* cris-tdep.c (cris_push_dummy_call): Support arguments passed by
[deliverable/binutils-gdb.git] / gdb / frame.c
CommitLineData
4f460812 1/* Cache and manage frames for GDB, the GNU debugger.
96cb11df 2
6aba47ca
DJ
3 Copyright (C) 1986, 1987, 1989, 1991, 1994, 1995, 1996, 1998, 2000, 2001,
4 2002, 2003, 2004, 2007 Free Software Foundation, Inc.
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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
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
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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
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
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20
21#include "defs.h"
22#include "frame.h"
23#include "target.h"
24#include "value.h"
39f77062 25#include "inferior.h" /* for inferior_ptid */
4e052eda 26#include "regcache.h"
4f460812 27#include "gdb_assert.h"
e36180d7 28#include "gdb_string.h"
eb8bc282 29#include "user-regs.h"
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30#include "gdb_obstack.h"
31#include "dummy-frame.h"
a94dd1fd 32#include "sentinel-frame.h"
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33#include "gdbcore.h"
34#include "annotate.h"
6e7f8b9c 35#include "language.h"
494cca16 36#include "frame-unwind.h"
da62e633 37#include "frame-base.h"
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38#include "command.h"
39#include "gdbcmd.h"
f4c5303c 40#include "observer.h"
c8cd9f6c 41#include "objfiles.h"
60250e8b 42#include "exceptions.h"
eb4f72c5 43
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44static struct frame_info *get_prev_frame_1 (struct frame_info *this_frame);
45
bd013d54
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46/* We keep a cache of stack frames, each of which is a "struct
47 frame_info". The innermost one gets allocated (in
48 wait_for_inferior) each time the inferior stops; current_frame
49 points to it. Additional frames get allocated (in get_prev_frame)
50 as needed, and are chained through the next and prev fields. Any
51 time that the frame cache becomes invalid (most notably when we
52 execute something, but also if we change how we interpret the
53 frames (e.g. "set heuristic-fence-post" in mips-tdep.c, or anything
54 which reads new symbols)), we should call reinit_frame_cache. */
55
56struct frame_info
57{
58 /* Level of this frame. The inner-most (youngest) frame is at level
59 0. As you move towards the outer-most (oldest) frame, the level
60 increases. This is a cached value. It could just as easily be
61 computed by counting back from the selected frame to the inner
62 most frame. */
bbde78fa 63 /* NOTE: cagney/2002-04-05: Perhaps a level of ``-1'' should be
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64 reserved to indicate a bogus frame - one that has been created
65 just to keep GDB happy (GDB always needs a frame). For the
66 moment leave this as speculation. */
67 int level;
68
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69 /* The frame's low-level unwinder and corresponding cache. The
70 low-level unwinder is responsible for unwinding register values
71 for the previous frame. The low-level unwind methods are
bbde78fa 72 selected based on the presence, or otherwise, of register unwind
bd013d54
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73 information such as CFI. */
74 void *prologue_cache;
75 const struct frame_unwind *unwind;
76
77 /* Cached copy of the previous frame's resume address. */
78 struct {
79 int p;
80 CORE_ADDR value;
81 } prev_pc;
82
83 /* Cached copy of the previous frame's function address. */
84 struct
85 {
86 CORE_ADDR addr;
87 int p;
88 } prev_func;
89
90 /* This frame's ID. */
91 struct
92 {
93 int p;
94 struct frame_id value;
95 } this_id;
96
97 /* The frame's high-level base methods, and corresponding cache.
98 The high level base methods are selected based on the frame's
99 debug info. */
100 const struct frame_base *base;
101 void *base_cache;
102
103 /* Pointers to the next (down, inner, younger) and previous (up,
104 outer, older) frame_info's in the frame cache. */
105 struct frame_info *next; /* down, inner, younger */
106 int prev_p;
107 struct frame_info *prev; /* up, outer, older */
55feb689
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108
109 /* The reason why we could not set PREV, or UNWIND_NO_REASON if we
110 could. Only valid when PREV_P is set. */
111 enum unwind_stop_reason stop_reason;
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112};
113
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114/* Flag to control debugging. */
115
116static int frame_debug;
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117static void
118show_frame_debug (struct ui_file *file, int from_tty,
119 struct cmd_list_element *c, const char *value)
120{
121 fprintf_filtered (file, _("Frame debugging is %s.\n"), value);
122}
ac2bd0a9 123
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124/* Flag to indicate whether backtraces should stop at main et.al. */
125
126static int backtrace_past_main;
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127static void
128show_backtrace_past_main (struct ui_file *file, int from_tty,
129 struct cmd_list_element *c, const char *value)
130{
131 fprintf_filtered (file, _("\
132Whether backtraces should continue past \"main\" is %s.\n"),
133 value);
134}
135
2315ffec 136static int backtrace_past_entry;
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AC
137static void
138show_backtrace_past_entry (struct ui_file *file, int from_tty,
139 struct cmd_list_element *c, const char *value)
140{
141 fprintf_filtered (file, _("\
142Whether backtraces should continue past the entry point of a program is %s.\n"),
143 value);
144}
145
4a5e53e8 146static int backtrace_limit = INT_MAX;
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AC
147static void
148show_backtrace_limit (struct ui_file *file, int from_tty,
149 struct cmd_list_element *c, const char *value)
150{
151 fprintf_filtered (file, _("\
152An upper bound on the number of backtrace levels is %s.\n"),
153 value);
154}
155
eb4f72c5 156
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157static void
158fprint_field (struct ui_file *file, const char *name, int p, CORE_ADDR addr)
159{
160 if (p)
161 fprintf_unfiltered (file, "%s=0x%s", name, paddr_nz (addr));
162 else
163 fprintf_unfiltered (file, "!%s", name);
164}
d65fe839 165
00905d52 166void
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167fprint_frame_id (struct ui_file *file, struct frame_id id)
168{
ca73dd9d
AC
169 fprintf_unfiltered (file, "{");
170 fprint_field (file, "stack", id.stack_addr_p, id.stack_addr);
171 fprintf_unfiltered (file, ",");
172 fprint_field (file, "code", id.code_addr_p, id.code_addr);
173 fprintf_unfiltered (file, ",");
174 fprint_field (file, "special", id.special_addr_p, id.special_addr);
175 fprintf_unfiltered (file, "}");
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176}
177
178static void
179fprint_frame_type (struct ui_file *file, enum frame_type type)
180{
181 switch (type)
182 {
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AC
183 case NORMAL_FRAME:
184 fprintf_unfiltered (file, "NORMAL_FRAME");
185 return;
186 case DUMMY_FRAME:
187 fprintf_unfiltered (file, "DUMMY_FRAME");
188 return;
189 case SIGTRAMP_FRAME:
190 fprintf_unfiltered (file, "SIGTRAMP_FRAME");
191 return;
192 default:
193 fprintf_unfiltered (file, "<unknown type>");
194 return;
195 };
196}
197
198static void
199fprint_frame (struct ui_file *file, struct frame_info *fi)
200{
201 if (fi == NULL)
202 {
203 fprintf_unfiltered (file, "<NULL frame>");
204 return;
205 }
206 fprintf_unfiltered (file, "{");
207 fprintf_unfiltered (file, "level=%d", fi->level);
208 fprintf_unfiltered (file, ",");
209 fprintf_unfiltered (file, "type=");
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AC
210 if (fi->unwind != NULL)
211 fprint_frame_type (file, fi->unwind->type);
212 else
213 fprintf_unfiltered (file, "<unknown>");
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214 fprintf_unfiltered (file, ",");
215 fprintf_unfiltered (file, "unwind=");
216 if (fi->unwind != NULL)
217 gdb_print_host_address (fi->unwind, file);
218 else
219 fprintf_unfiltered (file, "<unknown>");
220 fprintf_unfiltered (file, ",");
221 fprintf_unfiltered (file, "pc=");
222 if (fi->next != NULL && fi->next->prev_pc.p)
223 fprintf_unfiltered (file, "0x%s", paddr_nz (fi->next->prev_pc.value));
224 else
225 fprintf_unfiltered (file, "<unknown>");
226 fprintf_unfiltered (file, ",");
227 fprintf_unfiltered (file, "id=");
228 if (fi->this_id.p)
229 fprint_frame_id (file, fi->this_id.value);
230 else
231 fprintf_unfiltered (file, "<unknown>");
232 fprintf_unfiltered (file, ",");
233 fprintf_unfiltered (file, "func=");
234 if (fi->next != NULL && fi->next->prev_func.p)
235 fprintf_unfiltered (file, "0x%s", paddr_nz (fi->next->prev_func.addr));
236 else
237 fprintf_unfiltered (file, "<unknown>");
238 fprintf_unfiltered (file, "}");
239}
240
7a424e99 241/* Return a frame uniq ID that can be used to, later, re-find the
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242 frame. */
243
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AC
244struct frame_id
245get_frame_id (struct frame_info *fi)
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AC
246{
247 if (fi == NULL)
248 {
7a424e99 249 return null_frame_id;
101dcfbe 250 }
d0a55772 251 if (!fi->this_id.p)
101dcfbe 252 {
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253 if (frame_debug)
254 fprintf_unfiltered (gdb_stdlog, "{ get_frame_id (fi=%d) ",
255 fi->level);
c50901fd
AC
256 /* Find the unwinder. */
257 if (fi->unwind == NULL)
c1bf6f65
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258 fi->unwind = frame_unwind_find_by_frame (fi->next,
259 &fi->prologue_cache);
06c77151 260 /* Find THIS frame's ID. */
d0a55772
AC
261 fi->unwind->this_id (fi->next, &fi->prologue_cache, &fi->this_id.value);
262 fi->this_id.p = 1;
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AC
263 if (frame_debug)
264 {
265 fprintf_unfiltered (gdb_stdlog, "-> ");
266 fprint_frame_id (gdb_stdlog, fi->this_id.value);
267 fprintf_unfiltered (gdb_stdlog, " }\n");
268 }
101dcfbe 269 }
18adea3f 270 return fi->this_id.value;
101dcfbe
AC
271}
272
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AC
273struct frame_id
274frame_unwind_id (struct frame_info *next_frame)
275{
276 /* Use prev_frame, and not get_prev_frame. The latter will truncate
277 the frame chain, leading to this function unintentionally
278 returning a null_frame_id (e.g., when a caller requests the frame
279 ID of "main()"s caller. */
280 return get_frame_id (get_prev_frame_1 (next_frame));
281}
282
7a424e99
AC
283const struct frame_id null_frame_id; /* All zeros. */
284
285struct frame_id
48c66725
JJ
286frame_id_build_special (CORE_ADDR stack_addr, CORE_ADDR code_addr,
287 CORE_ADDR special_addr)
7a424e99 288{
12b0b6de 289 struct frame_id id = null_frame_id;
d0a55772 290 id.stack_addr = stack_addr;
12b0b6de 291 id.stack_addr_p = 1;
d0a55772 292 id.code_addr = code_addr;
12b0b6de 293 id.code_addr_p = 1;
48c66725 294 id.special_addr = special_addr;
12b0b6de 295 id.special_addr_p = 1;
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AC
296 return id;
297}
298
48c66725
JJ
299struct frame_id
300frame_id_build (CORE_ADDR stack_addr, CORE_ADDR code_addr)
301{
12b0b6de
UW
302 struct frame_id id = null_frame_id;
303 id.stack_addr = stack_addr;
304 id.stack_addr_p = 1;
305 id.code_addr = code_addr;
306 id.code_addr_p = 1;
307 return id;
308}
309
310struct frame_id
311frame_id_build_wild (CORE_ADDR stack_addr)
312{
313 struct frame_id id = null_frame_id;
314 id.stack_addr = stack_addr;
315 id.stack_addr_p = 1;
316 return id;
48c66725
JJ
317}
318
7a424e99
AC
319int
320frame_id_p (struct frame_id l)
321{
d0a55772 322 int p;
12b0b6de
UW
323 /* The frame is valid iff it has a valid stack address. */
324 p = l.stack_addr_p;
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AC
325 if (frame_debug)
326 {
327 fprintf_unfiltered (gdb_stdlog, "{ frame_id_p (l=");
328 fprint_frame_id (gdb_stdlog, l);
329 fprintf_unfiltered (gdb_stdlog, ") -> %d }\n", p);
330 }
d0a55772 331 return p;
7a424e99
AC
332}
333
334int
335frame_id_eq (struct frame_id l, struct frame_id r)
336{
d0a55772 337 int eq;
12b0b6de
UW
338 if (!l.stack_addr_p || !r.stack_addr_p)
339 /* Like a NaN, if either ID is invalid, the result is false.
340 Note that a frame ID is invalid iff it is the null frame ID. */
d0a55772
AC
341 eq = 0;
342 else if (l.stack_addr != r.stack_addr)
343 /* If .stack addresses are different, the frames are different. */
344 eq = 0;
12b0b6de
UW
345 else if (!l.code_addr_p || !r.code_addr_p)
346 /* An invalid code addr is a wild card, always succeed. */
d0a55772 347 eq = 1;
48c66725
JJ
348 else if (l.code_addr != r.code_addr)
349 /* If .code addresses are different, the frames are different. */
350 eq = 0;
12b0b6de
UW
351 else if (!l.special_addr_p || !r.special_addr_p)
352 /* An invalid special addr is a wild card (or unused), always succeed. */
48c66725
JJ
353 eq = 1;
354 else if (l.special_addr == r.special_addr)
355 /* Frames are equal. */
d0a55772
AC
356 eq = 1;
357 else
4aa79dcc
AC
358 /* No luck. */
359 eq = 0;
7f78e237
AC
360 if (frame_debug)
361 {
362 fprintf_unfiltered (gdb_stdlog, "{ frame_id_eq (l=");
363 fprint_frame_id (gdb_stdlog, l);
364 fprintf_unfiltered (gdb_stdlog, ",r=");
365 fprint_frame_id (gdb_stdlog, r);
366 fprintf_unfiltered (gdb_stdlog, ") -> %d }\n", eq);
367 }
d0a55772 368 return eq;
7a424e99
AC
369}
370
371int
372frame_id_inner (struct frame_id l, struct frame_id r)
373{
d0a55772 374 int inner;
12b0b6de 375 if (!l.stack_addr_p || !r.stack_addr_p)
d0a55772
AC
376 /* Like NaN, any operation involving an invalid ID always fails. */
377 inner = 0;
378 else
379 /* Only return non-zero when strictly inner than. Note that, per
380 comment in "frame.h", there is some fuzz here. Frameless
381 functions are not strictly inner than (same .stack but
48c66725 382 different .code and/or .special address). */
4d1e7dd1 383 inner = gdbarch_inner_than (current_gdbarch, l.stack_addr, r.stack_addr);
7f78e237
AC
384 if (frame_debug)
385 {
386 fprintf_unfiltered (gdb_stdlog, "{ frame_id_inner (l=");
387 fprint_frame_id (gdb_stdlog, l);
388 fprintf_unfiltered (gdb_stdlog, ",r=");
389 fprint_frame_id (gdb_stdlog, r);
390 fprintf_unfiltered (gdb_stdlog, ") -> %d }\n", inner);
391 }
d0a55772 392 return inner;
7a424e99
AC
393}
394
101dcfbe
AC
395struct frame_info *
396frame_find_by_id (struct frame_id id)
397{
398 struct frame_info *frame;
399
400 /* ZERO denotes the null frame, let the caller decide what to do
401 about it. Should it instead return get_current_frame()? */
7a424e99 402 if (!frame_id_p (id))
101dcfbe
AC
403 return NULL;
404
405 for (frame = get_current_frame ();
406 frame != NULL;
407 frame = get_prev_frame (frame))
408 {
7a424e99
AC
409 struct frame_id this = get_frame_id (frame);
410 if (frame_id_eq (id, this))
411 /* An exact match. */
412 return frame;
413 if (frame_id_inner (id, this))
414 /* Gone to far. */
101dcfbe 415 return NULL;
bbde78fa
JM
416 /* Either we're not yet gone far enough out along the frame
417 chain (inner(this,id)), or we're comparing frameless functions
7a424e99
AC
418 (same .base, different .func, no test available). Struggle
419 on until we've definitly gone to far. */
101dcfbe
AC
420 }
421 return NULL;
422}
423
f18c5a73 424CORE_ADDR
12cc2063 425frame_pc_unwind (struct frame_info *this_frame)
f18c5a73 426{
d1340264 427 if (!this_frame->prev_pc.p)
f18c5a73 428 {
12cc2063 429 CORE_ADDR pc;
cbafadeb
AC
430 if (this_frame->unwind == NULL)
431 this_frame->unwind
432 = frame_unwind_find_by_frame (this_frame->next,
433 &this_frame->prologue_cache);
434 if (this_frame->unwind->prev_pc != NULL)
435 /* A per-frame unwinder, prefer it. */
436 pc = this_frame->unwind->prev_pc (this_frame->next,
437 &this_frame->prologue_cache);
b1bd0044 438 else if (gdbarch_unwind_pc_p (get_frame_arch (this_frame)))
12cc2063
AC
439 {
440 /* The right way. The `pure' way. The one true way. This
441 method depends solely on the register-unwind code to
442 determine the value of registers in THIS frame, and hence
443 the value of this frame's PC (resume address). A typical
444 implementation is no more than:
445
446 frame_unwind_register (this_frame, ISA_PC_REGNUM, buf);
af1342ab 447 return extract_unsigned_integer (buf, size of ISA_PC_REGNUM);
12cc2063
AC
448
449 Note: this method is very heavily dependent on a correct
450 register-unwind implementation, it pays to fix that
451 method first; this method is frame type agnostic, since
452 it only deals with register values, it works with any
453 frame. This is all in stark contrast to the old
454 FRAME_SAVED_PC which would try to directly handle all the
455 different ways that a PC could be unwound. */
b1bd0044 456 pc = gdbarch_unwind_pc (get_frame_arch (this_frame), this_frame);
12cc2063 457 }
12cc2063 458 else
e2e0b3e5 459 internal_error (__FILE__, __LINE__, _("No unwind_pc method"));
d1340264
AC
460 this_frame->prev_pc.value = pc;
461 this_frame->prev_pc.p = 1;
7f78e237
AC
462 if (frame_debug)
463 fprintf_unfiltered (gdb_stdlog,
464 "{ frame_pc_unwind (this_frame=%d) -> 0x%s }\n",
465 this_frame->level,
466 paddr_nz (this_frame->prev_pc.value));
f18c5a73 467 }
d1340264 468 return this_frame->prev_pc.value;
f18c5a73
AC
469}
470
be41e9f4 471CORE_ADDR
93d42b30 472frame_func_unwind (struct frame_info *fi, enum frame_type this_type)
be41e9f4
AC
473{
474 if (!fi->prev_func.p)
475 {
57bfe177
AC
476 /* Make certain that this, and not the adjacent, function is
477 found. */
93d42b30 478 CORE_ADDR addr_in_block = frame_unwind_address_in_block (fi, this_type);
be41e9f4 479 fi->prev_func.p = 1;
57bfe177 480 fi->prev_func.addr = get_pc_function_start (addr_in_block);
7f78e237
AC
481 if (frame_debug)
482 fprintf_unfiltered (gdb_stdlog,
483 "{ frame_func_unwind (fi=%d) -> 0x%s }\n",
484 fi->level, paddr_nz (fi->prev_func.addr));
be41e9f4
AC
485 }
486 return fi->prev_func.addr;
487}
488
489CORE_ADDR
490get_frame_func (struct frame_info *fi)
491{
93d42b30 492 return frame_func_unwind (fi->next, get_frame_type (fi));
be41e9f4
AC
493}
494
7a25a7c1 495static int
2d522557 496do_frame_register_read (void *src, int regnum, gdb_byte *buf)
7a25a7c1 497{
a81dcb05 498 frame_register_read (src, regnum, buf);
7a25a7c1
AC
499 return 1;
500}
501
a81dcb05
AC
502struct regcache *
503frame_save_as_regcache (struct frame_info *this_frame)
504{
b1bd0044 505 struct regcache *regcache = regcache_xmalloc (get_frame_arch (this_frame));
a81dcb05
AC
506 struct cleanup *cleanups = make_cleanup_regcache_xfree (regcache);
507 regcache_save (regcache, do_frame_register_read, this_frame);
508 discard_cleanups (cleanups);
509 return regcache;
510}
511
dbe9fe58 512void
7a25a7c1
AC
513frame_pop (struct frame_info *this_frame)
514{
348473d5
NF
515 struct frame_info *prev_frame;
516 struct regcache *scratch;
517 struct cleanup *cleanups;
518
519 /* Ensure that we have a frame to pop to. */
520 prev_frame = get_prev_frame_1 (this_frame);
521
522 if (!prev_frame)
523 error (_("Cannot pop the initial frame."));
524
c1bf6f65
AC
525 /* Make a copy of all the register values unwound from this frame.
526 Save them in a scratch buffer so that there isn't a race between
594f7785 527 trying to extract the old values from the current regcache while
c1bf6f65 528 at the same time writing new values into that same cache. */
348473d5
NF
529 scratch = frame_save_as_regcache (prev_frame);
530 cleanups = make_cleanup_regcache_xfree (scratch);
c1bf6f65
AC
531
532 /* FIXME: cagney/2003-03-16: It should be possible to tell the
533 target's register cache that it is about to be hit with a burst
534 register transfer and that the sequence of register writes should
535 be batched. The pair target_prepare_to_store() and
536 target_store_registers() kind of suggest this functionality.
537 Unfortunately, they don't implement it. Their lack of a formal
538 definition can lead to targets writing back bogus values
539 (arguably a bug in the target code mind). */
540 /* Now copy those saved registers into the current regcache.
541 Here, regcache_cpy() calls regcache_restore(). */
594f7785 542 regcache_cpy (get_current_regcache (), scratch);
c1bf6f65 543 do_cleanups (cleanups);
7a25a7c1 544
7a25a7c1
AC
545 /* We've made right mess of GDB's local state, just discard
546 everything. */
35f196d9 547 reinit_frame_cache ();
dbe9fe58 548}
c689142b 549
4f460812
AC
550void
551frame_register_unwind (struct frame_info *frame, int regnum,
552 int *optimizedp, enum lval_type *lvalp,
10c42a71 553 CORE_ADDR *addrp, int *realnump, gdb_byte *bufferp)
4f460812
AC
554{
555 struct frame_unwind_cache *cache;
556
7f78e237
AC
557 if (frame_debug)
558 {
6764ddad
AC
559 fprintf_unfiltered (gdb_stdlog, "\
560{ frame_register_unwind (frame=%d,regnum=%d(%s),...) ",
561 frame->level, regnum,
562 frame_map_regnum_to_name (frame, regnum));
7f78e237
AC
563 }
564
4f460812
AC
565 /* Require all but BUFFERP to be valid. A NULL BUFFERP indicates
566 that the value proper does not need to be fetched. */
567 gdb_assert (optimizedp != NULL);
568 gdb_assert (lvalp != NULL);
569 gdb_assert (addrp != NULL);
570 gdb_assert (realnump != NULL);
571 /* gdb_assert (bufferp != NULL); */
572
a94dd1fd
AC
573 /* NOTE: cagney/2002-11-27: A program trying to unwind a NULL frame
574 is broken. There is always a frame. If there, for some reason,
bbde78fa 575 isn't a frame, there is some pretty busted code as it should have
a94dd1fd
AC
576 detected the problem before calling here. */
577 gdb_assert (frame != NULL);
4f460812 578
c50901fd
AC
579 /* Find the unwinder. */
580 if (frame->unwind == NULL)
c1bf6f65
AC
581 frame->unwind = frame_unwind_find_by_frame (frame->next,
582 &frame->prologue_cache);
c50901fd 583
6dc42492 584 /* Ask this frame to unwind its register. See comment in
bbde78fa 585 "frame-unwind.h" for why NEXT frame and this unwind cache are
6dc42492
AC
586 passed in. */
587 frame->unwind->prev_register (frame->next, &frame->prologue_cache, regnum,
588 optimizedp, lvalp, addrp, realnump, bufferp);
589
7f78e237
AC
590 if (frame_debug)
591 {
592 fprintf_unfiltered (gdb_stdlog, "->");
593 fprintf_unfiltered (gdb_stdlog, " *optimizedp=%d", (*optimizedp));
594 fprintf_unfiltered (gdb_stdlog, " *lvalp=%d", (int) (*lvalp));
595 fprintf_unfiltered (gdb_stdlog, " *addrp=0x%s", paddr_nz ((*addrp)));
596 fprintf_unfiltered (gdb_stdlog, " *bufferp=");
597 if (bufferp == NULL)
598 fprintf_unfiltered (gdb_stdlog, "<NULL>");
599 else
600 {
601 int i;
d2cf594a 602 const unsigned char *buf = bufferp;
7f78e237 603 fprintf_unfiltered (gdb_stdlog, "[");
b1bd0044 604 for (i = 0; i < register_size (get_frame_arch (frame), regnum); i++)
7f78e237
AC
605 fprintf_unfiltered (gdb_stdlog, "%02x", buf[i]);
606 fprintf_unfiltered (gdb_stdlog, "]");
607 }
608 fprintf_unfiltered (gdb_stdlog, " }\n");
609 }
4f460812
AC
610}
611
a216a322
AC
612void
613frame_register (struct frame_info *frame, int regnum,
614 int *optimizedp, enum lval_type *lvalp,
10c42a71 615 CORE_ADDR *addrp, int *realnump, gdb_byte *bufferp)
a216a322
AC
616{
617 /* Require all but BUFFERP to be valid. A NULL BUFFERP indicates
618 that the value proper does not need to be fetched. */
619 gdb_assert (optimizedp != NULL);
620 gdb_assert (lvalp != NULL);
621 gdb_assert (addrp != NULL);
622 gdb_assert (realnump != NULL);
623 /* gdb_assert (bufferp != NULL); */
624
a94dd1fd
AC
625 /* Obtain the register value by unwinding the register from the next
626 (more inner frame). */
627 gdb_assert (frame != NULL && frame->next != NULL);
628 frame_register_unwind (frame->next, regnum, optimizedp, lvalp, addrp,
629 realnump, bufferp);
a216a322
AC
630}
631
135c175f 632void
10c42a71 633frame_unwind_register (struct frame_info *frame, int regnum, gdb_byte *buf)
135c175f
AC
634{
635 int optimized;
636 CORE_ADDR addr;
637 int realnum;
638 enum lval_type lval;
135c175f
AC
639 frame_register_unwind (frame, regnum, &optimized, &lval, &addr,
640 &realnum, buf);
5b181d62
AC
641}
642
f0e7d0e8
AC
643void
644get_frame_register (struct frame_info *frame,
10c42a71 645 int regnum, gdb_byte *buf)
f0e7d0e8
AC
646{
647 frame_unwind_register (frame->next, regnum, buf);
648}
649
650LONGEST
651frame_unwind_register_signed (struct frame_info *frame, int regnum)
652{
10c42a71 653 gdb_byte buf[MAX_REGISTER_SIZE];
f0e7d0e8 654 frame_unwind_register (frame, regnum, buf);
5bc602c7
AC
655 return extract_signed_integer (buf, register_size (get_frame_arch (frame),
656 regnum));
f0e7d0e8
AC
657}
658
659LONGEST
660get_frame_register_signed (struct frame_info *frame, int regnum)
661{
662 return frame_unwind_register_signed (frame->next, regnum);
663}
664
665ULONGEST
666frame_unwind_register_unsigned (struct frame_info *frame, int regnum)
667{
10c42a71 668 gdb_byte buf[MAX_REGISTER_SIZE];
f0e7d0e8 669 frame_unwind_register (frame, regnum, buf);
5bc602c7
AC
670 return extract_unsigned_integer (buf, register_size (get_frame_arch (frame),
671 regnum));
f0e7d0e8
AC
672}
673
674ULONGEST
675get_frame_register_unsigned (struct frame_info *frame, int regnum)
676{
677 return frame_unwind_register_unsigned (frame->next, regnum);
678}
679
135c175f
AC
680void
681frame_unwind_unsigned_register (struct frame_info *frame, int regnum,
682 ULONGEST *val)
683{
10c42a71 684 gdb_byte buf[MAX_REGISTER_SIZE];
5b181d62 685 frame_unwind_register (frame, regnum, buf);
5bc602c7
AC
686 (*val) = extract_unsigned_integer (buf,
687 register_size (get_frame_arch (frame),
688 regnum));
135c175f 689}
4f460812 690
ff2e87ac 691void
10c42a71
AC
692put_frame_register (struct frame_info *frame, int regnum,
693 const gdb_byte *buf)
ff2e87ac
AC
694{
695 struct gdbarch *gdbarch = get_frame_arch (frame);
696 int realnum;
697 int optim;
698 enum lval_type lval;
699 CORE_ADDR addr;
700 frame_register (frame, regnum, &optim, &lval, &addr, &realnum, NULL);
701 if (optim)
8a3fe4f8 702 error (_("Attempt to assign to a value that was optimized out."));
ff2e87ac
AC
703 switch (lval)
704 {
705 case lval_memory:
706 {
707 /* FIXME: write_memory doesn't yet take constant buffers.
708 Arrrg! */
10c42a71 709 gdb_byte tmp[MAX_REGISTER_SIZE];
ff2e87ac
AC
710 memcpy (tmp, buf, register_size (gdbarch, regnum));
711 write_memory (addr, tmp, register_size (gdbarch, regnum));
712 break;
713 }
714 case lval_register:
594f7785 715 regcache_cooked_write (get_current_regcache (), realnum, buf);
ff2e87ac
AC
716 break;
717 default:
8a3fe4f8 718 error (_("Attempt to assign to an unmodifiable value."));
ff2e87ac
AC
719 }
720}
721
cda5a58a 722/* frame_register_read ()
d65fe839 723
cda5a58a 724 Find and return the value of REGNUM for the specified stack frame.
5bc602c7 725 The number of bytes copied is REGISTER_SIZE (REGNUM).
d65fe839 726
cda5a58a 727 Returns 0 if the register value could not be found. */
d65fe839 728
cda5a58a 729int
10c42a71
AC
730frame_register_read (struct frame_info *frame, int regnum,
731 gdb_byte *myaddr)
d65fe839 732{
a216a322
AC
733 int optimized;
734 enum lval_type lval;
735 CORE_ADDR addr;
736 int realnum;
737 frame_register (frame, regnum, &optimized, &lval, &addr, &realnum, myaddr);
d65fe839 738
a216a322 739 return !optimized;
d65fe839 740}
e36180d7 741
00fa51f6
UW
742int
743get_frame_register_bytes (struct frame_info *frame, int regnum,
744 CORE_ADDR offset, int len, gdb_byte *myaddr)
745{
746 struct gdbarch *gdbarch = get_frame_arch (frame);
747
748 /* Skip registers wholly inside of OFFSET. */
749 while (offset >= register_size (gdbarch, regnum))
750 {
751 offset -= register_size (gdbarch, regnum);
752 regnum++;
753 }
754
755 /* Copy the data. */
756 while (len > 0)
757 {
758 int curr_len = register_size (gdbarch, regnum) - offset;
759 if (curr_len > len)
760 curr_len = len;
761
762 if (curr_len == register_size (gdbarch, regnum))
763 {
764 if (!frame_register_read (frame, regnum, myaddr))
765 return 0;
766 }
767 else
768 {
769 gdb_byte buf[MAX_REGISTER_SIZE];
770 if (!frame_register_read (frame, regnum, buf))
771 return 0;
772 memcpy (myaddr, buf + offset, curr_len);
773 }
774
765f065a 775 myaddr += curr_len;
00fa51f6
UW
776 len -= curr_len;
777 offset = 0;
778 regnum++;
779 }
780
781 return 1;
782}
783
784void
785put_frame_register_bytes (struct frame_info *frame, int regnum,
786 CORE_ADDR offset, int len, const gdb_byte *myaddr)
787{
788 struct gdbarch *gdbarch = get_frame_arch (frame);
789
790 /* Skip registers wholly inside of OFFSET. */
791 while (offset >= register_size (gdbarch, regnum))
792 {
793 offset -= register_size (gdbarch, regnum);
794 regnum++;
795 }
796
797 /* Copy the data. */
798 while (len > 0)
799 {
800 int curr_len = register_size (gdbarch, regnum) - offset;
801 if (curr_len > len)
802 curr_len = len;
803
804 if (curr_len == register_size (gdbarch, regnum))
805 {
806 put_frame_register (frame, regnum, myaddr);
807 }
808 else
809 {
810 gdb_byte buf[MAX_REGISTER_SIZE];
811 frame_register_read (frame, regnum, buf);
812 memcpy (buf + offset, myaddr, curr_len);
813 put_frame_register (frame, regnum, buf);
814 }
815
765f065a 816 myaddr += curr_len;
00fa51f6
UW
817 len -= curr_len;
818 offset = 0;
819 regnum++;
820 }
821}
e36180d7
AC
822
823/* Map between a frame register number and its name. A frame register
824 space is a superset of the cooked register space --- it also
825 includes builtin registers. */
826
827int
eb8bc282 828frame_map_name_to_regnum (struct frame_info *frame, const char *name, int len)
e36180d7 829{
eb8bc282 830 return user_reg_map_name_to_regnum (get_frame_arch (frame), name, len);
e36180d7
AC
831}
832
833const char *
eb8bc282 834frame_map_regnum_to_name (struct frame_info *frame, int regnum)
e36180d7 835{
eb8bc282 836 return user_reg_map_regnum_to_name (get_frame_arch (frame), regnum);
e36180d7 837}
4c1e7e9d 838
a94dd1fd
AC
839/* Create a sentinel frame. */
840
b9362cc7 841static struct frame_info *
a94dd1fd
AC
842create_sentinel_frame (struct regcache *regcache)
843{
844 struct frame_info *frame = FRAME_OBSTACK_ZALLOC (struct frame_info);
a94dd1fd
AC
845 frame->level = -1;
846 /* Explicitly initialize the sentinel frame's cache. Provide it
847 with the underlying regcache. In the future additional
848 information, such as the frame's thread will be added. */
6dc42492 849 frame->prologue_cache = sentinel_frame_cache (regcache);
a94dd1fd
AC
850 /* For the moment there is only one sentinel frame implementation. */
851 frame->unwind = sentinel_frame_unwind;
852 /* Link this frame back to itself. The frame is self referential
853 (the unwound PC is the same as the pc), so make it so. */
854 frame->next = frame;
50bbdbd9
AC
855 /* Make the sentinel frame's ID valid, but invalid. That way all
856 comparisons with it should fail. */
d0a55772
AC
857 frame->this_id.p = 1;
858 frame->this_id.value = null_frame_id;
7f78e237
AC
859 if (frame_debug)
860 {
861 fprintf_unfiltered (gdb_stdlog, "{ create_sentinel_frame (...) -> ");
862 fprint_frame (gdb_stdlog, frame);
863 fprintf_unfiltered (gdb_stdlog, " }\n");
864 }
a94dd1fd
AC
865 return frame;
866}
867
4c1e7e9d
AC
868/* Info about the innermost stack frame (contents of FP register) */
869
870static struct frame_info *current_frame;
871
872/* Cache for frame addresses already read by gdb. Valid only while
873 inferior is stopped. Control variables for the frame cache should
874 be local to this module. */
875
876static struct obstack frame_cache_obstack;
877
878void *
479ab5a0 879frame_obstack_zalloc (unsigned long size)
4c1e7e9d 880{
479ab5a0
AC
881 void *data = obstack_alloc (&frame_cache_obstack, size);
882 memset (data, 0, size);
883 return data;
4c1e7e9d
AC
884}
885
a94dd1fd
AC
886/* Return the innermost (currently executing) stack frame. This is
887 split into two functions. The function unwind_to_current_frame()
888 is wrapped in catch exceptions so that, even when the unwind of the
889 sentinel frame fails, the function still returns a stack frame. */
890
891static int
892unwind_to_current_frame (struct ui_out *ui_out, void *args)
893{
894 struct frame_info *frame = get_prev_frame (args);
bbde78fa 895 /* A sentinel frame can fail to unwind, e.g., because its PC value
a94dd1fd
AC
896 lands in somewhere like start. */
897 if (frame == NULL)
898 return 1;
899 current_frame = frame;
900 return 0;
901}
4c1e7e9d
AC
902
903struct frame_info *
904get_current_frame (void)
905{
0a1e1ca1
AC
906 /* First check, and report, the lack of registers. Having GDB
907 report "No stack!" or "No memory" when the target doesn't even
908 have registers is very confusing. Besides, "printcmd.exp"
909 explicitly checks that ``print $pc'' with no registers prints "No
910 registers". */
a94dd1fd 911 if (!target_has_registers)
8a3fe4f8 912 error (_("No registers."));
0a1e1ca1 913 if (!target_has_stack)
8a3fe4f8 914 error (_("No stack."));
a94dd1fd 915 if (!target_has_memory)
8a3fe4f8 916 error (_("No memory."));
4c1e7e9d
AC
917 if (current_frame == NULL)
918 {
a94dd1fd 919 struct frame_info *sentinel_frame =
594f7785 920 create_sentinel_frame (get_current_regcache ());
a94dd1fd 921 if (catch_exceptions (uiout, unwind_to_current_frame, sentinel_frame,
1c3c7ee7 922 RETURN_MASK_ERROR) != 0)
a94dd1fd
AC
923 {
924 /* Oops! Fake a current frame? Is this useful? It has a PC
925 of zero, for instance. */
926 current_frame = sentinel_frame;
927 }
4c1e7e9d
AC
928 }
929 return current_frame;
930}
931
6e7f8b9c
AC
932/* The "selected" stack frame is used by default for local and arg
933 access. May be zero, for no selected frame. */
934
206415a3 935static struct frame_info *selected_frame;
6e7f8b9c 936
bbde78fa 937/* Return the selected frame. Always non-NULL (unless there isn't an
6e7f8b9c
AC
938 inferior sufficient for creating a frame) in which case an error is
939 thrown. */
940
941struct frame_info *
b04f3ab4 942get_selected_frame (const char *message)
6e7f8b9c 943{
206415a3 944 if (selected_frame == NULL)
b04f3ab4
AC
945 {
946 if (message != NULL && (!target_has_registers
947 || !target_has_stack
948 || !target_has_memory))
8a3fe4f8 949 error (("%s"), message);
b04f3ab4
AC
950 /* Hey! Don't trust this. It should really be re-finding the
951 last selected frame of the currently selected thread. This,
952 though, is better than nothing. */
953 select_frame (get_current_frame ());
954 }
6e7f8b9c 955 /* There is always a frame. */
206415a3
DJ
956 gdb_assert (selected_frame != NULL);
957 return selected_frame;
6e7f8b9c
AC
958}
959
bbde78fa 960/* This is a variant of get_selected_frame() which can be called when
7dd88986 961 the inferior does not have a frame; in that case it will return
bbde78fa 962 NULL instead of calling error(). */
7dd88986
DJ
963
964struct frame_info *
965deprecated_safe_get_selected_frame (void)
966{
967 if (!target_has_registers || !target_has_stack || !target_has_memory)
968 return NULL;
b04f3ab4 969 return get_selected_frame (NULL);
7dd88986
DJ
970}
971
6e7f8b9c
AC
972/* Select frame FI (or NULL - to invalidate the current frame). */
973
974void
975select_frame (struct frame_info *fi)
976{
52f0bd74 977 struct symtab *s;
6e7f8b9c 978
206415a3 979 selected_frame = fi;
bbde78fa 980 /* NOTE: cagney/2002-05-04: FI can be NULL. This occurs when the
6e7f8b9c 981 frame is being invalidated. */
9a4105ab
AC
982 if (deprecated_selected_frame_level_changed_hook)
983 deprecated_selected_frame_level_changed_hook (frame_relative_level (fi));
6e7f8b9c
AC
984
985 /* FIXME: kseitz/2002-08-28: It would be nice to call
bbde78fa 986 selected_frame_level_changed_event() right here, but due to limitations
6e7f8b9c 987 in the current interfaces, we would end up flooding UIs with events
bbde78fa 988 because select_frame() is used extensively internally.
6e7f8b9c
AC
989
990 Once we have frame-parameterized frame (and frame-related) commands,
991 the event notification can be moved here, since this function will only
bbde78fa 992 be called when the user's selected frame is being changed. */
6e7f8b9c
AC
993
994 /* Ensure that symbols for this frame are read in. Also, determine the
995 source language of this frame, and switch to it if desired. */
996 if (fi)
997 {
7ae4c3a5 998 /* We retrieve the frame's symtab by using the frame PC. However
bbde78fa 999 we cannot use the frame PC as-is, because it usually points to
7ae4c3a5
JB
1000 the instruction following the "call", which is sometimes the
1001 first instruction of another function. So we rely on
1002 get_frame_address_in_block() which provides us with a PC which
1003 is guaranteed to be inside the frame's code block. */
1004 s = find_pc_symtab (get_frame_address_in_block (fi));
6e7f8b9c
AC
1005 if (s
1006 && s->language != current_language->la_language
1007 && s->language != language_unknown
1008 && language_mode == language_mode_auto)
1009 {
1010 set_language (s->language);
1011 }
1012 }
1013}
c689142b 1014
4c1e7e9d
AC
1015/* Create an arbitrary (i.e. address specified by user) or innermost frame.
1016 Always returns a non-NULL value. */
1017
1018struct frame_info *
1019create_new_frame (CORE_ADDR addr, CORE_ADDR pc)
1020{
1021 struct frame_info *fi;
4c1e7e9d 1022
7f78e237
AC
1023 if (frame_debug)
1024 {
1025 fprintf_unfiltered (gdb_stdlog,
1026 "{ create_new_frame (addr=0x%s, pc=0x%s) ",
1027 paddr_nz (addr), paddr_nz (pc));
1028 }
1029
35d5d4ee 1030 fi = FRAME_OBSTACK_ZALLOC (struct frame_info);
4c1e7e9d 1031
594f7785 1032 fi->next = create_sentinel_frame (get_current_regcache ());
7df05f2b
AC
1033
1034 /* Select/initialize both the unwind function and the frame's type
1035 based on the PC. */
82417da5 1036 fi->unwind = frame_unwind_find_by_frame (fi->next, &fi->prologue_cache);
7df05f2b 1037
18adea3f 1038 fi->this_id.p = 1;
11889732
AC
1039 deprecated_update_frame_base_hack (fi, addr);
1040 deprecated_update_frame_pc_hack (fi, pc);
4c1e7e9d 1041
7f78e237
AC
1042 if (frame_debug)
1043 {
1044 fprintf_unfiltered (gdb_stdlog, "-> ");
1045 fprint_frame (gdb_stdlog, fi);
1046 fprintf_unfiltered (gdb_stdlog, " }\n");
1047 }
1048
4c1e7e9d
AC
1049 return fi;
1050}
1051
03febf99
AC
1052/* Return the frame that THIS_FRAME calls (NULL if THIS_FRAME is the
1053 innermost frame). Be careful to not fall off the bottom of the
1054 frame chain and onto the sentinel frame. */
4c1e7e9d
AC
1055
1056struct frame_info *
03febf99 1057get_next_frame (struct frame_info *this_frame)
4c1e7e9d 1058{
03febf99
AC
1059 if (this_frame->level > 0)
1060 return this_frame->next;
a94dd1fd
AC
1061 else
1062 return NULL;
4c1e7e9d
AC
1063}
1064
f4c5303c
OF
1065/* Observer for the target_changed event. */
1066
1067void
1068frame_observer_target_changed (struct target_ops *target)
1069{
35f196d9 1070 reinit_frame_cache ();
f4c5303c
OF
1071}
1072
4c1e7e9d
AC
1073/* Flush the entire frame cache. */
1074
1075void
35f196d9 1076reinit_frame_cache (void)
4c1e7e9d 1077{
272dfcfd
AS
1078 struct frame_info *fi;
1079
1080 /* Tear down all frame caches. */
1081 for (fi = current_frame; fi != NULL; fi = fi->prev)
1082 {
1083 if (fi->prologue_cache && fi->unwind->dealloc_cache)
1084 fi->unwind->dealloc_cache (fi, fi->prologue_cache);
1085 if (fi->base_cache && fi->base->unwind->dealloc_cache)
1086 fi->base->unwind->dealloc_cache (fi, fi->base_cache);
1087 }
1088
4c1e7e9d
AC
1089 /* Since we can't really be sure what the first object allocated was */
1090 obstack_free (&frame_cache_obstack, 0);
1091 obstack_init (&frame_cache_obstack);
1092
1093 current_frame = NULL; /* Invalidate cache */
1094 select_frame (NULL);
1095 annotate_frames_invalid ();
7f78e237 1096 if (frame_debug)
35f196d9 1097 fprintf_unfiltered (gdb_stdlog, "{ reinit_frame_cache () }\n");
4c1e7e9d
AC
1098}
1099
e48af409
DJ
1100/* Find where a register is saved (in memory or another register).
1101 The result of frame_register_unwind is just where it is saved
5efde112 1102 relative to this particular frame. */
e48af409
DJ
1103
1104static void
1105frame_register_unwind_location (struct frame_info *this_frame, int regnum,
1106 int *optimizedp, enum lval_type *lvalp,
1107 CORE_ADDR *addrp, int *realnump)
1108{
1109 gdb_assert (this_frame == NULL || this_frame->level >= 0);
1110
1111 while (this_frame != NULL)
1112 {
1113 frame_register_unwind (this_frame, regnum, optimizedp, lvalp,
1114 addrp, realnump, NULL);
1115
1116 if (*optimizedp)
1117 break;
1118
1119 if (*lvalp != lval_register)
1120 break;
1121
1122 regnum = *realnump;
1123 this_frame = get_next_frame (this_frame);
1124 }
1125}
1126
5613d8d3
AC
1127/* Return a "struct frame_info" corresponding to the frame that called
1128 THIS_FRAME. Returns NULL if there is no such frame.
5bf00f29 1129
5613d8d3
AC
1130 Unlike get_prev_frame, this function always tries to unwind the
1131 frame. */
eb4f72c5 1132
5613d8d3
AC
1133static struct frame_info *
1134get_prev_frame_1 (struct frame_info *this_frame)
eb4f72c5
AC
1135{
1136 struct frame_info *prev_frame;
756e95f1 1137 struct frame_id this_id;
b1bd0044 1138 struct gdbarch *gdbarch;
eb4f72c5 1139
5613d8d3 1140 gdb_assert (this_frame != NULL);
b1bd0044 1141 gdbarch = get_frame_arch (this_frame);
5613d8d3 1142
7f78e237
AC
1143 if (frame_debug)
1144 {
5613d8d3 1145 fprintf_unfiltered (gdb_stdlog, "{ get_prev_frame_1 (this_frame=");
7f78e237
AC
1146 if (this_frame != NULL)
1147 fprintf_unfiltered (gdb_stdlog, "%d", this_frame->level);
1148 else
1149 fprintf_unfiltered (gdb_stdlog, "<NULL>");
1150 fprintf_unfiltered (gdb_stdlog, ") ");
1151 }
1152
5613d8d3
AC
1153 /* Only try to do the unwind once. */
1154 if (this_frame->prev_p)
1155 {
1156 if (frame_debug)
1157 {
1158 fprintf_unfiltered (gdb_stdlog, "-> ");
1159 fprint_frame (gdb_stdlog, this_frame->prev);
1160 fprintf_unfiltered (gdb_stdlog, " // cached \n");
1161 }
1162 return this_frame->prev;
1163 }
1164 this_frame->prev_p = 1;
55feb689 1165 this_frame->stop_reason = UNWIND_NO_REASON;
5613d8d3 1166
5613d8d3
AC
1167 /* Check that this frame's ID was valid. If it wasn't, don't try to
1168 unwind to the prev frame. Be careful to not apply this test to
1169 the sentinel frame. */
756e95f1
MK
1170 this_id = get_frame_id (this_frame);
1171 if (this_frame->level >= 0 && !frame_id_p (this_id))
5613d8d3
AC
1172 {
1173 if (frame_debug)
1174 {
1175 fprintf_unfiltered (gdb_stdlog, "-> ");
1176 fprint_frame (gdb_stdlog, NULL);
1177 fprintf_unfiltered (gdb_stdlog, " // this ID is NULL }\n");
1178 }
55feb689 1179 this_frame->stop_reason = UNWIND_NULL_ID;
5613d8d3
AC
1180 return NULL;
1181 }
1182
1183 /* Check that this frame's ID isn't inner to (younger, below, next)
1184 the next frame. This happens when a frame unwind goes backwards.
adb54772
AC
1185 Exclude signal trampolines (due to sigaltstack the frame ID can
1186 go backwards) and sentinel frames (the test is meaningless). */
1187 if (this_frame->next->level >= 0
c1bf6f65 1188 && this_frame->next->unwind->type != SIGTRAMP_FRAME
756e95f1 1189 && frame_id_inner (this_id, get_frame_id (this_frame->next)))
55feb689
DJ
1190 {
1191 if (frame_debug)
1192 {
1193 fprintf_unfiltered (gdb_stdlog, "-> ");
1194 fprint_frame (gdb_stdlog, NULL);
1195 fprintf_unfiltered (gdb_stdlog, " // this frame ID is inner }\n");
1196 }
1197 this_frame->stop_reason = UNWIND_INNER_ID;
1198 return NULL;
1199 }
5613d8d3
AC
1200
1201 /* Check that this and the next frame are not identical. If they
1202 are, there is most likely a stack cycle. As with the inner-than
1203 test above, avoid comparing the inner-most and sentinel frames. */
1204 if (this_frame->level > 0
756e95f1 1205 && frame_id_eq (this_id, get_frame_id (this_frame->next)))
55feb689
DJ
1206 {
1207 if (frame_debug)
1208 {
1209 fprintf_unfiltered (gdb_stdlog, "-> ");
1210 fprint_frame (gdb_stdlog, NULL);
1211 fprintf_unfiltered (gdb_stdlog, " // this frame has same ID }\n");
1212 }
1213 this_frame->stop_reason = UNWIND_SAME_ID;
1214 return NULL;
1215 }
5613d8d3 1216
e48af409
DJ
1217 /* Check that this and the next frame do not unwind the PC register
1218 to the same memory location. If they do, then even though they
1219 have different frame IDs, the new frame will be bogus; two
1220 functions can't share a register save slot for the PC. This can
1221 happen when the prologue analyzer finds a stack adjustment, but
d57df5e4
DJ
1222 no PC save.
1223
1224 This check does assume that the "PC register" is roughly a
1225 traditional PC, even if the gdbarch_unwind_pc method adjusts
1226 it (we do not rely on the value, only on the unwound PC being
1227 dependent on this value). A potential improvement would be
1228 to have the frame prev_pc method and the gdbarch unwind_pc
1229 method set the same lval and location information as
1230 frame_register_unwind. */
e48af409 1231 if (this_frame->level > 0
b1bd0044 1232 && gdbarch_pc_regnum (gdbarch) >= 0
e48af409
DJ
1233 && get_frame_type (this_frame) == NORMAL_FRAME
1234 && get_frame_type (this_frame->next) == NORMAL_FRAME)
1235 {
32276632 1236 int optimized, realnum, nrealnum;
e48af409
DJ
1237 enum lval_type lval, nlval;
1238 CORE_ADDR addr, naddr;
1239
3e8c568d 1240 frame_register_unwind_location (this_frame,
b1bd0044 1241 gdbarch_pc_regnum (gdbarch),
3e8c568d
UW
1242 &optimized, &lval, &addr, &realnum);
1243 frame_register_unwind_location (get_next_frame (this_frame),
b1bd0044 1244 gdbarch_pc_regnum (gdbarch),
32276632 1245 &optimized, &nlval, &naddr, &nrealnum);
e48af409 1246
32276632
DJ
1247 if ((lval == lval_memory && lval == nlval && addr == naddr)
1248 || (lval == lval_register && lval == nlval && realnum == nrealnum))
e48af409
DJ
1249 {
1250 if (frame_debug)
1251 {
1252 fprintf_unfiltered (gdb_stdlog, "-> ");
1253 fprint_frame (gdb_stdlog, NULL);
1254 fprintf_unfiltered (gdb_stdlog, " // no saved PC }\n");
1255 }
1256
1257 this_frame->stop_reason = UNWIND_NO_SAVED_PC;
1258 this_frame->prev = NULL;
1259 return NULL;
1260 }
1261 }
1262
5613d8d3
AC
1263 /* Allocate the new frame but do not wire it in to the frame chain.
1264 Some (bad) code in INIT_FRAME_EXTRA_INFO tries to look along
1265 frame->next to pull some fancy tricks (of course such code is, by
1266 definition, recursive). Try to prevent it.
1267
1268 There is no reason to worry about memory leaks, should the
1269 remainder of the function fail. The allocated memory will be
1270 quickly reclaimed when the frame cache is flushed, and the `we've
1271 been here before' check above will stop repeated memory
1272 allocation calls. */
1273 prev_frame = FRAME_OBSTACK_ZALLOC (struct frame_info);
1274 prev_frame->level = this_frame->level + 1;
1275
1276 /* Don't yet compute ->unwind (and hence ->type). It is computed
1277 on-demand in get_frame_type, frame_register_unwind, and
1278 get_frame_id. */
1279
1280 /* Don't yet compute the frame's ID. It is computed on-demand by
1281 get_frame_id(). */
1282
1283 /* The unwound frame ID is validate at the start of this function,
1284 as part of the logic to decide if that frame should be further
1285 unwound, and not here while the prev frame is being created.
1286 Doing this makes it possible for the user to examine a frame that
1287 has an invalid frame ID.
1288
1289 Some very old VAX code noted: [...] For the sake of argument,
1290 suppose that the stack is somewhat trashed (which is one reason
1291 that "info frame" exists). So, return 0 (indicating we don't
1292 know the address of the arglist) if we don't know what frame this
1293 frame calls. */
1294
1295 /* Link it in. */
1296 this_frame->prev = prev_frame;
1297 prev_frame->next = this_frame;
1298
1299 if (frame_debug)
1300 {
1301 fprintf_unfiltered (gdb_stdlog, "-> ");
1302 fprint_frame (gdb_stdlog, prev_frame);
1303 fprintf_unfiltered (gdb_stdlog, " }\n");
1304 }
1305
1306 return prev_frame;
1307}
1308
1309/* Debug routine to print a NULL frame being returned. */
1310
1311static void
1312frame_debug_got_null_frame (struct ui_file *file,
1313 struct frame_info *this_frame,
1314 const char *reason)
1315{
1316 if (frame_debug)
1317 {
1318 fprintf_unfiltered (gdb_stdlog, "{ get_prev_frame (this_frame=");
1319 if (this_frame != NULL)
1320 fprintf_unfiltered (gdb_stdlog, "%d", this_frame->level);
1321 else
1322 fprintf_unfiltered (gdb_stdlog, "<NULL>");
1323 fprintf_unfiltered (gdb_stdlog, ") -> // %s}\n", reason);
1324 }
1325}
1326
c8cd9f6c
AC
1327/* Is this (non-sentinel) frame in the "main"() function? */
1328
1329static int
1330inside_main_func (struct frame_info *this_frame)
1331{
1332 struct minimal_symbol *msymbol;
1333 CORE_ADDR maddr;
1334
1335 if (symfile_objfile == 0)
1336 return 0;
1337 msymbol = lookup_minimal_symbol (main_name (), NULL, symfile_objfile);
1338 if (msymbol == NULL)
1339 return 0;
1340 /* Make certain that the code, and not descriptor, address is
1341 returned. */
b1bd0044 1342 maddr = gdbarch_convert_from_func_ptr_addr (get_frame_arch (this_frame),
c8cd9f6c
AC
1343 SYMBOL_VALUE_ADDRESS (msymbol),
1344 &current_target);
1345 return maddr == get_frame_func (this_frame);
1346}
1347
2315ffec
RC
1348/* Test whether THIS_FRAME is inside the process entry point function. */
1349
1350static int
1351inside_entry_func (struct frame_info *this_frame)
1352{
1353 return (get_frame_func (this_frame) == entry_point_address ());
1354}
1355
5613d8d3
AC
1356/* Return a structure containing various interesting information about
1357 the frame that called THIS_FRAME. Returns NULL if there is entier
1358 no such frame or the frame fails any of a set of target-independent
1359 condition that should terminate the frame chain (e.g., as unwinding
1360 past main()).
1361
1362 This function should not contain target-dependent tests, such as
1363 checking whether the program-counter is zero. */
1364
1365struct frame_info *
1366get_prev_frame (struct frame_info *this_frame)
1367{
1368 struct frame_info *prev_frame;
1369
eb4f72c5
AC
1370 /* Return the inner-most frame, when the caller passes in NULL. */
1371 /* NOTE: cagney/2002-11-09: Not sure how this would happen. The
1372 caller should have previously obtained a valid frame using
1373 get_selected_frame() and then called this code - only possibility
1374 I can think of is code behaving badly.
1375
1376 NOTE: cagney/2003-01-10: Talk about code behaving badly. Check
1377 block_innermost_frame(). It does the sequence: frame = NULL;
1378 while (1) { frame = get_prev_frame (frame); .... }. Ulgh! Why
1379 it couldn't be written better, I don't know.
1380
bbde78fa 1381 NOTE: cagney/2003-01-11: I suspect what is happening in
eb4f72c5 1382 block_innermost_frame() is, when the target has no state
bbde78fa 1383 (registers, memory, ...), it is still calling this function. The
eb4f72c5
AC
1384 assumption being that this function will return NULL indicating
1385 that a frame isn't possible, rather than checking that the target
1386 has state and then calling get_current_frame() and
1387 get_prev_frame(). This is a guess mind. */
03febf99 1388 if (this_frame == NULL)
eb4f72c5
AC
1389 {
1390 /* NOTE: cagney/2002-11-09: There was a code segment here that
1391 would error out when CURRENT_FRAME was NULL. The comment
1392 that went with it made the claim ...
1393
1394 ``This screws value_of_variable, which just wants a nice
1395 clean NULL return from block_innermost_frame if there are no
1396 frames. I don't think I've ever seen this message happen
1397 otherwise. And returning NULL here is a perfectly legitimate
1398 thing to do.''
1399
1400 Per the above, this code shouldn't even be called with a NULL
03febf99 1401 THIS_FRAME. */
5613d8d3 1402 frame_debug_got_null_frame (gdb_stdlog, this_frame, "this_frame NULL");
eb4f72c5
AC
1403 return current_frame;
1404 }
1405
1406 /* There is always a frame. If this assertion fails, suspect that
1407 something should be calling get_selected_frame() or
1408 get_current_frame(). */
03febf99 1409 gdb_assert (this_frame != NULL);
eb4f72c5 1410
cc9bed83
RC
1411 /* tausq/2004-12-07: Dummy frames are skipped because it doesn't make much
1412 sense to stop unwinding at a dummy frame. One place where a dummy
1413 frame may have an address "inside_main_func" is on HPUX. On HPUX, the
1414 pcsqh register (space register for the instruction at the head of the
1415 instruction queue) cannot be written directly; the only way to set it
1416 is to branch to code that is in the target space. In order to implement
1417 frame dummies on HPUX, the called function is made to jump back to where
1418 the inferior was when the user function was called. If gdb was inside
1419 the main function when we created the dummy frame, the dummy frame will
1420 point inside the main function. */
03febf99 1421 if (this_frame->level >= 0
cc9bed83 1422 && get_frame_type (this_frame) != DUMMY_FRAME
25d29d70 1423 && !backtrace_past_main
c8cd9f6c
AC
1424 && inside_main_func (this_frame))
1425 /* Don't unwind past main(). Note, this is done _before_ the
1426 frame has been marked as previously unwound. That way if the
1427 user later decides to enable unwinds past main(), that will
1428 automatically happen. */
ac2bd0a9 1429 {
5613d8d3 1430 frame_debug_got_null_frame (gdb_stdlog, this_frame, "inside main func");
ac2bd0a9
AC
1431 return NULL;
1432 }
eb4f72c5 1433
4a5e53e8
DJ
1434 /* If the user's backtrace limit has been exceeded, stop. We must
1435 add two to the current level; one of those accounts for backtrace_limit
1436 being 1-based and the level being 0-based, and the other accounts for
1437 the level of the new frame instead of the level of the current
1438 frame. */
1439 if (this_frame->level + 2 > backtrace_limit)
25d29d70 1440 {
4a5e53e8
DJ
1441 frame_debug_got_null_frame (gdb_stdlog, this_frame,
1442 "backtrace limit exceeded");
1443 return NULL;
25d29d70
AC
1444 }
1445
0714963c
AC
1446 /* If we're already inside the entry function for the main objfile,
1447 then it isn't valid. Don't apply this test to a dummy frame -
bbde78fa 1448 dummy frame PCs typically land in the entry func. Don't apply
0714963c
AC
1449 this test to the sentinel frame. Sentinel frames should always
1450 be allowed to unwind. */
2f72f850
AC
1451 /* NOTE: cagney/2003-07-07: Fixed a bug in inside_main_func() -
1452 wasn't checking for "main" in the minimal symbols. With that
1453 fixed asm-source tests now stop in "main" instead of halting the
bbde78fa 1454 backtrace in weird and wonderful ways somewhere inside the entry
2f72f850
AC
1455 file. Suspect that tests for inside the entry file/func were
1456 added to work around that (now fixed) case. */
0714963c
AC
1457 /* NOTE: cagney/2003-07-15: danielj (if I'm reading it right)
1458 suggested having the inside_entry_func test use the
bbde78fa
JM
1459 inside_main_func() msymbol trick (along with entry_point_address()
1460 I guess) to determine the address range of the start function.
0714963c
AC
1461 That should provide a far better stopper than the current
1462 heuristics. */
2315ffec
RC
1463 /* NOTE: tausq/2004-10-09: this is needed if, for example, the compiler
1464 applied tail-call optimizations to main so that a function called
1465 from main returns directly to the caller of main. Since we don't
1466 stop at main, we should at least stop at the entry point of the
1467 application. */
1468 if (!backtrace_past_entry
1d225535 1469 && get_frame_type (this_frame) != DUMMY_FRAME && this_frame->level >= 0
6e4c6c91 1470 && inside_entry_func (this_frame))
0714963c 1471 {
5613d8d3 1472 frame_debug_got_null_frame (gdb_stdlog, this_frame, "inside entry func");
0714963c
AC
1473 return NULL;
1474 }
1475
39ee2ff0
AC
1476 /* Assume that the only way to get a zero PC is through something
1477 like a SIGSEGV or a dummy frame, and hence that NORMAL frames
1478 will never unwind a zero PC. */
1479 if (this_frame->level > 0
1480 && get_frame_type (this_frame) == NORMAL_FRAME
1481 && get_frame_type (get_next_frame (this_frame)) == NORMAL_FRAME
1482 && get_frame_pc (this_frame) == 0)
1483 {
1484 frame_debug_got_null_frame (gdb_stdlog, this_frame, "zero PC");
1485 return NULL;
1486 }
1487
5613d8d3 1488 return get_prev_frame_1 (this_frame);
eb4f72c5
AC
1489}
1490
4c1e7e9d
AC
1491CORE_ADDR
1492get_frame_pc (struct frame_info *frame)
1493{
d1340264
AC
1494 gdb_assert (frame->next != NULL);
1495 return frame_pc_unwind (frame->next);
4c1e7e9d
AC
1496}
1497
93d42b30
DJ
1498/* Return an address that falls within NEXT_FRAME's caller's code
1499 block, assuming that the caller is a THIS_TYPE frame. */
8edd5d01
AC
1500
1501CORE_ADDR
93d42b30
DJ
1502frame_unwind_address_in_block (struct frame_info *next_frame,
1503 enum frame_type this_type)
8edd5d01
AC
1504{
1505 /* A draft address. */
1506 CORE_ADDR pc = frame_pc_unwind (next_frame);
1507
93d42b30
DJ
1508 /* If NEXT_FRAME was called by a signal frame or dummy frame, then
1509 we shold not adjust the unwound PC. These frames may not call
1510 their next frame in the normal way; the operating system or GDB
1511 may have pushed their resume address manually onto the stack, so
1512 it may be the very first instruction. Even if the resume address
1513 was not manually pushed, they expect to be returned to. */
1514 if (this_type != NORMAL_FRAME)
1515 return pc;
1516
8edd5d01
AC
1517 /* If THIS frame is not inner most (i.e., NEXT isn't the sentinel),
1518 and NEXT is `normal' (i.e., not a sigtramp, dummy, ....) THIS
1519 frame's PC ends up pointing at the instruction fallowing the
1520 "call". Adjust that PC value so that it falls on the call
1521 instruction (which, hopefully, falls within THIS frame's code
93d42b30 1522 block). So far it's proved to be a very good approximation. See
bbde78fa 1523 get_frame_type() for why ->type can't be used. */
8edd5d01
AC
1524 if (next_frame->level >= 0
1525 && get_frame_type (next_frame) == NORMAL_FRAME)
1526 --pc;
1527 return pc;
1528}
1529
1530CORE_ADDR
1531get_frame_address_in_block (struct frame_info *this_frame)
1532{
93d42b30
DJ
1533 return frame_unwind_address_in_block (this_frame->next,
1534 get_frame_type (this_frame));
8edd5d01
AC
1535}
1536
1058bca7
AC
1537static int
1538pc_notcurrent (struct frame_info *frame)
1539{
1540 /* If FRAME is not the innermost frame, that normally means that
1541 FRAME->pc points at the return instruction (which is *after* the
1542 call instruction), and we want to get the line containing the
1543 call (because the call is where the user thinks the program is).
1544 However, if the next frame is either a SIGTRAMP_FRAME or a
1545 DUMMY_FRAME, then the next frame will contain a saved interrupt
1546 PC and such a PC indicates the current (rather than next)
1547 instruction/line, consequently, for such cases, want to get the
1548 line containing fi->pc. */
1549 struct frame_info *next = get_next_frame (frame);
1550 int notcurrent = (next != NULL && get_frame_type (next) == NORMAL_FRAME);
1551 return notcurrent;
1552}
1553
1554void
1555find_frame_sal (struct frame_info *frame, struct symtab_and_line *sal)
1556{
11889732 1557 (*sal) = find_pc_line (get_frame_pc (frame), pc_notcurrent (frame));
1058bca7
AC
1558}
1559
c193f6ac
AC
1560/* Per "frame.h", return the ``address'' of the frame. Code should
1561 really be using get_frame_id(). */
1562CORE_ADDR
1563get_frame_base (struct frame_info *fi)
1564{
d0a55772 1565 return get_frame_id (fi).stack_addr;
c193f6ac
AC
1566}
1567
da62e633
AC
1568/* High-level offsets into the frame. Used by the debug info. */
1569
1570CORE_ADDR
1571get_frame_base_address (struct frame_info *fi)
1572{
7df05f2b 1573 if (get_frame_type (fi) != NORMAL_FRAME)
da62e633
AC
1574 return 0;
1575 if (fi->base == NULL)
e8a89fe2 1576 fi->base = frame_base_find_by_frame (fi->next);
da62e633
AC
1577 /* Sneaky: If the low-level unwind and high-level base code share a
1578 common unwinder, let them share the prologue cache. */
1579 if (fi->base->unwind == fi->unwind)
1580 return fi->base->this_base (fi->next, &fi->prologue_cache);
1581 return fi->base->this_base (fi->next, &fi->base_cache);
1582}
1583
1584CORE_ADDR
1585get_frame_locals_address (struct frame_info *fi)
1586{
1587 void **cache;
7df05f2b 1588 if (get_frame_type (fi) != NORMAL_FRAME)
da62e633
AC
1589 return 0;
1590 /* If there isn't a frame address method, find it. */
1591 if (fi->base == NULL)
e8a89fe2 1592 fi->base = frame_base_find_by_frame (fi->next);
da62e633
AC
1593 /* Sneaky: If the low-level unwind and high-level base code share a
1594 common unwinder, let them share the prologue cache. */
1595 if (fi->base->unwind == fi->unwind)
1596 cache = &fi->prologue_cache;
1597 else
1598 cache = &fi->base_cache;
1599 return fi->base->this_locals (fi->next, cache);
1600}
1601
1602CORE_ADDR
1603get_frame_args_address (struct frame_info *fi)
1604{
1605 void **cache;
7df05f2b 1606 if (get_frame_type (fi) != NORMAL_FRAME)
da62e633
AC
1607 return 0;
1608 /* If there isn't a frame address method, find it. */
1609 if (fi->base == NULL)
e8a89fe2 1610 fi->base = frame_base_find_by_frame (fi->next);
da62e633
AC
1611 /* Sneaky: If the low-level unwind and high-level base code share a
1612 common unwinder, let them share the prologue cache. */
1613 if (fi->base->unwind == fi->unwind)
1614 cache = &fi->prologue_cache;
1615 else
1616 cache = &fi->base_cache;
1617 return fi->base->this_args (fi->next, cache);
1618}
1619
85cf597a
AC
1620/* Level of the selected frame: 0 for innermost, 1 for its caller, ...
1621 or -1 for a NULL frame. */
1622
1623int
1624frame_relative_level (struct frame_info *fi)
1625{
1626 if (fi == NULL)
1627 return -1;
1628 else
1629 return fi->level;
1630}
1631
5a203e44
AC
1632enum frame_type
1633get_frame_type (struct frame_info *frame)
1634{
c1bf6f65
AC
1635 if (frame->unwind == NULL)
1636 /* Initialize the frame's unwinder because that's what
1637 provides the frame's type. */
1638 frame->unwind = frame_unwind_find_by_frame (frame->next,
1639 &frame->prologue_cache);
1640 return frame->unwind->type;
5a203e44
AC
1641}
1642
b87efeee 1643void
2f107107 1644deprecated_update_frame_pc_hack (struct frame_info *frame, CORE_ADDR pc)
b87efeee 1645{
7f78e237
AC
1646 if (frame_debug)
1647 fprintf_unfiltered (gdb_stdlog,
1648 "{ deprecated_update_frame_pc_hack (frame=%d,pc=0x%s) }\n",
1649 frame->level, paddr_nz (pc));
e0d2ae16 1650 /* NOTE: cagney/2003-03-11: Some architectures (e.g., Arm) are
bbde78fa 1651 maintaining a locally allocated frame object. Since such frames
e0d2ae16
AC
1652 are not in the frame chain, it isn't possible to assume that the
1653 frame has a next. Sigh. */
1654 if (frame->next != NULL)
1655 {
1656 /* While we're at it, update this frame's cached PC value, found
1657 in the next frame. Oh for the day when "struct frame_info"
1658 is opaque and this hack on hack can just go away. */
d1340264
AC
1659 frame->next->prev_pc.value = pc;
1660 frame->next->prev_pc.p = 1;
e0d2ae16 1661 }
2f107107
AC
1662}
1663
1664void
1665deprecated_update_frame_base_hack (struct frame_info *frame, CORE_ADDR base)
1666{
7f78e237
AC
1667 if (frame_debug)
1668 fprintf_unfiltered (gdb_stdlog,
1669 "{ deprecated_update_frame_base_hack (frame=%d,base=0x%s) }\n",
1670 frame->level, paddr_nz (base));
2f107107 1671 /* See comment in "frame.h". */
d0a55772 1672 frame->this_id.value.stack_addr = base;
b87efeee
AC
1673}
1674
ae1e7417
AC
1675/* Memory access methods. */
1676
1677void
10c42a71
AC
1678get_frame_memory (struct frame_info *this_frame, CORE_ADDR addr,
1679 gdb_byte *buf, int len)
ae1e7417
AC
1680{
1681 read_memory (addr, buf, len);
1682}
1683
1684LONGEST
1685get_frame_memory_signed (struct frame_info *this_frame, CORE_ADDR addr,
1686 int len)
1687{
1688 return read_memory_integer (addr, len);
1689}
1690
1691ULONGEST
1692get_frame_memory_unsigned (struct frame_info *this_frame, CORE_ADDR addr,
1693 int len)
1694{
1695 return read_memory_unsigned_integer (addr, len);
1696}
1697
304396fb
AC
1698int
1699safe_frame_unwind_memory (struct frame_info *this_frame,
10c42a71 1700 CORE_ADDR addr, gdb_byte *buf, int len)
304396fb 1701{
359a9262
JB
1702 /* NOTE: read_memory_nobpt returns zero on success! */
1703 return !read_memory_nobpt (addr, buf, len);
304396fb
AC
1704}
1705
ae1e7417
AC
1706/* Architecture method. */
1707
1708struct gdbarch *
1709get_frame_arch (struct frame_info *this_frame)
1710{
1711 return current_gdbarch;
1712}
1713
a9e5fdc2
AC
1714/* Stack pointer methods. */
1715
1716CORE_ADDR
1717get_frame_sp (struct frame_info *this_frame)
1718{
1719 return frame_sp_unwind (this_frame->next);
1720}
1721
1722CORE_ADDR
1723frame_sp_unwind (struct frame_info *next_frame)
1724{
b1bd0044 1725 struct gdbarch *gdbarch = get_frame_arch (next_frame);
bbde78fa 1726 /* Normality - an architecture that provides a way of obtaining any
a9e5fdc2 1727 frame inner-most address. */
b1bd0044
UW
1728 if (gdbarch_unwind_sp_p (gdbarch))
1729 return gdbarch_unwind_sp (gdbarch, next_frame);
a9e5fdc2 1730 /* Now things are really are grim. Hope that the value returned by
3e8c568d 1731 the gdbarch_sp_regnum register is meaningful. */
b1bd0044 1732 if (gdbarch_sp_regnum (gdbarch) >= 0)
a9e5fdc2
AC
1733 {
1734 ULONGEST sp;
3e8c568d 1735 frame_unwind_unsigned_register (next_frame,
b1bd0044 1736 gdbarch_sp_regnum (gdbarch), &sp);
a9e5fdc2
AC
1737 return sp;
1738 }
e2e0b3e5 1739 internal_error (__FILE__, __LINE__, _("Missing unwind SP method"));
a9e5fdc2
AC
1740}
1741
55feb689
DJ
1742/* Return the reason why we can't unwind past FRAME. */
1743
1744enum unwind_stop_reason
1745get_frame_unwind_stop_reason (struct frame_info *frame)
1746{
1747 /* If we haven't tried to unwind past this point yet, then assume
1748 that unwinding would succeed. */
1749 if (frame->prev_p == 0)
1750 return UNWIND_NO_REASON;
1751
1752 /* Otherwise, we set a reason when we succeeded (or failed) to
1753 unwind. */
1754 return frame->stop_reason;
1755}
1756
1757/* Return a string explaining REASON. */
1758
1759const char *
1760frame_stop_reason_string (enum unwind_stop_reason reason)
1761{
1762 switch (reason)
1763 {
1764 case UNWIND_NULL_ID:
1765 return _("unwinder did not report frame ID");
1766
1767 case UNWIND_INNER_ID:
1768 return _("previous frame inner to this frame (corrupt stack?)");
1769
1770 case UNWIND_SAME_ID:
1771 return _("previous frame identical to this frame (corrupt stack?)");
1772
e48af409
DJ
1773 case UNWIND_NO_SAVED_PC:
1774 return _("frame did not save the PC");
1775
55feb689
DJ
1776 case UNWIND_NO_REASON:
1777 case UNWIND_FIRST_ERROR:
1778 default:
1779 internal_error (__FILE__, __LINE__,
1780 "Invalid frame stop reason");
1781 }
1782}
1783
b9362cc7
AC
1784extern initialize_file_ftype _initialize_frame; /* -Wmissing-prototypes */
1785
25d29d70
AC
1786static struct cmd_list_element *set_backtrace_cmdlist;
1787static struct cmd_list_element *show_backtrace_cmdlist;
1788
1789static void
1790set_backtrace_cmd (char *args, int from_tty)
1791{
1792 help_list (set_backtrace_cmdlist, "set backtrace ", -1, gdb_stdout);
1793}
1794
1795static void
1796show_backtrace_cmd (char *args, int from_tty)
1797{
1798 cmd_show_list (show_backtrace_cmdlist, from_tty, "");
1799}
1800
4c1e7e9d
AC
1801void
1802_initialize_frame (void)
1803{
1804 obstack_init (&frame_cache_obstack);
eb4f72c5 1805
f4c5303c
OF
1806 observer_attach_target_changed (frame_observer_target_changed);
1807
1bedd215 1808 add_prefix_cmd ("backtrace", class_maintenance, set_backtrace_cmd, _("\
25d29d70 1809Set backtrace specific variables.\n\
1bedd215 1810Configure backtrace variables such as the backtrace limit"),
25d29d70
AC
1811 &set_backtrace_cmdlist, "set backtrace ",
1812 0/*allow-unknown*/, &setlist);
1bedd215 1813 add_prefix_cmd ("backtrace", class_maintenance, show_backtrace_cmd, _("\
25d29d70 1814Show backtrace specific variables\n\
1bedd215 1815Show backtrace variables such as the backtrace limit"),
25d29d70
AC
1816 &show_backtrace_cmdlist, "show backtrace ",
1817 0/*allow-unknown*/, &showlist);
1818
1819 add_setshow_boolean_cmd ("past-main", class_obscure,
7915a72c
AC
1820 &backtrace_past_main, _("\
1821Set whether backtraces should continue past \"main\"."), _("\
1822Show whether backtraces should continue past \"main\"."), _("\
eb4f72c5
AC
1823Normally the caller of \"main\" is not of interest, so GDB will terminate\n\
1824the backtrace at \"main\". Set this variable if you need to see the rest\n\
7915a72c 1825of the stack trace."),
2c5b56ce 1826 NULL,
920d2a44 1827 show_backtrace_past_main,
2c5b56ce 1828 &set_backtrace_cmdlist,
25d29d70
AC
1829 &show_backtrace_cmdlist);
1830
2315ffec 1831 add_setshow_boolean_cmd ("past-entry", class_obscure,
7915a72c
AC
1832 &backtrace_past_entry, _("\
1833Set whether backtraces should continue past the entry point of a program."),
1834 _("\
1835Show whether backtraces should continue past the entry point of a program."),
1836 _("\
2315ffec
RC
1837Normally there are no callers beyond the entry point of a program, so GDB\n\
1838will terminate the backtrace there. Set this variable if you need to see \n\
7915a72c 1839the rest of the stack trace."),
2c5b56ce 1840 NULL,
920d2a44 1841 show_backtrace_past_entry,
2c5b56ce 1842 &set_backtrace_cmdlist,
2315ffec
RC
1843 &show_backtrace_cmdlist);
1844
4a5e53e8
DJ
1845 add_setshow_integer_cmd ("limit", class_obscure,
1846 &backtrace_limit, _("\
7915a72c
AC
1847Set an upper bound on the number of backtrace levels."), _("\
1848Show the upper bound on the number of backtrace levels."), _("\
fec74868 1849No more than the specified number of frames can be displayed or examined.\n\
7915a72c 1850Zero is unlimited."),
4a5e53e8
DJ
1851 NULL,
1852 show_backtrace_limit,
1853 &set_backtrace_cmdlist,
1854 &show_backtrace_cmdlist);
ac2bd0a9
AC
1855
1856 /* Debug this files internals. */
85c07804
AC
1857 add_setshow_zinteger_cmd ("frame", class_maintenance, &frame_debug, _("\
1858Set frame debugging."), _("\
1859Show frame debugging."), _("\
1860When non-zero, frame specific internal debugging is enabled."),
1861 NULL,
920d2a44 1862 show_frame_debug,
85c07804 1863 &setdebuglist, &showdebuglist);
4c1e7e9d 1864}
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