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[wine/wine-kai.git] / dlls / dbghelp / stabs.c
blobe8fec4b6860e614d3085326c4721b0adae4f1cc1
1 /*
2 * File stabs.c - read stabs information from the modules
4 * Copyright (C) 1996, Eric Youngdale.
5 * 1999-2005, Eric Pouech
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library 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 GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
22 * Maintenance Information
23 * -----------------------
25 * For documentation on the stabs format see for example
26 * The "stabs" debug format
27 * by Julia Menapace, Jim Kingdon, David Mackenzie
28 * of Cygnus Support
29 * available (hopefully) from http:\\sources.redhat.com\gdb\onlinedocs
32 #include "config.h"
34 #include <sys/types.h>
35 #include <fcntl.h>
36 #ifdef HAVE_SYS_STAT_H
37 # include <sys/stat.h>
38 #endif
39 #ifdef HAVE_SYS_MMAN_H
40 #include <sys/mman.h>
41 #endif
42 #include <limits.h>
43 #include <stdlib.h>
44 #include <string.h>
45 #ifdef HAVE_UNISTD_H
46 # include <unistd.h>
47 #endif
48 #include <stdio.h>
49 #ifndef PATH_MAX
50 #define PATH_MAX MAX_PATH
51 #endif
52 #include <assert.h>
53 #include <stdarg.h>
55 #include "windef.h"
56 #include "winbase.h"
57 #include "winreg.h"
58 #include "winnls.h"
60 #include "dbghelp_private.h"
62 #include "wine/debug.h"
64 WINE_DEFAULT_DEBUG_CHANNEL(dbghelp_stabs);
66 #ifndef N_UNDF
67 #define N_UNDF 0x00
68 #endif
70 #define N_GSYM 0x20
71 #define N_FUN 0x24
72 #define N_STSYM 0x26
73 #define N_LCSYM 0x28
74 #define N_MAIN 0x2a
75 #define N_ROSYM 0x2c
76 #define N_BNSYM 0x2e
77 #define N_OPT 0x3c
78 #define N_RSYM 0x40
79 #define N_SLINE 0x44
80 #define N_ENSYM 0x4e
81 #define N_SO 0x64
82 #define N_LSYM 0x80
83 #define N_BINCL 0x82
84 #define N_SOL 0x84
85 #define N_PSYM 0xa0
86 #define N_EINCL 0xa2
87 #define N_LBRAC 0xc0
88 #define N_EXCL 0xc2
89 #define N_RBRAC 0xe0
91 struct stab_nlist
93 union
95 char* n_name;
96 struct stab_nlist* n_next;
97 long n_strx;
98 } n_un;
99 unsigned char n_type;
100 char n_other;
101 short n_desc;
102 unsigned long n_value;
105 static void stab_strcpy(char* dest, int sz, const char* source)
107 char* ptr = dest;
109 * A strcpy routine that stops when we hit the ':' character.
110 * Faster than copying the whole thing, and then nuking the
111 * ':'.
112 * Takes also care of (valid) a::b constructs
114 while (*source != '\0')
116 if (source[0] != ':' && sz-- > 0) *ptr++ = *source++;
117 else if (source[1] == ':' && (sz -= 2) > 0)
119 *ptr++ = *source++;
120 *ptr++ = *source++;
122 else break;
124 *ptr-- = '\0';
125 /* GCC emits, in some cases, a .<digit>+ suffix.
126 * This is used for static variable inside functions, so
127 * that we can have several such variables with same name in
128 * the same compilation unit
129 * We simply ignore that suffix when present (we also get rid
130 * of it in ELF symtab parsing)
132 if (ptr >= dest && isdigit(*ptr))
134 while (ptr > dest && isdigit(*ptr)) ptr--;
135 if (*ptr == '.') *ptr = '\0';
137 assert(sz > 0);
140 typedef struct
142 char* name;
143 unsigned long value;
144 struct symt** vector;
145 int nrofentries;
146 } include_def;
148 #define MAX_INCLUDES 5120
150 static include_def* include_defs = NULL;
151 static int num_include_def = 0;
152 static int num_alloc_include_def = 0;
153 static int cu_include_stack[MAX_INCLUDES];
154 static int cu_include_stk_idx = 0;
155 static struct symt** cu_vector = NULL;
156 static int cu_nrofentries = 0;
157 static struct symt_basic* stabs_basic[36];
159 static int stabs_new_include(const char* file, unsigned long val)
161 if (num_include_def == num_alloc_include_def)
163 num_alloc_include_def += 256;
164 if (!include_defs)
165 include_defs = HeapAlloc(GetProcessHeap(), 0,
166 sizeof(include_defs[0]) * num_alloc_include_def);
167 else
168 include_defs = HeapReAlloc(GetProcessHeap(), 0, include_defs,
169 sizeof(include_defs[0]) * num_alloc_include_def);
170 memset(include_defs + num_include_def, 0, sizeof(include_defs[0]) * 256);
172 include_defs[num_include_def].name = strcpy(HeapAlloc(GetProcessHeap(), 0, strlen(file) + 1), file);
173 include_defs[num_include_def].value = val;
174 include_defs[num_include_def].vector = NULL;
175 include_defs[num_include_def].nrofentries = 0;
177 return num_include_def++;
180 static int stabs_find_include(const char* file, unsigned long val)
182 int i;
184 for (i = 0; i < num_include_def; i++)
186 if (val == include_defs[i].value &&
187 strcmp(file, include_defs[i].name) == 0)
188 return i;
190 return -1;
193 static int stabs_add_include(int idx)
195 if (idx < 0) return -1;
196 cu_include_stk_idx++;
198 /* if this happens, just bump MAX_INCLUDES */
199 /* we could also handle this as another dynarray */
200 assert(cu_include_stk_idx < MAX_INCLUDES);
201 cu_include_stack[cu_include_stk_idx] = idx;
202 return cu_include_stk_idx;
205 static void stabs_reset_includes(void)
208 * The struct symt:s that we would need to use are reset when
209 * we start a new file. (at least the ones in filenr == 0)
211 cu_include_stk_idx = 0;/* keep 0 as index for the .c file itself */
212 memset(cu_vector, 0, sizeof(cu_vector[0]) * cu_nrofentries);
215 static void stabs_free_includes(void)
217 int i;
219 stabs_reset_includes();
220 for (i = 0; i < num_include_def; i++)
222 HeapFree(GetProcessHeap(), 0, include_defs[i].name);
223 HeapFree(GetProcessHeap(), 0, include_defs[i].vector);
225 HeapFree(GetProcessHeap(), 0, include_defs);
226 include_defs = NULL;
227 num_include_def = 0;
228 num_alloc_include_def = 0;
229 HeapFree(GetProcessHeap(), 0, cu_vector);
230 cu_vector = NULL;
231 cu_nrofentries = 0;
234 static struct symt** stabs_find_ref(long filenr, long subnr)
236 struct symt** ret;
238 /* FIXME: I could perhaps create a dummy include_def for each compilation
239 * unit which would allow not to handle those two cases separately
241 if (filenr == 0)
243 if (cu_nrofentries <= subnr)
245 if (!cu_vector)
246 cu_vector = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY,
247 sizeof(cu_vector[0]) * (subnr+1));
248 else
249 cu_vector = HeapReAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY,
250 cu_vector, sizeof(cu_vector[0]) * (subnr+1));
251 cu_nrofentries = subnr + 1;
253 ret = &cu_vector[subnr];
255 else
257 include_def* idef;
259 assert(filenr <= cu_include_stk_idx);
260 idef = &include_defs[cu_include_stack[filenr]];
262 if (idef->nrofentries <= subnr)
264 if (!idef->vector)
265 idef->vector = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY,
266 sizeof(idef->vector[0]) * (subnr+1));
267 else
268 idef->vector = HeapReAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY,
269 idef->vector, sizeof(idef->vector[0]) * (subnr+1));
270 idef->nrofentries = subnr + 1;
272 ret = &idef->vector[subnr];
274 TRACE("(%ld,%ld) => %p (%p)\n", filenr, subnr, ret, *ret);
275 return ret;
278 static struct symt** stabs_read_type_enum(const char** x)
280 long filenr, subnr;
281 const char* iter;
282 char* end;
284 iter = *x;
285 if (*iter == '(')
287 ++iter; /* '(' */
288 filenr = strtol(iter, &end, 10); /* <int> */
289 iter = ++end; /* ',' */
290 subnr = strtol(iter, &end, 10); /* <int> */
291 iter = ++end; /* ')' */
293 else
295 filenr = 0;
296 subnr = strtol(iter, &end, 10); /* <int> */
297 iter = end;
299 *x = iter;
300 return stabs_find_ref(filenr, subnr);
303 #define PTS_DEBUG
304 struct ParseTypedefData
306 const char* ptr;
307 char buf[1024];
308 int idx;
309 struct module* module;
310 #ifdef PTS_DEBUG
311 struct PTS_Error
313 const char* ptr;
314 unsigned line;
315 } errors[16];
316 int err_idx;
317 #endif
320 #ifdef PTS_DEBUG
321 static void stabs_pts_push(struct ParseTypedefData* ptd, unsigned line)
323 assert(ptd->err_idx < sizeof(ptd->errors) / sizeof(ptd->errors[0]));
324 ptd->errors[ptd->err_idx].line = line;
325 ptd->errors[ptd->err_idx].ptr = ptd->ptr;
326 ptd->err_idx++;
328 #define PTS_ABORTIF(ptd, t) do { if (t) { stabs_pts_push((ptd), __LINE__); return -1;} } while (0)
329 #else
330 #define PTS_ABORTIF(ptd, t) do { if (t) return -1; } while (0)
331 #endif
333 static int stabs_get_basic(struct ParseTypedefData* ptd, unsigned basic, struct symt** symt)
335 PTS_ABORTIF(ptd, basic >= sizeof(stabs_basic) / sizeof(stabs_basic[0]));
337 if (!stabs_basic[basic])
339 switch (basic)
341 case 1: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "int", 4); break;
342 case 2: stabs_basic[basic] = symt_new_basic(ptd->module, btChar, "char", 1); break;
343 case 3: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "short int", 2); break;
344 case 4: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "long int", 4); break;
345 case 5: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "unsigned char", 1); break;
346 case 6: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "signed char", 1); break;
347 case 7: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "unsigned short int", 2); break;
348 case 8: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "unsigned int", 4); break;
349 case 9: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "unsigned", 2); break;
350 case 10: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "unsigned long int", 2); break;
351 case 11: stabs_basic[basic] = symt_new_basic(ptd->module, btVoid, "void", 0); break;
352 case 12: stabs_basic[basic] = symt_new_basic(ptd->module, btFloat, "float", 4); break;
353 case 13: stabs_basic[basic] = symt_new_basic(ptd->module, btFloat, "double", 8); break;
354 case 14: stabs_basic[basic] = symt_new_basic(ptd->module, btFloat, "long double", 12); break;
355 case 15: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "integer", 4); break;
356 case 16: stabs_basic[basic] = symt_new_basic(ptd->module, btBool, "bool", 1); break;
357 /* case 17: short real */
358 /* case 18: real */
359 case 25: stabs_basic[basic] = symt_new_basic(ptd->module, btComplex, "float complex", 8); break;
360 case 26: stabs_basic[basic] = symt_new_basic(ptd->module, btComplex, "double complex", 16); break;
361 case 30: stabs_basic[basic] = symt_new_basic(ptd->module, btWChar, "wchar_t", 2); break;
362 case 31: stabs_basic[basic] = symt_new_basic(ptd->module, btInt, "long long int", 8); break;
363 case 32: stabs_basic[basic] = symt_new_basic(ptd->module, btUInt, "long long unsigned", 8); break;
364 /* starting at 35 are wine extensions (especially for R implementation) */
365 case 35: stabs_basic[basic] = symt_new_basic(ptd->module, btComplex, "long double complex", 24); break;
366 default: PTS_ABORTIF(ptd, 1);
369 *symt = &stabs_basic[basic]->symt;
370 return 0;
373 static int stabs_pts_read_type_def(struct ParseTypedefData* ptd,
374 const char* typename, struct symt** dt);
376 static int stabs_pts_read_id(struct ParseTypedefData* ptd)
378 const char* first = ptd->ptr;
379 unsigned int template = 0;
380 char ch;
382 while ((ch = *ptd->ptr++) != '\0')
384 switch (ch)
386 case ':':
387 if (template == 0)
389 unsigned int len = ptd->ptr - first - 1;
390 PTS_ABORTIF(ptd, len >= sizeof(ptd->buf) - ptd->idx);
391 memcpy(ptd->buf + ptd->idx, first, len);
392 ptd->buf[ptd->idx + len] = '\0';
393 ptd->idx += len + 1;
394 return 0;
396 break;
397 case '<': template++; break;
398 case '>': PTS_ABORTIF(ptd, template == 0); template--; break;
401 return -1;
404 static int stabs_pts_read_number(struct ParseTypedefData* ptd, long* v)
406 char* last;
408 *v = strtol(ptd->ptr, &last, 10);
409 PTS_ABORTIF(ptd, last == ptd->ptr);
410 ptd->ptr = last;
411 return 0;
414 static int stabs_pts_read_type_reference(struct ParseTypedefData* ptd,
415 long* filenr, long* subnr)
417 if (*ptd->ptr == '(')
419 /* '(' <int> ',' <int> ')' */
420 ptd->ptr++;
421 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, filenr) == -1);
422 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
423 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, subnr) == -1);
424 PTS_ABORTIF(ptd, *ptd->ptr++ != ')');
426 else
428 *filenr = 0;
429 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, subnr) == -1);
431 return 0;
434 struct pts_range_value
436 ULONGLONG val;
437 int sign;
440 static int stabs_pts_read_range_value(struct ParseTypedefData* ptd, struct pts_range_value* prv)
442 char* last;
444 switch (*ptd->ptr)
446 case '0':
447 while (*ptd->ptr == '0') ptd->ptr++;
448 if (*ptd->ptr >= '1' && *ptd->ptr <= '7')
450 switch (ptd->ptr[1])
452 case '0':
453 PTS_ABORTIF(ptd, ptd->ptr[0] != '1');
454 prv->sign = -1;
455 prv->val = 0;
456 while (isdigit(*ptd->ptr)) prv->val = (prv->val << 3) + *ptd->ptr++ - '0';
457 break;
458 case '7':
459 prv->sign = 1;
460 prv->val = 0;
461 while (isdigit(*ptd->ptr)) prv->val = (prv->val << 3) + *ptd->ptr++ - '0';
462 break;
463 default: PTS_ABORTIF(ptd, 1); break;
465 } else prv->sign = 0;
466 break;
467 case '-':
468 prv->sign = -1;
469 prv->val = strtoull(++ptd->ptr, &last, 10);
470 ptd->ptr = last;
471 break;
472 case '+':
473 default:
474 prv->sign = 1;
475 prv->val = strtoull(ptd->ptr, &last, 10);
476 ptd->ptr = last;
477 break;
479 return 0;
482 static int stabs_pts_read_range(struct ParseTypedefData* ptd, const char* typename,
483 struct symt** dt)
485 struct symt* ref;
486 struct pts_range_value lo;
487 struct pts_range_value hi;
488 unsigned size;
489 enum BasicType bt;
490 int i;
491 ULONGLONG v;
493 /* type ';' <int> ';' <int> ';' */
494 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &ref) == -1);
495 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
496 PTS_ABORTIF(ptd, stabs_pts_read_range_value(ptd, &lo) == -1);
497 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
498 PTS_ABORTIF(ptd, stabs_pts_read_range_value(ptd, &hi) == -1);
499 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
501 /* basically, we don't use ref... in some cases, for example, float is declared
502 * as a derivated type of int... which won't help us... so we guess the types
503 * from the various formats
505 if (lo.sign == 0 && hi.sign < 0)
507 bt = btUInt;
508 size = hi.val;
510 else if (lo.sign < 0 && hi.sign == 0)
512 bt = btUInt;
513 size = lo.val;
515 else if (lo.sign > 0 && hi.sign == 0)
517 bt = btFloat;
518 size = lo.val;
520 else if (lo.sign < 0 && hi.sign > 0)
522 v = 1 << 7;
523 for (i = 7; i < 64; i += 8)
525 if (lo.val == v && hi.val == v - 1)
527 bt = btInt;
528 size = (i + 1) / 8;
529 break;
531 v <<= 8;
533 PTS_ABORTIF(ptd, i >= 64);
535 else if (lo.sign == 0 && hi.sign > 0)
537 if (hi.val == 127) /* specific case for char... */
539 bt = btChar;
540 size = 1;
542 else
544 v = 1;
545 for (i = 8; i <= 64; i += 8)
547 v <<= 8;
548 if (hi.val + 1 == v)
550 bt = btUInt;
551 size = (i + 1) / 8;
552 break;
555 PTS_ABORTIF(ptd, i > 64);
558 else PTS_ABORTIF(ptd, 1);
560 *dt = &symt_new_basic(ptd->module, bt, typename, size)->symt;
561 return 0;
564 static inline int stabs_pts_read_method_info(struct ParseTypedefData* ptd)
566 struct symt* dt;
567 char* tmp;
568 char mthd;
572 /* get type of return value */
573 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
574 if (*ptd->ptr == ';') ptd->ptr++;
576 /* get types of parameters */
577 if (*ptd->ptr == ':')
579 PTS_ABORTIF(ptd, !(tmp = strchr(ptd->ptr + 1, ';')));
580 ptd->ptr = tmp + 1;
582 PTS_ABORTIF(ptd, !(*ptd->ptr >= '0' && *ptd->ptr <= '9'));
583 ptd->ptr++;
584 PTS_ABORTIF(ptd, !(ptd->ptr[0] >= 'A' && *ptd->ptr <= 'D'));
585 mthd = *++ptd->ptr;
586 PTS_ABORTIF(ptd, mthd != '.' && mthd != '?' && mthd != '*');
587 ptd->ptr++;
588 if (mthd == '*')
590 long int ofs;
591 struct symt* dt;
593 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &ofs) == -1);
594 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
595 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
596 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
598 } while (*ptd->ptr != ';');
599 ptd->ptr++;
601 return 0;
604 static inline int stabs_pts_read_aggregate(struct ParseTypedefData* ptd,
605 struct symt_udt* sdt)
607 long sz, ofs;
608 struct symt* adt;
609 struct symt* dt = NULL;
610 int idx;
611 int doadd;
613 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &sz) == -1);
615 doadd = symt_set_udt_size(ptd->module, sdt, sz);
616 if (*ptd->ptr == '!') /* C++ inheritence */
618 long num_classes;
620 ptd->ptr++;
621 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &num_classes) == -1);
622 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
623 while (--num_classes >= 0)
625 ptd->ptr += 2; /* skip visibility and inheritence */
626 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &ofs) == -1);
627 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
629 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &adt) == -1);
631 if (doadd)
633 char tmp[256];
634 WCHAR* name;
635 DWORD64 size;
637 symt_get_info(adt, TI_GET_SYMNAME, &name);
638 strcpy(tmp, "__inherited_class_");
639 WideCharToMultiByte(CP_ACP, 0, name, -1,
640 tmp + strlen(tmp), sizeof(tmp) - strlen(tmp),
641 NULL, NULL);
642 HeapFree(GetProcessHeap(), 0, name);
643 /* FIXME: TI_GET_LENGTH will not always work, especially when adt
644 * has just been seen as a forward definition and not the real stuff
645 * yet.
646 * As we don't use much the size of members in structs, this may not
647 * be much of a problem
649 symt_get_info(adt, TI_GET_LENGTH, &size);
650 symt_add_udt_element(ptd->module, sdt, tmp, adt, ofs, (DWORD)size * 8);
652 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
656 /* if the structure has already been filled, just redo the parsing
657 * but don't store results into the struct
658 * FIXME: there's a quite ugly memory leak in there...
661 /* Now parse the individual elements of the structure/union. */
662 while (*ptd->ptr != ';')
664 /* agg_name : type ',' <int:offset> ',' <int:size> */
665 idx = ptd->idx;
667 if (ptd->ptr[0] == '$' && ptd->ptr[1] == 'v')
669 long x;
671 if (ptd->ptr[2] == 'f')
673 /* C++ virtual method table */
674 ptd->ptr += 3;
675 stabs_read_type_enum(&ptd->ptr);
676 PTS_ABORTIF(ptd, *ptd->ptr++ != ':');
677 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
678 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
679 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &x) == -1);
680 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
681 ptd->idx = idx;
682 continue;
684 else if (ptd->ptr[2] == 'b')
686 ptd->ptr += 3;
687 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
688 PTS_ABORTIF(ptd, *ptd->ptr++ != ':');
689 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
690 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
691 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &x) == -1);
692 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
693 ptd->idx = idx;
694 continue;
698 PTS_ABORTIF(ptd, stabs_pts_read_id(ptd) == -1);
699 /* Ref. TSDF R2.130 Section 7.4. When the field name is a method name
700 * it is followed by two colons rather than one.
702 if (*ptd->ptr == ':')
704 ptd->ptr++;
705 stabs_pts_read_method_info(ptd);
706 ptd->idx = idx;
707 continue;
709 else
711 /* skip C++ member protection /0 /1 or /2 */
712 if (*ptd->ptr == '/') ptd->ptr += 2;
714 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &adt) == -1);
716 switch (*ptd->ptr++)
718 case ',':
719 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &ofs) == -1);
720 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
721 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &sz) == -1);
722 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
724 if (doadd) symt_add_udt_element(ptd->module, sdt, ptd->buf + idx, adt, ofs, sz);
725 break;
726 case ':':
728 char* tmp;
729 /* method parameters... terminated by ';' */
730 PTS_ABORTIF(ptd, !(tmp = strchr(ptd->ptr, ';')));
731 ptd->ptr = tmp + 1;
733 break;
734 default:
735 PTS_ABORTIF(ptd, TRUE);
737 ptd->idx = idx;
739 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
740 if (*ptd->ptr == '~')
742 ptd->ptr++;
743 PTS_ABORTIF(ptd, *ptd->ptr++ != '%');
744 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &dt) == -1);
745 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
747 return 0;
750 static inline int stabs_pts_read_enum(struct ParseTypedefData* ptd,
751 struct symt_enum* edt)
753 long value;
754 int idx;
756 while (*ptd->ptr != ';')
758 idx = ptd->idx;
759 PTS_ABORTIF(ptd, stabs_pts_read_id(ptd) == -1);
760 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &value) == -1);
761 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
762 symt_add_enum_element(ptd->module, edt, ptd->buf + idx, value);
763 ptd->idx = idx;
765 ptd->ptr++;
766 return 0;
769 static inline int stabs_pts_read_array(struct ParseTypedefData* ptd,
770 struct symt** adt)
772 long lo, hi;
773 struct symt* range_dt;
774 struct symt* base_dt;
776 /* ar<typeinfo_nodef>;<int>;<int>;<typeinfo> */
778 PTS_ABORTIF(ptd, *ptd->ptr++ != 'r');
780 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &range_dt) == -1);
781 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
782 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &lo) == -1);
783 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
784 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &hi) == -1);
785 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
787 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &base_dt) == -1);
789 *adt = &symt_new_array(ptd->module, lo, hi, base_dt, range_dt)->symt;
790 return 0;
793 static int stabs_pts_read_type_def(struct ParseTypedefData* ptd, const char* typename,
794 struct symt** ret_dt)
796 int idx;
797 long sz = -1;
798 struct symt* new_dt = NULL; /* newly created data type */
799 struct symt* ref_dt; /* referenced data type (pointer...) */
800 long filenr1, subnr1, tmp;
802 /* things are a bit complicated because of the way the typedefs are stored inside
803 * the file, because addresses can change when realloc is done, so we must call
804 * over and over stabs_find_ref() to keep the correct values around
806 PTS_ABORTIF(ptd, stabs_pts_read_type_reference(ptd, &filenr1, &subnr1) == -1);
808 while (*ptd->ptr == '=')
810 ptd->ptr++;
811 PTS_ABORTIF(ptd, new_dt != btNoType);
813 /* first handle attribute if any */
814 switch (*ptd->ptr)
816 case '@':
817 if (*++ptd->ptr == 's')
819 ptd->ptr++;
820 if (stabs_pts_read_number(ptd, &sz) == -1)
822 ERR("Not an attribute... NIY\n");
823 ptd->ptr -= 2;
824 return -1;
826 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
828 break;
830 /* then the real definitions */
831 switch (*ptd->ptr++)
833 case '*':
834 case '&':
835 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &ref_dt) == -1);
836 new_dt = &symt_new_pointer(ptd->module, ref_dt)->symt;
837 break;
838 case 'k': /* 'const' modifier */
839 case 'B': /* 'volatile' modifier */
840 /* just kinda ignore the modifier, I guess -gmt */
841 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, typename, &new_dt) == -1);
842 break;
843 case '(':
844 ptd->ptr--;
845 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, typename, &new_dt) == -1);
846 break;
847 case 'a':
848 PTS_ABORTIF(ptd, stabs_pts_read_array(ptd, &new_dt) == -1);
849 break;
850 case 'r':
851 PTS_ABORTIF(ptd, stabs_pts_read_range(ptd, typename, &new_dt) == -1);
852 assert(!*stabs_find_ref(filenr1, subnr1));
853 *stabs_find_ref(filenr1, subnr1) = new_dt;
854 break;
855 case 'f':
856 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &ref_dt) == -1);
857 new_dt = &symt_new_function_signature(ptd->module, ref_dt, -1)->symt;
858 break;
859 case 'e':
860 new_dt = &symt_new_enum(ptd->module, typename)->symt;
861 PTS_ABORTIF(ptd, stabs_pts_read_enum(ptd, (struct symt_enum*)new_dt) == -1);
862 break;
863 case 's':
864 case 'u':
866 struct symt_udt* udt;
867 enum UdtKind kind = (ptd->ptr[-1] == 's') ? UdtStruct : UdtUnion;
868 /* udt can have been already defined in a forward definition */
869 udt = (struct symt_udt*)*stabs_find_ref(filenr1, subnr1);
870 if (!udt)
872 udt = symt_new_udt(ptd->module, typename, 0, kind);
873 /* we need to set it here, because a struct can hold a pointer
874 * to itself
876 new_dt = *stabs_find_ref(filenr1, subnr1) = &udt->symt;
878 else
880 unsigned l1, l2;
881 if (udt->symt.tag != SymTagUDT)
883 ERR("Forward declaration (%p/%s) is not an aggregate (%u)\n",
884 udt, symt_get_name(&udt->symt), udt->symt.tag);
885 return -1;
887 /* FIXME: we currently don't correctly construct nested C++
888 * classes names. Therefore, we could be here with either:
889 * - typename and udt->hash_elt.name being the same string
890 * (non embedded case)
891 * - typename being foo::bar while udt->hash_elt.name being
892 * just bar
893 * So, we twist the comparison to test both occurrences. When
894 * we have proper C++ types in this file, this twist has to be
895 * removed
897 l1 = strlen(udt->hash_elt.name);
898 l2 = strlen(typename);
899 if (l1 > l2 || strcmp(udt->hash_elt.name, typename + l2 - l1))
900 ERR("Forward declaration name mismatch %s <> %s\n",
901 udt->hash_elt.name, typename);
902 new_dt = &udt->symt;
904 PTS_ABORTIF(ptd, stabs_pts_read_aggregate(ptd, udt) == -1);
906 break;
907 case 'x':
908 idx = ptd->idx;
909 tmp = *ptd->ptr++;
910 PTS_ABORTIF(ptd, stabs_pts_read_id(ptd) == -1);
911 switch (tmp)
913 case 'e':
914 new_dt = &symt_new_enum(ptd->module, ptd->buf + idx)->symt;
915 break;
916 case 's':
917 new_dt = &symt_new_udt(ptd->module, ptd->buf + idx, 0, UdtStruct)->symt;
918 break;
919 case 'u':
920 new_dt = &symt_new_udt(ptd->module, ptd->buf + idx, 0, UdtUnion)->symt;
921 break;
922 default:
923 return -1;
925 ptd->idx = idx;
926 break;
927 case '-':
929 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &tmp) == -1);
930 PTS_ABORTIF(ptd, stabs_get_basic(ptd, tmp, &new_dt) == -1);
931 PTS_ABORTIF(ptd, *ptd->ptr++ != ';');
933 break;
934 case '#':
935 if (*ptd->ptr == '#')
937 ptd->ptr++;
938 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &ref_dt) == -1);
939 new_dt = &symt_new_function_signature(ptd->module, ref_dt, -1)->symt;
941 else
943 struct symt* cls_dt;
944 struct symt* pmt_dt;
946 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &cls_dt) == -1);
947 PTS_ABORTIF(ptd, *ptd->ptr++ != ',');
948 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &ref_dt) == -1);
949 new_dt = &symt_new_function_signature(ptd->module, ref_dt, -1)->symt;
950 while (*ptd->ptr == ',')
952 ptd->ptr++;
953 PTS_ABORTIF(ptd, stabs_pts_read_type_def(ptd, NULL, &pmt_dt) == -1);
956 break;
957 case 'R':
959 long type, len, unk;
960 int basic;
962 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &type) == -1);
963 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
964 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &len) == -1);
965 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
966 PTS_ABORTIF(ptd, stabs_pts_read_number(ptd, &unk) == -1);
967 PTS_ABORTIF(ptd, *ptd->ptr++ != ';'); /* ';' */
969 switch (type) /* see stabs_get_basic for the details */
971 case 1: basic = 12; break;
972 case 2: basic = 13; break;
973 case 3: basic = 25; break;
974 case 4: basic = 26; break;
975 case 5: basic = 35; break;
976 case 6: basic = 14; break;
977 default: PTS_ABORTIF(ptd, 1);
979 PTS_ABORTIF(ptd, stabs_get_basic(ptd, basic, &new_dt) == -1);
981 break;
982 default:
983 ERR("Unknown type '%c'\n", ptd->ptr[-1]);
984 return -1;
988 if (!new_dt)
990 /* is it a forward declaration that has been filled ? */
991 new_dt = *stabs_find_ref(filenr1, subnr1);
992 /* if not, this should be void (which is defined as a ref to itself, but we
993 * don't correctly catch it)
995 if (!new_dt && typename)
997 new_dt = &symt_new_basic(ptd->module, btVoid, typename, 0)->symt;
998 PTS_ABORTIF(ptd, strcmp(typename, "void"));
1002 *stabs_find_ref(filenr1, subnr1) = *ret_dt = new_dt;
1004 TRACE("Adding (%ld,%ld) %s\n", filenr1, subnr1, typename);
1006 return 0;
1009 static int stabs_parse_typedef(struct module* module, const char* ptr,
1010 const char* typename)
1012 struct ParseTypedefData ptd;
1013 struct symt* dt;
1014 int ret = -1;
1016 /* check for already existing definition */
1018 TRACE("%s => %s\n", typename, debugstr_a(ptr));
1019 ptd.module = module;
1020 ptd.idx = 0;
1021 #ifdef PTS_DEBUG
1022 ptd.err_idx = 0;
1023 #endif
1024 for (ptd.ptr = ptr - 1; ;)
1026 ptd.ptr = strchr(ptd.ptr + 1, ':');
1027 if (ptd.ptr == NULL || *++ptd.ptr != ':') break;
1029 if (ptd.ptr)
1031 if (*ptd.ptr != '(') ptd.ptr++;
1032 /* most of type definitions take one char, except Tt */
1033 if (*ptd.ptr != '(') ptd.ptr++;
1034 ret = stabs_pts_read_type_def(&ptd, typename, &dt);
1037 if (ret == -1 || *ptd.ptr)
1039 #ifdef PTS_DEBUG
1040 int i;
1041 TRACE("Failure on %s\n", debugstr_a(ptr));
1042 if (ret == -1)
1044 for (i = 0; i < ptd.err_idx; i++)
1046 TRACE("[%d]: line %d => %s\n",
1047 i, ptd.errors[i].line, debugstr_a(ptd.errors[i].ptr));
1050 else
1051 TRACE("[0]: => %s\n", debugstr_a(ptd.ptr));
1053 #else
1054 ERR("Failure on %s at %s\n", debugstr_a(ptr), debugstr_a(ptd.ptr));
1055 #endif
1056 return FALSE;
1059 return TRUE;
1062 static struct symt* stabs_parse_type(const char* stab)
1064 const char* c = stab - 1;
1067 * Look through the stab definition, and figure out what struct symt
1068 * this represents. If we have something we know about, assign the
1069 * type.
1070 * According to "The \"stabs\" debug format" (Rev 2.130) the name may be
1071 * a C++ name and contain double colons e.g. foo::bar::baz:t5=*6.
1075 if ((c = strchr(c + 1, ':')) == NULL) return NULL;
1076 } while (*++c == ':');
1079 * The next characters say more about the type (i.e. data, function, etc)
1080 * of symbol. Skip them. (C++ for example may have Tt).
1081 * Actually this is a very weak description; I think Tt is the only
1082 * multiple combination we should see.
1084 while (*c && *c != '(' && !isdigit(*c))
1085 c++;
1087 * The next is either an integer or a (integer,integer).
1088 * The stabs_read_type_enum() takes care that stab_types is large enough.
1090 return *stabs_read_type_enum(&c);
1093 struct pending_loc_var
1095 char name[256];
1096 struct symt* type;
1097 enum DataKind kind;
1098 unsigned offset;
1099 unsigned regrel : 1,
1100 regno;
1103 struct pending_block
1105 struct pending_loc_var* vars;
1106 unsigned num;
1107 unsigned allocated;
1110 static inline void pending_add(struct pending_block* pending, const char* name,
1111 enum DataKind dt, int regno, BOOL regrel, long offset)
1113 if (pending->num == pending->allocated)
1115 pending->allocated += 8;
1116 if (!pending->vars)
1117 pending->vars = HeapAlloc(GetProcessHeap(), 0,
1118 pending->allocated * sizeof(pending->vars[0]));
1119 else
1120 pending->vars = HeapReAlloc(GetProcessHeap(), 0, pending->vars,
1121 pending->allocated * sizeof(pending->vars[0]));
1123 stab_strcpy(pending->vars[pending->num].name,
1124 sizeof(pending->vars[pending->num].name), name);
1125 pending->vars[pending->num].type = stabs_parse_type(name);
1126 pending->vars[pending->num].kind = dt;
1127 pending->vars[pending->num].offset = offset;
1128 pending->vars[pending->num].regno = regno;
1129 pending->vars[pending->num].regrel = regrel ? 1 : 0;
1130 pending->num++;
1133 static void pending_flush(struct pending_block* pending, struct module* module,
1134 struct symt_function* func, struct symt_block* block)
1136 int i;
1138 for (i = 0; i < pending->num; i++)
1140 symt_add_func_local(module, func,
1141 pending->vars[i].kind, pending->vars[i].regno,
1142 pending->vars[i].regrel, pending->vars[i].offset,
1143 block, pending->vars[i].type, pending->vars[i].name);
1145 pending->num = 0;
1148 /******************************************************************
1149 * stabs_finalize_function
1151 * Ends function creation: mainly:
1152 * - cleans up line number information
1153 * - tries to set up a debug-start tag (FIXME: heuristic to be enhanced)
1154 * - for stabs which have abolute address in them, initializes the size of the
1155 * function (assuming that current function ends where next function starts)
1157 static void stabs_finalize_function(struct module* module, struct symt_function* func,
1158 unsigned long size)
1160 IMAGEHLP_LINE il;
1162 if (!func) return;
1163 symt_normalize_function(module, func);
1164 /* To define the debug-start of the function, we use the second line number.
1165 * Not 100% bullet proof, but better than nothing
1167 if (symt_fill_func_line_info(module, func, func->address, &il) &&
1168 symt_get_func_line_next(module, &il))
1170 symt_add_function_point(module, func, SymTagFuncDebugStart,
1171 il.Address - func->address, NULL);
1173 if (size) func->size = size;
1176 BOOL stabs_parse(struct module* module, unsigned long load_offset,
1177 const void* pv_stab_ptr, int stablen,
1178 const char* strs, int strtablen)
1180 struct symt_function* curr_func = NULL;
1181 struct symt_block* block = NULL;
1182 struct symt_compiland* compiland = NULL;
1183 char srcpath[PATH_MAX]; /* path to directory source file is in */
1184 int i;
1185 int nstab;
1186 const char* ptr;
1187 char* stabbuff;
1188 unsigned int stabbufflen;
1189 const struct stab_nlist* stab_ptr = pv_stab_ptr;
1190 const char* strs_end;
1191 int strtabinc;
1192 char symname[4096];
1193 unsigned incl[32];
1194 int incl_stk = -1;
1195 int source_idx = -1;
1196 struct pending_block pending;
1197 BOOL ret = TRUE;
1199 nstab = stablen / sizeof(struct stab_nlist);
1200 strs_end = strs + strtablen;
1202 memset(srcpath, 0, sizeof(srcpath));
1203 memset(stabs_basic, 0, sizeof(stabs_basic));
1204 memset(&pending, 0, sizeof(pending));
1207 * Allocate a buffer into which we can build stab strings for cases
1208 * where the stab is continued over multiple lines.
1210 stabbufflen = 65536;
1211 stabbuff = HeapAlloc(GetProcessHeap(), 0, stabbufflen);
1213 strtabinc = 0;
1214 stabbuff[0] = '\0';
1215 for (i = 0; i < nstab; i++, stab_ptr++)
1217 ptr = strs + stab_ptr->n_un.n_strx;
1218 if ((ptr > strs_end) || (ptr + strlen(ptr) > strs_end))
1220 WARN("Bad stabs string %p\n", ptr);
1221 continue;
1223 if (*ptr != '\0' && (ptr[strlen(ptr) - 1] == '\\'))
1226 * Indicates continuation. Append this to the buffer, and go onto the
1227 * next record. Repeat the process until we find a stab without the
1228 * '/' character, as this indicates we have the whole thing.
1230 unsigned len = strlen(ptr);
1231 if (strlen(stabbuff) + len > stabbufflen)
1233 stabbufflen += 65536;
1234 stabbuff = HeapReAlloc(GetProcessHeap(), 0, stabbuff, stabbufflen);
1236 strncat(stabbuff, ptr, len - 1);
1237 continue;
1239 else if (stabbuff[0] != '\0')
1241 strcat(stabbuff, ptr);
1242 ptr = stabbuff;
1245 /* only symbol entries contain a typedef */
1246 switch (stab_ptr->n_type)
1248 case N_GSYM:
1249 case N_LCSYM:
1250 case N_STSYM:
1251 case N_RSYM:
1252 case N_LSYM:
1253 case N_ROSYM:
1254 case N_PSYM:
1255 if (strchr(ptr, '=') != NULL)
1258 * The stabs aren't in writable memory, so copy it over so we are
1259 * sure we can scribble on it.
1261 if (ptr != stabbuff)
1263 strcpy(stabbuff, ptr);
1264 ptr = stabbuff;
1266 stab_strcpy(symname, sizeof(symname), ptr);
1267 if (!stabs_parse_typedef(module, ptr, symname))
1269 /* skip this definition */
1270 stabbuff[0] = '\0';
1271 continue;
1276 switch (stab_ptr->n_type)
1278 case N_GSYM:
1280 * These are useless with ELF. They have no value, and you have to
1281 * read the normal symbol table to get the address. Thus we
1282 * ignore them, and when we process the normal symbol table
1283 * we should do the right thing.
1285 * With a.out or mingw, they actually do make some amount of sense.
1287 stab_strcpy(symname, sizeof(symname), ptr);
1288 symt_new_global_variable(module, compiland, symname, TRUE /* FIXME */,
1289 load_offset + stab_ptr->n_value, 0,
1290 stabs_parse_type(ptr));
1291 break;
1292 case N_LCSYM:
1293 case N_STSYM:
1294 /* These are static symbols and BSS symbols. */
1295 stab_strcpy(symname, sizeof(symname), ptr);
1296 symt_new_global_variable(module, compiland, symname, TRUE /* FIXME */,
1297 load_offset + stab_ptr->n_value, 0,
1298 stabs_parse_type(ptr));
1299 break;
1300 case N_LBRAC:
1301 if (curr_func)
1303 block = symt_open_func_block(module, curr_func, block,
1304 stab_ptr->n_value, 0);
1305 pending_flush(&pending, module, curr_func, block);
1307 break;
1308 case N_RBRAC:
1309 if (curr_func)
1310 block = symt_close_func_block(module, curr_func, block,
1311 stab_ptr->n_value);
1312 break;
1313 case N_PSYM:
1314 /* These are function parameters. */
1315 if (curr_func != NULL)
1317 struct symt* param_type = stabs_parse_type(ptr);
1318 stab_strcpy(symname, sizeof(symname), ptr);
1319 symt_add_func_local(module, curr_func,
1320 stab_ptr->n_value > 0 ? DataIsParam : DataIsLocal,
1321 0, TRUE, stab_ptr->n_value, NULL, param_type, symname);
1322 symt_add_function_signature_parameter(module,
1323 (struct symt_function_signature*)curr_func->type,
1324 param_type);
1326 break;
1327 case N_RSYM:
1328 /* These are registers (as local variables) */
1329 if (curr_func != NULL)
1331 unsigned reg;
1333 switch (stab_ptr->n_value)
1335 case 0: reg = CV_REG_EAX; break;
1336 case 1: reg = CV_REG_ECX; break;
1337 case 2: reg = CV_REG_EDX; break;
1338 case 3: reg = CV_REG_EBX; break;
1339 case 4: reg = CV_REG_ESP; break;
1340 case 5: reg = CV_REG_EBP; break;
1341 case 6: reg = CV_REG_ESI; break;
1342 case 7: reg = CV_REG_EDI; break;
1343 case 11:
1344 case 12:
1345 case 13:
1346 case 14:
1347 case 15:
1348 case 16:
1349 case 17:
1350 case 18:
1351 case 19: reg = CV_REG_ST0 + stab_ptr->n_value - 12; break;
1352 default:
1353 FIXME("Unknown register value (%lu)\n", stab_ptr->n_value);
1354 reg = CV_REG_NONE;
1355 break;
1357 stab_strcpy(symname, sizeof(symname), ptr);
1358 if (ptr[strlen(symname) + 1] == 'P')
1360 struct symt* param_type = stabs_parse_type(ptr);
1361 stab_strcpy(symname, sizeof(symname), ptr);
1362 symt_add_func_local(module, curr_func, DataIsParam, reg, FALSE, 0,
1363 NULL, param_type, symname);
1364 symt_add_function_signature_parameter(module,
1365 (struct symt_function_signature*)curr_func->type,
1366 param_type);
1368 else
1369 pending_add(&pending, ptr, DataIsLocal, reg, FALSE, 0);
1371 break;
1372 case N_LSYM:
1373 /* These are local variables */
1374 if (curr_func != NULL) pending_add(&pending, ptr, DataIsLocal, 0, TRUE, stab_ptr->n_value);
1375 break;
1376 case N_SLINE:
1378 * This is a line number. These are always relative to the start
1379 * of the function (N_FUN), and this makes the lookup easier.
1381 if (curr_func != NULL)
1383 assert(source_idx >= 0);
1384 symt_add_func_line(module, curr_func, source_idx,
1385 stab_ptr->n_desc, stab_ptr->n_value);
1387 break;
1388 case N_FUN:
1390 * For now, just declare the various functions. Later
1391 * on, we will add the line number information and the
1392 * local symbols.
1395 * Copy the string to a temp buffer so we
1396 * can kill everything after the ':'. We do
1397 * it this way because otherwise we end up dirtying
1398 * all of the pages related to the stabs, and that
1399 * sucks up swap space like crazy.
1401 stab_strcpy(symname, sizeof(symname), ptr);
1402 if (*symname)
1404 struct symt_function_signature* func_type;
1406 if (curr_func)
1408 /* First, clean up the previous function we were working on.
1409 * Assume size of the func is the delta between current offset
1410 * and offset of last function
1412 stabs_finalize_function(module, curr_func,
1413 stab_ptr->n_value ?
1414 (load_offset + stab_ptr->n_value - curr_func->address) : 0);
1416 func_type = symt_new_function_signature(module,
1417 stabs_parse_type(ptr), -1);
1418 curr_func = symt_new_function(module, compiland, symname,
1419 load_offset + stab_ptr->n_value, 0,
1420 &func_type->symt);
1422 else
1424 /* some versions of GCC to use a N_FUN "" to mark the end of a function
1425 * and n_value contains the size of the func
1427 stabs_finalize_function(module, curr_func, stab_ptr->n_value);
1428 curr_func = NULL;
1430 break;
1431 case N_SO:
1433 * This indicates a new source file. Append the records
1434 * together, to build the correct path name.
1436 if (*ptr == '\0') /* end of N_SO file */
1438 /* Nuke old path. */
1439 srcpath[0] = '\0';
1440 stabs_finalize_function(module, curr_func, 0);
1441 curr_func = NULL;
1442 source_idx = -1;
1443 incl_stk = -1;
1444 assert(block == NULL);
1445 compiland = NULL;
1447 else
1449 int len = strlen(ptr);
1450 if (ptr[len-1] != '/')
1452 stabs_reset_includes();
1453 source_idx = source_new(module, srcpath, ptr);
1454 compiland = symt_new_compiland(module, source_idx);
1456 else
1457 strcpy(srcpath, ptr);
1459 break;
1460 case N_SOL:
1461 source_idx = source_new(module, srcpath, ptr);
1462 break;
1463 case N_UNDF:
1464 strs += strtabinc;
1465 strtabinc = stab_ptr->n_value;
1466 /* I'm not sure this is needed, so trace it before we obsolete it */
1467 if (curr_func)
1469 FIXME("UNDF: curr_func %s\n", curr_func->hash_elt.name);
1470 stabs_finalize_function(module, curr_func, 0); /* FIXME */
1471 curr_func = NULL;
1473 break;
1474 case N_OPT:
1475 /* Ignore this. We don't care what it points to. */
1476 break;
1477 case N_BINCL:
1478 stabs_add_include(stabs_new_include(ptr, stab_ptr->n_value));
1479 assert(incl_stk < (int)(sizeof(incl) / sizeof(incl[0])) - 1);
1480 incl[++incl_stk] = source_idx;
1481 source_idx = source_new(module, NULL, ptr);
1482 break;
1483 case N_EINCL:
1484 assert(incl_stk >= 0);
1485 source_idx = incl[incl_stk--];
1486 break;
1487 case N_EXCL:
1488 if (stabs_add_include(stabs_find_include(ptr, stab_ptr->n_value)) < 0)
1490 ERR("Excluded header not found (%s,%ld)\n", ptr, stab_ptr->n_value);
1491 module_reset_debug_info(module);
1492 ret = FALSE;
1493 goto done;
1495 break;
1496 case N_MAIN:
1497 /* Always ignore these. GCC doesn't even generate them. */
1498 break;
1499 case N_BNSYM:
1500 case N_ENSYM:
1501 /* Always ignore these, they seem to be used only on Darwin. */
1502 break;
1503 default:
1504 ERR("Unknown stab type 0x%02x\n", stab_ptr->n_type);
1505 break;
1507 stabbuff[0] = '\0';
1508 TRACE("0x%02x %lx %s\n",
1509 stab_ptr->n_type, stab_ptr->n_value, debugstr_a(strs + stab_ptr->n_un.n_strx));
1511 module->module.SymType = SymDia;
1512 module->module.CVSig = 'S' | ('T' << 8) | ('A' << 16) | ('B' << 24);
1513 /* FIXME: we could have a finer grain here */
1514 module->module.LineNumbers = TRUE;
1515 module->module.GlobalSymbols = TRUE;
1516 module->module.TypeInfo = TRUE;
1517 module->module.SourceIndexed = TRUE;
1518 module->module.Publics = TRUE;
1519 done:
1520 HeapFree(GetProcessHeap(), 0, stabbuff);
1521 stabs_free_includes();
1522 HeapFree(GetProcessHeap(), 0, pending.vars);
1524 return ret;