2 * File elf.c - processing of ELF files
4 * Copyright (C) 1996, Eric Youngdale.
5 * 1999-2007 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
23 #include "wine/port.h"
25 #if defined(__svr4__) || defined(__sun)
27 /* large files are not supported by libelf */
28 #undef _FILE_OFFSET_BITS
29 #define _FILE_OFFSET_BITS 32
35 #ifdef HAVE_SYS_STAT_H
36 # include <sys/stat.h>
39 #ifdef HAVE_SYS_MMAN_H
46 #include "dbghelp_private.h"
49 #include "image_private.h"
51 #include "wine/library.h"
52 #include "wine/debug.h"
56 #define ELF_INFO_DEBUG_HEADER 0x0001
57 #define ELF_INFO_MODULE 0x0002
58 #define ELF_INFO_NAME 0x0004
60 #ifndef NT_GNU_BUILD_ID
61 #define NT_GNU_BUILD_ID 3
64 #ifndef HAVE_STRUCT_R_DEBUG
68 struct link_map
*r_map
;
78 #endif /* HAVE_STRUCT_R_DEBUG */
80 #ifndef HAVE_STRUCT_LINK_MAP
86 struct link_map
*l_next
, *l_prev
;
88 #endif /* HAVE_STRUCT_LINK_MAP */
90 WINE_DEFAULT_DEBUG_CHANNEL(dbghelp
);
94 unsigned flags
; /* IN one (or several) of the ELF_INFO constants */
95 DWORD_PTR dbg_hdr_addr
; /* OUT address of debug header (if ELF_INFO_DEBUG_HEADER is set) */
96 struct module
* module
; /* OUT loaded module (if ELF_INFO_MODULE is set) */
97 const WCHAR
* module_name
; /* OUT found module name (if ELF_INFO_NAME is set) */
102 struct hash_table_elt ht_elt
;
104 struct symt_compiland
* compiland
;
108 struct elf_thunk_area
111 THUNK_ORDINAL ordinal
;
112 unsigned long rva_start
;
113 unsigned long rva_end
;
116 struct elf_module_info
118 unsigned long elf_addr
;
119 unsigned short elf_mark
: 1,
121 struct image_file_map file_map
;
124 /******************************************************************
127 * Maps a single section into memory from an ELF file
129 const char* elf_map_section(struct image_section_map
* ism
)
131 struct elf_file_map
* fmap
= &ism
->fmap
->u
.elf
;
132 size_t ofst
, size
, pgsz
= sysconf( _SC_PAGESIZE
);
134 assert(ism
->fmap
->modtype
== DMT_ELF
);
135 if (ism
->sidx
< 0 || ism
->sidx
>= ism
->fmap
->u
.elf
.elfhdr
.e_shnum
||
136 fmap
->sect
[ism
->sidx
].shdr
.sh_type
== SHT_NOBITS
)
139 if (fmap
->target_copy
)
141 return fmap
->target_copy
+ fmap
->sect
[ism
->sidx
].shdr
.sh_offset
;
143 /* align required information on page size (we assume pagesize is a power of 2) */
144 ofst
= fmap
->sect
[ism
->sidx
].shdr
.sh_offset
& ~(pgsz
- 1);
145 size
= ((fmap
->sect
[ism
->sidx
].shdr
.sh_offset
+
146 fmap
->sect
[ism
->sidx
].shdr
.sh_size
+ pgsz
- 1) & ~(pgsz
- 1)) - ofst
;
147 fmap
->sect
[ism
->sidx
].mapped
= mmap(NULL
, size
, PROT_READ
, MAP_PRIVATE
,
149 if (fmap
->sect
[ism
->sidx
].mapped
== IMAGE_NO_MAP
) return IMAGE_NO_MAP
;
150 return fmap
->sect
[ism
->sidx
].mapped
+ (fmap
->sect
[ism
->sidx
].shdr
.sh_offset
& (pgsz
- 1));
153 /******************************************************************
156 * Finds a section by name (and type) into memory from an ELF file
157 * or its alternate if any
159 BOOL
elf_find_section(struct image_file_map
* _fmap
, const char* name
,
160 unsigned sht
, struct image_section_map
* ism
)
162 struct elf_file_map
* fmap
;
167 fmap
= &_fmap
->u
.elf
;
168 if (fmap
->shstrtab
== IMAGE_NO_MAP
)
170 struct image_section_map hdr_ism
= {_fmap
, fmap
->elfhdr
.e_shstrndx
};
171 if ((fmap
->shstrtab
= elf_map_section(&hdr_ism
)) == IMAGE_NO_MAP
) break;
173 for (i
= 0; i
< fmap
->elfhdr
.e_shnum
; i
++)
175 if (strcmp(fmap
->shstrtab
+ fmap
->sect
[i
].shdr
.sh_name
, name
) == 0 &&
176 (sht
== SHT_NULL
|| sht
== fmap
->sect
[i
].shdr
.sh_type
))
183 _fmap
= fmap
->alternate
;
190 /******************************************************************
193 * Unmaps a single section from memory
195 void elf_unmap_section(struct image_section_map
* ism
)
197 struct elf_file_map
* fmap
= &ism
->fmap
->u
.elf
;
199 if (ism
->sidx
>= 0 && ism
->sidx
< fmap
->elfhdr
.e_shnum
&& !fmap
->target_copy
&&
200 fmap
->sect
[ism
->sidx
].mapped
!= IMAGE_NO_MAP
)
202 size_t pgsz
= sysconf( _SC_PAGESIZE
);
203 size_t ofst
= fmap
->sect
[ism
->sidx
].shdr
.sh_offset
& ~(pgsz
- 1);
204 size_t size
= ((fmap
->sect
[ism
->sidx
].shdr
.sh_offset
+
205 fmap
->sect
[ism
->sidx
].shdr
.sh_size
+ pgsz
- 1) & ~(pgsz
- 1)) - ofst
;
206 if (munmap((char*)fmap
->sect
[ism
->sidx
].mapped
, size
) < 0)
207 WARN("Couldn't unmap the section\n");
208 fmap
->sect
[ism
->sidx
].mapped
= IMAGE_NO_MAP
;
212 static void elf_end_find(struct image_file_map
* fmap
)
214 struct image_section_map ism
;
219 ism
.sidx
= fmap
->u
.elf
.elfhdr
.e_shstrndx
;
220 elf_unmap_section(&ism
);
221 fmap
->u
.elf
.shstrtab
= IMAGE_NO_MAP
;
222 fmap
= fmap
->u
.elf
.alternate
;
226 /******************************************************************
229 * Get the RVA of an ELF section
231 DWORD_PTR
elf_get_map_rva(const struct image_section_map
* ism
)
233 if (ism
->sidx
< 0 || ism
->sidx
>= ism
->fmap
->u
.elf
.elfhdr
.e_shnum
)
235 return ism
->fmap
->u
.elf
.sect
[ism
->sidx
].shdr
.sh_addr
- ism
->fmap
->u
.elf
.elf_start
;
238 /******************************************************************
241 * Get the size of an ELF section
243 unsigned elf_get_map_size(const struct image_section_map
* ism
)
245 if (ism
->sidx
< 0 || ism
->sidx
>= ism
->fmap
->u
.elf
.elfhdr
.e_shnum
)
247 return ism
->fmap
->u
.elf
.sect
[ism
->sidx
].shdr
.sh_size
;
250 static inline void elf_reset_file_map(struct image_file_map
* fmap
)
253 fmap
->u
.elf
.shstrtab
= IMAGE_NO_MAP
;
254 fmap
->u
.elf
.alternate
= NULL
;
255 fmap
->u
.elf
.target_copy
= NULL
;
258 struct elf_map_file_data
260 enum {from_file
, from_process
} kind
;
265 const WCHAR
* filename
;
275 static BOOL
elf_map_file_read(struct image_file_map
* fmap
, struct elf_map_file_data
* emfd
,
276 void* buf
, size_t len
, off_t off
)
283 return pread(fmap
->u
.elf
.fd
, buf
, len
, off
) == len
;
285 return ReadProcessMemory(emfd
->u
.process
.handle
,
286 (void*)((unsigned long)emfd
->u
.process
.load_addr
+ (unsigned long)off
),
287 buf
, len
, &dw
) && dw
== len
;
294 /******************************************************************
297 * Maps an ELF file into memory (and checks it's a real ELF file)
299 static BOOL
elf_map_file(struct elf_map_file_data
* emfd
, struct image_file_map
* fmap
)
301 static const BYTE elf_signature
[4] = { ELFMAG0
, ELFMAG1
, ELFMAG2
, ELFMAG3
};
305 size_t tmp
, page_mask
= sysconf( _SC_PAGESIZE
) - 1;
313 len
= WideCharToMultiByte(CP_UNIXCP
, 0, emfd
->u
.file
.filename
, -1, NULL
, 0, NULL
, NULL
);
314 if (!(filename
= HeapAlloc(GetProcessHeap(), 0, len
))) return FALSE
;
315 WideCharToMultiByte(CP_UNIXCP
, 0, emfd
->u
.file
.filename
, -1, filename
, len
, NULL
, NULL
);
324 elf_reset_file_map(fmap
);
326 fmap
->modtype
= DMT_ELF
;
328 fmap
->u
.elf
.target_copy
= NULL
;
333 /* check that the file exists, and that the module hasn't been loaded yet */
334 if (stat(filename
, &statbuf
) == -1 || S_ISDIR(statbuf
.st_mode
)) goto done
;
336 /* Now open the file, so that we can mmap() it. */
337 if ((fmap
->u
.elf
.fd
= open(filename
, O_RDONLY
)) == -1) goto done
;
342 if (!elf_map_file_read(fmap
, emfd
, &fmap
->u
.elf
.elfhdr
, sizeof(fmap
->u
.elf
.elfhdr
), 0))
345 /* and check for an ELF header */
346 if (memcmp(fmap
->u
.elf
.elfhdr
.e_ident
,
347 elf_signature
, sizeof(elf_signature
))) goto done
;
348 /* and check 32 vs 64 size according to current machine */
350 if (fmap
->u
.elf
.elfhdr
.e_ident
[EI_CLASS
] != ELFCLASS64
) goto done
;
352 if (fmap
->u
.elf
.elfhdr
.e_ident
[EI_CLASS
] != ELFCLASS32
) goto done
;
354 fmap
->addr_size
= fmap
->u
.elf
.elfhdr
.e_ident
[EI_CLASS
] == ELFCLASS64
? 64 : 32;
355 fmap
->u
.elf
.sect
= HeapAlloc(GetProcessHeap(), 0,
356 fmap
->u
.elf
.elfhdr
.e_shnum
* sizeof(fmap
->u
.elf
.sect
[0]));
357 if (!fmap
->u
.elf
.sect
) goto done
;
359 for (i
= 0; i
< fmap
->u
.elf
.elfhdr
.e_shnum
; i
++)
361 if (!elf_map_file_read(fmap
, emfd
, &fmap
->u
.elf
.sect
[i
].shdr
, sizeof(fmap
->u
.elf
.sect
[i
].shdr
),
362 fmap
->u
.elf
.elfhdr
.e_shoff
+ i
* sizeof(fmap
->u
.elf
.sect
[i
].shdr
)))
364 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.sect
);
365 fmap
->u
.elf
.sect
= NULL
;
368 fmap
->u
.elf
.sect
[i
].mapped
= IMAGE_NO_MAP
;
371 /* grab size of module once loaded in memory */
372 fmap
->u
.elf
.elf_size
= 0;
373 fmap
->u
.elf
.elf_start
= ~0L;
374 for (i
= 0; i
< fmap
->u
.elf
.elfhdr
.e_phnum
; i
++)
376 if (elf_map_file_read(fmap
, emfd
, &phdr
, sizeof(phdr
),
377 fmap
->u
.elf
.elfhdr
.e_phoff
+ i
* sizeof(phdr
)) &&
378 phdr
.p_type
== PT_LOAD
)
380 tmp
= (phdr
.p_vaddr
+ phdr
.p_memsz
+ page_mask
) & ~page_mask
;
381 if (fmap
->u
.elf
.elf_size
< tmp
) fmap
->u
.elf
.elf_size
= tmp
;
382 if (phdr
.p_vaddr
< fmap
->u
.elf
.elf_start
) fmap
->u
.elf
.elf_start
= phdr
.p_vaddr
;
385 /* if non relocatable ELF, then remove fixed address from computation
386 * otherwise, all addresses are zero based and start has no effect
388 fmap
->u
.elf
.elf_size
-= fmap
->u
.elf
.elf_start
;
392 case from_file
: break;
394 if (!(fmap
->u
.elf
.target_copy
= HeapAlloc(GetProcessHeap(), 0, fmap
->u
.elf
.elf_size
)))
396 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.sect
);
399 if (!ReadProcessMemory(emfd
->u
.process
.handle
, emfd
->u
.process
.load_addr
, fmap
->u
.elf
.target_copy
,
400 fmap
->u
.elf
.elf_size
, NULL
))
402 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.target_copy
);
403 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.sect
);
410 HeapFree(GetProcessHeap(), 0, filename
);
414 /******************************************************************
417 * Unmaps an ELF file from memory (previously mapped with elf_map_file)
419 static void elf_unmap_file(struct image_file_map
* fmap
)
423 if (fmap
->u
.elf
.fd
!= -1)
425 struct image_section_map ism
;
427 for (ism
.sidx
= 0; ism
.sidx
< fmap
->u
.elf
.elfhdr
.e_shnum
; ism
.sidx
++)
429 elf_unmap_section(&ism
);
431 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.sect
);
432 close(fmap
->u
.elf
.fd
);
434 HeapFree(GetProcessHeap(), 0, fmap
->u
.elf
.target_copy
);
435 fmap
= fmap
->u
.elf
.alternate
;
439 static void elf_module_remove(struct process
* pcs
, struct module_format
* modfmt
)
441 elf_unmap_file(&modfmt
->u
.elf_info
->file_map
);
442 HeapFree(GetProcessHeap(), 0, modfmt
);
445 /******************************************************************
446 * elf_is_in_thunk_area
448 * Check whether an address lies within one of the thunk area we
451 int elf_is_in_thunk_area(unsigned long addr
,
452 const struct elf_thunk_area
* thunks
)
456 if (thunks
) for (i
= 0; thunks
[i
].symname
; i
++)
458 if (addr
>= thunks
[i
].rva_start
&& addr
< thunks
[i
].rva_end
)
464 /******************************************************************
467 * creating an internal hash table to ease use ELF symtab information lookup
469 static void elf_hash_symtab(struct module
* module
, struct pool
* pool
,
470 struct hash_table
* ht_symtab
, struct image_file_map
* fmap
,
471 struct elf_thunk_area
* thunks
)
476 struct symt_compiland
* compiland
= NULL
;
479 struct symtab_elt
* ste
;
480 struct image_section_map ism
, ism_str
;
482 if (!elf_find_section(fmap
, ".symtab", SHT_SYMTAB
, &ism
) &&
483 !elf_find_section(fmap
, ".dynsym", SHT_DYNSYM
, &ism
)) return;
484 if ((symp
= (const Elf_Sym
*)image_map_section(&ism
)) == IMAGE_NO_MAP
) return;
485 ism_str
.fmap
= ism
.fmap
;
486 ism_str
.sidx
= fmap
->u
.elf
.sect
[ism
.sidx
].shdr
.sh_link
;
487 if ((strp
= image_map_section(&ism_str
)) == IMAGE_NO_MAP
)
489 image_unmap_section(&ism
);
493 nsym
= image_get_map_size(&ism
) / sizeof(*symp
);
495 for (j
= 0; thunks
[j
].symname
; j
++)
496 thunks
[j
].rva_start
= thunks
[j
].rva_end
= 0;
498 for (i
= 0; i
< nsym
; i
++, symp
++)
500 /* Ignore certain types of entries which really aren't of that much
503 if ((ELF32_ST_TYPE(symp
->st_info
) != STT_NOTYPE
&&
504 ELF32_ST_TYPE(symp
->st_info
) != STT_FILE
&&
505 ELF32_ST_TYPE(symp
->st_info
) != STT_OBJECT
&&
506 ELF32_ST_TYPE(symp
->st_info
) != STT_FUNC
) ||
507 symp
->st_shndx
== SHN_UNDEF
)
512 symname
= strp
+ symp
->st_name
;
514 /* handle some specific symtab (that we'll throw away when done) */
515 switch (ELF32_ST_TYPE(symp
->st_info
))
519 compiland
= symt_new_compiland(module
, symp
->st_value
,
520 source_new(module
, NULL
, symname
));
525 /* we are only interested in wine markers inserted by winebuild */
526 for (j
= 0; thunks
[j
].symname
; j
++)
528 if (!strcmp(symname
, thunks
[j
].symname
))
530 thunks
[j
].rva_start
= symp
->st_value
;
531 thunks
[j
].rva_end
= symp
->st_value
+ symp
->st_size
;
538 /* FIXME: we don't need to handle them (GCC internals)
539 * Moreover, they screw up our symbol lookup :-/
541 if (symname
[0] == '.' && symname
[1] == 'L' && isdigit(symname
[2]))
544 ste
= pool_alloc(pool
, sizeof(*ste
));
545 ste
->ht_elt
.name
= symname
;
546 /* GCC emits, in some cases, a .<digit>+ suffix.
547 * This is used for static variable inside functions, so
548 * that we can have several such variables with same name in
549 * the same compilation unit
550 * We simply ignore that suffix when present (we also get rid
551 * of it in stabs parsing)
553 ptr
= symname
+ strlen(symname
) - 1;
556 while (isdigit(*ptr
) && ptr
>= symname
) ptr
--;
557 if (ptr
> symname
&& *ptr
== '.')
559 char* n
= pool_alloc(pool
, ptr
- symname
+ 1);
560 memcpy(n
, symname
, ptr
- symname
+ 1);
561 n
[ptr
- symname
] = '\0';
562 ste
->ht_elt
.name
= n
;
566 ste
->compiland
= compiland
;
568 hash_table_add(ht_symtab
, &ste
->ht_elt
);
570 /* as we added in the ht_symtab pointers to the symbols themselves,
571 * we cannot unmap yet the sections, it will be done when we're over
576 /******************************************************************
579 * lookup a symbol by name in our internal hash table for the symtab
581 static const Elf_Sym
* elf_lookup_symtab(const struct module
* module
,
582 const struct hash_table
* ht_symtab
,
583 const char* name
, const struct symt
* compiland
)
585 struct symtab_elt
* weak_result
= NULL
; /* without compiland name */
586 struct symtab_elt
* result
= NULL
;
587 struct hash_table_iter hti
;
588 struct symtab_elt
* ste
;
589 const char* compiland_name
;
590 const char* compiland_basename
;
593 /* we need weak match up (at least) when symbols of same name,
594 * defined several times in different compilation units,
595 * are merged in a single one (hence a different filename for c.u.)
599 compiland_name
= source_get(module
,
600 ((const struct symt_compiland
*)compiland
)->source
);
601 compiland_basename
= strrchr(compiland_name
, '/');
602 if (!compiland_basename
++) compiland_basename
= compiland_name
;
604 else compiland_name
= compiland_basename
= NULL
;
606 hash_table_iter_init(ht_symtab
, &hti
, name
);
607 while ((ste
= hash_table_iter_up(&hti
)))
609 if (ste
->used
|| strcmp(ste
->ht_elt
.name
, name
)) continue;
612 if ((ste
->compiland
&& !compiland_name
) || (!ste
->compiland
&& compiland_name
))
614 if (ste
->compiland
&& compiland_name
)
616 const char* filename
= source_get(module
, ste
->compiland
->source
);
617 if (strcmp(filename
, compiland_name
))
619 base
= strrchr(filename
, '/');
620 if (!base
++) base
= filename
;
621 if (strcmp(base
, compiland_basename
)) continue;
626 FIXME("Already found symbol %s (%s) in symtab %s @%08x and %s @%08x\n",
627 name
, compiland_name
,
628 source_get(module
, result
->compiland
->source
), (unsigned int)result
->symp
->st_value
,
629 source_get(module
, ste
->compiland
->source
), (unsigned int)ste
->symp
->st_value
);
637 if (!result
&& !(result
= weak_result
))
639 FIXME("Couldn't find symbol %s!%s in symtab\n",
640 debugstr_w(module
->module
.ModuleName
), name
);
646 /******************************************************************
647 * elf_finish_stabs_info
649 * - get any relevant information (address & size) from the bits we got from the
650 * stabs debugging information
652 static void elf_finish_stabs_info(struct module
* module
, const struct hash_table
* symtab
)
654 struct hash_table_iter hti
;
658 struct elf_module_info
* elf_info
= module
->format_info
[DFI_ELF
]->u
.elf_info
;
660 hash_table_iter_init(&module
->ht_symbols
, &hti
, NULL
);
661 while ((ptr
= hash_table_iter_up(&hti
)))
663 sym
= CONTAINING_RECORD(ptr
, struct symt_ht
, hash_elt
);
664 switch (sym
->symt
.tag
)
667 if (((struct symt_function
*)sym
)->address
!= elf_info
->elf_addr
&&
668 ((struct symt_function
*)sym
)->size
)
672 symp
= elf_lookup_symtab(module
, symtab
, sym
->hash_elt
.name
,
673 ((struct symt_function
*)sym
)->container
);
676 if (((struct symt_function
*)sym
)->address
!= elf_info
->elf_addr
&&
677 ((struct symt_function
*)sym
)->address
!= elf_info
->elf_addr
+ symp
->st_value
)
678 FIXME("Changing address for %p/%s!%s from %08lx to %08lx\n",
679 sym
, debugstr_w(module
->module
.ModuleName
), sym
->hash_elt
.name
,
680 ((struct symt_function
*)sym
)->address
, elf_info
->elf_addr
+ symp
->st_value
);
681 if (((struct symt_function
*)sym
)->size
&& ((struct symt_function
*)sym
)->size
!= symp
->st_size
)
682 FIXME("Changing size for %p/%s!%s from %08lx to %08x\n",
683 sym
, debugstr_w(module
->module
.ModuleName
), sym
->hash_elt
.name
,
684 ((struct symt_function
*)sym
)->size
, (unsigned int)symp
->st_size
);
686 ((struct symt_function
*)sym
)->address
= elf_info
->elf_addr
+ symp
->st_value
;
687 ((struct symt_function
*)sym
)->size
= symp
->st_size
;
689 FIXME("Couldn't find %s!%s\n",
690 debugstr_w(module
->module
.ModuleName
), sym
->hash_elt
.name
);
693 switch (((struct symt_data
*)sym
)->kind
)
696 case DataIsFileStatic
:
697 if (((struct symt_data
*)sym
)->u
.var
.kind
!= loc_absolute
||
698 ((struct symt_data
*)sym
)->u
.var
.offset
!= elf_info
->elf_addr
)
700 symp
= elf_lookup_symtab(module
, symtab
, sym
->hash_elt
.name
,
701 ((struct symt_data
*)sym
)->container
);
704 if (((struct symt_data
*)sym
)->u
.var
.offset
!= elf_info
->elf_addr
&&
705 ((struct symt_data
*)sym
)->u
.var
.offset
!= elf_info
->elf_addr
+ symp
->st_value
)
706 FIXME("Changing address for %p/%s!%s from %08lx to %08lx\n",
707 sym
, debugstr_w(module
->module
.ModuleName
), sym
->hash_elt
.name
,
708 ((struct symt_function
*)sym
)->address
, elf_info
->elf_addr
+ symp
->st_value
);
709 ((struct symt_data
*)sym
)->u
.var
.offset
= elf_info
->elf_addr
+ symp
->st_value
;
710 ((struct symt_data
*)sym
)->kind
= (ELF32_ST_BIND(symp
->st_info
) == STB_LOCAL
) ?
711 DataIsFileStatic
: DataIsGlobal
;
713 FIXME("Couldn't find %s!%s\n",
714 debugstr_w(module
->module
.ModuleName
), sym
->hash_elt
.name
);
720 FIXME("Unsupported tag %u\n", sym
->symt
.tag
);
724 /* since we may have changed some addresses & sizes, mark the module to be resorted */
725 module
->sortlist_valid
= FALSE
;
728 /******************************************************************
729 * elf_load_wine_thunks
731 * creating the thunk objects for a wine native DLL
733 static int elf_new_wine_thunks(struct module
* module
, const struct hash_table
* ht_symtab
,
734 const struct elf_thunk_area
* thunks
)
737 struct hash_table_iter hti
;
738 struct symtab_elt
* ste
;
740 struct symt_ht
* symt
;
742 hash_table_iter_init(ht_symtab
, &hti
, NULL
);
743 while ((ste
= hash_table_iter_up(&hti
)))
745 if (ste
->used
) continue;
747 addr
= module
->reloc_delta
+ ste
->symp
->st_value
;
749 j
= elf_is_in_thunk_area(ste
->symp
->st_value
, thunks
);
750 if (j
>= 0) /* thunk found */
752 symt_new_thunk(module
, ste
->compiland
, ste
->ht_elt
.name
, thunks
[j
].ordinal
,
753 addr
, ste
->symp
->st_size
);
760 symt
= symt_find_nearest(module
, addr
);
761 if (symt
&& !symt_get_address(&symt
->symt
, &ref_addr
))
763 if (!symt
|| addr
!= ref_addr
)
765 /* creating public symbols for all the ELF symbols which haven't been
766 * used yet (ie we have no debug information on them)
767 * That's the case, for example, of the .spec.c files
769 switch (ELF32_ST_TYPE(ste
->symp
->st_info
))
772 symt_new_function(module
, ste
->compiland
, ste
->ht_elt
.name
,
773 addr
, ste
->symp
->st_size
, NULL
);
776 loc
.kind
= loc_absolute
;
779 symt_new_global_variable(module
, ste
->compiland
, ste
->ht_elt
.name
,
780 ELF32_ST_BIND(ste
->symp
->st_info
) == STB_LOCAL
,
781 loc
, ste
->symp
->st_size
, NULL
);
784 FIXME("Shouldn't happen\n");
787 /* FIXME: this is a hack !!!
788 * we are adding new symbols, but as we're parsing a symbol table
789 * (hopefully without duplicate symbols) we delay rebuilding the sorted
790 * module table until we're done with the symbol table
791 * Otherwise, as we intertwine symbols' add and lookup, performance
794 module
->sortlist_valid
= TRUE
;
798 /* see comment above */
799 module
->sortlist_valid
= FALSE
;
803 /******************************************************************
804 * elf_new_public_symbols
806 * Creates a set of public symbols from an ELF symtab
808 static int elf_new_public_symbols(struct module
* module
, const struct hash_table
* symtab
)
810 struct hash_table_iter hti
;
811 struct symtab_elt
* ste
;
813 if (dbghelp_options
& SYMOPT_NO_PUBLICS
) return TRUE
;
815 /* FIXME: we're missing the ELF entry point here */
817 hash_table_iter_init(symtab
, &hti
, NULL
);
818 while ((ste
= hash_table_iter_up(&hti
)))
820 symt_new_public(module
, ste
->compiland
, ste
->ht_elt
.name
,
821 module
->reloc_delta
+ ste
->symp
->st_value
,
827 static BOOL
elf_check_debug_link(const WCHAR
* file
, struct image_file_map
* fmap
, DWORD crc
)
830 struct elf_map_file_data emfd
;
832 emfd
.kind
= from_file
;
833 emfd
.u
.file
.filename
= file
;
834 if (!elf_map_file(&emfd
, fmap
)) return FALSE
;
835 if (!(ret
= crc
== calc_crc32(fmap
->u
.elf
.fd
)))
837 WARN("Bad CRC for file %s (got %08x while expecting %08x)\n",
838 debugstr_w(file
), calc_crc32(fmap
->u
.elf
.fd
), crc
);
839 elf_unmap_file(fmap
);
844 /******************************************************************
845 * elf_locate_debug_link
847 * Locate a filename from a .gnu_debuglink section, using the same
849 * "If the full name of the directory containing the executable is
850 * execdir, and the executable has a debug link that specifies the
851 * name debugfile, then GDB will automatically search for the
852 * debugging information file in three places:
853 * - the directory containing the executable file (that is, it
854 * will look for a file named `execdir/debugfile',
855 * - a subdirectory of that directory named `.debug' (that is, the
856 * file `execdir/.debug/debugfile', and
857 * - a subdirectory of the global debug file directory that includes
858 * the executable's full path, and the name from the link (that is,
859 * the file `globaldebugdir/execdir/debugfile', where globaldebugdir
860 * is the global debug file directory, and execdir has been turned
861 * into a relative path)." (from GDB manual)
863 static BOOL
elf_locate_debug_link(struct image_file_map
* fmap
, const char* filename
,
864 const WCHAR
* loaded_file
, DWORD crc
)
866 static const WCHAR globalDebugDirW
[] = {'/','u','s','r','/','l','i','b','/','d','e','b','u','g','/'};
867 static const WCHAR dotDebugW
[] = {'.','d','e','b','u','g','/'};
868 const size_t globalDebugDirLen
= sizeof(globalDebugDirW
) / sizeof(WCHAR
);
872 struct image_file_map
* fmap_link
= NULL
;
874 fmap_link
= HeapAlloc(GetProcessHeap(), 0, sizeof(*fmap_link
));
875 if (!fmap_link
) return FALSE
;
877 filename_len
= MultiByteToWideChar(CP_UNIXCP
, 0, filename
, -1, NULL
, 0);
878 p
= HeapAlloc(GetProcessHeap(), 0,
879 (globalDebugDirLen
+ strlenW(loaded_file
) + 6 + 1 + filename_len
+ 1) * sizeof(WCHAR
));
882 /* we prebuild the string with "execdir" */
883 strcpyW(p
, loaded_file
);
884 slash
= strrchrW(p
, '/');
885 if (slash
== NULL
) slash
= p
; else slash
++;
887 /* testing execdir/filename */
888 MultiByteToWideChar(CP_UNIXCP
, 0, filename
, -1, slash
, filename_len
);
889 if (elf_check_debug_link(p
, fmap_link
, crc
)) goto found
;
891 /* testing execdir/.debug/filename */
892 memcpy(slash
, dotDebugW
, sizeof(dotDebugW
));
893 MultiByteToWideChar(CP_UNIXCP
, 0, filename
, -1, slash
+ sizeof(dotDebugW
) / sizeof(WCHAR
), filename_len
);
894 if (elf_check_debug_link(p
, fmap_link
, crc
)) goto found
;
896 /* testing globaldebugdir/execdir/filename */
897 memmove(p
+ globalDebugDirLen
, p
, (slash
- p
) * sizeof(WCHAR
));
898 memcpy(p
, globalDebugDirW
, globalDebugDirLen
* sizeof(WCHAR
));
899 slash
+= globalDebugDirLen
;
900 MultiByteToWideChar(CP_UNIXCP
, 0, filename
, -1, slash
, filename_len
);
901 if (elf_check_debug_link(p
, fmap_link
, crc
)) goto found
;
903 /* finally testing filename */
904 if (elf_check_debug_link(slash
, fmap_link
, crc
)) goto found
;
907 WARN("Couldn't locate or map %s\n", filename
);
908 HeapFree(GetProcessHeap(), 0, p
);
909 HeapFree(GetProcessHeap(), 0, fmap_link
);
913 TRACE("Located debug information file %s at %s\n", filename
, debugstr_w(p
));
914 HeapFree(GetProcessHeap(), 0, p
);
915 fmap
->u
.elf
.alternate
= fmap_link
;
919 /******************************************************************
920 * elf_locate_build_id_target
922 * Try to find the .so file containing the debug info out of the build-id note information
924 static BOOL
elf_locate_build_id_target(struct image_file_map
* fmap
, const BYTE
* id
, unsigned idlen
)
926 static const WCHAR globalDebugDirW
[] = {'/','u','s','r','/','l','i','b','/','d','e','b','u','g','/'};
927 static const WCHAR buildidW
[] = {'.','b','u','i','l','d','-','i','d','/'};
928 static const WCHAR dotDebug0W
[] = {'.','d','e','b','u','g',0};
929 struct image_file_map
* fmap_link
= NULL
;
932 const BYTE
* idend
= id
+ idlen
;
933 struct elf_map_file_data emfd
;
935 fmap_link
= HeapAlloc(GetProcessHeap(), 0, sizeof(*fmap_link
));
936 if (!fmap_link
) return FALSE
;
938 p
= HeapAlloc(GetProcessHeap(), 0,
939 sizeof(globalDebugDirW
) + sizeof(buildidW
) +
940 (idlen
* 2 + 1) * sizeof(WCHAR
) + sizeof(dotDebug0W
));
942 memcpy(z
, globalDebugDirW
, sizeof(globalDebugDirW
));
943 z
+= sizeof(globalDebugDirW
) / sizeof(WCHAR
);
944 memcpy(z
, buildidW
, sizeof(buildidW
));
945 z
+= sizeof(buildidW
) / sizeof(WCHAR
);
949 *z
++ = "0123456789abcdef"[*id
>> 4 ];
950 *z
++ = "0123456789abcdef"[*id
& 0x0F];
957 *z
++ = "0123456789abcdef"[*id
>> 4 ];
958 *z
++ = "0123456789abcdef"[*id
& 0x0F];
961 memcpy(z
, dotDebug0W
, sizeof(dotDebug0W
));
962 TRACE("checking %s\n", wine_dbgstr_w(p
));
964 emfd
.kind
= from_file
;
965 emfd
.u
.file
.filename
= p
;
966 if (elf_map_file(&emfd
, fmap_link
))
968 struct image_section_map buildid_sect
;
969 if (elf_find_section(fmap_link
, ".note.gnu.build-id", SHT_NULL
, &buildid_sect
))
971 const uint32_t* note
;
973 note
= (const uint32_t*)image_map_section(&buildid_sect
);
974 if (note
!= IMAGE_NO_MAP
)
976 /* the usual ELF note structure: name-size desc-size type <name> <desc> */
977 if (note
[2] == NT_GNU_BUILD_ID
)
979 if (note
[1] == idlen
&&
980 !memcmp(note
+ 3 + ((note
[0] + 3) >> 2), idend
- idlen
, idlen
))
982 TRACE("Located debug information file at %s\n", debugstr_w(p
));
983 HeapFree(GetProcessHeap(), 0, p
);
984 fmap
->u
.elf
.alternate
= fmap_link
;
987 WARN("mismatch in buildid information for %s\n", wine_dbgstr_w(p
));
990 image_unmap_section(&buildid_sect
);
992 elf_unmap_file(fmap_link
);
995 TRACE("not found\n");
996 HeapFree(GetProcessHeap(), 0, p
);
997 HeapFree(GetProcessHeap(), 0, fmap_link
);
1001 /******************************************************************
1002 * elf_check_alternate
1004 * Load alternate files for a given ELF file, looking at either .note.gnu_build-id
1005 * or .gnu_debuglink sections.
1007 static BOOL
elf_check_alternate(struct image_file_map
* fmap
, const struct module
* module
)
1011 struct image_section_map buildid_sect
, debuglink_sect
;
1013 /* if present, add the .gnu_debuglink file as an alternate to current one */
1014 if (elf_find_section(fmap
, ".note.gnu.build-id", SHT_NULL
, &buildid_sect
))
1016 const uint32_t* note
;
1019 note
= (const uint32_t*)image_map_section(&buildid_sect
);
1020 if (note
!= IMAGE_NO_MAP
)
1022 /* the usual ELF note structure: name-size desc-size type <name> <desc> */
1023 if (note
[2] == NT_GNU_BUILD_ID
)
1025 ret
= elf_locate_build_id_target(fmap
, (const BYTE
*)(note
+ 3 + ((note
[0] + 3) >> 2)), note
[1]);
1028 image_unmap_section(&buildid_sect
);
1030 /* if present, add the .gnu_debuglink file as an alternate to current one */
1031 if (!ret
&& elf_find_section(fmap
, ".gnu_debuglink", SHT_NULL
, &debuglink_sect
))
1033 const char* dbg_link
;
1036 dbg_link
= (const char*)image_map_section(&debuglink_sect
);
1037 if (dbg_link
!= IMAGE_NO_MAP
)
1039 /* The content of a debug link section is:
1040 * 1/ a NULL terminated string, containing the file name for the
1042 * 2/ padding on 4 byte boundary
1043 * 3/ CRC of the linked ELF file
1045 DWORD crc
= *(const DWORD
*)(dbg_link
+ ((DWORD_PTR
)(strlen(dbg_link
) + 4) & ~3));
1046 ret
= elf_locate_debug_link(fmap
, dbg_link
, module
->module
.LoadedImageName
, crc
);
1048 WARN("Couldn't load linked debug file for %s\n",
1049 debugstr_w(module
->module
.ModuleName
));
1051 image_unmap_section(&debuglink_sect
);
1053 return found
? ret
: TRUE
;
1056 /******************************************************************
1057 * elf_load_debug_info_from_map
1059 * Loads the symbolic information from ELF module which mapping is described
1061 * the module has been loaded at 'load_offset' address, so symbols' address
1062 * relocation is performed.
1063 * CRC is checked if fmap->with_crc is TRUE
1065 * 0 if the file doesn't contain symbolic info (or this info cannot be
1069 static BOOL
elf_load_debug_info_from_map(struct module
* module
,
1070 struct image_file_map
* fmap
,
1072 struct hash_table
* ht_symtab
)
1074 BOOL ret
= FALSE
, lret
;
1075 struct elf_thunk_area thunks
[] =
1077 {"__wine_spec_import_thunks", THUNK_ORDINAL_NOTYPE
, 0, 0}, /* inter DLL calls */
1078 {"__wine_spec_delayed_import_loaders", THUNK_ORDINAL_LOAD
, 0, 0}, /* delayed inter DLL calls */
1079 {"__wine_spec_delayed_import_thunks", THUNK_ORDINAL_LOAD
, 0, 0}, /* delayed inter DLL calls */
1080 {"__wine_delay_load", THUNK_ORDINAL_LOAD
, 0, 0}, /* delayed inter DLL calls */
1081 {"__wine_spec_thunk_text_16", -16, 0, 0}, /* 16 => 32 thunks */
1082 {"__wine_spec_thunk_text_32", -32, 0, 0}, /* 32 => 16 thunks */
1086 module
->module
.SymType
= SymExport
;
1088 /* create a hash table for the symtab */
1089 elf_hash_symtab(module
, pool
, ht_symtab
, fmap
, thunks
);
1091 if (!(dbghelp_options
& SYMOPT_PUBLICS_ONLY
))
1093 struct image_section_map stab_sect
, stabstr_sect
;
1095 /* check if we need an alternate file (from debuglink or build-id) */
1096 ret
= elf_check_alternate(fmap
, module
);
1098 if (elf_find_section(fmap
, ".stab", SHT_NULL
, &stab_sect
) &&
1099 elf_find_section(fmap
, ".stabstr", SHT_NULL
, &stabstr_sect
))
1102 const char* stabstr
;
1104 stab
= image_map_section(&stab_sect
);
1105 stabstr
= image_map_section(&stabstr_sect
);
1106 if (stab
!= IMAGE_NO_MAP
&& stabstr
!= IMAGE_NO_MAP
)
1108 /* OK, now just parse all of the stabs. */
1109 lret
= stabs_parse(module
, module
->format_info
[DFI_ELF
]->u
.elf_info
->elf_addr
,
1110 stab
, image_get_map_size(&stab_sect
),
1111 stabstr
, image_get_map_size(&stabstr_sect
),
1114 /* and fill in the missing information for stabs */
1115 elf_finish_stabs_info(module
, ht_symtab
);
1117 WARN("Couldn't correctly read stabs\n");
1120 image_unmap_section(&stab_sect
);
1121 image_unmap_section(&stabstr_sect
);
1123 lret
= dwarf2_parse(module
, module
->reloc_delta
, thunks
, fmap
);
1126 if (strstrW(module
->module
.ModuleName
, S_ElfW
) ||
1127 !strcmpW(module
->module
.ModuleName
, S_WineLoaderW
))
1129 /* add the thunks for native libraries */
1130 if (!(dbghelp_options
& SYMOPT_PUBLICS_ONLY
))
1131 elf_new_wine_thunks(module
, ht_symtab
, thunks
);
1133 /* add all the public symbols from symtab */
1134 if (elf_new_public_symbols(module
, ht_symtab
) && !ret
) ret
= TRUE
;
1139 /******************************************************************
1140 * elf_load_debug_info
1142 * Loads ELF debugging information from the module image file.
1144 BOOL
elf_load_debug_info(struct module
* module
)
1148 struct hash_table ht_symtab
;
1149 struct module_format
* modfmt
;
1151 if (module
->type
!= DMT_ELF
|| !(modfmt
= module
->format_info
[DFI_ELF
]) || !modfmt
->u
.elf_info
)
1153 ERR("Bad elf module '%s'\n", debugstr_w(module
->module
.LoadedImageName
));
1157 pool_init(&pool
, 65536);
1158 hash_table_init(&pool
, &ht_symtab
, 256);
1160 ret
= elf_load_debug_info_from_map(module
, &modfmt
->u
.elf_info
->file_map
, &pool
, &ht_symtab
);
1162 pool_destroy(&pool
);
1166 /******************************************************************
1167 * elf_fetch_file_info
1169 * Gathers some more information for an ELF module from a given file
1171 BOOL
elf_fetch_file_info(const WCHAR
* name
, DWORD_PTR
* base
,
1172 DWORD
* size
, DWORD
* checksum
)
1174 struct image_file_map fmap
;
1176 struct elf_map_file_data emfd
;
1178 emfd
.kind
= from_file
;
1179 emfd
.u
.file
.filename
= name
;
1180 if (!elf_map_file(&emfd
, &fmap
)) return FALSE
;
1181 if (base
) *base
= fmap
.u
.elf
.elf_start
;
1182 *size
= fmap
.u
.elf
.elf_size
;
1183 *checksum
= calc_crc32(fmap
.u
.elf
.fd
);
1184 elf_unmap_file(&fmap
);
1188 static BOOL
elf_load_file_from_fmap(struct process
* pcs
, const WCHAR
* filename
,
1189 struct image_file_map
* fmap
, unsigned long load_offset
,
1190 unsigned long dyn_addr
, struct elf_info
* elf_info
)
1194 if (elf_info
->flags
& ELF_INFO_DEBUG_HEADER
)
1196 struct image_section_map ism
;
1198 if (elf_find_section(fmap
, ".dynamic", SHT_DYNAMIC
, &ism
))
1201 char* ptr
= (char*)fmap
->u
.elf
.sect
[ism
.sidx
].shdr
.sh_addr
;
1204 if (load_offset
) ptr
+= load_offset
- fmap
->u
.elf
.elf_start
;
1208 if (!ReadProcessMemory(pcs
->handle
, ptr
, &dyn
, sizeof(dyn
), &len
) ||
1211 if (dyn
.d_tag
== DT_DEBUG
)
1213 elf_info
->dbg_hdr_addr
= dyn
.d_un
.d_ptr
;
1214 if (load_offset
== 0 && dyn_addr
== 0) /* likely the case */
1215 /* Assume this module (the Wine loader) has been loaded at its preferred address */
1216 dyn_addr
= ism
.fmap
->u
.elf
.sect
[ism
.sidx
].shdr
.sh_addr
;
1220 } while (dyn
.d_tag
!= DT_NULL
);
1221 if (dyn
.d_tag
== DT_NULL
) return ret
;
1226 if (elf_info
->flags
& ELF_INFO_MODULE
)
1228 struct elf_module_info
*elf_module_info
;
1229 struct module_format
* modfmt
;
1230 struct image_section_map ism
;
1231 unsigned long modbase
= load_offset
;
1233 if (elf_find_section(fmap
, ".dynamic", SHT_DYNAMIC
, &ism
))
1235 unsigned long rva_dyn
= elf_get_map_rva(&ism
);
1237 TRACE("For module %s, got ELF (start=%lx dyn=%lx), link_map (start=%lx dyn=%lx)\n",
1238 debugstr_w(filename
), (unsigned long)fmap
->u
.elf
.elf_start
, rva_dyn
,
1239 load_offset
, dyn_addr
);
1240 if (dyn_addr
&& load_offset
+ rva_dyn
!= dyn_addr
)
1242 WARN("\thave to relocate: %lx\n", dyn_addr
- rva_dyn
);
1243 modbase
= dyn_addr
- rva_dyn
;
1245 } else WARN("For module %s, no .dynamic section\n", debugstr_w(filename
));
1248 modfmt
= HeapAlloc(GetProcessHeap(), 0,
1249 sizeof(struct module_format
) + sizeof(struct elf_module_info
));
1250 if (!modfmt
) return FALSE
;
1251 elf_info
->module
= module_new(pcs
, filename
, DMT_ELF
, FALSE
, modbase
,
1252 fmap
->u
.elf
.elf_size
, 0, calc_crc32(fmap
->u
.elf
.fd
));
1253 if (!elf_info
->module
)
1255 HeapFree(GetProcessHeap(), 0, modfmt
);
1258 elf_info
->module
->reloc_delta
= elf_info
->module
->module
.BaseOfImage
- fmap
->u
.elf
.elf_start
;
1259 elf_module_info
= (void*)(modfmt
+ 1);
1260 elf_info
->module
->format_info
[DFI_ELF
] = modfmt
;
1261 modfmt
->module
= elf_info
->module
;
1262 modfmt
->remove
= elf_module_remove
;
1263 modfmt
->loc_compute
= NULL
;
1264 modfmt
->u
.elf_info
= elf_module_info
;
1266 elf_module_info
->elf_addr
= load_offset
;
1268 elf_module_info
->file_map
= *fmap
;
1269 elf_reset_file_map(fmap
);
1270 if (dbghelp_options
& SYMOPT_DEFERRED_LOADS
)
1272 elf_info
->module
->module
.SymType
= SymDeferred
;
1275 else ret
= elf_load_debug_info(elf_info
->module
);
1277 elf_module_info
->elf_mark
= 1;
1278 elf_module_info
->elf_loader
= 0;
1281 if (elf_info
->flags
& ELF_INFO_NAME
)
1284 ptr
= HeapAlloc(GetProcessHeap(), 0, (lstrlenW(filename
) + 1) * sizeof(WCHAR
));
1287 strcpyW(ptr
, filename
);
1288 elf_info
->module_name
= ptr
;
1296 /******************************************************************
1299 * Loads the information for ELF module stored in 'filename'
1300 * the module has been loaded at 'load_offset' address
1302 * -1 if the file cannot be found/opened
1303 * 0 if the file doesn't contain symbolic info (or this info cannot be
1307 static BOOL
elf_load_file(struct process
* pcs
, const WCHAR
* filename
,
1308 unsigned long load_offset
, unsigned long dyn_addr
,
1309 struct elf_info
* elf_info
)
1312 struct image_file_map fmap
;
1313 struct elf_map_file_data emfd
;
1315 TRACE("Processing elf file '%s' at %08lx\n", debugstr_w(filename
), load_offset
);
1317 emfd
.kind
= from_file
;
1318 emfd
.u
.file
.filename
= filename
;
1319 if (!elf_map_file(&emfd
, &fmap
)) return ret
;
1321 /* Next, we need to find a few of the internal ELF headers within
1322 * this thing. We need the main executable header, and the section
1325 if (!fmap
.u
.elf
.elf_start
&& !load_offset
)
1326 ERR("Relocatable ELF %s, but no load address. Loading at 0x0000000\n",
1327 debugstr_w(filename
));
1329 ret
= elf_load_file_from_fmap(pcs
, filename
, &fmap
, load_offset
, dyn_addr
, elf_info
);
1331 elf_unmap_file(&fmap
);
1336 /******************************************************************
1337 * elf_load_file_from_path
1338 * tries to load an ELF file from a set of paths (separated by ':')
1340 static BOOL
elf_load_file_from_path(HANDLE hProcess
,
1341 const WCHAR
* filename
,
1342 unsigned long load_offset
,
1343 unsigned long dyn_addr
,
1345 struct elf_info
* elf_info
)
1349 WCHAR
* pathW
= NULL
;
1352 if (!path
) return FALSE
;
1354 len
= MultiByteToWideChar(CP_UNIXCP
, 0, path
, -1, NULL
, 0);
1355 pathW
= HeapAlloc(GetProcessHeap(), 0, len
* sizeof(WCHAR
));
1356 if (!pathW
) return FALSE
;
1357 MultiByteToWideChar(CP_UNIXCP
, 0, path
, -1, pathW
, len
);
1359 for (s
= pathW
; s
&& *s
; s
= (t
) ? (t
+1) : NULL
)
1361 t
= strchrW(s
, ':');
1363 fn
= HeapAlloc(GetProcessHeap(), 0, (lstrlenW(filename
) + 1 + lstrlenW(s
) + 1) * sizeof(WCHAR
));
1366 strcatW(fn
, S_SlashW
);
1367 strcatW(fn
, filename
);
1368 ret
= elf_load_file(hProcess
, fn
, load_offset
, dyn_addr
, elf_info
);
1369 HeapFree(GetProcessHeap(), 0, fn
);
1373 HeapFree(GetProcessHeap(), 0, pathW
);
1377 /******************************************************************
1378 * elf_load_file_from_dll_path
1380 * Tries to load an ELF file from the dll path
1382 static BOOL
elf_load_file_from_dll_path(HANDLE hProcess
,
1383 const WCHAR
* filename
,
1384 unsigned long load_offset
,
1385 unsigned long dyn_addr
,
1386 struct elf_info
* elf_info
)
1389 unsigned int index
= 0;
1392 while (!ret
&& (path
= wine_dll_enum_load_path( index
++ )))
1397 len
= MultiByteToWideChar(CP_UNIXCP
, 0, path
, -1, NULL
, 0);
1399 name
= HeapAlloc( GetProcessHeap(), 0,
1400 (len
+ lstrlenW(filename
) + 2) * sizeof(WCHAR
) );
1403 MultiByteToWideChar(CP_UNIXCP
, 0, path
, -1, name
, len
);
1404 strcatW( name
, S_SlashW
);
1405 strcatW( name
, filename
);
1406 ret
= elf_load_file(hProcess
, name
, load_offset
, dyn_addr
, elf_info
);
1407 HeapFree( GetProcessHeap(), 0, name
);
1412 #ifdef AT_SYSINFO_EHDR
1413 /******************************************************************
1416 * locate some a value from the debuggee auxiliary vector
1418 static BOOL
elf_search_auxv(const struct process
* pcs
, unsigned type
, unsigned long* val
)
1420 char buffer
[sizeof(SYMBOL_INFO
) + MAX_SYM_NAME
];
1421 SYMBOL_INFO
*si
= (SYMBOL_INFO
*)buffer
;
1427 si
->SizeOfStruct
= sizeof(*si
);
1428 si
->MaxNameLen
= MAX_SYM_NAME
;
1429 if (!SymFromName(pcs
->handle
, "libwine.so.1!__wine_main_environ", si
) ||
1430 !(addr
= (void*)(DWORD_PTR
)si
->Address
) ||
1431 !ReadProcessMemory(pcs
->handle
, addr
, &addr
, sizeof(addr
), NULL
) ||
1434 FIXME("can't find symbol in module\n");
1437 /* walk through envp[] */
1438 /* envp[] strings are located after the auxiliary vector, so protect the walk */
1439 str_max
= (void*)(DWORD_PTR
)~0L;
1440 while (ReadProcessMemory(pcs
->handle
, addr
, &str
, sizeof(str
), NULL
) &&
1441 (addr
= (void*)((DWORD_PTR
)addr
+ sizeof(str
))) != NULL
&& str
!= NULL
)
1442 str_max
= min(str_max
, str
);
1444 /* Walk through the end of envp[] array.
1445 * Actually, there can be several NULLs at the end of envp[]. This happens when an env variable is
1446 * deleted, the last entry is replaced by an extra NULL.
1448 while (addr
< str_max
&& ReadProcessMemory(pcs
->handle
, addr
, &str
, sizeof(str
), NULL
) && str
== NULL
)
1449 addr
= (void*)((DWORD_PTR
)addr
+ sizeof(str
));
1451 while (ReadProcessMemory(pcs
->handle
, addr
, &auxv
, sizeof(auxv
), NULL
) && auxv
.a_type
!= AT_NULL
)
1453 if (auxv
.a_type
== type
)
1455 *val
= auxv
.a_un
.a_val
;
1458 addr
= (void*)((DWORD_PTR
)addr
+ sizeof(auxv
));
1465 /******************************************************************
1466 * elf_search_and_load_file
1468 * lookup a file in standard ELF locations, and if found, load it
1470 static BOOL
elf_search_and_load_file(struct process
* pcs
, const WCHAR
* filename
,
1471 unsigned long load_offset
, unsigned long dyn_addr
,
1472 struct elf_info
* elf_info
)
1475 struct module
* module
;
1476 static const WCHAR S_libstdcPPW
[] = {'l','i','b','s','t','d','c','+','+','\0'};
1478 if (filename
== NULL
|| *filename
== '\0') return FALSE
;
1479 if ((module
= module_is_already_loaded(pcs
, filename
)))
1481 elf_info
->module
= module
;
1482 elf_info
->module
->format_info
[DFI_ELF
]->u
.elf_info
->elf_mark
= 1;
1483 return module
->module
.SymType
;
1486 if (strstrW(filename
, S_libstdcPPW
)) return FALSE
; /* We know we can't do it */
1487 ret
= elf_load_file(pcs
, filename
, load_offset
, dyn_addr
, elf_info
);
1488 /* if relative pathname, try some absolute base dirs */
1489 if (!ret
&& !strchrW(filename
, '/'))
1491 ret
= elf_load_file_from_path(pcs
, filename
, load_offset
, dyn_addr
,
1492 getenv("PATH"), elf_info
) ||
1493 elf_load_file_from_path(pcs
, filename
, load_offset
, dyn_addr
,
1494 getenv("LD_LIBRARY_PATH"), elf_info
);
1495 if (!ret
) ret
= elf_load_file_from_dll_path(pcs
, filename
,
1496 load_offset
, dyn_addr
, elf_info
);
1502 typedef BOOL (*enum_elf_modules_cb
)(const WCHAR
*, unsigned long load_addr
,
1503 unsigned long dyn_addr
, BOOL is_system
, void* user
);
1505 /******************************************************************
1506 * elf_enum_modules_internal
1508 * Enumerate ELF modules from a running process
1510 static BOOL
elf_enum_modules_internal(const struct process
* pcs
,
1511 const WCHAR
* main_name
,
1512 enum_elf_modules_cb cb
, void* user
)
1514 struct r_debug dbg_hdr
;
1518 WCHAR bufstrW
[MAX_PATH
];
1520 if (!pcs
->dbg_hdr_addr
||
1521 !ReadProcessMemory(pcs
->handle
, (void*)pcs
->dbg_hdr_addr
,
1522 &dbg_hdr
, sizeof(dbg_hdr
), NULL
))
1525 /* Now walk the linked list. In all known ELF implementations,
1526 * the dynamic loader maintains this linked list for us. In some
1527 * cases the first entry doesn't appear with a name, in other cases it
1530 for (lm_addr
= (void*)dbg_hdr
.r_map
; lm_addr
; lm_addr
= (void*)lm
.l_next
)
1532 if (!ReadProcessMemory(pcs
->handle
, lm_addr
, &lm
, sizeof(lm
), NULL
))
1535 if (lm
.l_prev
!= NULL
&& /* skip first entry, normally debuggee itself */
1536 lm
.l_name
!= NULL
&&
1537 ReadProcessMemory(pcs
->handle
, lm
.l_name
, bufstr
, sizeof(bufstr
), NULL
))
1539 bufstr
[sizeof(bufstr
) - 1] = '\0';
1540 MultiByteToWideChar(CP_UNIXCP
, 0, bufstr
, -1, bufstrW
, sizeof(bufstrW
) / sizeof(WCHAR
));
1541 if (main_name
&& !bufstrW
[0]) strcpyW(bufstrW
, main_name
);
1542 if (!cb(bufstrW
, (unsigned long)lm
.l_addr
, (unsigned long)lm
.l_ld
, FALSE
, user
)) break;
1546 #ifdef AT_SYSINFO_EHDR
1549 unsigned long ehdr_addr
;
1551 if (elf_search_auxv(pcs
, AT_SYSINFO_EHDR
, &ehdr_addr
))
1553 static const WCHAR vdsoW
[] = {'[','v','d','s','o',']','.','s','o',0};
1554 cb(vdsoW
, ehdr_addr
, 0, TRUE
, user
);
1561 /******************************************************************
1564 * Lookup in a running ELF process the loader, and sets its ELF link
1565 * address (for accessing the list of loaded .so libs) in pcs.
1566 * If flags is ELF_INFO_MODULE, the module for the loader is also
1567 * added as a module into pcs.
1569 static BOOL
elf_search_loader(struct process
* pcs
, struct elf_info
* elf_info
)
1571 PROCESS_BASIC_INFORMATION pbi
;
1574 if (!NtQueryInformationProcess( pcs
->handle
, ProcessBasicInformation
, &pbi
, sizeof(pbi
), NULL
))
1575 ReadProcessMemory( pcs
->handle
, &pbi
.PebBaseAddress
->Reserved
[0], &base
, sizeof(base
), NULL
);
1577 return elf_search_and_load_file(pcs
, get_wine_loader_name(), base
, 0, elf_info
);
1580 /******************************************************************
1581 * elf_read_wine_loader_dbg_info
1583 * Try to find a decent wine executable which could have loaded the debuggee
1585 BOOL
elf_read_wine_loader_dbg_info(struct process
* pcs
)
1587 struct elf_info elf_info
;
1589 elf_info
.flags
= ELF_INFO_DEBUG_HEADER
| ELF_INFO_MODULE
;
1590 if (!elf_search_loader(pcs
, &elf_info
)) return FALSE
;
1591 elf_info
.module
->format_info
[DFI_ELF
]->u
.elf_info
->elf_loader
= 1;
1592 module_set_module(elf_info
.module
, S_WineLoaderW
);
1593 return (pcs
->dbg_hdr_addr
= elf_info
.dbg_hdr_addr
) != 0;
1596 struct elf_enum_user
1602 static BOOL
elf_enum_modules_translate(const WCHAR
* name
, unsigned long load_addr
,
1603 unsigned long dyn_addr
, BOOL is_system
, void* user
)
1605 struct elf_enum_user
* eeu
= user
;
1606 return eeu
->cb(name
, load_addr
, eeu
->user
);
1609 /******************************************************************
1612 * Enumerates the ELF loaded modules from a running target (hProc)
1613 * This function doesn't require that someone has called SymInitialize
1614 * on this very process.
1616 BOOL
elf_enum_modules(HANDLE hProc
, enum_modules_cb cb
, void* user
)
1619 struct elf_info elf_info
;
1621 struct elf_enum_user eeu
;
1623 memset(&pcs
, 0, sizeof(pcs
));
1625 elf_info
.flags
= ELF_INFO_DEBUG_HEADER
| ELF_INFO_NAME
;
1626 if (!elf_search_loader(&pcs
, &elf_info
)) return FALSE
;
1627 pcs
.dbg_hdr_addr
= elf_info
.dbg_hdr_addr
;
1630 ret
= elf_enum_modules_internal(&pcs
, elf_info
.module_name
, elf_enum_modules_translate
, &eeu
);
1631 HeapFree(GetProcessHeap(), 0, (char*)elf_info
.module_name
);
1637 struct process
* pcs
;
1638 struct elf_info elf_info
;
1643 /******************************************************************
1646 * Callback for elf_load_module, used to walk the list of loaded
1649 static BOOL
elf_load_cb(const WCHAR
* name
, unsigned long load_addr
,
1650 unsigned long dyn_addr
, BOOL is_system
, void* user
)
1652 struct elf_load
* el
= user
;
1656 if (is_system
) /* virtual ELF module, created by system. handle it from memory */
1658 struct module
* module
;
1659 struct elf_map_file_data emfd
;
1660 struct image_file_map fmap
;
1662 if ((module
= module_is_already_loaded(el
->pcs
, name
)))
1664 el
->elf_info
.module
= module
;
1665 el
->elf_info
.module
->format_info
[DFI_ELF
]->u
.elf_info
->elf_mark
= 1;
1666 return module
->module
.SymType
;
1669 emfd
.kind
= from_process
;
1670 emfd
.u
.process
.handle
= el
->pcs
->handle
;
1671 emfd
.u
.process
.load_addr
= (void*)load_addr
;
1673 if (elf_map_file(&emfd
, &fmap
))
1674 el
->ret
= elf_load_file_from_fmap(el
->pcs
, name
, &fmap
, load_addr
, 0, &el
->elf_info
);
1679 /* memcmp is needed for matches when bufstr contains also version information
1680 * el->name: libc.so, name: libc.so.6.0
1682 p
= strrchrW(name
, '/');
1686 if (!el
->name
|| !memcmp(p
, el
->name
, lstrlenW(el
->name
) * sizeof(WCHAR
)))
1688 el
->ret
= elf_search_and_load_file(el
->pcs
, name
, load_addr
, dyn_addr
, &el
->elf_info
);
1689 if (el
->name
) ret
= FALSE
;
1695 /******************************************************************
1698 * loads an ELF module and stores it in process' module list
1699 * Also, find module real name and load address from
1700 * the real loaded modules list in pcs address space
1702 struct module
* elf_load_module(struct process
* pcs
, const WCHAR
* name
, unsigned long addr
)
1706 TRACE("(%p %s %08lx)\n", pcs
, debugstr_w(name
), addr
);
1708 el
.elf_info
.flags
= ELF_INFO_MODULE
;
1711 if (pcs
->dbg_hdr_addr
) /* we're debugging a life target */
1714 /* do only the lookup from the filename, not the path (as we lookup module
1715 * name in the process' loaded module list)
1717 el
.name
= strrchrW(name
, '/');
1718 if (!el
.name
++) el
.name
= name
;
1721 if (!elf_enum_modules_internal(pcs
, NULL
, elf_load_cb
, &el
))
1727 el
.ret
= elf_search_and_load_file(pcs
, el
.name
, addr
, 0, &el
.elf_info
);
1729 if (!el
.ret
) return NULL
;
1730 assert(el
.elf_info
.module
);
1731 return el
.elf_info
.module
;
1734 /******************************************************************
1735 * elf_synchronize_module_list
1737 * this function rescans the debuggee module's list and synchronizes it with
1738 * the one from 'pcs', i.e.:
1739 * - if a module is in debuggee and not in pcs, it's loaded into pcs
1740 * - if a module is in pcs and not in debuggee, it's unloaded from pcs
1742 BOOL
elf_synchronize_module_list(struct process
* pcs
)
1744 struct module
* module
;
1747 for (module
= pcs
->lmodules
; module
; module
= module
->next
)
1749 if (module
->type
== DMT_ELF
&& !module
->is_virtual
)
1750 module
->format_info
[DFI_ELF
]->u
.elf_info
->elf_mark
= 0;
1754 el
.elf_info
.flags
= ELF_INFO_MODULE
;
1756 el
.name
= NULL
; /* fetch all modules */
1758 if (!elf_enum_modules_internal(pcs
, NULL
, elf_load_cb
, &el
))
1761 module
= pcs
->lmodules
;
1764 if (module
->type
== DMT_ELF
&& !module
->is_virtual
)
1766 struct elf_module_info
* elf_info
= module
->format_info
[DFI_ELF
]->u
.elf_info
;
1768 if (!elf_info
->elf_mark
&& !elf_info
->elf_loader
)
1770 module_remove(pcs
, module
);
1771 /* restart all over */
1772 module
= pcs
->lmodules
;
1776 module
= module
->next
;
1781 #else /* !__ELF__ */
1783 BOOL
elf_find_section(struct image_file_map
* fmap
, const char* name
,
1784 unsigned sht
, struct image_section_map
* ism
)
1789 const char* elf_map_section(struct image_section_map
* ism
)
1794 void elf_unmap_section(struct image_section_map
* ism
)
1797 unsigned elf_get_map_size(const struct image_section_map
* ism
)
1802 DWORD_PTR
elf_get_map_rva(const struct image_section_map
* ism
)
1807 BOOL
elf_synchronize_module_list(struct process
* pcs
)
1812 BOOL
elf_fetch_file_info(const WCHAR
* name
, DWORD_PTR
* base
,
1813 DWORD
* size
, DWORD
* checksum
)
1818 BOOL
elf_read_wine_loader_dbg_info(struct process
* pcs
)
1823 BOOL
elf_enum_modules(HANDLE hProc
, enum_modules_cb cb
, void* user
)
1828 struct module
* elf_load_module(struct process
* pcs
, const WCHAR
* name
, unsigned long addr
)
1833 BOOL
elf_load_debug_info(struct module
* module
)
1838 int elf_is_in_thunk_area(unsigned long addr
,
1839 const struct elf_thunk_area
* thunks
)
1843 #endif /* __ELF__ */