- fixed some bugs in StackWalk (claimed for but forgotten in last
[wine] / dlls / dbghelp / stack.c
1 /*
2  * Stack walking
3  *
4  * Copyright 1995 Alexandre Julliard
5  * Copyright 1996 Eric Youngdale
6  * Copyright 1999 Ove Kåven
7  * Copyright 2004 Eric Pouech
8  *
9  * This library is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU Lesser General Public
11  * License as published by the Free Software Foundation; either
12  * version 2.1 of the License, or (at your option) any later version.
13  *
14  * This library is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  * Lesser General Public License for more details.
18  *
19  * You should have received a copy of the GNU Lesser General Public
20  * License along with this library; if not, write to the Free Software
21  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
22  */
23
24 #include "config.h"
25 #include <stdlib.h>
26 #include <stdio.h>
27 #include <string.h>
28 #include <assert.h>
29
30 #include "dbghelp_private.h"
31 #include "winreg.h"
32 #include "ntstatus.h"
33 #include "thread.h" /* FIXME: must be included before winternl.h */
34 #include "winternl.h"
35 #include "wine/debug.h"
36 #include "stackframe.h"
37
38 WINE_DEFAULT_DEBUG_CHANNEL(dbghelp);
39
40 enum st_mode {stm_start, stm_32bit, stm_16bit, stm_done};
41
42 static const char* wine_dbgstr_addr(const ADDRESS* addr)
43 {
44     if (!addr) return "(null)";
45     switch (addr->Mode)
46     {
47     case AddrModeFlat:
48         return wine_dbg_sprintf("flat<%08lx>", addr->Offset);
49     case AddrMode1616:
50         return wine_dbg_sprintf("1616<%04x:%04lx>", addr->Segment, addr->Offset);
51     case AddrMode1632:
52         return wine_dbg_sprintf("1632<%04x:%08lx>", addr->Segment, addr->Offset);
53     case AddrModeReal:
54         return wine_dbg_sprintf("real<%04x:%04lx>", addr->Segment, addr->Offset);
55     default:
56         return "unknown";
57     }
58 }
59
60 /* indexes in Reserved array */
61 #define __CurrentMode     0
62 #define __CurrentSwitch   1
63 #define __NextSwitch      2
64
65 #define curr_mode   (frame->Reserved[__CurrentMode])
66 #define curr_switch (frame->Reserved[__CurrentSwitch])
67 #define next_switch (frame->Reserved[__NextSwitch])
68
69 /***********************************************************************
70  *              StackWalk (DBGHELP.@)
71  */
72 BOOL WINAPI StackWalk(DWORD MachineType, HANDLE hProcess, HANDLE hThread,
73                       LPSTACKFRAME frame, LPVOID ctx,
74                       PREAD_PROCESS_MEMORY_ROUTINE f_read_mem,
75                       PFUNCTION_TABLE_ACCESS_ROUTINE FunctionTableAccessRoutine,
76                       PGET_MODULE_BASE_ROUTINE GetModuleBaseRoutine,
77                       PTRANSLATE_ADDRESS_ROUTINE f_xlat_adr)
78 {
79     STACK32FRAME        frame32;
80     STACK16FRAME        frame16;
81     char                ch;
82     ADDRESS             tmp;
83     DWORD               p;
84     WORD                val;
85     BOOL                do_switch;
86
87     TRACE("(%ld, %p, %p, %p, %p, %p, %p, %p, %p)\n",
88           MachineType, hProcess, hThread, frame, ctx,
89           f_read_mem, FunctionTableAccessRoutine,
90           GetModuleBaseRoutine, f_xlat_adr);
91
92     if (MachineType != IMAGE_FILE_MACHINE_I386)
93     {
94         SetLastError(ERROR_INVALID_PARAMETER);
95         return FALSE;
96     }
97
98     /* sanity check */
99     if (curr_mode >= stm_done) return FALSE;
100
101     if (!f_read_mem) f_read_mem = ReadProcessMemory;
102     if (!f_xlat_adr) f_xlat_adr = addr_to_linear;
103
104     TRACE("Enter: PC=%s Frame=%s Return=%s Stack=%s Mode=%s cSwitch=%08lx nSwitch=%08lx\n",
105           wine_dbgstr_addr(&frame->AddrPC), 
106           wine_dbgstr_addr(&frame->AddrFrame),
107           wine_dbgstr_addr(&frame->AddrReturn),
108           wine_dbgstr_addr(&frame->AddrStack), 
109           curr_mode == stm_start ? "start" : (curr_mode == stm_16bit ? "16bit" : "32bit"),
110           curr_switch, next_switch);
111
112     if (curr_mode == stm_start)
113     {
114         THREAD_BASIC_INFORMATION info;
115
116         /* Init done */
117         curr_mode = (frame->AddrPC.Mode == AddrModeFlat) ? 
118             stm_32bit : stm_16bit;
119
120         /* cur_switch holds address of curr_stack's field in TEB in debuggee
121          * address space
122          */
123         if (NtQueryInformationThread(hThread, ThreadBasicInformation, &info,    
124                                      sizeof(info), NULL) != STATUS_SUCCESS)
125             goto done_err;
126         curr_switch = (unsigned long)info.TebBaseAddress + FIELD_OFFSET(TEB, cur_stack);
127         if (!f_read_mem(hProcess, (void*)curr_switch, &next_switch, 
128                         sizeof(next_switch), NULL))
129         {
130             WARN("Can't read TEB:cur_stack\n");
131             goto done_err;
132         }
133         if (curr_mode == stm_16bit)
134         {
135             if (!f_read_mem(hProcess, (void*)next_switch, &frame32, 
136                             sizeof(frame32), NULL))
137             {
138                 WARN("Bad stack frame 0x%08lx\n", next_switch);
139                 goto done_err;
140             }
141             curr_switch = (DWORD)frame32.frame16;
142             tmp.Mode    = AddrMode1616;
143             tmp.Segment = SELECTOROF(curr_switch);
144             tmp.Offset  = OFFSETOF(curr_switch);
145             if (!f_read_mem(hProcess, (void*)f_xlat_adr(hProcess, hThread, &tmp),
146                             &ch, sizeof(ch), NULL))
147                 curr_switch = 0xFFFFFFFF;
148             frame->AddrReturn.Mode = frame->AddrStack.Mode = AddrMode1616;
149         }
150         else
151         {
152             tmp.Mode    = AddrMode1616;
153             tmp.Segment = SELECTOROF(next_switch);
154             tmp.Offset  = OFFSETOF(next_switch);
155             p = f_xlat_adr(hProcess, hThread, &tmp);
156             if (!f_read_mem(hProcess, (void*)p, &frame16, sizeof(frame16), NULL))
157             {
158                 WARN("Bad stack frame 0x%08lx\n", p);
159                 goto done_err;
160             }
161             curr_switch = (DWORD)frame16.frame32;
162
163             if (!f_read_mem(hProcess, (void*)curr_switch, &ch, sizeof(ch), NULL))
164                 curr_switch = 0xFFFFFFFF;
165             frame->AddrReturn.Mode = frame->AddrStack.Mode = AddrModeFlat;
166         }
167         /* don't set up AddrStack on first call. Either the caller has set it up, or
168          * we will get it in the next frame
169          */
170     }
171     else
172     {
173         if (frame->AddrFrame.Offset == 0) goto done_err;
174         if (frame->AddrFrame.Mode == AddrModeFlat)
175         {
176             assert(curr_mode == stm_32bit);
177             do_switch = curr_switch && frame->AddrFrame.Offset >= curr_switch;
178         }
179         else
180         {
181             assert(curr_mode == stm_16bit);
182             do_switch = OFFSETOF(curr_switch) && 
183                 frame->AddrFrame.Segment == SELECTOROF(curr_switch) &&
184                 frame->AddrFrame.Offset >= OFFSETOF(curr_switch);
185         }
186            
187         if (do_switch)
188         {
189             if (curr_mode == stm_16bit)
190             {
191                 if (!f_read_mem(hProcess, (void*)next_switch, &frame32, 
192                                 sizeof(frame32), NULL))
193                 {
194                     WARN("Bad stack frame 0x%08lx\n", next_switch);
195                     goto done_err;
196                 }
197
198                 frame->AddrPC.Mode        = AddrModeFlat;
199                 frame->AddrPC.Segment     = 0;
200                 frame->AddrPC.Offset      = frame32.retaddr;
201                 frame->AddrFrame.Mode     = AddrModeFlat;
202                 frame->AddrFrame.Segment  = 0;
203                 frame->AddrFrame.Offset   = frame32.ebp;
204
205                 frame->AddrStack.Mode     = AddrModeFlat;
206                 frame->AddrStack.Segment  = 0;
207                 frame->AddrReturn.Mode    = AddrModeFlat;
208                 frame->AddrReturn.Segment = 0;
209
210                 next_switch = curr_switch;
211                 tmp.Mode    = AddrMode1616;
212                 tmp.Segment = SELECTOROF(next_switch);
213                 tmp.Offset  = OFFSETOF(next_switch);
214                 p = f_xlat_adr(hProcess, hThread, &tmp);
215
216                 if (!f_read_mem(hProcess, (void*)p, &frame16, sizeof(frame16), NULL))
217                 {
218                     WARN("Bad stack frame 0x%08lx\n", p);
219                     goto done_err;
220                 }
221                 curr_switch = (DWORD)frame16.frame32;
222                 curr_mode = stm_32bit;
223                 if (!f_read_mem(hProcess, (void*)curr_switch, &ch, sizeof(ch), NULL))
224                     curr_switch = 0xFFFFFFFF;
225             }
226             else
227             {
228                 tmp.Mode    = AddrMode1616;
229                 tmp.Segment = SELECTOROF(next_switch);
230                 tmp.Offset  = OFFSETOF(next_switch);
231                 p = f_xlat_adr(hProcess, hThread, &tmp);
232
233                 if (!f_read_mem(hProcess, (void*)p, &frame16, sizeof(frame16), NULL))
234                 {
235                     WARN("Bad stack frame 0x%08lx\n", p);
236                     goto done_err;
237                 }
238
239                 TRACE("Got a 16 bit stack switch:"
240                       "\n\tframe32: %08lx"
241                       "\n\tedx:%08lx ecx:%08lx ebp:%08lx"
242                       "\n\tds:%04x es:%04x fs:%04x gs:%04x"
243                       "\n\tcall_from_ip:%08lx module_cs:%04lx relay=%08lx"
244                       "\n\tentry_ip:%04x entry_point:%08lx"
245                       "\n\tbp:%04x ip:%04x cs:%04x\n",
246                       (unsigned long)frame16.frame32,
247                       frame16.edx, frame16.ecx, frame16.ebp,
248                       frame16.ds, frame16.es, frame16.fs, frame16.gs,
249                       frame16.callfrom_ip, frame16.module_cs, frame16.relay,
250                       frame16.entry_ip, frame16.entry_point,
251                       frame16.bp, frame16.ip, frame16.cs);
252
253                       
254                 frame->AddrPC.Mode       = AddrMode1616;
255                 frame->AddrPC.Segment    = frame16.cs;
256                 frame->AddrPC.Offset     = frame16.ip;
257
258                 frame->AddrFrame.Mode    = AddrMode1616;
259                 frame->AddrFrame.Segment = SELECTOROF(next_switch);
260                 frame->AddrFrame.Offset  = frame16.bp;
261
262                 frame->AddrStack.Mode    = AddrMode1616;
263                 frame->AddrStack.Segment = SELECTOROF(next_switch);
264
265                 frame->AddrReturn.Mode    = AddrMode1616;
266                 frame->AddrReturn.Segment = frame16.cs;
267
268                 next_switch = curr_switch;
269                 if (!f_read_mem(hProcess, (void*)next_switch, &frame32, sizeof(frame32),
270                                 NULL))
271                 {
272                     WARN("Bad stack frame 0x%08lx\n", next_switch);
273                     goto done_err;
274                 }
275                 curr_switch = (DWORD)frame32.frame16;
276                 tmp.Mode    = AddrMode1616;
277                 tmp.Segment = SELECTOROF(curr_switch);
278                 tmp.Offset  = OFFSETOF(curr_switch);
279
280                 if (!f_read_mem(hProcess, (void*)f_xlat_adr(hProcess, hThread, &tmp),
281                                 &ch, sizeof(ch), NULL))
282                     curr_switch = 0xFFFFFFFF;
283                 curr_mode = stm_16bit;
284             }
285         }
286         else
287         {
288             frame->AddrPC = frame->AddrReturn;
289             if (curr_mode == stm_16bit)
290             {
291                 frame->AddrStack.Offset = frame->AddrFrame.Offset + 2 * sizeof(WORD);
292                 /* "pop up" previous BP value */
293                 if (!f_read_mem(hProcess, 
294                                 (void*)f_xlat_adr(hProcess, hThread, &frame->AddrFrame),
295                                 &val, sizeof(WORD), NULL))
296                     goto done_err;
297                 frame->AddrFrame.Offset = val;
298             }
299             else
300             {
301                 frame->AddrStack.Offset = frame->AddrFrame.Offset + 2 * sizeof(DWORD);
302                 /* "pop up" previous EBP value */
303                 if (!f_read_mem(hProcess, (void*)frame->AddrFrame.Offset, 
304                                 &frame->AddrFrame.Offset, sizeof(DWORD), NULL))
305                     goto done_err;
306             }
307         }
308     }
309
310     if (curr_mode == stm_16bit)
311     {
312         int     i;
313
314         p = f_xlat_adr(hProcess, hThread, &frame->AddrFrame);
315         if (!f_read_mem(hProcess, (void*)(p + sizeof(WORD)), &val, sizeof(WORD), NULL))
316             goto done_err;
317         frame->AddrReturn.Offset = val;
318         /* get potential cs if a far call was used */
319         if (!f_read_mem(hProcess, (void*)(p + 2 * sizeof(WORD)), 
320                         &val, sizeof(WORD), NULL))
321             goto done_err;
322         if (frame->AddrFrame.Offset & 1)
323             frame->AddrReturn.Segment = val; /* far call assumed */
324         else
325         {
326             /* not explicitly marked as far call, 
327              * but check whether it could be anyway
328              */
329             if ((val & 7) == 7 && val != frame->AddrReturn.Segment)
330             {
331                 LDT_ENTRY       le;
332
333                 if (GetThreadSelectorEntry(hThread, val, &le) &&
334                     (le.HighWord.Bits.Type & 0x08)) /* code segment */
335                 {
336                     /* it is very uncommon to push a code segment cs as
337                      * a parameter, so this should work in most cases 
338                      */
339                     frame->AddrReturn.Segment = val;
340                 }
341             }
342         }
343         frame->AddrFrame.Offset &= ~1;
344         /* we "pop" parameters as 16 bit entities... of course, this won't
345          * work if the parameter is in fact bigger than 16bit, but
346          * there's no way to know that here
347          */
348         for (i = 0; i < sizeof(frame->Params) / sizeof(frame->Params[0]); i++)
349         {
350             f_read_mem(hProcess, (void*)(p + (2 + i) * sizeof(WORD)), 
351                        &val, sizeof(val), NULL);
352             frame->Params[i] = val;
353         }
354     }
355     else
356     {
357         if (!f_read_mem(hProcess, 
358                         (void*)(frame->AddrFrame.Offset + sizeof(DWORD)),
359                         &frame->AddrReturn.Offset, sizeof(DWORD), NULL))
360             goto done_err;
361         f_read_mem(hProcess, 
362                    (void*)(frame->AddrFrame.Offset + 2 * sizeof(DWORD)), 
363                    frame->Params, sizeof(frame->Params), NULL);
364     }
365
366     frame->Far = FALSE;
367     frame->Virtual = FALSE;
368
369     TRACE("Leave: PC=%s Frame=%s Return=%s Stack=%s Mode=%s cSwitch=%08lx nSwitch=%08lx\n",
370           wine_dbgstr_addr(&frame->AddrPC), 
371           wine_dbgstr_addr(&frame->AddrFrame),
372           wine_dbgstr_addr(&frame->AddrReturn),
373           wine_dbgstr_addr(&frame->AddrStack), 
374           curr_mode == stm_start ? "start" : (curr_mode == stm_16bit ? "16bit" : "32bit"),
375           curr_switch, next_switch);
376
377     return TRUE;
378 done_err:
379     curr_mode = stm_done;
380     return FALSE;
381 }