2 * File dwarf.c - read dwarf2 information from the ELF modules
4 * Copyright (C) 2005, Raphael Junqueira
5 * Copyright (C) 2006-2010, Eric Pouech
6 * Copyright (C) 2010, Alexandre Julliard
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with this library; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
23 #define NONAMELESSUNION
27 #include <sys/types.h>
29 #ifdef HAVE_SYS_STAT_H
30 # include <sys/stat.h>
32 #ifdef HAVE_SYS_MMAN_H
43 #define PATH_MAX MAX_PATH
54 #include "dbghelp_private.h"
55 #include "image_private.h"
57 #include "wine/debug.h"
59 WINE_DEFAULT_DEBUG_CHANNEL(dbghelp_dwarf
);
63 * o unspecified parameters
65 * o Debug{Start|End}Point
68 * o proper types loading (nesting)
72 static void dump(const void* ptr
, unsigned len
)
76 static const char hexof
[] = "0123456789abcdef";
79 for (i
= 0; i
< len
; i
+= 16)
81 sprintf(msg
, "%08x: ", i
);
82 memset(msg
+ 10, ' ', 3 * 16 + 1 + 16);
83 for (j
= 0; j
< min(16, len
- i
); j
++)
85 msg
[10 + 3 * j
+ 0] = hexof
[x
[i
+ j
] >> 4];
86 msg
[10 + 3 * j
+ 1] = hexof
[x
[i
+ j
] & 15];
87 msg
[10 + 3 * j
+ 2] = ' ';
88 msg
[10 + 3 * 16 + 1 + j
] = (x
[i
+ j
] >= 0x20 && x
[i
+ j
] < 0x7f) ?
91 msg
[10 + 3 * 16] = ' ';
92 msg
[10 + 3 * 16 + 1 + 16] = '\0';
101 * http://www.eagercon.com/dwarf/dwarf3std.htm
102 * http://www.eagercon.com/dwarf/dwarf-2.0.0.pdf
104 * dwarf2.h: http://www.hakpetzna.com/b/binutils/dwarf2_8h-source.html
106 * example of projects who do dwarf2 parsing:
107 * http://www.x86-64.org/cgi-bin/cvsweb.cgi/binutils.dead/binutils/readelf.c?rev=1.1.1.2
108 * http://elis.ugent.be/diota/log/ltrace_elf.c
116 typedef struct dwarf2_abbrev_entry_attr_s
118 unsigned long attribute
;
120 struct dwarf2_abbrev_entry_attr_s
* next
;
121 } dwarf2_abbrev_entry_attr_t
;
123 typedef struct dwarf2_abbrev_entry_s
125 unsigned long entry_code
;
127 unsigned char have_child
;
129 dwarf2_abbrev_entry_attr_t
* attrs
;
130 } dwarf2_abbrev_entry_t
;
135 const unsigned char* ptr
;
143 unsigned long uvalue
;
147 struct dwarf2_block block
;
151 typedef struct dwarf2_debug_info_s
153 const dwarf2_abbrev_entry_t
*abbrev
;
155 const unsigned char** data
;
156 struct vector children
;
157 } dwarf2_debug_info_t
;
159 typedef struct dwarf2_section_s
161 const unsigned char* address
;
166 enum dwarf2_sections
{section_debug
, section_string
, section_abbrev
, section_line
, section_max
};
168 typedef struct dwarf2_traverse_context_s
170 const unsigned char* data
;
171 const unsigned char* end_data
;
172 unsigned char word_size
;
173 } dwarf2_traverse_context_t
;
175 /* symt_cache indexes */
182 typedef struct dwarf2_parse_context_s
184 const dwarf2_section_t
* sections
;
187 struct module
* module
;
188 const struct elf_thunk_area
*thunks
;
189 struct sparse_array abbrev_table
;
190 struct sparse_array debug_info_table
;
191 unsigned long load_offset
;
192 unsigned long ref_offset
;
193 struct symt
* symt_cache
[sc_num
]; /* void, int1, int2, int4 */
194 } dwarf2_parse_context_t
;
196 /* stored in the dbghelp's module internal structure for later reuse */
197 struct dwarf2_module_info_s
199 dwarf2_section_t debug_loc
;
200 dwarf2_section_t debug_frame
;
201 dwarf2_section_t eh_frame
;
202 unsigned char word_size
;
205 #define loc_dwarf2_location_list (loc_user + 0)
206 #define loc_dwarf2_block (loc_user + 1)
208 /* forward declarations */
209 static struct symt
* dwarf2_parse_enumeration_type(dwarf2_parse_context_t
* ctx
, dwarf2_debug_info_t
* entry
);
211 static unsigned char dwarf2_get_byte(const unsigned char* ptr
)
216 static unsigned char dwarf2_parse_byte(dwarf2_traverse_context_t
* ctx
)
218 unsigned char uvalue
= dwarf2_get_byte(ctx
->data
);
223 static unsigned short dwarf2_get_u2(const unsigned char* ptr
)
225 return *(const UINT16
*)ptr
;
228 static unsigned short dwarf2_parse_u2(dwarf2_traverse_context_t
* ctx
)
230 unsigned short uvalue
= dwarf2_get_u2(ctx
->data
);
235 static unsigned long dwarf2_get_u4(const unsigned char* ptr
)
237 return *(const UINT32
*)ptr
;
240 static unsigned long dwarf2_parse_u4(dwarf2_traverse_context_t
* ctx
)
242 unsigned long uvalue
= dwarf2_get_u4(ctx
->data
);
247 static DWORD64
dwarf2_get_u8(const unsigned char* ptr
)
249 return *(const UINT64
*)ptr
;
252 static DWORD64
dwarf2_parse_u8(dwarf2_traverse_context_t
* ctx
)
254 DWORD64 uvalue
= dwarf2_get_u8(ctx
->data
);
259 static unsigned long dwarf2_get_leb128_as_unsigned(const unsigned char* ptr
, const unsigned char** end
)
261 unsigned long ret
= 0;
267 byte
= dwarf2_get_byte(ptr
++);
268 ret
|= (byte
& 0x7f) << shift
;
270 } while (byte
& 0x80);
276 static unsigned long dwarf2_leb128_as_unsigned(dwarf2_traverse_context_t
* ctx
)
282 ret
= dwarf2_get_leb128_as_unsigned(ctx
->data
, &ctx
->data
);
287 static long dwarf2_get_leb128_as_signed(const unsigned char* ptr
, const unsigned char** end
)
292 const unsigned size
= sizeof(int) * 8;
296 byte
= dwarf2_get_byte(ptr
++);
297 ret
|= (byte
& 0x7f) << shift
;
299 } while (byte
& 0x80);
302 /* as spec: sign bit of byte is 2nd high order bit (80x40)
303 * -> 0x80 is used as flag.
305 if ((shift
< size
) && (byte
& 0x40))
307 ret
|= - (1 << shift
);
312 static long dwarf2_leb128_as_signed(dwarf2_traverse_context_t
* ctx
)
318 ret
= dwarf2_get_leb128_as_signed(ctx
->data
, &ctx
->data
);
322 static unsigned dwarf2_leb128_length(const dwarf2_traverse_context_t
* ctx
)
325 for (ret
= 0; ctx
->data
[ret
] & 0x80; ret
++);
329 /******************************************************************
332 * Returns an address.
333 * We assume that in all cases word size from Dwarf matches the size of
334 * addresses in platform where the exec is compiled.
336 static unsigned long dwarf2_get_addr(const unsigned char* ptr
, unsigned word_size
)
343 ret
= dwarf2_get_u4(ptr
);
346 ret
= dwarf2_get_u8(ptr
);
349 FIXME("Unsupported Word Size %u\n", word_size
);
355 static unsigned long dwarf2_parse_addr(dwarf2_traverse_context_t
* ctx
)
357 unsigned long ret
= dwarf2_get_addr(ctx
->data
, ctx
->word_size
);
358 ctx
->data
+= ctx
->word_size
;
362 static const char* dwarf2_debug_traverse_ctx(const dwarf2_traverse_context_t
* ctx
)
364 return wine_dbg_sprintf("ctx(%p)", ctx
->data
);
367 static const char* dwarf2_debug_ctx(const dwarf2_parse_context_t
* ctx
)
369 return wine_dbg_sprintf("ctx(%p,%s)",
370 ctx
, debugstr_w(ctx
->module
->module
.ModuleName
));
373 static const char* dwarf2_debug_di(const dwarf2_debug_info_t
* di
)
375 return wine_dbg_sprintf("debug_info(abbrev:%p,symt:%p)",
376 di
->abbrev
, di
->symt
);
379 static dwarf2_abbrev_entry_t
*
380 dwarf2_abbrev_table_find_entry(const struct sparse_array
* abbrev_table
,
381 unsigned long entry_code
)
383 assert( NULL
!= abbrev_table
);
384 return sparse_array_find(abbrev_table
, entry_code
);
387 static void dwarf2_parse_abbrev_set(dwarf2_traverse_context_t
* abbrev_ctx
,
388 struct sparse_array
* abbrev_table
,
391 unsigned long entry_code
;
392 dwarf2_abbrev_entry_t
* abbrev_entry
;
393 dwarf2_abbrev_entry_attr_t
* new = NULL
;
394 dwarf2_abbrev_entry_attr_t
* last
= NULL
;
395 unsigned long attribute
;
398 assert( NULL
!= abbrev_ctx
);
400 TRACE("%s, end at %p\n",
401 dwarf2_debug_traverse_ctx(abbrev_ctx
), abbrev_ctx
->end_data
);
403 sparse_array_init(abbrev_table
, sizeof(dwarf2_abbrev_entry_t
), 32);
404 while (abbrev_ctx
->data
< abbrev_ctx
->end_data
)
406 TRACE("now at %s\n", dwarf2_debug_traverse_ctx(abbrev_ctx
));
407 entry_code
= dwarf2_leb128_as_unsigned(abbrev_ctx
);
408 TRACE("found entry_code %lu\n", entry_code
);
411 TRACE("NULL entry code at %s\n", dwarf2_debug_traverse_ctx(abbrev_ctx
));
414 abbrev_entry
= sparse_array_add(abbrev_table
, entry_code
, pool
);
415 assert( NULL
!= abbrev_entry
);
417 abbrev_entry
->entry_code
= entry_code
;
418 abbrev_entry
->tag
= dwarf2_leb128_as_unsigned(abbrev_ctx
);
419 abbrev_entry
->have_child
= dwarf2_parse_byte(abbrev_ctx
);
420 abbrev_entry
->attrs
= NULL
;
421 abbrev_entry
->num_attr
= 0;
423 TRACE("table:(%p,#%u) entry_code(%lu) tag(0x%lx) have_child(%u) -> %p\n",
424 abbrev_table
, sparse_array_length(abbrev_table
),
425 entry_code
, abbrev_entry
->tag
, abbrev_entry
->have_child
, abbrev_entry
);
430 attribute
= dwarf2_leb128_as_unsigned(abbrev_ctx
);
431 form
= dwarf2_leb128_as_unsigned(abbrev_ctx
);
432 if (!attribute
) break;
434 new = pool_alloc(pool
, sizeof(dwarf2_abbrev_entry_attr_t
));
437 new->attribute
= attribute
;
440 if (abbrev_entry
->attrs
) last
->next
= new;
441 else abbrev_entry
->attrs
= new;
443 abbrev_entry
->num_attr
++;
446 TRACE("found %u entries\n", sparse_array_length(abbrev_table
));
449 static void dwarf2_swallow_attribute(dwarf2_traverse_context_t
* ctx
,
450 const dwarf2_abbrev_entry_attr_t
* abbrev_attr
)
454 TRACE("(attr:0x%lx,form:0x%lx)\n", abbrev_attr
->attribute
, abbrev_attr
->form
);
456 switch (abbrev_attr
->form
)
458 case DW_FORM_ref_addr
:
459 case DW_FORM_addr
: step
= ctx
->word_size
; break;
462 case DW_FORM_ref1
: step
= 1; break;
464 case DW_FORM_ref2
: step
= 2; break;
467 case DW_FORM_strp
: step
= 4; break;
469 case DW_FORM_ref8
: step
= 8; break;
471 case DW_FORM_ref_udata
:
472 case DW_FORM_udata
: step
= dwarf2_leb128_length(ctx
); break;
473 case DW_FORM_string
: step
= strlen((const char*)ctx
->data
) + 1; break;
474 case DW_FORM_block
: step
= dwarf2_leb128_as_unsigned(ctx
); break;
475 case DW_FORM_block1
: step
= dwarf2_parse_byte(ctx
); break;
476 case DW_FORM_block2
: step
= dwarf2_parse_u2(ctx
); break;
477 case DW_FORM_block4
: step
= dwarf2_parse_u4(ctx
); break;
479 FIXME("Unhandled attribute form %lx\n", abbrev_attr
->form
);
485 static void dwarf2_fill_attr(const dwarf2_parse_context_t
* ctx
,
486 const dwarf2_abbrev_entry_attr_t
* abbrev_attr
,
487 const unsigned char* data
,
488 struct attribute
* attr
)
490 attr
->form
= abbrev_attr
->form
;
493 case DW_FORM_ref_addr
:
495 attr
->u
.uvalue
= dwarf2_get_addr(data
,
496 ctx
->module
->format_info
[DFI_DWARF
]->u
.dwarf2_info
->word_size
);
497 TRACE("addr<0x%lx>\n", attr
->u
.uvalue
);
501 attr
->u
.uvalue
= dwarf2_get_byte(data
);
502 TRACE("flag<0x%lx>\n", attr
->u
.uvalue
);
506 attr
->u
.uvalue
= dwarf2_get_byte(data
);
507 TRACE("data1<%lu>\n", attr
->u
.uvalue
);
511 attr
->u
.uvalue
= dwarf2_get_u2(data
);
512 TRACE("data2<%lu>\n", attr
->u
.uvalue
);
516 attr
->u
.uvalue
= dwarf2_get_u4(data
);
517 TRACE("data4<%lu>\n", attr
->u
.uvalue
);
521 attr
->u
.lluvalue
= dwarf2_get_u8(data
);
522 TRACE("data8<%s>\n", wine_dbgstr_longlong(attr
->u
.uvalue
));
526 attr
->u
.uvalue
= ctx
->ref_offset
+ dwarf2_get_byte(data
);
527 TRACE("ref1<0x%lx>\n", attr
->u
.uvalue
);
531 attr
->u
.uvalue
= ctx
->ref_offset
+ dwarf2_get_u2(data
);
532 TRACE("ref2<0x%lx>\n", attr
->u
.uvalue
);
536 attr
->u
.uvalue
= ctx
->ref_offset
+ dwarf2_get_u4(data
);
537 TRACE("ref4<0x%lx>\n", attr
->u
.uvalue
);
541 FIXME("Unhandled 64 bit support\n");
545 attr
->u
.svalue
= dwarf2_get_leb128_as_signed(data
, NULL
);
548 case DW_FORM_ref_udata
:
549 attr
->u
.uvalue
= dwarf2_get_leb128_as_unsigned(data
, NULL
);
553 attr
->u
.uvalue
= dwarf2_get_leb128_as_unsigned(data
, NULL
);
557 attr
->u
.string
= (const char *)data
;
558 TRACE("string<%s>\n", attr
->u
.string
);
563 unsigned long offset
= dwarf2_get_u4(data
);
564 attr
->u
.string
= (const char*)ctx
->sections
[section_string
].address
+ offset
;
566 TRACE("strp<%s>\n", attr
->u
.string
);
570 attr
->u
.block
.size
= dwarf2_get_leb128_as_unsigned(data
, &attr
->u
.block
.ptr
);
574 attr
->u
.block
.size
= dwarf2_get_byte(data
);
575 attr
->u
.block
.ptr
= data
+ 1;
579 attr
->u
.block
.size
= dwarf2_get_u2(data
);
580 attr
->u
.block
.ptr
= data
+ 2;
584 attr
->u
.block
.size
= dwarf2_get_u4(data
);
585 attr
->u
.block
.ptr
= data
+ 4;
589 FIXME("Unhandled attribute form %lx\n", abbrev_attr
->form
);
594 static BOOL
dwarf2_find_attribute(const dwarf2_parse_context_t
* ctx
,
595 const dwarf2_debug_info_t
* di
,
596 unsigned at
, struct attribute
* attr
)
599 dwarf2_abbrev_entry_attr_t
* abbrev_attr
;
600 dwarf2_abbrev_entry_attr_t
* abstract_abbrev_attr
;
604 abstract_abbrev_attr
= NULL
;
605 for (i
= 0, abbrev_attr
= di
->abbrev
->attrs
; abbrev_attr
; i
++, abbrev_attr
= abbrev_attr
->next
)
607 if (abbrev_attr
->attribute
== at
)
609 dwarf2_fill_attr(ctx
, abbrev_attr
, di
->data
[i
], attr
);
612 if (abbrev_attr
->attribute
== DW_AT_abstract_origin
&&
615 abstract_abbrev_attr
= abbrev_attr
;
619 /* do we have an abstract origin debug entry to look into ? */
620 if (!abstract_abbrev_attr
) break;
621 dwarf2_fill_attr(ctx
, abstract_abbrev_attr
, di
->data
[ai
], attr
);
622 if (!(di
= sparse_array_find(&ctx
->debug_info_table
, attr
->u
.uvalue
)))
623 FIXME("Should have found the debug info entry\n");
628 static void dwarf2_load_one_entry(dwarf2_parse_context_t
*, dwarf2_debug_info_t
*,
629 struct symt_compiland
*);
631 #define Wine_DW_no_register 0x7FFFFFFF
633 static unsigned dwarf2_map_register(int regno
)
635 if (regno
== Wine_DW_no_register
)
637 FIXME("What the heck map reg 0x%x\n",regno
);
640 return dbghelp_current_cpu
->map_dwarf_register(regno
);
643 static enum location_error
644 compute_location(dwarf2_traverse_context_t
* ctx
, struct location
* loc
,
645 HANDLE hproc
, const struct location
* frame
)
647 DWORD_PTR tmp
, stack
[64];
650 BOOL piece_found
= FALSE
;
654 loc
->kind
= loc_absolute
;
655 loc
->reg
= Wine_DW_no_register
;
657 while (ctx
->data
< ctx
->end_data
)
659 op
= dwarf2_parse_byte(ctx
);
661 if (op
>= DW_OP_lit0
&& op
<= DW_OP_lit31
)
662 stack
[++stk
] = op
- DW_OP_lit0
;
663 else if (op
>= DW_OP_reg0
&& op
<= DW_OP_reg31
)
665 /* dbghelp APIs don't know how to cope with this anyway
666 * (for example 'long long' stored in two registers)
667 * FIXME: We should tell winedbg how to deal with it (sigh)
671 if (loc
->reg
!= Wine_DW_no_register
)
672 FIXME("Only supporting one reg (%d -> %d)\n",
673 loc
->reg
, dwarf2_map_register(op
- DW_OP_reg0
));
674 loc
->reg
= dwarf2_map_register(op
- DW_OP_reg0
);
676 loc
->kind
= loc_register
;
678 else if (op
>= DW_OP_breg0
&& op
<= DW_OP_breg31
)
680 /* dbghelp APIs don't know how to cope with this anyway
681 * (for example 'long long' stored in two registers)
682 * FIXME: We should tell winedbg how to deal with it (sigh)
686 if (loc
->reg
!= Wine_DW_no_register
)
687 FIXME("Only supporting one breg (%d -> %d)\n",
688 loc
->reg
, dwarf2_map_register(op
- DW_OP_breg0
));
689 loc
->reg
= dwarf2_map_register(op
- DW_OP_breg0
);
691 stack
[++stk
] = dwarf2_leb128_as_signed(ctx
);
692 loc
->kind
= loc_regrel
;
696 case DW_OP_nop
: break;
697 case DW_OP_addr
: stack
[++stk
] = dwarf2_parse_addr(ctx
); break;
698 case DW_OP_const1u
: stack
[++stk
] = dwarf2_parse_byte(ctx
); break;
699 case DW_OP_const1s
: stack
[++stk
] = dwarf2_parse_byte(ctx
); break;
700 case DW_OP_const2u
: stack
[++stk
] = dwarf2_parse_u2(ctx
); break;
701 case DW_OP_const2s
: stack
[++stk
] = dwarf2_parse_u2(ctx
); break;
702 case DW_OP_const4u
: stack
[++stk
] = dwarf2_parse_u4(ctx
); break;
703 case DW_OP_const4s
: stack
[++stk
] = dwarf2_parse_u4(ctx
); break;
704 case DW_OP_const8u
: stack
[++stk
] = dwarf2_parse_u8(ctx
); break;
705 case DW_OP_const8s
: stack
[++stk
] = dwarf2_parse_u8(ctx
); break;
706 case DW_OP_constu
: stack
[++stk
] = dwarf2_leb128_as_unsigned(ctx
); break;
707 case DW_OP_consts
: stack
[++stk
] = dwarf2_leb128_as_signed(ctx
); break;
708 case DW_OP_dup
: stack
[stk
+ 1] = stack
[stk
]; stk
++; break;
709 case DW_OP_drop
: stk
--; break;
710 case DW_OP_over
: stack
[stk
+ 1] = stack
[stk
- 1]; stk
++; break;
711 case DW_OP_pick
: stack
[stk
+ 1] = stack
[stk
- dwarf2_parse_byte(ctx
)]; stk
++; break;
712 case DW_OP_swap
: tmp
= stack
[stk
]; stack
[stk
] = stack
[stk
-1]; stack
[stk
-1] = tmp
; break;
713 case DW_OP_rot
: tmp
= stack
[stk
]; stack
[stk
] = stack
[stk
-1]; stack
[stk
-1] = stack
[stk
-2]; stack
[stk
-2] = tmp
; break;
714 case DW_OP_abs
: stack
[stk
] = labs(stack
[stk
]); break;
715 case DW_OP_neg
: stack
[stk
] = -stack
[stk
]; break;
716 case DW_OP_not
: stack
[stk
] = ~stack
[stk
]; break;
717 case DW_OP_and
: stack
[stk
-1] &= stack
[stk
]; stk
--; break;
718 case DW_OP_or
: stack
[stk
-1] |= stack
[stk
]; stk
--; break;
719 case DW_OP_minus
: stack
[stk
-1] -= stack
[stk
]; stk
--; break;
720 case DW_OP_mul
: stack
[stk
-1] *= stack
[stk
]; stk
--; break;
721 case DW_OP_plus
: stack
[stk
-1] += stack
[stk
]; stk
--; break;
722 case DW_OP_xor
: stack
[stk
-1] ^= stack
[stk
]; stk
--; break;
723 case DW_OP_shl
: stack
[stk
-1] <<= stack
[stk
]; stk
--; break;
724 case DW_OP_shr
: stack
[stk
-1] >>= stack
[stk
]; stk
--; break;
725 case DW_OP_plus_uconst
: stack
[stk
] += dwarf2_leb128_as_unsigned(ctx
); break;
726 case DW_OP_shra
: stack
[stk
-1] = stack
[stk
-1] / (1 << stack
[stk
]); stk
--; break;
727 case DW_OP_div
: stack
[stk
-1] = stack
[stk
-1] / stack
[stk
]; stk
--; break;
728 case DW_OP_mod
: stack
[stk
-1] = stack
[stk
-1] % stack
[stk
]; stk
--; break;
729 case DW_OP_ge
: stack
[stk
-1] = (stack
[stk
-1] >= stack
[stk
]); stk
--; break;
730 case DW_OP_gt
: stack
[stk
-1] = (stack
[stk
-1] > stack
[stk
]); stk
--; break;
731 case DW_OP_le
: stack
[stk
-1] = (stack
[stk
-1] <= stack
[stk
]); stk
--; break;
732 case DW_OP_lt
: stack
[stk
-1] = (stack
[stk
-1] < stack
[stk
]); stk
--; break;
733 case DW_OP_eq
: stack
[stk
-1] = (stack
[stk
-1] == stack
[stk
]); stk
--; break;
734 case DW_OP_ne
: stack
[stk
-1] = (stack
[stk
-1] != stack
[stk
]); stk
--; break;
735 case DW_OP_skip
: tmp
= dwarf2_parse_u2(ctx
); ctx
->data
+= tmp
; break;
736 case DW_OP_bra
: tmp
= dwarf2_parse_u2(ctx
); if (!stack
[stk
--]) ctx
->data
+= tmp
; break;
738 tmp
= dwarf2_leb128_as_unsigned(ctx
);
741 if (loc
->reg
!= Wine_DW_no_register
)
742 FIXME("Only supporting one reg\n");
743 loc
->reg
= dwarf2_map_register(tmp
);
745 loc
->kind
= loc_register
;
748 tmp
= dwarf2_leb128_as_unsigned(ctx
);
749 if (loc
->reg
!= Wine_DW_no_register
)
750 FIXME("Only supporting one regx\n");
751 loc
->reg
= dwarf2_map_register(tmp
);
752 stack
[++stk
] = dwarf2_leb128_as_signed(ctx
);
753 loc
->kind
= loc_regrel
;
756 if (loc
->reg
!= Wine_DW_no_register
)
757 FIXME("Only supporting one reg (%d -> -2)\n", loc
->reg
);
758 if (frame
&& frame
->kind
== loc_register
)
760 loc
->kind
= loc_regrel
;
761 loc
->reg
= frame
->reg
;
762 stack
[++stk
] = dwarf2_leb128_as_signed(ctx
);
764 else if (frame
&& frame
->kind
== loc_regrel
)
766 loc
->kind
= loc_regrel
;
767 loc
->reg
= frame
->reg
;
768 stack
[++stk
] = dwarf2_leb128_as_signed(ctx
) + frame
->offset
;
772 /* FIXME: this could be later optimized by not recomputing
773 * this very location expression
775 loc
->kind
= loc_dwarf2_block
;
776 stack
[++stk
] = dwarf2_leb128_as_signed(ctx
);
781 unsigned sz
= dwarf2_leb128_as_unsigned(ctx
);
782 WARN("Not handling OP_piece (size=%d)\n", sz
);
789 FIXME("Unexpected empty stack\n");
790 return loc_err_internal
;
792 if (loc
->reg
!= Wine_DW_no_register
)
794 WARN("Too complex expression for deref\n");
795 return loc_err_too_complex
;
799 DWORD_PTR addr
= stack
[stk
--];
802 if (!ReadProcessMemory(hproc
, (void*)addr
, &deref
, sizeof(deref
), NULL
))
804 WARN("Couldn't read memory at %lx\n", addr
);
805 return loc_err_cant_read
;
807 stack
[++stk
] = deref
;
811 loc
->kind
= loc_dwarf2_block
;
814 case DW_OP_deref_size
:
817 FIXME("Unexpected empty stack\n");
818 return loc_err_internal
;
820 if (loc
->reg
!= Wine_DW_no_register
)
822 WARN("Too complex expression for deref\n");
823 return loc_err_too_complex
;
827 DWORD_PTR addr
= stack
[stk
--];
828 BYTE derefsize
= dwarf2_parse_byte(ctx
);
831 if (!ReadProcessMemory(hproc
, (void*)addr
, &deref
, derefsize
, NULL
))
833 WARN("Couldn't read memory at %lx\n", addr
);
834 return loc_err_cant_read
;
839 case 1: stack
[++stk
] = *(unsigned char*)&deref
; break;
840 case 2: stack
[++stk
] = *(unsigned short*)&deref
; break;
841 case 4: stack
[++stk
] = *(DWORD
*)&deref
; break;
842 case 8: if (ctx
->word_size
>= derefsize
) stack
[++stk
] = deref
; break;
847 loc
->kind
= loc_dwarf2_block
;
851 if (op
< DW_OP_lo_user
) /* as DW_OP_hi_user is 0xFF, we don't need to test against it */
852 FIXME("Unhandled attr op: %x\n", op
);
853 /* FIXME else unhandled extension */
854 return loc_err_internal
;
857 loc
->offset
= stack
[stk
];
861 static BOOL
dwarf2_compute_location_attr(dwarf2_parse_context_t
* ctx
,
862 const dwarf2_debug_info_t
* di
,
864 struct location
* loc
,
865 const struct location
* frame
)
867 struct attribute xloc
;
869 if (!dwarf2_find_attribute(ctx
, di
, dw
, &xloc
)) return FALSE
;
873 case DW_FORM_data1
: case DW_FORM_data2
:
874 case DW_FORM_udata
: case DW_FORM_sdata
:
875 loc
->kind
= loc_absolute
;
877 loc
->offset
= xloc
.u
.uvalue
;
879 case DW_FORM_data4
: case DW_FORM_data8
:
880 loc
->kind
= loc_dwarf2_location_list
;
881 loc
->reg
= Wine_DW_no_register
;
882 loc
->offset
= xloc
.u
.uvalue
;
889 default: FIXME("Unsupported yet form %lx\n", xloc
.form
);
893 /* assume we have a block form */
895 if (xloc
.u
.block
.size
)
897 dwarf2_traverse_context_t lctx
;
898 enum location_error err
;
900 lctx
.data
= xloc
.u
.block
.ptr
;
901 lctx
.end_data
= xloc
.u
.block
.ptr
+ xloc
.u
.block
.size
;
902 lctx
.word_size
= ctx
->module
->format_info
[DFI_DWARF
]->u
.dwarf2_info
->word_size
;
904 err
= compute_location(&lctx
, loc
, NULL
, frame
);
907 loc
->kind
= loc_error
;
910 else if (loc
->kind
== loc_dwarf2_block
)
912 unsigned* ptr
= pool_alloc(&ctx
->module
->pool
,
913 sizeof(unsigned) + xloc
.u
.block
.size
);
914 *ptr
= xloc
.u
.block
.size
;
915 memcpy(ptr
+ 1, xloc
.u
.block
.ptr
, xloc
.u
.block
.size
);
916 loc
->offset
= (unsigned long)ptr
;
922 static struct symt
* dwarf2_lookup_type(dwarf2_parse_context_t
* ctx
,
923 const dwarf2_debug_info_t
* di
)
925 struct attribute attr
;
927 if (dwarf2_find_attribute(ctx
, di
, DW_AT_type
, &attr
))
929 dwarf2_debug_info_t
* type
;
931 type
= sparse_array_find(&ctx
->debug_info_table
, attr
.u
.uvalue
);
932 if (!type
) FIXME("Unable to find back reference to type %lx\n", attr
.u
.uvalue
);
935 /* load the debug info entity */
936 dwarf2_load_one_entry(ctx
, type
, NULL
);
943 /******************************************************************
944 * dwarf2_read_one_debug_info
946 * Loads into memory one debug info entry, and recursively its children (if any)
948 static BOOL
dwarf2_read_one_debug_info(dwarf2_parse_context_t
* ctx
,
949 dwarf2_traverse_context_t
* traverse
,
950 dwarf2_debug_info_t
** pdi
)
952 const dwarf2_abbrev_entry_t
*abbrev
;
953 unsigned long entry_code
;
954 unsigned long offset
;
955 dwarf2_debug_info_t
* di
;
956 dwarf2_debug_info_t
* child
;
957 dwarf2_debug_info_t
** where
;
958 dwarf2_abbrev_entry_attr_t
* attr
;
960 struct attribute sibling
;
962 offset
= traverse
->data
- ctx
->sections
[ctx
->section
].address
;
963 entry_code
= dwarf2_leb128_as_unsigned(traverse
);
964 TRACE("found entry_code %lu at 0x%lx\n", entry_code
, offset
);
970 abbrev
= dwarf2_abbrev_table_find_entry(&ctx
->abbrev_table
, entry_code
);
973 WARN("Cannot find abbrev entry for %lu at 0x%lx\n", entry_code
, offset
);
976 di
= sparse_array_add(&ctx
->debug_info_table
, offset
, &ctx
->pool
);
977 if (!di
) return FALSE
;
981 if (abbrev
->num_attr
)
983 di
->data
= pool_alloc(&ctx
->pool
, abbrev
->num_attr
* sizeof(const char*));
984 for (i
= 0, attr
= abbrev
->attrs
; attr
; i
++, attr
= attr
->next
)
986 di
->data
[i
] = traverse
->data
;
987 dwarf2_swallow_attribute(traverse
, attr
);
990 else di
->data
= NULL
;
991 if (abbrev
->have_child
)
993 vector_init(&di
->children
, sizeof(dwarf2_debug_info_t
*), 16);
994 while (traverse
->data
< traverse
->end_data
)
996 if (!dwarf2_read_one_debug_info(ctx
, traverse
, &child
)) return FALSE
;
998 where
= vector_add(&di
->children
, &ctx
->pool
);
999 if (!where
) return FALSE
;
1003 if (dwarf2_find_attribute(ctx
, di
, DW_AT_sibling
, &sibling
) &&
1004 traverse
->data
!= ctx
->sections
[ctx
->section
].address
+ sibling
.u
.uvalue
)
1006 WARN("setting cursor for %s to next sibling <0x%lx>\n",
1007 dwarf2_debug_traverse_ctx(traverse
), sibling
.u
.uvalue
);
1008 traverse
->data
= ctx
->sections
[ctx
->section
].address
+ sibling
.u
.uvalue
;
1014 static struct symt
* dwarf2_parse_base_type(dwarf2_parse_context_t
* ctx
,
1015 dwarf2_debug_info_t
* di
)
1017 struct attribute name
;
1018 struct attribute size
;
1019 struct attribute encoding
;
1022 if (di
->symt
) return di
->symt
;
1024 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1026 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
))
1027 name
.u
.string
= NULL
;
1028 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_byte_size
, &size
)) size
.u
.uvalue
= 0;
1029 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_encoding
, &encoding
)) encoding
.u
.uvalue
= DW_ATE_void
;
1031 switch (encoding
.u
.uvalue
)
1033 case DW_ATE_void
: bt
= btVoid
; break;
1034 case DW_ATE_address
: bt
= btULong
; break;
1035 case DW_ATE_boolean
: bt
= btBool
; break;
1036 case DW_ATE_complex_float
: bt
= btComplex
; break;
1037 case DW_ATE_float
: bt
= btFloat
; break;
1038 case DW_ATE_signed
: bt
= btInt
; break;
1039 case DW_ATE_unsigned
: bt
= btUInt
; break;
1040 case DW_ATE_signed_char
: bt
= btChar
; break;
1041 case DW_ATE_unsigned_char
: bt
= btChar
; break;
1042 default: bt
= btNoType
; break;
1044 di
->symt
= &symt_new_basic(ctx
->module
, bt
, name
.u
.string
, size
.u
.uvalue
)->symt
;
1048 assert(size
.u
.uvalue
== 0);
1049 cache_idx
= sc_void
;
1052 switch (size
.u
.uvalue
)
1054 case 1: cache_idx
= sc_int1
; break;
1055 case 2: cache_idx
= sc_int2
; break;
1056 case 4: cache_idx
= sc_int4
; break;
1061 if (cache_idx
!= -1 && !ctx
->symt_cache
[cache_idx
])
1062 ctx
->symt_cache
[cache_idx
] = di
->symt
;
1064 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1068 static struct symt
* dwarf2_parse_typedef(dwarf2_parse_context_t
* ctx
,
1069 dwarf2_debug_info_t
* di
)
1071 struct symt
* ref_type
;
1072 struct attribute name
;
1074 if (di
->symt
) return di
->symt
;
1076 TRACE("%s, for %lu\n", dwarf2_debug_ctx(ctx
), di
->abbrev
->entry_code
);
1078 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
)) name
.u
.string
= NULL
;
1079 ref_type
= dwarf2_lookup_type(ctx
, di
);
1082 di
->symt
= &symt_new_typedef(ctx
->module
, ref_type
, name
.u
.string
)->symt
;
1083 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1087 static struct symt
* dwarf2_parse_pointer_type(dwarf2_parse_context_t
* ctx
,
1088 dwarf2_debug_info_t
* di
)
1090 struct symt
* ref_type
;
1091 struct attribute size
;
1093 if (di
->symt
) return di
->symt
;
1095 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1097 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_byte_size
, &size
)) size
.u
.uvalue
= 0;
1098 if (!(ref_type
= dwarf2_lookup_type(ctx
, di
)))
1100 ref_type
= ctx
->symt_cache
[sc_void
];
1103 di
->symt
= &symt_new_pointer(ctx
->module
, ref_type
)->symt
;
1104 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1108 static struct symt
* dwarf2_parse_array_type(dwarf2_parse_context_t
* ctx
,
1109 dwarf2_debug_info_t
* di
)
1111 struct symt
* ref_type
;
1112 struct symt
* idx_type
= NULL
;
1113 struct attribute min
, max
, cnt
;
1114 dwarf2_debug_info_t
* child
;
1117 if (di
->symt
) return di
->symt
;
1119 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1121 if (!di
->abbrev
->have_child
)
1123 FIXME("array without range information\n");
1126 ref_type
= dwarf2_lookup_type(ctx
, di
);
1128 for (i
=0; i
<vector_length(&di
->children
); i
++)
1130 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1131 switch (child
->abbrev
->tag
)
1133 case DW_TAG_subrange_type
:
1134 idx_type
= dwarf2_lookup_type(ctx
, child
);
1135 if (!dwarf2_find_attribute(ctx
, child
, DW_AT_lower_bound
, &min
))
1137 if (!dwarf2_find_attribute(ctx
, child
, DW_AT_upper_bound
, &max
))
1139 if (dwarf2_find_attribute(ctx
, child
, DW_AT_count
, &cnt
))
1140 max
.u
.uvalue
= min
.u
.uvalue
+ cnt
.u
.uvalue
;
1143 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1144 child
->abbrev
->tag
, dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1148 di
->symt
= &symt_new_array(ctx
->module
, min
.u
.uvalue
, max
.u
.uvalue
, ref_type
, idx_type
)->symt
;
1152 static struct symt
* dwarf2_parse_const_type(dwarf2_parse_context_t
* ctx
,
1153 dwarf2_debug_info_t
* di
)
1155 struct symt
* ref_type
;
1157 if (di
->symt
) return di
->symt
;
1159 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1161 ref_type
= dwarf2_lookup_type(ctx
, di
);
1162 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1163 di
->symt
= ref_type
;
1168 static struct symt
* dwarf2_parse_volatile_type(dwarf2_parse_context_t
* ctx
,
1169 dwarf2_debug_info_t
* di
)
1171 struct symt
* ref_type
;
1173 if (di
->symt
) return di
->symt
;
1175 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1177 ref_type
= dwarf2_lookup_type(ctx
, di
);
1178 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1179 di
->symt
= ref_type
;
1184 static struct symt
* dwarf2_parse_reference_type(dwarf2_parse_context_t
* ctx
,
1185 dwarf2_debug_info_t
* di
)
1187 struct symt
* ref_type
= NULL
;
1189 if (di
->symt
) return di
->symt
;
1191 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1193 ref_type
= dwarf2_lookup_type(ctx
, di
);
1194 /* FIXME: for now, we hard-wire C++ references to pointers */
1195 di
->symt
= &symt_new_pointer(ctx
->module
, ref_type
)->symt
;
1197 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1202 static void dwarf2_parse_udt_member(dwarf2_parse_context_t
* ctx
,
1203 const dwarf2_debug_info_t
* di
,
1204 struct symt_udt
* parent
)
1206 struct symt
* elt_type
;
1207 struct attribute name
;
1208 struct attribute bit_size
;
1209 struct attribute bit_offset
;
1210 struct location loc
;
1214 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1216 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
)) name
.u
.string
= NULL
;
1217 elt_type
= dwarf2_lookup_type(ctx
, di
);
1218 if (dwarf2_compute_location_attr(ctx
, di
, DW_AT_data_member_location
, &loc
, NULL
))
1220 if (loc
.kind
!= loc_absolute
)
1222 FIXME("Found register, while not expecting it\n");
1226 TRACE("found member_location at %s -> %lu\n",
1227 dwarf2_debug_ctx(ctx
), loc
.offset
);
1231 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_bit_size
, &bit_size
))
1232 bit_size
.u
.uvalue
= 0;
1233 if (dwarf2_find_attribute(ctx
, di
, DW_AT_bit_offset
, &bit_offset
))
1235 /* FIXME: we should only do this when implementation is LSB (which is
1236 * the case on i386 processors)
1238 struct attribute nbytes
;
1239 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_byte_size
, &nbytes
))
1242 nbytes
.u
.uvalue
= symt_get_info(ctx
->module
, elt_type
, TI_GET_LENGTH
, &size
) ?
1243 (unsigned long)size
: 0;
1245 bit_offset
.u
.uvalue
= nbytes
.u
.uvalue
* 8 - bit_offset
.u
.uvalue
- bit_size
.u
.uvalue
;
1247 else bit_offset
.u
.uvalue
= 0;
1248 symt_add_udt_element(ctx
->module
, parent
, name
.u
.string
, elt_type
,
1249 (loc
.offset
<< 3) + bit_offset
.u
.uvalue
,
1252 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1255 static struct symt
* dwarf2_parse_udt_type(dwarf2_parse_context_t
* ctx
,
1256 dwarf2_debug_info_t
* di
,
1259 struct attribute name
;
1260 struct attribute size
;
1262 if (di
->symt
) return di
->symt
;
1264 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1266 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
)) name
.u
.string
= NULL
;
1267 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_byte_size
, &size
)) size
.u
.uvalue
= 0;
1269 di
->symt
= &symt_new_udt(ctx
->module
, name
.u
.string
, size
.u
.uvalue
, udt
)->symt
;
1271 if (di
->abbrev
->have_child
) /** any interest to not have child ? */
1273 dwarf2_debug_info_t
* child
;
1276 for (i
=0; i
<vector_length(&di
->children
); i
++)
1278 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1280 switch (child
->abbrev
->tag
)
1283 /* FIXME: should I follow the sibling stuff ?? */
1284 dwarf2_parse_udt_member(ctx
, child
, (struct symt_udt
*)di
->symt
);
1286 case DW_TAG_enumeration_type
:
1287 dwarf2_parse_enumeration_type(ctx
, child
);
1289 case DW_TAG_structure_type
:
1290 case DW_TAG_class_type
:
1291 case DW_TAG_union_type
:
1292 case DW_TAG_typedef
:
1293 /* FIXME: we need to handle nested udt definitions */
1294 case DW_TAG_inheritance
:
1295 case DW_TAG_subprogram
:
1296 case DW_TAG_variable
:
1297 /* FIXME: some C++ related stuff */
1300 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1301 child
->abbrev
->tag
, dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1310 static void dwarf2_parse_enumerator(dwarf2_parse_context_t
* ctx
,
1311 const dwarf2_debug_info_t
* di
,
1312 struct symt_enum
* parent
)
1314 struct attribute name
;
1315 struct attribute value
;
1317 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1319 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
)) return;
1320 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_const_value
, &value
)) value
.u
.svalue
= 0;
1321 symt_add_enum_element(ctx
->module
, parent
, name
.u
.string
, value
.u
.svalue
);
1323 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1326 static struct symt
* dwarf2_parse_enumeration_type(dwarf2_parse_context_t
* ctx
,
1327 dwarf2_debug_info_t
* di
)
1329 struct attribute name
;
1330 struct attribute size
;
1331 struct symt_basic
* basetype
;
1333 if (di
->symt
) return di
->symt
;
1335 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1337 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
)) name
.u
.string
= NULL
;
1338 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_byte_size
, &size
)) size
.u
.uvalue
= 4;
1340 switch (size
.u
.uvalue
) /* FIXME: that's wrong */
1342 case 1: basetype
= symt_new_basic(ctx
->module
, btInt
, "char", 1); break;
1343 case 2: basetype
= symt_new_basic(ctx
->module
, btInt
, "short", 2); break;
1345 case 4: basetype
= symt_new_basic(ctx
->module
, btInt
, "int", 4); break;
1348 di
->symt
= &symt_new_enum(ctx
->module
, name
.u
.string
, &basetype
->symt
)->symt
;
1350 if (di
->abbrev
->have_child
) /* any interest to not have child ? */
1352 dwarf2_debug_info_t
* child
;
1355 /* FIXME: should we use the sibling stuff ?? */
1356 for (i
=0; i
<vector_length(&di
->children
); i
++)
1358 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1360 switch (child
->abbrev
->tag
)
1362 case DW_TAG_enumerator
:
1363 dwarf2_parse_enumerator(ctx
, child
, (struct symt_enum
*)di
->symt
);
1366 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1367 di
->abbrev
->tag
, dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1374 /* structure used to pass information around when parsing a subprogram */
1375 typedef struct dwarf2_subprogram_s
1377 dwarf2_parse_context_t
* ctx
;
1378 struct symt_compiland
* compiland
;
1379 struct symt_function
* func
;
1380 BOOL non_computed_variable
;
1381 struct location frame
;
1382 } dwarf2_subprogram_t
;
1384 /******************************************************************
1385 * dwarf2_parse_variable
1387 * Parses any variable (parameter, local/global variable)
1389 static void dwarf2_parse_variable(dwarf2_subprogram_t
* subpgm
,
1390 struct symt_block
* block
,
1391 dwarf2_debug_info_t
* di
)
1393 struct symt
* param_type
;
1394 struct attribute name
, value
;
1395 struct location loc
;
1398 TRACE("%s, for %s\n", dwarf2_debug_ctx(subpgm
->ctx
), dwarf2_debug_di(di
));
1400 is_pmt
= !block
&& di
->abbrev
->tag
== DW_TAG_formal_parameter
;
1401 param_type
= dwarf2_lookup_type(subpgm
->ctx
, di
);
1403 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_name
, &name
)) {
1404 /* cannot do much without the name, the functions below won't like it. */
1407 if (dwarf2_compute_location_attr(subpgm
->ctx
, di
, DW_AT_location
,
1408 &loc
, &subpgm
->frame
))
1410 struct attribute ext
;
1412 TRACE("found parameter %s (kind=%d, offset=%ld, reg=%d) at %s\n",
1413 name
.u
.string
, loc
.kind
, loc
.offset
, loc
.reg
,
1414 dwarf2_debug_ctx(subpgm
->ctx
));
1421 /* it's a global variable */
1422 /* FIXME: we don't handle its scope yet */
1423 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_external
, &ext
))
1425 symt_new_global_variable(subpgm
->ctx
->module
, subpgm
->compiland
,
1426 name
.u
.string
, !ext
.u
.uvalue
,
1427 subpgm
->ctx
->load_offset
+ loc
.offset
,
1431 subpgm
->non_computed_variable
= TRUE
;
1435 /* either a pmt/variable relative to frame pointer or
1436 * pmt/variable in a register
1438 assert(subpgm
->func
);
1439 symt_add_func_local(subpgm
->ctx
->module
, subpgm
->func
,
1440 is_pmt
? DataIsParam
: DataIsLocal
,
1441 &loc
, block
, param_type
, name
.u
.string
);
1445 else if (dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_const_value
, &value
))
1448 if (subpgm
->func
) WARN("Unsupported constant %s in function\n", name
.u
.string
);
1449 if (is_pmt
) FIXME("Unsupported constant (parameter) %s in function\n", name
.u
.string
);
1457 v
.n1
.n2
.vt
= VT_UI4
;
1458 v
.n1
.n2
.n3
.lVal
= value
.u
.uvalue
;
1462 v
.n1
.n2
.vt
= VT_UI8
;
1463 v
.n1
.n2
.n3
.llVal
= value
.u
.lluvalue
;
1468 v
.n1
.n2
.n3
.lVal
= value
.u
.svalue
;
1472 case DW_FORM_string
:
1473 /* FIXME: native doesn't report const strings from here !!
1474 * however, the value of the string is in the code somewhere
1476 v
.n1
.n2
.vt
= VT_I1
| VT_BYREF
;
1477 v
.n1
.n2
.n3
.byref
= pool_strdup(&subpgm
->ctx
->module
->pool
, value
.u
.string
);
1481 case DW_FORM_block1
:
1482 case DW_FORM_block2
:
1483 case DW_FORM_block4
:
1485 switch (value
.u
.block
.size
)
1487 case 1: v
.n1
.n2
.n3
.lVal
= *(BYTE
*)value
.u
.block
.ptr
; break;
1488 case 2: v
.n1
.n2
.n3
.lVal
= *(USHORT
*)value
.u
.block
.ptr
; break;
1489 case 4: v
.n1
.n2
.n3
.lVal
= *(DWORD
*)value
.u
.block
.ptr
; break;
1491 v
.n1
.n2
.vt
= VT_I1
| VT_BYREF
;
1492 v
.n1
.n2
.n3
.byref
= pool_alloc(&subpgm
->ctx
->module
->pool
, value
.u
.block
.size
);
1493 memcpy(v
.n1
.n2
.n3
.byref
, value
.u
.block
.ptr
, value
.u
.block
.size
);
1498 FIXME("Unsupported form for const value %s (%lx)\n",
1499 name
.u
.string
, value
.form
);
1500 v
.n1
.n2
.vt
= VT_EMPTY
;
1502 di
->symt
= &symt_new_constant(subpgm
->ctx
->module
, subpgm
->compiland
,
1503 name
.u
.string
, param_type
, &v
)->symt
;
1505 if (is_pmt
&& subpgm
->func
&& subpgm
->func
->type
)
1506 symt_add_function_signature_parameter(subpgm
->ctx
->module
,
1507 (struct symt_function_signature
*)subpgm
->func
->type
,
1510 if (di
->abbrev
->have_child
) FIXME("Unsupported children\n");
1513 static void dwarf2_parse_subprogram_label(dwarf2_subprogram_t
* subpgm
,
1514 const dwarf2_debug_info_t
* di
)
1516 struct attribute name
;
1517 struct attribute low_pc
;
1518 struct location loc
;
1520 TRACE("%s, for %s\n", dwarf2_debug_ctx(subpgm
->ctx
), dwarf2_debug_di(di
));
1522 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_low_pc
, &low_pc
)) low_pc
.u
.uvalue
= 0;
1523 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_name
, &name
))
1524 name
.u
.string
= NULL
;
1526 loc
.kind
= loc_absolute
;
1527 loc
.offset
= subpgm
->ctx
->load_offset
+ low_pc
.u
.uvalue
;
1528 symt_add_function_point(subpgm
->ctx
->module
, subpgm
->func
, SymTagLabel
,
1529 &loc
, name
.u
.string
);
1532 static void dwarf2_parse_subprogram_block(dwarf2_subprogram_t
* subpgm
,
1533 struct symt_block
* parent_block
,
1534 const dwarf2_debug_info_t
* di
);
1536 static void dwarf2_parse_inlined_subroutine(dwarf2_subprogram_t
* subpgm
,
1537 struct symt_block
* parent_block
,
1538 const dwarf2_debug_info_t
* di
)
1540 struct symt_block
* block
;
1541 struct attribute low_pc
;
1542 struct attribute high_pc
;
1544 TRACE("%s, for %s\n", dwarf2_debug_ctx(subpgm
->ctx
), dwarf2_debug_di(di
));
1546 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_low_pc
, &low_pc
)) low_pc
.u
.uvalue
= 0;
1547 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_high_pc
, &high_pc
)) high_pc
.u
.uvalue
= 0;
1549 block
= symt_open_func_block(subpgm
->ctx
->module
, subpgm
->func
, parent_block
,
1550 subpgm
->ctx
->load_offset
+ low_pc
.u
.uvalue
- subpgm
->func
->address
,
1551 high_pc
.u
.uvalue
- low_pc
.u
.uvalue
);
1553 if (di
->abbrev
->have_child
) /** any interest to not have child ? */
1555 dwarf2_debug_info_t
* child
;
1558 for (i
=0; i
<vector_length(&di
->children
); i
++)
1560 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1562 switch (child
->abbrev
->tag
)
1564 case DW_TAG_formal_parameter
:
1565 case DW_TAG_variable
:
1566 dwarf2_parse_variable(subpgm
, block
, child
);
1568 case DW_TAG_lexical_block
:
1569 dwarf2_parse_subprogram_block(subpgm
, block
, child
);
1571 case DW_TAG_inlined_subroutine
:
1572 dwarf2_parse_inlined_subroutine(subpgm
, block
, child
);
1575 dwarf2_parse_subprogram_label(subpgm
, child
);
1578 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1579 child
->abbrev
->tag
, dwarf2_debug_ctx(subpgm
->ctx
),
1580 dwarf2_debug_di(di
));
1584 symt_close_func_block(subpgm
->ctx
->module
, subpgm
->func
, block
, 0);
1587 static void dwarf2_parse_subprogram_block(dwarf2_subprogram_t
* subpgm
,
1588 struct symt_block
* parent_block
,
1589 const dwarf2_debug_info_t
* di
)
1591 struct symt_block
* block
;
1592 struct attribute low_pc
;
1593 struct attribute high_pc
;
1595 TRACE("%s, for %s\n", dwarf2_debug_ctx(subpgm
->ctx
), dwarf2_debug_di(di
));
1597 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_low_pc
, &low_pc
))
1598 low_pc
.u
.uvalue
= 0;
1599 if (!dwarf2_find_attribute(subpgm
->ctx
, di
, DW_AT_high_pc
, &high_pc
))
1600 high_pc
.u
.uvalue
= 0;
1602 block
= symt_open_func_block(subpgm
->ctx
->module
, subpgm
->func
, parent_block
,
1603 subpgm
->ctx
->load_offset
+ low_pc
.u
.uvalue
- subpgm
->func
->address
,
1604 high_pc
.u
.uvalue
- low_pc
.u
.uvalue
);
1606 if (di
->abbrev
->have_child
) /** any interest to not have child ? */
1608 dwarf2_debug_info_t
* child
;
1611 for (i
=0; i
<vector_length(&di
->children
); i
++)
1613 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1615 switch (child
->abbrev
->tag
)
1617 case DW_TAG_inlined_subroutine
:
1618 dwarf2_parse_inlined_subroutine(subpgm
, block
, child
);
1620 case DW_TAG_variable
:
1621 dwarf2_parse_variable(subpgm
, block
, child
);
1623 case DW_TAG_lexical_block
:
1624 dwarf2_parse_subprogram_block(subpgm
, block
, child
);
1626 case DW_TAG_subprogram
:
1627 /* FIXME: likely a declaration (to be checked)
1631 case DW_TAG_formal_parameter
:
1632 /* FIXME: likely elements for exception handling (GCC flavor)
1637 dwarf2_parse_subprogram_label(subpgm
, child
);
1639 case DW_TAG_class_type
:
1640 case DW_TAG_structure_type
:
1641 case DW_TAG_union_type
:
1642 case DW_TAG_enumeration_type
:
1643 case DW_TAG_typedef
:
1644 /* the type referred to will be loaded when we need it, so skip it */
1647 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1648 child
->abbrev
->tag
, dwarf2_debug_ctx(subpgm
->ctx
), dwarf2_debug_di(di
));
1653 symt_close_func_block(subpgm
->ctx
->module
, subpgm
->func
, block
, 0);
1656 static struct symt
* dwarf2_parse_subprogram(dwarf2_parse_context_t
* ctx
,
1657 dwarf2_debug_info_t
* di
,
1658 struct symt_compiland
* compiland
)
1660 struct attribute name
;
1661 struct attribute low_pc
;
1662 struct attribute high_pc
;
1663 struct attribute is_decl
;
1664 struct attribute inline_flags
;
1665 struct symt
* ret_type
;
1666 struct symt_function_signature
* sig_type
;
1667 dwarf2_subprogram_t subpgm
;
1669 if (di
->symt
) return di
->symt
;
1671 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1673 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_name
, &name
))
1675 WARN("No name for function... dropping function\n");
1678 /* if it's an abstract representation of an inline function, there should be
1679 * a concrete object that we'll handle
1681 if (dwarf2_find_attribute(ctx
, di
, DW_AT_inline
, &inline_flags
))
1683 TRACE("Function %s declared as inlined (%ld)... skipping\n",
1684 name
.u
.string
? name
.u
.string
: "(null)", inline_flags
.u
.uvalue
);
1688 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_low_pc
, &low_pc
)) low_pc
.u
.uvalue
= 0;
1689 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_high_pc
, &high_pc
)) high_pc
.u
.uvalue
= 0;
1690 /* As functions (defined as inline assembly) get debug info with dwarf
1691 * (not the case for stabs), we just drop Wine's thunks here...
1692 * Actual thunks will be created in elf_module from the symbol table
1694 if (elf_is_in_thunk_area(ctx
->load_offset
+ low_pc
.u
.uvalue
,
1697 if (!dwarf2_find_attribute(ctx
, di
, DW_AT_declaration
, &is_decl
))
1698 is_decl
.u
.uvalue
= 0;
1700 if (!(ret_type
= dwarf2_lookup_type(ctx
, di
)))
1702 ret_type
= ctx
->symt_cache
[sc_void
];
1706 /* FIXME: assuming C source code */
1707 sig_type
= symt_new_function_signature(ctx
->module
, ret_type
, CV_CALL_FAR_C
);
1708 if (!is_decl
.u
.uvalue
)
1710 subpgm
.func
= symt_new_function(ctx
->module
, compiland
, name
.u
.string
,
1711 ctx
->load_offset
+ low_pc
.u
.uvalue
,
1712 high_pc
.u
.uvalue
- low_pc
.u
.uvalue
,
1714 di
->symt
= &subpgm
.func
->symt
;
1716 else subpgm
.func
= NULL
;
1719 subpgm
.compiland
= compiland
;
1720 if (!dwarf2_compute_location_attr(ctx
, di
, DW_AT_frame_base
,
1721 &subpgm
.frame
, NULL
))
1724 subpgm
.frame
.kind
= loc_regrel
;
1725 subpgm
.frame
.reg
= 0;
1726 subpgm
.frame
.offset
= 0;
1728 subpgm
.non_computed_variable
= FALSE
;
1730 if (di
->abbrev
->have_child
) /** any interest to not have child ? */
1732 dwarf2_debug_info_t
* child
;
1735 for (i
=0; i
<vector_length(&di
->children
); i
++)
1737 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1739 switch (child
->abbrev
->tag
)
1741 case DW_TAG_variable
:
1742 case DW_TAG_formal_parameter
:
1743 dwarf2_parse_variable(&subpgm
, NULL
, child
);
1745 case DW_TAG_lexical_block
:
1746 dwarf2_parse_subprogram_block(&subpgm
, NULL
, child
);
1748 case DW_TAG_inlined_subroutine
:
1749 dwarf2_parse_inlined_subroutine(&subpgm
, NULL
, child
);
1751 case DW_TAG_subprogram
:
1752 /* FIXME: likely a declaration (to be checked)
1757 dwarf2_parse_subprogram_label(&subpgm
, child
);
1759 case DW_TAG_class_type
:
1760 case DW_TAG_structure_type
:
1761 case DW_TAG_union_type
:
1762 case DW_TAG_enumeration_type
:
1763 case DW_TAG_typedef
:
1764 /* the type referred to will be loaded when we need it, so skip it */
1766 case DW_TAG_unspecified_parameters
:
1767 /* FIXME: no support in dbghelp's internals so far */
1770 FIXME("Unhandled Tag type 0x%lx at %s, for %s\n",
1771 child
->abbrev
->tag
, dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1776 if (subpgm
.non_computed_variable
|| subpgm
.frame
.kind
>= loc_user
)
1778 symt_add_function_point(ctx
->module
, subpgm
.func
, SymTagCustom
,
1779 &subpgm
.frame
, NULL
);
1781 if (subpgm
.func
) symt_normalize_function(subpgm
.ctx
->module
, subpgm
.func
);
1786 static struct symt
* dwarf2_parse_subroutine_type(dwarf2_parse_context_t
* ctx
,
1787 dwarf2_debug_info_t
* di
)
1789 struct symt
* ret_type
;
1790 struct symt_function_signature
* sig_type
;
1792 if (di
->symt
) return di
->symt
;
1794 TRACE("%s, for %s\n", dwarf2_debug_ctx(ctx
), dwarf2_debug_di(di
));
1796 if (!(ret_type
= dwarf2_lookup_type(ctx
, di
)))
1798 ret_type
= ctx
->symt_cache
[sc_void
];
1802 /* FIXME: assuming C source code */
1803 sig_type
= symt_new_function_signature(ctx
->module
, ret_type
, CV_CALL_FAR_C
);
1805 if (di
->abbrev
->have_child
) /** any interest to not have child ? */
1807 dwarf2_debug_info_t
* child
;
1810 for (i
=0; i
<vector_length(&di
->children
); i
++)
1812 child
= *(dwarf2_debug_info_t
**)vector_at(&di
->children
, i
);
1814 switch (child
->abbrev
->tag
)
1816 case DW_TAG_formal_parameter
:
1817 symt_add_function_signature_parameter(ctx
->module
, sig_type
,
1818 dwarf2_lookup_type(ctx
, child
));
1820 case DW_TAG_unspecified_parameters
:
1821 WARN("Unsupported unspecified parameters\n");
1827 return di
->symt
= &sig_type
->symt
;
1830 static void dwarf2_load_one_entry(dwarf2_parse_context_t
* ctx
,
1831 dwarf2_debug_info_t
* di
,
1832 struct symt_compiland
* compiland
)
1834 switch (di
->abbrev
->tag
)
1836 case DW_TAG_typedef
:
1837 dwarf2_parse_typedef(ctx
, di
);
1839 case DW_TAG_base_type
:
1840 dwarf2_parse_base_type(ctx
, di
);
1842 case DW_TAG_pointer_type
:
1843 dwarf2_parse_pointer_type(ctx
, di
);
1845 case DW_TAG_class_type
:
1846 dwarf2_parse_udt_type(ctx
, di
, UdtClass
);
1848 case DW_TAG_structure_type
:
1849 dwarf2_parse_udt_type(ctx
, di
, UdtStruct
);
1851 case DW_TAG_union_type
:
1852 dwarf2_parse_udt_type(ctx
, di
, UdtUnion
);
1854 case DW_TAG_array_type
:
1855 dwarf2_parse_array_type(ctx
, di
);
1857 case DW_TAG_const_type
:
1858 dwarf2_parse_const_type(ctx
, di
);
1860 case DW_TAG_volatile_type
:
1861 dwarf2_parse_volatile_type(ctx
, di
);
1863 case DW_TAG_reference_type
:
1864 dwarf2_parse_reference_type(ctx
, di
);
1866 case DW_TAG_enumeration_type
:
1867 dwarf2_parse_enumeration_type(ctx
, di
);
1869 case DW_TAG_subprogram
:
1870 dwarf2_parse_subprogram(ctx
, di
, compiland
);
1872 case DW_TAG_subroutine_type
:
1873 dwarf2_parse_subroutine_type(ctx
, di
);
1875 case DW_TAG_variable
:
1877 dwarf2_subprogram_t subpgm
;
1880 subpgm
.compiland
= compiland
;
1882 subpgm
.frame
.kind
= loc_absolute
;
1883 subpgm
.frame
.offset
= 0;
1884 subpgm
.frame
.reg
= Wine_DW_no_register
;
1885 dwarf2_parse_variable(&subpgm
, NULL
, di
);
1888 /* silence a couple of C++ defines */
1889 case DW_TAG_namespace
:
1890 case DW_TAG_imported_module
:
1891 case DW_TAG_imported_declaration
:
1894 FIXME("Unhandled Tag type 0x%lx at %s, for %lu\n",
1895 di
->abbrev
->tag
, dwarf2_debug_ctx(ctx
), di
->abbrev
->entry_code
);
1899 static void dwarf2_set_line_number(struct module
* module
, unsigned long address
,
1900 const struct vector
* v
, unsigned file
, unsigned line
)
1902 struct symt_function
* func
;
1903 struct symt_ht
* symt
;
1906 if (!file
|| !(psrc
= vector_at(v
, file
- 1))) return;
1908 TRACE("%s %lx %s %u\n",
1909 debugstr_w(module
->module
.ModuleName
), address
, source_get(module
, *psrc
), line
);
1910 if (!(symt
= symt_find_nearest(module
, address
)) ||
1911 symt
->symt
.tag
!= SymTagFunction
) return;
1912 func
= (struct symt_function
*)symt
;
1913 symt_add_func_line(module
, func
, *psrc
, line
, address
- func
->address
);
1916 static BOOL
dwarf2_parse_line_numbers(const dwarf2_section_t
* sections
,
1917 dwarf2_parse_context_t
* ctx
,
1918 const char* compile_dir
,
1919 unsigned long offset
)
1921 dwarf2_traverse_context_t traverse
;
1922 unsigned long length
;
1923 unsigned version
, header_len
, insn_size
, default_stmt
;
1924 unsigned line_range
, opcode_base
;
1926 const unsigned char* opcode_len
;
1928 struct vector files
;
1931 /* section with line numbers stripped */
1932 if (sections
[section_line
].address
== IMAGE_NO_MAP
)
1935 traverse
.data
= sections
[section_line
].address
+ offset
;
1936 traverse
.end_data
= traverse
.data
+ 4;
1937 traverse
.word_size
= ctx
->module
->format_info
[DFI_DWARF
]->u
.dwarf2_info
->word_size
;
1939 length
= dwarf2_parse_u4(&traverse
);
1940 traverse
.end_data
= sections
[section_line
].address
+ offset
+ length
;
1942 version
= dwarf2_parse_u2(&traverse
);
1943 header_len
= dwarf2_parse_u4(&traverse
);
1944 insn_size
= dwarf2_parse_byte(&traverse
);
1945 default_stmt
= dwarf2_parse_byte(&traverse
);
1946 line_base
= (signed char)dwarf2_parse_byte(&traverse
);
1947 line_range
= dwarf2_parse_byte(&traverse
);
1948 opcode_base
= dwarf2_parse_byte(&traverse
);
1950 opcode_len
= traverse
.data
;
1951 traverse
.data
+= opcode_base
- 1;
1953 vector_init(&dirs
, sizeof(const char*), 4);
1954 p
= vector_add(&dirs
, &ctx
->pool
);
1955 *p
= compile_dir
? compile_dir
: ".";
1956 while (*traverse
.data
)
1958 const char* rel
= (const char*)traverse
.data
;
1959 unsigned rellen
= strlen(rel
);
1960 TRACE("Got include %s\n", rel
);
1961 traverse
.data
+= rellen
+ 1;
1962 p
= vector_add(&dirs
, &ctx
->pool
);
1964 if (*rel
== '/' || !compile_dir
)
1968 /* include directory relative to compile directory */
1969 unsigned baselen
= strlen(compile_dir
);
1970 char* tmp
= pool_alloc(&ctx
->pool
, baselen
+ 1 + rellen
+ 1);
1971 strcpy(tmp
, compile_dir
);
1972 if (tmp
[baselen
- 1] != '/') tmp
[baselen
++] = '/';
1973 strcpy(&tmp
[baselen
], rel
);
1980 vector_init(&files
, sizeof(unsigned), 16);
1981 while (*traverse
.data
)
1983 unsigned int dir_index
, mod_time
, length
;
1988 name
= (const char*)traverse
.data
;
1989 traverse
.data
+= strlen(name
) + 1;
1990 dir_index
= dwarf2_leb128_as_unsigned(&traverse
);
1991 mod_time
= dwarf2_leb128_as_unsigned(&traverse
);
1992 length
= dwarf2_leb128_as_unsigned(&traverse
);
1993 dir
= *(const char**)vector_at(&dirs
, dir_index
);
1994 TRACE("Got file %s/%s (%u,%u)\n", dir
, name
, mod_time
, length
);
1995 psrc
= vector_add(&files
, &ctx
->pool
);
1996 *psrc
= source_new(ctx
->module
, dir
, name
);
2000 while (traverse
.data
< traverse
.end_data
)
2002 unsigned long address
= 0;
2005 unsigned is_stmt
= default_stmt
;
2006 BOOL basic_block
= FALSE
, end_sequence
= FALSE
;
2007 unsigned opcode
, extopcode
, i
;
2009 while (!end_sequence
)
2011 opcode
= dwarf2_parse_byte(&traverse
);
2012 TRACE("Got opcode %x\n", opcode
);
2014 if (opcode
>= opcode_base
)
2016 unsigned delta
= opcode
- opcode_base
;
2018 address
+= (delta
/ line_range
) * insn_size
;
2019 line
+= line_base
+ (delta
% line_range
);
2021 dwarf2_set_line_number(ctx
->module
, address
, &files
, file
, line
);
2028 basic_block
= FALSE
;
2029 dwarf2_set_line_number(ctx
->module
, address
, &files
, file
, line
);
2031 case DW_LNS_advance_pc
:
2032 address
+= insn_size
* dwarf2_leb128_as_unsigned(&traverse
);
2034 case DW_LNS_advance_line
:
2035 line
+= dwarf2_leb128_as_signed(&traverse
);
2037 case DW_LNS_set_file
:
2038 file
= dwarf2_leb128_as_unsigned(&traverse
);
2040 case DW_LNS_set_column
:
2041 dwarf2_leb128_as_unsigned(&traverse
);
2043 case DW_LNS_negate_stmt
:
2046 case DW_LNS_set_basic_block
:
2049 case DW_LNS_const_add_pc
:
2050 address
+= ((255 - opcode_base
) / line_range
) * insn_size
;
2052 case DW_LNS_fixed_advance_pc
:
2053 address
+= dwarf2_parse_u2(&traverse
);
2055 case DW_LNS_extended_op
:
2056 dwarf2_leb128_as_unsigned(&traverse
);
2057 extopcode
= dwarf2_parse_byte(&traverse
);
2060 case DW_LNE_end_sequence
:
2061 dwarf2_set_line_number(ctx
->module
, address
, &files
, file
, line
);
2062 end_sequence
= TRUE
;
2064 case DW_LNE_set_address
:
2065 address
= ctx
->load_offset
+ dwarf2_parse_addr(&traverse
);
2067 case DW_LNE_define_file
:
2068 FIXME("not handled %s\n", traverse
.data
);
2069 traverse
.data
+= strlen((const char *)traverse
.data
) + 1;
2070 dwarf2_leb128_as_unsigned(&traverse
);
2071 dwarf2_leb128_as_unsigned(&traverse
);
2072 dwarf2_leb128_as_unsigned(&traverse
);
2075 FIXME("Unsupported extended opcode %x\n", extopcode
);
2080 WARN("Unsupported opcode %x\n", opcode
);
2081 for (i
= 0; i
< opcode_len
[opcode
]; i
++)
2082 dwarf2_leb128_as_unsigned(&traverse
);
2091 static BOOL
dwarf2_parse_compilation_unit(const dwarf2_section_t
* sections
,
2092 struct module
* module
,
2093 const struct elf_thunk_area
* thunks
,
2094 dwarf2_traverse_context_t
* mod_ctx
,
2095 unsigned long load_offset
)
2097 dwarf2_parse_context_t ctx
;
2098 dwarf2_traverse_context_t abbrev_ctx
;
2099 dwarf2_debug_info_t
* di
;
2100 dwarf2_traverse_context_t cu_ctx
;
2101 const unsigned char* comp_unit_start
= mod_ctx
->data
;
2102 unsigned long cu_length
;
2103 unsigned short cu_version
;
2104 unsigned long cu_abbrev_offset
;
2107 cu_length
= dwarf2_parse_u4(mod_ctx
);
2108 cu_ctx
.data
= mod_ctx
->data
;
2109 cu_ctx
.end_data
= mod_ctx
->data
+ cu_length
;
2110 mod_ctx
->data
+= cu_length
;
2111 cu_version
= dwarf2_parse_u2(&cu_ctx
);
2112 cu_abbrev_offset
= dwarf2_parse_u4(&cu_ctx
);
2113 cu_ctx
.word_size
= dwarf2_parse_byte(&cu_ctx
);
2115 TRACE("Compilation Unit Header found at 0x%x:\n",
2116 (int)(comp_unit_start
- sections
[section_debug
].address
));
2117 TRACE("- length: %lu\n", cu_length
);
2118 TRACE("- version: %u\n", cu_version
);
2119 TRACE("- abbrev_offset: %lu\n", cu_abbrev_offset
);
2120 TRACE("- word_size: %u\n", cu_ctx
.word_size
);
2122 if (cu_version
!= 2)
2124 WARN("%u DWARF version unsupported. Wine dbghelp only support DWARF 2.\n",
2129 module
->format_info
[DFI_DWARF
]->u
.dwarf2_info
->word_size
= cu_ctx
.word_size
;
2130 mod_ctx
->word_size
= cu_ctx
.word_size
;
2132 pool_init(&ctx
.pool
, 65536);
2133 ctx
.sections
= sections
;
2134 ctx
.section
= section_debug
;
2135 ctx
.module
= module
;
2136 ctx
.thunks
= thunks
;
2137 ctx
.load_offset
= load_offset
;
2138 ctx
.ref_offset
= comp_unit_start
- sections
[section_debug
].address
;
2139 memset(ctx
.symt_cache
, 0, sizeof(ctx
.symt_cache
));
2140 ctx
.symt_cache
[sc_void
] = &symt_new_basic(module
, btVoid
, "void", 0)->symt
;
2142 abbrev_ctx
.data
= sections
[section_abbrev
].address
+ cu_abbrev_offset
;
2143 abbrev_ctx
.end_data
= sections
[section_abbrev
].address
+ sections
[section_abbrev
].size
;
2144 abbrev_ctx
.word_size
= cu_ctx
.word_size
;
2145 dwarf2_parse_abbrev_set(&abbrev_ctx
, &ctx
.abbrev_table
, &ctx
.pool
);
2147 sparse_array_init(&ctx
.debug_info_table
, sizeof(dwarf2_debug_info_t
), 128);
2148 dwarf2_read_one_debug_info(&ctx
, &cu_ctx
, &di
);
2150 if (di
->abbrev
->tag
== DW_TAG_compile_unit
)
2152 struct attribute name
;
2153 dwarf2_debug_info_t
** pdi
= NULL
;
2154 struct attribute stmt_list
, low_pc
;
2155 struct attribute comp_dir
;
2157 if (!dwarf2_find_attribute(&ctx
, di
, DW_AT_name
, &name
))
2158 name
.u
.string
= NULL
;
2160 /* get working directory of current compilation unit */
2161 if (!dwarf2_find_attribute(&ctx
, di
, DW_AT_comp_dir
, &comp_dir
))
2162 comp_dir
.u
.string
= NULL
;
2164 if (!dwarf2_find_attribute(&ctx
, di
, DW_AT_low_pc
, &low_pc
))
2165 low_pc
.u
.uvalue
= 0;
2166 di
->symt
= &symt_new_compiland(module
,
2167 ctx
.load_offset
+ low_pc
.u
.uvalue
,
2168 source_new(module
, comp_dir
.u
.string
, name
.u
.string
))->symt
;
2170 if (di
->abbrev
->have_child
)
2173 for (i
=0; i
<vector_length(&di
->children
); i
++)
2175 pdi
= vector_at(&di
->children
, i
);
2176 dwarf2_load_one_entry(&ctx
, *pdi
, (struct symt_compiland
*)di
->symt
);
2179 if (dwarf2_find_attribute(&ctx
, di
, DW_AT_stmt_list
, &stmt_list
))
2181 if (dwarf2_parse_line_numbers(sections
, &ctx
, comp_dir
.u
.string
, stmt_list
.u
.uvalue
))
2182 module
->module
.LineNumbers
= TRUE
;
2186 else FIXME("Should have a compilation unit here\n");
2187 pool_destroy(&ctx
.pool
);
2191 static BOOL
dwarf2_lookup_loclist(const struct module_format
* modfmt
, const BYTE
* start
,
2192 unsigned long ip
, dwarf2_traverse_context_t
* lctx
)
2195 const BYTE
* ptr
= start
;
2198 while (ptr
< modfmt
->u
.dwarf2_info
->debug_loc
.address
+ modfmt
->u
.dwarf2_info
->debug_loc
.size
)
2200 beg
= dwarf2_get_addr(ptr
, modfmt
->u
.dwarf2_info
->word_size
); ptr
+= modfmt
->u
.dwarf2_info
->word_size
;
2201 end
= dwarf2_get_addr(ptr
, modfmt
->u
.dwarf2_info
->word_size
); ptr
+= modfmt
->u
.dwarf2_info
->word_size
;
2202 if (!beg
&& !end
) break;
2203 len
= dwarf2_get_u2(ptr
); ptr
+= 2;
2205 if (beg
<= ip
&& ip
< end
)
2208 lctx
->end_data
= ptr
+ len
;
2209 lctx
->word_size
= modfmt
->u
.dwarf2_info
->word_size
;
2214 WARN("Couldn't find ip in location list\n");
2218 static enum location_error
loc_compute_frame(struct process
* pcs
,
2219 const struct module_format
* modfmt
,
2220 const struct symt_function
* func
,
2221 DWORD_PTR ip
, struct location
* frame
)
2223 struct symt
** psym
= NULL
;
2224 struct location
* pframe
;
2225 dwarf2_traverse_context_t lctx
;
2226 enum location_error err
;
2229 for (i
=0; i
<vector_length(&func
->vchildren
); i
++)
2231 psym
= vector_at(&func
->vchildren
, i
);
2232 if ((*psym
)->tag
== SymTagCustom
)
2234 pframe
= &((struct symt_hierarchy_point
*)*psym
)->loc
;
2236 /* First, recompute the frame information, if needed */
2237 switch (pframe
->kind
)
2243 case loc_dwarf2_location_list
:
2244 WARN("Searching loclist for %s\n", func
->hash_elt
.name
);
2245 if (!dwarf2_lookup_loclist(modfmt
,
2246 modfmt
->u
.dwarf2_info
->debug_loc
.address
+ pframe
->offset
,
2248 return loc_err_out_of_scope
;
2249 if ((err
= compute_location(&lctx
, frame
, pcs
->handle
, NULL
)) < 0) return err
;
2250 if (frame
->kind
>= loc_user
)
2252 WARN("Couldn't compute runtime frame location\n");
2253 return loc_err_too_complex
;
2257 WARN("Unsupported frame kind %d\n", pframe
->kind
);
2258 return loc_err_internal
;
2263 WARN("Couldn't find Custom function point, whilst location list offset is searched\n");
2264 return loc_err_internal
;
2269 RULE_UNSET
, /* not set at all */
2270 RULE_UNDEFINED
, /* undefined value */
2271 RULE_SAME
, /* same value as previous frame */
2272 RULE_CFA_OFFSET
, /* stored at cfa offset */
2273 RULE_OTHER_REG
, /* stored in other register */
2274 RULE_EXPRESSION
, /* address specified by expression */
2275 RULE_VAL_EXPRESSION
/* value specified by expression */
2278 /* make it large enough for all CPUs */
2279 #define NB_FRAME_REGS 64
2284 ULONG_PTR code_align
;
2285 LONG_PTR data_align
;
2286 ULONG_PTR cfa_offset
;
2287 enum reg_rule cfa_rule
;
2288 unsigned char cfa_reg
;
2289 unsigned char retaddr_reg
;
2290 unsigned char fde_encoding
;
2291 unsigned char lsda_encoding
;
2292 unsigned char signal_frame
;
2293 unsigned char aug_z_format
;
2294 enum reg_rule rules
[NB_FRAME_REGS
];
2295 ULONG_PTR regs
[NB_FRAME_REGS
];
2298 static ULONG_PTR
dwarf2_parse_augmentation_ptr(dwarf2_traverse_context_t
* ctx
, unsigned char encoding
)
2302 if (encoding
== DW_EH_PE_omit
) return 0;
2304 switch (encoding
& 0xf0)
2309 case DW_EH_PE_pcrel
:
2310 base
= (ULONG_PTR
)ctx
->data
;
2313 FIXME("unsupported encoding %02x\n", encoding
);
2317 switch (encoding
& 0x0f)
2319 case DW_EH_PE_native
:
2320 return base
+ dwarf2_parse_addr(ctx
);
2321 case DW_EH_PE_leb128
:
2322 return base
+ dwarf2_leb128_as_unsigned(ctx
);
2323 case DW_EH_PE_data2
:
2324 return base
+ dwarf2_parse_u2(ctx
);
2325 case DW_EH_PE_data4
:
2326 return base
+ dwarf2_parse_u4(ctx
);
2327 case DW_EH_PE_data8
:
2328 return base
+ dwarf2_parse_u8(ctx
);
2329 case DW_EH_PE_signed
|DW_EH_PE_leb128
:
2330 return base
+ dwarf2_leb128_as_signed(ctx
);
2331 case DW_EH_PE_signed
|DW_EH_PE_data2
:
2332 return base
+ (signed short)dwarf2_parse_u2(ctx
);
2333 case DW_EH_PE_signed
|DW_EH_PE_data4
:
2334 return base
+ (signed int)dwarf2_parse_u4(ctx
);
2335 case DW_EH_PE_signed
|DW_EH_PE_data8
:
2336 return base
+ (LONG64
)dwarf2_parse_u8(ctx
);
2338 FIXME("unsupported encoding %02x\n", encoding
);
2343 static BOOL
parse_cie_details(dwarf2_traverse_context_t
* ctx
, struct frame_info
* info
)
2345 unsigned char version
;
2346 const char* augmentation
;
2347 const unsigned char* end
;
2350 memset(info
, 0, sizeof(*info
));
2351 info
->lsda_encoding
= DW_EH_PE_omit
;
2352 info
->aug_z_format
= 0;
2354 /* parse the CIE first */
2355 version
= dwarf2_parse_byte(ctx
);
2358 FIXME("unknown CIE version %u at %p\n", version
, ctx
->data
- 1);
2361 augmentation
= (const char*)ctx
->data
;
2362 ctx
->data
+= strlen(augmentation
) + 1;
2364 info
->code_align
= dwarf2_leb128_as_unsigned(ctx
);
2365 info
->data_align
= dwarf2_leb128_as_signed(ctx
);
2366 info
->retaddr_reg
= dwarf2_parse_byte(ctx
);
2367 info
->cfa_rule
= RULE_CFA_OFFSET
;
2370 TRACE("\tparsing augmentation %s\n", augmentation
);
2371 if (*augmentation
) do
2373 switch (*augmentation
)
2376 len
= dwarf2_leb128_as_unsigned(ctx
);
2377 end
= ctx
->data
+ len
;
2378 info
->aug_z_format
= 1;
2381 info
->lsda_encoding
= dwarf2_parse_byte(ctx
);
2385 unsigned char encoding
= dwarf2_parse_byte(ctx
);
2386 /* throw away the indirect bit, as we don't care for the result */
2387 encoding
&= ~DW_EH_PE_indirect
;
2388 dwarf2_parse_augmentation_ptr(ctx
, encoding
); /* handler */
2392 info
->fde_encoding
= dwarf2_parse_byte(ctx
);
2395 info
->signal_frame
= 1;
2398 FIXME("unknown augmentation '%c'\n", *augmentation
);
2399 if (!end
) return FALSE
;
2401 } while (*++augmentation
);
2402 if (end
) ctx
->data
= end
;
2406 static BOOL
dwarf2_get_cie(unsigned long addr
, struct module
* module
, DWORD_PTR delta
,
2407 dwarf2_traverse_context_t
* fde_ctx
, dwarf2_traverse_context_t
* cie_ctx
,
2408 struct frame_info
* info
, BOOL in_eh_frame
)
2410 const unsigned char* ptr_blk
;
2411 const unsigned char* cie_ptr
;
2412 const unsigned char* last_cie_ptr
= (const unsigned char*)~0;
2414 unsigned long start
, range
;
2416 const BYTE
* start_data
= fde_ctx
->data
;
2418 cie_id
= in_eh_frame
? 0 : DW_CIE_ID
;
2419 for (; fde_ctx
->data
+ 2 * 4 < fde_ctx
->end_data
; fde_ctx
->data
= ptr_blk
)
2421 /* find the FDE for address addr (skip CIE) */
2422 len
= dwarf2_parse_u4(fde_ctx
);
2423 if (len
== 0xffffffff) FIXME("Unsupported yet 64-bit CIEs\n");
2424 ptr_blk
= fde_ctx
->data
+ len
;
2425 id
= dwarf2_parse_u4(fde_ctx
);
2428 last_cie_ptr
= fde_ctx
->data
- 8;
2429 /* we need some bits out of the CIE in order to parse all contents */
2430 if (!parse_cie_details(fde_ctx
, info
)) return FALSE
;
2431 cie_ctx
->data
= fde_ctx
->data
;
2432 cie_ctx
->end_data
= ptr_blk
;
2433 cie_ctx
->word_size
= fde_ctx
->word_size
;
2436 cie_ptr
= (in_eh_frame
) ? fde_ctx
->data
- id
- 4 : start_data
+ id
;
2437 if (cie_ptr
!= last_cie_ptr
)
2439 last_cie_ptr
= cie_ptr
;
2440 cie_ctx
->data
= cie_ptr
;
2441 cie_ctx
->word_size
= fde_ctx
->word_size
;
2442 cie_ctx
->end_data
= cie_ptr
+ 4;
2443 cie_ctx
->end_data
= cie_ptr
+ 4 + dwarf2_parse_u4(cie_ctx
);
2444 if (dwarf2_parse_u4(cie_ctx
) != cie_id
)
2446 FIXME("wrong CIE pointer\n");
2449 if (!parse_cie_details(cie_ctx
, info
)) return FALSE
;
2451 start
= delta
+ dwarf2_parse_augmentation_ptr(fde_ctx
, info
->fde_encoding
);
2452 range
= dwarf2_parse_augmentation_ptr(fde_ctx
, info
->fde_encoding
& 0x0F);
2454 if (addr
>= start
&& addr
< start
+ range
)
2456 /* reset the FDE context */
2457 fde_ctx
->end_data
= ptr_blk
;
2466 static int valid_reg(ULONG_PTR reg
)
2468 if (reg
>= NB_FRAME_REGS
) FIXME("unsupported reg %lx\n", reg
);
2469 return (reg
< NB_FRAME_REGS
);
2472 static void execute_cfa_instructions(dwarf2_traverse_context_t
* ctx
,
2473 ULONG_PTR last_ip
, struct frame_info
*info
)
2475 while (ctx
->data
< ctx
->end_data
&& info
->ip
< last_ip
+ info
->signal_frame
)
2477 enum dwarf_call_frame_info op
= dwarf2_parse_byte(ctx
);
2483 case DW_CFA_advance_loc
:
2485 ULONG_PTR offset
= (op
& 0x3f) * info
->code_align
;
2486 TRACE("%lx: DW_CFA_advance_loc %lu\n", info
->ip
, offset
);
2492 ULONG_PTR reg
= op
& 0x3f;
2493 LONG_PTR offset
= dwarf2_leb128_as_unsigned(ctx
) * info
->data_align
;
2494 if (!valid_reg(reg
)) break;
2495 TRACE("%lx: DW_CFA_offset %s, %ld\n",
2497 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)),
2499 info
->regs
[reg
] = offset
;
2500 info
->rules
[reg
] = RULE_CFA_OFFSET
;
2503 case DW_CFA_restore
:
2505 ULONG_PTR reg
= op
& 0x3f;
2506 if (!valid_reg(reg
)) break;
2507 TRACE("%lx: DW_CFA_restore %s\n",
2509 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)));
2510 info
->rules
[reg
] = RULE_UNSET
;
2519 case DW_CFA_set_loc
:
2521 ULONG_PTR loc
= dwarf2_parse_augmentation_ptr(ctx
, info
->fde_encoding
);
2522 TRACE("%lx: DW_CFA_set_loc %lx\n", info
->ip
, loc
);
2526 case DW_CFA_advance_loc1
:
2528 ULONG_PTR offset
= dwarf2_parse_byte(ctx
) * info
->code_align
;
2529 TRACE("%lx: DW_CFA_advance_loc1 %lu\n", info
->ip
, offset
);
2533 case DW_CFA_advance_loc2
:
2535 ULONG_PTR offset
= dwarf2_parse_u2(ctx
) * info
->code_align
;
2536 TRACE("%lx: DW_CFA_advance_loc2 %lu\n", info
->ip
, offset
);
2540 case DW_CFA_advance_loc4
:
2542 ULONG_PTR offset
= dwarf2_parse_u4(ctx
) * info
->code_align
;
2543 TRACE("%lx: DW_CFA_advance_loc4 %lu\n", info
->ip
, offset
);
2547 case DW_CFA_offset_extended
:
2548 case DW_CFA_offset_extended_sf
:
2550 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2551 LONG_PTR offset
= (op
== DW_CFA_offset_extended
) ? dwarf2_leb128_as_unsigned(ctx
) * info
->data_align
2552 : dwarf2_leb128_as_signed(ctx
) * info
->data_align
;
2553 if (!valid_reg(reg
)) break;
2554 TRACE("%lx: DW_CFA_offset_extended %s, %ld\n",
2556 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)),
2558 info
->regs
[reg
] = offset
;
2559 info
->rules
[reg
] = RULE_CFA_OFFSET
;
2562 case DW_CFA_restore_extended
:
2564 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2565 if (!valid_reg(reg
)) break;
2566 TRACE("%lx: DW_CFA_restore_extended %s\n",
2568 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)));
2569 info
->rules
[reg
] = RULE_UNSET
;
2572 case DW_CFA_undefined
:
2574 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2575 if (!valid_reg(reg
)) break;
2576 TRACE("%lx: DW_CFA_undefined %s\n",
2578 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)));
2579 info
->rules
[reg
] = RULE_UNDEFINED
;
2582 case DW_CFA_same_value
:
2584 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2585 if (!valid_reg(reg
)) break;
2586 TRACE("%lx: DW_CFA_same_value %s\n",
2588 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)));
2589 info
->regs
[reg
] = reg
;
2590 info
->rules
[reg
] = RULE_SAME
;
2593 case DW_CFA_register
:
2595 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2596 ULONG_PTR reg2
= dwarf2_leb128_as_unsigned(ctx
);
2597 if (!valid_reg(reg
) || !valid_reg(reg2
)) break;
2598 TRACE("%lx: DW_CFA_register %s == %s\n",
2600 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)),
2601 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg2
)));
2602 info
->regs
[reg
] = reg2
;
2603 info
->rules
[reg
] = RULE_OTHER_REG
;
2606 case DW_CFA_remember_state
:
2607 FIXME("%lx: DW_CFA_remember_state not implemented\n", info
->ip
);
2609 case DW_CFA_restore_state
:
2610 FIXME("%lx: DW_CFA_restore_state not implemented\n", info
->ip
);
2612 case DW_CFA_def_cfa
:
2613 case DW_CFA_def_cfa_sf
:
2615 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2616 ULONG_PTR offset
= (op
== DW_CFA_def_cfa
) ? dwarf2_leb128_as_unsigned(ctx
)
2617 : dwarf2_leb128_as_signed(ctx
) * info
->data_align
;
2618 if (!valid_reg(reg
)) break;
2619 TRACE("%lx: DW_CFA_def_cfa %s, %lu\n",
2621 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)),
2623 info
->cfa_reg
= reg
;
2624 info
->cfa_offset
= offset
;
2625 info
->cfa_rule
= RULE_CFA_OFFSET
;
2628 case DW_CFA_def_cfa_register
:
2630 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2631 if (!valid_reg(reg
)) break;
2632 TRACE("%lx: DW_CFA_def_cfa_register %s\n",
2634 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)));
2635 info
->cfa_reg
= reg
;
2636 info
->cfa_rule
= RULE_CFA_OFFSET
;
2639 case DW_CFA_def_cfa_offset
:
2640 case DW_CFA_def_cfa_offset_sf
:
2642 ULONG_PTR offset
= (op
== DW_CFA_def_cfa_offset
) ? dwarf2_leb128_as_unsigned(ctx
)
2643 : dwarf2_leb128_as_signed(ctx
) * info
->data_align
;
2644 TRACE("%lx: DW_CFA_def_cfa_offset %lu\n", info
->ip
, offset
);
2645 info
->cfa_offset
= offset
;
2646 info
->cfa_rule
= RULE_CFA_OFFSET
;
2649 case DW_CFA_def_cfa_expression
:
2651 ULONG_PTR expr
= (ULONG_PTR
)ctx
->data
;
2652 ULONG_PTR len
= dwarf2_leb128_as_unsigned(ctx
);
2653 TRACE("%lx: DW_CFA_def_cfa_expression %lx-%lx\n", info
->ip
, expr
, expr
+len
);
2654 info
->cfa_offset
= expr
;
2655 info
->cfa_rule
= RULE_VAL_EXPRESSION
;
2659 case DW_CFA_expression
:
2660 case DW_CFA_val_expression
:
2662 ULONG_PTR reg
= dwarf2_leb128_as_unsigned(ctx
);
2663 ULONG_PTR expr
= (ULONG_PTR
)ctx
->data
;
2664 ULONG_PTR len
= dwarf2_leb128_as_unsigned(ctx
);
2665 if (!valid_reg(reg
)) break;
2666 TRACE("%lx: DW_CFA_%sexpression %s %lx-%lx\n",
2667 info
->ip
, (op
== DW_CFA_expression
) ? "" : "val_",
2668 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(reg
)),
2670 info
->regs
[reg
] = expr
;
2671 info
->rules
[reg
] = (op
== DW_CFA_expression
) ? RULE_EXPRESSION
: RULE_VAL_EXPRESSION
;
2676 FIXME("%lx: unknown CFA opcode %02x\n", info
->ip
, op
);
2682 /* retrieve a context register from its dwarf number */
2683 static ULONG_PTR
get_context_reg(CONTEXT
*context
, ULONG_PTR dw_reg
)
2685 unsigned regno
= dbghelp_current_cpu
->map_dwarf_register(dw_reg
), sz
;
2686 ULONG_PTR
* ptr
= dbghelp_current_cpu
->fetch_context_reg(context
, regno
, &sz
);
2688 if (sz
!= sizeof(ULONG_PTR
))
2690 FIXME("reading register %lu/%u of wrong size %u\n", dw_reg
, regno
, sz
);
2696 /* set a context register from its dwarf number */
2697 static void set_context_reg(struct cpu_stack_walk
* csw
, CONTEXT
*context
, ULONG_PTR dw_reg
,
2698 ULONG_PTR val
, BOOL isdebuggee
)
2700 unsigned regno
= dbghelp_current_cpu
->map_dwarf_register(dw_reg
), sz
;
2701 ULONG_PTR
* ptr
= dbghelp_current_cpu
->fetch_context_reg(context
, regno
, &sz
);
2707 if (sz
> sizeof(tmp
))
2709 FIXME("register %lu/%u size is too wide: %u\n", dw_reg
, regno
, sz
);
2712 if (!sw_read_mem(csw
, val
, tmp
, sz
))
2714 WARN("Couldn't read memory at %p\n", (void*)val
);
2717 memcpy(ptr
, tmp
, sz
);
2721 if (sz
!= sizeof(ULONG_PTR
))
2723 FIXME("assigning to register %lu/%u of wrong size %u\n", dw_reg
, regno
, sz
);
2730 /* copy a register from one context to another using dwarf number */
2731 static void copy_context_reg(CONTEXT
*dstcontext
, ULONG_PTR dwregdst
, CONTEXT
* srccontext
, ULONG_PTR dwregsrc
)
2733 unsigned regdstno
= dbghelp_current_cpu
->map_dwarf_register(dwregdst
), szdst
;
2734 unsigned regsrcno
= dbghelp_current_cpu
->map_dwarf_register(dwregsrc
), szsrc
;
2735 ULONG_PTR
* ptrdst
= dbghelp_current_cpu
->fetch_context_reg(dstcontext
, regdstno
, &szdst
);
2736 ULONG_PTR
* ptrsrc
= dbghelp_current_cpu
->fetch_context_reg(srccontext
, regsrcno
, &szsrc
);
2740 FIXME("Cannot copy register %lu/%u => %lu/%u because of size mismatch (%u => %u)\n",
2741 dwregsrc
, regsrcno
, dwregdst
, regdstno
, szsrc
, szdst
);
2744 memcpy(ptrdst
, ptrsrc
, szdst
);
2747 static ULONG_PTR
eval_expression(struct cpu_stack_walk
* csw
, const unsigned char* zp
, CONTEXT
*context
)
2749 dwarf2_traverse_context_t ctx
;
2750 ULONG_PTR reg
, sz
, tmp
, stack
[64];
2755 ctx
.end_data
= zp
+ 4;
2756 len
= dwarf2_leb128_as_unsigned(&ctx
);
2757 ctx
.end_data
= ctx
.data
+ len
;
2758 ctx
.word_size
= 8; /* FIXME: wordsize!! */
2760 while (ctx
.data
< ctx
.end_data
)
2762 unsigned char opcode
= dwarf2_parse_byte(&ctx
);
2764 if (opcode
>= DW_OP_lit0
&& opcode
<= DW_OP_lit31
)
2765 stack
[++sp
] = opcode
- DW_OP_lit0
;
2766 else if (opcode
>= DW_OP_reg0
&& opcode
<= DW_OP_reg31
)
2767 stack
[++sp
] = get_context_reg(context
, opcode
- DW_OP_reg0
);
2768 else if (opcode
>= DW_OP_breg0
&& opcode
<= DW_OP_breg31
)
2769 stack
[++sp
] = get_context_reg(context
, opcode
- DW_OP_breg0
) + dwarf2_leb128_as_signed(&ctx
);
2770 else switch (opcode
)
2772 case DW_OP_nop
: break;
2773 case DW_OP_addr
: stack
[++sp
] = dwarf2_parse_addr(&ctx
); break;
2774 case DW_OP_const1u
: stack
[++sp
] = dwarf2_parse_byte(&ctx
); break;
2775 case DW_OP_const1s
: stack
[++sp
] = (signed char)dwarf2_parse_byte(&ctx
); break;
2776 case DW_OP_const2u
: stack
[++sp
] = dwarf2_parse_u2(&ctx
); break;
2777 case DW_OP_const2s
: stack
[++sp
] = (short)dwarf2_parse_u2(&ctx
); break;
2778 case DW_OP_const4u
: stack
[++sp
] = dwarf2_parse_u4(&ctx
); break;
2779 case DW_OP_const4s
: stack
[++sp
] = (signed int)dwarf2_parse_u4(&ctx
); break;
2780 case DW_OP_const8u
: stack
[++sp
] = dwarf2_parse_u8(&ctx
); break;
2781 case DW_OP_const8s
: stack
[++sp
] = (LONG_PTR
)dwarf2_parse_u8(&ctx
); break;
2782 case DW_OP_constu
: stack
[++sp
] = dwarf2_leb128_as_unsigned(&ctx
); break;
2783 case DW_OP_consts
: stack
[++sp
] = dwarf2_leb128_as_signed(&ctx
); break;
2785 if (!sw_read_mem(csw
, stack
[sp
], &tmp
, sizeof(tmp
)))
2787 ERR("Couldn't read memory at %lx\n", stack
[sp
]);
2792 case DW_OP_dup
: stack
[sp
+ 1] = stack
[sp
]; sp
++; break;
2793 case DW_OP_drop
: sp
--; break;
2794 case DW_OP_over
: stack
[sp
+ 1] = stack
[sp
- 1]; sp
++; break;
2795 case DW_OP_pick
: stack
[sp
+ 1] = stack
[sp
- dwarf2_parse_byte(&ctx
)]; sp
++; break;
2796 case DW_OP_swap
: tmp
= stack
[sp
]; stack
[sp
] = stack
[sp
-1]; stack
[sp
-1] = tmp
; break;
2797 case DW_OP_rot
: tmp
= stack
[sp
]; stack
[sp
] = stack
[sp
-1]; stack
[sp
-1] = stack
[sp
-2]; stack
[sp
-2] = tmp
; break;
2798 case DW_OP_abs
: stack
[sp
] = labs(stack
[sp
]); break;
2799 case DW_OP_neg
: stack
[sp
] = -stack
[sp
]; break;
2800 case DW_OP_not
: stack
[sp
] = ~stack
[sp
]; break;
2801 case DW_OP_and
: stack
[sp
-1] &= stack
[sp
]; sp
--; break;
2802 case DW_OP_or
: stack
[sp
-1] |= stack
[sp
]; sp
--; break;
2803 case DW_OP_minus
: stack
[sp
-1] -= stack
[sp
]; sp
--; break;
2804 case DW_OP_mul
: stack
[sp
-1] *= stack
[sp
]; sp
--; break;
2805 case DW_OP_plus
: stack
[sp
-1] += stack
[sp
]; sp
--; break;
2806 case DW_OP_xor
: stack
[sp
-1] ^= stack
[sp
]; sp
--; break;
2807 case DW_OP_shl
: stack
[sp
-1] <<= stack
[sp
]; sp
--; break;
2808 case DW_OP_shr
: stack
[sp
-1] >>= stack
[sp
]; sp
--; break;
2809 case DW_OP_plus_uconst
: stack
[sp
] += dwarf2_leb128_as_unsigned(&ctx
); break;
2810 case DW_OP_shra
: stack
[sp
-1] = (LONG_PTR
)stack
[sp
-1] / (1 << stack
[sp
]); sp
--; break;
2811 case DW_OP_div
: stack
[sp
-1] = (LONG_PTR
)stack
[sp
-1] / (LONG_PTR
)stack
[sp
]; sp
--; break;
2812 case DW_OP_mod
: stack
[sp
-1] = (LONG_PTR
)stack
[sp
-1] % (LONG_PTR
)stack
[sp
]; sp
--; break;
2813 case DW_OP_ge
: stack
[sp
-1] = ((LONG_PTR
)stack
[sp
-1] >= (LONG_PTR
)stack
[sp
]); sp
--; break;
2814 case DW_OP_gt
: stack
[sp
-1] = ((LONG_PTR
)stack
[sp
-1] > (LONG_PTR
)stack
[sp
]); sp
--; break;
2815 case DW_OP_le
: stack
[sp
-1] = ((LONG_PTR
)stack
[sp
-1] <= (LONG_PTR
)stack
[sp
]); sp
--; break;
2816 case DW_OP_lt
: stack
[sp
-1] = ((LONG_PTR
)stack
[sp
-1] < (LONG_PTR
)stack
[sp
]); sp
--; break;
2817 case DW_OP_eq
: stack
[sp
-1] = (stack
[sp
-1] == stack
[sp
]); sp
--; break;
2818 case DW_OP_ne
: stack
[sp
-1] = (stack
[sp
-1] != stack
[sp
]); sp
--; break;
2819 case DW_OP_skip
: tmp
= (short)dwarf2_parse_u2(&ctx
); ctx
.data
+= tmp
; break;
2820 case DW_OP_bra
: tmp
= (short)dwarf2_parse_u2(&ctx
); if (!stack
[sp
--]) ctx
.data
+= tmp
; break;
2821 case DW_OP_GNU_encoded_addr
:
2822 tmp
= dwarf2_parse_byte(&ctx
);
2823 stack
[++sp
] = dwarf2_parse_augmentation_ptr(&ctx
, tmp
);
2826 stack
[++sp
] = get_context_reg(context
, dwarf2_leb128_as_unsigned(&ctx
));
2829 reg
= dwarf2_leb128_as_unsigned(&ctx
);
2830 tmp
= dwarf2_leb128_as_signed(&ctx
);
2831 stack
[++sp
] = get_context_reg(context
, reg
) + tmp
;
2833 case DW_OP_deref_size
:
2834 sz
= dwarf2_parse_byte(&ctx
);
2835 if (!sw_read_mem(csw
, stack
[sp
], &tmp
, sz
))
2837 ERR("Couldn't read memory at %lx\n", stack
[sp
]);
2840 /* do integral promotion */
2843 case 1: stack
[sp
] = *(unsigned char*)&tmp
; break;
2844 case 2: stack
[sp
] = *(unsigned short*)&tmp
; break;
2845 case 4: stack
[sp
] = *(unsigned int*)&tmp
; break;
2846 case 8: stack
[sp
] = *(ULONG_PTR
*)&tmp
; break; /* FIXME: won't work on 32bit platform */
2847 default: FIXME("Unknown size for deref 0x%lx\n", sz
);
2851 FIXME("unhandled opcode %02x\n", opcode
);
2857 static void apply_frame_info(struct cpu_stack_walk
* csw
, CONTEXT
*context
, struct frame_info
*info
, ULONG_PTR
* cfa
)
2861 CONTEXT new_context
= *context
;
2863 switch (info
->cfa_rule
)
2865 case RULE_EXPRESSION
:
2866 *cfa
= *(ULONG_PTR
*)eval_expression(csw
, (const unsigned char*)info
->cfa_offset
, context
);
2868 case RULE_VAL_EXPRESSION
:
2869 *cfa
= eval_expression(csw
, (const unsigned char*)info
->cfa_offset
, context
);
2872 *cfa
= get_context_reg(context
, info
->cfa_reg
) + info
->cfa_offset
;
2877 for (i
= 0; i
< NB_FRAME_REGS
; i
++)
2879 switch (info
->rules
[i
])
2882 case RULE_UNDEFINED
:
2885 case RULE_CFA_OFFSET
:
2886 set_context_reg(csw
, &new_context
, i
, *cfa
+ info
->regs
[i
], TRUE
);
2888 case RULE_OTHER_REG
:
2889 copy_context_reg(&new_context
, i
, context
, info
->regs
[i
]);
2891 case RULE_EXPRESSION
:
2892 value
= eval_expression(csw
, (const unsigned char*)info
->regs
[i
], context
);
2893 set_context_reg(csw
, &new_context
, i
, value
, TRUE
);
2895 case RULE_VAL_EXPRESSION
:
2896 value
= eval_expression(csw
, (const unsigned char*)info
->regs
[i
], context
);
2897 set_context_reg(csw
, &new_context
, i
, value
, FALSE
);
2901 *context
= new_context
;
2904 /***********************************************************************
2905 * dwarf2_virtual_unwind
2908 BOOL
dwarf2_virtual_unwind(struct cpu_stack_walk
* csw
, ULONG_PTR ip
, CONTEXT
* context
, ULONG_PTR
* cfa
)
2910 struct module_pair pair
;
2911 struct frame_info info
;
2912 dwarf2_traverse_context_t cie_ctx
, fde_ctx
;
2913 struct module_format
* modfmt
;
2914 const unsigned char* end
;
2917 if (!(pair
.pcs
= process_find_by_handle(csw
->hProcess
)) ||
2918 !(pair
.requested
= module_find_by_addr(pair
.pcs
, ip
, DMT_UNKNOWN
)) ||
2919 !module_get_debug(&pair
))
2921 modfmt
= pair
.effective
->format_info
[DFI_DWARF
];
2922 if (!modfmt
) return FALSE
;
2923 memset(&info
, 0, sizeof(info
));
2924 fde_ctx
.data
= modfmt
->u
.dwarf2_info
->eh_frame
.address
;
2925 fde_ctx
.end_data
= fde_ctx
.data
+ modfmt
->u
.dwarf2_info
->eh_frame
.size
;
2926 fde_ctx
.word_size
= modfmt
->u
.dwarf2_info
->word_size
;
2927 /* let offsets relative to the eh_frame sections be correctly computed, as we'll map
2928 * in this process the IMAGE section at a different address as the one expected by
2931 delta
= pair
.effective
->module
.BaseOfImage
+ modfmt
->u
.dwarf2_info
->eh_frame
.rva
-
2932 (DWORD_PTR
)modfmt
->u
.dwarf2_info
->eh_frame
.address
;
2933 if (!dwarf2_get_cie(ip
, pair
.effective
, delta
, &fde_ctx
, &cie_ctx
, &info
, TRUE
))
2935 fde_ctx
.data
= modfmt
->u
.dwarf2_info
->debug_frame
.address
;
2936 fde_ctx
.end_data
= fde_ctx
.data
+ modfmt
->u
.dwarf2_info
->debug_frame
.size
;
2937 fde_ctx
.word_size
= modfmt
->u
.dwarf2_info
->word_size
;
2938 delta
= pair
.effective
->reloc_delta
;
2939 if (!dwarf2_get_cie(ip
, pair
.effective
, delta
, &fde_ctx
, &cie_ctx
, &info
, FALSE
))
2941 TRACE("Couldn't find information for %lx\n", ip
);
2946 TRACE("function %lx/%lx code_align %lu data_align %ld retaddr %s\n",
2947 ip
, info
.ip
, info
.code_align
, info
.data_align
,
2948 dbghelp_current_cpu
->fetch_regname(dbghelp_current_cpu
->map_dwarf_register(info
.retaddr_reg
)));
2950 /* if at very beginning of function, return and use default unwinder */
2951 if (ip
== info
.ip
) return FALSE
;
2952 execute_cfa_instructions(&cie_ctx
, ip
, &info
);
2954 if (info
.aug_z_format
) /* get length of augmentation data */
2956 ULONG_PTR len
= dwarf2_leb128_as_unsigned(&fde_ctx
);
2957 end
= fde_ctx
.data
+ len
;
2960 dwarf2_parse_augmentation_ptr(&fde_ctx
, info
.lsda_encoding
); /* handler_data */
2961 if (end
) fde_ctx
.data
= end
;
2963 execute_cfa_instructions(&fde_ctx
, ip
, &info
);
2964 apply_frame_info(csw
, context
, &info
, cfa
);
2969 static void dwarf2_location_compute(struct process
* pcs
,
2970 const struct module_format
* modfmt
,
2971 const struct symt_function
* func
,
2972 struct location
* loc
)
2974 struct location frame
;
2977 dwarf2_traverse_context_t lctx
;
2979 if (!func
->container
|| func
->container
->tag
!= SymTagCompiland
)
2981 WARN("We'd expect function %s's container to exist and be a compiland\n", func
->hash_elt
.name
);
2982 err
= loc_err_internal
;
2986 /* instruction pointer relative to compiland's start */
2987 ip
= pcs
->ctx_frame
.InstructionOffset
- ((struct symt_compiland
*)func
->container
)->address
;
2989 if ((err
= loc_compute_frame(pcs
, modfmt
, func
, ip
, &frame
)) == 0)
2993 case loc_dwarf2_location_list
:
2994 /* Then, if the variable has a location list, find it !! */
2995 if (dwarf2_lookup_loclist(modfmt
,
2996 modfmt
->u
.dwarf2_info
->debug_loc
.address
+ loc
->offset
,
2999 err
= loc_err_out_of_scope
;
3001 case loc_dwarf2_block
:
3002 /* or if we have a copy of an existing block, get ready for it */
3004 unsigned* ptr
= (unsigned*)loc
->offset
;
3006 lctx
.data
= (const BYTE
*)(ptr
+ 1);
3007 lctx
.end_data
= lctx
.data
+ *ptr
;
3008 lctx
.word_size
= modfmt
->u
.dwarf2_info
->word_size
;
3011 /* now get the variable */
3012 err
= compute_location(&lctx
, loc
, pcs
->handle
, &frame
);
3019 WARN("Unsupported local kind %d\n", loc
->kind
);
3020 err
= loc_err_internal
;
3026 loc
->kind
= loc_register
;
3031 static void dwarf2_module_remove(struct process
* pcs
, struct module_format
* modfmt
)
3033 HeapFree(GetProcessHeap(), 0, modfmt
);
3036 static inline BOOL
dwarf2_init_section(dwarf2_section_t
* section
, struct image_file_map
* fmap
,
3037 const char* sectname
, struct image_section_map
* ism
)
3039 struct image_section_map local_ism
;
3041 if (!ism
) ism
= &local_ism
;
3042 if (!image_find_section(fmap
, sectname
, ism
))
3044 section
->address
= NULL
;
3050 section
->address
= (const BYTE
*)image_map_section(ism
);
3051 section
->size
= image_get_map_size(ism
);
3052 section
->rva
= image_get_map_rva(ism
);
3056 BOOL
dwarf2_parse(struct module
* module
, unsigned long load_offset
,
3057 const struct elf_thunk_area
* thunks
,
3058 struct image_file_map
* fmap
)
3060 dwarf2_section_t section
[section_max
];
3061 dwarf2_traverse_context_t mod_ctx
;
3062 struct image_section_map debug_sect
, debug_str_sect
, debug_abbrev_sect
,
3065 struct module_format
* dwarf2_modfmt
;
3067 if (!dwarf2_init_section(§ion
[section_debug
], fmap
, ".debug_info", &debug_sect
))
3069 /* no Dwarf debug info here, so there's no error */
3072 dwarf2_init_section(§ion
[section_abbrev
], fmap
, ".debug_abbrev", &debug_abbrev_sect
);
3073 dwarf2_init_section(§ion
[section_string
], fmap
, ".debug_str", &debug_str_sect
);
3074 dwarf2_init_section(§ion
[section_line
], fmap
, ".debug_line", &debug_line_sect
);
3076 if (section
[section_debug
].address
== IMAGE_NO_MAP
||
3077 section
[section_abbrev
].address
== IMAGE_NO_MAP
||
3078 section
[section_string
].address
== IMAGE_NO_MAP
)
3084 if (fmap
->modtype
== DMT_ELF
)
3086 /* debug info might have a different base address than .so file
3087 * when elf file is prelinked after splitting off debug info
3088 * adjust symbol base addresses accordingly
3090 load_offset
+= fmap
->u
.elf
.elf_start
- debug_sect
.fmap
->u
.elf
.elf_start
;
3093 TRACE("Loading Dwarf2 information for %s\n", debugstr_w(module
->module
.ModuleName
));
3095 mod_ctx
.data
= section
[section_debug
].address
;
3096 mod_ctx
.end_data
= mod_ctx
.data
+ section
[section_debug
].size
;
3097 mod_ctx
.word_size
= 0; /* will be correctly set later on */
3099 dwarf2_modfmt
= HeapAlloc(GetProcessHeap(), 0,
3100 sizeof(*dwarf2_modfmt
) + sizeof(*dwarf2_modfmt
->u
.dwarf2_info
));
3106 dwarf2_modfmt
->module
= module
;
3107 dwarf2_modfmt
->remove
= dwarf2_module_remove
;
3108 dwarf2_modfmt
->loc_compute
= dwarf2_location_compute
;
3109 dwarf2_modfmt
->u
.dwarf2_info
= (struct dwarf2_module_info_s
*)(dwarf2_modfmt
+ 1);
3110 dwarf2_modfmt
->u
.dwarf2_info
->word_size
= 0; /* will be correctly set later on */
3111 dwarf2_modfmt
->module
->format_info
[DFI_DWARF
] = dwarf2_modfmt
;
3113 /* As we'll need later some sections' content, we won't unmap these
3114 * sections upon existing this function
3116 dwarf2_init_section(&dwarf2_modfmt
->u
.dwarf2_info
->debug_loc
, fmap
, ".debug_loc", NULL
);
3117 dwarf2_init_section(&dwarf2_modfmt
->u
.dwarf2_info
->debug_frame
, fmap
, ".debug_frame", NULL
);
3118 dwarf2_init_section(&dwarf2_modfmt
->u
.dwarf2_info
->eh_frame
, fmap
, ".eh_frame", NULL
);
3120 while (mod_ctx
.data
< mod_ctx
.end_data
)
3122 dwarf2_parse_compilation_unit(section
, dwarf2_modfmt
->module
, thunks
, &mod_ctx
, load_offset
);
3124 dwarf2_modfmt
->module
->module
.SymType
= SymDia
;
3125 dwarf2_modfmt
->module
->module
.CVSig
= 'D' | ('W' << 8) | ('A' << 16) | ('R' << 24);
3126 /* FIXME: we could have a finer grain here */
3127 dwarf2_modfmt
->module
->module
.GlobalSymbols
= TRUE
;
3128 dwarf2_modfmt
->module
->module
.TypeInfo
= TRUE
;
3129 dwarf2_modfmt
->module
->module
.SourceIndexed
= TRUE
;
3130 dwarf2_modfmt
->module
->module
.Publics
= TRUE
;
3133 image_unmap_section(&debug_sect
);
3134 image_unmap_section(&debug_abbrev_sect
);
3135 image_unmap_section(&debug_str_sect
);
3136 image_unmap_section(&debug_line_sect
);