winedump: Use the DEFINE_THISCALL_WRAPPER macro instead of the GET_THIS macro for...
[wine] / tools / winedump / msc.c
1 /*
2  *      MS debug info dumping utility
3  *
4  *      Copyright 2006 Eric Pouech
5  *
6  * This library is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * This library is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with this library; if not, write to the Free Software
18  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19  */
20
21 #include "config.h"
22 #include "wine/port.h"
23
24 #include <stdlib.h>
25 #include <stdarg.h>
26 #include <stdio.h>
27 #ifdef HAVE_UNISTD_H
28 # include <unistd.h>
29 #endif
30 #include <time.h>
31 #ifdef HAVE_SYS_TYPES_H
32 # include <sys/types.h>
33 #endif
34 #ifdef HAVE_SYS_STAT_H
35 # include <sys/stat.h>
36 #endif
37 #ifdef HAVE_SYS_MMAN_H
38 #include <sys/mman.h>
39 #endif
40 #include <fcntl.h>
41
42 #define NONAMELESSUNION
43 #define NONAMELESSSTRUCT
44 #include "windef.h"
45 #include "winbase.h"
46 #include "winedump.h"
47 #include "wine/mscvpdb.h"
48
49 #define PSTRING(adr, ofs) \
50     ((const struct p_string*)((const char*)(adr) + (ofs)))
51
52 static const char* p_string(const struct p_string* s)
53 {
54     static char tmp[256 + 1];
55     memcpy(tmp, s->name, s->namelen);
56     tmp[s->namelen] = '\0';
57     return tmp;
58 }
59
60 static int numeric_leaf(int* value, const unsigned short int* leaf)
61 {
62     unsigned short int type = *leaf++;
63     int length = 2;
64
65     if (type < LF_NUMERIC)
66     {
67         *value = type;
68     }
69     else
70     {
71         switch (type)
72         {
73         case LF_CHAR:
74             length += 1;
75             *value = *(const char*)leaf;
76             break;
77
78         case LF_SHORT:
79             length += 2;
80             *value = *(const short*)leaf;
81             break;
82
83         case LF_USHORT:
84             length += 2;
85             *value = *(const unsigned short*)leaf;
86             break;
87
88         case LF_LONG:
89             length += 4;
90             *value = *(const int*)leaf;
91             break;
92
93         case LF_ULONG:
94             length += 4;
95             *value = *(const unsigned int*)leaf;
96             break;
97
98         case LF_QUADWORD:
99         case LF_UQUADWORD:
100             length += 8;
101             printf(">>> unsupported leaf value\n");
102             *value = 0;    /* FIXME */
103             break;
104
105         case LF_REAL32:
106             length += 4;
107             printf(">>> unsupported leaf value\n");
108             *value = 0;    /* FIXME */
109             break;
110
111         case LF_REAL48:
112             length += 6;
113             *value = 0;    /* FIXME */
114             printf(">>> unsupported leaf value\n");
115             break;
116
117         case LF_REAL64:
118             length += 8;
119             *value = 0;    /* FIXME */
120             printf(">>> unsupported leaf value\n");
121             break;
122
123         case LF_REAL80:
124             length += 10;
125             *value = 0;    /* FIXME */
126             printf(">>> unsupported leaf value\n");
127             break;
128
129         case LF_REAL128:
130             length += 16;
131             *value = 0;    /* FIXME */
132             printf(">>> unsupported leaf value\n");
133             break;
134
135         case LF_COMPLEX32:
136             length += 4;
137             *value = 0;    /* FIXME */
138             printf(">>> unsupported leaf value\n");
139             break;
140
141         case LF_COMPLEX64:
142             length += 8;
143             *value = 0;    /* FIXME */
144             printf(">>> unsupported leaf value\n");
145             break;
146
147         case LF_COMPLEX80:
148             length += 10;
149             *value = 0;    /* FIXME */
150             printf(">>> unsupported leaf value\n");
151             break;
152
153         case LF_COMPLEX128:
154             length += 16;
155             *value = 0;    /* FIXME */
156             printf(">>> unsupported leaf value\n");
157             break;
158
159         case LF_VARSTRING:
160             length += 2 + *leaf;
161             *value = 0;    /* FIXME */
162             printf(">>> unsupported leaf value\n");
163             break;
164
165         default:
166             printf(">>> Unsupported numeric leaf-id %04x\n", type);
167             *value = 0;
168             break;
169         }
170     }
171     return length;
172 }
173
174 static const char* get_attr(unsigned attr)
175 {
176     static char tmp[256];
177
178     switch (attr & 3)
179     {
180     case 0: strcpy(tmp, ""); break;
181     case 1: strcpy(tmp, "private "); break;
182     case 2: strcpy(tmp, "protected "); break;
183     case 3: strcpy(tmp, "public "); break;
184     }
185     switch ((attr >> 2) & 7)
186     {
187     case 0: strcat(tmp, ""); break;
188     case 1: strcat(tmp, "virtual "); break;
189     case 2: strcat(tmp, "static "); break;
190     case 3: strcat(tmp, "friend "); break;
191     case 4: strcat(tmp, "introducing virtual "); break;
192     case 5: strcat(tmp, "pure virtual "); break;
193     case 6: strcat(tmp, "pure introducing virtual "); break;
194     case 7: strcat(tmp, "reserved "); break;
195     }
196     if ((attr >> 5) & 1) strcat(tmp, "pseudo ");
197     if ((attr >> 6) & 1) strcat(tmp, "no-inherit ");
198     if ((attr >> 7) & 1) strcat(tmp, "no-construct ");
199     return tmp;
200 }
201
202 static void do_field(const unsigned char* start, const unsigned char* end)
203 {
204     /*
205      * A 'field list' is a CodeView-specific data type which doesn't
206      * directly correspond to any high-level data type.  It is used
207      * to hold the collection of members of a struct, class, union
208      * or enum type.  The actual definition of that type will follow
209      * later, and refer to the field list definition record.
210      *
211      * As we don't have a field list type ourselves, we look ahead
212      * in the field list to try to find out whether this field list
213      * will be used for an enum or struct type, and create a dummy
214      * type of the corresponding sort.  Later on, the definition of
215      * the 'real' type will copy the member / enumeration data.
216      */
217     const unsigned char*        ptr = start;
218     const char*                 cstr;
219     const struct p_string*      pstr;
220     int leaf_len, value;
221
222     while (ptr < end)
223     {
224         const union codeview_fieldtype* fieldtype = (const union codeview_fieldtype*)ptr;
225
226         if (*ptr >= 0xf0)       /* LF_PAD... */
227         {
228             ptr +=* ptr & 0x0f;
229             continue;
230         }
231
232         switch (fieldtype->generic.id)
233         {
234         case LF_ENUMERATE_V1:
235             leaf_len = numeric_leaf(&value, &fieldtype->enumerate_v1.value);
236             pstr = PSTRING(&fieldtype->enumerate_v1.value, leaf_len);
237             printf("\t\tEnumerate V1: '%s' value:%d\n",
238                    p_string(pstr), value);
239             ptr += 2 + 2 + leaf_len + 1 + pstr->namelen;
240             break;
241
242         case LF_ENUMERATE_V3:
243             leaf_len = numeric_leaf(&value, &fieldtype->enumerate_v3.value);
244             cstr = (const char*)&fieldtype->enumerate_v3.value + leaf_len;
245             printf("\t\tEnumerate V3: '%s' value:%d\n",
246                    cstr, value);
247             ptr += 2 + 2 + leaf_len + strlen(cstr) + 1;
248             break;
249
250         case LF_MEMBER_V1:
251             leaf_len = numeric_leaf(&value, &fieldtype->member_v1.offset);
252             pstr = PSTRING(&fieldtype->member_v1.offset, leaf_len);
253             printf("\t\tMember V1: '%s' type:%x attr:%s @%d\n",
254                    p_string(pstr), fieldtype->member_v1.type,
255                    get_attr(fieldtype->member_v1.attribute), value);
256             ptr += 2 + 2 + 2 + leaf_len + 1 + pstr->namelen;
257             break;
258
259         case LF_MEMBER_V2:
260             leaf_len = numeric_leaf(&value, &fieldtype->member_v2.offset);
261             pstr = PSTRING(&fieldtype->member_v2.offset, leaf_len);
262             printf("\t\tMember V2: '%s' type:%x attr:%s @%d\n",
263                    p_string(pstr), fieldtype->member_v2.type,
264                    get_attr(fieldtype->member_v2.attribute), value);
265             ptr += 2 + 2 + 4 + leaf_len + 1 + pstr->namelen;
266             break;
267
268         case LF_MEMBER_V3:
269             leaf_len = numeric_leaf(&value, &fieldtype->member_v3.offset);
270             cstr = (const char*)&fieldtype->member_v3.offset + leaf_len;
271             printf("\t\tMember V3: '%s' type:%x attr:%s @%d\n",
272                    cstr, fieldtype->member_v3.type, 
273                    get_attr(fieldtype->member_v3.attribute), value);
274             ptr += 2 + 2 + 4 + leaf_len + strlen(cstr) + 1;
275             break;
276
277         case LF_ONEMETHOD_V1:
278             switch ((fieldtype->onemethod_v1.attribute >> 2) & 7)
279             {
280             case 4: case 6:
281                 printf("\t\tVirtual-method V1: '%s' attr:%s type:%x vtable_offset:%u\n",
282                        p_string(&fieldtype->onemethod_virt_v1.p_name),
283                        get_attr(fieldtype->onemethod_virt_v1.attribute),
284                        fieldtype->onemethod_virt_v1.type,
285                        fieldtype->onemethod_virt_v1.vtab_offset);
286                 ptr += 2 + 2 + 2 + 4 + (1 + fieldtype->onemethod_virt_v1.p_name.namelen);
287                 break;
288
289             default:
290                 printf("\t\tMethod V1: '%s' attr:%s type:%x\n",
291                        p_string(&fieldtype->onemethod_v1.p_name),
292                        get_attr(fieldtype->onemethod_v1.attribute),
293                        fieldtype->onemethod_v1.type);
294                 ptr += 2 + 2 + 2 + (1 + fieldtype->onemethod_v1.p_name.namelen);
295                 break;
296             }
297             break;
298
299         case LF_ONEMETHOD_V2:
300             switch ((fieldtype->onemethod_v2.attribute >> 2) & 7)
301             {
302             case 4: case 6:
303                 printf("\t\tVirtual-method V2: '%s' attr:%s type:%x vtable_offset:%u\n",
304                        p_string(&fieldtype->onemethod_virt_v2.p_name),
305                        get_attr(fieldtype->onemethod_virt_v2.attribute),
306                        fieldtype->onemethod_virt_v2.type,
307                        fieldtype->onemethod_virt_v2.vtab_offset);
308                 ptr += 2 + 2 + 4 + 4 + (1 + fieldtype->onemethod_virt_v2.p_name.namelen);
309                 break;
310
311             default:
312                 printf("\t\tMethod V2: '%s' attr:%s type:%x\n",
313                        p_string(&fieldtype->onemethod_v2.p_name),
314                        get_attr(fieldtype->onemethod_v2.attribute),
315                        fieldtype->onemethod_v2.type);
316                 ptr += 2 + 2 + 4 + (1 + fieldtype->onemethod_v2.p_name.namelen);
317                 break;
318             }
319             break;
320
321         case LF_ONEMETHOD_V3:
322             switch ((fieldtype->onemethod_v3.attribute >> 2) & 7)
323             {
324             case 4: case 6:
325                 printf("\t\tVirtual-method V3: '%s' attr:%s type:%x vtable_offset:%u\n",
326                        fieldtype->onemethod_virt_v3.name,
327                        get_attr(fieldtype->onemethod_virt_v3.attribute),
328                        fieldtype->onemethod_virt_v3.type,
329                        fieldtype->onemethod_virt_v3.vtab_offset);
330                 ptr += 2 + 2 + 4 + 4 + (strlen(fieldtype->onemethod_virt_v3.name) + 1);
331                 break;
332
333             default:
334                 printf("\t\tMethod V3: '%s' attr:%s type:%x\n",
335                        fieldtype->onemethod_v3.name,
336                        get_attr(fieldtype->onemethod_v3.attribute),
337                        fieldtype->onemethod_v3.type);
338                 ptr += 2 + 2 + 4 + (strlen(fieldtype->onemethod_v3.name) + 1);
339                 break;
340             }
341             break;
342
343         case LF_METHOD_V1:
344             printf("\t\tMethod V1: '%s' overloaded=#%d method-list=%x\n",
345                    p_string(&fieldtype->method_v1.p_name),
346                    fieldtype->method_v1.count, fieldtype->method_v1.mlist);
347             ptr += 2 + 2 + 2 + (1 + fieldtype->method_v1.p_name.namelen);
348             break;
349
350         case LF_METHOD_V2:
351             printf("\t\tMethod V2: '%s' overloaded=#%d method-list=%x\n",
352                    p_string(&fieldtype->method_v2.p_name),
353                    fieldtype->method_v2.count, fieldtype->method_v2.mlist);
354             ptr += 2 + 2 + 4 + (1 + fieldtype->method_v2.p_name.namelen);
355             break;
356
357         case LF_METHOD_V3:
358             printf("\t\tMethod V3: '%s' overloaded=#%d method-list=%x\n",
359                    fieldtype->method_v3.name,
360                    fieldtype->method_v3.count, fieldtype->method_v3.mlist);
361             ptr += 2 + 2 + 4 + (strlen(fieldtype->method_v3.name) + 1);
362             break;
363
364         case LF_STMEMBER_V1:
365             printf("\t\tStatic member V1: '%s' attr:%s type:%x\n",
366                    p_string(&fieldtype->stmember_v1.p_name),
367                    get_attr(fieldtype->stmember_v1.attribute),
368                    fieldtype->stmember_v1.type);
369             ptr += 2 + 2 + 2 + (1 + fieldtype->stmember_v1.p_name.namelen);
370             break;
371
372         case LF_STMEMBER_V2:
373             printf("\t\tStatic member V2: '%s' attr:%s type:%x\n",
374                    p_string(&fieldtype->stmember_v2.p_name),
375                    get_attr(fieldtype->stmember_v2.attribute),
376                    fieldtype->stmember_v2.type);
377             ptr += 2 + 2 + 4 + (1 + fieldtype->stmember_v2.p_name.namelen);
378             break;
379
380         case LF_STMEMBER_V3:
381             printf("\t\tStatic member V3: '%s' attr:%s type:%x\n",
382                    fieldtype->stmember_v3.name,
383                    get_attr(fieldtype->stmember_v3.attribute),
384                    fieldtype->stmember_v3.type);
385             ptr += 2 + 2 + 4 + (strlen(fieldtype->stmember_v3.name) + 1);
386             break;
387
388         case LF_FRIENDFCN_V1:
389             printf("\t\tFriend function V1: '%s' type:%x\n",
390                    p_string(&fieldtype->friendfcn_v1.p_name),
391                    fieldtype->friendfcn_v1.type);
392             break;
393
394         case LF_FRIENDFCN_V2:
395             printf("\t\tFriend function V2: '%s' type:%x\n",
396                    p_string(&fieldtype->friendfcn_v2.p_name),
397                    fieldtype->friendfcn_v2.type);
398             break;
399
400 #if 0
401         case LF_FRIENDFCN_V3:
402             printf("\t\tFriend function V3: '%s' type:%x\n",
403                    fieldtype->friendfcn_v3.name,
404                    fieldtype->friendfcn_v3.type);
405             break;
406 #endif
407
408         case LF_BCLASS_V1:
409             leaf_len = numeric_leaf(&value, &fieldtype->bclass_v1.offset);
410             printf("\t\tBase class V1: type:%x attr:%s @%d\n",
411                    fieldtype->bclass_v1.type, 
412                    get_attr(fieldtype->bclass_v1.attribute), value);
413             ptr += 2 + 2 + 2 + leaf_len;
414             break;
415
416         case LF_BCLASS_V2:
417             leaf_len = numeric_leaf(&value, &fieldtype->bclass_v2.offset);
418             printf("\t\tBase class V2: type:%x attr:%s @%d\n",
419                    fieldtype->bclass_v2.type, 
420                    get_attr(fieldtype->bclass_v2.attribute), value);
421             ptr += 2 + 2 + 4 + leaf_len;
422             break;
423
424         case LF_VBCLASS_V1:
425         case LF_IVBCLASS_V1:
426             leaf_len = numeric_leaf(&value, &fieldtype->vbclass_v1.vbpoff);
427             printf("\t\t%sirtual base class V1: type:%x (ptr:%x) attr:%s vbpoff:%d ",
428                    (fieldtype->generic.id == LF_VBCLASS_V2) ? "V" : "Indirect v",
429                    fieldtype->vbclass_v1.btype, fieldtype->vbclass_v1.vbtype,
430                    get_attr(fieldtype->vbclass_v1.attribute), value);
431             ptr += 2 + 2 + 2 + 2 + leaf_len;
432             leaf_len = numeric_leaf(&value, (const unsigned short*)ptr);
433             printf("vboff:%d\n", value);
434             ptr += leaf_len;
435             break;
436
437         case LF_VBCLASS_V2:
438         case LF_IVBCLASS_V2:
439             leaf_len = numeric_leaf(&value, &fieldtype->vbclass_v1.vbpoff);
440             printf("\t\t%sirtual base class V2: type:%x (ptr:%x) attr:%s vbpoff:%d ",
441                    (fieldtype->generic.id == LF_VBCLASS_V2) ? "V" : "Indirect v",
442                    fieldtype->vbclass_v2.btype, fieldtype->vbclass_v2.vbtype,
443                    get_attr(fieldtype->vbclass_v2.attribute), value);
444             ptr += 2 + 2 + 4 + 4 + leaf_len;
445             leaf_len = numeric_leaf(&value, (const unsigned short*)ptr);
446             printf("vboff:%d\n", value);
447             ptr += leaf_len;
448             break;
449
450         case LF_FRIENDCLS_V1:
451             printf("\t\tFriend class V1: type:%x\n", fieldtype->friendcls_v1.type);
452             break;
453
454         case LF_FRIENDCLS_V2:
455             printf("\t\tFriend class V2: type:%x\n", fieldtype->friendcls_v2.type);
456             break;
457
458         case LF_NESTTYPE_V1:
459             printf("\t\tNested type V1: '%s' type:%x\n",
460                    p_string(&fieldtype->nesttype_v1.p_name),
461                    fieldtype->nesttype_v1.type);
462             ptr += 2 + 2 + (1 + fieldtype->nesttype_v1.p_name.namelen);
463             break;
464
465         case LF_NESTTYPE_V2:
466             printf("\t\tNested type V2: '%s' pad0:%u type:%x\n",
467                    p_string(&fieldtype->nesttype_v2.p_name),
468                    fieldtype->nesttype_v2._pad0, fieldtype->nesttype_v2.type);
469             ptr += 2 + 2 + 4 + (1 + fieldtype->nesttype_v2.p_name.namelen);
470             break;
471
472         case LF_NESTTYPE_V3:
473             printf("\t\tNested type V3: '%s' pad0:%u type:%x\n",
474                    fieldtype->nesttype_v3.name,
475                    fieldtype->nesttype_v3._pad0, fieldtype->nesttype_v3.type);
476             ptr += 2 + 2 + 4 + (strlen(fieldtype->nesttype_v3.name) + 1);
477             break;
478
479         case LF_VFUNCTAB_V1:
480             printf("\t\tVirtual function table V1: type:%x\n",
481                    fieldtype->vfunctab_v1.type);
482             ptr += 2 + 2;
483             break;
484
485         case LF_VFUNCTAB_V2:
486             printf("\t\tVirtual function table V2: type:%x\n",
487                    fieldtype->vfunctab_v2.type);
488             ptr += 2 + 2 + 4;
489             break;
490
491         case LF_VFUNCOFF_V1:
492             printf("\t\tVirtual function table offset V1: type:%x offset:%x\n",
493                    fieldtype->vfuncoff_v1.type, fieldtype->vfuncoff_v1.offset);
494             break;
495
496         case LF_VFUNCOFF_V2:
497             printf("\t\tVirtual function table offset V2: type:%x offset:%x\n",
498                    fieldtype->vfuncoff_v2.type, fieldtype->vfuncoff_v2.offset);
499             break;
500
501         default:
502             printf(">>> Unsupported field-id %x\n", fieldtype->generic.id);
503             dump_data((const void*)fieldtype, 0x30, "\t");
504             break;
505         }
506     }
507 }
508
509 static void codeview_dump_one_type(unsigned curr_type, const union codeview_type* type)
510 {
511     const union codeview_reftype* reftype = (const union codeview_reftype*)type;
512     int                 i, leaf_len, value;
513     unsigned int        j;
514     const char*         str;
515
516     switch (type->generic.id)
517     {
518     case LF_POINTER_V1:
519         printf("\t%x => Pointer V1 to type:%x\n",
520                curr_type, type->pointer_v1.datatype);
521         break;
522     case LF_POINTER_V2:
523         printf("\t%x => Pointer V2 to type:%x\n",
524                curr_type, type->pointer_v2.datatype);
525         break;
526     case LF_ARRAY_V1:
527         leaf_len = numeric_leaf(&value, &type->array_v1.arrlen);
528         printf("\t%x => Array V1-'%s'[%u type:%x] type:%x\n",
529                curr_type, p_string(PSTRING(&type->array_v1.arrlen, leaf_len)),
530                value, type->array_v1.idxtype, type->array_v1.elemtype);
531         break;
532     case LF_ARRAY_V2:
533         leaf_len = numeric_leaf(&value, &type->array_v2.arrlen);
534         printf("\t%x => Array V2-'%s'[%u type:%x] type:%x\n",
535                curr_type, p_string(PSTRING(&type->array_v2.arrlen, leaf_len)),
536                value, type->array_v2.idxtype, type->array_v2.elemtype);
537         break;
538     case LF_ARRAY_V3:
539         leaf_len = numeric_leaf(&value, &type->array_v3.arrlen);
540         str = (const char*)&type->array_v3.arrlen + leaf_len;
541         printf("\t%x => Array V3-'%s'[%u type:%x] type:%x\n",
542                curr_type, str, value,
543                type->array_v3.idxtype, type->array_v3.elemtype);
544         break;
545
546     /* a bitfields is a CodeView specific data type which represent a bitfield
547      * in a structure or a class. For now, we store it in a SymTag-like type
548      * (so that the rest of the process is seamless), but check at udt inclusion
549      * type for its presence
550      */
551     case LF_BITFIELD_V1:
552         printf("\t%x => Bitfield V1:%x offset:%u #bits:%u\n",
553                curr_type, reftype->bitfield_v1.type, reftype->bitfield_v1.bitoff,
554                reftype->bitfield_v1.nbits);
555         break;
556
557     case LF_BITFIELD_V2:
558         printf("\t%x => Bitfield V2:%x offset:%u #bits:%u\n",
559                curr_type, reftype->bitfield_v2.type, reftype->bitfield_v2.bitoff,
560                reftype->bitfield_v2.nbits);
561         break;
562
563     case LF_FIELDLIST_V1:
564     case LF_FIELDLIST_V2:
565         printf("\t%x => Fieldlist\n", curr_type);
566         do_field(reftype->fieldlist.list, (const BYTE*)type + reftype->generic.len + 2);
567         break;
568
569     case LF_STRUCTURE_V1:
570     case LF_CLASS_V1:
571         leaf_len = numeric_leaf(&value, &type->struct_v1.structlen);
572         printf("\t%x => %s V1 '%s' elts:%u prop:%u fieldlist-type:%x derived-type:%x vshape:%x size:%u\n",
573                curr_type, type->generic.id == LF_CLASS_V1 ? "Class" : "Struct",
574                p_string(PSTRING(&type->struct_v1.structlen, leaf_len)),
575                type->struct_v1.n_element, type->struct_v1.property,
576                type->struct_v1.fieldlist, type->struct_v1.derived,
577                type->struct_v1.vshape, value);
578         break;
579
580     case LF_STRUCTURE_V2:
581     case LF_CLASS_V2:
582         leaf_len = numeric_leaf(&value, &type->struct_v2.structlen);
583         printf("\t%x => %s V2 '%s' elts:%u prop:%u\n"
584                "                fieldlist-type:%x derived-type:%x vshape:%x size:%u\n",
585                curr_type, type->generic.id == LF_CLASS_V2 ? "Class" : "Struct",
586                p_string(PSTRING(&type->struct_v2.structlen, leaf_len)),
587                type->struct_v2.n_element, type->struct_v2.property,
588                type->struct_v2.fieldlist, type->struct_v2.derived,
589                type->struct_v2.vshape, value);
590         break;
591
592     case LF_STRUCTURE_V3:
593     case LF_CLASS_V3:
594         leaf_len = numeric_leaf(&value, &type->struct_v3.structlen);
595         str = (const char*)&type->struct_v3.structlen + leaf_len;
596         printf("\t%x => %s V3 '%s' elts:%u prop:%u\n"
597                "                fieldlist-type:%x derived-type:%x vshape:%x size:%u\n",
598                curr_type, type->generic.id == LF_CLASS_V3 ? "Class" : "Struct",
599                str, type->struct_v3.n_element, type->struct_v3.property,
600                type->struct_v3.fieldlist, type->struct_v3.derived,
601                type->struct_v3.vshape, value);
602         break;
603
604     case LF_UNION_V1:
605         leaf_len = numeric_leaf(&value, &type->union_v1.un_len);
606         printf("\t%x => Union V1 '%s' count:%u prop:%u fieldlist-type:%x size:%u\n",
607                curr_type, p_string(PSTRING(&type->union_v1.un_len, leaf_len)),
608                type->union_v1.count, type->union_v1.property,
609                type->union_v1.fieldlist, value);
610         break;
611
612     case LF_UNION_V2:
613         leaf_len = numeric_leaf(&value, &type->union_v2.un_len);
614         printf("\t%x => Union V2 '%s' count:%u prop:%u fieldlist-type:%x size:%u\n",
615                curr_type, p_string(PSTRING(&type->union_v2.un_len, leaf_len)),
616                type->union_v2.count, type->union_v2.property,
617                type->union_v2.fieldlist, value);
618         break;
619
620     case LF_UNION_V3:
621         leaf_len = numeric_leaf(&value, &type->union_v3.un_len);
622         str = (const char*)&type->union_v3.un_len + leaf_len;
623         printf("\t%x => Union V3 '%s' count:%u prop:%u fieldlist-type:%x size:%u\n",
624                curr_type, str, type->union_v3.count,
625                type->union_v3.property, type->union_v3.fieldlist, value);
626         break;
627
628     case LF_ENUM_V1:
629         printf("\t%x => Enum V1 '%s' type:%x field-type:%x count:%u property:%x\n",
630                curr_type, p_string(&type->enumeration_v1.p_name),
631                type->enumeration_v1.type,
632                type->enumeration_v1.fieldlist,
633                type->enumeration_v1.count,
634                type->enumeration_v1.property);
635         break;
636
637     case LF_ENUM_V2:
638         printf("\t%x => Enum V2 '%s' type:%x field-type:%x count:%u property:%x\n",
639                curr_type, p_string(&type->enumeration_v2.p_name),
640                type->enumeration_v2.type,
641                type->enumeration_v2.fieldlist,
642                type->enumeration_v2.count,
643                type->enumeration_v2.property);
644         break;
645
646     case LF_ENUM_V3:
647         printf("\t%x => Enum V3 '%s' type:%x field-type:%x count:%u property:%x\n",
648                curr_type, type->enumeration_v3.name,
649                type->enumeration_v3.type,
650                type->enumeration_v3.fieldlist,
651                type->enumeration_v3.count,
652                type->enumeration_v3.property);
653         break;
654
655     case LF_ARGLIST_V1:
656         printf("\t%x => Arglist V1(#%u):", curr_type, reftype->arglist_v1.num);
657         for (i = 0; i < reftype->arglist_v1.num; i++)
658         {
659             printf(" %x", reftype->arglist_v1.args[i]);
660         }
661         printf("\n");
662         break;
663
664     case LF_ARGLIST_V2:
665         printf("\t%x => Arglist V2(#%u):", curr_type, reftype->arglist_v2.num);
666         for (j = 0; j < reftype->arglist_v2.num; j++)
667         {
668             printf("\t %x", reftype->arglist_v2.args[j]);
669         }
670         printf("\t\n");
671         break;
672
673     case LF_PROCEDURE_V1:
674         /* FIXME: unknown could be the calling convention for the proc */
675         printf("\t%x => Procedure V1 ret_type:%x call:%x (#%u args_type:%x)\n",
676                curr_type, type->procedure_v1.rvtype,
677                type->procedure_v1.call, type->procedure_v1.params,
678                type->procedure_v1.arglist);
679         break;
680
681     case LF_PROCEDURE_V2:
682         printf("\t%x => Procedure V2 ret_type:%x unk:%x (#%u args_type:%x)\n",
683                curr_type, type->procedure_v2.rvtype,
684                type->procedure_v2.call, type->procedure_v2.params,
685                type->procedure_v2.arglist);
686         break;
687
688     case LF_MFUNCTION_V2:
689         printf("\t%x => MFunction V2 ret-type:%x call:%x class-type:%x this-type:%x\n"
690                "\t\t#args:%x args-type:%x this_adjust:%x\n",
691                curr_type,
692                type->mfunction_v2.rvtype,
693                type->mfunction_v2.call,
694                type->mfunction_v2.class_type,
695                type->mfunction_v2.this_type,
696                type->mfunction_v2.params,
697                type->mfunction_v2.arglist,
698                type->mfunction_v2.this_adjust);
699         break;
700
701     case LF_MODIFIER_V1:
702         printf("\t%x => Modifier V1 type:%x modif:%x\n",
703                curr_type, type->modifier_v1.type, type->modifier_v1.attribute);
704         break;
705
706     case LF_MODIFIER_V2:
707         printf("\t%x => Modifier V2 type:%x modif:%x\n",
708                curr_type, type->modifier_v2.type, type->modifier_v2.attribute);
709         break;
710
711     case LF_METHODLIST_V1:
712         {
713             const unsigned short* pattr = (const unsigned short*)((const char*)type + 4);
714
715             printf("\t%x => Method list\n", curr_type);
716             while ((const char*)pattr < (const char*)type + type->generic.len + 2)
717             {
718                 switch ((*pattr >> 2) & 7)
719                 {
720                 case 4: case 6:
721                     printf("\t\t\tattr:%s type:%x vtab-offset:%x\n",
722                            get_attr(pattr[0]), pattr[1],
723                            *(const unsigned*)(&pattr[2]));
724                     pattr += 3;
725                     break;
726                 default:
727                     printf("\t\t\tattr:%s type:%x\n",
728                            get_attr(pattr[0]), pattr[1]);
729                     pattr += 2;
730                 }
731             }
732         }
733         break;
734
735     case LF_METHODLIST_V2:
736         {
737             const unsigned* pattr = (const unsigned*)((const char*)type + 4);
738
739             printf("\t%x => Method list\n", curr_type);
740             while ((const char*)pattr < (const char*)type + type->generic.len + 2)
741             {
742                 switch ((*pattr >> 2) & 7)
743                 {
744                 case 4: case 6:
745                     printf("\t\t\tattr:%s type:%x vtab-offset:%x\n",
746                            get_attr(pattr[0]), pattr[1], pattr[2]);
747                     pattr += 3;
748                     break;
749                 default:
750                     printf("\t\t\tattr:%s type:%x\n",
751                            get_attr(pattr[0]), pattr[1]);
752                     pattr += 2;
753                 }
754             }
755         }
756         break;
757
758     case LF_VTSHAPE_V1:
759         {
760             int count = *(const unsigned short*)((const char*)type + 4);
761             int shift = 0;
762             const char* ptr = (const char*)type + 6;
763             const char* desc[] = {"Near", "Far", "Thin", "Disp to outtermost",
764                                   "Pointer to metaclass", "Near32", "Far32"};
765             printf("\t%x => VT Shape #%d: ", curr_type, count);
766             while (count--)
767             {
768                 if (((*ptr << shift) & 0xF) <= 6)
769                     printf("%s ", desc[(*ptr << shift) & 0xF]);
770                 else
771                     printf("%x ", (*ptr << shift) & 0xF);
772                 if (shift == 0) shift = 4; else {shift = 0; ptr++;}
773             }
774             printf("\n");
775         }
776         break;
777
778     case LF_DERIVED_V1:
779         printf("\t%x => Derived V1(#%u):", curr_type, reftype->derived_v1.num);
780         for (i = 0; i < reftype->derived_v1.num; i++)
781         {
782             printf(" %x", reftype->derived_v1.drvdcls[i]);
783         }
784         printf("\n");
785         break;
786
787     case LF_DERIVED_V2:
788         printf("\t%x => Derived V2(#%u):", curr_type, reftype->derived_v2.num);
789         for (j = 0; j < reftype->derived_v2.num; j++)
790         {
791             printf(" %x", reftype->derived_v2.drvdcls[j]);
792         }
793         printf("\n");
794         break;
795
796     default:
797         printf(">>> Unsupported type-id %x for %x\n", type->generic.id, curr_type);
798         dump_data((const void*)type, type->generic.len + 2, "");
799         break;
800     }
801 }
802
803 int codeview_dump_types_from_offsets(const void* table, const DWORD* offsets, unsigned num_types)
804 {
805     unsigned long i;
806
807     for (i = 0; i < num_types; i++)
808     {
809         codeview_dump_one_type(0x1000 + i,
810                                (const union codeview_type*)((const char*)table + offsets[i]));
811     }
812
813     return TRUE;
814 }
815
816 int codeview_dump_types_from_block(const void* table, unsigned long len)
817 {
818     unsigned int        curr_type = 0x1000;
819     const unsigned char*ptr = table;
820
821     while (ptr - (const unsigned char*)table < len)
822     {
823         const union codeview_type* type = (const union codeview_type*)ptr;
824
825         codeview_dump_one_type(curr_type, type);
826         curr_type++;
827         ptr += (type->generic.len + 2 + 3) & ~3;
828     }
829
830     return TRUE;
831 }
832
833 int codeview_dump_symbols(const void* root, unsigned long size)
834 {
835     unsigned int i;
836     int          length;
837     char*        curr_func = NULL;
838     int          nest_block = 0;
839     /*
840      * Loop over the different types of records and whenever we
841      * find something we are interested in, record it and move on.
842      */
843     for (i = 0; i < size; i += length)
844     {
845         const union codeview_symbol* sym = (const union codeview_symbol*)((const char*)root + i);
846         length = sym->generic.len + 2;
847         if (!sym->generic.id || length < 4) break;
848         switch (sym->generic.id)
849         {
850         /*
851          * Global and local data symbols.  We don't associate these
852          * with any given source file.
853          */
854         case S_GDATA_V2:
855         case S_LDATA_V2:
856             printf("\tS-%s-Data V2 '%s' %04x:%08x type:%08x\n",
857                    sym->generic.id == S_GDATA_V2 ? "Global" : "Local",
858                    get_symbol_str(p_string(&sym->data_v2.p_name)),
859                    sym->data_v2.segment, sym->data_v2.offset, sym->data_v2.symtype);
860             break;
861
862         case S_LDATA_V3:
863         case S_GDATA_V3:
864 /* EPP         case S_DATA_V3: */
865             printf("\tS-%s-Data V3 '%s' (%04x:%08x) type:%08x\n",
866                    sym->generic.id == S_GDATA_V3 ? "Global" : "Local",
867                    get_symbol_str(sym->data_v3.name),
868                    sym->data_v3.segment, sym->data_v3.offset,
869                    sym->data_v3.symtype);
870             break;
871
872         case S_PUB_V2:
873             printf("\tS-Public V2 '%s' %04x:%08x type:%08x\n",
874                    get_symbol_str(p_string(&sym->public_v2.p_name)),
875                    sym->public_v2.segment, sym->public_v2.offset,
876                    sym->public_v2.symtype);
877             break;
878
879         case S_PUB_V3:
880         /* not completely sure of those two anyway */
881         case S_PUB_FUNC1_V3:
882         case S_PUB_FUNC2_V3:
883             printf("\tS-Public%s V3 '%s' %04x:%08x type:%08x\n",
884                    sym->generic.id == S_PUB_V3 ? "" :
885                                       (sym->generic.id == S_PUB_FUNC1_V3 ? "<subkind1" : "<subkind2"),
886                    get_symbol_str(sym->public_v3.name),
887                    sym->public_v3.segment,
888                    sym->public_v3.offset, sym->public_v3.symtype);
889             break;
890
891         /*
892          * Sort of like a global function, but it just points
893          * to a thunk, which is a stupid name for what amounts to
894          * a PLT slot in the normal jargon that everyone else uses.
895          */
896         case S_THUNK_V1:
897             printf("\tS-Thunk V1 '%s' (%04x:%08x#%x) type:%x\n", 
898                    p_string(&sym->thunk_v1.p_name),
899                    sym->thunk_v1.segment, sym->thunk_v1.offset,
900                    sym->thunk_v1.thunk_len, sym->thunk_v1.thtype);
901             curr_func = strdup(p_string(&sym->thunk_v1.p_name));
902             break;
903
904         case S_THUNK_V3:
905             printf("\tS-Thunk V3 '%s' (%04x:%08x#%x) type:%x\n", 
906                    sym->thunk_v3.name,
907                    sym->thunk_v3.segment, sym->thunk_v3.offset,
908                    sym->thunk_v3.thunk_len, sym->thunk_v3.thtype);
909             curr_func = strdup(sym->thunk_v3.name);
910             break;
911
912         /* Global and static functions */
913         case S_GPROC_V1:
914         case S_LPROC_V1:
915             printf("\tS-%s-Proc V1: '%s' (%04x:%08x#%x) type:%x\n",
916                    sym->generic.id == S_GPROC_V1 ? "Global" : "-Local",
917                    p_string(&sym->proc_v1.p_name),
918                    sym->proc_v1.segment, sym->proc_v1.offset,
919                    sym->proc_v1.proc_len, sym->proc_v1.proctype);
920             if (nest_block)
921             {
922                 printf(">>> prev func '%s' still has nest_block %u count\n", curr_func, nest_block);
923                 nest_block = 0;
924             }
925             curr_func = strdup(p_string(&sym->proc_v1.p_name));
926 /* EPP  unsigned int    pparent; */
927 /* EPP  unsigned int    pend; */
928 /* EPP  unsigned int    next; */
929 /* EPP  unsigned int    debug_start; */
930 /* EPP  unsigned int    debug_end; */
931 /* EPP  unsigned char   flags; */
932             break;
933
934         case S_GPROC_V2:
935         case S_LPROC_V2:
936             printf("\tS-%s-Proc V2: '%s' (%04x:%08x#%x) type:%x\n",
937                    sym->generic.id == S_GPROC_V2 ? "Global" : "-Local",
938                    p_string(&sym->proc_v2.p_name),
939                    sym->proc_v2.segment, sym->proc_v2.offset,
940                    sym->proc_v2.proc_len, sym->proc_v2.proctype);
941             if (nest_block)
942             {
943                 printf(">>> prev func '%s' still has nest_block %u count\n", curr_func, nest_block);
944                 nest_block = 0;
945             }
946             curr_func = strdup(p_string(&sym->proc_v2.p_name));
947 /* EPP  unsigned int    pparent; */
948 /* EPP  unsigned int    pend; */
949 /* EPP  unsigned int    next; */
950 /* EPP  unsigned int    debug_start; */
951 /* EPP  unsigned int    debug_end; */
952 /* EPP  unsigned char   flags; */
953             break;
954
955         case S_LPROC_V3:
956         case S_GPROC_V3:
957             printf("\tS-%s-Procedure V3 '%s' (%04x:%08x#%x) type:%x\n",
958                    sym->generic.id == S_GPROC_V3 ? "Global" : "Local",
959                    sym->proc_v3.name,
960                    sym->proc_v3.segment, sym->proc_v3.offset,
961                    sym->proc_v3.proc_len, sym->proc_v3.proctype);
962             if (nest_block)
963             {
964                 printf(">>> prev func '%s' still has nest_block %u count\n", curr_func, nest_block);
965                 nest_block = 0;
966             }
967             curr_func = strdup(sym->proc_v3.name);
968 /* EPP  unsigned int    pparent; */
969 /* EPP  unsigned int    pend; */
970 /* EPP  unsigned int    next; */
971 /* EPP  unsigned int    debug_start; */
972 /* EPP  unsigned int    debug_end; */
973 /* EPP  unsigned char   flags; */
974             break;
975
976         /* Function parameters and stack variables */
977         case S_BPREL_V1:
978             printf("\tS-BP-relative V1: '%s' @%d type:%x (%s)\n", 
979                    p_string(&sym->stack_v1.p_name),
980                    sym->stack_v1.offset, sym->stack_v1.symtype, curr_func);
981             break;
982
983         case S_BPREL_V2:
984             printf("\tS-BP-relative V2: '%s' @%d type:%x (%s)\n", 
985                    p_string(&sym->stack_v2.p_name),
986                    sym->stack_v2.offset, sym->stack_v2.symtype, curr_func);
987             break;
988
989         case S_BPREL_V3:
990             printf("\tS-BP-relative V3: '%s' @%d type:%x (in %s)\n", 
991                    sym->stack_v3.name, sym->stack_v3.offset,
992                    sym->stack_v3.symtype, curr_func);
993             break;
994
995         case S_REGISTER_V1:
996             printf("\tS-Register V1 '%s' in %s type:%x register:%x\n",
997                    p_string(&sym->register_v1.p_name),
998                    curr_func, sym->register_v1.reg, sym->register_v1.type);
999             break;
1000
1001         case S_REGISTER_V2:
1002             printf("\tS-Register V2 '%s' in %s type:%x register:%x\n",
1003                    p_string(&sym->register_v2.p_name),
1004                    curr_func, sym->register_v2.reg, sym->register_v2.type);
1005             break;
1006
1007         case S_REGISTER_V3:
1008             printf("\tS-Register V3 '%s' in %s type:%x register:%x\n",
1009                    sym->register_v3.name,
1010                    curr_func, sym->register_v3.reg, sym->register_v3.type);
1011             break;
1012
1013         case S_BLOCK_V1:
1014             printf("\tS-Block V1 '%s' in '%s' (%04x:%08x#%08x)\n",
1015                    p_string(&sym->block_v1.p_name),
1016                    curr_func, 
1017                    sym->block_v1.segment, sym->block_v1.offset,
1018                    sym->block_v1.length);
1019             nest_block++;
1020             break;
1021
1022         case S_BLOCK_V3:
1023             printf("\tS-Block V3 '%s' in '%s' (%04x:%08x#%08x) parent:%u end:%x\n",
1024                    sym->block_v3.name, curr_func, 
1025                    sym->block_v3.segment, sym->block_v3.offset, sym->block_v3.length,
1026                    sym->block_v3.parent, sym->block_v3.end);
1027             nest_block++;
1028             break;
1029
1030         case S_END_V1:
1031             if (nest_block)
1032             {
1033                 nest_block--;
1034                 printf("\tS-End-Of block (%u)\n", nest_block);
1035             }
1036             else
1037             {
1038                 printf("\tS-End-Of %s\n", curr_func);
1039                 free(curr_func);
1040                 curr_func = NULL;
1041             }
1042             break;
1043
1044         case S_COMPILAND_V1:
1045             {
1046                 const char*     machine;
1047                 const char*     lang;
1048
1049                 switch (sym->compiland_v1.unknown & 0xFF)
1050                 {
1051                 case 0x00:      machine = "Intel 8080"; break;
1052                 case 0x01:      machine = "Intel 8086"; break;
1053                 case 0x02:      machine = "Intel 80286"; break;
1054                 case 0x03:      machine = "Intel 80386"; break;
1055                 case 0x04:      machine = "Intel 80486"; break;
1056                 case 0x05:      machine = "Intel Pentium"; break;
1057                 case 0x10:      machine = "MIPS R4000"; break;
1058                 default:
1059                     {
1060                         static char tmp[16];
1061                         sprintf(tmp, "machine=%x", sym->compiland_v1.unknown & 0xFF);
1062                         machine = tmp;
1063                     }
1064                     break;
1065                 }
1066                 switch ((sym->compiland_v1.unknown >> 8) & 0xFF)
1067                 {
1068                 case 0x00:      lang = "C"; break;
1069                 case 0x01:      lang = "C++"; break;
1070                 case 0x02:      lang = "Fortran"; break;
1071                 case 0x03:      lang = "Masm"; break;
1072                 case 0x04:      lang = "Pascal"; break;
1073                 case 0x05:      lang = "Basic"; break;
1074                 case 0x06:      lang = "Cobol"; break;
1075                 default:
1076                     {
1077                         static char tmp[16];
1078                         sprintf(tmp, "language=%x", (sym->compiland_v1.unknown >> 8) & 0xFF);
1079                         lang = tmp;
1080                     }
1081                     break;
1082                 }
1083
1084                 printf("\tS-Compiland V1 '%s' %s %s unk:%x\n",
1085                        p_string(&sym->compiland_v1.p_name), machine, lang,
1086                        sym->compiland_v1.unknown >> 16);
1087             }
1088             break;
1089
1090         case S_COMPILAND_V2:
1091             printf("\tS-Compiland V2 '%s'\n",
1092                    p_string(&sym->compiland_v2.p_name));
1093             dump_data((const void*)sym, sym->generic.len + 2, "  ");
1094             {
1095                 const char* ptr = sym->compiland_v2.p_name.name + sym->compiland_v2.p_name.namelen;
1096                 while (*ptr)
1097                 {
1098                     printf("\t\t%s => ", ptr); ptr += strlen(ptr) + 1;
1099                     printf("%s\n", ptr); ptr += strlen(ptr) + 1;
1100                 }
1101             }
1102             break;
1103
1104         case S_COMPILAND_V3:
1105             printf("\tS-Compiland V3 '%s' unknown:%x\n",
1106                    sym->compiland_v3.name, sym->compiland_v3.unknown);
1107             break;
1108
1109         case S_OBJNAME_V1:
1110             printf("\tS-ObjName V1 sig:%.4s '%s'\n",
1111                    sym->objname_v1.signature, p_string(&sym->objname_v1.p_name));
1112             break;
1113
1114         case S_LABEL_V1:
1115             printf("\tS-Label V1 '%s' in '%s' (%04x:%08x)\n", 
1116                    p_string(&sym->label_v1.p_name),     
1117                    curr_func, sym->label_v1.segment, sym->label_v1.offset);
1118             break;
1119
1120         case S_LABEL_V3:
1121             printf("\tS-Label V3 '%s' in '%s' (%04x:%08x) flag:%x\n", 
1122                    sym->label_v3.name, curr_func, sym->label_v3.segment,
1123                    sym->label_v3.offset, sym->label_v3.flags);
1124             break;
1125
1126         case S_CONSTANT_V2:
1127             {
1128                 int             val, vlen;
1129
1130                 vlen = numeric_leaf(&val, &sym->constant_v2.cvalue);
1131                 printf("\tS-Constant V2 '%s' = %u type:%x\n",
1132                        p_string(PSTRING(&sym->constant_v2.cvalue, vlen)),
1133                        val, sym->constant_v2.type);
1134             }
1135             break;
1136
1137         case S_CONSTANT_V3:
1138             {
1139                 int             val, vlen;
1140
1141                 vlen = numeric_leaf(&val, &sym->constant_v3.cvalue);
1142                 printf("\tS-Constant V3 '%s' = %u type:%x\n",
1143                        (const char*)&sym->constant_v3.cvalue + vlen,
1144                        val, sym->constant_v3.type);
1145             }
1146             break;
1147
1148         case S_UDT_V1:
1149             printf("\tS-Udt V1 '%s': type:0x%x\n", 
1150                    p_string(&sym->udt_v1.p_name), sym->udt_v1.type);
1151             break;
1152
1153         case S_UDT_V2:
1154             printf("\tS-Udt V2 '%s': type:0x%x\n", 
1155                    p_string(&sym->udt_v2.p_name), sym->udt_v2.type);
1156             break;
1157
1158         case S_UDT_V3:
1159             printf("\tS-Udt V3 '%s': type:0x%x\n",
1160                    sym->udt_v3.name, sym->udt_v3.type);
1161             break;
1162         /*
1163          * These are special, in that they are always followed by an
1164          * additional length-prefixed string which is *not* included
1165          * into the symbol length count.  We need to skip it.
1166          */
1167         case S_PROCREF_V1:
1168             printf("\tS-Procref V1 "); goto doaref;
1169         case S_DATAREF_V1:
1170             printf("\tS-Dataref V1 "); goto doaref;
1171         case S_LPROCREF_V1:
1172             printf("\tS-L-Procref V1 "); goto doaref;
1173         doaref:
1174             {
1175                 const struct p_string* pname;
1176
1177                 pname = PSTRING(sym, length);
1178                 length += (pname->namelen + 1 + 3) & ~3;
1179                 printf("\t%08x %08x %08x '%s'\n",
1180                        *(((const DWORD*)sym) + 1), *(((const DWORD*)sym) + 2), *(((const DWORD*)sym) + 3),
1181                        p_string(pname));
1182             }
1183             break;
1184         case S_MSTOOL_V3:    /* info about tool used to create CU */
1185             {
1186                 const unsigned short*     ptr = ((const unsigned short*)sym) + 2;
1187
1188                 /* FIXME: what are all those values for ? */
1189                 printf("\tTool V3 ??? %x-%x-%x-%x-%x-%x-%x-%x-%x %s\n",
1190                        ptr[0], ptr[1], ptr[2], ptr[3], ptr[4], ptr[5], ptr[6], ptr[7],
1191                        ptr[8], (const char*)(&ptr[9]));
1192                 dump_data((const void*)sym, sym->generic.len + 2, "\t\t");
1193             }
1194             break;
1195
1196         case S_ALIGN_V1:
1197             /* simply skip it */
1198             break;
1199
1200         case S_SSEARCH_V1:
1201             printf("\tSSearch V1: (%04x:%08x)\n",
1202                    sym->ssearch_v1.segment, sym->ssearch_v1.offset);
1203             break;
1204
1205         default:
1206             printf(">>> Unsupported symbol-id %x sz=%d\n", sym->generic.id, sym->generic.len + 2);
1207             dump_data((const void*)sym, sym->generic.len + 2, "  ");
1208         }
1209     }
1210     return 0;
1211 }