1 /* Partial symbol tables. 2 3 Copyright (C) 2009-2017 Free Software Foundation, Inc. 4 5 This file is part of GDB. 6 7 This program is free software; you can redistribute it and/or modify 8 it under the terms of the GNU General Public License as published by 9 the Free Software Foundation; either version 3 of the License, or 10 (at your option) any later version. 11 12 This program is distributed in the hope that it will be useful, 13 but WITHOUT ANY WARRANTY; without even the implied warranty of 14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 GNU General Public License for more details. 16 17 You should have received a copy of the GNU General Public License 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */ 19 20 #include "defs.h" 21 #include "symtab.h" 22 #include "psympriv.h" 23 #include "objfiles.h" 24 #include "block.h" 25 #include "filenames.h" 26 #include "source.h" 27 #include "addrmap.h" 28 #include "gdbtypes.h" 29 #include "bcache.h" 30 #include "ui-out.h" 31 #include "command.h" 32 #include "readline/readline.h" 33 #include "gdb_regex.h" 34 #include "dictionary.h" 35 #include "language.h" 36 #include "cp-support.h" 37 #include "gdbcmd.h" 38 39 struct psymbol_bcache 40 { 41 struct bcache *bcache; 42 }; 43 44 static struct partial_symbol *match_partial_symbol (struct objfile *, 45 struct partial_symtab *, 46 int, 47 const char *, domain_enum, 48 symbol_compare_ftype *, 49 symbol_compare_ftype *); 50 51 static struct partial_symbol *lookup_partial_symbol (struct objfile *, 52 struct partial_symtab *, 53 const char *, int, 54 domain_enum); 55 56 static const char *psymtab_to_fullname (struct partial_symtab *ps); 57 58 static struct partial_symbol *find_pc_sect_psymbol (struct objfile *, 59 struct partial_symtab *, 60 CORE_ADDR, 61 struct obj_section *); 62 63 static void fixup_psymbol_section (struct partial_symbol *psym, 64 struct objfile *objfile); 65 66 static struct compunit_symtab *psymtab_to_symtab (struct objfile *objfile, 67 struct partial_symtab *pst); 68 69 /* Ensure that the partial symbols for OBJFILE have been loaded. This 70 function always returns its argument, as a convenience. */ 71 72 struct objfile * 73 require_partial_symbols (struct objfile *objfile, int verbose) 74 { 75 if ((objfile->flags & OBJF_PSYMTABS_READ) == 0) 76 { 77 objfile->flags |= OBJF_PSYMTABS_READ; 78 79 if (objfile->sf->sym_read_psymbols) 80 { 81 if (verbose) 82 { 83 printf_unfiltered (_("Reading symbols from %s..."), 84 objfile_name (objfile)); 85 gdb_flush (gdb_stdout); 86 } 87 (*objfile->sf->sym_read_psymbols) (objfile); 88 if (verbose) 89 { 90 if (!objfile_has_symbols (objfile)) 91 { 92 wrap_here (""); 93 printf_unfiltered (_("(no debugging symbols found)...")); 94 wrap_here (""); 95 } 96 97 printf_unfiltered (_("done.\n")); 98 } 99 } 100 } 101 102 return objfile; 103 } 104 105 /* Traverse all psymtabs in one objfile, requiring that the psymtabs 106 be read in. */ 107 108 #define ALL_OBJFILE_PSYMTABS_REQUIRED(objfile, p) \ 109 for ((p) = require_partial_symbols (objfile, 1)->psymtabs; \ 110 (p) != NULL; \ 111 (p) = (p)->next) 112 113 /* We want to make sure this file always requires psymtabs. */ 114 115 #undef ALL_OBJFILE_PSYMTABS 116 117 /* Traverse all psymtabs in all objfiles. */ 118 119 #define ALL_PSYMTABS(objfile, p) \ 120 ALL_OBJFILES (objfile) \ 121 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, p) 122 123 /* Helper function for psym_map_symtabs_matching_filename that 124 expands the symtabs and calls the iterator. */ 125 126 static bool 127 partial_map_expand_apply (struct objfile *objfile, 128 const char *name, 129 const char *real_path, 130 struct partial_symtab *pst, 131 gdb::function_view<bool (symtab *)> callback) 132 { 133 struct compunit_symtab *last_made = objfile->compunit_symtabs; 134 135 /* Shared psymtabs should never be seen here. Instead they should 136 be handled properly by the caller. */ 137 gdb_assert (pst->user == NULL); 138 139 /* Don't visit already-expanded psymtabs. */ 140 if (pst->readin) 141 return 0; 142 143 /* This may expand more than one symtab, and we want to iterate over 144 all of them. */ 145 psymtab_to_symtab (objfile, pst); 146 147 return iterate_over_some_symtabs (name, real_path, objfile->compunit_symtabs, 148 last_made, callback); 149 } 150 151 /* Psymtab version of map_symtabs_matching_filename. See its definition in 152 the definition of quick_symbol_functions in symfile.h. */ 153 154 static bool 155 psym_map_symtabs_matching_filename 156 (struct objfile *objfile, 157 const char *name, 158 const char *real_path, 159 gdb::function_view<bool (symtab *)> callback) 160 { 161 struct partial_symtab *pst; 162 const char *name_basename = lbasename (name); 163 164 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, pst) 165 { 166 /* We can skip shared psymtabs here, because any file name will be 167 attached to the unshared psymtab. */ 168 if (pst->user != NULL) 169 continue; 170 171 /* Anonymous psymtabs don't have a file name. */ 172 if (pst->anonymous) 173 continue; 174 175 if (compare_filenames_for_search (pst->filename, name)) 176 { 177 if (partial_map_expand_apply (objfile, name, real_path, 178 pst, callback)) 179 return true; 180 continue; 181 } 182 183 /* Before we invoke realpath, which can get expensive when many 184 files are involved, do a quick comparison of the basenames. */ 185 if (! basenames_may_differ 186 && FILENAME_CMP (name_basename, lbasename (pst->filename)) != 0) 187 continue; 188 189 if (compare_filenames_for_search (psymtab_to_fullname (pst), name)) 190 { 191 if (partial_map_expand_apply (objfile, name, real_path, 192 pst, callback)) 193 return true; 194 continue; 195 } 196 197 /* If the user gave us an absolute path, try to find the file in 198 this symtab and use its absolute path. */ 199 if (real_path != NULL) 200 { 201 gdb_assert (IS_ABSOLUTE_PATH (real_path)); 202 gdb_assert (IS_ABSOLUTE_PATH (name)); 203 if (filename_cmp (psymtab_to_fullname (pst), real_path) == 0) 204 { 205 if (partial_map_expand_apply (objfile, name, real_path, 206 pst, callback)) 207 return true; 208 continue; 209 } 210 } 211 } 212 213 return false; 214 } 215 216 /* Find which partial symtab contains PC and SECTION starting at psymtab PST. 217 We may find a different psymtab than PST. See FIND_PC_SECT_PSYMTAB. */ 218 219 static struct partial_symtab * 220 find_pc_sect_psymtab_closer (struct objfile *objfile, 221 CORE_ADDR pc, struct obj_section *section, 222 struct partial_symtab *pst, 223 struct bound_minimal_symbol msymbol) 224 { 225 struct partial_symtab *tpst; 226 struct partial_symtab *best_pst = pst; 227 CORE_ADDR best_addr = pst->textlow; 228 229 gdb_assert (!pst->psymtabs_addrmap_supported); 230 231 /* An objfile that has its functions reordered might have 232 many partial symbol tables containing the PC, but 233 we want the partial symbol table that contains the 234 function containing the PC. */ 235 if (!(objfile->flags & OBJF_REORDERED) 236 && section == NULL) /* Can't validate section this way. */ 237 return pst; 238 239 if (msymbol.minsym == NULL) 240 return pst; 241 242 /* The code range of partial symtabs sometimes overlap, so, in 243 the loop below, we need to check all partial symtabs and 244 find the one that fits better for the given PC address. We 245 select the partial symtab that contains a symbol whose 246 address is closest to the PC address. By closest we mean 247 that find_pc_sect_symbol returns the symbol with address 248 that is closest and still less than the given PC. */ 249 for (tpst = pst; tpst != NULL; tpst = tpst->next) 250 { 251 if (pc >= tpst->textlow && pc < tpst->texthigh) 252 { 253 struct partial_symbol *p; 254 CORE_ADDR this_addr; 255 256 /* NOTE: This assumes that every psymbol has a 257 corresponding msymbol, which is not necessarily 258 true; the debug info might be much richer than the 259 object's symbol table. */ 260 p = find_pc_sect_psymbol (objfile, tpst, pc, section); 261 if (p != NULL 262 && (SYMBOL_VALUE_ADDRESS (p) 263 == BMSYMBOL_VALUE_ADDRESS (msymbol))) 264 return tpst; 265 266 /* Also accept the textlow value of a psymtab as a 267 "symbol", to provide some support for partial 268 symbol tables with line information but no debug 269 symbols (e.g. those produced by an assembler). */ 270 if (p != NULL) 271 this_addr = SYMBOL_VALUE_ADDRESS (p); 272 else 273 this_addr = tpst->textlow; 274 275 /* Check whether it is closer than our current 276 BEST_ADDR. Since this symbol address is 277 necessarily lower or equal to PC, the symbol closer 278 to PC is the symbol which address is the highest. 279 This way we return the psymtab which contains such 280 best match symbol. This can help in cases where the 281 symbol information/debuginfo is not complete, like 282 for instance on IRIX6 with gcc, where no debug info 283 is emitted for statics. (See also the nodebug.exp 284 testcase.) */ 285 if (this_addr > best_addr) 286 { 287 best_addr = this_addr; 288 best_pst = tpst; 289 } 290 } 291 } 292 return best_pst; 293 } 294 295 /* Find which partial symtab contains PC and SECTION. Return NULL if 296 none. We return the psymtab that contains a symbol whose address 297 exactly matches PC, or, if we cannot find an exact match, the 298 psymtab that contains a symbol whose address is closest to PC. */ 299 300 static struct partial_symtab * 301 find_pc_sect_psymtab (struct objfile *objfile, CORE_ADDR pc, 302 struct obj_section *section, 303 struct bound_minimal_symbol msymbol) 304 { 305 struct partial_symtab *pst; 306 307 /* Try just the PSYMTABS_ADDRMAP mapping first as it has better granularity 308 than the later used TEXTLOW/TEXTHIGH one. */ 309 310 if (objfile->psymtabs_addrmap != NULL) 311 { 312 pst = ((struct partial_symtab *) 313 addrmap_find (objfile->psymtabs_addrmap, pc)); 314 if (pst != NULL) 315 { 316 /* FIXME: addrmaps currently do not handle overlayed sections, 317 so fall back to the non-addrmap case if we're debugging 318 overlays and the addrmap returned the wrong section. */ 319 if (overlay_debugging && msymbol.minsym != NULL && section != NULL) 320 { 321 struct partial_symbol *p; 322 323 /* NOTE: This assumes that every psymbol has a 324 corresponding msymbol, which is not necessarily 325 true; the debug info might be much richer than the 326 object's symbol table. */ 327 p = find_pc_sect_psymbol (objfile, pst, pc, section); 328 if (p == NULL 329 || (SYMBOL_VALUE_ADDRESS (p) 330 != BMSYMBOL_VALUE_ADDRESS (msymbol))) 331 goto next; 332 } 333 334 /* We do not try to call FIND_PC_SECT_PSYMTAB_CLOSER as 335 PSYMTABS_ADDRMAP we used has already the best 1-byte 336 granularity and FIND_PC_SECT_PSYMTAB_CLOSER may mislead us into 337 a worse chosen section due to the TEXTLOW/TEXTHIGH ranges 338 overlap. */ 339 340 return pst; 341 } 342 } 343 344 next: 345 346 /* Existing PSYMTABS_ADDRMAP mapping is present even for PARTIAL_SYMTABs 347 which still have no corresponding full SYMTABs read. But it is not 348 present for non-DWARF2 debug infos not supporting PSYMTABS_ADDRMAP in GDB 349 so far. */ 350 351 /* Check even OBJFILE with non-zero PSYMTABS_ADDRMAP as only several of 352 its CUs may be missing in PSYMTABS_ADDRMAP as they may be varying 353 debug info type in single OBJFILE. */ 354 355 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, pst) 356 if (!pst->psymtabs_addrmap_supported 357 && pc >= pst->textlow && pc < pst->texthigh) 358 { 359 struct partial_symtab *best_pst; 360 361 best_pst = find_pc_sect_psymtab_closer (objfile, pc, section, pst, 362 msymbol); 363 if (best_pst != NULL) 364 return best_pst; 365 } 366 367 return NULL; 368 } 369 370 /* Psymtab version of find_pc_sect_compunit_symtab. See its definition in 371 the definition of quick_symbol_functions in symfile.h. */ 372 373 static struct compunit_symtab * 374 psym_find_pc_sect_compunit_symtab (struct objfile *objfile, 375 struct bound_minimal_symbol msymbol, 376 CORE_ADDR pc, 377 struct obj_section *section, 378 int warn_if_readin) 379 { 380 struct partial_symtab *ps = find_pc_sect_psymtab (objfile, pc, section, 381 msymbol); 382 if (ps != NULL) 383 { 384 if (warn_if_readin && ps->readin) 385 /* Might want to error() here (in case symtab is corrupt and 386 will cause a core dump), but maybe we can successfully 387 continue, so let's not. */ 388 warning (_("\ 389 (Internal error: pc %s in read in psymtab, but not in symtab.)\n"), 390 paddress (get_objfile_arch (objfile), pc)); 391 psymtab_to_symtab (objfile, ps); 392 return ps->compunit_symtab; 393 } 394 return NULL; 395 } 396 397 /* Find which partial symbol within a psymtab matches PC and SECTION. 398 Return NULL if none. */ 399 400 static struct partial_symbol * 401 find_pc_sect_psymbol (struct objfile *objfile, 402 struct partial_symtab *psymtab, CORE_ADDR pc, 403 struct obj_section *section) 404 { 405 struct partial_symbol *best = NULL, *p, **pp; 406 CORE_ADDR best_pc; 407 408 gdb_assert (psymtab != NULL); 409 410 /* Cope with programs that start at address 0. */ 411 best_pc = (psymtab->textlow != 0) ? psymtab->textlow - 1 : 0; 412 413 /* Search the global symbols as well as the static symbols, so that 414 find_pc_partial_function doesn't use a minimal symbol and thus 415 cache a bad endaddr. */ 416 for (pp = objfile->global_psymbols.list + psymtab->globals_offset; 417 (pp - (objfile->global_psymbols.list + psymtab->globals_offset) 418 < psymtab->n_global_syms); 419 pp++) 420 { 421 p = *pp; 422 if (SYMBOL_DOMAIN (p) == VAR_DOMAIN 423 && PSYMBOL_CLASS (p) == LOC_BLOCK 424 && pc >= SYMBOL_VALUE_ADDRESS (p) 425 && (SYMBOL_VALUE_ADDRESS (p) > best_pc 426 || (psymtab->textlow == 0 427 && best_pc == 0 && SYMBOL_VALUE_ADDRESS (p) == 0))) 428 { 429 if (section != NULL) /* Match on a specific section. */ 430 { 431 fixup_psymbol_section (p, objfile); 432 if (!matching_obj_sections (SYMBOL_OBJ_SECTION (objfile, p), 433 section)) 434 continue; 435 } 436 best_pc = SYMBOL_VALUE_ADDRESS (p); 437 best = p; 438 } 439 } 440 441 for (pp = objfile->static_psymbols.list + psymtab->statics_offset; 442 (pp - (objfile->static_psymbols.list + psymtab->statics_offset) 443 < psymtab->n_static_syms); 444 pp++) 445 { 446 p = *pp; 447 if (SYMBOL_DOMAIN (p) == VAR_DOMAIN 448 && PSYMBOL_CLASS (p) == LOC_BLOCK 449 && pc >= SYMBOL_VALUE_ADDRESS (p) 450 && (SYMBOL_VALUE_ADDRESS (p) > best_pc 451 || (psymtab->textlow == 0 452 && best_pc == 0 && SYMBOL_VALUE_ADDRESS (p) == 0))) 453 { 454 if (section != NULL) /* Match on a specific section. */ 455 { 456 fixup_psymbol_section (p, objfile); 457 if (!matching_obj_sections (SYMBOL_OBJ_SECTION (objfile, p), 458 section)) 459 continue; 460 } 461 best_pc = SYMBOL_VALUE_ADDRESS (p); 462 best = p; 463 } 464 } 465 466 return best; 467 } 468 469 static void 470 fixup_psymbol_section (struct partial_symbol *psym, struct objfile *objfile) 471 { 472 CORE_ADDR addr; 473 474 if (psym == NULL) 475 return; 476 477 if (SYMBOL_SECTION (psym) >= 0) 478 return; 479 480 gdb_assert (objfile); 481 482 switch (PSYMBOL_CLASS (psym)) 483 { 484 case LOC_STATIC: 485 case LOC_LABEL: 486 case LOC_BLOCK: 487 addr = SYMBOL_VALUE_ADDRESS (psym); 488 break; 489 default: 490 /* Nothing else will be listed in the minsyms -- no use looking 491 it up. */ 492 return; 493 } 494 495 fixup_section (&psym->ginfo, addr, objfile); 496 } 497 498 /* Psymtab version of lookup_symbol. See its definition in 499 the definition of quick_symbol_functions in symfile.h. */ 500 501 static struct compunit_symtab * 502 psym_lookup_symbol (struct objfile *objfile, 503 int block_index, const char *name, 504 const domain_enum domain) 505 { 506 struct partial_symtab *ps; 507 const int psymtab_index = (block_index == GLOBAL_BLOCK ? 1 : 0); 508 struct compunit_symtab *stab_best = NULL; 509 510 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 511 { 512 if (!ps->readin && lookup_partial_symbol (objfile, ps, name, 513 psymtab_index, domain)) 514 { 515 struct symbol *sym, *with_opaque = NULL; 516 struct compunit_symtab *stab = psymtab_to_symtab (objfile, ps); 517 /* Note: While psymtab_to_symtab can return NULL if the partial symtab 518 is empty, we can assume it won't here because lookup_partial_symbol 519 succeeded. */ 520 const struct blockvector *bv = COMPUNIT_BLOCKVECTOR (stab); 521 struct block *block = BLOCKVECTOR_BLOCK (bv, block_index); 522 523 sym = block_find_symbol (block, name, domain, 524 block_find_non_opaque_type_preferred, 525 &with_opaque); 526 527 /* Some caution must be observed with overloaded functions 528 and methods, since the index will not contain any overload 529 information (but NAME might contain it). */ 530 531 if (sym != NULL 532 && strcmp_iw (SYMBOL_SEARCH_NAME (sym), name) == 0) 533 return stab; 534 if (with_opaque != NULL 535 && strcmp_iw (SYMBOL_SEARCH_NAME (with_opaque), name) == 0) 536 stab_best = stab; 537 538 /* Keep looking through other psymtabs. */ 539 } 540 } 541 542 return stab_best; 543 } 544 545 /* Look in PST for a symbol in DOMAIN whose name matches NAME. Search 546 the global block of PST if GLOBAL, and otherwise the static block. 547 MATCH is the comparison operation that returns true iff MATCH (s, 548 NAME), where s is a SYMBOL_SEARCH_NAME. If ORDERED_COMPARE is 549 non-null, the symbols in the block are assumed to be ordered 550 according to it (allowing binary search). It must be compatible 551 with MATCH. Returns the symbol, if found, and otherwise NULL. */ 552 553 static struct partial_symbol * 554 match_partial_symbol (struct objfile *objfile, 555 struct partial_symtab *pst, int global, 556 const char *name, domain_enum domain, 557 symbol_compare_ftype *match, 558 symbol_compare_ftype *ordered_compare) 559 { 560 struct partial_symbol **start, **psym; 561 struct partial_symbol **top, **real_top, **bottom, **center; 562 int length = (global ? pst->n_global_syms : pst->n_static_syms); 563 int do_linear_search = 1; 564 565 if (length == 0) 566 return NULL; 567 start = (global ? 568 objfile->global_psymbols.list + pst->globals_offset : 569 objfile->static_psymbols.list + pst->statics_offset); 570 571 if (global && ordered_compare) /* Can use a binary search. */ 572 { 573 do_linear_search = 0; 574 575 /* Binary search. This search is guaranteed to end with center 576 pointing at the earliest partial symbol whose name might be 577 correct. At that point *all* partial symbols with an 578 appropriate name will be checked against the correct 579 domain. */ 580 581 bottom = start; 582 top = start + length - 1; 583 real_top = top; 584 while (top > bottom) 585 { 586 center = bottom + (top - bottom) / 2; 587 gdb_assert (center < top); 588 if (ordered_compare (SYMBOL_SEARCH_NAME (*center), name) >= 0) 589 top = center; 590 else 591 bottom = center + 1; 592 } 593 gdb_assert (top == bottom); 594 595 while (top <= real_top 596 && match (SYMBOL_SEARCH_NAME (*top), name) == 0) 597 { 598 if (symbol_matches_domain (SYMBOL_LANGUAGE (*top), 599 SYMBOL_DOMAIN (*top), domain)) 600 return *top; 601 top++; 602 } 603 } 604 605 /* Can't use a binary search or else we found during the binary search that 606 we should also do a linear search. */ 607 608 if (do_linear_search) 609 { 610 for (psym = start; psym < start + length; psym++) 611 { 612 if (symbol_matches_domain (SYMBOL_LANGUAGE (*psym), 613 SYMBOL_DOMAIN (*psym), domain) 614 && match (SYMBOL_SEARCH_NAME (*psym), name) == 0) 615 return *psym; 616 } 617 } 618 619 return NULL; 620 } 621 622 /* Returns the name used to search psymtabs. Unlike symtabs, psymtabs do 623 not contain any method/function instance information (since this would 624 force reading type information while reading psymtabs). Therefore, 625 if NAME contains overload information, it must be stripped before searching 626 psymtabs. 627 628 The caller is responsible for freeing the return result. */ 629 630 static char * 631 psymtab_search_name (const char *name) 632 { 633 switch (current_language->la_language) 634 { 635 case language_cplus: 636 { 637 if (strchr (name, '(')) 638 { 639 char *ret = cp_remove_params (name); 640 641 if (ret) 642 return ret; 643 } 644 } 645 break; 646 647 default: 648 break; 649 } 650 651 return xstrdup (name); 652 } 653 654 /* Look, in partial_symtab PST, for symbol whose natural name is NAME. 655 Check the global symbols if GLOBAL, the static symbols if not. */ 656 657 static struct partial_symbol * 658 lookup_partial_symbol (struct objfile *objfile, 659 struct partial_symtab *pst, const char *name, 660 int global, domain_enum domain) 661 { 662 struct partial_symbol **start, **psym; 663 struct partial_symbol **top, **real_top, **bottom, **center; 664 int length = (global ? pst->n_global_syms : pst->n_static_syms); 665 int do_linear_search = 1; 666 char *search_name; 667 struct cleanup *cleanup; 668 669 if (length == 0) 670 return NULL; 671 672 search_name = psymtab_search_name (name); 673 cleanup = make_cleanup (xfree, search_name); 674 start = (global ? 675 objfile->global_psymbols.list + pst->globals_offset : 676 objfile->static_psymbols.list + pst->statics_offset); 677 678 if (global) /* This means we can use a binary search. */ 679 { 680 do_linear_search = 0; 681 682 /* Binary search. This search is guaranteed to end with center 683 pointing at the earliest partial symbol whose name might be 684 correct. At that point *all* partial symbols with an 685 appropriate name will be checked against the correct 686 domain. */ 687 688 bottom = start; 689 top = start + length - 1; 690 real_top = top; 691 while (top > bottom) 692 { 693 center = bottom + (top - bottom) / 2; 694 if (!(center < top)) 695 internal_error (__FILE__, __LINE__, 696 _("failed internal consistency check")); 697 if (strcmp_iw_ordered (SYMBOL_SEARCH_NAME (*center), 698 search_name) >= 0) 699 { 700 top = center; 701 } 702 else 703 { 704 bottom = center + 1; 705 } 706 } 707 if (!(top == bottom)) 708 internal_error (__FILE__, __LINE__, 709 _("failed internal consistency check")); 710 711 /* For `case_sensitivity == case_sensitive_off' strcmp_iw_ordered will 712 search more exactly than what matches SYMBOL_MATCHES_SEARCH_NAME. */ 713 while (top >= start && SYMBOL_MATCHES_SEARCH_NAME (*top, search_name)) 714 top--; 715 716 /* Fixup to have a symbol which matches SYMBOL_MATCHES_SEARCH_NAME. */ 717 top++; 718 719 while (top <= real_top && SYMBOL_MATCHES_SEARCH_NAME (*top, search_name)) 720 { 721 if (symbol_matches_domain (SYMBOL_LANGUAGE (*top), 722 SYMBOL_DOMAIN (*top), domain)) 723 { 724 do_cleanups (cleanup); 725 return *top; 726 } 727 top++; 728 } 729 } 730 731 /* Can't use a binary search or else we found during the binary search that 732 we should also do a linear search. */ 733 734 if (do_linear_search) 735 { 736 for (psym = start; psym < start + length; psym++) 737 { 738 if (symbol_matches_domain (SYMBOL_LANGUAGE (*psym), 739 SYMBOL_DOMAIN (*psym), domain) 740 && SYMBOL_MATCHES_SEARCH_NAME (*psym, search_name)) 741 { 742 do_cleanups (cleanup); 743 return *psym; 744 } 745 } 746 } 747 748 do_cleanups (cleanup); 749 return NULL; 750 } 751 752 /* Get the symbol table that corresponds to a partial_symtab. 753 This is fast after the first time you do it. 754 The result will be NULL if the primary symtab has no symbols, 755 which can happen. Otherwise the result is the primary symtab 756 that contains PST. */ 757 758 static struct compunit_symtab * 759 psymtab_to_symtab (struct objfile *objfile, struct partial_symtab *pst) 760 { 761 /* If it is a shared psymtab, find an unshared psymtab that includes 762 it. Any such psymtab will do. */ 763 while (pst->user != NULL) 764 pst = pst->user; 765 766 /* If it's been looked up before, return it. */ 767 if (pst->compunit_symtab) 768 return pst->compunit_symtab; 769 770 /* If it has not yet been read in, read it. */ 771 if (!pst->readin) 772 { 773 scoped_restore decrementer = increment_reading_symtab (); 774 775 (*pst->read_symtab) (pst, objfile); 776 } 777 778 return pst->compunit_symtab; 779 } 780 781 /* Psymtab version of relocate. See its definition in 782 the definition of quick_symbol_functions in symfile.h. */ 783 784 static void 785 psym_relocate (struct objfile *objfile, 786 const struct section_offsets *new_offsets, 787 const struct section_offsets *delta) 788 { 789 struct partial_symbol **psym; 790 struct partial_symtab *p; 791 792 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, p) 793 { 794 p->textlow += ANOFFSET (delta, SECT_OFF_TEXT (objfile)); 795 p->texthigh += ANOFFSET (delta, SECT_OFF_TEXT (objfile)); 796 } 797 798 for (psym = objfile->global_psymbols.list; 799 psym < objfile->global_psymbols.next; 800 psym++) 801 { 802 fixup_psymbol_section (*psym, objfile); 803 if (SYMBOL_SECTION (*psym) >= 0) 804 SYMBOL_VALUE_ADDRESS (*psym) += ANOFFSET (delta, 805 SYMBOL_SECTION (*psym)); 806 } 807 for (psym = objfile->static_psymbols.list; 808 psym < objfile->static_psymbols.next; 809 psym++) 810 { 811 fixup_psymbol_section (*psym, objfile); 812 if (SYMBOL_SECTION (*psym) >= 0) 813 SYMBOL_VALUE_ADDRESS (*psym) += ANOFFSET (delta, 814 SYMBOL_SECTION (*psym)); 815 } 816 } 817 818 /* Psymtab version of find_last_source_symtab. See its definition in 819 the definition of quick_symbol_functions in symfile.h. */ 820 821 static struct symtab * 822 psym_find_last_source_symtab (struct objfile *ofp) 823 { 824 struct partial_symtab *ps; 825 struct partial_symtab *cs_pst = NULL; 826 827 ALL_OBJFILE_PSYMTABS_REQUIRED (ofp, ps) 828 { 829 const char *name = ps->filename; 830 int len = strlen (name); 831 832 if (!(len > 2 && (strcmp (&name[len - 2], ".h") == 0 833 || strcmp (name, "<<C++-namespaces>>") == 0))) 834 cs_pst = ps; 835 } 836 837 if (cs_pst) 838 { 839 if (cs_pst->readin) 840 { 841 internal_error (__FILE__, __LINE__, 842 _("select_source_symtab: " 843 "readin pst found and no symtabs.")); 844 } 845 else 846 { 847 struct compunit_symtab *cust = psymtab_to_symtab (ofp, cs_pst); 848 849 if (cust == NULL) 850 return NULL; 851 return compunit_primary_filetab (cust); 852 } 853 } 854 return NULL; 855 } 856 857 /* Psymtab version of forget_cached_source_info. See its definition in 858 the definition of quick_symbol_functions in symfile.h. */ 859 860 static void 861 psym_forget_cached_source_info (struct objfile *objfile) 862 { 863 struct partial_symtab *pst; 864 865 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, pst) 866 { 867 if (pst->fullname != NULL) 868 { 869 xfree (pst->fullname); 870 pst->fullname = NULL; 871 } 872 } 873 } 874 875 static void 876 print_partial_symbols (struct gdbarch *gdbarch, 877 struct partial_symbol **p, int count, const char *what, 878 struct ui_file *outfile) 879 { 880 fprintf_filtered (outfile, " %s partial symbols:\n", what); 881 while (count-- > 0) 882 { 883 QUIT; 884 fprintf_filtered (outfile, " `%s'", SYMBOL_LINKAGE_NAME (*p)); 885 if (SYMBOL_DEMANGLED_NAME (*p) != NULL) 886 { 887 fprintf_filtered (outfile, " `%s'", SYMBOL_DEMANGLED_NAME (*p)); 888 } 889 fputs_filtered (", ", outfile); 890 switch (SYMBOL_DOMAIN (*p)) 891 { 892 case UNDEF_DOMAIN: 893 fputs_filtered ("undefined domain, ", outfile); 894 break; 895 case VAR_DOMAIN: 896 /* This is the usual thing -- don't print it. */ 897 break; 898 case STRUCT_DOMAIN: 899 fputs_filtered ("struct domain, ", outfile); 900 break; 901 case LABEL_DOMAIN: 902 fputs_filtered ("label domain, ", outfile); 903 break; 904 default: 905 fputs_filtered ("<invalid domain>, ", outfile); 906 break; 907 } 908 switch (PSYMBOL_CLASS (*p)) 909 { 910 case LOC_UNDEF: 911 fputs_filtered ("undefined", outfile); 912 break; 913 case LOC_CONST: 914 fputs_filtered ("constant int", outfile); 915 break; 916 case LOC_STATIC: 917 fputs_filtered ("static", outfile); 918 break; 919 case LOC_REGISTER: 920 fputs_filtered ("register", outfile); 921 break; 922 case LOC_ARG: 923 fputs_filtered ("pass by value", outfile); 924 break; 925 case LOC_REF_ARG: 926 fputs_filtered ("pass by reference", outfile); 927 break; 928 case LOC_REGPARM_ADDR: 929 fputs_filtered ("register address parameter", outfile); 930 break; 931 case LOC_LOCAL: 932 fputs_filtered ("stack parameter", outfile); 933 break; 934 case LOC_TYPEDEF: 935 fputs_filtered ("type", outfile); 936 break; 937 case LOC_LABEL: 938 fputs_filtered ("label", outfile); 939 break; 940 case LOC_BLOCK: 941 fputs_filtered ("function", outfile); 942 break; 943 case LOC_CONST_BYTES: 944 fputs_filtered ("constant bytes", outfile); 945 break; 946 case LOC_UNRESOLVED: 947 fputs_filtered ("unresolved", outfile); 948 break; 949 case LOC_OPTIMIZED_OUT: 950 fputs_filtered ("optimized out", outfile); 951 break; 952 case LOC_COMPUTED: 953 fputs_filtered ("computed at runtime", outfile); 954 break; 955 default: 956 fputs_filtered ("<invalid location>", outfile); 957 break; 958 } 959 fputs_filtered (", ", outfile); 960 fputs_filtered (paddress (gdbarch, SYMBOL_VALUE_ADDRESS (*p)), outfile); 961 fprintf_filtered (outfile, "\n"); 962 p++; 963 } 964 } 965 966 static void 967 dump_psymtab (struct objfile *objfile, struct partial_symtab *psymtab, 968 struct ui_file *outfile) 969 { 970 struct gdbarch *gdbarch = get_objfile_arch (objfile); 971 int i; 972 973 if (psymtab->anonymous) 974 { 975 fprintf_filtered (outfile, "\nAnonymous partial symtab (%s) ", 976 psymtab->filename); 977 } 978 else 979 { 980 fprintf_filtered (outfile, "\nPartial symtab for source file %s ", 981 psymtab->filename); 982 } 983 fprintf_filtered (outfile, "(object "); 984 gdb_print_host_address (psymtab, outfile); 985 fprintf_filtered (outfile, ")\n\n"); 986 fprintf_unfiltered (outfile, " Read from object file %s (", 987 objfile_name (objfile)); 988 gdb_print_host_address (objfile, outfile); 989 fprintf_unfiltered (outfile, ")\n"); 990 991 if (psymtab->readin) 992 { 993 fprintf_filtered (outfile, 994 " Full symtab was read (at "); 995 gdb_print_host_address (psymtab->compunit_symtab, outfile); 996 fprintf_filtered (outfile, " by function at "); 997 gdb_print_host_address (psymtab->read_symtab, outfile); 998 fprintf_filtered (outfile, ")\n"); 999 } 1000 1001 fprintf_filtered (outfile, " Symbols cover text addresses "); 1002 fputs_filtered (paddress (gdbarch, psymtab->textlow), outfile); 1003 fprintf_filtered (outfile, "-"); 1004 fputs_filtered (paddress (gdbarch, psymtab->texthigh), outfile); 1005 fprintf_filtered (outfile, "\n"); 1006 fprintf_filtered (outfile, " Address map supported - %s.\n", 1007 psymtab->psymtabs_addrmap_supported ? "yes" : "no"); 1008 fprintf_filtered (outfile, " Depends on %d other partial symtabs.\n", 1009 psymtab->number_of_dependencies); 1010 for (i = 0; i < psymtab->number_of_dependencies; i++) 1011 { 1012 fprintf_filtered (outfile, " %d ", i); 1013 gdb_print_host_address (psymtab->dependencies[i], outfile); 1014 fprintf_filtered (outfile, " %s\n", 1015 psymtab->dependencies[i]->filename); 1016 } 1017 if (psymtab->user != NULL) 1018 { 1019 fprintf_filtered (outfile, " Shared partial symtab with user "); 1020 gdb_print_host_address (psymtab->user, outfile); 1021 fprintf_filtered (outfile, "\n"); 1022 } 1023 if (psymtab->n_global_syms > 0) 1024 { 1025 print_partial_symbols (gdbarch, 1026 objfile->global_psymbols.list 1027 + psymtab->globals_offset, 1028 psymtab->n_global_syms, "Global", outfile); 1029 } 1030 if (psymtab->n_static_syms > 0) 1031 { 1032 print_partial_symbols (gdbarch, 1033 objfile->static_psymbols.list 1034 + psymtab->statics_offset, 1035 psymtab->n_static_syms, "Static", outfile); 1036 } 1037 fprintf_filtered (outfile, "\n"); 1038 } 1039 1040 /* Psymtab version of print_stats. See its definition in 1041 the definition of quick_symbol_functions in symfile.h. */ 1042 1043 static void 1044 psym_print_stats (struct objfile *objfile) 1045 { 1046 int i; 1047 struct partial_symtab *ps; 1048 1049 i = 0; 1050 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1051 { 1052 if (ps->readin == 0) 1053 i++; 1054 } 1055 printf_filtered (_(" Number of psym tables (not yet expanded): %d\n"), i); 1056 } 1057 1058 /* Psymtab version of dump. See its definition in 1059 the definition of quick_symbol_functions in symfile.h. */ 1060 1061 static void 1062 psym_dump (struct objfile *objfile) 1063 { 1064 struct partial_symtab *psymtab; 1065 1066 if (objfile->psymtabs) 1067 { 1068 printf_filtered ("Psymtabs:\n"); 1069 for (psymtab = objfile->psymtabs; 1070 psymtab != NULL; 1071 psymtab = psymtab->next) 1072 { 1073 printf_filtered ("%s at ", 1074 psymtab->filename); 1075 gdb_print_host_address (psymtab, gdb_stdout); 1076 printf_filtered (", "); 1077 wrap_here (" "); 1078 } 1079 printf_filtered ("\n\n"); 1080 } 1081 } 1082 1083 /* Psymtab version of expand_symtabs_for_function. See its definition in 1084 the definition of quick_symbol_functions in symfile.h. */ 1085 1086 static void 1087 psym_expand_symtabs_for_function (struct objfile *objfile, 1088 const char *func_name) 1089 { 1090 struct partial_symtab *ps; 1091 1092 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1093 { 1094 if (ps->readin) 1095 continue; 1096 1097 if ((lookup_partial_symbol (objfile, ps, func_name, 1, VAR_DOMAIN) 1098 != NULL) 1099 || (lookup_partial_symbol (objfile, ps, func_name, 0, VAR_DOMAIN) 1100 != NULL)) 1101 psymtab_to_symtab (objfile, ps); 1102 } 1103 } 1104 1105 /* Psymtab version of expand_all_symtabs. See its definition in 1106 the definition of quick_symbol_functions in symfile.h. */ 1107 1108 static void 1109 psym_expand_all_symtabs (struct objfile *objfile) 1110 { 1111 struct partial_symtab *psymtab; 1112 1113 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, psymtab) 1114 { 1115 psymtab_to_symtab (objfile, psymtab); 1116 } 1117 } 1118 1119 /* Psymtab version of expand_symtabs_with_fullname. See its definition in 1120 the definition of quick_symbol_functions in symfile.h. */ 1121 1122 static void 1123 psym_expand_symtabs_with_fullname (struct objfile *objfile, 1124 const char *fullname) 1125 { 1126 struct partial_symtab *p; 1127 1128 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, p) 1129 { 1130 /* Anonymous psymtabs don't have a name of a source file. */ 1131 if (p->anonymous) 1132 continue; 1133 1134 /* psymtab_to_fullname tries to open the file which is slow. 1135 Don't call it if we know the basenames don't match. */ 1136 if ((basenames_may_differ 1137 || filename_cmp (lbasename (fullname), lbasename (p->filename)) == 0) 1138 && filename_cmp (fullname, psymtab_to_fullname (p)) == 0) 1139 psymtab_to_symtab (objfile, p); 1140 } 1141 } 1142 1143 /* Psymtab version of map_symbol_filenames. See its definition in 1144 the definition of quick_symbol_functions in symfile.h. */ 1145 1146 static void 1147 psym_map_symbol_filenames (struct objfile *objfile, 1148 symbol_filename_ftype *fun, void *data, 1149 int need_fullname) 1150 { 1151 struct partial_symtab *ps; 1152 1153 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1154 { 1155 const char *fullname; 1156 1157 if (ps->readin) 1158 continue; 1159 1160 /* We can skip shared psymtabs here, because any file name will be 1161 attached to the unshared psymtab. */ 1162 if (ps->user != NULL) 1163 continue; 1164 1165 /* Anonymous psymtabs don't have a file name. */ 1166 if (ps->anonymous) 1167 continue; 1168 1169 QUIT; 1170 if (need_fullname) 1171 fullname = psymtab_to_fullname (ps); 1172 else 1173 fullname = NULL; 1174 (*fun) (ps->filename, fullname, data); 1175 } 1176 } 1177 1178 /* Finds the fullname that a partial_symtab represents. 1179 1180 If this functions finds the fullname, it will save it in ps->fullname 1181 and it will also return the value. 1182 1183 If this function fails to find the file that this partial_symtab represents, 1184 NULL will be returned and ps->fullname will be set to NULL. */ 1185 1186 static const char * 1187 psymtab_to_fullname (struct partial_symtab *ps) 1188 { 1189 gdb_assert (!ps->anonymous); 1190 1191 /* Use cached copy if we have it. 1192 We rely on forget_cached_source_info being called appropriately 1193 to handle cases like the file being moved. */ 1194 if (ps->fullname == NULL) 1195 { 1196 int fd = find_and_open_source (ps->filename, ps->dirname, &ps->fullname); 1197 1198 if (fd >= 0) 1199 close (fd); 1200 else 1201 { 1202 char *fullname; 1203 struct cleanup *back_to; 1204 1205 /* rewrite_source_path would be applied by find_and_open_source, we 1206 should report the pathname where GDB tried to find the file. */ 1207 1208 if (ps->dirname == NULL || IS_ABSOLUTE_PATH (ps->filename)) 1209 fullname = xstrdup (ps->filename); 1210 else 1211 fullname = concat (ps->dirname, SLASH_STRING, 1212 ps->filename, (char *) NULL); 1213 1214 back_to = make_cleanup (xfree, fullname); 1215 ps->fullname = rewrite_source_path (fullname); 1216 if (ps->fullname == NULL) 1217 ps->fullname = xstrdup (fullname); 1218 do_cleanups (back_to); 1219 } 1220 } 1221 1222 return ps->fullname; 1223 } 1224 1225 /* For all symbols, s, in BLOCK that are in DOMAIN and match NAME 1226 according to the function MATCH, call CALLBACK(BLOCK, s, DATA). 1227 BLOCK is assumed to come from OBJFILE. Returns 1 iff CALLBACK 1228 ever returns non-zero, and otherwise returns 0. */ 1229 1230 static int 1231 map_block (const char *name, domain_enum domain, struct objfile *objfile, 1232 struct block *block, 1233 int (*callback) (struct block *, struct symbol *, void *), 1234 void *data, symbol_compare_ftype *match) 1235 { 1236 struct block_iterator iter; 1237 struct symbol *sym; 1238 1239 for (sym = block_iter_match_first (block, name, match, &iter); 1240 sym != NULL; sym = block_iter_match_next (name, match, &iter)) 1241 { 1242 if (symbol_matches_domain (SYMBOL_LANGUAGE (sym), 1243 SYMBOL_DOMAIN (sym), domain)) 1244 { 1245 if (callback (block, sym, data)) 1246 return 1; 1247 } 1248 } 1249 1250 return 0; 1251 } 1252 1253 /* Psymtab version of map_matching_symbols. See its definition in 1254 the definition of quick_symbol_functions in symfile.h. */ 1255 1256 static void 1257 psym_map_matching_symbols (struct objfile *objfile, 1258 const char *name, domain_enum domain, 1259 int global, 1260 int (*callback) (struct block *, 1261 struct symbol *, void *), 1262 void *data, 1263 symbol_compare_ftype *match, 1264 symbol_compare_ftype *ordered_compare) 1265 { 1266 const int block_kind = global ? GLOBAL_BLOCK : STATIC_BLOCK; 1267 struct partial_symtab *ps; 1268 1269 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1270 { 1271 QUIT; 1272 if (ps->readin 1273 || match_partial_symbol (objfile, ps, global, name, domain, match, 1274 ordered_compare)) 1275 { 1276 struct compunit_symtab *cust = psymtab_to_symtab (objfile, ps); 1277 struct block *block; 1278 1279 if (cust == NULL) 1280 continue; 1281 block = BLOCKVECTOR_BLOCK (COMPUNIT_BLOCKVECTOR (cust), block_kind); 1282 if (map_block (name, domain, objfile, block, 1283 callback, data, match)) 1284 return; 1285 if (callback (block, NULL, data)) 1286 return; 1287 } 1288 } 1289 } 1290 1291 /* A helper for psym_expand_symtabs_matching that handles searching 1292 included psymtabs. This returns true if a symbol is found, and 1293 false otherwise. It also updates the 'searched_flag' on the 1294 various psymtabs that it searches. */ 1295 1296 static bool 1297 recursively_search_psymtabs 1298 (struct partial_symtab *ps, struct objfile *objfile, enum search_domain kind, 1299 gdb::function_view<expand_symtabs_symbol_matcher_ftype> sym_matcher) 1300 { 1301 struct partial_symbol **psym; 1302 struct partial_symbol **bound, **gbound, **sbound; 1303 int keep_going = 1; 1304 enum psymtab_search_status result = PST_SEARCHED_AND_NOT_FOUND; 1305 int i; 1306 1307 if (ps->searched_flag != PST_NOT_SEARCHED) 1308 return ps->searched_flag == PST_SEARCHED_AND_FOUND; 1309 1310 /* Recurse into shared psymtabs first, because they may have already 1311 been searched, and this could save some time. */ 1312 for (i = 0; i < ps->number_of_dependencies; ++i) 1313 { 1314 int r; 1315 1316 /* Skip non-shared dependencies, these are handled elsewhere. */ 1317 if (ps->dependencies[i]->user == NULL) 1318 continue; 1319 1320 r = recursively_search_psymtabs (ps->dependencies[i], 1321 objfile, kind, sym_matcher); 1322 if (r != 0) 1323 { 1324 ps->searched_flag = PST_SEARCHED_AND_FOUND; 1325 return true; 1326 } 1327 } 1328 1329 gbound = (objfile->global_psymbols.list 1330 + ps->globals_offset + ps->n_global_syms); 1331 sbound = (objfile->static_psymbols.list 1332 + ps->statics_offset + ps->n_static_syms); 1333 bound = gbound; 1334 1335 /* Go through all of the symbols stored in a partial 1336 symtab in one loop. */ 1337 psym = objfile->global_psymbols.list + ps->globals_offset; 1338 while (keep_going) 1339 { 1340 if (psym >= bound) 1341 { 1342 if (bound == gbound && ps->n_static_syms != 0) 1343 { 1344 psym = objfile->static_psymbols.list + ps->statics_offset; 1345 bound = sbound; 1346 } 1347 else 1348 keep_going = 0; 1349 continue; 1350 } 1351 else 1352 { 1353 QUIT; 1354 1355 if ((kind == ALL_DOMAIN 1356 || (kind == VARIABLES_DOMAIN 1357 && PSYMBOL_CLASS (*psym) != LOC_TYPEDEF 1358 && PSYMBOL_CLASS (*psym) != LOC_BLOCK) 1359 || (kind == FUNCTIONS_DOMAIN 1360 && PSYMBOL_CLASS (*psym) == LOC_BLOCK) 1361 || (kind == TYPES_DOMAIN 1362 && PSYMBOL_CLASS (*psym) == LOC_TYPEDEF)) 1363 && sym_matcher (SYMBOL_SEARCH_NAME (*psym))) 1364 { 1365 /* Found a match, so notify our caller. */ 1366 result = PST_SEARCHED_AND_FOUND; 1367 keep_going = 0; 1368 } 1369 } 1370 psym++; 1371 } 1372 1373 ps->searched_flag = result; 1374 return result == PST_SEARCHED_AND_FOUND; 1375 } 1376 1377 /* Psymtab version of expand_symtabs_matching. See its definition in 1378 the definition of quick_symbol_functions in symfile.h. */ 1379 1380 static void 1381 psym_expand_symtabs_matching 1382 (struct objfile *objfile, 1383 gdb::function_view<expand_symtabs_file_matcher_ftype> file_matcher, 1384 gdb::function_view<expand_symtabs_symbol_matcher_ftype> symbol_matcher, 1385 gdb::function_view<expand_symtabs_exp_notify_ftype> expansion_notify, 1386 enum search_domain kind) 1387 { 1388 struct partial_symtab *ps; 1389 1390 /* Clear the search flags. */ 1391 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1392 { 1393 ps->searched_flag = PST_NOT_SEARCHED; 1394 } 1395 1396 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 1397 { 1398 QUIT; 1399 1400 if (ps->readin) 1401 continue; 1402 1403 /* We skip shared psymtabs because file-matching doesn't apply 1404 to them; but we search them later in the loop. */ 1405 if (ps->user != NULL) 1406 continue; 1407 1408 if (file_matcher) 1409 { 1410 bool match; 1411 1412 if (ps->anonymous) 1413 continue; 1414 1415 match = file_matcher (ps->filename, false); 1416 if (!match) 1417 { 1418 /* Before we invoke realpath, which can get expensive when many 1419 files are involved, do a quick comparison of the basenames. */ 1420 if (basenames_may_differ 1421 || file_matcher (lbasename (ps->filename), true)) 1422 match = file_matcher (psymtab_to_fullname (ps), false); 1423 } 1424 if (!match) 1425 continue; 1426 } 1427 1428 if (recursively_search_psymtabs (ps, objfile, kind, symbol_matcher)) 1429 { 1430 struct compunit_symtab *symtab = 1431 psymtab_to_symtab (objfile, ps); 1432 1433 if (expansion_notify != NULL) 1434 expansion_notify (symtab); 1435 } 1436 } 1437 } 1438 1439 /* Psymtab version of has_symbols. See its definition in 1440 the definition of quick_symbol_functions in symfile.h. */ 1441 1442 static int 1443 psym_has_symbols (struct objfile *objfile) 1444 { 1445 return objfile->psymtabs != NULL; 1446 } 1447 1448 const struct quick_symbol_functions psym_functions = 1449 { 1450 psym_has_symbols, 1451 psym_find_last_source_symtab, 1452 psym_forget_cached_source_info, 1453 psym_map_symtabs_matching_filename, 1454 psym_lookup_symbol, 1455 psym_print_stats, 1456 psym_dump, 1457 psym_relocate, 1458 psym_expand_symtabs_for_function, 1459 psym_expand_all_symtabs, 1460 psym_expand_symtabs_with_fullname, 1461 psym_map_matching_symbols, 1462 psym_expand_symtabs_matching, 1463 psym_find_pc_sect_compunit_symtab, 1464 psym_map_symbol_filenames 1465 }; 1466 1467 1468 1469 /* This compares two partial symbols by names, using strcmp_iw_ordered 1470 for the comparison. */ 1471 1472 static int 1473 compare_psymbols (const void *s1p, const void *s2p) 1474 { 1475 struct partial_symbol *const *s1 = (struct partial_symbol * const*) s1p; 1476 struct partial_symbol *const *s2 = (struct partial_symbol * const*) s2p; 1477 1478 return strcmp_iw_ordered (SYMBOL_SEARCH_NAME (*s1), 1479 SYMBOL_SEARCH_NAME (*s2)); 1480 } 1481 1482 static void 1483 sort_pst_symbols (struct objfile *objfile, struct partial_symtab *pst) 1484 { 1485 /* Sort the global list; don't sort the static list. */ 1486 1487 qsort (objfile->global_psymbols.list + pst->globals_offset, 1488 pst->n_global_syms, sizeof (struct partial_symbol *), 1489 compare_psymbols); 1490 } 1491 1492 /* Allocate and partially fill a partial symtab. It will be 1493 completely filled at the end of the symbol list. 1494 1495 FILENAME is the name of the symbol-file we are reading from. */ 1496 1497 struct partial_symtab * 1498 start_psymtab_common (struct objfile *objfile, 1499 const char *filename, 1500 CORE_ADDR textlow, struct partial_symbol **global_syms, 1501 struct partial_symbol **static_syms) 1502 { 1503 struct partial_symtab *psymtab; 1504 1505 psymtab = allocate_psymtab (filename, objfile); 1506 psymtab->textlow = textlow; 1507 psymtab->texthigh = psymtab->textlow; /* default */ 1508 psymtab->globals_offset = global_syms - objfile->global_psymbols.list; 1509 psymtab->statics_offset = static_syms - objfile->static_psymbols.list; 1510 return psymtab; 1511 } 1512 1513 /* Perform "finishing up" operations of a partial symtab. */ 1514 1515 void 1516 end_psymtab_common (struct objfile *objfile, struct partial_symtab *pst) 1517 { 1518 pst->n_global_syms 1519 = objfile->global_psymbols.next - (objfile->global_psymbols.list 1520 + pst->globals_offset); 1521 pst->n_static_syms 1522 = objfile->static_psymbols.next - (objfile->static_psymbols.list 1523 + pst->statics_offset); 1524 1525 sort_pst_symbols (objfile, pst); 1526 } 1527 1528 /* Calculate a hash code for the given partial symbol. The hash is 1529 calculated using the symbol's value, language, domain, class 1530 and name. These are the values which are set by 1531 add_psymbol_to_bcache. */ 1532 1533 static unsigned long 1534 psymbol_hash (const void *addr, int length) 1535 { 1536 unsigned long h = 0; 1537 struct partial_symbol *psymbol = (struct partial_symbol *) addr; 1538 unsigned int lang = psymbol->ginfo.language; 1539 unsigned int domain = PSYMBOL_DOMAIN (psymbol); 1540 unsigned int theclass = PSYMBOL_CLASS (psymbol); 1541 1542 h = hash_continue (&psymbol->ginfo.value, sizeof (psymbol->ginfo.value), h); 1543 h = hash_continue (&lang, sizeof (unsigned int), h); 1544 h = hash_continue (&domain, sizeof (unsigned int), h); 1545 h = hash_continue (&theclass, sizeof (unsigned int), h); 1546 h = hash_continue (psymbol->ginfo.name, strlen (psymbol->ginfo.name), h); 1547 1548 return h; 1549 } 1550 1551 /* Returns true if the symbol at addr1 equals the symbol at addr2. 1552 For the comparison this function uses a symbols value, 1553 language, domain, class and name. */ 1554 1555 static int 1556 psymbol_compare (const void *addr1, const void *addr2, int length) 1557 { 1558 struct partial_symbol *sym1 = (struct partial_symbol *) addr1; 1559 struct partial_symbol *sym2 = (struct partial_symbol *) addr2; 1560 1561 return (memcmp (&sym1->ginfo.value, &sym2->ginfo.value, 1562 sizeof (sym1->ginfo.value)) == 0 1563 && sym1->ginfo.language == sym2->ginfo.language 1564 && PSYMBOL_DOMAIN (sym1) == PSYMBOL_DOMAIN (sym2) 1565 && PSYMBOL_CLASS (sym1) == PSYMBOL_CLASS (sym2) 1566 && sym1->ginfo.name == sym2->ginfo.name); 1567 } 1568 1569 /* Initialize a partial symbol bcache. */ 1570 1571 struct psymbol_bcache * 1572 psymbol_bcache_init (void) 1573 { 1574 struct psymbol_bcache *bcache = XCNEW (struct psymbol_bcache); 1575 1576 bcache->bcache = bcache_xmalloc (psymbol_hash, psymbol_compare); 1577 return bcache; 1578 } 1579 1580 /* Free a partial symbol bcache. */ 1581 1582 void 1583 psymbol_bcache_free (struct psymbol_bcache *bcache) 1584 { 1585 if (bcache == NULL) 1586 return; 1587 1588 bcache_xfree (bcache->bcache); 1589 xfree (bcache); 1590 } 1591 1592 /* Return the internal bcache of the psymbol_bcache BCACHE. */ 1593 1594 struct bcache * 1595 psymbol_bcache_get_bcache (struct psymbol_bcache *bcache) 1596 { 1597 return bcache->bcache; 1598 } 1599 1600 /* Find a copy of the SYM in BCACHE. If BCACHE has never seen this 1601 symbol before, add a copy to BCACHE. In either case, return a pointer 1602 to BCACHE's copy of the symbol. If optional ADDED is not NULL, return 1603 1 in case of new entry or 0 if returning an old entry. */ 1604 1605 static const struct partial_symbol * 1606 psymbol_bcache_full (struct partial_symbol *sym, 1607 struct psymbol_bcache *bcache, 1608 int *added) 1609 { 1610 return ((const struct partial_symbol *) 1611 bcache_full (sym, sizeof (struct partial_symbol), bcache->bcache, 1612 added)); 1613 } 1614 1615 /* Helper function, initialises partial symbol structure and stashes 1616 it into objfile's bcache. Note that our caching mechanism will 1617 use all fields of struct partial_symbol to determine hash value of the 1618 structure. In other words, having two symbols with the same name but 1619 different domain (or address) is possible and correct. */ 1620 1621 static const struct partial_symbol * 1622 add_psymbol_to_bcache (const char *name, int namelength, int copy_name, 1623 domain_enum domain, 1624 enum address_class theclass, 1625 CORE_ADDR coreaddr, 1626 enum language language, struct objfile *objfile, 1627 int *added) 1628 { 1629 struct partial_symbol psymbol; 1630 1631 /* We must ensure that the entire struct has been zeroed before 1632 assigning to it, because an assignment may not touch some of the 1633 holes. */ 1634 memset (&psymbol, 0, sizeof (psymbol)); 1635 1636 SYMBOL_VALUE_ADDRESS (&psymbol) = coreaddr; 1637 SYMBOL_SECTION (&psymbol) = -1; 1638 SYMBOL_SET_LANGUAGE (&psymbol, language, &objfile->objfile_obstack); 1639 PSYMBOL_DOMAIN (&psymbol) = domain; 1640 PSYMBOL_CLASS (&psymbol) = theclass; 1641 1642 SYMBOL_SET_NAMES (&psymbol, name, namelength, copy_name, objfile); 1643 1644 /* Stash the partial symbol away in the cache. */ 1645 return psymbol_bcache_full (&psymbol, objfile->psymbol_cache, added); 1646 } 1647 1648 /* Increase the space allocated for LISTP, which is probably 1649 global_psymbols or static_psymbols. This space will eventually 1650 be freed in free_objfile(). */ 1651 1652 static void 1653 extend_psymbol_list (struct psymbol_allocation_list *listp, 1654 struct objfile *objfile) 1655 { 1656 int new_size; 1657 1658 if (listp->size == 0) 1659 { 1660 new_size = 255; 1661 listp->list = XNEWVEC (struct partial_symbol *, new_size); 1662 } 1663 else 1664 { 1665 new_size = listp->size * 2; 1666 listp->list = (struct partial_symbol **) 1667 xrealloc ((char *) listp->list, 1668 new_size * sizeof (struct partial_symbol *)); 1669 } 1670 /* Next assumes we only went one over. Should be good if 1671 program works correctly. */ 1672 listp->next = listp->list + listp->size; 1673 listp->size = new_size; 1674 } 1675 1676 /* Helper function, adds partial symbol to the given partial symbol list. */ 1677 1678 static void 1679 append_psymbol_to_list (struct psymbol_allocation_list *list, 1680 const struct partial_symbol *psym, 1681 struct objfile *objfile) 1682 { 1683 if (list->next >= list->list + list->size) 1684 extend_psymbol_list (list, objfile); 1685 *list->next++ = (struct partial_symbol *) psym; 1686 OBJSTAT (objfile, n_psyms++); 1687 } 1688 1689 /* Add a symbol with a long value to a psymtab. 1690 Since one arg is a struct, we pass in a ptr and deref it (sigh). 1691 The only value we need to store for psyms is an address. 1692 For all other psyms pass zero for COREADDR. 1693 Return the partial symbol that has been added. */ 1694 1695 void 1696 add_psymbol_to_list (const char *name, int namelength, int copy_name, 1697 domain_enum domain, 1698 enum address_class theclass, 1699 struct psymbol_allocation_list *list, 1700 CORE_ADDR coreaddr, 1701 enum language language, struct objfile *objfile) 1702 { 1703 const struct partial_symbol *psym; 1704 1705 int added; 1706 1707 /* Stash the partial symbol away in the cache. */ 1708 psym = add_psymbol_to_bcache (name, namelength, copy_name, domain, theclass, 1709 coreaddr, language, objfile, &added); 1710 1711 /* Do not duplicate global partial symbols. */ 1712 if (list == &objfile->global_psymbols 1713 && !added) 1714 return; 1715 1716 /* Save pointer to partial symbol in psymtab, growing symtab if needed. */ 1717 append_psymbol_to_list (list, psym, objfile); 1718 } 1719 1720 /* Initialize storage for partial symbols. */ 1721 1722 void 1723 init_psymbol_list (struct objfile *objfile, int total_symbols) 1724 { 1725 /* Free any previously allocated psymbol lists. */ 1726 1727 if (objfile->global_psymbols.list) 1728 xfree (objfile->global_psymbols.list); 1729 if (objfile->static_psymbols.list) 1730 xfree (objfile->static_psymbols.list); 1731 1732 /* Current best guess is that approximately a twentieth 1733 of the total symbols (in a debugging file) are global or static 1734 oriented symbols, then multiply that by slop factor of two. */ 1735 1736 objfile->global_psymbols.size = total_symbols / 10; 1737 objfile->static_psymbols.size = total_symbols / 10; 1738 1739 if (objfile->global_psymbols.size > 0) 1740 { 1741 objfile->global_psymbols.next = 1742 objfile->global_psymbols.list = 1743 XNEWVEC (struct partial_symbol *, objfile->global_psymbols.size); 1744 } 1745 if (objfile->static_psymbols.size > 0) 1746 { 1747 objfile->static_psymbols.next = 1748 objfile->static_psymbols.list = 1749 XNEWVEC (struct partial_symbol *, objfile->static_psymbols.size); 1750 } 1751 } 1752 1753 struct partial_symtab * 1754 allocate_psymtab (const char *filename, struct objfile *objfile) 1755 { 1756 struct partial_symtab *psymtab; 1757 1758 if (objfile->free_psymtabs) 1759 { 1760 psymtab = objfile->free_psymtabs; 1761 objfile->free_psymtabs = psymtab->next; 1762 } 1763 else 1764 psymtab = (struct partial_symtab *) 1765 obstack_alloc (&objfile->objfile_obstack, 1766 sizeof (struct partial_symtab)); 1767 1768 memset (psymtab, 0, sizeof (struct partial_symtab)); 1769 psymtab->filename 1770 = (const char *) bcache (filename, strlen (filename) + 1, 1771 objfile->per_bfd->filename_cache); 1772 psymtab->compunit_symtab = NULL; 1773 1774 /* Prepend it to the psymtab list for the objfile it belongs to. 1775 Psymtabs are searched in most recent inserted -> least recent 1776 inserted order. */ 1777 1778 psymtab->next = objfile->psymtabs; 1779 objfile->psymtabs = psymtab; 1780 1781 if (symtab_create_debug) 1782 { 1783 /* Be a bit clever with debugging messages, and don't print objfile 1784 every time, only when it changes. */ 1785 static char *last_objfile_name = NULL; 1786 1787 if (last_objfile_name == NULL 1788 || strcmp (last_objfile_name, objfile_name (objfile)) != 0) 1789 { 1790 xfree (last_objfile_name); 1791 last_objfile_name = xstrdup (objfile_name (objfile)); 1792 fprintf_unfiltered (gdb_stdlog, 1793 "Creating one or more psymtabs for objfile %s ...\n", 1794 last_objfile_name); 1795 } 1796 fprintf_unfiltered (gdb_stdlog, 1797 "Created psymtab %s for module %s.\n", 1798 host_address_to_string (psymtab), filename); 1799 } 1800 1801 return psymtab; 1802 } 1803 1804 void 1805 discard_psymtab (struct objfile *objfile, struct partial_symtab *pst) 1806 { 1807 struct partial_symtab **prev_pst; 1808 1809 /* From dbxread.c: 1810 Empty psymtabs happen as a result of header files which don't 1811 have any symbols in them. There can be a lot of them. But this 1812 check is wrong, in that a psymtab with N_SLINE entries but 1813 nothing else is not empty, but we don't realize that. Fixing 1814 that without slowing things down might be tricky. */ 1815 1816 /* First, snip it out of the psymtab chain. */ 1817 1818 prev_pst = &(objfile->psymtabs); 1819 while ((*prev_pst) != pst) 1820 prev_pst = &((*prev_pst)->next); 1821 (*prev_pst) = pst->next; 1822 1823 /* Next, put it on a free list for recycling. */ 1824 1825 pst->next = objfile->free_psymtabs; 1826 objfile->free_psymtabs = pst; 1827 } 1828 1829 1830 1831 /* We need to pass a couple of items to the addrmap_foreach function, 1832 so use a struct. */ 1833 1834 struct dump_psymtab_addrmap_data 1835 { 1836 struct objfile *objfile; 1837 struct partial_symtab *psymtab; 1838 struct ui_file *outfile; 1839 1840 /* Non-zero if the previously printed addrmap entry was for PSYMTAB. 1841 If so, we want to print the next one as well (since the next addrmap 1842 entry defines the end of the range). */ 1843 int previous_matched; 1844 }; 1845 1846 /* Helper function for dump_psymtab_addrmap to print an addrmap entry. */ 1847 1848 static int 1849 dump_psymtab_addrmap_1 (void *datap, CORE_ADDR start_addr, void *obj) 1850 { 1851 struct dump_psymtab_addrmap_data *data 1852 = (struct dump_psymtab_addrmap_data *) datap; 1853 struct gdbarch *gdbarch = get_objfile_arch (data->objfile); 1854 struct partial_symtab *addrmap_psymtab = (struct partial_symtab *) obj; 1855 const char *psymtab_address_or_end = NULL; 1856 1857 QUIT; 1858 1859 if (data->psymtab == NULL 1860 || data->psymtab == addrmap_psymtab) 1861 psymtab_address_or_end = host_address_to_string (addrmap_psymtab); 1862 else if (data->previous_matched) 1863 psymtab_address_or_end = "<ends here>"; 1864 1865 if (data->psymtab == NULL 1866 || data->psymtab == addrmap_psymtab 1867 || data->previous_matched) 1868 { 1869 fprintf_filtered (data->outfile, " %s%s %s\n", 1870 data->psymtab != NULL ? " " : "", 1871 paddress (gdbarch, start_addr), 1872 psymtab_address_or_end); 1873 } 1874 1875 data->previous_matched = (data->psymtab == NULL 1876 || data->psymtab == addrmap_psymtab); 1877 1878 return 0; 1879 } 1880 1881 /* Helper function for maintenance_print_psymbols to print the addrmap 1882 of PSYMTAB. If PSYMTAB is NULL print the entire addrmap. */ 1883 1884 static void 1885 dump_psymtab_addrmap (struct objfile *objfile, struct partial_symtab *psymtab, 1886 struct ui_file *outfile) 1887 { 1888 struct dump_psymtab_addrmap_data addrmap_dump_data; 1889 1890 if ((psymtab == NULL 1891 || psymtab->psymtabs_addrmap_supported) 1892 && objfile->psymtabs_addrmap != NULL) 1893 { 1894 addrmap_dump_data.objfile = objfile; 1895 addrmap_dump_data.psymtab = psymtab; 1896 addrmap_dump_data.outfile = outfile; 1897 addrmap_dump_data.previous_matched = 0; 1898 fprintf_filtered (outfile, "%sddress map:\n", 1899 psymtab == NULL ? "Entire a" : " A"); 1900 addrmap_foreach (objfile->psymtabs_addrmap, dump_psymtab_addrmap_1, 1901 &addrmap_dump_data); 1902 } 1903 } 1904 1905 static void 1906 maintenance_print_psymbols (char *args, int from_tty) 1907 { 1908 char **argv; 1909 struct ui_file *outfile = gdb_stdout; 1910 struct cleanup *cleanups; 1911 char *address_arg = NULL, *source_arg = NULL, *objfile_arg = NULL; 1912 struct objfile *objfile; 1913 struct partial_symtab *ps; 1914 int i, outfile_idx, found; 1915 CORE_ADDR pc = 0; 1916 struct obj_section *section = NULL; 1917 1918 dont_repeat (); 1919 1920 argv = gdb_buildargv (args); 1921 cleanups = make_cleanup_freeargv (argv); 1922 1923 for (i = 0; argv != NULL && argv[i] != NULL; ++i) 1924 { 1925 if (strcmp (argv[i], "-pc") == 0) 1926 { 1927 if (argv[i + 1] == NULL) 1928 error (_("Missing pc value")); 1929 address_arg = argv[++i]; 1930 } 1931 else if (strcmp (argv[i], "-source") == 0) 1932 { 1933 if (argv[i + 1] == NULL) 1934 error (_("Missing source file")); 1935 source_arg = argv[++i]; 1936 } 1937 else if (strcmp (argv[i], "-objfile") == 0) 1938 { 1939 if (argv[i + 1] == NULL) 1940 error (_("Missing objfile name")); 1941 objfile_arg = argv[++i]; 1942 } 1943 else if (strcmp (argv[i], "--") == 0) 1944 { 1945 /* End of options. */ 1946 ++i; 1947 break; 1948 } 1949 else if (argv[i][0] == '-') 1950 { 1951 /* Future proofing: Don't allow OUTFILE to begin with "-". */ 1952 error (_("Unknown option: %s"), argv[i]); 1953 } 1954 else 1955 break; 1956 } 1957 outfile_idx = i; 1958 1959 if (address_arg != NULL && source_arg != NULL) 1960 error (_("Must specify at most one of -pc and -source")); 1961 1962 stdio_file arg_outfile; 1963 1964 if (argv != NULL && argv[outfile_idx] != NULL) 1965 { 1966 char *outfile_name; 1967 1968 if (argv[outfile_idx + 1] != NULL) 1969 error (_("Junk at end of command")); 1970 outfile_name = tilde_expand (argv[outfile_idx]); 1971 make_cleanup (xfree, outfile_name); 1972 if (!arg_outfile.open (outfile_name, FOPEN_WT)) 1973 perror_with_name (outfile_name); 1974 outfile = &arg_outfile; 1975 } 1976 1977 if (address_arg != NULL) 1978 { 1979 pc = parse_and_eval_address (address_arg); 1980 /* If we fail to find a section, that's ok, try the lookup anyway. */ 1981 section = find_pc_section (pc); 1982 } 1983 1984 found = 0; 1985 ALL_OBJFILES (objfile) 1986 { 1987 int printed_objfile_header = 0; 1988 int print_for_objfile = 1; 1989 1990 QUIT; 1991 if (objfile_arg != NULL) 1992 print_for_objfile 1993 = compare_filenames_for_search (objfile_name (objfile), 1994 objfile_arg); 1995 if (!print_for_objfile) 1996 continue; 1997 1998 if (address_arg != NULL) 1999 { 2000 struct bound_minimal_symbol msymbol = { NULL, NULL }; 2001 2002 /* We don't assume each pc has a unique objfile (this is for 2003 debugging). */ 2004 ps = find_pc_sect_psymtab (objfile, pc, section, msymbol); 2005 if (ps != NULL) 2006 { 2007 if (!printed_objfile_header) 2008 { 2009 outfile->printf ("\nPartial symtabs for objfile %s\n", 2010 objfile_name (objfile)); 2011 printed_objfile_header = 1; 2012 } 2013 dump_psymtab (objfile, ps, outfile); 2014 dump_psymtab_addrmap (objfile, ps, outfile); 2015 found = 1; 2016 } 2017 } 2018 else 2019 { 2020 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, ps) 2021 { 2022 int print_for_source = 0; 2023 2024 QUIT; 2025 if (source_arg != NULL) 2026 { 2027 print_for_source 2028 = compare_filenames_for_search (ps->filename, source_arg); 2029 found = 1; 2030 } 2031 if (source_arg == NULL 2032 || print_for_source) 2033 { 2034 if (!printed_objfile_header) 2035 { 2036 outfile->printf ("\nPartial symtabs for objfile %s\n", 2037 objfile_name (objfile)); 2038 printed_objfile_header = 1; 2039 } 2040 dump_psymtab (objfile, ps, outfile); 2041 dump_psymtab_addrmap (objfile, ps, outfile); 2042 } 2043 } 2044 } 2045 2046 /* If we're printing all the objfile's symbols dump the full addrmap. */ 2047 2048 if (address_arg == NULL 2049 && source_arg == NULL 2050 && objfile->psymtabs_addrmap != NULL) 2051 { 2052 outfile->puts ("\n"); 2053 dump_psymtab_addrmap (objfile, NULL, outfile); 2054 } 2055 } 2056 2057 if (!found) 2058 { 2059 if (address_arg != NULL) 2060 error (_("No partial symtab for address: %s"), address_arg); 2061 if (source_arg != NULL) 2062 error (_("No partial symtab for source file: %s"), source_arg); 2063 } 2064 2065 do_cleanups (cleanups); 2066 } 2067 2068 /* List all the partial symbol tables whose names match REGEXP (optional). */ 2069 2070 static void 2071 maintenance_info_psymtabs (char *regexp, int from_tty) 2072 { 2073 struct program_space *pspace; 2074 struct objfile *objfile; 2075 2076 if (regexp) 2077 re_comp (regexp); 2078 2079 ALL_PSPACES (pspace) 2080 ALL_PSPACE_OBJFILES (pspace, objfile) 2081 { 2082 struct gdbarch *gdbarch = get_objfile_arch (objfile); 2083 struct partial_symtab *psymtab; 2084 2085 /* We don't want to print anything for this objfile until we 2086 actually find a symtab whose name matches. */ 2087 int printed_objfile_start = 0; 2088 2089 ALL_OBJFILE_PSYMTABS_REQUIRED (objfile, psymtab) 2090 { 2091 QUIT; 2092 2093 if (! regexp 2094 || re_exec (psymtab->filename)) 2095 { 2096 if (! printed_objfile_start) 2097 { 2098 printf_filtered ("{ objfile %s ", objfile_name (objfile)); 2099 wrap_here (" "); 2100 printf_filtered ("((struct objfile *) %s)\n", 2101 host_address_to_string (objfile)); 2102 printed_objfile_start = 1; 2103 } 2104 2105 printf_filtered (" { psymtab %s ", psymtab->filename); 2106 wrap_here (" "); 2107 printf_filtered ("((struct partial_symtab *) %s)\n", 2108 host_address_to_string (psymtab)); 2109 2110 printf_filtered (" readin %s\n", 2111 psymtab->readin ? "yes" : "no"); 2112 printf_filtered (" fullname %s\n", 2113 psymtab->fullname 2114 ? psymtab->fullname : "(null)"); 2115 printf_filtered (" text addresses "); 2116 fputs_filtered (paddress (gdbarch, psymtab->textlow), 2117 gdb_stdout); 2118 printf_filtered (" -- "); 2119 fputs_filtered (paddress (gdbarch, psymtab->texthigh), 2120 gdb_stdout); 2121 printf_filtered ("\n"); 2122 printf_filtered (" psymtabs_addrmap_supported %s\n", 2123 (psymtab->psymtabs_addrmap_supported 2124 ? "yes" : "no")); 2125 printf_filtered (" globals "); 2126 if (psymtab->n_global_syms) 2127 { 2128 printf_filtered ("(* (struct partial_symbol **) %s @ %d)\n", 2129 host_address_to_string (objfile->global_psymbols.list 2130 + psymtab->globals_offset), 2131 psymtab->n_global_syms); 2132 } 2133 else 2134 printf_filtered ("(none)\n"); 2135 printf_filtered (" statics "); 2136 if (psymtab->n_static_syms) 2137 { 2138 printf_filtered ("(* (struct partial_symbol **) %s @ %d)\n", 2139 host_address_to_string (objfile->static_psymbols.list 2140 + psymtab->statics_offset), 2141 psymtab->n_static_syms); 2142 } 2143 else 2144 printf_filtered ("(none)\n"); 2145 printf_filtered (" dependencies "); 2146 if (psymtab->number_of_dependencies) 2147 { 2148 int i; 2149 2150 printf_filtered ("{\n"); 2151 for (i = 0; i < psymtab->number_of_dependencies; i++) 2152 { 2153 struct partial_symtab *dep = psymtab->dependencies[i]; 2154 2155 /* Note the string concatenation there --- no comma. */ 2156 printf_filtered (" psymtab %s " 2157 "((struct partial_symtab *) %s)\n", 2158 dep->filename, 2159 host_address_to_string (dep)); 2160 } 2161 printf_filtered (" }\n"); 2162 } 2163 else 2164 printf_filtered ("(none)\n"); 2165 printf_filtered (" }\n"); 2166 } 2167 } 2168 2169 if (printed_objfile_start) 2170 printf_filtered ("}\n"); 2171 } 2172 } 2173 2174 /* Check consistency of currently expanded psymtabs vs symtabs. */ 2175 2176 static void 2177 maintenance_check_psymtabs (char *ignore, int from_tty) 2178 { 2179 struct symbol *sym; 2180 struct partial_symbol **psym; 2181 struct compunit_symtab *cust = NULL; 2182 struct partial_symtab *ps; 2183 const struct blockvector *bv; 2184 struct objfile *objfile; 2185 struct block *b; 2186 int length; 2187 2188 ALL_PSYMTABS (objfile, ps) 2189 { 2190 struct gdbarch *gdbarch = get_objfile_arch (objfile); 2191 2192 /* We don't call psymtab_to_symtab here because that may cause symtab 2193 expansion. When debugging a problem it helps if checkers leave 2194 things unchanged. */ 2195 cust = ps->compunit_symtab; 2196 2197 /* First do some checks that don't require the associated symtab. */ 2198 if (ps->texthigh < ps->textlow) 2199 { 2200 printf_filtered ("Psymtab "); 2201 puts_filtered (ps->filename); 2202 printf_filtered (" covers bad range "); 2203 fputs_filtered (paddress (gdbarch, ps->textlow), gdb_stdout); 2204 printf_filtered (" - "); 2205 fputs_filtered (paddress (gdbarch, ps->texthigh), gdb_stdout); 2206 printf_filtered ("\n"); 2207 continue; 2208 } 2209 2210 /* Now do checks requiring the associated symtab. */ 2211 if (cust == NULL) 2212 continue; 2213 bv = COMPUNIT_BLOCKVECTOR (cust); 2214 b = BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK); 2215 psym = objfile->static_psymbols.list + ps->statics_offset; 2216 length = ps->n_static_syms; 2217 while (length--) 2218 { 2219 sym = block_lookup_symbol (b, SYMBOL_LINKAGE_NAME (*psym), 2220 SYMBOL_DOMAIN (*psym)); 2221 if (!sym) 2222 { 2223 printf_filtered ("Static symbol `"); 2224 puts_filtered (SYMBOL_LINKAGE_NAME (*psym)); 2225 printf_filtered ("' only found in "); 2226 puts_filtered (ps->filename); 2227 printf_filtered (" psymtab\n"); 2228 } 2229 psym++; 2230 } 2231 b = BLOCKVECTOR_BLOCK (bv, GLOBAL_BLOCK); 2232 psym = objfile->global_psymbols.list + ps->globals_offset; 2233 length = ps->n_global_syms; 2234 while (length--) 2235 { 2236 sym = block_lookup_symbol (b, SYMBOL_LINKAGE_NAME (*psym), 2237 SYMBOL_DOMAIN (*psym)); 2238 if (!sym) 2239 { 2240 printf_filtered ("Global symbol `"); 2241 puts_filtered (SYMBOL_LINKAGE_NAME (*psym)); 2242 printf_filtered ("' only found in "); 2243 puts_filtered (ps->filename); 2244 printf_filtered (" psymtab\n"); 2245 } 2246 psym++; 2247 } 2248 if (ps->texthigh != 0 2249 && (ps->textlow < BLOCK_START (b) || ps->texthigh > BLOCK_END (b))) 2250 { 2251 printf_filtered ("Psymtab "); 2252 puts_filtered (ps->filename); 2253 printf_filtered (" covers "); 2254 fputs_filtered (paddress (gdbarch, ps->textlow), gdb_stdout); 2255 printf_filtered (" - "); 2256 fputs_filtered (paddress (gdbarch, ps->texthigh), gdb_stdout); 2257 printf_filtered (" but symtab covers only "); 2258 fputs_filtered (paddress (gdbarch, BLOCK_START (b)), gdb_stdout); 2259 printf_filtered (" - "); 2260 fputs_filtered (paddress (gdbarch, BLOCK_END (b)), gdb_stdout); 2261 printf_filtered ("\n"); 2262 } 2263 } 2264 } 2265 2266 2267 2268 extern initialize_file_ftype _initialize_psymtab; 2269 2270 void 2271 _initialize_psymtab (void) 2272 { 2273 add_cmd ("psymbols", class_maintenance, maintenance_print_psymbols, _("\ 2274 Print dump of current partial symbol definitions.\n\ 2275 Usage: mt print psymbols [-objfile objfile] [-pc address] [--] [outfile]\n\ 2276 mt print psymbols [-objfile objfile] [-source source] [--] [outfile]\n\ 2277 Entries in the partial symbol table are dumped to file OUTFILE,\n\ 2278 or the terminal if OUTFILE is unspecified.\n\ 2279 If ADDRESS is provided, dump only the file for that address.\n\ 2280 If SOURCE is provided, dump only that file's symbols.\n\ 2281 If OBJFILE is provided, dump only that file's minimal symbols."), 2282 &maintenanceprintlist); 2283 2284 add_cmd ("psymtabs", class_maintenance, maintenance_info_psymtabs, _("\ 2285 List the partial symbol tables for all object files.\n\ 2286 This does not include information about individual partial symbols,\n\ 2287 just the symbol table structures themselves."), 2288 &maintenanceinfolist); 2289 2290 add_cmd ("check-psymtabs", class_maintenance, maintenance_check_psymtabs, 2291 _("\ 2292 Check consistency of currently expanded psymtabs versus symtabs."), 2293 &maintenancelist); 2294 } 2295