43737af9b2c8cd476fe530ee077f610d9bb72b22
[platform/upstream/binutils.git] / gdb / record.c
1 /* Process record and replay target for GDB, the GNU debugger.
2
3    Copyright (C) 2008, 2009 Free Software Foundation, Inc.
4
5    This file is part of GDB.
6
7    This program is free software; you can redistribute it and/or modify
8    it under the terms of the GNU General Public License as published by
9    the Free Software Foundation; either version 3 of the License, or
10    (at your option) any later version.
11
12    This program is distributed in the hope that it will be useful,
13    but WITHOUT ANY WARRANTY; without even the implied warranty of
14    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15    GNU General Public License for more details.
16
17    You should have received a copy of the GNU General Public License
18    along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
19
20 #include "defs.h"
21 #include "gdbcmd.h"
22 #include "regcache.h"
23 #include "gdbthread.h"
24 #include "event-top.h"
25 #include "exceptions.h"
26 #include "record.h"
27
28 #include <signal.h>
29
30 #define DEFAULT_RECORD_INSN_MAX_NUM     200000
31
32 #define RECORD_IS_REPLAY \
33      (record_list->next || execution_direction == EXEC_REVERSE)
34
35 /* These are the core struct of record function.
36
37    An record_entry is a record of the value change of a register
38    ("record_reg") or a part of memory ("record_mem").  And each
39    instruction must has a struct record_entry ("record_end") that points out this
40    is the last struct record_entry of this instruction.
41
42    Each struct record_entry is linked to "record_list" by "prev" and "next". */
43
44 struct record_reg_entry
45 {
46   int num;
47   gdb_byte *val;
48 };
49
50 struct record_mem_entry
51 {
52   CORE_ADDR addr;
53   int len;
54   /* Set this flag if target memory for this entry
55      can no longer be accessed.  */
56   int mem_entry_not_accessible;
57   gdb_byte *val;
58 };
59
60 enum record_type
61 {
62   record_end = 0,
63   record_reg,
64   record_mem
65 };
66
67 struct record_entry
68 {
69   struct record_entry *prev;
70   struct record_entry *next;
71   enum record_type type;
72   union
73   {
74     /* reg */
75     struct record_reg_entry reg;
76     /* mem */
77     struct record_mem_entry mem;
78   } u;
79 };
80
81 /* This is the debug switch for process record.  */
82 int record_debug = 0;
83
84 /* These list is for execution log.  */
85 static struct record_entry record_first;
86 static struct record_entry *record_list = &record_first;
87 static struct record_entry *record_arch_list_head = NULL;
88 static struct record_entry *record_arch_list_tail = NULL;
89
90 /* 1 ask user. 0 auto delete the last struct record_entry.  */
91 static int record_stop_at_limit = 1;
92 static int record_insn_max_num = DEFAULT_RECORD_INSN_MAX_NUM;
93 static int record_insn_num = 0;
94
95 /* The target_ops of process record.  */
96 static struct target_ops record_ops;
97
98 /* The beneath function pointers.  */
99 static struct target_ops *record_beneath_to_resume_ops;
100 static void (*record_beneath_to_resume) (struct target_ops *, ptid_t, int,
101                                          enum target_signal);
102 static struct target_ops *record_beneath_to_wait_ops;
103 static ptid_t (*record_beneath_to_wait) (struct target_ops *, ptid_t,
104                                          struct target_waitstatus *,
105                                          int);
106 static struct target_ops *record_beneath_to_store_registers_ops;
107 static void (*record_beneath_to_store_registers) (struct target_ops *,
108                                                   struct regcache *,
109                                                   int regno);
110 static struct target_ops *record_beneath_to_xfer_partial_ops;
111 static LONGEST (*record_beneath_to_xfer_partial) (struct target_ops *ops,
112                                                   enum target_object object,
113                                                   const char *annex,
114                                                   gdb_byte *readbuf,
115                                                   const gdb_byte *writebuf,
116                                                   ULONGEST offset,
117                                                   LONGEST len);
118 static int (*record_beneath_to_insert_breakpoint) (struct gdbarch *,
119                                                    struct bp_target_info *);
120 static int (*record_beneath_to_remove_breakpoint) (struct gdbarch *,
121                                                    struct bp_target_info *);
122
123 static void
124 record_list_release (struct record_entry *rec)
125 {
126   struct record_entry *tmp;
127
128   if (!rec)
129     return;
130
131   while (rec->next)
132     {
133       rec = rec->next;
134     }
135
136   while (rec->prev)
137     {
138       tmp = rec;
139       rec = rec->prev;
140       if (tmp->type == record_reg)
141         xfree (tmp->u.reg.val);
142       else if (tmp->type == record_mem)
143         xfree (tmp->u.mem.val);
144       xfree (tmp);
145     }
146
147   if (rec != &record_first)
148     xfree (rec);
149 }
150
151 static void
152 record_list_release_next (void)
153 {
154   struct record_entry *rec = record_list;
155   struct record_entry *tmp = rec->next;
156   rec->next = NULL;
157   while (tmp)
158     {
159       rec = tmp->next;
160       if (tmp->type == record_reg)
161         record_insn_num--;
162       else if (tmp->type == record_reg)
163         xfree (tmp->u.reg.val);
164       else if (tmp->type == record_mem)
165         xfree (tmp->u.mem.val);
166       xfree (tmp);
167       tmp = rec;
168     }
169 }
170
171 static void
172 record_list_release_first (void)
173 {
174   struct record_entry *tmp = NULL;
175   enum record_type type;
176
177   if (!record_first.next)
178     return;
179
180   while (1)
181     {
182       type = record_first.next->type;
183
184       if (type == record_reg)
185         xfree (record_first.next->u.reg.val);
186       else if (type == record_mem)
187         xfree (record_first.next->u.mem.val);
188       tmp = record_first.next;
189       record_first.next = tmp->next;
190       xfree (tmp);
191
192       if (!record_first.next)
193         {
194           gdb_assert (record_insn_num == 1);
195           break;
196         }
197
198       record_first.next->prev = &record_first;
199
200       if (type == record_end)
201         break;
202     }
203
204   record_insn_num--;
205 }
206
207 /* Add a struct record_entry to record_arch_list.  */
208
209 static void
210 record_arch_list_add (struct record_entry *rec)
211 {
212   if (record_debug > 1)
213     fprintf_unfiltered (gdb_stdlog,
214                         "Process record: record_arch_list_add %s.\n",
215                         host_address_to_string (rec));
216
217   if (record_arch_list_tail)
218     {
219       record_arch_list_tail->next = rec;
220       rec->prev = record_arch_list_tail;
221       record_arch_list_tail = rec;
222     }
223   else
224     {
225       record_arch_list_head = rec;
226       record_arch_list_tail = rec;
227     }
228 }
229
230 /* Record the value of a register NUM to record_arch_list.  */
231
232 int
233 record_arch_list_add_reg (struct regcache *regcache, int num)
234 {
235   struct record_entry *rec;
236
237   if (record_debug > 1)
238     fprintf_unfiltered (gdb_stdlog,
239                         "Process record: add register num = %d to "
240                         "record list.\n",
241                         num);
242
243   rec = (struct record_entry *) xmalloc (sizeof (struct record_entry));
244   rec->u.reg.val = (gdb_byte *) xmalloc (MAX_REGISTER_SIZE);
245   rec->prev = NULL;
246   rec->next = NULL;
247   rec->type = record_reg;
248   rec->u.reg.num = num;
249
250   regcache_raw_read (regcache, num, rec->u.reg.val);
251
252   record_arch_list_add (rec);
253
254   return 0;
255 }
256
257 /* Record the value of a region of memory whose address is ADDR and
258    length is LEN to record_arch_list.  */
259
260 int
261 record_arch_list_add_mem (CORE_ADDR addr, int len)
262 {
263   struct record_entry *rec;
264
265   if (record_debug > 1)
266     fprintf_unfiltered (gdb_stdlog,
267                         "Process record: add mem addr = %s len = %d to "
268                         "record list.\n",
269                         paddress (target_gdbarch, addr), len);
270
271   if (!addr)
272     return 0;
273
274   rec = (struct record_entry *) xmalloc (sizeof (struct record_entry));
275   rec->u.mem.val = (gdb_byte *) xmalloc (len);
276   rec->prev = NULL;
277   rec->next = NULL;
278   rec->type = record_mem;
279   rec->u.mem.addr = addr;
280   rec->u.mem.len = len;
281   rec->u.mem.mem_entry_not_accessible = 0;
282
283   if (target_read_memory (addr, rec->u.mem.val, len))
284     {
285       if (record_debug)
286         fprintf_unfiltered (gdb_stdlog,
287                             "Process record: error reading memory at "
288                             "addr = %s len = %d.\n",
289                             paddress (target_gdbarch, addr), len);
290       xfree (rec->u.mem.val);
291       xfree (rec);
292       return -1;
293     }
294
295   record_arch_list_add (rec);
296
297   return 0;
298 }
299
300 /* Add a record_end type struct record_entry to record_arch_list.  */
301
302 int
303 record_arch_list_add_end (void)
304 {
305   struct record_entry *rec;
306
307   if (record_debug > 1)
308     fprintf_unfiltered (gdb_stdlog,
309                         "Process record: add end to arch list.\n");
310
311   rec = (struct record_entry *) xmalloc (sizeof (struct record_entry));
312   rec->prev = NULL;
313   rec->next = NULL;
314   rec->type = record_end;
315
316   record_arch_list_add (rec);
317
318   return 0;
319 }
320
321 static void
322 record_check_insn_num (int set_terminal)
323 {
324   if (record_insn_max_num)
325     {
326       gdb_assert (record_insn_num <= record_insn_max_num);
327       if (record_insn_num == record_insn_max_num)
328         {
329           /* Ask user what to do.  */
330           if (record_stop_at_limit)
331             {
332               int q;
333               if (set_terminal)
334                 target_terminal_ours ();
335               q = yquery (_("Do you want to auto delete previous execution "
336                             "log entries when record/replay buffer becomes "
337                             "full (record stop-at-limit)?"));
338               if (set_terminal)
339                 target_terminal_inferior ();
340               if (q)
341                 record_stop_at_limit = 0;
342               else
343                 error (_("Process record: inferior program stopped."));
344             }
345         }
346     }
347 }
348
349 /* Before inferior step (when GDB record the running message, inferior
350    only can step), GDB will call this function to record the values to
351    record_list.  This function will call gdbarch_process_record to
352    record the running message of inferior and set them to
353    record_arch_list, and add it to record_list.  */
354
355 static void
356 record_message_cleanups (void *ignore)
357 {
358   record_list_release (record_arch_list_tail);
359 }
360
361 static int
362 record_message (void *args)
363 {
364   int ret;
365   struct regcache *regcache = args;
366   struct cleanup *old_cleanups = make_cleanup (record_message_cleanups, 0);
367
368   record_arch_list_head = NULL;
369   record_arch_list_tail = NULL;
370
371   /* Check record_insn_num.  */
372   record_check_insn_num (1);
373
374   ret = gdbarch_process_record (get_regcache_arch (regcache),
375                                 regcache,
376                                 regcache_read_pc (regcache));
377   if (ret > 0)
378     error (_("Process record: inferior program stopped."));
379   if (ret < 0)
380     error (_("Process record: failed to record execution log."));
381
382   discard_cleanups (old_cleanups);
383
384   record_list->next = record_arch_list_head;
385   record_arch_list_head->prev = record_list;
386   record_list = record_arch_list_tail;
387
388   if (record_insn_num == record_insn_max_num && record_insn_max_num)
389     record_list_release_first ();
390   else
391     record_insn_num++;
392
393   return 1;
394 }
395
396 static int
397 do_record_message (struct regcache *regcache)
398 {
399   return catch_errors (record_message, regcache, NULL, RETURN_MASK_ALL);
400 }
401
402 /* Set to 1 if record_store_registers and record_xfer_partial
403    doesn't need record.  */
404
405 static int record_gdb_operation_disable = 0;
406
407 struct cleanup *
408 record_gdb_operation_disable_set (void)
409 {
410   struct cleanup *old_cleanups = NULL;
411
412   old_cleanups =
413     make_cleanup_restore_integer (&record_gdb_operation_disable);
414   record_gdb_operation_disable = 1;
415
416   return old_cleanups;
417 }
418
419 static void
420 record_open (char *name, int from_tty)
421 {
422   struct target_ops *t;
423
424   if (record_debug)
425     fprintf_unfiltered (gdb_stdlog, "Process record: record_open\n");
426
427   /* check exec */
428   if (!target_has_execution)
429     error (_("Process record: the program is not being run."));
430   if (non_stop)
431     error (_("Process record target can't debug inferior in non-stop mode "
432              "(non-stop)."));
433   if (target_async_permitted)
434     error (_("Process record target can't debug inferior in asynchronous "
435              "mode (target-async)."));
436
437   if (!gdbarch_process_record_p (target_gdbarch))
438     error (_("Process record: the current architecture doesn't support "
439              "record function."));
440
441   /* Check if record target is already running.  */
442   if (current_target.to_stratum == record_stratum)
443     {
444       if (!nquery
445           (_("Process record target already running, do you want to delete "
446              "the old record log?")))
447         return;
448     }
449
450   /*Reset the beneath function pointers.  */
451   record_beneath_to_resume = NULL;
452   record_beneath_to_wait = NULL;
453   record_beneath_to_store_registers = NULL;
454   record_beneath_to_xfer_partial = NULL;
455   record_beneath_to_insert_breakpoint = NULL;
456   record_beneath_to_remove_breakpoint = NULL;
457
458   /* Set the beneath function pointers.  */
459   for (t = current_target.beneath; t != NULL; t = t->beneath)
460     {
461       if (!record_beneath_to_resume)
462         {
463           record_beneath_to_resume = t->to_resume;
464           record_beneath_to_resume_ops = t;
465         }
466       if (!record_beneath_to_wait)
467         {
468           record_beneath_to_wait = t->to_wait;
469           record_beneath_to_wait_ops = t;
470         }
471       if (!record_beneath_to_store_registers)
472         {
473           record_beneath_to_store_registers = t->to_store_registers;
474           record_beneath_to_store_registers_ops = t;
475         }
476       if (!record_beneath_to_xfer_partial)
477         {
478           record_beneath_to_xfer_partial = t->to_xfer_partial;
479           record_beneath_to_xfer_partial_ops = t;
480         }
481       if (!record_beneath_to_insert_breakpoint)
482         record_beneath_to_insert_breakpoint = t->to_insert_breakpoint;
483       if (!record_beneath_to_remove_breakpoint)
484         record_beneath_to_remove_breakpoint = t->to_remove_breakpoint;
485     }
486   if (!record_beneath_to_resume)
487     error (_("Process record can't get to_resume."));
488   if (!record_beneath_to_wait)
489     error (_("Process record can't get to_wait."));
490   if (!record_beneath_to_store_registers)
491     error (_("Process record can't get to_store_registers."));
492   if (!record_beneath_to_xfer_partial)
493     error (_("Process record can't get to_xfer_partial."));
494   if (!record_beneath_to_insert_breakpoint)
495     error (_("Process record can't get to_insert_breakpoint."));
496   if (!record_beneath_to_remove_breakpoint)
497     error (_("Process record can't get to_remove_breakpoint."));
498
499   push_target (&record_ops);
500
501   /* Reset */
502   record_insn_num = 0;
503   record_list = &record_first;
504   record_list->next = NULL;
505 }
506
507 static void
508 record_close (int quitting)
509 {
510   if (record_debug)
511     fprintf_unfiltered (gdb_stdlog, "Process record: record_close\n");
512
513   record_list_release (record_list);
514 }
515
516 static int record_resume_step = 0;
517 static enum target_signal record_resume_siggnal;
518 static int record_resume_error;
519
520 static void
521 record_resume (struct target_ops *ops, ptid_t ptid, int step,
522                enum target_signal siggnal)
523 {
524   record_resume_step = step;
525   record_resume_siggnal = siggnal;
526
527   if (!RECORD_IS_REPLAY)
528     {
529       if (do_record_message (get_current_regcache ()))
530         {
531           record_resume_error = 0;
532         }
533       else
534         {
535           record_resume_error = 1;
536           return;
537         }
538       record_beneath_to_resume (record_beneath_to_resume_ops, ptid, 1,
539                                 siggnal);
540     }
541 }
542
543 static int record_get_sig = 0;
544
545 static void
546 record_sig_handler (int signo)
547 {
548   if (record_debug)
549     fprintf_unfiltered (gdb_stdlog, "Process record: get a signal\n");
550
551   /* It will break the running inferior in replay mode.  */
552   record_resume_step = 1;
553
554   /* It will let record_wait set inferior status to get the signal
555      SIGINT.  */
556   record_get_sig = 1;
557 }
558
559 static void
560 record_wait_cleanups (void *ignore)
561 {
562   if (execution_direction == EXEC_REVERSE)
563     {
564       if (record_list->next)
565         record_list = record_list->next;
566     }
567   else
568     record_list = record_list->prev;
569 }
570
571 /* In replay mode, this function examines the recorded log and
572    determines where to stop.  */
573
574 static ptid_t
575 record_wait (struct target_ops *ops,
576              ptid_t ptid, struct target_waitstatus *status,
577              int options)
578 {
579   struct cleanup *set_cleanups = record_gdb_operation_disable_set ();
580
581   if (record_debug)
582     fprintf_unfiltered (gdb_stdlog,
583                         "Process record: record_wait "
584                         "record_resume_step = %d\n",
585                         record_resume_step);
586
587   if (!RECORD_IS_REPLAY)
588     {
589       if (record_resume_error)
590         {
591           /* If record_resume get error, return directly.  */
592           status->kind = TARGET_WAITKIND_STOPPED;
593           status->value.sig = TARGET_SIGNAL_ABRT;
594           return inferior_ptid;
595         }
596
597       if (record_resume_step)
598         {
599           /* This is a single step.  */
600           return record_beneath_to_wait (record_beneath_to_wait_ops,
601                                          ptid, status, 0);
602         }
603       else
604         {
605           /* This is not a single step.  */
606           ptid_t ret;
607           CORE_ADDR tmp_pc;
608
609           while (1)
610             {
611               ret = record_beneath_to_wait (record_beneath_to_wait_ops,
612                                             ptid, status, 0);
613
614               if (status->kind == TARGET_WAITKIND_STOPPED
615                   && status->value.sig == TARGET_SIGNAL_TRAP)
616                 {
617                   /* Check if there is a breakpoint.  */
618                   registers_changed ();
619                   tmp_pc = regcache_read_pc (get_current_regcache ());
620                   if (breakpoint_inserted_here_p (tmp_pc))
621                     {
622                       /* There is a breakpoint.  */
623                       CORE_ADDR decr_pc_after_break =
624                         gdbarch_decr_pc_after_break
625                         (get_regcache_arch (get_current_regcache ()));
626                       if (decr_pc_after_break)
627                         {
628                           regcache_write_pc (get_thread_regcache (ret),
629                                              tmp_pc + decr_pc_after_break);
630                         }
631                     }
632                   else
633                     {
634                       /* There is not a breakpoint.  */
635                       if (!do_record_message (get_current_regcache ()))
636                         {
637                           break;
638                         }
639                       record_beneath_to_resume (record_beneath_to_resume_ops,
640                                                 ptid, 1,
641                                                 record_resume_siggnal);
642                       continue;
643                     }
644                 }
645
646               /* The inferior is broken by a breakpoint or a signal.  */
647               break;
648             }
649
650           return ret;
651         }
652     }
653   else
654     {
655       struct regcache *regcache = get_current_regcache ();
656       struct gdbarch *gdbarch = get_regcache_arch (regcache);
657       int continue_flag = 1;
658       int first_record_end = 1;
659       struct cleanup *old_cleanups = make_cleanup (record_wait_cleanups, 0);
660       CORE_ADDR tmp_pc;
661
662       status->kind = TARGET_WAITKIND_STOPPED;
663
664       /* Check breakpoint when forward execute.  */
665       if (execution_direction == EXEC_FORWARD)
666         {
667           tmp_pc = regcache_read_pc (regcache);
668           if (breakpoint_inserted_here_p (tmp_pc))
669             {
670               if (record_debug)
671                 fprintf_unfiltered (gdb_stdlog,
672                                     "Process record: break at %s.\n",
673                                     paddress (gdbarch, tmp_pc));
674               if (gdbarch_decr_pc_after_break (gdbarch)
675                   && !record_resume_step)
676                 regcache_write_pc (regcache,
677                                    tmp_pc +
678                                    gdbarch_decr_pc_after_break (gdbarch));
679               goto replay_out;
680             }
681         }
682
683       record_get_sig = 0;
684       signal (SIGINT, record_sig_handler);
685       /* If GDB is in terminal_inferior mode, it will not get the signal.
686          And in GDB replay mode, GDB doesn't need to be in terminal_inferior
687          mode, because inferior will not executed.
688          Then set it to terminal_ours to make GDB get the signal.  */
689       target_terminal_ours ();
690
691       /* In EXEC_FORWARD mode, record_list points to the tail of prev
692          instruction.  */
693       if (execution_direction == EXEC_FORWARD && record_list->next)
694         record_list = record_list->next;
695
696       /* Loop over the record_list, looking for the next place to
697          stop.  */
698       do
699         {
700           /* Check for beginning and end of log.  */
701           if (execution_direction == EXEC_REVERSE
702               && record_list == &record_first)
703             {
704               /* Hit beginning of record log in reverse.  */
705               status->kind = TARGET_WAITKIND_NO_HISTORY;
706               break;
707             }
708           if (execution_direction != EXEC_REVERSE && !record_list->next)
709             {
710               /* Hit end of record log going forward.  */
711               status->kind = TARGET_WAITKIND_NO_HISTORY;
712               break;
713             }
714
715           /* Set ptid, register and memory according to record_list.  */
716           if (record_list->type == record_reg)
717             {
718               /* reg */
719               gdb_byte reg[MAX_REGISTER_SIZE];
720               if (record_debug > 1)
721                 fprintf_unfiltered (gdb_stdlog,
722                                     "Process record: record_reg %s to "
723                                     "inferior num = %d.\n",
724                                     host_address_to_string (record_list),
725                                     record_list->u.reg.num);
726               regcache_cooked_read (regcache, record_list->u.reg.num, reg);
727               regcache_cooked_write (regcache, record_list->u.reg.num,
728                                      record_list->u.reg.val);
729               memcpy (record_list->u.reg.val, reg, MAX_REGISTER_SIZE);
730             }
731           else if (record_list->type == record_mem)
732             {
733               /* mem */
734               /* Nothing to do if the entry is flagged not_accessible.  */
735               if (!record_list->u.mem.mem_entry_not_accessible)
736                 {
737                   gdb_byte *mem = alloca (record_list->u.mem.len);
738                   if (record_debug > 1)
739                     fprintf_unfiltered (gdb_stdlog,
740                                         "Process record: record_mem %s to "
741                                         "inferior addr = %s len = %d.\n",
742                                         host_address_to_string (record_list),
743                                         paddress (gdbarch,
744                                                   record_list->u.mem.addr),
745                                         record_list->u.mem.len);
746
747                   if (target_read_memory (record_list->u.mem.addr, mem,
748                                           record_list->u.mem.len))
749                     {
750                       if (execution_direction != EXEC_REVERSE)
751                         error (_("Process record: error reading memory at "
752                                  "addr = %s len = %d."),
753                                paddress (gdbarch, record_list->u.mem.addr),
754                                record_list->u.mem.len);
755                       else
756                         /* Read failed -- 
757                            flag entry as not_accessible.  */
758                         record_list->u.mem.mem_entry_not_accessible = 1;
759                     }
760                   else
761                     {
762                       if (target_write_memory (record_list->u.mem.addr,
763                                                record_list->u.mem.val,
764                                                record_list->u.mem.len))
765                         {
766                           if (execution_direction != EXEC_REVERSE)
767                             error (_("Process record: error writing memory at "
768                                      "addr = %s len = %d."),
769                                    paddress (gdbarch, record_list->u.mem.addr),
770                                    record_list->u.mem.len);
771                           else
772                             /* Write failed -- 
773                                flag entry as not_accessible.  */
774                             record_list->u.mem.mem_entry_not_accessible = 1;
775                         }
776                       else
777                         {
778                           memcpy (record_list->u.mem.val, mem,
779                                   record_list->u.mem.len);
780                         }
781                     }
782                 }
783             }
784           else
785             {
786               if (record_debug > 1)
787                 fprintf_unfiltered (gdb_stdlog,
788                                     "Process record: record_end %s to "
789                                     "inferior.\n",
790                                     host_address_to_string (record_list));
791
792               if (first_record_end && execution_direction == EXEC_REVERSE)
793                 {
794                   /* When reverse excute, the first record_end is the part of
795                      current instruction.  */
796                   first_record_end = 0;
797                 }
798               else
799                 {
800                   /* In EXEC_REVERSE mode, this is the record_end of prev
801                      instruction.
802                      In EXEC_FORWARD mode, this is the record_end of current
803                      instruction.  */
804                   /* step */
805                   if (record_resume_step)
806                     {
807                       if (record_debug > 1)
808                         fprintf_unfiltered (gdb_stdlog,
809                                             "Process record: step.\n");
810                       continue_flag = 0;
811                     }
812
813                   /* check breakpoint */
814                   tmp_pc = regcache_read_pc (regcache);
815                   if (breakpoint_inserted_here_p (tmp_pc))
816                     {
817                       if (record_debug)
818                         fprintf_unfiltered (gdb_stdlog,
819                                             "Process record: break "
820                                             "at %s.\n",
821                                             paddress (gdbarch, tmp_pc));
822                       if (gdbarch_decr_pc_after_break (gdbarch)
823                           && execution_direction == EXEC_FORWARD
824                           && !record_resume_step)
825                         regcache_write_pc (regcache,
826                                            tmp_pc +
827                                            gdbarch_decr_pc_after_break (gdbarch));
828                       continue_flag = 0;
829                     }
830                 }
831             }
832
833           if (continue_flag)
834             {
835               if (execution_direction == EXEC_REVERSE)
836                 {
837                   if (record_list->prev)
838                     record_list = record_list->prev;
839                 }
840               else
841                 {
842                   if (record_list->next)
843                     record_list = record_list->next;
844                 }
845             }
846         }
847       while (continue_flag);
848
849       signal (SIGINT, handle_sigint);
850
851 replay_out:
852       if (record_get_sig)
853         status->value.sig = TARGET_SIGNAL_INT;
854       else
855         status->value.sig = TARGET_SIGNAL_TRAP;
856
857       discard_cleanups (old_cleanups);
858     }
859
860   do_cleanups (set_cleanups);
861   return inferior_ptid;
862 }
863
864 static void
865 record_disconnect (struct target_ops *target, char *args, int from_tty)
866 {
867   if (record_debug)
868     fprintf_unfiltered (gdb_stdlog, "Process record: record_disconnect\n");
869
870   unpush_target (&record_ops);
871   target_disconnect (args, from_tty);
872 }
873
874 static void
875 record_detach (struct target_ops *ops, char *args, int from_tty)
876 {
877   if (record_debug)
878     fprintf_unfiltered (gdb_stdlog, "Process record: record_detach\n");
879
880   unpush_target (&record_ops);
881   target_detach (args, from_tty);
882 }
883
884 static void
885 record_mourn_inferior (struct target_ops *ops)
886 {
887   if (record_debug)
888     fprintf_unfiltered (gdb_stdlog, "Process record: "
889                                     "record_mourn_inferior\n");
890
891   unpush_target (&record_ops);
892   target_mourn_inferior ();
893 }
894
895 /* Close process record target before killing the inferior process.  */
896
897 static void
898 record_kill (struct target_ops *ops)
899 {
900   if (record_debug)
901     fprintf_unfiltered (gdb_stdlog, "Process record: record_kill\n");
902
903   unpush_target (&record_ops);
904   target_kill ();
905 }
906
907 /* Record registers change (by user or by GDB) to list as an instruction.  */
908
909 static void
910 record_registers_change (struct regcache *regcache, int regnum)
911 {
912   /* Check record_insn_num.  */
913   record_check_insn_num (0);
914
915   record_arch_list_head = NULL;
916   record_arch_list_tail = NULL;
917
918   if (regnum < 0)
919     {
920       int i;
921       for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++)
922         {
923           if (record_arch_list_add_reg (regcache, i))
924             {
925               record_list_release (record_arch_list_tail);
926               error (_("Process record: failed to record execution log."));
927             }
928         }
929     }
930   else
931     {
932       if (record_arch_list_add_reg (regcache, regnum))
933         {
934           record_list_release (record_arch_list_tail);
935           error (_("Process record: failed to record execution log."));
936         }
937     }
938   if (record_arch_list_add_end ())
939     {
940       record_list_release (record_arch_list_tail);
941       error (_("Process record: failed to record execution log."));
942     }
943   record_list->next = record_arch_list_head;
944   record_arch_list_head->prev = record_list;
945   record_list = record_arch_list_tail;
946
947   if (record_insn_num == record_insn_max_num && record_insn_max_num)
948     record_list_release_first ();
949   else
950     record_insn_num++;
951 }
952
953 static void
954 record_store_registers (struct target_ops *ops, struct regcache *regcache,
955                         int regno)
956 {
957   if (!record_gdb_operation_disable)
958     {
959       if (RECORD_IS_REPLAY)
960         {
961           int n;
962
963           /* Let user choose if he wants to write register or not.  */
964           if (regno < 0)
965             n =
966               nquery (_("Because GDB is in replay mode, changing the "
967                         "value of a register will make the execution "
968                         "log unusable from this point onward.  "
969                         "Change all registers?"));
970           else
971             n =
972               nquery (_("Because GDB is in replay mode, changing the value "
973                         "of a register will make the execution log unusable "
974                         "from this point onward.  Change register %s?"),
975                       gdbarch_register_name (get_regcache_arch (regcache),
976                                                regno));
977
978           if (!n)
979             {
980               /* Invalidate the value of regcache that was set in function
981                  "regcache_raw_write".  */
982               if (regno < 0)
983                 {
984                   int i;
985                   for (i = 0;
986                        i < gdbarch_num_regs (get_regcache_arch (regcache));
987                        i++)
988                     regcache_invalidate (regcache, i);
989                 }
990               else
991                 regcache_invalidate (regcache, regno);
992
993               error (_("Process record canceled the operation."));
994             }
995
996           /* Destroy the record from here forward.  */
997           record_list_release_next ();
998         }
999
1000       record_registers_change (regcache, regno);
1001     }
1002   record_beneath_to_store_registers (record_beneath_to_store_registers_ops,
1003                                      regcache, regno);
1004 }
1005
1006 /* Behavior is conditional on RECORD_IS_REPLAY.
1007    In replay mode, we cannot write memory unles we are willing to
1008    invalidate the record/replay log from this point forward.  */
1009
1010 static LONGEST
1011 record_xfer_partial (struct target_ops *ops, enum target_object object,
1012                      const char *annex, gdb_byte *readbuf,
1013                      const gdb_byte *writebuf, ULONGEST offset, LONGEST len)
1014 {
1015   if (!record_gdb_operation_disable
1016       && (object == TARGET_OBJECT_MEMORY
1017           || object == TARGET_OBJECT_RAW_MEMORY) && writebuf)
1018     {
1019       if (RECORD_IS_REPLAY)
1020         {
1021           /* Let user choose if he wants to write memory or not.  */
1022           if (!nquery (_("Because GDB is in replay mode, writing to memory "
1023                          "will make the execution log unusable from this "
1024                          "point onward.  Write memory at address %s?"),
1025                        paddress (target_gdbarch, offset)))
1026             error (_("Process record canceled the operation."));
1027
1028           /* Destroy the record from here forward.  */
1029           record_list_release_next ();
1030         }
1031
1032       /* Check record_insn_num */
1033       record_check_insn_num (0);
1034
1035       /* Record registers change to list as an instruction.  */
1036       record_arch_list_head = NULL;
1037       record_arch_list_tail = NULL;
1038       if (record_arch_list_add_mem (offset, len))
1039         {
1040           record_list_release (record_arch_list_tail);
1041           if (record_debug)
1042             fprintf_unfiltered (gdb_stdlog,
1043                                 _("Process record: failed to record "
1044                                   "execution log."));
1045           return -1;
1046         }
1047       if (record_arch_list_add_end ())
1048         {
1049           record_list_release (record_arch_list_tail);
1050           if (record_debug)
1051             fprintf_unfiltered (gdb_stdlog,
1052                                 _("Process record: failed to record "
1053                                   "execution log."));
1054           return -1;
1055         }
1056       record_list->next = record_arch_list_head;
1057       record_arch_list_head->prev = record_list;
1058       record_list = record_arch_list_tail;
1059
1060       if (record_insn_num == record_insn_max_num && record_insn_max_num)
1061         record_list_release_first ();
1062       else
1063         record_insn_num++;
1064     }
1065
1066   return record_beneath_to_xfer_partial (record_beneath_to_xfer_partial_ops,
1067                                          object, annex, readbuf, writebuf,
1068                                          offset, len);
1069 }
1070
1071 /* Behavior is conditional on RECORD_IS_REPLAY.
1072    We will not actually insert or remove breakpoints when replaying,
1073    nor when recording.  */
1074
1075 static int
1076 record_insert_breakpoint (struct gdbarch *gdbarch,
1077                           struct bp_target_info *bp_tgt)
1078 {
1079   if (!RECORD_IS_REPLAY)
1080     {
1081       struct cleanup *old_cleanups = record_gdb_operation_disable_set ();
1082       int ret = record_beneath_to_insert_breakpoint (gdbarch, bp_tgt);
1083
1084       do_cleanups (old_cleanups);
1085
1086       return ret;
1087     }
1088
1089   return 0;
1090 }
1091
1092 static int
1093 record_remove_breakpoint (struct gdbarch *gdbarch,
1094                           struct bp_target_info *bp_tgt)
1095 {
1096   if (!RECORD_IS_REPLAY)
1097     {
1098       struct cleanup *old_cleanups = record_gdb_operation_disable_set ();
1099       int ret = record_beneath_to_remove_breakpoint (gdbarch, bp_tgt);
1100
1101       do_cleanups (old_cleanups);
1102
1103       return ret;
1104     }
1105
1106   return 0;
1107 }
1108
1109 static int
1110 record_can_execute_reverse (void)
1111 {
1112   return 1;
1113 }
1114
1115 static void
1116 init_record_ops (void)
1117 {
1118   record_ops.to_shortname = "record";
1119   record_ops.to_longname = "Process record and replay target";
1120   record_ops.to_doc =
1121     "Log program while executing and replay execution from log.";
1122   record_ops.to_open = record_open;
1123   record_ops.to_close = record_close;
1124   record_ops.to_resume = record_resume;
1125   record_ops.to_wait = record_wait;
1126   record_ops.to_disconnect = record_disconnect;
1127   record_ops.to_detach = record_detach;
1128   record_ops.to_mourn_inferior = record_mourn_inferior;
1129   record_ops.to_kill = record_kill;
1130   record_ops.to_create_inferior = find_default_create_inferior;
1131   record_ops.to_store_registers = record_store_registers;
1132   record_ops.to_xfer_partial = record_xfer_partial;
1133   record_ops.to_insert_breakpoint = record_insert_breakpoint;
1134   record_ops.to_remove_breakpoint = record_remove_breakpoint;
1135   record_ops.to_can_execute_reverse = record_can_execute_reverse;
1136   record_ops.to_stratum = record_stratum;
1137   record_ops.to_magic = OPS_MAGIC;
1138 }
1139
1140 static void
1141 show_record_debug (struct ui_file *file, int from_tty,
1142                    struct cmd_list_element *c, const char *value)
1143 {
1144   fprintf_filtered (file, _("Debugging of process record target is %s.\n"),
1145                     value);
1146 }
1147
1148 /* Alias for "target record".  */
1149
1150 static void
1151 cmd_record_start (char *args, int from_tty)
1152 {
1153   execute_command ("target record", from_tty);
1154 }
1155
1156 /* Truncate the record log from the present point
1157    of replay until the end.  */
1158
1159 static void
1160 cmd_record_delete (char *args, int from_tty)
1161 {
1162   if (current_target.to_stratum == record_stratum)
1163     {
1164       if (RECORD_IS_REPLAY)
1165         {
1166           if (!from_tty || query (_("Delete the log from this point forward "
1167                                     "and begin to record the running message "
1168                                     "at current PC?")))
1169             record_list_release_next ();
1170         }
1171       else
1172           printf_unfiltered (_("Already at end of record list.\n"));
1173
1174     }
1175   else
1176     printf_unfiltered (_("Process record is not started.\n"));
1177 }
1178
1179 /* Implement the "stoprecord" command.  */
1180
1181 static void
1182 cmd_record_stop (char *args, int from_tty)
1183 {
1184   if (current_target.to_stratum == record_stratum)
1185     {
1186       if (!record_list || !from_tty || query (_("Delete recorded log and "
1187                                                 "stop recording?")))
1188         unpush_target (&record_ops);
1189     }
1190   else
1191     printf_unfiltered (_("Process record is not started.\n"));
1192 }
1193
1194 /* Set upper limit of record log size.  */
1195
1196 static void
1197 set_record_insn_max_num (char *args, int from_tty, struct cmd_list_element *c)
1198 {
1199   if (record_insn_num > record_insn_max_num && record_insn_max_num)
1200     {
1201       printf_unfiltered (_("Record instructions number is bigger than "
1202                            "record instructions max number.  Auto delete "
1203                            "the first ones?\n"));
1204
1205       while (record_insn_num > record_insn_max_num)
1206         record_list_release_first ();
1207     }
1208 }
1209
1210 /* Print the current index into the record log (number of insns recorded
1211    so far).  */
1212
1213 static void
1214 show_record_insn_number (char *ignore, int from_tty)
1215 {
1216   printf_unfiltered (_("Record instruction number is %d.\n"),
1217                      record_insn_num);
1218 }
1219
1220 static struct cmd_list_element *record_cmdlist, *set_record_cmdlist,
1221                                *show_record_cmdlist, *info_record_cmdlist;
1222
1223 static void
1224 set_record_command (char *args, int from_tty)
1225 {
1226   printf_unfiltered (_("\
1227 \"set record\" must be followed by an apporpriate subcommand.\n"));
1228   help_list (set_record_cmdlist, "set record ", all_commands, gdb_stdout);
1229 }
1230
1231 static void
1232 show_record_command (char *args, int from_tty)
1233 {
1234   cmd_show_list (show_record_cmdlist, from_tty, "");
1235 }
1236
1237 static void
1238 info_record_command (char *args, int from_tty)
1239 {
1240   cmd_show_list (info_record_cmdlist, from_tty, "");
1241 }
1242
1243 void
1244 _initialize_record (void)
1245 {
1246   /* Init record_first.  */
1247   record_first.prev = NULL;
1248   record_first.next = NULL;
1249   record_first.type = record_end;
1250
1251   init_record_ops ();
1252   add_target (&record_ops);
1253
1254   add_setshow_zinteger_cmd ("record", no_class, &record_debug,
1255                             _("Set debugging of record/replay feature."),
1256                             _("Show debugging of record/replay feature."),
1257                             _("When enabled, debugging output for "
1258                               "record/replay feature is displayed."),
1259                             NULL, show_record_debug, &setdebuglist,
1260                             &showdebuglist);
1261
1262   add_prefix_cmd ("record", class_obscure, cmd_record_start,
1263                   _("Abbreviated form of \"target record\" command."),
1264                   &record_cmdlist, "record ", 0, &cmdlist);
1265   add_com_alias ("rec", "record", class_obscure, 1);
1266   add_prefix_cmd ("record", class_support, set_record_command,
1267                   _("Set record options"), &set_record_cmdlist,
1268                   "set record ", 0, &setlist);
1269   add_alias_cmd ("rec", "record", class_obscure, 1, &setlist);
1270   add_prefix_cmd ("record", class_support, show_record_command,
1271                   _("Show record options"), &show_record_cmdlist,
1272                   "show record ", 0, &showlist);
1273   add_alias_cmd ("rec", "record", class_obscure, 1, &showlist);
1274   add_prefix_cmd ("record", class_support, info_record_command,
1275                   _("Info record options"), &info_record_cmdlist,
1276                   "info record ", 0, &infolist);
1277   add_alias_cmd ("rec", "record", class_obscure, 1, &infolist);
1278
1279
1280   add_cmd ("delete", class_obscure, cmd_record_delete,
1281            _("Delete the rest of execution log and start recording it anew."),
1282            &record_cmdlist);
1283   add_alias_cmd ("d", "delete", class_obscure, 1, &record_cmdlist);
1284   add_alias_cmd ("del", "delete", class_obscure, 1, &record_cmdlist);
1285
1286   add_cmd ("stop", class_obscure, cmd_record_stop,
1287            _("Stop the record/replay target."),
1288            &record_cmdlist);
1289   add_alias_cmd ("s", "stop", class_obscure, 1, &record_cmdlist);
1290
1291   /* Record instructions number limit command.  */
1292   add_setshow_boolean_cmd ("stop-at-limit", no_class,
1293                             &record_stop_at_limit, _("\
1294 Set whether record/replay stops when record/replay buffer becomes full."), _("\
1295 Show whether record/replay stops when record/replay buffer becomes full."), _("\
1296 Default is ON.\n\
1297 When ON, if the record/replay buffer becomes full, ask user what to do.\n\
1298 When OFF, if the record/replay buffer becomes full,\n\
1299 delete the oldest recorded instruction to make room for each new one."),
1300                             NULL, NULL,
1301                             &set_record_cmdlist, &show_record_cmdlist);
1302   add_setshow_zinteger_cmd ("insn-number-max", no_class,
1303                             &record_insn_max_num,
1304                             _("Set record/replay buffer limit."),
1305                             _("Show record/replay buffer limit."), _("\
1306 Set the maximum number of instructions to be stored in the\n\
1307 record/replay buffer.  Zero means unlimited.  Default is 200000."),
1308                             set_record_insn_max_num,
1309                             NULL, &set_record_cmdlist, &show_record_cmdlist);
1310   add_cmd ("insn-number", class_obscure, show_record_insn_number,
1311             _("Show the current number of instructions in the "
1312               "record/replay buffer."), &info_record_cmdlist);
1313 }