1 /* Core dump and executable file functions above target vector, for GDB.
2 
3    Copyright 1986, 1987, 1989, 1991, 1992, 1993, 1994, 1996, 1997,
4    1998, 1999, 2000, 2001, 2003 Free Software Foundation, Inc.
5 
6    This file is part of GDB.
7 
8    This program is free software; you can redistribute it and/or modify
9    it under the terms of the GNU General Public License as published by
10    the Free Software Foundation; either version 2 of the License, or
11    (at your option) any later version.
12 
13    This program is distributed in the hope that it will be useful,
14    but WITHOUT ANY WARRANTY; without even the implied warranty of
15    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16    GNU General Public License for more details.
17 
18    You should have received a copy of the GNU General Public License
19    along with this program; if not, write to the Free Software
20    Foundation, Inc., 59 Temple Place - Suite 330,
21    Boston, MA 02111-1307, USA.  */
22 
23 #include "defs.h"
24 #include "gdb_string.h"
25 #include <errno.h>
26 #include <signal.h>
27 #include <fcntl.h>
28 #include "inferior.h"
29 #include "symtab.h"
30 #include "command.h"
31 #include "gdbcmd.h"
32 #include "bfd.h"
33 #include "target.h"
34 #include "gdbcore.h"
35 #include "dis-asm.h"
36 #include "gdb_stat.h"
37 #include "completer.h"
38 #include "exceptions.h"
39 
40 /* Local function declarations.  */
41 
42 extern void _initialize_core (void);
43 static void call_extra_exec_file_hooks (char *filename);
44 
45 /* You can have any number of hooks for `exec_file_command' command to
46    call.  If there's only one hook, it is set in exec_file_display
47    hook.  If there are two or more hooks, they are set in
48    exec_file_extra_hooks[], and deprecated_exec_file_display_hook is
49    set to a function that calls all of them.  This extra complexity is
50    needed to preserve compatibility with old code that assumed that
51    only one hook could be set, and which called
52    deprecated_exec_file_display_hook directly.  */
53 
54 typedef void (*hook_type) (char *);
55 
56 hook_type deprecated_exec_file_display_hook;	/* the original hook */
57 static hook_type *exec_file_extra_hooks;	/* array of additional hooks */
58 static int exec_file_hook_count = 0;	/* size of array */
59 
60 /* Binary file diddling handle for the core file.  */
61 
62 bfd *core_bfd = NULL;
63 
64 
65 /* Backward compatability with old way of specifying core files.  */
66 
67 void
core_file_command(char * filename,int from_tty)68 core_file_command (char *filename, int from_tty)
69 {
70   struct target_ops *t;
71 
72   dont_repeat ();		/* Either way, seems bogus. */
73 
74   t = find_core_target ();
75   if (t == NULL)
76     error (_("GDB can't read core files on this machine."));
77 
78   if (!filename)
79     (t->to_detach) (filename, from_tty);
80   else
81     (t->to_open) (filename, from_tty);
82 }
83 
84 
85 /* If there are two or more functions that wish to hook into
86    exec_file_command, this function will call all of the hook
87    functions.  */
88 
89 static void
call_extra_exec_file_hooks(char * filename)90 call_extra_exec_file_hooks (char *filename)
91 {
92   int i;
93 
94   for (i = 0; i < exec_file_hook_count; i++)
95     (*exec_file_extra_hooks[i]) (filename);
96 }
97 
98 /* Call this to specify the hook for exec_file_command to call back.
99    This is called from the x-window display code.  */
100 
101 void
specify_exec_file_hook(void (* hook)(char *))102 specify_exec_file_hook (void (*hook) (char *))
103 {
104   hook_type *new_array;
105 
106   if (deprecated_exec_file_display_hook != NULL)
107     {
108       /* There's already a hook installed.  Arrange to have both it
109        * and the subsequent hooks called. */
110       if (exec_file_hook_count == 0)
111 	{
112 	  /* If this is the first extra hook, initialize the hook array.  */
113 	  exec_file_extra_hooks = (hook_type *) xmalloc (sizeof (hook_type));
114 	  exec_file_extra_hooks[0] = deprecated_exec_file_display_hook;
115 	  deprecated_exec_file_display_hook = call_extra_exec_file_hooks;
116 	  exec_file_hook_count = 1;
117 	}
118 
119       /* Grow the hook array by one and add the new hook to the end.
120          Yes, it's inefficient to grow it by one each time but since
121          this is hardly ever called it's not a big deal.  */
122       exec_file_hook_count++;
123       new_array =
124 	(hook_type *) xrealloc (exec_file_extra_hooks,
125 				exec_file_hook_count * sizeof (hook_type));
126       exec_file_extra_hooks = new_array;
127       exec_file_extra_hooks[exec_file_hook_count - 1] = hook;
128     }
129   else
130     deprecated_exec_file_display_hook = hook;
131 }
132 
133 /* The exec file must be closed before running an inferior.
134    If it is needed again after the inferior dies, it must
135    be reopened.  */
136 
137 void
close_exec_file(void)138 close_exec_file (void)
139 {
140 #if 0				/* FIXME */
141   if (exec_bfd)
142     bfd_tempclose (exec_bfd);
143 #endif
144 }
145 
146 void
reopen_exec_file(void)147 reopen_exec_file (void)
148 {
149 #if 0				/* FIXME */
150   if (exec_bfd)
151     bfd_reopen (exec_bfd);
152 #else
153   char *filename;
154   int res;
155   struct stat st;
156   long mtime;
157 
158   /* Don't do anything if the current target isn't exec. */
159   if (exec_bfd == NULL || strcmp (target_shortname, "exec") != 0)
160     return;
161 
162   /* If the timestamp of the exec file has changed, reopen it. */
163   filename = xstrdup (bfd_get_filename (exec_bfd));
164   make_cleanup (xfree, filename);
165   mtime = bfd_get_mtime (exec_bfd);
166   res = stat (filename, &st);
167 
168   if (mtime && mtime != st.st_mtime)
169     {
170       exec_open (filename, 0);
171     }
172 #endif
173 }
174 
175 /* If we have both a core file and an exec file,
176    print a warning if they don't go together.  */
177 
178 void
validate_files(void)179 validate_files (void)
180 {
181   if (exec_bfd && core_bfd)
182     {
183       if (!core_file_matches_executable_p (core_bfd, exec_bfd))
184 	warning (_("core file may not match specified executable file."));
185       else if (bfd_get_mtime (exec_bfd) > bfd_get_mtime (core_bfd))
186 	warning (_("exec file is newer than core file."));
187     }
188 }
189 
190 /* Return the name of the executable file as a string.
191    ERR nonzero means get error if there is none specified;
192    otherwise return 0 in that case.  */
193 
194 char *
get_exec_file(int err)195 get_exec_file (int err)
196 {
197   if (exec_bfd)
198     return bfd_get_filename (exec_bfd);
199   if (!err)
200     return NULL;
201 
202   error (_("No executable file specified.\n\
203 Use the \"file\" or \"exec-file\" command."));
204   return NULL;
205 }
206 
207 
208 /* Report a memory error with error().  */
209 
210 void
memory_error(int status,CORE_ADDR memaddr)211 memory_error (int status, CORE_ADDR memaddr)
212 {
213   struct ui_file *tmp_stream = mem_fileopen ();
214   make_cleanup_ui_file_delete (tmp_stream);
215 
216   if (status == EIO)
217     {
218       /* Actually, address between memaddr and memaddr + len
219          was out of bounds. */
220       fprintf_unfiltered (tmp_stream, "Cannot access memory at address ");
221       deprecated_print_address_numeric (memaddr, 1, tmp_stream);
222     }
223   else
224     {
225       fprintf_filtered (tmp_stream, "Error accessing memory address ");
226       deprecated_print_address_numeric (memaddr, 1, tmp_stream);
227       fprintf_filtered (tmp_stream, ": %s.",
228 		       safe_strerror (status));
229     }
230 
231   error_stream (tmp_stream);
232 }
233 
234 /* Same as target_read_memory, but report an error if can't read.  */
235 void
read_memory(CORE_ADDR memaddr,gdb_byte * myaddr,int len)236 read_memory (CORE_ADDR memaddr, gdb_byte *myaddr, int len)
237 {
238   int status;
239   status = target_read_memory (memaddr, myaddr, len);
240   if (status != 0)
241     memory_error (status, memaddr);
242 }
243 
244 /* Argument / return result struct for use with
245    do_captured_read_memory_integer().  MEMADDR and LEN are filled in
246    by gdb_read_memory_integer().  RESULT is the contents that were
247    successfully read from MEMADDR of length LEN.  */
248 
249 struct captured_read_memory_integer_arguments
250 {
251   CORE_ADDR memaddr;
252   int len;
253   LONGEST result;
254 };
255 
256 /* Helper function for gdb_read_memory_integer().  DATA must be a
257    pointer to a captured_read_memory_integer_arguments struct.
258    Return 1 if successful.  Note that the catch_errors() interface
259    will return 0 if an error occurred while reading memory.  This
260    choice of return code is so that we can distinguish between
261    success and failure.  */
262 
263 static int
do_captured_read_memory_integer(void * data)264 do_captured_read_memory_integer (void *data)
265 {
266   struct captured_read_memory_integer_arguments *args = (struct captured_read_memory_integer_arguments*) data;
267   CORE_ADDR memaddr = args->memaddr;
268   int len = args->len;
269 
270   args->result = read_memory_integer (memaddr, len);
271 
272   return 1;
273 }
274 
275 /* Read memory at MEMADDR of length LEN and put the contents in
276    RETURN_VALUE.  Return 0 if MEMADDR couldn't be read and non-zero
277    if successful.  */
278 
279 int
safe_read_memory_integer(CORE_ADDR memaddr,int len,LONGEST * return_value)280 safe_read_memory_integer (CORE_ADDR memaddr, int len, LONGEST *return_value)
281 {
282   int status;
283   struct captured_read_memory_integer_arguments args;
284   args.memaddr = memaddr;
285   args.len = len;
286 
287   status = catch_errors (do_captured_read_memory_integer, &args,
288                         "", RETURN_MASK_ALL);
289   if (status)
290     *return_value = args.result;
291 
292   return status;
293 }
294 
295 LONGEST
read_memory_integer(CORE_ADDR memaddr,int len)296 read_memory_integer (CORE_ADDR memaddr, int len)
297 {
298   char buf[sizeof (LONGEST)];
299 
300   read_memory (memaddr, buf, len);
301   return extract_signed_integer (buf, len);
302 }
303 
304 ULONGEST
read_memory_unsigned_integer(CORE_ADDR memaddr,int len)305 read_memory_unsigned_integer (CORE_ADDR memaddr, int len)
306 {
307   char buf[sizeof (ULONGEST)];
308 
309   read_memory (memaddr, buf, len);
310   return extract_unsigned_integer (buf, len);
311 }
312 
313 void
read_memory_string(CORE_ADDR memaddr,char * buffer,int max_len)314 read_memory_string (CORE_ADDR memaddr, char *buffer, int max_len)
315 {
316   char *cp;
317   int i;
318   int cnt;
319 
320   cp = buffer;
321   while (1)
322     {
323       if (cp - buffer >= max_len)
324 	{
325 	  buffer[max_len - 1] = '\0';
326 	  break;
327 	}
328       cnt = max_len - (cp - buffer);
329       if (cnt > 8)
330 	cnt = 8;
331       read_memory (memaddr + (int) (cp - buffer), cp, cnt);
332       for (i = 0; i < cnt && *cp; i++, cp++)
333 	;			/* null body */
334 
335       if (i < cnt && !*cp)
336 	break;
337     }
338 }
339 
340 CORE_ADDR
read_memory_typed_address(CORE_ADDR addr,struct type * type)341 read_memory_typed_address (CORE_ADDR addr, struct type *type)
342 {
343   char *buf = alloca (TYPE_LENGTH (type));
344   read_memory (addr, buf, TYPE_LENGTH (type));
345   return extract_typed_address (buf, type);
346 }
347 
348 /* Same as target_write_memory, but report an error if can't write.  */
349 void
write_memory(CORE_ADDR memaddr,const bfd_byte * myaddr,int len)350 write_memory (CORE_ADDR memaddr, const bfd_byte *myaddr, int len)
351 {
352   int status;
353   bfd_byte *bytes = alloca (len);
354 
355   memcpy (bytes, myaddr, len);
356   status = target_write_memory (memaddr, bytes, len);
357   if (status != 0)
358     memory_error (status, memaddr);
359 }
360 
361 /* Store VALUE at ADDR in the inferior as a LEN-byte unsigned integer.  */
362 void
write_memory_unsigned_integer(CORE_ADDR addr,int len,ULONGEST value)363 write_memory_unsigned_integer (CORE_ADDR addr, int len, ULONGEST value)
364 {
365   char *buf = alloca (len);
366   store_unsigned_integer (buf, len, value);
367   write_memory (addr, buf, len);
368 }
369 
370 /* Store VALUE at ADDR in the inferior as a LEN-byte signed integer.  */
371 void
write_memory_signed_integer(CORE_ADDR addr,int len,LONGEST value)372 write_memory_signed_integer (CORE_ADDR addr, int len, LONGEST value)
373 {
374   char *buf = alloca (len);
375   store_signed_integer (buf, len, value);
376   write_memory (addr, buf, len);
377 }
378 
379 
380 
381 #if 0
382 /* Enable after 4.12.  It is not tested.  */
383 
384 /* Search code.  Targets can just make this their search function, or
385    if the protocol has a less general search function, they can call this
386    in the cases it can't handle.  */
387 void
388 generic_search (int len, char *data, char *mask, CORE_ADDR startaddr,
389 		int increment, CORE_ADDR lorange, CORE_ADDR hirange,
390 		CORE_ADDR *addr_found, char *data_found)
391 {
392   int i;
393   CORE_ADDR curaddr = startaddr;
394 
395   while (curaddr >= lorange && curaddr < hirange)
396     {
397       read_memory (curaddr, data_found, len);
398       for (i = 0; i < len; ++i)
399 	if ((data_found[i] & mask[i]) != data[i])
400 	  goto try_again;
401       /* It matches.  */
402       *addr_found = curaddr;
403       return;
404 
405     try_again:
406       curaddr += increment;
407     }
408   *addr_found = (CORE_ADDR) 0;
409   return;
410 }
411 #endif /* 0 */
412 
413 /* The current default bfd target.  Points to storage allocated for
414    gnutarget_string.  */
415 char *gnutarget;
416 
417 /* Same thing, except it is "auto" not NULL for the default case.  */
418 static char *gnutarget_string;
419 static void
show_gnutarget_string(struct ui_file * file,int from_tty,struct cmd_list_element * c,const char * value)420 show_gnutarget_string (struct ui_file *file, int from_tty,
421 		       struct cmd_list_element *c, const char *value)
422 {
423   fprintf_filtered (file, _("The current BFD target is \"%s\".\n"), value);
424 }
425 
426 static void set_gnutarget_command (char *, int, struct cmd_list_element *);
427 
428 static void
set_gnutarget_command(char * ignore,int from_tty,struct cmd_list_element * c)429 set_gnutarget_command (char *ignore, int from_tty, struct cmd_list_element *c)
430 {
431   if (strcmp (gnutarget_string, "auto") == 0)
432     gnutarget = NULL;
433   else
434     gnutarget = gnutarget_string;
435 }
436 
437 /* Set the gnutarget.  */
438 void
set_gnutarget(char * newtarget)439 set_gnutarget (char *newtarget)
440 {
441   if (gnutarget_string != NULL)
442     xfree (gnutarget_string);
443   gnutarget_string = savestring (newtarget, strlen (newtarget));
444   set_gnutarget_command (NULL, 0, NULL);
445 }
446 
447 void
_initialize_core(void)448 _initialize_core (void)
449 {
450   struct cmd_list_element *c;
451   c = add_cmd ("core-file", class_files, core_file_command, _("\
452 Use FILE as core dump for examining memory and registers.\n\
453 No arg means have no core file.  This command has been superseded by the\n\
454 `target core' and `detach' commands."), &cmdlist);
455   set_cmd_completer (c, filename_completer);
456 
457 
458   add_setshow_string_noescape_cmd ("gnutarget", class_files,
459 				   &gnutarget_string, _("(\
460 Set the current BFD target."), _("\
461 Show the current BFD target."), _("\
462 Use `set gnutarget auto' to specify automatic detection."),
463 				   set_gnutarget_command,
464 				   show_gnutarget_string,
465 				   &setlist, &showlist);
466 
467   if (getenv ("GNUTARGET"))
468     set_gnutarget (getenv ("GNUTARGET"));
469   else
470     set_gnutarget ("auto");
471 }
472