. */
953 if (opts->x_flag_pic == -1)
954 opts->x_flag_pie = DEFAULT_FLAG_PIE;
955 else
956 opts->x_flag_pie = 0;
957 }
958 /* If -fPIE or -fpie is used, turn on PIC. */
959 if (opts->x_flag_pie)
960 opts->x_flag_pic = opts->x_flag_pie;
961 else if (opts->x_flag_pic == -1)
962 opts->x_flag_pic = 0;
963 if (opts->x_flag_pic && !opts->x_flag_pie)
964 opts->x_flag_shlib = 1;
965 opts->x_flag_opts_finished = true;
966 }
967
968 /* We initialize opts->x_flag_stack_protect to -1 so that targets
969 can set a default value. */
970 if (opts->x_flag_stack_protect == -1)
971 opts->x_flag_stack_protect = DEFAULT_FLAG_SSP;
972
973 if (opts->x_optimize == 0)
974 {
975 /* Inlining does not work if not optimizing,
976 so force it not to be done. */
977 opts->x_warn_inline = 0;
978 opts->x_flag_no_inline = 1;
979 }
980
981 /* The optimization to partition hot and cold basic blocks into separate
982 sections of the .o and executable files does not work (currently)
983 with exception handling. This is because there is no support for
984 generating unwind info. If opts->x_flag_exceptions is turned on
985 we need to turn off the partitioning optimization. */
986
987 ui_except = targetm_common.except_unwind_info (opts);
988
989 if (opts->x_flag_exceptions
990 && opts->x_flag_reorder_blocks_and_partition
991 && (ui_except == UI_SJLJ || ui_except >= UI_TARGET))
992 {
993 if (opts_set->x_flag_reorder_blocks_and_partition)
994 inform (loc,
995 "%<-freorder-blocks-and-partition%> does not work "
996 "with exceptions on this architecture");
997 opts->x_flag_reorder_blocks_and_partition = 0;
998 opts->x_flag_reorder_blocks = 1;
999 }
1000
1001 /* If user requested unwind info, then turn off the partitioning
1002 optimization. */
1003
1004 if (opts->x_flag_unwind_tables
1005 && !targetm_common.unwind_tables_default
1006 && opts->x_flag_reorder_blocks_and_partition
1007 && (ui_except == UI_SJLJ || ui_except >= UI_TARGET))
1008 {
1009 if (opts_set->x_flag_reorder_blocks_and_partition)
1010 inform (loc,
1011 "%<-freorder-blocks-and-partition%> does not support "
1012 "unwind info on this architecture");
1013 opts->x_flag_reorder_blocks_and_partition = 0;
1014 opts->x_flag_reorder_blocks = 1;
1015 }
1016
1017 /* If the target requested unwind info, then turn off the partitioning
1018 optimization with a different message. Likewise, if the target does not
1019 support named sections. */
1020
1021 if (opts->x_flag_reorder_blocks_and_partition
1022 && (!targetm_common.have_named_sections
1023 || (opts->x_flag_unwind_tables
1024 && targetm_common.unwind_tables_default
1025 && (ui_except == UI_SJLJ || ui_except >= UI_TARGET))))
1026 {
1027 if (opts_set->x_flag_reorder_blocks_and_partition)
1028 inform (loc,
1029 "%<-freorder-blocks-and-partition%> does not work "
1030 "on this architecture");
1031 opts->x_flag_reorder_blocks_and_partition = 0;
1032 opts->x_flag_reorder_blocks = 1;
1033 }
1034
1035
1036 /* Pipelining of outer loops is only possible when general pipelining
1037 capabilities are requested. */
1038 if (!opts->x_flag_sel_sched_pipelining)
1039 opts->x_flag_sel_sched_pipelining_outer_loops = 0;
1040
1041 if (opts->x_flag_conserve_stack)
1042 {
1043 maybe_set_param_value (PARAM_LARGE_STACK_FRAME, 100,
1044 opts->x_param_values, opts_set->x_param_values);
1045 maybe_set_param_value (PARAM_STACK_FRAME_GROWTH, 40,
1046 opts->x_param_values, opts_set->x_param_values);
1047 }
1048
1049 if (opts->x_flag_lto)
1050 {
1051 #ifdef ENABLE_LTO
1052 opts->x_flag_generate_lto = 1;
1053
1054 /* When generating IL, do not operate in whole-program mode.
1055 Otherwise, symbols will be privatized too early, causing link
1056 errors later. */
1057 opts->x_flag_whole_program = 0;
1058 #else
1059 error_at (loc, "LTO support has not been enabled in this configuration");
1060 #endif
1061 if (!opts->x_flag_fat_lto_objects
1062 && (!HAVE_LTO_PLUGIN
1063 || (opts_set->x_flag_use_linker_plugin
1064 && !opts->x_flag_use_linker_plugin)))
1065 {
1066 if (opts_set->x_flag_fat_lto_objects)
1067 error_at (loc, "%<-fno-fat-lto-objects%> are supported only with "
1068 "linker plugin");
1069 opts->x_flag_fat_lto_objects = 1;
1070 }
1071 }
1072
1073 /* We initialize opts->x_flag_split_stack to -1 so that targets can set a
1074 default value if they choose based on other options. */
1075 if (opts->x_flag_split_stack == -1)
1076 opts->x_flag_split_stack = 0;
1077 else if (opts->x_flag_split_stack)
1078 {
1079 if (!targetm_common.supports_split_stack (true, opts))
1080 {
1081 error_at (loc, "%<-fsplit-stack%> is not supported by "
1082 "this compiler configuration");
1083 opts->x_flag_split_stack = 0;
1084 }
1085 }
1086
1087 /* If stack splitting is turned on, and the user did not explicitly
1088 request function partitioning, turn off partitioning, as it
1089 confuses the linker when trying to handle partitioned split-stack
1090 code that calls a non-split-stack functions. But if partitioning
1091 was turned on explicitly just hope for the best. */
1092 if (opts->x_flag_split_stack
1093 && opts->x_flag_reorder_blocks_and_partition
1094 && !opts_set->x_flag_reorder_blocks_and_partition)
1095 opts->x_flag_reorder_blocks_and_partition = 0;
1096
1097 if (opts->x_flag_reorder_blocks_and_partition
1098 && !opts_set->x_flag_reorder_functions)
1099 opts->x_flag_reorder_functions = 1;
1100
1101 /* Tune vectorization related parametees according to cost model. */
1102 if (opts->x_flag_vect_cost_model == VECT_COST_MODEL_CHEAP)
1103 {
1104 maybe_set_param_value (PARAM_VECT_MAX_VERSION_FOR_ALIAS_CHECKS,
1105 6, opts->x_param_values, opts_set->x_param_values);
1106 maybe_set_param_value (PARAM_VECT_MAX_VERSION_FOR_ALIGNMENT_CHECKS,
1107 0, opts->x_param_values, opts_set->x_param_values);
1108 maybe_set_param_value (PARAM_VECT_MAX_PEELING_FOR_ALIGNMENT,
1109 0, opts->x_param_values, opts_set->x_param_values);
1110 }
1111
1112 /* Set PARAM_MAX_STORES_TO_SINK to 0 if either vectorization or if-conversion
1113 is disabled. */
1114 if ((!opts->x_flag_tree_loop_vectorize && !opts->x_flag_tree_slp_vectorize)
1115 || !opts->x_flag_tree_loop_if_convert)
1116 maybe_set_param_value (PARAM_MAX_STORES_TO_SINK, 0,
1117 opts->x_param_values, opts_set->x_param_values);
1118
1119 /* The -gsplit-dwarf option requires -ggnu-pubnames. */
1120 if (opts->x_dwarf_split_debug_info)
1121 opts->x_debug_generate_pub_sections = 2;
1122
1123 if ((opts->x_flag_sanitize
1124 & (SANITIZE_USER_ADDRESS | SANITIZE_KERNEL_ADDRESS)) == 0)
1125 {
1126 if (opts->x_flag_sanitize & SANITIZE_POINTER_COMPARE)
1127 error_at (loc,
1128 "%<-fsanitize=pointer-compare%> must be combined with "
1129 "%<-fsanitize=address%> or %<-fsanitize=kernel-address%>");
1130 if (opts->x_flag_sanitize & SANITIZE_POINTER_SUBTRACT)
1131 error_at (loc,
1132 "%<-fsanitize=pointer-subtract%> must be combined with "
1133 "%<-fsanitize=address%> or %<-fsanitize=kernel-address%>");
1134 }
1135
1136 /* Userspace and kernel ASan conflict with each other. */
1137 if ((opts->x_flag_sanitize & SANITIZE_USER_ADDRESS)
1138 && (opts->x_flag_sanitize & SANITIZE_KERNEL_ADDRESS))
1139 error_at (loc,
1140 "%<-fsanitize=address%> is incompatible with "
1141 "%<-fsanitize=kernel-address%>");
1142
1143 /* And with TSan. */
1144 if ((opts->x_flag_sanitize & SANITIZE_ADDRESS)
1145 && (opts->x_flag_sanitize & SANITIZE_THREAD))
1146 error_at (loc,
1147 "%<-fsanitize=address%> and %<-fsanitize=kernel-address%> "
1148 "are incompatible with %<-fsanitize=thread%>");
1149
1150 if ((opts->x_flag_sanitize & SANITIZE_LEAK)
1151 && (opts->x_flag_sanitize & SANITIZE_THREAD))
1152 error_at (loc,
1153 "%<-fsanitize=leak%> is incompatible with %<-fsanitize=thread%>");
1154
1155 /* Check error recovery for -fsanitize-recover option. */
1156 for (int i = 0; sanitizer_opts[i].name != NULL; ++i)
1157 if ((opts->x_flag_sanitize_recover & sanitizer_opts[i].flag)
1158 && !sanitizer_opts[i].can_recover)
1159 error_at (loc, "%<-fsanitize-recover=%s%> is not supported",
1160 sanitizer_opts[i].name);
1161
1162 /* When instrumenting the pointers, we don't want to remove
1163 the null pointer checks. */
1164 if (opts->x_flag_sanitize & (SANITIZE_NULL | SANITIZE_NONNULL_ATTRIBUTE
1165 | SANITIZE_RETURNS_NONNULL_ATTRIBUTE))
1166 opts->x_flag_delete_null_pointer_checks = 0;
1167
1168 /* Aggressive compiler optimizations may cause false negatives. */
1169 if (opts->x_flag_sanitize & ~(SANITIZE_LEAK | SANITIZE_UNREACHABLE))
1170 opts->x_flag_aggressive_loop_optimizations = 0;
1171
1172 /* Enable -fsanitize-address-use-after-scope if address sanitizer is
1173 enabled. */
1174 if ((opts->x_flag_sanitize & SANITIZE_USER_ADDRESS)
1175 && !opts_set->x_flag_sanitize_address_use_after_scope)
1176 opts->x_flag_sanitize_address_use_after_scope = true;
1177
1178 /* Force -fstack-reuse=none in case -fsanitize-address-use-after-scope
1179 is enabled. */
1180 if (opts->x_flag_sanitize_address_use_after_scope)
1181 {
1182 if (opts->x_flag_stack_reuse != SR_NONE
1183 && opts_set->x_flag_stack_reuse != SR_NONE)
1184 error_at (loc,
1185 "%<-fsanitize-address-use-after-scope%> requires "
1186 "%<-fstack-reuse=none%> option");
1187
1188 opts->x_flag_stack_reuse = SR_NONE;
1189 }
1190
1191 if ((opts->x_flag_sanitize & SANITIZE_USER_ADDRESS) && opts->x_flag_tm)
1192 sorry ("transactional memory is not supported with %<-fsanitize=address%>");
1193
1194 if ((opts->x_flag_sanitize & SANITIZE_KERNEL_ADDRESS) && opts->x_flag_tm)
1195 sorry ("transactional memory is not supported with "
1196 "%<-fsanitize=kernel-address%>");
1197
1198 /* Currently live patching is not support for LTO. */
1199 if (opts->x_flag_live_patching && opts->x_flag_lto)
1200 sorry ("live patching is not supported with LTO");
1201
1202 /* Control IPA optimizations based on different -flive-patching level. */
1203 if (opts->x_flag_live_patching)
1204 {
1205 control_options_for_live_patching (opts, opts_set,
1206 opts->x_flag_live_patching,
1207 loc);
1208 }
1209 }
1210
1211 #define LEFT_COLUMN 27
1212
1213 /* Output ITEM, of length ITEM_WIDTH, in the left column,
1214 followed by word-wrapped HELP in a second column. */
1215 static void
1216 wrap_help (const char *help,
1217 const char *item,
1218 unsigned int item_width,
1219 unsigned int columns)
1220 {
1221 unsigned int col_width = LEFT_COLUMN;
1222 unsigned int remaining, room, len;
1223
1224 remaining = strlen (help);
1225
1226 do
1227 {
1228 room = columns - 3 - MAX (col_width, item_width);
1229 if (room > columns)
1230 room = 0;
1231 len = remaining;
1232
1233 if (room < len)
1234 {
1235 unsigned int i;
1236
1237 for (i = 0; help[i]; i++)
1238 {
1239 if (i >= room && len != remaining)
1240 break;
1241 if (help[i] == ' ')
1242 len = i;
1243 else if ((help[i] == '-' || help[i] == '/')
1244 && help[i + 1] != ' '
1245 && i > 0 && ISALPHA (help[i - 1]))
1246 len = i + 1;
1247 }
1248 }
1249
1250 printf (" %-*.*s %.*s\n", col_width, item_width, item, len, help);
1251 item_width = 0;
1252 while (help[len] == ' ')
1253 len++;
1254 help += len;
1255 remaining -= len;
1256 }
1257 while (remaining);
1258 }
1259
1260 /* Data structure used to print list of valid option values. */
1261
1262 struct option_help_tuple
1263 {
1264 option_help_tuple (int code, vec<const char *> values):
1265 m_code (code), m_values (values)
1266 {}
1267
1268 /* Code of an option. */
1269 int m_code;
1270
1271 /* List of possible values. */
1272 vec<const char *> m_values;
1273 };
1274
1275 /* Print help for a specific front-end, etc. */
1276 static void
1277 print_filtered_help (unsigned int include_flags,
1278 unsigned int exclude_flags,
1279 unsigned int any_flags,
1280 unsigned int columns,
1281 struct gcc_options *opts,
1282 unsigned int lang_mask)
1283 {
1284 unsigned int i;
1285 const char *help;
1286 bool found = false;
1287 bool displayed = false;
1288 char new_help[256];
1289
1290 if (include_flags == CL_PARAMS)
1291 {
1292 for (i = 0; i < LAST_PARAM; i++)
1293 {
1294 const char *param = compiler_params[i].option;
1295
1296 help = compiler_params[i].help;
1297 if (help == NULL || *help == '\0')
1298 {
1299 if (exclude_flags & CL_UNDOCUMENTED)
1300 continue;
1301 help = undocumented_msg;
1302 }
1303
1304 /* Get the translation. */
1305 help = _(help);
1306
1307 if (!opts->x_quiet_flag)
1308 {
1309 snprintf (new_help, sizeof (new_help),
1310 _("default %d minimum %d maximum %d"),
1311 compiler_params[i].default_value,
1312 compiler_params[i].min_value,
1313 compiler_params[i].max_value);
1314 help = new_help;
1315 }
1316 wrap_help (help, param, strlen (param), columns);
1317 }
1318 putchar ('\n');
1319 return;
1320 }
1321
1322 if (!opts->x_help_printed)
1323 opts->x_help_printed = XCNEWVAR (char, cl_options_count);
1324
1325 if (!opts->x_help_enum_printed)
1326 opts->x_help_enum_printed = XCNEWVAR (char, cl_enums_count);
1327
1328 auto_vec<option_help_tuple> help_tuples;
1329
1330 for (i = 0; i < cl_options_count; i++)
1331 {
1332 const struct cl_option *option = cl_options + i;
1333 unsigned int len;
1334 const char *opt;
1335 const char *tab;
1336
1337 if (include_flags == 0
1338 || ((option->flags & include_flags) != include_flags))
1339 {
1340 if ((option->flags & any_flags) == 0)
1341 continue;
1342 }
1343
1344 /* Skip unwanted switches. */
1345 if ((option->flags & exclude_flags) != 0)
1346 continue;
1347
1348 /* The driver currently prints its own help text. */
1349 if ((option->flags & CL_DRIVER) != 0
1350 && (option->flags & (((1U << cl_lang_count) - 1)
1351 | CL_COMMON | CL_TARGET)) == 0)
1352 continue;
1353
1354 found = true;
1355 /* Skip switches that have already been printed. */
1356 if (opts->x_help_printed[i])
1357 continue;
1358
1359 opts->x_help_printed[i] = true;
1360
1361 help = option->help;
1362 if (help == NULL)
1363 {
1364 if (exclude_flags & CL_UNDOCUMENTED)
1365 continue;
1366
1367 help = undocumented_msg;
1368 }
1369
1370 if (option->alias_target < N_OPTS
1371 && cl_options [option->alias_target].help)
1372 {
1373 if (help == undocumented_msg)
1374 {
1375 /* For undocumented options that are aliases for other options
1376 that are documented, point the reader to the other option in
1377 preference of the former. */
1378 snprintf (new_help, sizeof new_help,
1379 _("Same as %s. Use the latter option instead."),
1380 cl_options [option->alias_target].opt_text);
1381 }
1382 else
1383 {
1384 /* For documented options with aliases, mention the aliased
1385 option's name for reference. */
1386 snprintf (new_help, sizeof new_help,
1387 _("%s Same as %s."),
1388 help, cl_options [option->alias_target].opt_text);
1389 }
1390
1391 help = new_help;
1392 }
1393
1394 if (option->warn_message)
1395 {
1396 /* Mention that the use of the option will trigger a warning. */
1397 if (help == new_help)
1398 snprintf (new_help + strlen (new_help),
1399 sizeof new_help - strlen (new_help),
1400 " %s", _(use_diagnosed_msg));
1401 else
1402 snprintf (new_help, sizeof new_help,
1403 "%s %s", help, _(use_diagnosed_msg));
1404
1405 help = new_help;
1406 }
1407
1408 /* Get the translation. */
1409 help = _(help);
1410
1411 /* Find the gap between the name of the
1412 option and its descriptive text. */
1413 tab = strchr (help, '\t');
1414 if (tab)
1415 {
1416 len = tab - help;
1417 opt = help;
1418 help = tab + 1;
1419 }
1420 else
1421 {
1422 opt = option->opt_text;
1423 len = strlen (opt);
1424 }
1425
1426 /* With the -Q option enabled we change the descriptive text associated
1427 with an option to be an indication of its current setting. */
1428 if (!opts->x_quiet_flag)
1429 {
1430 void *flag_var = option_flag_var (i, opts);
1431
1432 if (len < (LEFT_COLUMN + 2))
1433 strcpy (new_help, "\t\t");
1434 else
1435 strcpy (new_help, "\t");
1436
1437 if (flag_var != NULL
1438 && option->var_type != CLVC_DEFER)
1439 {
1440 if (option->flags & CL_JOINED)
1441 {
1442 if (option->var_type == CLVC_STRING)
1443 {
1444 if (* (const char **) flag_var != NULL)
1445 snprintf (new_help + strlen (new_help),
1446 sizeof (new_help) - strlen (new_help),
1447 "%s", * (const char **) flag_var);
1448 }
1449 else if (option->var_type == CLVC_ENUM)
1450 {
1451 const struct cl_enum *e = &cl_enums[option->var_enum];
1452 int value;
1453 const char *arg = NULL;
1454
1455 value = e->get (flag_var);
1456 enum_value_to_arg (e->values, &arg, value, lang_mask);
1457 if (arg == NULL)
1458 arg = _("[default]");
1459 snprintf (new_help + strlen (new_help),
1460 sizeof (new_help) - strlen (new_help),
1461 "%s", arg);
1462 }
1463 else
1464 sprintf (new_help + strlen (new_help),
1465 "%d", * (int *) flag_var);
1466 }
1467 else
1468 strcat (new_help, option_enabled (i, opts)
1469 ? _("[enabled]") : _("[disabled]"));
1470 }
1471
1472 help = new_help;
1473 }
1474
1475 if (option->range_max != -1)
1476 {
1477 char b[128];
1478 snprintf (b, sizeof (b), "<%d,%d>", option->range_min,
1479 option->range_max);
1480 opt = concat (opt, b, NULL);
1481 len += strlen (b);
1482 }
1483
1484 wrap_help (help, opt, len, columns);
1485 displayed = true;
1486
1487 if (option->var_type == CLVC_ENUM
1488 && opts->x_help_enum_printed[option->var_enum] != 2)
1489 opts->x_help_enum_printed[option->var_enum] = 1;
1490 else
1491 {
1492 vec<const char *> option_values
1493 = targetm_common.get_valid_option_values (i, NULL);
1494 if (!option_values.is_empty ())
1495 help_tuples.safe_push (option_help_tuple (i, option_values));
1496 }
1497 }
1498
1499 if (! found)
1500 {
1501 unsigned int langs = include_flags & CL_LANG_ALL;
1502
1503 if (langs == 0)
1504 printf (_(" No options with the desired characteristics were found\n"));
1505 else
1506 {
1507 unsigned int i;
1508
1509 /* PR 31349: Tell the user how to see all of the
1510 options supported by a specific front end. */
1511 for (i = 0; (1U << i) < CL_LANG_ALL; i ++)
1512 if ((1U << i) & langs)
1513 printf (_(" None found. Use --help=%s to show *all* the options supported by the %s front-end.\n"),
1514 lang_names[i], lang_names[i]);
1515 }
1516
1517 }
1518 else if (! displayed)
1519 printf (_(" All options with the desired characteristics have already been displayed\n"));
1520
1521 putchar ('\n');
1522
1523 /* Print details of enumerated option arguments, if those
1524 enumerations have help text headings provided. If no help text
1525 is provided, presume that the possible values are listed in the
1526 help text for the relevant options. */
1527 for (i = 0; i < cl_enums_count; i++)
1528 {
1529 unsigned int j, pos;
1530
1531 if (opts->x_help_enum_printed[i] != 1)
1532 continue;
1533 if (cl_enums[i].help == NULL)
1534 continue;
1535 printf (" %s\n ", _(cl_enums[i].help));
1536 pos = 4;
1537 for (j = 0; cl_enums[i].values[j].arg != NULL; j++)
1538 {
1539 unsigned int len = strlen (cl_enums[i].values[j].arg);
1540
1541 if (pos > 4 && pos + 1 + len <= columns)
1542 {
1543 printf (" %s", cl_enums[i].values[j].arg);
1544 pos += 1 + len;
1545 }
1546 else
1547 {
1548 if (pos > 4)
1549 {
1550 printf ("\n ");
1551 pos = 4;
1552 }
1553 printf ("%s", cl_enums[i].values[j].arg);
1554 pos += len;
1555 }
1556 }
1557 printf ("\n\n");
1558 opts->x_help_enum_printed[i] = 2;
1559 }
1560
1561 for (unsigned i = 0; i < help_tuples.length (); i++)
1562 {
1563 const struct cl_option *option = cl_options + help_tuples[i].m_code;
1564 printf (" Known valid arguments for %s option:\n ", option->opt_text);
1565 for (unsigned j = 0; j < help_tuples[i].m_values.length (); j++)
1566 printf (" %s", help_tuples[i].m_values[j]);
1567 printf ("\n\n");
1568 }
1569 }
1570
1571 /* Display help for a specified type of option.
1572 The options must have ALL of the INCLUDE_FLAGS set
1573 ANY of the flags in the ANY_FLAGS set
1574 and NONE of the EXCLUDE_FLAGS set. The current option state is in
1575 OPTS; LANG_MASK is used for interpreting enumerated option state. */
1576 static void
1577 print_specific_help (unsigned int include_flags,
1578 unsigned int exclude_flags,
1579 unsigned int any_flags,
1580 struct gcc_options *opts,
1581 unsigned int lang_mask)
1582 {
1583 unsigned int all_langs_mask = (1U << cl_lang_count) - 1;
1584 const char * description = NULL;
1585 const char * descrip_extra = "";
1586 size_t i;
1587 unsigned int flag;
1588
1589 /* Sanity check: Make sure that we do not have more
1590 languages than we have bits available to enumerate them. */
1591 gcc_assert ((1U << cl_lang_count) <= CL_MIN_OPTION_CLASS);
1592
1593 /* If we have not done so already, obtain
1594 the desired maximum width of the output. */
1595 if (opts->x_help_columns == 0)
1596 {
1597 opts->x_help_columns = get_terminal_width ();
1598 if (opts->x_help_columns == INT_MAX)
1599 /* Use a reasonable default. */
1600 opts->x_help_columns = 80;
1601 }
1602
1603 /* Decide upon the title for the options that we are going to display. */
1604 for (i = 0, flag = 1; flag <= CL_MAX_OPTION_CLASS; flag <<= 1, i ++)
1605 {
1606 switch (flag & include_flags)
1607 {
1608 case 0:
1609 case CL_DRIVER:
1610 break;
1611
1612 case CL_TARGET:
1613 description = _("The following options are target specific");
1614 break;
1615 case CL_WARNING:
1616 description = _("The following options control compiler warning messages");
1617 break;
1618 case CL_OPTIMIZATION:
1619 description = _("The following options control optimizations");
1620 break;
1621 case CL_COMMON:
1622 description = _("The following options are language-independent");
1623 break;
1624 case CL_PARAMS:
1625 description = _("The --param option recognizes the following as parameters");
1626 break;
1627 default:
1628 if (i >= cl_lang_count)
1629 break;
1630 if (exclude_flags & all_langs_mask)
1631 description = _("The following options are specific to just the language ");
1632 else
1633 description = _("The following options are supported by the language ");
1634 descrip_extra = lang_names [i];
1635 break;
1636 }
1637 }
1638
1639 if (description == NULL)
1640 {
1641 if (any_flags == 0)
1642 {
1643 if (include_flags & CL_UNDOCUMENTED)
1644 description = _("The following options are not documented");
1645 else if (include_flags & CL_SEPARATE)
1646 description = _("The following options take separate arguments");
1647 else if (include_flags & CL_JOINED)
1648 description = _("The following options take joined arguments");
1649 else
1650 {
1651 internal_error ("unrecognized include_flags 0x%x passed to print_specific_help",
1652 include_flags);
1653 return;
1654 }
1655 }
1656 else
1657 {
1658 if (any_flags & all_langs_mask)
1659 description = _("The following options are language-related");
1660 else
1661 description = _("The following options are language-independent");
1662 }
1663 }
1664
1665 printf ("%s%s:\n", description, descrip_extra);
1666 print_filtered_help (include_flags, exclude_flags, any_flags,
1667 opts->x_help_columns, opts, lang_mask);
1668 }
1669
1670 /* Enable FDO-related flags. */
1671
1672 static void
1673 enable_fdo_optimizations (struct gcc_options *opts,
1674 struct gcc_options *opts_set,
1675 int value)
1676 {
1677 if (!opts_set->x_flag_branch_probabilities)
1678 opts->x_flag_branch_probabilities = value;
1679 if (!opts_set->x_flag_profile_values)
1680 opts->x_flag_profile_values = value;
1681 if (!opts_set->x_flag_unroll_loops)
1682 opts->x_flag_unroll_loops = value;
1683 if (!opts_set->x_flag_peel_loops)
1684 opts->x_flag_peel_loops = value;
1685 if (!opts_set->x_flag_tracer)
1686 opts->x_flag_tracer = value;
1687 if (!opts_set->x_flag_value_profile_transformations)
1688 opts->x_flag_value_profile_transformations = value;
1689 if (!opts_set->x_flag_inline_functions)
1690 opts->x_flag_inline_functions = value;
1691 if (!opts_set->x_flag_ipa_cp)
1692 opts->x_flag_ipa_cp = value;
1693 if (!opts_set->x_flag_ipa_cp_clone
1694 && value && opts->x_flag_ipa_cp)
1695 opts->x_flag_ipa_cp_clone = value;
1696 if (!opts_set->x_flag_ipa_bit_cp
1697 && value && opts->x_flag_ipa_cp)
1698 opts->x_flag_ipa_bit_cp = value;
1699 if (!opts_set->x_flag_predictive_commoning)
1700 opts->x_flag_predictive_commoning = value;
1701 if (!opts_set->x_flag_split_loops)
1702 opts->x_flag_split_loops = value;
1703 if (!opts_set->x_flag_unswitch_loops)
1704 opts->x_flag_unswitch_loops = value;
1705 if (!opts_set->x_flag_gcse_after_reload)
1706 opts->x_flag_gcse_after_reload = value;
1707 if (!opts_set->x_flag_tree_loop_vectorize)
1708 opts->x_flag_tree_loop_vectorize = value;
1709 if (!opts_set->x_flag_tree_slp_vectorize)
1710 opts->x_flag_tree_slp_vectorize = value;
1711 if (!opts_set->x_flag_vect_cost_model)
1712 opts->x_flag_vect_cost_model = VECT_COST_MODEL_DYNAMIC;
1713 if (!opts_set->x_flag_tree_loop_distribute_patterns)
1714 opts->x_flag_tree_loop_distribute_patterns = value;
1715 }
1716
1717 /* -f{,no-}sanitize{,-recover}= suboptions. */
1718 const struct sanitizer_opts_s sanitizer_opts[] =
1719 {
1720 #define SANITIZER_OPT(name, flags, recover) \
1721 { #name, flags, sizeof #name - 1, recover }
1722 SANITIZER_OPT (address, (SANITIZE_ADDRESS | SANITIZE_USER_ADDRESS), true),
1723 SANITIZER_OPT (kernel-address, (SANITIZE_ADDRESS | SANITIZE_KERNEL_ADDRESS),
1724 true),
1725 SANITIZER_OPT (pointer-compare, SANITIZE_POINTER_COMPARE, true),
1726 SANITIZER_OPT (pointer-subtract, SANITIZE_POINTER_SUBTRACT, true),
1727 SANITIZER_OPT (thread, SANITIZE_THREAD, false),
1728 SANITIZER_OPT (leak, SANITIZE_LEAK, false),
1729 SANITIZER_OPT (shift, SANITIZE_SHIFT, true),
1730 SANITIZER_OPT (shift-base, SANITIZE_SHIFT_BASE, true),
1731 SANITIZER_OPT (shift-exponent, SANITIZE_SHIFT_EXPONENT, true),
1732 SANITIZER_OPT (integer-divide-by-zero, SANITIZE_DIVIDE, true),
1733 SANITIZER_OPT (undefined, SANITIZE_UNDEFINED, true),
1734 SANITIZER_OPT (unreachable, SANITIZE_UNREACHABLE, false),
1735 SANITIZER_OPT (vla-bound, SANITIZE_VLA, true),
1736 SANITIZER_OPT (return, SANITIZE_RETURN, false),
1737 SANITIZER_OPT (null, SANITIZE_NULL, true),
1738 SANITIZER_OPT (signed-integer-overflow, SANITIZE_SI_OVERFLOW, true),
1739 SANITIZER_OPT (bool, SANITIZE_BOOL, true),
1740 SANITIZER_OPT (enum, SANITIZE_ENUM, true),
1741 SANITIZER_OPT (float-divide-by-zero, SANITIZE_FLOAT_DIVIDE, true),
1742 SANITIZER_OPT (float-cast-overflow, SANITIZE_FLOAT_CAST, true),
1743 SANITIZER_OPT (bounds, SANITIZE_BOUNDS, true),
1744 SANITIZER_OPT (bounds-strict, SANITIZE_BOUNDS | SANITIZE_BOUNDS_STRICT, true),
1745 SANITIZER_OPT (alignment, SANITIZE_ALIGNMENT, true),
1746 SANITIZER_OPT (nonnull-attribute, SANITIZE_NONNULL_ATTRIBUTE, true),
1747 SANITIZER_OPT (returns-nonnull-attribute, SANITIZE_RETURNS_NONNULL_ATTRIBUTE,
1748 true),
1749 SANITIZER_OPT (object-size, SANITIZE_OBJECT_SIZE, true),
1750 SANITIZER_OPT (vptr, SANITIZE_VPTR, true),
1751 SANITIZER_OPT (pointer-overflow, SANITIZE_POINTER_OVERFLOW, true),
1752 SANITIZER_OPT (builtin, SANITIZE_BUILTIN, true),
1753 SANITIZER_OPT (all, ~0U, true),
1754 #undef SANITIZER_OPT
1755 { NULL, 0U, 0UL, false }
1756 };
1757
1758 /* -f{,no-}sanitize-coverage= suboptions. */
1759 const struct sanitizer_opts_s coverage_sanitizer_opts[] =
1760 {
1761 #define COVERAGE_SANITIZER_OPT(name, flags) \
1762 { #name, flags, sizeof #name - 1, true }
1763 COVERAGE_SANITIZER_OPT (trace-pc, SANITIZE_COV_TRACE_PC),
1764 COVERAGE_SANITIZER_OPT (trace-cmp, SANITIZE_COV_TRACE_CMP),
1765 #undef COVERAGE_SANITIZER_OPT
1766 { NULL, 0U, 0UL, false }
1767 };
1768
1769 /* A struct for describing a run of chars within a string. */
1770
1771 struct string_fragment
1772 {
1773 string_fragment (const char *start, size_t len)
1774 : m_start (start), m_len (len) {}
1775
1776 const char *m_start;
1777 size_t m_len;
1778 };
1779
1780 /* Specialization of edit_distance_traits for string_fragment,
1781 for use by get_closest_sanitizer_option. */
1782
1783 template <>
1784 struct edit_distance_traits<const string_fragment &>
1785 {
1786 static size_t get_length (const string_fragment &fragment)
1787 {
1788 return fragment.m_len;
1789 }
1790
1791 static const char *get_string (const string_fragment &fragment)
1792 {
1793 return fragment.m_start;
1794 }
1795 };
1796
1797 /* Given ARG, an unrecognized sanitizer option, return the best
1798 matching sanitizer option, or NULL if there isn't one.
1799 OPTS is array of candidate sanitizer options.
1800 CODE is OPT_fsanitize_, OPT_fsanitize_recover_ or
1801 OPT_fsanitize_coverage_.
1802 VALUE is non-zero for the regular form of the option, zero
1803 for the "no-" form (e.g. "-fno-sanitize-recover="). */
1804
1805 static const char *
1806 get_closest_sanitizer_option (const string_fragment &arg,
1807 const struct sanitizer_opts_s *opts,
1808 enum opt_code code, int value)
1809 {
1810 best_match <const string_fragment &, const char*> bm (arg);
1811 for (int i = 0; opts[i].name != NULL; ++i)
1812 {
1813 /* -fsanitize=all is not valid, so don't offer it. */
1814 if (code == OPT_fsanitize_
1815 && opts[i].flag == ~0U
1816 && value)
1817 continue;
1818
1819 /* For -fsanitize-recover= (and not -fno-sanitize-recover=),
1820 don't offer the non-recoverable options. */
1821 if (code == OPT_fsanitize_recover_
1822 && !opts[i].can_recover
1823 && value)
1824 continue;
1825
1826 bm.consider (opts[i].name);
1827 }
1828 return bm.get_best_meaningful_candidate ();
1829 }
1830
1831 /* Parse comma separated sanitizer suboptions from P for option SCODE,
1832 adjust previous FLAGS and return new ones. If COMPLAIN is false,
1833 don't issue diagnostics. */
1834
1835 unsigned int
1836 parse_sanitizer_options (const char *p, location_t loc, int scode,
1837 unsigned int flags, int value, bool complain)
1838 {
1839 enum opt_code code = (enum opt_code) scode;
1840
1841 const struct sanitizer_opts_s *opts;
1842 if (code == OPT_fsanitize_coverage_)
1843 opts = coverage_sanitizer_opts;
1844 else
1845 opts = sanitizer_opts;
1846
1847 while (*p != 0)
1848 {
1849 size_t len, i;
1850 bool found = false;
1851 const char *comma = strchr (p, ',');
1852
1853 if (comma == NULL)
1854 len = strlen (p);
1855 else
1856 len = comma - p;
1857 if (len == 0)
1858 {
1859 p = comma + 1;
1860 continue;
1861 }
1862
1863 /* Check to see if the string matches an option class name. */
1864 for (i = 0; opts[i].name != NULL; ++i)
1865 if (len == opts[i].len && memcmp (p, opts[i].name, len) == 0)
1866 {
1867 /* Handle both -fsanitize and -fno-sanitize cases. */
1868 if (value && opts[i].flag == ~0U)
1869 {
1870 if (code == OPT_fsanitize_)
1871 {
1872 if (complain)
1873 error_at (loc, "%<-fsanitize=all%> option is not valid");
1874 }
1875 else
1876 flags |= ~(SANITIZE_THREAD | SANITIZE_LEAK
1877 | SANITIZE_UNREACHABLE | SANITIZE_RETURN);
1878 }
1879 else if (value)
1880 {
1881 /* Do not enable -fsanitize-recover=unreachable and
1882 -fsanitize-recover=return if -fsanitize-recover=undefined
1883 is selected. */
1884 if (code == OPT_fsanitize_recover_
1885 && opts[i].flag == SANITIZE_UNDEFINED)
1886 flags |= (SANITIZE_UNDEFINED
1887 & ~(SANITIZE_UNREACHABLE | SANITIZE_RETURN));
1888 else
1889 flags |= opts[i].flag;
1890 }
1891 else
1892 flags &= ~opts[i].flag;
1893 found = true;
1894 break;
1895 }
1896
1897 if (! found && complain)
1898 {
1899 const char *hint
1900 = get_closest_sanitizer_option (string_fragment (p, len),
1901 opts, code, value);
1902
1903 const char *suffix;
1904 if (code == OPT_fsanitize_recover_)
1905 suffix = "-recover";
1906 else if (code == OPT_fsanitize_coverage_)
1907 suffix = "-coverage";
1908 else
1909 suffix = "";
1910
1911 if (hint)
1912 error_at (loc,
1913 "unrecognized argument to -f%ssanitize%s= option: %q.*s;"
1914 " did you mean %qs?",
1915 value ? "" : "no-",
1916 suffix, (int) len, p, hint);
1917 else
1918 error_at (loc,
1919 "unrecognized argument to -f%ssanitize%s= option: %q.*s",
1920 value ? "" : "no-",
1921 suffix, (int) len, p);
1922 }
1923
1924 if (comma == NULL)
1925 break;
1926 p = comma + 1;
1927 }
1928 return flags;
1929 }
1930
1931 /* Parse string values of no_sanitize attribute passed in VALUE.
1932 Values are separated with comma. */
1933
1934 unsigned int
1935 parse_no_sanitize_attribute (char *value)
1936 {
1937 unsigned int flags = 0;
1938 unsigned int i;
1939 char *q = strtok (value, ",");
1940
1941 while (q != NULL)
1942 {
1943 for (i = 0; sanitizer_opts[i].name != NULL; ++i)
1944 if (strcmp (sanitizer_opts[i].name, q) == 0)
1945 {
1946 flags |= sanitizer_opts[i].flag;
1947 if (sanitizer_opts[i].flag == SANITIZE_UNDEFINED)
1948 flags |= SANITIZE_UNDEFINED_NONDEFAULT;
1949 break;
1950 }
1951
1952 if (sanitizer_opts[i].name == NULL)
1953 warning (OPT_Wattributes,
1954 "%<%s%> attribute directive ignored", q);
1955
1956 q = strtok (NULL, ",");
1957 }
1958
1959 return flags;
1960 }
1961
1962 /* Parse -falign-NAME format for a FLAG value. Return individual
1963 parsed integer values into RESULT_VALUES array. If REPORT_ERROR is
1964 set, print error message at LOC location. */
1965
1966 bool
1967 parse_and_check_align_values (const char *flag,
1968 const char *name,
1969 auto_vec<unsigned> &result_values,
1970 bool report_error,
1971 location_t loc)
1972 {
1973 char *str = xstrdup (flag);
1974 for (char *p = strtok (str, ":"); p; p = strtok (NULL, ":"))
1975 {
1976 char *end;
1977 int v = strtol (p, &end, 10);
1978 if (*end != '\0' || v < 0)
1979 {
1980 if (report_error)
1981 error_at (loc, "invalid arguments for %<-falign-%s%> option: %qs",
1982 name, flag);
1983
1984 return false;
1985 }
1986
1987 result_values.safe_push ((unsigned)v);
1988 }
1989
1990 free (str);
1991
1992 /* Check that we have a correct number of values. */
1993 #ifdef SUBALIGN_LOG
1994 unsigned max_valid_values = 4;
1995 #else
1996 unsigned max_valid_values = 2;
1997 #endif
1998
1999 if (result_values.is_empty ()
2000 || result_values.length () > max_valid_values)
2001 {
2002 if (report_error)
2003 error_at (loc, "invalid number of arguments for %<-falign-%s%> "
2004 "option: %qs", name, flag);
2005 return false;
2006 }
2007
2008 for (unsigned i = 0; i < result_values.length (); i++)
2009 if (result_values[i] > MAX_CODE_ALIGN_VALUE)
2010 {
2011 if (report_error)
2012 error_at (loc, "%<-falign-%s%> is not between 0 and %d",
2013 name, MAX_CODE_ALIGN_VALUE);
2014 return false;
2015 }
2016
2017 return true;
2018 }
2019
2020 /* Check that alignment value FLAG for -falign-NAME is valid at a given
2021 location LOC. */
2022
2023 static void
2024 check_alignment_argument (location_t loc, const char *flag, const char *name)
2025 {
2026 auto_vec<unsigned> align_result;
2027 parse_and_check_align_values (flag, name, align_result, true, loc);
2028 }
2029
2030 /* Handle target- and language-independent options. Return zero to
2031 generate an "unknown option" message. Only options that need
2032 extra handling need to be listed here; if you simply want
2033 DECODED->value assigned to a variable, it happens automatically. */
2034
2035 bool
2036 common_handle_option (struct gcc_options *opts,
2037 struct gcc_options *opts_set,
2038 const struct cl_decoded_option *decoded,
2039 unsigned int lang_mask, int kind ATTRIBUTE_UNUSED,
2040 location_t loc,
2041 const struct cl_option_handlers *handlers,
2042 diagnostic_context *dc,
2043 void (*target_option_override_hook) (void))
2044 {
2045 size_t scode = decoded->opt_index;
2046 const char *arg = decoded->arg;
2047 HOST_WIDE_INT value = decoded->value;
2048 enum opt_code code = (enum opt_code) scode;
2049
2050 gcc_assert (decoded->canonical_option_num_elements <= 2);
2051
2052 switch (code)
2053 {
2054 case OPT__param:
2055 handle_param (opts, opts_set, loc, arg);
2056 break;
2057
2058 case OPT__help:
2059 {
2060 unsigned int all_langs_mask = (1U << cl_lang_count) - 1;
2061 unsigned int undoc_mask;
2062 unsigned int i;
2063
2064 if (lang_mask == CL_DRIVER)
2065 break;
2066
2067 undoc_mask = ((opts->x_verbose_flag | opts->x_extra_warnings)
2068 ? 0
2069 : CL_UNDOCUMENTED);
2070 target_option_override_hook ();
2071 /* First display any single language specific options. */
2072 for (i = 0; i < cl_lang_count; i++)
2073 print_specific_help
2074 (1U << i, (all_langs_mask & (~ (1U << i))) | undoc_mask, 0, opts,
2075 lang_mask);
2076 /* Next display any multi language specific options. */
2077 print_specific_help (0, undoc_mask, all_langs_mask, opts, lang_mask);
2078 /* Then display any remaining, non-language options. */
2079 for (i = CL_MIN_OPTION_CLASS; i <= CL_MAX_OPTION_CLASS; i <<= 1)
2080 if (i != CL_DRIVER)
2081 print_specific_help (i, undoc_mask, 0, opts, lang_mask);
2082 opts->x_exit_after_options = true;
2083 break;
2084 }
2085
2086 case OPT__target_help:
2087 if (lang_mask == CL_DRIVER)
2088 break;
2089
2090 target_option_override_hook ();
2091 print_specific_help (CL_TARGET, CL_UNDOCUMENTED, 0, opts, lang_mask);
2092 opts->x_exit_after_options = true;
2093 break;
2094
2095 case OPT__help_:
2096 {
2097 const char *a = arg;
2098 unsigned int include_flags = 0;
2099 /* Note - by default we include undocumented options when listing
2100 specific classes. If you only want to see documented options
2101 then add ",^undocumented" to the --help= option. E.g.:
2102
2103 --help=target,^undocumented */
2104 unsigned int exclude_flags = 0;
2105
2106 if (lang_mask == CL_DRIVER)
2107 break;
2108
2109 /* Walk along the argument string, parsing each word in turn.
2110 The format is:
2111 arg = [^]{word}[,{arg}]
2112 word = {optimizers|target|warnings|undocumented|
2113 params|common|<language>} */
2114 while (*a != 0)
2115 {
2116 static const struct
2117 {
2118 const char *string;
2119 unsigned int flag;
2120 }
2121 specifics[] =
2122 {
2123 { "optimizers", CL_OPTIMIZATION },
2124 { "target", CL_TARGET },
2125 { "warnings", CL_WARNING },
2126 { "undocumented", CL_UNDOCUMENTED },
2127 { "params", CL_PARAMS },
2128 { "joined", CL_JOINED },
2129 { "separate", CL_SEPARATE },
2130 { "common", CL_COMMON },
2131 { NULL, 0 }
2132 };
2133 unsigned int *pflags;
2134 const char *comma;
2135 unsigned int lang_flag, specific_flag;
2136 unsigned int len;
2137 unsigned int i;
2138
2139 if (*a == '^')
2140 {
2141 ++a;
2142 if (*a == '\0')
2143 {
2144 error_at (loc, "missing argument to %qs", "--help=^");
2145 break;
2146 }
2147 pflags = &exclude_flags;
2148 }
2149 else
2150 pflags = &include_flags;
2151
2152 comma = strchr (a, ',');
2153 if (comma == NULL)
2154 len = strlen (a);
2155 else
2156 len = comma - a;
2157 if (len == 0)
2158 {
2159 a = comma + 1;
2160 continue;
2161 }
2162
2163 /* Check to see if the string matches an option class name. */
2164 for (i = 0, specific_flag = 0; specifics[i].string != NULL; i++)
2165 if (strncasecmp (a, specifics[i].string, len) == 0)
2166 {
2167 specific_flag = specifics[i].flag;
2168 break;
2169 }
2170
2171 /* Check to see if the string matches a language name.
2172 Note - we rely upon the alpha-sorted nature of the entries in
2173 the lang_names array, specifically that shorter names appear
2174 before their longer variants. (i.e. C before C++). That way
2175 when we are attempting to match --help=c for example we will
2176 match with C first and not C++. */
2177 for (i = 0, lang_flag = 0; i < cl_lang_count; i++)
2178 if (strncasecmp (a, lang_names[i], len) == 0)
2179 {
2180 lang_flag = 1U << i;
2181 break;
2182 }
2183
2184 if (specific_flag != 0)
2185 {
2186 if (lang_flag == 0)
2187 *pflags |= specific_flag;
2188 else
2189 {
2190 /* The option's argument matches both the start of a
2191 language name and the start of an option class name.
2192 We have a special case for when the user has
2193 specified "--help=c", but otherwise we have to issue
2194 a warning. */
2195 if (strncasecmp (a, "c", len) == 0)
2196 *pflags |= lang_flag;
2197 else
2198 warning_at (loc, 0,
2199 "--help argument %q.*s is ambiguous, "
2200 "please be more specific",
2201 len, a);
2202 }
2203 }
2204 else if (lang_flag != 0)
2205 *pflags |= lang_flag;
2206 else
2207 warning_at (loc, 0,
2208 "unrecognized argument to --help= option: %q.*s",
2209 len, a);
2210
2211 if (comma == NULL)
2212 break;
2213 a = comma + 1;
2214 }
2215
2216 if (include_flags)
2217 {
2218 target_option_override_hook ();
2219 print_specific_help (include_flags, exclude_flags, 0, opts,
2220 lang_mask);
2221 }
2222 opts->x_exit_after_options = true;
2223 break;
2224 }
2225
2226 case OPT__version:
2227 if (lang_mask == CL_DRIVER)
2228 break;
2229
2230 opts->x_exit_after_options = true;
2231 break;
2232
2233 case OPT__completion_:
2234 break;
2235
2236 case OPT_fsanitize_:
2237 opts->x_flag_sanitize
2238 = parse_sanitizer_options (arg, loc, code,
2239 opts->x_flag_sanitize, value, true);
2240
2241 /* Kernel ASan implies normal ASan but does not yet support
2242 all features. */
2243 if (opts->x_flag_sanitize & SANITIZE_KERNEL_ADDRESS)
2244 {
2245 maybe_set_param_value (PARAM_ASAN_INSTRUMENTATION_WITH_CALL_THRESHOLD,
2246 0, opts->x_param_values,
2247 opts_set->x_param_values);
2248 maybe_set_param_value (PARAM_ASAN_GLOBALS, 0, opts->x_param_values,
2249 opts_set->x_param_values);
2250 maybe_set_param_value (PARAM_ASAN_STACK, 0, opts->x_param_values,
2251 opts_set->x_param_values);
2252 maybe_set_param_value (PARAM_ASAN_PROTECT_ALLOCAS, 0,
2253 opts->x_param_values,
2254 opts_set->x_param_values);
2255 maybe_set_param_value (PARAM_ASAN_USE_AFTER_RETURN, 0,
2256 opts->x_param_values,
2257 opts_set->x_param_values);
2258 }
2259 break;
2260
2261 case OPT_fsanitize_recover_:
2262 opts->x_flag_sanitize_recover
2263 = parse_sanitizer_options (arg, loc, code,
2264 opts->x_flag_sanitize_recover, value, true);
2265 break;
2266
2267 case OPT_fasan_shadow_offset_:
2268 /* Deferred. */
2269 break;
2270
2271 case OPT_fsanitize_address_use_after_scope:
2272 opts->x_flag_sanitize_address_use_after_scope = value;
2273 break;
2274
2275 case OPT_fsanitize_recover:
2276 if (value)
2277 opts->x_flag_sanitize_recover
2278 |= (SANITIZE_UNDEFINED | SANITIZE_UNDEFINED_NONDEFAULT)
2279 & ~(SANITIZE_UNREACHABLE | SANITIZE_RETURN);
2280 else
2281 opts->x_flag_sanitize_recover
2282 &= ~(SANITIZE_UNDEFINED | SANITIZE_UNDEFINED_NONDEFAULT);
2283 break;
2284
2285 case OPT_fsanitize_coverage_:
2286 opts->x_flag_sanitize_coverage
2287 = parse_sanitizer_options (arg, loc, code,
2288 opts->x_flag_sanitize_coverage, value, true);
2289 break;
2290
2291 case OPT_O:
2292 case OPT_Os:
2293 case OPT_Ofast:
2294 case OPT_Og:
2295 /* Currently handled in a prescan. */
2296 break;
2297
2298 case OPT_Werror:
2299 dc->warning_as_error_requested = value;
2300 break;
2301
2302 case OPT_Werror_:
2303 if (lang_mask == CL_DRIVER)
2304 break;
2305
2306 enable_warning_as_error (arg, value, lang_mask, handlers,
2307 opts, opts_set, loc, dc);
2308 break;
2309
2310 case OPT_Wfatal_errors:
2311 dc->fatal_errors = value;
2312 break;
2313
2314 case OPT_Wstack_usage_:
2315 opts->x_flag_stack_usage_info = value != -1;
2316 break;
2317
2318 case OPT_Wstrict_aliasing:
2319 set_Wstrict_aliasing (opts, value);
2320 break;
2321
2322 case OPT_Wstrict_overflow:
2323 opts->x_warn_strict_overflow = (value
2324 ? (int) WARN_STRICT_OVERFLOW_CONDITIONAL
2325 : 0);
2326 break;
2327
2328 case OPT_Wsystem_headers:
2329 dc->dc_warn_system_headers = value;
2330 break;
2331
2332 case OPT_aux_info:
2333 opts->x_flag_gen_aux_info = 1;
2334 break;
2335
2336 case OPT_auxbase_strip:
2337 {
2338 char *tmp = xstrdup (arg);
2339 strip_off_ending (tmp, strlen (tmp));
2340 if (tmp[0])
2341 opts->x_aux_base_name = tmp;
2342 else
2343 free (tmp);
2344 }
2345 break;
2346
2347 case OPT_d:
2348 decode_d_option (arg, opts, loc, dc);
2349 break;
2350
2351 case OPT_fcall_used_:
2352 case OPT_fcall_saved_:
2353 /* Deferred. */
2354 break;
2355
2356 case OPT_fdbg_cnt_:
2357 /* Deferred. */
2358 break;
2359
2360 case OPT_fdbg_cnt_list:
2361 /* Deferred. */
2362 opts->x_exit_after_options = true;
2363 break;
2364
2365 case OPT_fdebug_prefix_map_:
2366 case OPT_ffile_prefix_map_:
2367 /* Deferred. */
2368 break;
2369
2370 case OPT_fdiagnostics_show_location_:
2371 diagnostic_prefixing_rule (dc) = (diagnostic_prefixing_rule_t) value;
2372 break;
2373
2374 case OPT_fdiagnostics_show_caret:
2375 dc->show_caret = value;
2376 break;
2377
2378 case OPT_fdiagnostics_show_labels:
2379 dc->show_labels_p = value;
2380 break;
2381
2382 case OPT_fdiagnostics_show_line_numbers:
2383 dc->show_line_numbers_p = value;
2384 break;
2385
2386 case OPT_fdiagnostics_color_:
2387 diagnostic_color_init (dc, value);
2388 break;
2389
2390 case OPT_fdiagnostics_format_:
2391 diagnostic_output_format_init (dc,
2392 (enum diagnostics_output_format)value);
2393 break;
2394
2395 case OPT_fdiagnostics_parseable_fixits:
2396 dc->parseable_fixits_p = value;
2397 break;
2398
2399 case OPT_fdiagnostics_show_option:
2400 dc->show_option_requested = value;
2401 break;
2402
2403 case OPT_fdiagnostics_minimum_margin_width_:
2404 dc->min_margin_width = value;
2405 break;
2406
2407 case OPT_fdump_:
2408 /* Deferred. */
2409 break;
2410
2411 case OPT_ffast_math:
2412 set_fast_math_flags (opts, value);
2413 break;
2414
2415 case OPT_funsafe_math_optimizations:
2416 set_unsafe_math_optimizations_flags (opts, value);
2417 break;
2418
2419 case OPT_ffixed_:
2420 /* Deferred. */
2421 break;
2422
2423 case OPT_finline_limit_:
2424 set_param_value ("max-inline-insns-single", value / 2,
2425 opts->x_param_values, opts_set->x_param_values);
2426 set_param_value ("max-inline-insns-auto", value / 2,
2427 opts->x_param_values, opts_set->x_param_values);
2428 break;
2429
2430 case OPT_finstrument_functions_exclude_function_list_:
2431 add_comma_separated_to_vector
2432 (&opts->x_flag_instrument_functions_exclude_functions, arg);
2433 break;
2434
2435 case OPT_finstrument_functions_exclude_file_list_:
2436 add_comma_separated_to_vector
2437 (&opts->x_flag_instrument_functions_exclude_files, arg);
2438 break;
2439
2440 case OPT_fmessage_length_:
2441 pp_set_line_maximum_length (dc->printer, value);
2442 diagnostic_set_caret_max_width (dc, value);
2443 break;
2444
2445 case OPT_fopt_info:
2446 case OPT_fopt_info_:
2447 /* Deferred. */
2448 break;
2449
2450 case OPT_foffload_:
2451 {
2452 const char *p = arg;
2453 opts->x_flag_disable_hsa = true;
2454 while (*p != 0)
2455 {
2456 const char *comma = strchr (p, ',');
2457
2458 if ((strncmp (p, "disable", 7) == 0)
2459 && (p[7] == ',' || p[7] == '\0'))
2460 {
2461 opts->x_flag_disable_hsa = true;
2462 break;
2463 }
2464
2465 if ((strncmp (p, "hsa", 3) == 0)
2466 && (p[3] == ',' || p[3] == '\0'))
2467 {
2468 #ifdef ENABLE_HSA
2469 opts->x_flag_disable_hsa = false;
2470 #else
2471 sorry ("HSA has not been enabled during configuration");
2472 #endif
2473 }
2474 if (!comma)
2475 break;
2476 p = comma + 1;
2477 }
2478 break;
2479 }
2480
2481 #ifndef ACCEL_COMPILER
2482 case OPT_foffload_abi_:
2483 error_at (loc, "%<-foffload-abi%> option can be specified only for "
2484 "offload compiler");
2485 break;
2486 #endif
2487
2488 case OPT_fpack_struct_:
2489 if (value <= 0 || (value & (value - 1)) || value > 16)
2490 error_at (loc,
2491 "structure alignment must be a small power of two, not %wu",
2492 value);
2493 else
2494 opts->x_initial_max_fld_align = value;
2495 break;
2496
2497 case OPT_fplugin_:
2498 case OPT_fplugin_arg_:
2499 /* Deferred. */
2500 break;
2501
2502 case OPT_fprofile_use_:
2503 opts->x_profile_data_prefix = xstrdup (arg);
2504 opts->x_flag_profile_use = true;
2505 value = true;
2506 /* No break here - do -fprofile-use processing. */
2507 /* FALLTHRU */
2508 case OPT_fprofile_use:
2509 enable_fdo_optimizations (opts, opts_set, value);
2510 if (!opts_set->x_flag_profile_reorder_functions)
2511 opts->x_flag_profile_reorder_functions = value;
2512 /* Indirect call profiling should do all useful transformations
2513 speculative devirtualization does. */
2514 if (!opts_set->x_flag_devirtualize_speculatively
2515 && opts->x_flag_value_profile_transformations)
2516 opts->x_flag_devirtualize_speculatively = false;
2517 break;
2518
2519 case OPT_fauto_profile_:
2520 opts->x_auto_profile_file = xstrdup (arg);
2521 opts->x_flag_auto_profile = true;
2522 value = true;
2523 /* No break here - do -fauto-profile processing. */
2524 /* FALLTHRU */
2525 case OPT_fauto_profile:
2526 enable_fdo_optimizations (opts, opts_set, value);
2527 if (!opts_set->x_flag_profile_correction)
2528 opts->x_flag_profile_correction = value;
2529 maybe_set_param_value (
2530 PARAM_EARLY_INLINER_MAX_ITERATIONS, 10,
2531 opts->x_param_values, opts_set->x_param_values);
2532 break;
2533
2534 case OPT_fprofile_generate_:
2535 opts->x_profile_data_prefix = xstrdup (arg);
2536 value = true;
2537 /* No break here - do -fprofile-generate processing. */
2538 /* FALLTHRU */
2539 case OPT_fprofile_generate:
2540 if (!opts_set->x_profile_arc_flag)
2541 opts->x_profile_arc_flag = value;
2542 if (!opts_set->x_flag_profile_values)
2543 opts->x_flag_profile_values = value;
2544 if (!opts_set->x_flag_inline_functions)
2545 opts->x_flag_inline_functions = value;
2546 if (!opts_set->x_flag_ipa_bit_cp)
2547 opts->x_flag_ipa_bit_cp = value;
2548 /* FIXME: Instrumentation we insert makes ipa-reference bitmaps
2549 quadratic. Disable the pass until better memory representation
2550 is done. */
2551 if (!opts_set->x_flag_ipa_reference)
2552 opts->x_flag_ipa_reference = false;
2553 break;
2554
2555 case OPT_fpatchable_function_entry_:
2556 {
2557 char *patch_area_arg = xstrdup (arg);
2558 char *comma = strchr (patch_area_arg, ',');
2559 if (comma)
2560 {
2561 *comma = '\0';
2562 function_entry_patch_area_size =
2563 integral_argument (patch_area_arg);
2564 function_entry_patch_area_start =
2565 integral_argument (comma + 1);
2566 }
2567 else
2568 {
2569 function_entry_patch_area_size =
2570 integral_argument (patch_area_arg);
2571 function_entry_patch_area_start = 0;
2572 }
2573 if (function_entry_patch_area_size < 0
2574 || function_entry_patch_area_start < 0
2575 || function_entry_patch_area_size
2576 < function_entry_patch_area_start)
2577 error ("invalid arguments for %<-fpatchable_function_entry%>");
2578 free (patch_area_arg);
2579 }
2580 break;
2581
2582 case OPT_ftree_vectorize:
2583 /* Automatically sets -ftree-loop-vectorize and
2584 -ftree-slp-vectorize. Nothing more to do here. */
2585 break;
2586 case OPT_fshow_column:
2587 dc->show_column = value;
2588 break;
2589
2590 case OPT_frandom_seed:
2591 /* The real switch is -fno-random-seed. */
2592 if (value)
2593 return false;
2594 /* Deferred. */
2595 break;
2596
2597 case OPT_frandom_seed_:
2598 /* Deferred. */
2599 break;
2600
2601 case OPT_fsched_verbose_:
2602 #ifdef INSN_SCHEDULING
2603 /* Handled with Var in common.opt. */
2604 break;
2605 #else
2606 return false;
2607 #endif
2608
2609 case OPT_fsched_stalled_insns_:
2610 opts->x_flag_sched_stalled_insns = value;
2611 if (opts->x_flag_sched_stalled_insns == 0)
2612 opts->x_flag_sched_stalled_insns = -1;
2613 break;
2614
2615 case OPT_fsched_stalled_insns_dep_:
2616 opts->x_flag_sched_stalled_insns_dep = value;
2617 break;
2618
2619 case OPT_fstack_check_:
2620 if (!strcmp (arg, "no"))
2621 opts->x_flag_stack_check = NO_STACK_CHECK;
2622 else if (!strcmp (arg, "generic"))
2623 /* This is the old stack checking method. */
2624 opts->x_flag_stack_check = STACK_CHECK_BUILTIN
2625 ? FULL_BUILTIN_STACK_CHECK
2626 : GENERIC_STACK_CHECK;
2627 else if (!strcmp (arg, "specific"))
2628 /* This is the new stack checking method. */
2629 opts->x_flag_stack_check = STACK_CHECK_BUILTIN
2630 ? FULL_BUILTIN_STACK_CHECK
2631 : STACK_CHECK_STATIC_BUILTIN
2632 ? STATIC_BUILTIN_STACK_CHECK
2633 : GENERIC_STACK_CHECK;
2634 else
2635 warning_at (loc, 0, "unknown stack check parameter %qs", arg);
2636 break;
2637
2638 case OPT_fstack_limit:
2639 /* The real switch is -fno-stack-limit. */
2640 if (value)
2641 return false;
2642 /* Deferred. */
2643 break;
2644
2645 case OPT_fstack_limit_register_:
2646 case OPT_fstack_limit_symbol_:
2647 /* Deferred. */
2648 break;
2649
2650 case OPT_fstack_usage:
2651 opts->x_flag_stack_usage = value;
2652 opts->x_flag_stack_usage_info = value != 0;
2653 break;
2654
2655 case OPT_g:
2656 set_debug_level (NO_DEBUG, DEFAULT_GDB_EXTENSIONS, arg, opts, opts_set,
2657 loc);
2658 break;
2659
2660 case OPT_gdwarf:
2661 if (arg && strlen (arg) != 0)
2662 {
2663 error_at (loc, "%<-gdwarf%s%> is ambiguous; "
2664 "use %<-gdwarf-%s%> for DWARF version "
2665 "or %<-gdwarf -g%s%> for debug level", arg, arg, arg);
2666 break;
2667 }
2668 else
2669 value = opts->x_dwarf_version;
2670
2671 /* FALLTHRU */
2672 case OPT_gdwarf_:
2673 if (value < 2 || value > 5)
2674 error_at (loc, "dwarf version %wu is not supported", value);
2675 else
2676 opts->x_dwarf_version = value;
2677 set_debug_level (DWARF2_DEBUG, false, "", opts, opts_set, loc);
2678 break;
2679
2680 case OPT_gsplit_dwarf:
2681 set_debug_level (NO_DEBUG, DEFAULT_GDB_EXTENSIONS, "", opts, opts_set,
2682 loc);
2683 break;
2684
2685 case OPT_ggdb:
2686 set_debug_level (NO_DEBUG, 2, arg, opts, opts_set, loc);
2687 break;
2688
2689 case OPT_gstabs:
2690 case OPT_gstabs_:
2691 set_debug_level (DBX_DEBUG, code == OPT_gstabs_, arg, opts, opts_set,
2692 loc);
2693 break;
2694
2695 case OPT_gvms:
2696 set_debug_level (VMS_DEBUG, false, arg, opts, opts_set, loc);
2697 break;
2698
2699 case OPT_gxcoff:
2700 case OPT_gxcoff_:
2701 set_debug_level (XCOFF_DEBUG, code == OPT_gxcoff_, arg, opts, opts_set,
2702 loc);
2703 break;
2704
2705 case OPT_gz:
2706 case OPT_gz_:
2707 /* Handled completely via specs. */
2708 break;
2709
2710 case OPT_pedantic_errors:
2711 dc->pedantic_errors = 1;
2712 control_warning_option (OPT_Wpedantic, DK_ERROR, NULL, value,
2713 loc, lang_mask,
2714 handlers, opts, opts_set,
2715 dc);
2716 break;
2717
2718 case OPT_flto:
2719 opts->x_flag_lto = value ? "" : NULL;
2720 break;
2721
2722 case OPT_w:
2723 dc->dc_inhibit_warnings = true;
2724 break;
2725
2726 case OPT_fmax_errors_:
2727 dc->max_errors = value;
2728 break;
2729
2730 case OPT_fuse_ld_bfd:
2731 case OPT_fuse_ld_gold:
2732 case OPT_fuse_ld_lld:
2733 case OPT_fuse_linker_plugin:
2734 /* No-op. Used by the driver and passed to us because it starts with f.*/
2735 break;
2736
2737 case OPT_fwrapv:
2738 if (value)
2739 opts->x_flag_trapv = 0;
2740 break;
2741
2742 case OPT_ftrapv:
2743 if (value)
2744 opts->x_flag_wrapv = 0;
2745 break;
2746
2747 case OPT_fstrict_overflow:
2748 opts->x_flag_wrapv = !value;
2749 opts->x_flag_wrapv_pointer = !value;
2750 if (!value)
2751 opts->x_flag_trapv = 0;
2752 break;
2753
2754 case OPT_fipa_icf:
2755 opts->x_flag_ipa_icf_functions = value;
2756 opts->x_flag_ipa_icf_variables = value;
2757 break;
2758
2759 case OPT_falign_loops_:
2760 check_alignment_argument (loc, arg, "loops");
2761 break;
2762
2763 case OPT_falign_jumps_:
2764 check_alignment_argument (loc, arg, "jumps");
2765 break;
2766
2767 case OPT_falign_labels_:
2768 check_alignment_argument (loc, arg, "labels");
2769 break;
2770
2771 case OPT_falign_functions_:
2772 check_alignment_argument (loc, arg, "functions");
2773 break;
2774
2775 default:
2776 /* If the flag was handled in a standard way, assume the lack of
2777 processing here is intentional. */
2778 gcc_assert (option_flag_var (scode, opts));
2779 break;
2780 }
2781
2782 common_handle_option_auto (opts, opts_set, decoded, lang_mask, kind,
2783 loc, handlers, dc);
2784 return true;
2785 }
2786
2787 /* Handle --param NAME=VALUE. */
2788 static void
2789 handle_param (struct gcc_options *opts, struct gcc_options *opts_set,
2790 location_t loc, const char *carg)
2791 {
2792 char *equal, *arg;
2793 int value;
2794
2795 arg = xstrdup (carg);
2796 equal = strchr (arg, '=');
2797 if (!equal)
2798 error_at (loc, "%s: --param arguments should be of the form NAME=VALUE",
2799 arg);
2800 else
2801 {
2802 *equal = '\0';
2803
2804 enum compiler_param index;
2805 if (!find_param (arg, &index))
2806 {
2807 const char *suggestion = find_param_fuzzy (arg);
2808 if (suggestion)
2809 error_at (loc, "invalid --param name %qs; did you mean %qs?",
2810 arg, suggestion);
2811 else
2812 error_at (loc, "invalid --param name %qs", arg);
2813 }
2814 else
2815 {
2816 if (!param_string_value_p (index, equal + 1, &value))
2817 value = integral_argument (equal + 1);
2818
2819 if (value == -1)
2820 error_at (loc, "invalid --param value %qs", equal + 1);
2821 else
2822 set_param_value (arg, value,
2823 opts->x_param_values, opts_set->x_param_values);
2824 }
2825 }
2826
2827 free (arg);
2828 }
2829
2830 /* Used to set the level of strict aliasing warnings in OPTS,
2831 when no level is specified (i.e., when -Wstrict-aliasing, and not
2832 -Wstrict-aliasing=level was given).
2833 ONOFF is assumed to take value 1 when -Wstrict-aliasing is specified,
2834 and 0 otherwise. After calling this function, wstrict_aliasing will be
2835 set to the default value of -Wstrict_aliasing=level, currently 3. */
2836 static void
2837 set_Wstrict_aliasing (struct gcc_options *opts, int onoff)
2838 {
2839 gcc_assert (onoff == 0 || onoff == 1);
2840 if (onoff != 0)
2841 opts->x_warn_strict_aliasing = 3;
2842 else
2843 opts->x_warn_strict_aliasing = 0;
2844 }
2845
2846 /* The following routines are useful in setting all the flags that
2847 -ffast-math and -fno-fast-math imply. */
2848 static void
2849 set_fast_math_flags (struct gcc_options *opts, int set)
2850 {
2851 if (!opts->frontend_set_flag_unsafe_math_optimizations)
2852 {
2853 opts->x_flag_unsafe_math_optimizations = set;
2854 set_unsafe_math_optimizations_flags (opts, set);
2855 }
2856 if (!opts->frontend_set_flag_finite_math_only)
2857 opts->x_flag_finite_math_only = set;
2858 if (!opts->frontend_set_flag_errno_math)
2859 opts->x_flag_errno_math = !set;
2860 if (set)
2861 {
2862 if (opts->frontend_set_flag_excess_precision_cmdline
2863 == EXCESS_PRECISION_DEFAULT)
2864 opts->x_flag_excess_precision_cmdline
2865 = set ? EXCESS_PRECISION_FAST : EXCESS_PRECISION_DEFAULT;
2866 if (!opts->frontend_set_flag_signaling_nans)
2867 opts->x_flag_signaling_nans = 0;
2868 if (!opts->frontend_set_flag_rounding_math)
2869 opts->x_flag_rounding_math = 0;
2870 if (!opts->frontend_set_flag_cx_limited_range)
2871 opts->x_flag_cx_limited_range = 1;
2872 }
2873 }
2874
2875 /* When -funsafe-math-optimizations is set the following
2876 flags are set as well. */
2877 static void
2878 set_unsafe_math_optimizations_flags (struct gcc_options *opts, int set)
2879 {
2880 if (!opts->frontend_set_flag_trapping_math)
2881 opts->x_flag_trapping_math = !set;
2882 if (!opts->frontend_set_flag_signed_zeros)
2883 opts->x_flag_signed_zeros = !set;
2884 if (!opts->frontend_set_flag_associative_math)
2885 opts->x_flag_associative_math = set;
2886 if (!opts->frontend_set_flag_reciprocal_math)
2887 opts->x_flag_reciprocal_math = set;
2888 }
2889
2890 /* Return true iff flags in OPTS are set as if -ffast-math. */
2891 bool
2892 fast_math_flags_set_p (const struct gcc_options *opts)
2893 {
2894 return (!opts->x_flag_trapping_math
2895 && opts->x_flag_unsafe_math_optimizations
2896 && opts->x_flag_finite_math_only
2897 && !opts->x_flag_signed_zeros
2898 && !opts->x_flag_errno_math
2899 && opts->x_flag_excess_precision_cmdline
2900 == EXCESS_PRECISION_FAST);
2901 }
2902
2903 /* Return true iff flags are set as if -ffast-math but using the flags stored
2904 in the struct cl_optimization structure. */
2905 bool
2906 fast_math_flags_struct_set_p (struct cl_optimization *opt)
2907 {
2908 return (!opt->x_flag_trapping_math
2909 && opt->x_flag_unsafe_math_optimizations
2910 && opt->x_flag_finite_math_only
2911 && !opt->x_flag_signed_zeros
2912 && !opt->x_flag_errno_math);
2913 }
2914
2915 /* Handle a debug output -g switch for options OPTS
2916 (OPTS_SET->x_write_symbols storing whether a debug type was passed
2917 explicitly), location LOC. EXTENDED is true or false to support
2918 extended output (2 is special and means "-ggdb" was given). */
2919 static void
2920 set_debug_level (enum debug_info_type type, int extended, const char *arg,
2921 struct gcc_options *opts, struct gcc_options *opts_set,
2922 location_t loc)
2923 {
2924 opts->x_use_gnu_debug_info_extensions = extended;
2925
2926 if (type == NO_DEBUG)
2927 {
2928 if (opts->x_write_symbols == NO_DEBUG)
2929 {
2930 opts->x_write_symbols = PREFERRED_DEBUGGING_TYPE;
2931
2932 if (extended == 2)
2933 {
2934 #if defined DWARF2_DEBUGGING_INFO || defined DWARF2_LINENO_DEBUGGING_INFO
2935 opts->x_write_symbols = DWARF2_DEBUG;
2936 #elif defined DBX_DEBUGGING_INFO
2937 opts->x_write_symbols = DBX_DEBUG;
2938 #endif
2939 }
2940
2941 if (opts->x_write_symbols == NO_DEBUG)
2942 warning_at (loc, 0, "target system does not support debug output");
2943 }
2944 }
2945 else
2946 {
2947 /* Does it conflict with an already selected type? */
2948 if (opts_set->x_write_symbols != NO_DEBUG
2949 && opts->x_write_symbols != NO_DEBUG
2950 && type != opts->x_write_symbols)
2951 error_at (loc, "debug format %qs conflicts with prior selection",
2952 debug_type_names[type]);
2953 opts->x_write_symbols = type;
2954 opts_set->x_write_symbols = type;
2955 }
2956
2957 /* A debug flag without a level defaults to level 2.
2958 If off or at level 1, set it to level 2, but if already
2959 at level 3, don't lower it. */
2960 if (*arg == '\0')
2961 {
2962 if (opts->x_debug_info_level < DINFO_LEVEL_NORMAL)
2963 opts->x_debug_info_level = DINFO_LEVEL_NORMAL;
2964 }
2965 else
2966 {
2967 int argval = integral_argument (arg);
2968 if (argval == -1)
2969 error_at (loc, "unrecognized debug output level %qs", arg);
2970 else if (argval > 3)
2971 error_at (loc, "debug output level %qs is too high", arg);
2972 else
2973 opts->x_debug_info_level = (enum debug_info_levels) argval;
2974 }
2975 }
2976
2977 /* Arrange to dump core on error for diagnostic context DC. (The
2978 regular error message is still printed first, except in the case of
2979 abort ().) */
2980
2981 static void
2982 setup_core_dumping (diagnostic_context *dc)
2983 {
2984 #ifdef SIGABRT
2985 signal (SIGABRT, SIG_DFL);
2986 #endif
2987 #if defined(HAVE_SETRLIMIT)
2988 {
2989 struct rlimit rlim;
2990 if (getrlimit (RLIMIT_CORE, &rlim) != 0)
2991 fatal_error (input_location, "getting core file size maximum limit: %m");
2992 rlim.rlim_cur = rlim.rlim_max;
2993 if (setrlimit (RLIMIT_CORE, &rlim) != 0)
2994 fatal_error (input_location,
2995 "setting core file size limit to maximum: %m");
2996 }
2997 #endif
2998 diagnostic_abort_on_error (dc);
2999 }
3000
3001 /* Parse a -d<ARG> command line switch for OPTS, location LOC,
3002 diagnostic context DC. */
3003
3004 static void
3005 decode_d_option (const char *arg, struct gcc_options *opts,
3006 location_t loc, diagnostic_context *dc)
3007 {
3008 int c;
3009
3010 while (*arg)
3011 switch (c = *arg++)
3012 {
3013 case 'A':
3014 opts->x_flag_debug_asm = 1;
3015 break;
3016 case 'p':
3017 opts->x_flag_print_asm_name = 1;
3018 break;
3019 case 'P':
3020 opts->x_flag_dump_rtl_in_asm = 1;
3021 opts->x_flag_print_asm_name = 1;
3022 break;
3023 case 'x':
3024 opts->x_rtl_dump_and_exit = 1;
3025 break;
3026 case 'D': /* These are handled by the preprocessor. */
3027 case 'I':
3028 case 'M':
3029 case 'N':
3030 case 'U':
3031 break;
3032 case 'H':
3033 setup_core_dumping (dc);
3034 break;
3035 case 'a':
3036 opts->x_flag_dump_all_passed = true;
3037 break;
3038
3039 default:
3040 warning_at (loc, 0, "unrecognized gcc debugging option: %c", c);
3041 break;
3042 }
3043 }
3044
3045 /* Enable (or disable if VALUE is 0) a warning option ARG (language
3046 mask LANG_MASK, option handlers HANDLERS) as an error for option
3047 structures OPTS and OPTS_SET, diagnostic context DC (possibly
3048 NULL), location LOC. This is used by -Werror=. */
3049
3050 static void
3051 enable_warning_as_error (const char *arg, int value, unsigned int lang_mask,
3052 const struct cl_option_handlers *handlers,
3053 struct gcc_options *opts,
3054 struct gcc_options *opts_set,
3055 location_t loc, diagnostic_context *dc)
3056 {
3057 char *new_option;
3058 int option_index;
3059
3060 new_option = XNEWVEC (char, strlen (arg) + 2);
3061 new_option[0] = 'W';
3062 strcpy (new_option + 1, arg);
3063 option_index = find_opt (new_option, lang_mask);
3064 if (option_index == OPT_SPECIAL_unknown)
3065 error_at (loc, "-Werror=%s: no option -%s", arg, new_option);
3066 else if (!(cl_options[option_index].flags & CL_WARNING))
3067 error_at (loc, "-Werror=%s: -%s is not an option that controls warnings",
3068 arg, new_option);
3069 else
3070 {
3071 const diagnostic_t kind = value ? DK_ERROR : DK_WARNING;
3072 const char *arg = NULL;
3073
3074 if (cl_options[option_index].flags & CL_JOINED)
3075 arg = new_option + cl_options[option_index].opt_len;
3076 control_warning_option (option_index, (int) kind, arg, value,
3077 loc, lang_mask,
3078 handlers, opts, opts_set, dc);
3079 }
3080 free (new_option);
3081 }
3082
3083 /* Return malloced memory for the name of the option OPTION_INDEX
3084 which enabled a diagnostic (context CONTEXT), originally of type
3085 ORIG_DIAG_KIND but possibly converted to DIAG_KIND by options such
3086 as -Werror. */
3087
3088 char *
3089 option_name (diagnostic_context *context, int option_index,
3090 diagnostic_t orig_diag_kind, diagnostic_t diag_kind)
3091 {
3092 if (option_index)
3093 {
3094 /* A warning classified as an error. */
3095 if ((orig_diag_kind == DK_WARNING || orig_diag_kind == DK_PEDWARN)
3096 && diag_kind == DK_ERROR)
3097 return concat (cl_options[OPT_Werror_].opt_text,
3098 /* Skip over "-W". */
3099 cl_options[option_index].opt_text + 2,
3100 NULL);
3101 /* A warning with option. */
3102 else
3103 return xstrdup (cl_options[option_index].opt_text);
3104 }
3105 /* A warning without option classified as an error. */
3106 else if ((orig_diag_kind == DK_WARNING || orig_diag_kind == DK_PEDWARN
3107 || diag_kind == DK_WARNING)
3108 && context->warning_as_error_requested)
3109 return xstrdup (cl_options[OPT_Werror].opt_text);
3110 else
3111 return NULL;
3112 }