1 /* Map (unsigned int) keys to (source file, line, column) triples. 2 Copyright (C) 2001-2019 Free Software Foundation, Inc. 3 4 This program is free software; you can redistribute it and/or modify it 5 under the terms of the GNU General Public License as published by the 6 Free Software Foundation; either version 3, or (at your option) any 7 later version. 8 9 This program is distributed in the hope that it will be useful, 10 but WITHOUT ANY WARRANTY; without even the implied warranty of 11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 12 GNU General Public License for more details. 13 14 You should have received a copy of the GNU General Public License 15 along with this program; see the file COPYING3. If not see 16 <http://www.gnu.org/licenses/>. 17 18 In other words, you are welcome to use, share and improve this program. 19 You are forbidden to forbid anyone else to use, share and improve 20 what you give them. Help stamp out software-hoarding! */ 21 22 #include "config.h" 23 #include "system.h" 24 #include "line-map.h" 25 #include "cpplib.h" 26 #include "internal.h" 27 #include "hashtab.h" 28 29 static void trace_include (const struct line_maps *, const line_map_ordinary *); 30 static const line_map_ordinary * linemap_ordinary_map_lookup (struct line_maps *, 31 location_t); 32 static const line_map_macro* linemap_macro_map_lookup (struct line_maps *, 33 location_t); 34 static location_t linemap_macro_map_loc_to_def_point 35 (const line_map_macro *, location_t); 36 static location_t linemap_macro_map_loc_to_exp_point 37 (const line_map_macro *, location_t); 38 static location_t linemap_macro_loc_to_spelling_point 39 (struct line_maps *, location_t, const line_map_ordinary **); 40 static location_t linemap_macro_loc_to_def_point (line_maps *, 41 location_t, 42 const line_map_ordinary **); 43 static location_t linemap_macro_loc_to_exp_point (line_maps *, 44 location_t, 45 const line_map_ordinary **); 46 47 /* Counters defined in macro.c. */ 48 extern unsigned num_expanded_macros_counter; 49 extern unsigned num_macro_tokens_counter; 50 51 /* Destructor for class line_maps. 52 Ensure non-GC-managed memory is released. */ 53 54 line_maps::~line_maps () 55 { 56 if (location_adhoc_data_map.htab) 57 htab_delete (location_adhoc_data_map.htab); 58 } 59 60 /* Hash function for location_adhoc_data hashtable. */ 61 62 static hashval_t 63 location_adhoc_data_hash (const void *l) 64 { 65 const struct location_adhoc_data *lb = 66 (const struct location_adhoc_data *) l; 67 return ((hashval_t) lb->locus 68 + (hashval_t) lb->src_range.m_start 69 + (hashval_t) lb->src_range.m_finish 70 + (size_t) lb->data); 71 } 72 73 /* Compare function for location_adhoc_data hashtable. */ 74 75 static int 76 location_adhoc_data_eq (const void *l1, const void *l2) 77 { 78 const struct location_adhoc_data *lb1 = 79 (const struct location_adhoc_data *) l1; 80 const struct location_adhoc_data *lb2 = 81 (const struct location_adhoc_data *) l2; 82 return (lb1->locus == lb2->locus 83 && lb1->src_range.m_start == lb2->src_range.m_start 84 && lb1->src_range.m_finish == lb2->src_range.m_finish 85 && lb1->data == lb2->data); 86 } 87 88 /* Update the hashtable when location_adhoc_data is reallocated. */ 89 90 static int 91 location_adhoc_data_update (void **slot, void *data) 92 { 93 *((char **) slot) 94 = (char *) ((uintptr_t) *((char **) slot) + *((ptrdiff_t *) data)); 95 return 1; 96 } 97 98 /* Rebuild the hash table from the location adhoc data. */ 99 100 void 101 rebuild_location_adhoc_htab (struct line_maps *set) 102 { 103 unsigned i; 104 set->location_adhoc_data_map.htab = 105 htab_create (100, location_adhoc_data_hash, location_adhoc_data_eq, NULL); 106 for (i = 0; i < set->location_adhoc_data_map.curr_loc; i++) 107 htab_find_slot (set->location_adhoc_data_map.htab, 108 set->location_adhoc_data_map.data + i, INSERT); 109 } 110 111 /* Helper function for get_combined_adhoc_loc. 112 Can the given LOCUS + SRC_RANGE and DATA pointer be stored compactly 113 within a location_t, without needing to use an ad-hoc location. */ 114 115 static bool 116 can_be_stored_compactly_p (struct line_maps *set, 117 location_t locus, 118 source_range src_range, 119 void *data) 120 { 121 /* If there's an ad-hoc pointer, we can't store it directly in the 122 location_t, we need the lookaside. */ 123 if (data) 124 return false; 125 126 /* We only store ranges that begin at the locus and that are sufficiently 127 "sane". */ 128 if (src_range.m_start != locus) 129 return false; 130 131 if (src_range.m_finish < src_range.m_start) 132 return false; 133 134 if (src_range.m_start < RESERVED_LOCATION_COUNT) 135 return false; 136 137 if (locus >= LINE_MAP_MAX_LOCATION_WITH_PACKED_RANGES) 138 return false; 139 140 /* All 3 locations must be within ordinary maps, typically, the same 141 ordinary map. */ 142 location_t lowest_macro_loc = LINEMAPS_MACRO_LOWEST_LOCATION (set); 143 if (locus >= lowest_macro_loc) 144 return false; 145 if (src_range.m_start >= lowest_macro_loc) 146 return false; 147 if (src_range.m_finish >= lowest_macro_loc) 148 return false; 149 150 /* Passed all tests. */ 151 return true; 152 } 153 154 /* Combine LOCUS and DATA to a combined adhoc loc. */ 155 156 location_t 157 get_combined_adhoc_loc (struct line_maps *set, 158 location_t locus, 159 source_range src_range, 160 void *data) 161 { 162 struct location_adhoc_data lb; 163 struct location_adhoc_data **slot; 164 165 if (IS_ADHOC_LOC (locus)) 166 locus 167 = set->location_adhoc_data_map.data[locus & MAX_LOCATION_T].locus; 168 if (locus == 0 && data == NULL) 169 return 0; 170 171 /* Any ordinary locations ought to be "pure" at this point: no 172 compressed ranges. */ 173 linemap_assert (locus < RESERVED_LOCATION_COUNT 174 || locus >= LINE_MAP_MAX_LOCATION_WITH_PACKED_RANGES 175 || locus >= LINEMAPS_MACRO_LOWEST_LOCATION (set) 176 || pure_location_p (set, locus)); 177 178 /* Consider short-range optimization. */ 179 if (can_be_stored_compactly_p (set, locus, src_range, data)) 180 { 181 /* The low bits ought to be clear. */ 182 linemap_assert (pure_location_p (set, locus)); 183 const line_map *map = linemap_lookup (set, locus); 184 const line_map_ordinary *ordmap = linemap_check_ordinary (map); 185 unsigned int int_diff = src_range.m_finish - src_range.m_start; 186 unsigned int col_diff = (int_diff >> ordmap->m_range_bits); 187 if (col_diff < (1U << ordmap->m_range_bits)) 188 { 189 location_t packed = locus | col_diff; 190 set->num_optimized_ranges++; 191 return packed; 192 } 193 } 194 195 /* We can also compactly store locations 196 when locus == start == finish (and data is NULL). */ 197 if (locus == src_range.m_start 198 && locus == src_range.m_finish 199 && !data) 200 return locus; 201 202 if (!data) 203 set->num_unoptimized_ranges++; 204 205 lb.locus = locus; 206 lb.src_range = src_range; 207 lb.data = data; 208 slot = (struct location_adhoc_data **) 209 htab_find_slot (set->location_adhoc_data_map.htab, &lb, INSERT); 210 if (*slot == NULL) 211 { 212 if (set->location_adhoc_data_map.curr_loc >= 213 set->location_adhoc_data_map.allocated) 214 { 215 char *orig_data = (char *) set->location_adhoc_data_map.data; 216 ptrdiff_t offset; 217 /* Cast away extern "C" from the type of xrealloc. */ 218 line_map_realloc reallocator = (set->reallocator 219 ? set->reallocator 220 : (line_map_realloc) xrealloc); 221 222 if (set->location_adhoc_data_map.allocated == 0) 223 set->location_adhoc_data_map.allocated = 128; 224 else 225 set->location_adhoc_data_map.allocated *= 2; 226 set->location_adhoc_data_map.data = (struct location_adhoc_data *) 227 reallocator (set->location_adhoc_data_map.data, 228 set->location_adhoc_data_map.allocated 229 * sizeof (struct location_adhoc_data)); 230 offset = (char *) (set->location_adhoc_data_map.data) - orig_data; 231 if (set->location_adhoc_data_map.allocated > 128) 232 htab_traverse (set->location_adhoc_data_map.htab, 233 location_adhoc_data_update, &offset); 234 } 235 *slot = set->location_adhoc_data_map.data 236 + set->location_adhoc_data_map.curr_loc; 237 set->location_adhoc_data_map.data[set->location_adhoc_data_map.curr_loc++] 238 = lb; 239 } 240 return ((*slot) - set->location_adhoc_data_map.data) | 0x80000000; 241 } 242 243 /* Return the data for the adhoc loc. */ 244 245 void * 246 get_data_from_adhoc_loc (struct line_maps *set, location_t loc) 247 { 248 linemap_assert (IS_ADHOC_LOC (loc)); 249 return set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].data; 250 } 251 252 /* Return the location for the adhoc loc. */ 253 254 location_t 255 get_location_from_adhoc_loc (struct line_maps *set, location_t loc) 256 { 257 linemap_assert (IS_ADHOC_LOC (loc)); 258 return set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 259 } 260 261 /* Return the source_range for adhoc location LOC. */ 262 263 static source_range 264 get_range_from_adhoc_loc (struct line_maps *set, location_t loc) 265 { 266 linemap_assert (IS_ADHOC_LOC (loc)); 267 return set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].src_range; 268 } 269 270 /* Get the source_range of location LOC, either from the ad-hoc 271 lookaside table, or embedded inside LOC itself. */ 272 273 source_range 274 get_range_from_loc (struct line_maps *set, 275 location_t loc) 276 { 277 if (IS_ADHOC_LOC (loc)) 278 return get_range_from_adhoc_loc (set, loc); 279 280 /* For ordinary maps, extract packed range. */ 281 if (loc >= RESERVED_LOCATION_COUNT 282 && loc < LINEMAPS_MACRO_LOWEST_LOCATION (set) 283 && loc <= LINE_MAP_MAX_LOCATION_WITH_PACKED_RANGES) 284 { 285 const line_map *map = linemap_lookup (set, loc); 286 const line_map_ordinary *ordmap = linemap_check_ordinary (map); 287 source_range result; 288 int offset = loc & ((1 << ordmap->m_range_bits) - 1); 289 result.m_start = loc - offset; 290 result.m_finish = result.m_start + (offset << ordmap->m_range_bits); 291 return result; 292 } 293 294 return source_range::from_location (loc); 295 } 296 297 /* Get whether location LOC is a "pure" location, or 298 whether it is an ad-hoc location, or embeds range information. */ 299 300 bool 301 pure_location_p (line_maps *set, location_t loc) 302 { 303 if (IS_ADHOC_LOC (loc)) 304 return false; 305 306 const line_map *map = linemap_lookup (set, loc); 307 if (map == NULL) 308 return true; 309 const line_map_ordinary *ordmap = linemap_check_ordinary (map); 310 311 if (loc & ((1U << ordmap->m_range_bits) - 1)) 312 return false; 313 314 return true; 315 } 316 317 /* Given location LOC within SET, strip away any packed range information 318 or ad-hoc information. */ 319 320 location_t 321 get_pure_location (line_maps *set, location_t loc) 322 { 323 if (IS_ADHOC_LOC (loc)) 324 loc 325 = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 326 327 if (loc >= LINEMAPS_MACRO_LOWEST_LOCATION (set)) 328 return loc; 329 330 if (loc < RESERVED_LOCATION_COUNT) 331 return loc; 332 333 const line_map *map = linemap_lookup (set, loc); 334 const line_map_ordinary *ordmap = linemap_check_ordinary (map); 335 336 return loc & ~((1 << ordmap->m_range_bits) - 1); 337 } 338 339 /* Initialize a line map set. */ 340 341 void 342 linemap_init (struct line_maps *set, 343 location_t builtin_location) 344 { 345 #if __GNUC__ == 4 && __GNUC_MINOR__ == 2 && !defined (__clang__) 346 /* PR33916, needed to fix PR82939. */ 347 memset (set, 0, sizeof (struct line_maps)); 348 #else 349 new (set) line_maps(); 350 #endif 351 /* Set default reallocator (used for initial alloc too). */ 352 set->reallocator = xrealloc; 353 set->highest_location = RESERVED_LOCATION_COUNT - 1; 354 set->highest_line = RESERVED_LOCATION_COUNT - 1; 355 set->location_adhoc_data_map.htab = 356 htab_create (100, location_adhoc_data_hash, location_adhoc_data_eq, NULL); 357 set->builtin_location = builtin_location; 358 } 359 360 /* Return the ordinary line map from whence MAP was included. Returns 361 NULL if MAP was not an include. */ 362 363 const line_map_ordinary * 364 linemap_included_from_linemap (line_maps *set, const line_map_ordinary *map) 365 { 366 return linemap_ordinary_map_lookup (set, linemap_included_from (map)); 367 } 368 369 /* Check for and warn about line_maps entered but not exited. */ 370 371 void 372 linemap_check_files_exited (struct line_maps *set) 373 { 374 /* Depending upon whether we are handling preprocessed input or 375 not, this can be a user error or an ICE. */ 376 for (const line_map_ordinary *map = LINEMAPS_LAST_ORDINARY_MAP (set); 377 ! MAIN_FILE_P (map); 378 map = linemap_included_from_linemap (set, map)) 379 fprintf (stderr, "line-map.c: file \"%s\" entered but not left\n", 380 ORDINARY_MAP_FILE_NAME (map)); 381 } 382 383 /* Create a new line map in the line map set SET, and return it. 384 REASON is the reason of creating the map. It determines the type 385 of map created (ordinary or macro map). Note that ordinary maps and 386 macro maps are allocated in different memory location. */ 387 388 static struct line_map * 389 new_linemap (struct line_maps *set, location_t start_location) 390 { 391 bool macro_p = start_location >= LINE_MAP_MAX_LOCATION; 392 unsigned num_maps_allocated = LINEMAPS_ALLOCATED (set, macro_p); 393 unsigned num_maps_used = LINEMAPS_USED (set, macro_p); 394 395 if (num_maps_used == num_maps_allocated) 396 { 397 /* We need more space! */ 398 if (!num_maps_allocated) 399 num_maps_allocated = 128; 400 num_maps_allocated *= 2; 401 402 size_t size_of_a_map; 403 void *buffer; 404 if (macro_p) 405 { 406 size_of_a_map = sizeof (line_map_macro); 407 buffer = set->info_macro.maps; 408 } 409 else 410 { 411 size_of_a_map = sizeof (line_map_ordinary); 412 buffer = set->info_ordinary.maps; 413 } 414 415 /* We are going to execute some dance to try to reduce the 416 overhead of the memory allocator, in case we are using the 417 ggc-page.c one. 418 419 The actual size of memory we are going to get back from the 420 allocator may well be larger than what we ask for. Use this 421 hook to find what that size is. */ 422 size_t alloc_size 423 = set->round_alloc_size (num_maps_allocated * size_of_a_map); 424 425 /* Now alloc_size contains the exact memory size we would get if 426 we have asked for the initial alloc_size amount of memory. 427 Let's get back to the number of map that amounts to. */ 428 unsigned num_maps = alloc_size / size_of_a_map; 429 buffer = set->reallocator (buffer, num_maps * size_of_a_map); 430 memset ((char *)buffer + num_maps_used * size_of_a_map, 0, 431 (num_maps - num_maps_used) * size_of_a_map); 432 if (macro_p) 433 set->info_macro.maps = (line_map_macro *)buffer; 434 else 435 set->info_ordinary.maps = (line_map_ordinary *)buffer; 436 LINEMAPS_ALLOCATED (set, macro_p) = num_maps; 437 } 438 439 line_map *result = (macro_p ? (line_map *)&set->info_macro.maps[num_maps_used] 440 : (line_map *)&set->info_ordinary.maps[num_maps_used]); 441 LINEMAPS_USED (set, macro_p)++; 442 443 result->start_location = start_location; 444 445 return result; 446 } 447 448 /* Add a mapping of logical source line to physical source file and 449 line number. 450 451 The text pointed to by TO_FILE must have a lifetime 452 at least as long as the final call to lookup_line (). An empty 453 TO_FILE means standard input. If reason is LC_LEAVE, and 454 TO_FILE is NULL, then TO_FILE, TO_LINE and SYSP are given their 455 natural values considering the file we are returning to. 456 457 FROM_LINE should be monotonic increasing across calls to this 458 function. A call to this function can relocate the previous set of 459 maps, so any stored line_map pointers should not be used. */ 460 461 const struct line_map * 462 linemap_add (struct line_maps *set, enum lc_reason reason, 463 unsigned int sysp, const char *to_file, linenum_type to_line) 464 { 465 /* Generate a start_location above the current highest_location. 466 If possible, make the low range bits be zero. */ 467 location_t start_location; 468 if (set->highest_location < LINE_MAP_MAX_LOCATION_WITH_COLS) 469 { 470 start_location = set->highest_location + (1 << set->default_range_bits); 471 if (set->default_range_bits) 472 start_location &= ~((1 << set->default_range_bits) - 1); 473 linemap_assert (0 == (start_location 474 & ((1 << set->default_range_bits) - 1))); 475 } 476 else 477 start_location = set->highest_location + 1; 478 479 linemap_assert (!LINEMAPS_ORDINARY_USED (set) 480 || (start_location 481 >= MAP_START_LOCATION (LINEMAPS_LAST_ORDINARY_MAP (set)))); 482 483 /* When we enter the file for the first time reason cannot be 484 LC_RENAME. */ 485 linemap_assert (!(set->depth == 0 && reason == LC_RENAME)); 486 487 /* If we are leaving the main file, return a NULL map. */ 488 if (reason == LC_LEAVE 489 && MAIN_FILE_P (LINEMAPS_LAST_ORDINARY_MAP (set)) 490 && to_file == NULL) 491 { 492 set->depth--; 493 return NULL; 494 } 495 496 linemap_assert (reason != LC_ENTER_MACRO); 497 498 if (start_location >= LINE_MAP_MAX_LOCATION) 499 /* We ran out of line map space. */ 500 start_location = 0; 501 502 line_map_ordinary *map 503 = linemap_check_ordinary (new_linemap (set, start_location)); 504 map->reason = reason; 505 506 if (to_file && *to_file == '\0' && reason != LC_RENAME_VERBATIM) 507 to_file = "<stdin>"; 508 509 if (reason == LC_RENAME_VERBATIM) 510 reason = LC_RENAME; 511 512 const line_map_ordinary *from = NULL; 513 if (reason == LC_LEAVE) 514 { 515 /* When we are just leaving an "included" file, and jump to the next 516 location inside the "includer" right after the #include 517 "included", this variable points the map in use right before the 518 #include "included", inside the same "includer" file. */ 519 520 linemap_assert (!MAIN_FILE_P (map - 1)); 521 /* (MAP - 1) points to the map we are leaving. The 522 map from which (MAP - 1) got included should be the map 523 that comes right before MAP in the same file. */ 524 from = linemap_included_from_linemap (set, map - 1); 525 526 /* A TO_FILE of NULL is special - we use the natural values. */ 527 if (to_file == NULL) 528 { 529 to_file = ORDINARY_MAP_FILE_NAME (from); 530 to_line = SOURCE_LINE (from, from[1].start_location); 531 sysp = ORDINARY_MAP_IN_SYSTEM_HEADER_P (from); 532 } 533 else 534 linemap_assert (filename_cmp (ORDINARY_MAP_FILE_NAME (from), 535 to_file) == 0); 536 } 537 538 map->sysp = sysp; 539 map->to_file = to_file; 540 map->to_line = to_line; 541 LINEMAPS_ORDINARY_CACHE (set) = LINEMAPS_ORDINARY_USED (set) - 1; 542 map->m_column_and_range_bits = 0; 543 map->m_range_bits = 0; 544 set->highest_location = start_location; 545 set->highest_line = start_location; 546 set->max_column_hint = 0; 547 548 /* This assertion is placed after set->highest_location has 549 been updated, since the latter affects 550 linemap_location_from_macro_expansion_p, which ultimately affects 551 pure_location_p. */ 552 linemap_assert (pure_location_p (set, start_location)); 553 554 if (reason == LC_ENTER) 555 { 556 if (set->depth == 0) 557 map->included_from = 0; 558 else 559 /* The location of the end of the just-closed map. */ 560 map->included_from 561 = (((map[0].start_location - 1 - map[-1].start_location) 562 & ~((1 << map[-1].m_column_and_range_bits) - 1)) 563 + map[-1].start_location); 564 set->depth++; 565 if (set->trace_includes) 566 trace_include (set, map); 567 } 568 else if (reason == LC_RENAME) 569 map->included_from = linemap_included_from (&map[-1]); 570 else if (reason == LC_LEAVE) 571 { 572 set->depth--; 573 map->included_from = linemap_included_from (from); 574 } 575 576 return map; 577 } 578 579 /* Returns TRUE if the line table set tracks token locations across 580 macro expansion, FALSE otherwise. */ 581 582 bool 583 linemap_tracks_macro_expansion_locs_p (struct line_maps *set) 584 { 585 return LINEMAPS_MACRO_MAPS (set) != NULL; 586 } 587 588 /* Create a macro map. A macro map encodes source locations of tokens 589 that are part of a macro replacement-list, at a macro expansion 590 point. See the extensive comments of struct line_map and struct 591 line_map_macro, in line-map.h. 592 593 This map shall be created when the macro is expanded. The map 594 encodes the source location of the expansion point of the macro as 595 well as the "original" source location of each token that is part 596 of the macro replacement-list. If a macro is defined but never 597 expanded, it has no macro map. SET is the set of maps the macro 598 map should be part of. MACRO_NODE is the macro which the new macro 599 map should encode source locations for. EXPANSION is the location 600 of the expansion point of MACRO. For function-like macros 601 invocations, it's best to make it point to the closing parenthesis 602 of the macro, rather than the the location of the first character 603 of the macro. NUM_TOKENS is the number of tokens that are part of 604 the replacement-list of MACRO. 605 606 Note that when we run out of the integer space available for source 607 locations, this function returns NULL. In that case, callers of 608 this function cannot encode {line,column} pairs into locations of 609 macro tokens anymore. */ 610 611 const line_map_macro * 612 linemap_enter_macro (struct line_maps *set, struct cpp_hashnode *macro_node, 613 location_t expansion, unsigned int num_tokens) 614 { 615 location_t start_location 616 = LINEMAPS_MACRO_LOWEST_LOCATION (set) - num_tokens; 617 618 if (start_location < LINE_MAP_MAX_LOCATION) 619 /* We ran out of macro map space. */ 620 return NULL; 621 622 line_map_macro *map = linemap_check_macro (new_linemap (set, start_location)); 623 624 map->macro = macro_node; 625 map->n_tokens = num_tokens; 626 map->macro_locations 627 = (location_t*) set->reallocator (NULL, 628 2 * num_tokens 629 * sizeof (location_t)); 630 map->expansion = expansion; 631 memset (MACRO_MAP_LOCATIONS (map), 0, 632 2 * num_tokens * sizeof (location_t)); 633 634 LINEMAPS_MACRO_CACHE (set) = LINEMAPS_MACRO_USED (set) - 1; 635 636 return map; 637 } 638 639 /* Create and return a virtual location for a token that is part of a 640 macro expansion-list at a macro expansion point. See the comment 641 inside struct line_map_macro to see what an expansion-list exactly 642 is. 643 644 A call to this function must come after a call to 645 linemap_enter_macro. 646 647 MAP is the map into which the source location is created. TOKEN_NO 648 is the index of the token in the macro replacement-list, starting 649 at number 0. 650 651 ORIG_LOC is the location of the token outside of this macro 652 expansion. If the token comes originally from the macro 653 definition, it is the locus in the macro definition; otherwise it 654 is a location in the context of the caller of this macro expansion 655 (which is a virtual location or a source location if the caller is 656 itself a macro expansion or not). 657 658 ORIG_PARM_REPLACEMENT_LOC is the location in the macro definition, 659 either of the token itself or of a macro parameter that it 660 replaces. */ 661 662 location_t 663 linemap_add_macro_token (const line_map_macro *map, 664 unsigned int token_no, 665 location_t orig_loc, 666 location_t orig_parm_replacement_loc) 667 { 668 location_t result; 669 670 linemap_assert (linemap_macro_expansion_map_p (map)); 671 linemap_assert (token_no < MACRO_MAP_NUM_MACRO_TOKENS (map)); 672 673 MACRO_MAP_LOCATIONS (map)[2 * token_no] = orig_loc; 674 MACRO_MAP_LOCATIONS (map)[2 * token_no + 1] = orig_parm_replacement_loc; 675 676 result = MAP_START_LOCATION (map) + token_no; 677 return result; 678 } 679 680 /* Return a location_t for the start (i.e. column==0) of 681 (physical) line TO_LINE in the current source file (as in the 682 most recent linemap_add). MAX_COLUMN_HINT is the highest column 683 number we expect to use in this line (but it does not change 684 the highest_location). */ 685 686 location_t 687 linemap_line_start (struct line_maps *set, linenum_type to_line, 688 unsigned int max_column_hint) 689 { 690 line_map_ordinary *map = LINEMAPS_LAST_ORDINARY_MAP (set); 691 location_t highest = set->highest_location; 692 location_t r; 693 linenum_type last_line = 694 SOURCE_LINE (map, set->highest_line); 695 int line_delta = to_line - last_line; 696 bool add_map = false; 697 linemap_assert (map->m_column_and_range_bits >= map->m_range_bits); 698 int effective_column_bits = map->m_column_and_range_bits - map->m_range_bits; 699 700 if (line_delta < 0 701 || (line_delta > 10 702 && line_delta * map->m_column_and_range_bits > 1000) 703 || (max_column_hint >= (1U << effective_column_bits)) 704 || (max_column_hint <= 80 && effective_column_bits >= 10) 705 || (highest > LINE_MAP_MAX_LOCATION_WITH_PACKED_RANGES 706 && map->m_range_bits > 0) 707 || (highest > LINE_MAP_MAX_LOCATION_WITH_COLS 708 && (set->max_column_hint || highest >= LINE_MAP_MAX_LOCATION))) 709 add_map = true; 710 else 711 max_column_hint = set->max_column_hint; 712 if (add_map) 713 { 714 int column_bits; 715 int range_bits; 716 if (max_column_hint > LINE_MAP_MAX_COLUMN_NUMBER 717 || highest > LINE_MAP_MAX_LOCATION_WITH_COLS) 718 { 719 /* If the column number is ridiculous or we've allocated a huge 720 number of location_ts, give up on column numbers 721 (and on packed ranges). */ 722 max_column_hint = 0; 723 column_bits = 0; 724 range_bits = 0; 725 if (highest >= LINE_MAP_MAX_LOCATION) 726 return 0; 727 } 728 else 729 { 730 column_bits = 7; 731 if (highest <= LINE_MAP_MAX_LOCATION_WITH_PACKED_RANGES) 732 range_bits = set->default_range_bits; 733 else 734 range_bits = 0; 735 while (max_column_hint >= (1U << column_bits)) 736 column_bits++; 737 max_column_hint = 1U << column_bits; 738 column_bits += range_bits; 739 } 740 /* Allocate the new line_map. However, if the current map only has a 741 single line we can sometimes just increase its column_bits instead. */ 742 if (line_delta < 0 743 || last_line != ORDINARY_MAP_STARTING_LINE_NUMBER (map) 744 || SOURCE_COLUMN (map, highest) >= (1U << (column_bits - range_bits)) 745 || ( /* We can't reuse the map if the line offset is sufficiently 746 large to cause overflow when computing location_t values. */ 747 (to_line - ORDINARY_MAP_STARTING_LINE_NUMBER (map)) 748 >= (((uint64_t) 1) 749 << (CHAR_BIT * sizeof (linenum_type) - column_bits))) 750 || range_bits < map->m_range_bits) 751 map = linemap_check_ordinary 752 (const_cast <line_map *> 753 (linemap_add (set, LC_RENAME, 754 ORDINARY_MAP_IN_SYSTEM_HEADER_P (map), 755 ORDINARY_MAP_FILE_NAME (map), 756 to_line))); 757 map->m_column_and_range_bits = column_bits; 758 map->m_range_bits = range_bits; 759 r = (MAP_START_LOCATION (map) 760 + ((to_line - ORDINARY_MAP_STARTING_LINE_NUMBER (map)) 761 << column_bits)); 762 } 763 else 764 r = set->highest_line + (line_delta << map->m_column_and_range_bits); 765 766 /* Locations of ordinary tokens are always lower than locations of 767 macro tokens. */ 768 if (r >= LINE_MAP_MAX_LOCATION) 769 return 0; 770 771 set->highest_line = r; 772 if (r > set->highest_location) 773 set->highest_location = r; 774 set->max_column_hint = max_column_hint; 775 776 /* At this point, we expect one of: 777 (a) the normal case: a "pure" location with 0 range bits, or 778 (b) we've gone past LINE_MAP_MAX_LOCATION_WITH_COLS so can't track 779 columns anymore (or ranges), or 780 (c) we're in a region with a column hint exceeding 781 LINE_MAP_MAX_COLUMN_NUMBER, so column-tracking is off, 782 with column_bits == 0. */ 783 linemap_assert (pure_location_p (set, r) 784 || r >= LINE_MAP_MAX_LOCATION_WITH_COLS 785 || map->m_column_and_range_bits == 0); 786 linemap_assert (SOURCE_LINE (map, r) == to_line); 787 return r; 788 } 789 790 /* Encode and return a location_t from a column number. The 791 source line considered is the last source line used to call 792 linemap_line_start, i.e, the last source line which a location was 793 encoded from. */ 794 795 location_t 796 linemap_position_for_column (struct line_maps *set, unsigned int to_column) 797 { 798 location_t r = set->highest_line; 799 800 linemap_assert 801 (!linemap_macro_expansion_map_p (LINEMAPS_LAST_ORDINARY_MAP (set))); 802 803 if (to_column >= set->max_column_hint) 804 { 805 if (r > LINE_MAP_MAX_LOCATION_WITH_COLS 806 || to_column > LINE_MAP_MAX_COLUMN_NUMBER) 807 { 808 /* Running low on location_ts - disable column numbers. */ 809 return r; 810 } 811 else 812 { 813 /* Otherwise, attempt to start a new line that can hold TO_COLUMN, 814 with some space to spare. This may or may not lead to a new 815 linemap being created. */ 816 line_map_ordinary *map = LINEMAPS_LAST_ORDINARY_MAP (set); 817 r = linemap_line_start (set, SOURCE_LINE (map, r), to_column + 50); 818 map = LINEMAPS_LAST_ORDINARY_MAP (set); 819 if (map->m_column_and_range_bits == 0) 820 { 821 /* ...then the linemap has column-tracking disabled, 822 presumably due to exceeding either 823 LINE_MAP_MAX_LOCATION_WITH_COLS (overall) or 824 LINE_MAP_MAX_COLUMN_NUMBER (within this line). 825 Return the start of the linemap, which encodes column 0, for 826 the whole line. */ 827 return r; 828 } 829 } 830 } 831 line_map_ordinary *map = LINEMAPS_LAST_ORDINARY_MAP (set); 832 r = r + (to_column << map->m_range_bits); 833 if (r >= set->highest_location) 834 set->highest_location = r; 835 return r; 836 } 837 838 /* Encode and return a source location from a given line and 839 column. */ 840 841 location_t 842 linemap_position_for_line_and_column (line_maps *set, 843 const line_map_ordinary *ord_map, 844 linenum_type line, 845 unsigned column) 846 { 847 linemap_assert (ORDINARY_MAP_STARTING_LINE_NUMBER (ord_map) <= line); 848 849 location_t r = MAP_START_LOCATION (ord_map); 850 r += ((line - ORDINARY_MAP_STARTING_LINE_NUMBER (ord_map)) 851 << ord_map->m_column_and_range_bits); 852 if (r <= LINE_MAP_MAX_LOCATION_WITH_COLS) 853 r += ((column & ((1 << ord_map->m_column_and_range_bits) - 1)) 854 << ord_map->m_range_bits); 855 location_t upper_limit = LINEMAPS_MACRO_LOWEST_LOCATION (set); 856 if (r >= upper_limit) 857 r = upper_limit - 1; 858 if (r > set->highest_location) 859 set->highest_location = r; 860 return r; 861 } 862 863 /* Encode and return a location_t starting from location LOC and 864 shifting it by COLUMN_OFFSET columns. This function does not support 865 virtual locations. */ 866 867 location_t 868 linemap_position_for_loc_and_offset (struct line_maps *set, 869 location_t loc, 870 unsigned int column_offset) 871 { 872 const line_map_ordinary * map = NULL; 873 874 if (IS_ADHOC_LOC (loc)) 875 loc = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 876 877 /* This function does not support virtual locations yet. */ 878 if (linemap_location_from_macro_expansion_p (set, loc)) 879 return loc; 880 881 if (column_offset == 0 882 /* Adding an offset to a reserved location (like 883 UNKNOWN_LOCATION for the C/C++ FEs) does not really make 884 sense. So let's leave the location intact in that case. */ 885 || loc < RESERVED_LOCATION_COUNT) 886 return loc; 887 888 /* We find the real location and shift it. */ 889 loc = linemap_resolve_location (set, loc, LRK_SPELLING_LOCATION, &map); 890 /* The new location (loc + offset) should be higher than the first 891 location encoded by MAP. This can fail if the line information 892 is messed up because of line directives (see PR66415). */ 893 if (MAP_START_LOCATION (map) >= loc + (column_offset << map->m_range_bits)) 894 return loc; 895 896 linenum_type line = SOURCE_LINE (map, loc); 897 unsigned int column = SOURCE_COLUMN (map, loc); 898 899 /* If MAP is not the last line map of its set, then the new location 900 (loc + offset) should be less than the first location encoded by 901 the next line map of the set. Otherwise, we try to encode the 902 location in the next map. */ 903 while (map != LINEMAPS_LAST_ORDINARY_MAP (set) 904 && (loc + (column_offset << map->m_range_bits) 905 >= MAP_START_LOCATION (&map[1]))) 906 { 907 map = &map[1]; 908 /* If the next map starts in a higher line, we cannot encode the 909 location there. */ 910 if (line < ORDINARY_MAP_STARTING_LINE_NUMBER (map)) 911 return loc; 912 } 913 914 column += column_offset; 915 916 /* Bail out if the column is not representable within the existing 917 linemap. */ 918 if (column >= (1u << (map->m_column_and_range_bits - map->m_range_bits))) 919 return loc; 920 921 location_t r = 922 linemap_position_for_line_and_column (set, map, line, column); 923 if (linemap_assert_fails (r <= set->highest_location) 924 || linemap_assert_fails (map == linemap_lookup (set, r))) 925 return loc; 926 927 return r; 928 } 929 930 /* Given a virtual source location yielded by a map (either an 931 ordinary or a macro map), returns that map. */ 932 933 const struct line_map* 934 linemap_lookup (struct line_maps *set, location_t line) 935 { 936 if (IS_ADHOC_LOC (line)) 937 line = set->location_adhoc_data_map.data[line & MAX_LOCATION_T].locus; 938 if (linemap_location_from_macro_expansion_p (set, line)) 939 return linemap_macro_map_lookup (set, line); 940 return linemap_ordinary_map_lookup (set, line); 941 } 942 943 /* Given a source location yielded by an ordinary map, returns that 944 map. Since the set is built chronologically, the logical lines are 945 monotonic increasing, and so the list is sorted and we can use a 946 binary search. */ 947 948 static const line_map_ordinary * 949 linemap_ordinary_map_lookup (struct line_maps *set, location_t line) 950 { 951 unsigned int md, mn, mx; 952 const line_map_ordinary *cached, *result; 953 954 if (IS_ADHOC_LOC (line)) 955 line = set->location_adhoc_data_map.data[line & MAX_LOCATION_T].locus; 956 957 if (set == NULL || line < RESERVED_LOCATION_COUNT) 958 return NULL; 959 960 mn = LINEMAPS_ORDINARY_CACHE (set); 961 mx = LINEMAPS_ORDINARY_USED (set); 962 963 cached = LINEMAPS_ORDINARY_MAP_AT (set, mn); 964 /* We should get a segfault if no line_maps have been added yet. */ 965 if (line >= MAP_START_LOCATION (cached)) 966 { 967 if (mn + 1 == mx || line < MAP_START_LOCATION (&cached[1])) 968 return cached; 969 } 970 else 971 { 972 mx = mn; 973 mn = 0; 974 } 975 976 while (mx - mn > 1) 977 { 978 md = (mn + mx) / 2; 979 if (MAP_START_LOCATION (LINEMAPS_ORDINARY_MAP_AT (set, md)) > line) 980 mx = md; 981 else 982 mn = md; 983 } 984 985 LINEMAPS_ORDINARY_CACHE (set) = mn; 986 result = LINEMAPS_ORDINARY_MAP_AT (set, mn); 987 linemap_assert (line >= MAP_START_LOCATION (result)); 988 return result; 989 } 990 991 /* Given a source location yielded by a macro map, returns that map. 992 Since the set is built chronologically, the logical lines are 993 monotonic decreasing, and so the list is sorted and we can use a 994 binary search. */ 995 996 static const line_map_macro * 997 linemap_macro_map_lookup (struct line_maps *set, location_t line) 998 { 999 unsigned int md, mn, mx; 1000 const struct line_map_macro *cached, *result; 1001 1002 if (IS_ADHOC_LOC (line)) 1003 line = set->location_adhoc_data_map.data[line & MAX_LOCATION_T].locus; 1004 1005 linemap_assert (line >= LINEMAPS_MACRO_LOWEST_LOCATION (set)); 1006 1007 if (set == NULL) 1008 return NULL; 1009 1010 mn = LINEMAPS_MACRO_CACHE (set); 1011 mx = LINEMAPS_MACRO_USED (set); 1012 cached = LINEMAPS_MACRO_MAP_AT (set, mn); 1013 1014 if (line >= MAP_START_LOCATION (cached)) 1015 { 1016 if (mn == 0 || line < MAP_START_LOCATION (&cached[-1])) 1017 return cached; 1018 mx = mn - 1; 1019 mn = 0; 1020 } 1021 1022 while (mn < mx) 1023 { 1024 md = (mx + mn) / 2; 1025 if (MAP_START_LOCATION (LINEMAPS_MACRO_MAP_AT (set, md)) > line) 1026 mn = md + 1; 1027 else 1028 mx = md; 1029 } 1030 1031 LINEMAPS_MACRO_CACHE (set) = mx; 1032 result = LINEMAPS_MACRO_MAP_AT (set, LINEMAPS_MACRO_CACHE (set)); 1033 linemap_assert (MAP_START_LOCATION (result) <= line); 1034 1035 return result; 1036 } 1037 1038 /* Return TRUE if MAP encodes locations coming from a macro 1039 replacement-list at macro expansion point. */ 1040 1041 bool 1042 linemap_macro_expansion_map_p (const struct line_map *map) 1043 { 1044 return map && !MAP_ORDINARY_P (map); 1045 } 1046 1047 /* If LOCATION is the locus of a token in a replacement-list of a 1048 macro expansion return the location of the macro expansion point. 1049 1050 Read the comments of struct line_map and struct line_map_macro in 1051 line-map.h to understand what a macro expansion point is. */ 1052 1053 static location_t 1054 linemap_macro_map_loc_to_exp_point (const line_map_macro *map, 1055 location_t location ATTRIBUTE_UNUSED) 1056 { 1057 linemap_assert (linemap_macro_expansion_map_p (map) 1058 && location >= MAP_START_LOCATION (map)); 1059 1060 /* Make sure LOCATION is correct. */ 1061 linemap_assert ((location - MAP_START_LOCATION (map)) 1062 < MACRO_MAP_NUM_MACRO_TOKENS (map)); 1063 1064 return MACRO_MAP_EXPANSION_POINT_LOCATION (map); 1065 } 1066 1067 /* LOCATION is the source location of a token that belongs to a macro 1068 replacement-list as part of the macro expansion denoted by MAP. 1069 1070 Return the location of the token at the definition point of the 1071 macro. */ 1072 1073 static location_t 1074 linemap_macro_map_loc_to_def_point (const line_map_macro *map, 1075 location_t location) 1076 { 1077 unsigned token_no; 1078 1079 linemap_assert (linemap_macro_expansion_map_p (map) 1080 && location >= MAP_START_LOCATION (map)); 1081 linemap_assert (location >= RESERVED_LOCATION_COUNT); 1082 1083 token_no = location - MAP_START_LOCATION (map); 1084 linemap_assert (token_no < MACRO_MAP_NUM_MACRO_TOKENS (map)); 1085 1086 location = MACRO_MAP_LOCATIONS (map)[2 * token_no + 1]; 1087 1088 return location; 1089 } 1090 1091 /* If LOCATION is the locus of a token that is an argument of a 1092 function-like macro M and appears in the expansion of M, return the 1093 locus of that argument in the context of the caller of M. 1094 1095 In other words, this returns the xI location presented in the 1096 comments of line_map_macro above. */ 1097 location_t 1098 linemap_macro_map_loc_unwind_toward_spelling (line_maps *set, 1099 const line_map_macro* map, 1100 location_t location) 1101 { 1102 unsigned token_no; 1103 1104 if (IS_ADHOC_LOC (location)) 1105 location = get_location_from_adhoc_loc (set, location); 1106 1107 linemap_assert (linemap_macro_expansion_map_p (map) 1108 && location >= MAP_START_LOCATION (map)); 1109 linemap_assert (location >= RESERVED_LOCATION_COUNT); 1110 linemap_assert (!IS_ADHOC_LOC (location)); 1111 1112 token_no = location - MAP_START_LOCATION (map); 1113 linemap_assert (token_no < MACRO_MAP_NUM_MACRO_TOKENS (map)); 1114 1115 location = MACRO_MAP_LOCATIONS (map)[2 * token_no]; 1116 1117 return location; 1118 } 1119 1120 /* Return the source line number corresponding to source location 1121 LOCATION. SET is the line map set LOCATION comes from. If 1122 LOCATION is the source location of token that is part of the 1123 replacement-list of a macro expansion return the line number of the 1124 macro expansion point. */ 1125 1126 int 1127 linemap_get_expansion_line (struct line_maps *set, 1128 location_t location) 1129 { 1130 const line_map_ordinary *map = NULL; 1131 1132 if (IS_ADHOC_LOC (location)) 1133 location = set->location_adhoc_data_map.data[location 1134 & MAX_LOCATION_T].locus; 1135 1136 if (location < RESERVED_LOCATION_COUNT) 1137 return 0; 1138 1139 location = 1140 linemap_macro_loc_to_exp_point (set, location, &map); 1141 1142 return SOURCE_LINE (map, location); 1143 } 1144 1145 /* Return the path of the file corresponding to source code location 1146 LOCATION. 1147 1148 If LOCATION is the source location of token that is part of the 1149 replacement-list of a macro expansion return the file path of the 1150 macro expansion point. 1151 1152 SET is the line map set LOCATION comes from. */ 1153 1154 const char* 1155 linemap_get_expansion_filename (struct line_maps *set, 1156 location_t location) 1157 { 1158 const struct line_map_ordinary *map = NULL; 1159 1160 if (IS_ADHOC_LOC (location)) 1161 location = set->location_adhoc_data_map.data[location 1162 & MAX_LOCATION_T].locus; 1163 1164 if (location < RESERVED_LOCATION_COUNT) 1165 return NULL; 1166 1167 location = 1168 linemap_macro_loc_to_exp_point (set, location, &map); 1169 1170 return LINEMAP_FILE (map); 1171 } 1172 1173 /* Return the name of the macro associated to MACRO_MAP. */ 1174 1175 const char* 1176 linemap_map_get_macro_name (const line_map_macro *macro_map) 1177 { 1178 linemap_assert (macro_map && linemap_macro_expansion_map_p (macro_map)); 1179 return (const char*) NODE_NAME (MACRO_MAP_MACRO (macro_map)); 1180 } 1181 1182 /* Return a positive value if LOCATION is the locus of a token that is 1183 located in a system header, O otherwise. It returns 1 if LOCATION 1184 is the locus of a token that is located in a system header, and 2 1185 if LOCATION is the locus of a token located in a C system header 1186 that therefore needs to be extern "C" protected in C++. 1187 1188 Note that this function returns 1 if LOCATION belongs to a token 1189 that is part of a macro replacement-list defined in a system 1190 header, but expanded in a non-system file. */ 1191 1192 int 1193 linemap_location_in_system_header_p (struct line_maps *set, 1194 location_t location) 1195 { 1196 const struct line_map *map = NULL; 1197 1198 if (IS_ADHOC_LOC (location)) 1199 location = set->location_adhoc_data_map.data[location 1200 & MAX_LOCATION_T].locus; 1201 1202 if (location < RESERVED_LOCATION_COUNT) 1203 return false; 1204 1205 /* Let's look at where the token for LOCATION comes from. */ 1206 while (true) 1207 { 1208 map = linemap_lookup (set, location); 1209 if (map != NULL) 1210 { 1211 if (!linemap_macro_expansion_map_p (map)) 1212 /* It's a normal token. */ 1213 return LINEMAP_SYSP (linemap_check_ordinary (map)); 1214 else 1215 { 1216 const line_map_macro *macro_map = linemap_check_macro (map); 1217 1218 /* It's a token resulting from a macro expansion. */ 1219 location_t loc = 1220 linemap_macro_map_loc_unwind_toward_spelling (set, macro_map, location); 1221 if (loc < RESERVED_LOCATION_COUNT) 1222 /* This token might come from a built-in macro. Let's 1223 look at where that macro got expanded. */ 1224 location = linemap_macro_map_loc_to_exp_point (macro_map, location); 1225 else 1226 location = loc; 1227 } 1228 } 1229 else 1230 break; 1231 } 1232 return false; 1233 } 1234 1235 /* Return TRUE if LOCATION is a source code location of a token that is part of 1236 a macro expansion, FALSE otherwise. */ 1237 1238 bool 1239 linemap_location_from_macro_expansion_p (const struct line_maps *set, 1240 location_t location) 1241 { 1242 if (IS_ADHOC_LOC (location)) 1243 location = set->location_adhoc_data_map.data[location 1244 & MAX_LOCATION_T].locus; 1245 1246 return IS_MACRO_LOC (location); 1247 } 1248 1249 /* Given two virtual locations *LOC0 and *LOC1, return the first 1250 common macro map in their macro expansion histories. Return NULL 1251 if no common macro was found. *LOC0 (resp. *LOC1) is set to the 1252 virtual location of the token inside the resulting macro. */ 1253 1254 static const struct line_map* 1255 first_map_in_common_1 (struct line_maps *set, 1256 location_t *loc0, 1257 location_t *loc1) 1258 { 1259 location_t l0 = *loc0, l1 = *loc1; 1260 const struct line_map *map0 = linemap_lookup (set, l0), 1261 *map1 = linemap_lookup (set, l1); 1262 1263 while (linemap_macro_expansion_map_p (map0) 1264 && linemap_macro_expansion_map_p (map1) 1265 && (map0 != map1)) 1266 { 1267 if (MAP_START_LOCATION (map0) < MAP_START_LOCATION (map1)) 1268 { 1269 l0 = linemap_macro_map_loc_to_exp_point (linemap_check_macro (map0), 1270 l0); 1271 map0 = linemap_lookup (set, l0); 1272 } 1273 else 1274 { 1275 l1 = linemap_macro_map_loc_to_exp_point (linemap_check_macro (map1), 1276 l1); 1277 map1 = linemap_lookup (set, l1); 1278 } 1279 } 1280 1281 if (map0 == map1) 1282 { 1283 *loc0 = l0; 1284 *loc1 = l1; 1285 return map0; 1286 } 1287 return NULL; 1288 } 1289 1290 /* Given two virtual locations LOC0 and LOC1, return the first common 1291 macro map in their macro expansion histories. Return NULL if no 1292 common macro was found. *RES_LOC0 (resp. *RES_LOC1) is set to the 1293 virtual location of the token inside the resulting macro, upon 1294 return of a non-NULL result. */ 1295 1296 static const struct line_map* 1297 first_map_in_common (struct line_maps *set, 1298 location_t loc0, 1299 location_t loc1, 1300 location_t *res_loc0, 1301 location_t *res_loc1) 1302 { 1303 *res_loc0 = loc0; 1304 *res_loc1 = loc1; 1305 1306 return first_map_in_common_1 (set, res_loc0, res_loc1); 1307 } 1308 1309 /* Return a positive value if PRE denotes the location of a token that 1310 comes before the token of POST, 0 if PRE denotes the location of 1311 the same token as the token for POST, and a negative value 1312 otherwise. */ 1313 1314 int 1315 linemap_compare_locations (struct line_maps *set, 1316 location_t pre, 1317 location_t post) 1318 { 1319 bool pre_virtual_p, post_virtual_p; 1320 location_t l0 = pre, l1 = post; 1321 1322 if (IS_ADHOC_LOC (l0)) 1323 l0 = get_location_from_adhoc_loc (set, l0); 1324 if (IS_ADHOC_LOC (l1)) 1325 l1 = get_location_from_adhoc_loc (set, l1); 1326 1327 if (l0 == l1) 1328 return 0; 1329 1330 if ((pre_virtual_p = linemap_location_from_macro_expansion_p (set, l0))) 1331 l0 = linemap_resolve_location (set, l0, 1332 LRK_MACRO_EXPANSION_POINT, 1333 NULL); 1334 1335 if ((post_virtual_p = linemap_location_from_macro_expansion_p (set, l1))) 1336 l1 = linemap_resolve_location (set, l1, 1337 LRK_MACRO_EXPANSION_POINT, 1338 NULL); 1339 1340 if (l0 == l1 1341 && pre_virtual_p 1342 && post_virtual_p) 1343 { 1344 /* So pre and post represent two tokens that are present in a 1345 same macro expansion. Let's see if the token for pre was 1346 before the token for post in that expansion. */ 1347 unsigned i0, i1; 1348 const struct line_map *map = 1349 first_map_in_common (set, pre, post, &l0, &l1); 1350 1351 if (map == NULL) 1352 /* This should not be possible. */ 1353 abort (); 1354 1355 i0 = l0 - MAP_START_LOCATION (map); 1356 i1 = l1 - MAP_START_LOCATION (map); 1357 return i1 - i0; 1358 } 1359 1360 if (IS_ADHOC_LOC (l0)) 1361 l0 = get_location_from_adhoc_loc (set, l0); 1362 if (IS_ADHOC_LOC (l1)) 1363 l1 = get_location_from_adhoc_loc (set, l1); 1364 1365 return l1 - l0; 1366 } 1367 1368 /* Print an include trace, for e.g. the -H option of the preprocessor. */ 1369 1370 static void 1371 trace_include (const struct line_maps *set, const line_map_ordinary *map) 1372 { 1373 unsigned int i = set->depth; 1374 1375 while (--i) 1376 putc ('.', stderr); 1377 1378 fprintf (stderr, " %s\n", ORDINARY_MAP_FILE_NAME (map)); 1379 } 1380 1381 /* Return the spelling location of the token wherever it comes from, 1382 whether part of a macro definition or not. 1383 1384 This is a subroutine for linemap_resolve_location. */ 1385 1386 static location_t 1387 linemap_macro_loc_to_spelling_point (struct line_maps *set, 1388 location_t location, 1389 const line_map_ordinary **original_map) 1390 { 1391 linemap_assert (set && location >= RESERVED_LOCATION_COUNT); 1392 1393 while (true) 1394 { 1395 const struct line_map *map = linemap_lookup (set, location); 1396 if (!map || MAP_ORDINARY_P (map)) 1397 { 1398 if (original_map) 1399 *original_map = (const line_map_ordinary *)map; 1400 break; 1401 } 1402 1403 location = linemap_macro_map_loc_unwind_toward_spelling 1404 (set, linemap_check_macro (map), location); 1405 } 1406 1407 return location; 1408 } 1409 1410 /* If LOCATION is the source location of a token that belongs to a 1411 macro replacement-list -- as part of a macro expansion -- then 1412 return the location of the token at the definition point of the 1413 macro. Otherwise, return LOCATION. SET is the set of maps 1414 location come from. ORIGINAL_MAP is an output parm. If non NULL, 1415 the function sets *ORIGINAL_MAP to the ordinary (non-macro) map the 1416 returned location comes from. 1417 1418 This is a subroutine of linemap_resolve_location. */ 1419 1420 static location_t 1421 linemap_macro_loc_to_def_point (struct line_maps *set, 1422 location_t location, 1423 const line_map_ordinary **original_map) 1424 { 1425 linemap_assert (set && location >= RESERVED_LOCATION_COUNT); 1426 1427 for (;;) 1428 { 1429 location_t caret_loc = location; 1430 if (IS_ADHOC_LOC (caret_loc)) 1431 caret_loc = get_location_from_adhoc_loc (set, caret_loc); 1432 1433 const line_map *map = linemap_lookup (set, caret_loc); 1434 if (!map || MAP_ORDINARY_P (map)) 1435 { 1436 if (original_map) 1437 *original_map = (const line_map_ordinary *)map; 1438 break; 1439 } 1440 1441 location = linemap_macro_map_loc_to_def_point 1442 (linemap_check_macro (map), caret_loc); 1443 } 1444 1445 return location; 1446 } 1447 1448 /* If LOCATION is the source location of a token that belongs to a 1449 macro replacement-list -- at a macro expansion point -- then return 1450 the location of the topmost expansion point of the macro. We say 1451 topmost because if we are in the context of a nested macro 1452 expansion, the function returns the source location of the first 1453 macro expansion that triggered the nested expansions. 1454 1455 Otherwise, return LOCATION. SET is the set of maps location come 1456 from. ORIGINAL_MAP is an output parm. If non NULL, the function 1457 sets *ORIGINAL_MAP to the ordinary (non-macro) map the returned 1458 location comes from. 1459 1460 This is a subroutine of linemap_resolve_location. */ 1461 1462 static location_t 1463 linemap_macro_loc_to_exp_point (struct line_maps *set, 1464 location_t location, 1465 const line_map_ordinary **original_map) 1466 { 1467 struct line_map *map; 1468 1469 if (IS_ADHOC_LOC (location)) 1470 location = set->location_adhoc_data_map.data[location 1471 & MAX_LOCATION_T].locus; 1472 1473 linemap_assert (set && location >= RESERVED_LOCATION_COUNT); 1474 1475 while (true) 1476 { 1477 map = const_cast <line_map *> (linemap_lookup (set, location)); 1478 if (!linemap_macro_expansion_map_p (map)) 1479 break; 1480 location = linemap_macro_map_loc_to_exp_point (linemap_check_macro (map), 1481 location); 1482 } 1483 1484 if (original_map) 1485 *original_map = linemap_check_ordinary (map); 1486 return location; 1487 } 1488 1489 /* Resolve a virtual location into either a spelling location, an 1490 expansion point location or a token argument replacement point 1491 location. Return the map that encodes the virtual location as well 1492 as the resolved location. 1493 1494 If LOC is *NOT* the location of a token resulting from the 1495 expansion of a macro, then the parameter LRK (which stands for 1496 Location Resolution Kind) is ignored and the resulting location 1497 just equals the one given in argument. 1498 1499 Now if LOC *IS* the location of a token resulting from the 1500 expansion of a macro, this is what happens. 1501 1502 * If LRK is set to LRK_MACRO_EXPANSION_POINT 1503 ------------------------------- 1504 1505 The virtual location is resolved to the first macro expansion point 1506 that led to this macro expansion. 1507 1508 * If LRK is set to LRK_SPELLING_LOCATION 1509 ------------------------------------- 1510 1511 The virtual location is resolved to the locus where the token has 1512 been spelled in the source. This can follow through all the macro 1513 expansions that led to the token. 1514 1515 * If LRK is set to LRK_MACRO_DEFINITION_LOCATION 1516 -------------------------------------- 1517 1518 The virtual location is resolved to the locus of the token in the 1519 context of the macro definition. 1520 1521 If LOC is the locus of a token that is an argument of a 1522 function-like macro [replacing a parameter in the replacement list 1523 of the macro] the virtual location is resolved to the locus of the 1524 parameter that is replaced, in the context of the definition of the 1525 macro. 1526 1527 If LOC is the locus of a token that is not an argument of a 1528 function-like macro, then the function behaves as if LRK was set to 1529 LRK_SPELLING_LOCATION. 1530 1531 If MAP is not NULL, *MAP is set to the map encoding the 1532 returned location. Note that if the returned location wasn't originally 1533 encoded by a map, then *MAP is set to NULL. This can happen if LOC 1534 resolves to a location reserved for the client code, like 1535 UNKNOWN_LOCATION or BUILTINS_LOCATION in GCC. */ 1536 1537 location_t 1538 linemap_resolve_location (struct line_maps *set, 1539 location_t loc, 1540 enum location_resolution_kind lrk, 1541 const line_map_ordinary **map) 1542 { 1543 location_t locus = loc; 1544 if (IS_ADHOC_LOC (loc)) 1545 locus = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 1546 1547 if (locus < RESERVED_LOCATION_COUNT) 1548 { 1549 /* A reserved location wasn't encoded in a map. Let's return a 1550 NULL map here, just like what linemap_ordinary_map_lookup 1551 does. */ 1552 if (map) 1553 *map = NULL; 1554 return loc; 1555 } 1556 1557 switch (lrk) 1558 { 1559 case LRK_MACRO_EXPANSION_POINT: 1560 loc = linemap_macro_loc_to_exp_point (set, loc, map); 1561 break; 1562 case LRK_SPELLING_LOCATION: 1563 loc = linemap_macro_loc_to_spelling_point (set, loc, map); 1564 break; 1565 case LRK_MACRO_DEFINITION_LOCATION: 1566 loc = linemap_macro_loc_to_def_point (set, loc, map); 1567 break; 1568 default: 1569 abort (); 1570 } 1571 return loc; 1572 } 1573 1574 /* TRUE if LOCATION is a source code location of a token that is part of the 1575 definition of a macro, FALSE otherwise. */ 1576 1577 bool 1578 linemap_location_from_macro_definition_p (struct line_maps *set, 1579 location_t loc) 1580 { 1581 if (IS_ADHOC_LOC (loc)) 1582 loc = get_location_from_adhoc_loc (set, loc); 1583 1584 if (!linemap_location_from_macro_expansion_p (set, loc)) 1585 return false; 1586 1587 while (true) 1588 { 1589 const struct line_map_macro *map 1590 = linemap_check_macro (linemap_lookup (set, loc)); 1591 1592 location_t s_loc 1593 = linemap_macro_map_loc_unwind_toward_spelling (set, map, loc); 1594 if (linemap_location_from_macro_expansion_p (set, s_loc)) 1595 loc = s_loc; 1596 else 1597 { 1598 location_t def_loc 1599 = linemap_macro_map_loc_to_def_point (map, loc); 1600 return s_loc == def_loc; 1601 } 1602 } 1603 } 1604 1605 /* 1606 Suppose that LOC is the virtual location of a token T coming from 1607 the expansion of a macro M. This function then steps up to get the 1608 location L of the point where M got expanded. If L is a spelling 1609 location inside a macro expansion M', then this function returns 1610 the locus of the point where M' was expanded. Said otherwise, this 1611 function returns the location of T in the context that triggered 1612 the expansion of M. 1613 1614 *LOC_MAP must be set to the map of LOC. This function then sets it 1615 to the map of the returned location. */ 1616 1617 location_t 1618 linemap_unwind_toward_expansion (struct line_maps *set, 1619 location_t loc, 1620 const struct line_map **map) 1621 { 1622 location_t resolved_location; 1623 const line_map_macro *macro_map = linemap_check_macro (*map); 1624 const struct line_map *resolved_map; 1625 1626 if (IS_ADHOC_LOC (loc)) 1627 loc = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 1628 1629 resolved_location = 1630 linemap_macro_map_loc_unwind_toward_spelling (set, macro_map, loc); 1631 resolved_map = linemap_lookup (set, resolved_location); 1632 1633 if (!linemap_macro_expansion_map_p (resolved_map)) 1634 { 1635 resolved_location = linemap_macro_map_loc_to_exp_point (macro_map, loc); 1636 resolved_map = linemap_lookup (set, resolved_location); 1637 } 1638 1639 *map = resolved_map; 1640 return resolved_location; 1641 } 1642 1643 /* If LOC is the virtual location of a token coming from the expansion 1644 of a macro M and if its spelling location is reserved (e.g, a 1645 location for a built-in token), then this function unwinds (using 1646 linemap_unwind_toward_expansion) the location until a location that 1647 is not reserved and is not in a system header is reached. In other 1648 words, this unwinds the reserved location until a location that is 1649 in real source code is reached. 1650 1651 Otherwise, if the spelling location for LOC is not reserved or if 1652 LOC doesn't come from the expansion of a macro, the function 1653 returns LOC as is and *MAP is not touched. 1654 1655 *MAP is set to the map of the returned location if the later is 1656 different from LOC. */ 1657 location_t 1658 linemap_unwind_to_first_non_reserved_loc (struct line_maps *set, 1659 location_t loc, 1660 const struct line_map **map) 1661 { 1662 location_t resolved_loc; 1663 const struct line_map *map0 = NULL; 1664 const line_map_ordinary *map1 = NULL; 1665 1666 if (IS_ADHOC_LOC (loc)) 1667 loc = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 1668 1669 map0 = linemap_lookup (set, loc); 1670 if (!linemap_macro_expansion_map_p (map0)) 1671 return loc; 1672 1673 resolved_loc = linemap_resolve_location (set, loc, 1674 LRK_SPELLING_LOCATION, 1675 &map1); 1676 1677 if (resolved_loc >= RESERVED_LOCATION_COUNT 1678 && !LINEMAP_SYSP (map1)) 1679 return loc; 1680 1681 while (linemap_macro_expansion_map_p (map0) 1682 && (resolved_loc < RESERVED_LOCATION_COUNT 1683 || LINEMAP_SYSP (map1))) 1684 { 1685 loc = linemap_unwind_toward_expansion (set, loc, &map0); 1686 resolved_loc = linemap_resolve_location (set, loc, 1687 LRK_SPELLING_LOCATION, 1688 &map1); 1689 } 1690 1691 if (map != NULL) 1692 *map = map0; 1693 return loc; 1694 } 1695 1696 /* Expand source code location LOC and return a user readable source 1697 code location. LOC must be a spelling (non-virtual) location. If 1698 it's a location < RESERVED_LOCATION_COUNT a zeroed expanded source 1699 location is returned. */ 1700 1701 expanded_location 1702 linemap_expand_location (struct line_maps *set, 1703 const struct line_map *map, 1704 location_t loc) 1705 1706 { 1707 expanded_location xloc; 1708 1709 memset (&xloc, 0, sizeof (xloc)); 1710 if (IS_ADHOC_LOC (loc)) 1711 { 1712 xloc.data 1713 = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].data; 1714 loc = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 1715 } 1716 1717 if (loc < RESERVED_LOCATION_COUNT) 1718 /* The location for this token wasn't generated from a line map. 1719 It was probably a location for a builtin token, chosen by some 1720 client code. Let's not try to expand the location in that 1721 case. */; 1722 else if (map == NULL) 1723 /* We shouldn't be getting a NULL map with a location that is not 1724 reserved by the client code. */ 1725 abort (); 1726 else 1727 { 1728 /* MAP must be an ordinary map and LOC must be non-virtual, 1729 encoded into this map, obviously; the accessors used on MAP 1730 below ensure it is ordinary. Let's just assert the 1731 non-virtualness of LOC here. */ 1732 if (linemap_location_from_macro_expansion_p (set, loc)) 1733 abort (); 1734 1735 const line_map_ordinary *ord_map = linemap_check_ordinary (map); 1736 1737 xloc.file = LINEMAP_FILE (ord_map); 1738 xloc.line = SOURCE_LINE (ord_map, loc); 1739 xloc.column = SOURCE_COLUMN (ord_map, loc); 1740 xloc.sysp = LINEMAP_SYSP (ord_map) != 0; 1741 } 1742 1743 return xloc; 1744 } 1745 1746 1747 /* Dump line map at index IX in line table SET to STREAM. If STREAM 1748 is NULL, use stderr. IS_MACRO is true if the caller wants to 1749 dump a macro map, false otherwise. */ 1750 1751 void 1752 linemap_dump (FILE *stream, struct line_maps *set, unsigned ix, bool is_macro) 1753 { 1754 const char *const lc_reasons_v[LC_HWM] 1755 = { "LC_ENTER", "LC_LEAVE", "LC_RENAME", "LC_RENAME_VERBATIM", 1756 "LC_ENTER_MACRO" }; 1757 const line_map *map; 1758 unsigned reason; 1759 1760 if (stream == NULL) 1761 stream = stderr; 1762 1763 if (!is_macro) 1764 { 1765 map = LINEMAPS_ORDINARY_MAP_AT (set, ix); 1766 reason = linemap_check_ordinary (map)->reason; 1767 } 1768 else 1769 { 1770 map = LINEMAPS_MACRO_MAP_AT (set, ix); 1771 reason = LC_ENTER_MACRO; 1772 } 1773 1774 fprintf (stream, "Map #%u [%p] - LOC: %u - REASON: %s - SYSP: %s\n", 1775 ix, (void *) map, map->start_location, 1776 reason < LC_HWM ? lc_reasons_v[reason] : "???", 1777 ((!is_macro 1778 && ORDINARY_MAP_IN_SYSTEM_HEADER_P (linemap_check_ordinary (map))) 1779 ? "yes" : "no")); 1780 if (!is_macro) 1781 { 1782 const line_map_ordinary *ord_map = linemap_check_ordinary (map); 1783 const line_map_ordinary *includer_map 1784 = linemap_included_from_linemap (set, ord_map); 1785 1786 fprintf (stream, "File: %s:%d\n", ORDINARY_MAP_FILE_NAME (ord_map), 1787 ORDINARY_MAP_STARTING_LINE_NUMBER (ord_map)); 1788 fprintf (stream, "Included from: [%d] %s\n", 1789 includer_map ? int (includer_map - set->info_ordinary.maps) : -1, 1790 includer_map ? ORDINARY_MAP_FILE_NAME (includer_map) : "None"); 1791 } 1792 else 1793 { 1794 const line_map_macro *macro_map = linemap_check_macro (map); 1795 fprintf (stream, "Macro: %s (%u tokens)\n", 1796 linemap_map_get_macro_name (macro_map), 1797 MACRO_MAP_NUM_MACRO_TOKENS (macro_map)); 1798 } 1799 1800 fprintf (stream, "\n"); 1801 } 1802 1803 1804 /* Dump debugging information about source location LOC into the file 1805 stream STREAM. SET is the line map set LOC comes from. */ 1806 1807 void 1808 linemap_dump_location (struct line_maps *set, 1809 location_t loc, 1810 FILE *stream) 1811 { 1812 const line_map_ordinary *map; 1813 location_t location; 1814 const char *path = "", *from = ""; 1815 int l = -1, c = -1, s = -1, e = -1; 1816 1817 if (IS_ADHOC_LOC (loc)) 1818 loc = set->location_adhoc_data_map.data[loc & MAX_LOCATION_T].locus; 1819 1820 if (loc == 0) 1821 return; 1822 1823 location = 1824 linemap_resolve_location (set, loc, LRK_MACRO_DEFINITION_LOCATION, &map); 1825 1826 if (map == NULL) 1827 /* Only reserved locations can be tolerated in this case. */ 1828 linemap_assert (location < RESERVED_LOCATION_COUNT); 1829 else 1830 { 1831 path = LINEMAP_FILE (map); 1832 l = SOURCE_LINE (map, location); 1833 c = SOURCE_COLUMN (map, location); 1834 s = LINEMAP_SYSP (map) != 0; 1835 e = location != loc; 1836 if (e) 1837 from = "N/A"; 1838 else 1839 { 1840 const line_map_ordinary *from_map 1841 = linemap_included_from_linemap (set, map); 1842 from = from_map ? LINEMAP_FILE (from_map) : "<NULL>"; 1843 } 1844 } 1845 1846 /* P: path, L: line, C: column, S: in-system-header, M: map address, 1847 E: macro expansion?, LOC: original location, R: resolved location */ 1848 fprintf (stream, "{P:%s;F:%s;L:%d;C:%d;S:%d;M:%p;E:%d,LOC:%d,R:%d}", 1849 path, from, l, c, s, (void*)map, e, loc, location); 1850 } 1851 1852 /* Return the highest location emitted for a given file for which 1853 there is a line map in SET. FILE_NAME is the file name to 1854 consider. If the function returns TRUE, *LOC is set to the highest 1855 location emitted for that file. */ 1856 1857 bool 1858 linemap_get_file_highest_location (struct line_maps *set, 1859 const char *file_name, 1860 location_t *loc) 1861 { 1862 /* If the set is empty or no ordinary map has been created then 1863 there is no file to look for ... */ 1864 if (set == NULL || set->info_ordinary.used == 0) 1865 return false; 1866 1867 /* Now look for the last ordinary map created for FILE_NAME. */ 1868 int i; 1869 for (i = set->info_ordinary.used - 1; i >= 0; --i) 1870 { 1871 const char *fname = set->info_ordinary.maps[i].to_file; 1872 if (fname && !filename_cmp (fname, file_name)) 1873 break; 1874 } 1875 1876 if (i < 0) 1877 return false; 1878 1879 /* The highest location for a given map is either the starting 1880 location of the next map minus one, or -- if the map is the 1881 latest one -- the highest location of the set. */ 1882 location_t result; 1883 if (i == (int) set->info_ordinary.used - 1) 1884 result = set->highest_location; 1885 else 1886 result = set->info_ordinary.maps[i + 1].start_location - 1; 1887 1888 *loc = result; 1889 return true; 1890 } 1891 1892 /* Compute and return statistics about the memory consumption of some 1893 parts of the line table SET. */ 1894 1895 void 1896 linemap_get_statistics (struct line_maps *set, 1897 struct linemap_stats *s) 1898 { 1899 long ordinary_maps_allocated_size, ordinary_maps_used_size, 1900 macro_maps_allocated_size, macro_maps_used_size, 1901 macro_maps_locations_size = 0, duplicated_macro_maps_locations_size = 0; 1902 1903 const line_map_macro *cur_map; 1904 1905 ordinary_maps_allocated_size = 1906 LINEMAPS_ORDINARY_ALLOCATED (set) * sizeof (struct line_map_ordinary); 1907 1908 ordinary_maps_used_size = 1909 LINEMAPS_ORDINARY_USED (set) * sizeof (struct line_map_ordinary); 1910 1911 macro_maps_allocated_size = 1912 LINEMAPS_MACRO_ALLOCATED (set) * sizeof (struct line_map_macro); 1913 1914 for (cur_map = LINEMAPS_MACRO_MAPS (set); 1915 cur_map && cur_map <= LINEMAPS_LAST_MACRO_MAP (set); 1916 ++cur_map) 1917 { 1918 unsigned i; 1919 1920 linemap_assert (linemap_macro_expansion_map_p (cur_map)); 1921 1922 macro_maps_locations_size += 1923 2 * MACRO_MAP_NUM_MACRO_TOKENS (cur_map) * sizeof (location_t); 1924 1925 for (i = 0; i < 2 * MACRO_MAP_NUM_MACRO_TOKENS (cur_map); i += 2) 1926 { 1927 if (MACRO_MAP_LOCATIONS (cur_map)[i] == 1928 MACRO_MAP_LOCATIONS (cur_map)[i + 1]) 1929 duplicated_macro_maps_locations_size += 1930 sizeof (location_t); 1931 } 1932 } 1933 1934 macro_maps_used_size = 1935 LINEMAPS_MACRO_USED (set) * sizeof (struct line_map_macro); 1936 1937 s->num_ordinary_maps_allocated = LINEMAPS_ORDINARY_ALLOCATED (set); 1938 s->num_ordinary_maps_used = LINEMAPS_ORDINARY_USED (set); 1939 s->ordinary_maps_allocated_size = ordinary_maps_allocated_size; 1940 s->ordinary_maps_used_size = ordinary_maps_used_size; 1941 s->num_expanded_macros = num_expanded_macros_counter; 1942 s->num_macro_tokens = num_macro_tokens_counter; 1943 s->num_macro_maps_used = LINEMAPS_MACRO_USED (set); 1944 s->macro_maps_allocated_size = macro_maps_allocated_size; 1945 s->macro_maps_locations_size = macro_maps_locations_size; 1946 s->macro_maps_used_size = macro_maps_used_size; 1947 s->duplicated_macro_maps_locations_size = 1948 duplicated_macro_maps_locations_size; 1949 s->adhoc_table_size = (set->location_adhoc_data_map.allocated 1950 * sizeof (struct location_adhoc_data)); 1951 s->adhoc_table_entries_used = set->location_adhoc_data_map.curr_loc; 1952 } 1953 1954 1955 /* Dump line table SET to STREAM. If STREAM is NULL, stderr is used. 1956 NUM_ORDINARY specifies how many ordinary maps to dump. NUM_MACRO 1957 specifies how many macro maps to dump. */ 1958 1959 void 1960 line_table_dump (FILE *stream, struct line_maps *set, unsigned int num_ordinary, 1961 unsigned int num_macro) 1962 { 1963 unsigned int i; 1964 1965 if (set == NULL) 1966 return; 1967 1968 if (stream == NULL) 1969 stream = stderr; 1970 1971 fprintf (stream, "# of ordinary maps: %d\n", LINEMAPS_ORDINARY_USED (set)); 1972 fprintf (stream, "# of macro maps: %d\n", LINEMAPS_MACRO_USED (set)); 1973 fprintf (stream, "Include stack depth: %d\n", set->depth); 1974 fprintf (stream, "Highest location: %u\n", set->highest_location); 1975 1976 if (num_ordinary) 1977 { 1978 fprintf (stream, "\nOrdinary line maps\n"); 1979 for (i = 0; i < num_ordinary && i < LINEMAPS_ORDINARY_USED (set); i++) 1980 linemap_dump (stream, set, i, false); 1981 fprintf (stream, "\n"); 1982 } 1983 1984 if (num_macro) 1985 { 1986 fprintf (stream, "\nMacro line maps\n"); 1987 for (i = 0; i < num_macro && i < LINEMAPS_MACRO_USED (set); i++) 1988 linemap_dump (stream, set, i, true); 1989 fprintf (stream, "\n"); 1990 } 1991 } 1992 1993 /* class rich_location. */ 1994 1995 /* Construct a rich_location with location LOC as its initial range. */ 1996 1997 rich_location::rich_location (line_maps *set, location_t loc, 1998 const range_label *label) : 1999 m_line_table (set), 2000 m_ranges (), 2001 m_column_override (0), 2002 m_have_expanded_location (false), 2003 m_fixit_hints (), 2004 m_seen_impossible_fixit (false), 2005 m_fixits_cannot_be_auto_applied (false) 2006 { 2007 add_range (loc, SHOW_RANGE_WITH_CARET, label); 2008 } 2009 2010 /* The destructor for class rich_location. */ 2011 2012 rich_location::~rich_location () 2013 { 2014 for (unsigned int i = 0; i < m_fixit_hints.count (); i++) 2015 delete get_fixit_hint (i); 2016 } 2017 2018 /* Get location IDX within this rich_location. */ 2019 2020 location_t 2021 rich_location::get_loc (unsigned int idx) const 2022 { 2023 const location_range *locrange = get_range (idx); 2024 return locrange->m_loc; 2025 } 2026 2027 /* Get range IDX within this rich_location. */ 2028 2029 const location_range * 2030 rich_location::get_range (unsigned int idx) const 2031 { 2032 return &m_ranges[idx]; 2033 } 2034 2035 /* Mutable access to range IDX within this rich_location. */ 2036 2037 location_range * 2038 rich_location::get_range (unsigned int idx) 2039 { 2040 return &m_ranges[idx]; 2041 } 2042 2043 /* Expand location IDX within this rich_location. */ 2044 /* Get an expanded_location for this rich_location's primary 2045 location. */ 2046 2047 expanded_location 2048 rich_location::get_expanded_location (unsigned int idx) 2049 { 2050 if (idx == 0) 2051 { 2052 /* Cache the expansion of the primary location. */ 2053 if (!m_have_expanded_location) 2054 { 2055 m_expanded_location 2056 = linemap_client_expand_location_to_spelling_point 2057 (get_loc (0), LOCATION_ASPECT_CARET); 2058 if (m_column_override) 2059 m_expanded_location.column = m_column_override; 2060 m_have_expanded_location = true; 2061 } 2062 2063 return m_expanded_location; 2064 } 2065 else 2066 return linemap_client_expand_location_to_spelling_point 2067 (get_loc (idx), LOCATION_ASPECT_CARET); 2068 } 2069 2070 /* Set the column of the primary location, with 0 meaning 2071 "don't override it". */ 2072 2073 void 2074 rich_location::override_column (int column) 2075 { 2076 m_column_override = column; 2077 m_have_expanded_location = false; 2078 } 2079 2080 /* Add the given range. */ 2081 2082 void 2083 rich_location::add_range (location_t loc, 2084 enum range_display_kind range_display_kind, 2085 const range_label *label) 2086 { 2087 location_range range; 2088 range.m_loc = loc; 2089 range.m_range_display_kind = range_display_kind; 2090 range.m_label = label; 2091 m_ranges.push (range); 2092 } 2093 2094 /* Add or overwrite the location given by IDX, setting its location to LOC, 2095 and setting its m_range_display_kind to RANGE_DISPLAY_KIND. 2096 2097 It must either overwrite an existing location, or add one *exactly* on 2098 the end of the array. 2099 2100 This is primarily for use by gcc when implementing diagnostic format 2101 decoders e.g. 2102 - the "+" in the C/C++ frontends, for handling format codes like "%q+D" 2103 (which writes the source location of a tree back into location 0 of 2104 the rich_location), and 2105 - the "%C" and "%L" format codes in the Fortran frontend. */ 2106 2107 void 2108 rich_location::set_range (unsigned int idx, location_t loc, 2109 enum range_display_kind range_display_kind) 2110 { 2111 /* We can either overwrite an existing range, or add one exactly 2112 on the end of the array. */ 2113 linemap_assert (idx <= m_ranges.count ()); 2114 2115 if (idx == m_ranges.count ()) 2116 add_range (loc, range_display_kind); 2117 else 2118 { 2119 location_range *locrange = get_range (idx); 2120 locrange->m_loc = loc; 2121 locrange->m_range_display_kind = range_display_kind; 2122 } 2123 2124 if (idx == 0) 2125 /* Mark any cached value here as dirty. */ 2126 m_have_expanded_location = false; 2127 } 2128 2129 /* Methods for adding insertion fix-it hints. */ 2130 2131 /* Add a fixit-hint, suggesting insertion of NEW_CONTENT 2132 immediately before the primary range's start location. */ 2133 2134 void 2135 rich_location::add_fixit_insert_before (const char *new_content) 2136 { 2137 add_fixit_insert_before (get_loc (), new_content); 2138 } 2139 2140 /* Add a fixit-hint, suggesting insertion of NEW_CONTENT 2141 immediately before the start of WHERE. */ 2142 2143 void 2144 rich_location::add_fixit_insert_before (location_t where, 2145 const char *new_content) 2146 { 2147 location_t start = get_range_from_loc (m_line_table, where).m_start; 2148 maybe_add_fixit (start, start, new_content); 2149 } 2150 2151 /* Add a fixit-hint, suggesting insertion of NEW_CONTENT 2152 immediately after the primary range's end-point. */ 2153 2154 void 2155 rich_location::add_fixit_insert_after (const char *new_content) 2156 { 2157 add_fixit_insert_after (get_loc (), new_content); 2158 } 2159 2160 /* Add a fixit-hint, suggesting insertion of NEW_CONTENT 2161 immediately after the end-point of WHERE. */ 2162 2163 void 2164 rich_location::add_fixit_insert_after (location_t where, 2165 const char *new_content) 2166 { 2167 location_t finish = get_range_from_loc (m_line_table, where).m_finish; 2168 location_t next_loc 2169 = linemap_position_for_loc_and_offset (m_line_table, finish, 1); 2170 2171 /* linemap_position_for_loc_and_offset can fail, if so, it returns 2172 its input value. */ 2173 if (next_loc == finish) 2174 { 2175 stop_supporting_fixits (); 2176 return; 2177 } 2178 2179 maybe_add_fixit (next_loc, next_loc, new_content); 2180 } 2181 2182 /* Methods for adding removal fix-it hints. */ 2183 2184 /* Add a fixit-hint, suggesting removal of the content covered 2185 by range 0. */ 2186 2187 void 2188 rich_location::add_fixit_remove () 2189 { 2190 add_fixit_remove (get_loc ()); 2191 } 2192 2193 /* Add a fixit-hint, suggesting removal of the content between 2194 the start and finish of WHERE. */ 2195 2196 void 2197 rich_location::add_fixit_remove (location_t where) 2198 { 2199 source_range range = get_range_from_loc (m_line_table, where); 2200 add_fixit_remove (range); 2201 } 2202 2203 /* Add a fixit-hint, suggesting removal of the content at 2204 SRC_RANGE. */ 2205 2206 void 2207 rich_location::add_fixit_remove (source_range src_range) 2208 { 2209 add_fixit_replace (src_range, ""); 2210 } 2211 2212 /* Add a fixit-hint, suggesting replacement of the content covered 2213 by range 0 with NEW_CONTENT. */ 2214 2215 void 2216 rich_location::add_fixit_replace (const char *new_content) 2217 { 2218 add_fixit_replace (get_loc (), new_content); 2219 } 2220 2221 /* Methods for adding "replace" fix-it hints. */ 2222 2223 /* Add a fixit-hint, suggesting replacement of the content between 2224 the start and finish of WHERE with NEW_CONTENT. */ 2225 2226 void 2227 rich_location::add_fixit_replace (location_t where, 2228 const char *new_content) 2229 { 2230 source_range range = get_range_from_loc (m_line_table, where); 2231 add_fixit_replace (range, new_content); 2232 } 2233 2234 /* Add a fixit-hint, suggesting replacement of the content at 2235 SRC_RANGE with NEW_CONTENT. */ 2236 2237 void 2238 rich_location::add_fixit_replace (source_range src_range, 2239 const char *new_content) 2240 { 2241 location_t start = get_pure_location (m_line_table, src_range.m_start); 2242 location_t finish = get_pure_location (m_line_table, src_range.m_finish); 2243 2244 /* Fix-it hints use half-closed ranges, so attempt to offset the endpoint. */ 2245 location_t next_loc 2246 = linemap_position_for_loc_and_offset (m_line_table, finish, 1); 2247 /* linemap_position_for_loc_and_offset can fail, if so, it returns 2248 its input value. */ 2249 if (next_loc == finish) 2250 { 2251 stop_supporting_fixits (); 2252 return; 2253 } 2254 finish = next_loc; 2255 2256 maybe_add_fixit (start, finish, new_content); 2257 } 2258 2259 /* Get the last fix-it hint within this rich_location, or NULL if none. */ 2260 2261 fixit_hint * 2262 rich_location::get_last_fixit_hint () const 2263 { 2264 if (m_fixit_hints.count () > 0) 2265 return get_fixit_hint (m_fixit_hints.count () - 1); 2266 else 2267 return NULL; 2268 } 2269 2270 /* If WHERE is an "awkward" location, then mark this rich_location as not 2271 supporting fixits, purging any thay were already added, and return true. 2272 2273 Otherwise (the common case), return false. */ 2274 2275 bool 2276 rich_location::reject_impossible_fixit (location_t where) 2277 { 2278 /* Fix-its within a rich_location should either all be suggested, or 2279 none of them should be suggested. 2280 Once we've rejected a fixit, we reject any more, even those 2281 with reasonable locations. */ 2282 if (m_seen_impossible_fixit) 2283 return true; 2284 2285 if (where <= LINE_MAP_MAX_LOCATION_WITH_COLS) 2286 /* WHERE is a reasonable location for a fix-it; don't reject it. */ 2287 return false; 2288 2289 /* Otherwise we have an attempt to add a fix-it with an "awkward" 2290 location: either one that we can't obtain column information 2291 for (within an ordinary map), or one within a macro expansion. */ 2292 stop_supporting_fixits (); 2293 return true; 2294 } 2295 2296 /* Mark this rich_location as not supporting fixits, purging any that were 2297 already added. */ 2298 2299 void 2300 rich_location::stop_supporting_fixits () 2301 { 2302 m_seen_impossible_fixit = true; 2303 2304 /* Purge the rich_location of any fix-its that were already added. */ 2305 for (unsigned int i = 0; i < m_fixit_hints.count (); i++) 2306 delete get_fixit_hint (i); 2307 m_fixit_hints.truncate (0); 2308 } 2309 2310 /* Add HINT to the fix-it hints in this rich_location, 2311 consolidating into the prior fixit if possible. */ 2312 2313 void 2314 rich_location::maybe_add_fixit (location_t start, 2315 location_t next_loc, 2316 const char *new_content) 2317 { 2318 if (reject_impossible_fixit (start)) 2319 return; 2320 if (reject_impossible_fixit (next_loc)) 2321 return; 2322 2323 /* Only allow fix-it hints that affect a single line in one file. 2324 Compare the end-points. */ 2325 expanded_location exploc_start 2326 = linemap_client_expand_location_to_spelling_point (start, 2327 LOCATION_ASPECT_START); 2328 expanded_location exploc_next_loc 2329 = linemap_client_expand_location_to_spelling_point (next_loc, 2330 LOCATION_ASPECT_START); 2331 /* They must be within the same file... */ 2332 if (exploc_start.file != exploc_next_loc.file) 2333 { 2334 stop_supporting_fixits (); 2335 return; 2336 } 2337 /* ...and on the same line. */ 2338 if (exploc_start.line != exploc_next_loc.line) 2339 { 2340 stop_supporting_fixits (); 2341 return; 2342 } 2343 /* The columns must be in the correct order. This can fail if the 2344 endpoints straddle the boundary for which the linemap can represent 2345 columns (PR c/82050). */ 2346 if (exploc_start.column > exploc_next_loc.column) 2347 { 2348 stop_supporting_fixits (); 2349 return; 2350 } 2351 2352 const char *newline = strchr (new_content, '\n'); 2353 if (newline) 2354 { 2355 /* For now, we can only support insertion of whole lines 2356 i.e. starts at start of line, and the newline is at the end of 2357 the insertion point. */ 2358 2359 /* It must be an insertion, not a replacement/deletion. */ 2360 if (start != next_loc) 2361 { 2362 stop_supporting_fixits (); 2363 return; 2364 } 2365 2366 /* The insertion must be at the start of a line. */ 2367 if (exploc_start.column != 1) 2368 { 2369 stop_supporting_fixits (); 2370 return; 2371 } 2372 2373 /* The newline must be at end of NEW_CONTENT. 2374 We could eventually split up fix-its at newlines if we wanted 2375 to allow more generality (e.g. to allow adding multiple lines 2376 with one add_fixit call. */ 2377 if (newline[1] != '\0') 2378 { 2379 stop_supporting_fixits (); 2380 return; 2381 } 2382 } 2383 2384 /* Consolidate neighboring fixits. 2385 Don't consolidate into newline-insertion fixits. */ 2386 fixit_hint *prev = get_last_fixit_hint (); 2387 if (prev && !prev->ends_with_newline_p ()) 2388 if (prev->maybe_append (start, next_loc, new_content)) 2389 return; 2390 2391 m_fixit_hints.push (new fixit_hint (start, next_loc, new_content)); 2392 } 2393 2394 /* class fixit_hint. */ 2395 2396 fixit_hint::fixit_hint (location_t start, 2397 location_t next_loc, 2398 const char *new_content) 2399 : m_start (start), 2400 m_next_loc (next_loc), 2401 m_bytes (xstrdup (new_content)), 2402 m_len (strlen (new_content)) 2403 { 2404 } 2405 2406 /* Does this fix-it hint affect the given line? */ 2407 2408 bool 2409 fixit_hint::affects_line_p (const char *file, int line) const 2410 { 2411 expanded_location exploc_start 2412 = linemap_client_expand_location_to_spelling_point (m_start, 2413 LOCATION_ASPECT_START); 2414 if (file != exploc_start.file) 2415 return false; 2416 if (line < exploc_start.line) 2417 return false; 2418 expanded_location exploc_next_loc 2419 = linemap_client_expand_location_to_spelling_point (m_next_loc, 2420 LOCATION_ASPECT_START); 2421 if (file != exploc_next_loc.file) 2422 return false; 2423 if (line > exploc_next_loc.line) 2424 return false; 2425 return true; 2426 } 2427 2428 /* Method for consolidating fix-it hints, for use by 2429 rich_location::maybe_add_fixit. 2430 If possible, merge a pending fix-it hint with the given params 2431 into this one and return true. 2432 Otherwise return false. */ 2433 2434 bool 2435 fixit_hint::maybe_append (location_t start, 2436 location_t next_loc, 2437 const char *new_content) 2438 { 2439 /* For consolidation to be possible, START must be at this hint's 2440 m_next_loc. */ 2441 if (start != m_next_loc) 2442 return false; 2443 2444 /* If so, we have neighboring replacements; merge them. */ 2445 m_next_loc = next_loc; 2446 size_t extra_len = strlen (new_content); 2447 m_bytes = (char *)xrealloc (m_bytes, m_len + extra_len + 1); 2448 memcpy (m_bytes + m_len, new_content, extra_len); 2449 m_len += extra_len; 2450 m_bytes[m_len] = '\0'; 2451 return true; 2452 } 2453 2454 /* Return true iff this hint's content ends with a newline. */ 2455 2456 bool 2457 fixit_hint::ends_with_newline_p () const 2458 { 2459 if (m_len == 0) 2460 return false; 2461 return m_bytes[m_len - 1] == '\n'; 2462 } 2463