* gdbarch.sh (push_dummy_code): Add REGCACHE argument.
[deliverable/binutils-gdb.git] / gdb / regcache.c
CommitLineData
32178cab 1/* Cache and manage the values of registers for GDB, the GNU debugger.
3fadccb3 2
6aba47ca
DJ
3 Copyright (C) 1986, 1987, 1989, 1991, 1994, 1995, 1996, 1998, 2000, 2001,
4 2002, 2004, 2007 Free Software Foundation, Inc.
32178cab
MS
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
197e01b6
EZ
20 Foundation, Inc., 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
32178cab
MS
22
23#include "defs.h"
32178cab
MS
24#include "inferior.h"
25#include "target.h"
26#include "gdbarch.h"
705152c5 27#include "gdbcmd.h"
4e052eda 28#include "regcache.h"
b59ff9d5 29#include "reggroups.h"
61a0eb5b 30#include "gdb_assert.h"
b66d6d2e 31#include "gdb_string.h"
af030b9a 32#include "gdbcmd.h" /* For maintenanceprintlist. */
f4c5303c 33#include "observer.h"
32178cab
MS
34
35/*
36 * DATA STRUCTURE
37 *
38 * Here is the actual register cache.
39 */
40
3fadccb3
AC
41/* Per-architecture object describing the layout of a register cache.
42 Computed once when the architecture is created */
43
44struct gdbarch_data *regcache_descr_handle;
45
46struct regcache_descr
47{
48 /* The architecture this descriptor belongs to. */
49 struct gdbarch *gdbarch;
50
bb1db049
AC
51 /* The raw register cache. Each raw (or hard) register is supplied
52 by the target interface. The raw cache should not contain
53 redundant information - if the PC is constructed from two
d2f0b918 54 registers then those registers and not the PC lives in the raw
bb1db049 55 cache. */
3fadccb3
AC
56 int nr_raw_registers;
57 long sizeof_raw_registers;
58 long sizeof_raw_register_valid_p;
59
d138e37a
AC
60 /* The cooked register space. Each cooked register in the range
61 [0..NR_RAW_REGISTERS) is direct-mapped onto the corresponding raw
62 register. The remaining [NR_RAW_REGISTERS
02f60eae 63 .. NR_COOKED_REGISTERS) (a.k.a. pseudo registers) are mapped onto
d138e37a 64 both raw registers and memory by the architecture methods
02f60eae 65 gdbarch_pseudo_register_read and gdbarch_pseudo_register_write. */
d138e37a 66 int nr_cooked_registers;
067df2e5
AC
67 long sizeof_cooked_registers;
68 long sizeof_cooked_register_valid_p;
d138e37a
AC
69
70 /* Offset and size (in 8 bit bytes), of reach register in the
71 register cache. All registers (including those in the range
72 [NR_RAW_REGISTERS .. NR_COOKED_REGISTERS) are given an offset.
73 Assigning all registers an offset makes it possible to keep
74 legacy code, such as that found in read_register_bytes() and
75 write_register_bytes() working. */
3fadccb3 76 long *register_offset;
3fadccb3 77 long *sizeof_register;
3fadccb3 78
bb425013
AC
79 /* Cached table containing the type of each register. */
80 struct type **register_type;
3fadccb3
AC
81};
82
3fadccb3
AC
83static void *
84init_regcache_descr (struct gdbarch *gdbarch)
85{
86 int i;
87 struct regcache_descr *descr;
88 gdb_assert (gdbarch != NULL);
89
bb425013 90 /* Create an initial, zero filled, table. */
116f06ea 91 descr = GDBARCH_OBSTACK_ZALLOC (gdbarch, struct regcache_descr);
3fadccb3 92 descr->gdbarch = gdbarch;
3fadccb3 93
d138e37a
AC
94 /* Total size of the register space. The raw registers are mapped
95 directly onto the raw register cache while the pseudo's are
3fadccb3 96 either mapped onto raw-registers or memory. */
f57d151a
UW
97 descr->nr_cooked_registers = gdbarch_num_regs (current_gdbarch)
98 + gdbarch_num_pseudo_regs (current_gdbarch);
99 descr->sizeof_cooked_register_valid_p = gdbarch_num_regs (current_gdbarch)
100 + gdbarch_num_pseudo_regs
101 (current_gdbarch);
3fadccb3 102
bb425013 103 /* Fill in a table of register types. */
116f06ea
AC
104 descr->register_type
105 = GDBARCH_OBSTACK_CALLOC (gdbarch, descr->nr_cooked_registers, struct type *);
bb425013 106 for (i = 0; i < descr->nr_cooked_registers; i++)
336a3131 107 descr->register_type[i] = gdbarch_register_type (gdbarch, i);
bb425013 108
bb1db049
AC
109 /* Construct a strictly RAW register cache. Don't allow pseudo's
110 into the register cache. */
f57d151a 111 descr->nr_raw_registers = gdbarch_num_regs (current_gdbarch);
bb1db049
AC
112
113 /* FIXME: cagney/2002-08-13: Overallocate the register_valid_p
114 array. This pretects GDB from erant code that accesses elements
f57d151a
UW
115 of the global register_valid_p[] array in the range
116 [gdbarch_num_regs .. gdbarch_num_regs + gdbarch_num_pseudo_regs). */
bb1db049
AC
117 descr->sizeof_raw_register_valid_p = descr->sizeof_cooked_register_valid_p;
118
067df2e5 119 /* Lay out the register cache.
3fadccb3 120
bb425013
AC
121 NOTE: cagney/2002-05-22: Only register_type() is used when
122 constructing the register cache. It is assumed that the
123 register's raw size, virtual size and type length are all the
124 same. */
3fadccb3
AC
125
126 {
127 long offset = 0;
116f06ea
AC
128 descr->sizeof_register
129 = GDBARCH_OBSTACK_CALLOC (gdbarch, descr->nr_cooked_registers, long);
130 descr->register_offset
131 = GDBARCH_OBSTACK_CALLOC (gdbarch, descr->nr_cooked_registers, long);
d138e37a 132 for (i = 0; i < descr->nr_cooked_registers; i++)
3fadccb3 133 {
bb425013 134 descr->sizeof_register[i] = TYPE_LENGTH (descr->register_type[i]);
3fadccb3
AC
135 descr->register_offset[i] = offset;
136 offset += descr->sizeof_register[i];
123a958e 137 gdb_assert (MAX_REGISTER_SIZE >= descr->sizeof_register[i]);
3fadccb3
AC
138 }
139 /* Set the real size of the register cache buffer. */
067df2e5 140 descr->sizeof_cooked_registers = offset;
3fadccb3
AC
141 }
142
067df2e5 143 /* FIXME: cagney/2002-05-22: Should only need to allocate space for
ce2826aa 144 the raw registers. Unfortunately some code still accesses the
067df2e5
AC
145 register array directly using the global registers[]. Until that
146 code has been purged, play safe and over allocating the register
147 buffer. Ulgh! */
148 descr->sizeof_raw_registers = descr->sizeof_cooked_registers;
149
3fadccb3
AC
150 return descr;
151}
152
153static struct regcache_descr *
154regcache_descr (struct gdbarch *gdbarch)
155{
156 return gdbarch_data (gdbarch, regcache_descr_handle);
157}
158
bb425013
AC
159/* Utility functions returning useful register attributes stored in
160 the regcache descr. */
161
162struct type *
163register_type (struct gdbarch *gdbarch, int regnum)
164{
165 struct regcache_descr *descr = regcache_descr (gdbarch);
166 gdb_assert (regnum >= 0 && regnum < descr->nr_cooked_registers);
167 return descr->register_type[regnum];
168}
169
0ed04cce
AC
170/* Utility functions returning useful register attributes stored in
171 the regcache descr. */
172
08a617da
AC
173int
174register_size (struct gdbarch *gdbarch, int regnum)
175{
176 struct regcache_descr *descr = regcache_descr (gdbarch);
177 int size;
f57d151a
UW
178 gdb_assert (regnum >= 0
179 && regnum < (gdbarch_num_regs (current_gdbarch)
180 + gdbarch_num_pseudo_regs (current_gdbarch)));
08a617da 181 size = descr->sizeof_register[regnum];
08a617da
AC
182 return size;
183}
184
3fadccb3
AC
185/* The register cache for storing raw register values. */
186
187struct regcache
188{
189 struct regcache_descr *descr;
51b1fe4e 190 /* The register buffers. A read-only register cache can hold the
f57d151a
UW
191 full [0 .. gdbarch_num_regs + gdbarch_num_pseudo_regs) while a read/write
192 register cache can only hold [0 .. gdbarch_num_regs). */
2d522557 193 gdb_byte *registers;
b05e64e5
FR
194 /* Register cache status:
195 register_valid_p[REG] == 0 if REG value is not in the cache
196 > 0 if REG value is in the cache
197 < 0 if REG value is permanently unavailable */
198 signed char *register_valid_p;
2d28509a
AC
199 /* Is this a read-only cache? A read-only cache is used for saving
200 the target's register state (e.g, across an inferior function
201 call or just before forcing a function return). A read-only
202 cache can only be updated via the methods regcache_dup() and
203 regcache_cpy(). The actual contents are determined by the
204 reggroup_save and reggroup_restore methods. */
205 int readonly_p;
3fadccb3
AC
206};
207
208struct regcache *
209regcache_xmalloc (struct gdbarch *gdbarch)
210{
211 struct regcache_descr *descr;
212 struct regcache *regcache;
213 gdb_assert (gdbarch != NULL);
214 descr = regcache_descr (gdbarch);
215 regcache = XMALLOC (struct regcache);
216 regcache->descr = descr;
51b1fe4e 217 regcache->registers
2d522557 218 = XCALLOC (descr->sizeof_raw_registers, gdb_byte);
51b1fe4e 219 regcache->register_valid_p
2d522557 220 = XCALLOC (descr->sizeof_raw_register_valid_p, gdb_byte);
2d28509a 221 regcache->readonly_p = 1;
3fadccb3
AC
222 return regcache;
223}
224
225void
226regcache_xfree (struct regcache *regcache)
227{
228 if (regcache == NULL)
229 return;
51b1fe4e
AC
230 xfree (regcache->registers);
231 xfree (regcache->register_valid_p);
3fadccb3
AC
232 xfree (regcache);
233}
234
b9362cc7 235static void
36160dc4
AC
236do_regcache_xfree (void *data)
237{
238 regcache_xfree (data);
239}
240
241struct cleanup *
242make_cleanup_regcache_xfree (struct regcache *regcache)
243{
244 return make_cleanup (do_regcache_xfree, regcache);
245}
246
41d35cb0
MK
247/* Return REGCACHE's architecture. */
248
249struct gdbarch *
250get_regcache_arch (const struct regcache *regcache)
251{
252 return regcache->descr->gdbarch;
253}
254
51b1fe4e
AC
255/* Return a pointer to register REGNUM's buffer cache. */
256
2d522557 257static gdb_byte *
9a661b68 258register_buffer (const struct regcache *regcache, int regnum)
51b1fe4e
AC
259{
260 return regcache->registers + regcache->descr->register_offset[regnum];
261}
262
2d28509a 263void
5602984a
AC
264regcache_save (struct regcache *dst, regcache_cooked_read_ftype *cooked_read,
265 void *src)
2d28509a
AC
266{
267 struct gdbarch *gdbarch = dst->descr->gdbarch;
2d522557 268 gdb_byte buf[MAX_REGISTER_SIZE];
2d28509a 269 int regnum;
2d28509a 270 /* The DST should be `read-only', if it wasn't then the save would
5602984a 271 end up trying to write the register values back out to the
2d28509a 272 target. */
2d28509a
AC
273 gdb_assert (dst->readonly_p);
274 /* Clear the dest. */
275 memset (dst->registers, 0, dst->descr->sizeof_cooked_registers);
276 memset (dst->register_valid_p, 0, dst->descr->sizeof_cooked_register_valid_p);
277 /* Copy over any registers (identified by their membership in the
f57d151a
UW
278 save_reggroup) and mark them as valid. The full [0 .. gdbarch_num_regs +
279 gdbarch_num_pseudo_regs) range is checked since some architectures need
5602984a 280 to save/restore `cooked' registers that live in memory. */
2d28509a
AC
281 for (regnum = 0; regnum < dst->descr->nr_cooked_registers; regnum++)
282 {
283 if (gdbarch_register_reggroup_p (gdbarch, regnum, save_reggroup))
284 {
5602984a
AC
285 int valid = cooked_read (src, regnum, buf);
286 if (valid)
287 {
288 memcpy (register_buffer (dst, regnum), buf,
289 register_size (gdbarch, regnum));
290 dst->register_valid_p[regnum] = 1;
291 }
2d28509a
AC
292 }
293 }
294}
295
296void
5602984a
AC
297regcache_restore (struct regcache *dst,
298 regcache_cooked_read_ftype *cooked_read,
2d522557 299 void *cooked_read_context)
2d28509a
AC
300{
301 struct gdbarch *gdbarch = dst->descr->gdbarch;
2d522557 302 gdb_byte buf[MAX_REGISTER_SIZE];
2d28509a 303 int regnum;
5602984a
AC
304 /* The dst had better not be read-only. If it is, the `restore'
305 doesn't make much sense. */
2d28509a 306 gdb_assert (!dst->readonly_p);
2d28509a 307 /* Copy over any registers, being careful to only restore those that
f57d151a
UW
308 were both saved and need to be restored. The full [0 .. gdbarch_num_regs
309 + gdbarch_num_pseudo_regs) range is checked since some architectures need
5602984a
AC
310 to save/restore `cooked' registers that live in memory. */
311 for (regnum = 0; regnum < dst->descr->nr_cooked_registers; regnum++)
2d28509a 312 {
5602984a 313 if (gdbarch_register_reggroup_p (gdbarch, regnum, restore_reggroup))
2d28509a 314 {
2d522557 315 int valid = cooked_read (cooked_read_context, regnum, buf);
5602984a
AC
316 if (valid)
317 regcache_cooked_write (dst, regnum, buf);
2d28509a
AC
318 }
319 }
320}
321
5602984a 322static int
2d522557 323do_cooked_read (void *src, int regnum, gdb_byte *buf)
5602984a
AC
324{
325 struct regcache *regcache = src;
6f4e5a41 326 if (!regcache->register_valid_p[regnum] && regcache->readonly_p)
5602984a
AC
327 /* Don't even think about fetching a register from a read-only
328 cache when the register isn't yet valid. There isn't a target
329 from which the register value can be fetched. */
330 return 0;
331 regcache_cooked_read (regcache, regnum, buf);
332 return 1;
333}
334
335
3fadccb3
AC
336void
337regcache_cpy (struct regcache *dst, struct regcache *src)
338{
339 int i;
2d522557 340 gdb_byte *buf;
3fadccb3
AC
341 gdb_assert (src != NULL && dst != NULL);
342 gdb_assert (src->descr->gdbarch == dst->descr->gdbarch);
343 gdb_assert (src != dst);
2d28509a
AC
344 gdb_assert (src->readonly_p || dst->readonly_p);
345 if (!src->readonly_p)
5602984a 346 regcache_save (dst, do_cooked_read, src);
2d28509a 347 else if (!dst->readonly_p)
5602984a 348 regcache_restore (dst, do_cooked_read, src);
2d28509a
AC
349 else
350 regcache_cpy_no_passthrough (dst, src);
3fadccb3
AC
351}
352
353void
354regcache_cpy_no_passthrough (struct regcache *dst, struct regcache *src)
355{
356 int i;
357 gdb_assert (src != NULL && dst != NULL);
358 gdb_assert (src->descr->gdbarch == dst->descr->gdbarch);
359 /* NOTE: cagney/2002-05-17: Don't let the caller do a no-passthrough
360 move of data into the current_regcache(). Doing this would be
9564ee9f 361 silly - it would mean that valid_p would be completely invalid. */
3fadccb3 362 gdb_assert (dst != current_regcache);
51b1fe4e
AC
363 memcpy (dst->registers, src->registers, dst->descr->sizeof_raw_registers);
364 memcpy (dst->register_valid_p, src->register_valid_p,
3fadccb3
AC
365 dst->descr->sizeof_raw_register_valid_p);
366}
367
368struct regcache *
369regcache_dup (struct regcache *src)
370{
371 struct regcache *newbuf;
372 gdb_assert (current_regcache != NULL);
373 newbuf = regcache_xmalloc (src->descr->gdbarch);
374 regcache_cpy (newbuf, src);
375 return newbuf;
376}
377
378struct regcache *
379regcache_dup_no_passthrough (struct regcache *src)
380{
381 struct regcache *newbuf;
382 gdb_assert (current_regcache != NULL);
383 newbuf = regcache_xmalloc (src->descr->gdbarch);
384 regcache_cpy_no_passthrough (newbuf, src);
385 return newbuf;
386}
387
388int
6ed7ea50 389regcache_valid_p (const struct regcache *regcache, int regnum)
3fadccb3
AC
390{
391 gdb_assert (regcache != NULL);
6ed7ea50
UW
392 gdb_assert (regnum >= 0);
393 if (regcache->readonly_p)
394 gdb_assert (regnum < regcache->descr->nr_cooked_registers);
395 else
396 gdb_assert (regnum < regcache->descr->nr_raw_registers);
397
51b1fe4e 398 return regcache->register_valid_p[regnum];
3fadccb3
AC
399}
400
9c5ea4d9
UW
401void
402regcache_invalidate (struct regcache *regcache, int regnum)
403{
404 gdb_assert (regcache != NULL);
405 gdb_assert (regnum >= 0);
406 gdb_assert (!regcache->readonly_p);
407 gdb_assert (regnum < regcache->descr->nr_raw_registers);
408 regcache->register_valid_p[regnum] = 0;
409}
410
411
3fadccb3
AC
412/* Global structure containing the current regcache. */
413/* FIXME: cagney/2002-05-11: The two global arrays registers[] and
8262ee23 414 deprecated_register_valid[] currently point into this structure. */
3fadccb3
AC
415struct regcache *current_regcache;
416
5ebd2499 417/* NOTE: this is a write-through cache. There is no "dirty" bit for
32178cab
MS
418 recording if the register values have been changed (eg. by the
419 user). Therefore all registers must be written back to the
420 target when appropriate. */
421
39f77062 422/* The thread/process associated with the current set of registers. */
32178cab 423
39f77062 424static ptid_t registers_ptid;
32178cab 425
f4c5303c
OF
426/* Observer for the target_changed event. */
427
428void
429regcache_observer_target_changed (struct target_ops *target)
430{
431 registers_changed ();
432}
433
32178cab
MS
434/* Low level examining and depositing of registers.
435
436 The caller is responsible for making sure that the inferior is
437 stopped before calling the fetching routines, or it will get
438 garbage. (a change from GDB version 3, in which the caller got the
439 value from the last stop). */
440
441/* REGISTERS_CHANGED ()
442
443 Indicate that registers may have changed, so invalidate the cache. */
444
445void
446registers_changed (void)
447{
448 int i;
32178cab 449
39f77062 450 registers_ptid = pid_to_ptid (-1);
32178cab
MS
451
452 /* Force cleanup of any alloca areas if using C alloca instead of
453 a builtin alloca. This particular call is used to clean up
454 areas allocated by low level target code which may build up
455 during lengthy interactions between gdb and the target before
456 gdb gives control to the user (ie watchpoints). */
457 alloca (0);
458
53826de9 459 for (i = 0; i < current_regcache->descr->nr_raw_registers; i++)
9c5ea4d9 460 regcache_invalidate (current_regcache, i);
32178cab
MS
461}
462
32178cab 463
61a0eb5b 464void
2d522557 465regcache_raw_read (struct regcache *regcache, int regnum, gdb_byte *buf)
61a0eb5b 466{
3fadccb3
AC
467 gdb_assert (regcache != NULL && buf != NULL);
468 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
3fadccb3
AC
469 /* Make certain that the register cache is up-to-date with respect
470 to the current thread. This switching shouldn't be necessary
471 only there is still only one target side register cache. Sigh!
472 On the bright side, at least there is a regcache object. */
2d28509a 473 if (!regcache->readonly_p)
3fadccb3
AC
474 {
475 gdb_assert (regcache == current_regcache);
476 if (! ptid_equal (registers_ptid, inferior_ptid))
477 {
478 registers_changed ();
479 registers_ptid = inferior_ptid;
480 }
56be3814
UW
481 if (!regcache_valid_p (regcache, regnum))
482 target_fetch_registers (regcache, regnum);
0a8146bf
AC
483#if 0
484 /* FIXME: cagney/2004-08-07: At present a number of targets
04c663e3
DA
485 forget (or didn't know that they needed) to set this leading to
486 panics. Also is the problem that targets need to indicate
0a8146bf
AC
487 that a register is in one of the possible states: valid,
488 undefined, unknown. The last of which isn't yet
489 possible. */
9c5ea4d9 490 gdb_assert (regcache_valid_p (regcache, regnum));
0a8146bf 491#endif
3fadccb3
AC
492 }
493 /* Copy the value directly into the register cache. */
51b1fe4e 494 memcpy (buf, register_buffer (regcache, regnum),
3fadccb3 495 regcache->descr->sizeof_register[regnum]);
61a0eb5b
AC
496}
497
28fc6740
AC
498void
499regcache_raw_read_signed (struct regcache *regcache, int regnum, LONGEST *val)
500{
2d522557 501 gdb_byte *buf;
28fc6740
AC
502 gdb_assert (regcache != NULL);
503 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
504 buf = alloca (regcache->descr->sizeof_register[regnum]);
505 regcache_raw_read (regcache, regnum, buf);
506 (*val) = extract_signed_integer (buf,
507 regcache->descr->sizeof_register[regnum]);
508}
509
510void
511regcache_raw_read_unsigned (struct regcache *regcache, int regnum,
512 ULONGEST *val)
513{
2d522557 514 gdb_byte *buf;
28fc6740
AC
515 gdb_assert (regcache != NULL);
516 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
517 buf = alloca (regcache->descr->sizeof_register[regnum]);
518 regcache_raw_read (regcache, regnum, buf);
519 (*val) = extract_unsigned_integer (buf,
520 regcache->descr->sizeof_register[regnum]);
521}
522
c00dcbe9
MK
523void
524regcache_raw_write_signed (struct regcache *regcache, int regnum, LONGEST val)
525{
526 void *buf;
527 gdb_assert (regcache != NULL);
528 gdb_assert (regnum >=0 && regnum < regcache->descr->nr_raw_registers);
529 buf = alloca (regcache->descr->sizeof_register[regnum]);
530 store_signed_integer (buf, regcache->descr->sizeof_register[regnum], val);
531 regcache_raw_write (regcache, regnum, buf);
532}
533
534void
535regcache_raw_write_unsigned (struct regcache *regcache, int regnum,
536 ULONGEST val)
537{
538 void *buf;
539 gdb_assert (regcache != NULL);
540 gdb_assert (regnum >=0 && regnum < regcache->descr->nr_raw_registers);
541 buf = alloca (regcache->descr->sizeof_register[regnum]);
542 store_unsigned_integer (buf, regcache->descr->sizeof_register[regnum], val);
543 regcache_raw_write (regcache, regnum, buf);
544}
545
68365089 546void
2d522557 547regcache_cooked_read (struct regcache *regcache, int regnum, gdb_byte *buf)
68365089 548{
d138e37a 549 gdb_assert (regnum >= 0);
68365089
AC
550 gdb_assert (regnum < regcache->descr->nr_cooked_registers);
551 if (regnum < regcache->descr->nr_raw_registers)
552 regcache_raw_read (regcache, regnum, buf);
2d28509a
AC
553 else if (regcache->readonly_p
554 && regnum < regcache->descr->nr_cooked_registers
555 && regcache->register_valid_p[regnum])
b2fa5097 556 /* Read-only register cache, perhaps the cooked value was cached? */
2d28509a
AC
557 memcpy (buf, register_buffer (regcache, regnum),
558 regcache->descr->sizeof_register[regnum]);
d138e37a 559 else
68365089
AC
560 gdbarch_pseudo_register_read (regcache->descr->gdbarch, regcache,
561 regnum, buf);
61a0eb5b
AC
562}
563
a378f419
AC
564void
565regcache_cooked_read_signed (struct regcache *regcache, int regnum,
566 LONGEST *val)
567{
2d522557 568 gdb_byte *buf;
a378f419 569 gdb_assert (regcache != NULL);
a66a9c23 570 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_cooked_registers);
a378f419
AC
571 buf = alloca (regcache->descr->sizeof_register[regnum]);
572 regcache_cooked_read (regcache, regnum, buf);
573 (*val) = extract_signed_integer (buf,
574 regcache->descr->sizeof_register[regnum]);
575}
576
577void
578regcache_cooked_read_unsigned (struct regcache *regcache, int regnum,
579 ULONGEST *val)
580{
2d522557 581 gdb_byte *buf;
a378f419 582 gdb_assert (regcache != NULL);
a66a9c23 583 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_cooked_registers);
a378f419
AC
584 buf = alloca (regcache->descr->sizeof_register[regnum]);
585 regcache_cooked_read (regcache, regnum, buf);
586 (*val) = extract_unsigned_integer (buf,
587 regcache->descr->sizeof_register[regnum]);
588}
589
a66a9c23
AC
590void
591regcache_cooked_write_signed (struct regcache *regcache, int regnum,
592 LONGEST val)
593{
594 void *buf;
595 gdb_assert (regcache != NULL);
596 gdb_assert (regnum >=0 && regnum < regcache->descr->nr_cooked_registers);
597 buf = alloca (regcache->descr->sizeof_register[regnum]);
598 store_signed_integer (buf, regcache->descr->sizeof_register[regnum], val);
599 regcache_cooked_write (regcache, regnum, buf);
600}
601
602void
603regcache_cooked_write_unsigned (struct regcache *regcache, int regnum,
604 ULONGEST val)
605{
606 void *buf;
607 gdb_assert (regcache != NULL);
608 gdb_assert (regnum >=0 && regnum < regcache->descr->nr_cooked_registers);
609 buf = alloca (regcache->descr->sizeof_register[regnum]);
610 store_unsigned_integer (buf, regcache->descr->sizeof_register[regnum], val);
611 regcache_cooked_write (regcache, regnum, buf);
612}
613
61a0eb5b 614void
2d522557
AC
615regcache_raw_write (struct regcache *regcache, int regnum,
616 const gdb_byte *buf)
61a0eb5b 617{
3fadccb3
AC
618 gdb_assert (regcache != NULL && buf != NULL);
619 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
2d28509a 620 gdb_assert (!regcache->readonly_p);
3fadccb3 621
3fadccb3
AC
622 /* On the sparc, writing %g0 is a no-op, so we don't even want to
623 change the registers array if something writes to this register. */
8d4c1ba3 624 if (gdbarch_cannot_store_register (current_gdbarch, regnum))
3fadccb3
AC
625 return;
626
3fadccb3
AC
627 /* Make certain that the correct cache is selected. */
628 gdb_assert (regcache == current_regcache);
629 if (! ptid_equal (registers_ptid, inferior_ptid))
630 {
631 registers_changed ();
632 registers_ptid = inferior_ptid;
633 }
634
635 /* If we have a valid copy of the register, and new value == old
636 value, then don't bother doing the actual store. */
637 if (regcache_valid_p (regcache, regnum)
638 && (memcmp (register_buffer (regcache, regnum), buf,
639 regcache->descr->sizeof_register[regnum]) == 0))
640 return;
641
316f2060 642 target_prepare_to_store (regcache);
3fadccb3
AC
643 memcpy (register_buffer (regcache, regnum), buf,
644 regcache->descr->sizeof_register[regnum]);
51b1fe4e 645 regcache->register_valid_p[regnum] = 1;
56be3814 646 target_store_registers (regcache, regnum);
61a0eb5b
AC
647}
648
68365089 649void
2d522557
AC
650regcache_cooked_write (struct regcache *regcache, int regnum,
651 const gdb_byte *buf)
68365089 652{
d138e37a 653 gdb_assert (regnum >= 0);
68365089
AC
654 gdb_assert (regnum < regcache->descr->nr_cooked_registers);
655 if (regnum < regcache->descr->nr_raw_registers)
656 regcache_raw_write (regcache, regnum, buf);
d138e37a 657 else
68365089 658 gdbarch_pseudo_register_write (regcache->descr->gdbarch, regcache,
d8124050 659 regnum, buf);
61a0eb5b
AC
660}
661
06c0b04e
AC
662/* Perform a partial register transfer using a read, modify, write
663 operation. */
664
665typedef void (regcache_read_ftype) (struct regcache *regcache, int regnum,
666 void *buf);
667typedef void (regcache_write_ftype) (struct regcache *regcache, int regnum,
668 const void *buf);
669
b9362cc7 670static void
06c0b04e
AC
671regcache_xfer_part (struct regcache *regcache, int regnum,
672 int offset, int len, void *in, const void *out,
2d522557
AC
673 void (*read) (struct regcache *regcache, int regnum,
674 gdb_byte *buf),
675 void (*write) (struct regcache *regcache, int regnum,
676 const gdb_byte *buf))
06c0b04e
AC
677{
678 struct regcache_descr *descr = regcache->descr;
fc1a4b47 679 gdb_byte reg[MAX_REGISTER_SIZE];
06c0b04e
AC
680 gdb_assert (offset >= 0 && offset <= descr->sizeof_register[regnum]);
681 gdb_assert (len >= 0 && offset + len <= descr->sizeof_register[regnum]);
682 /* Something to do? */
683 if (offset + len == 0)
684 return;
685 /* Read (when needed) ... */
686 if (in != NULL
687 || offset > 0
688 || offset + len < descr->sizeof_register[regnum])
689 {
690 gdb_assert (read != NULL);
691 read (regcache, regnum, reg);
692 }
693 /* ... modify ... */
694 if (in != NULL)
695 memcpy (in, reg + offset, len);
696 if (out != NULL)
697 memcpy (reg + offset, out, len);
698 /* ... write (when needed). */
699 if (out != NULL)
700 {
701 gdb_assert (write != NULL);
702 write (regcache, regnum, reg);
703 }
704}
705
706void
707regcache_raw_read_part (struct regcache *regcache, int regnum,
2d522557 708 int offset, int len, gdb_byte *buf)
06c0b04e
AC
709{
710 struct regcache_descr *descr = regcache->descr;
711 gdb_assert (regnum >= 0 && regnum < descr->nr_raw_registers);
712 regcache_xfer_part (regcache, regnum, offset, len, buf, NULL,
713 regcache_raw_read, regcache_raw_write);
714}
715
716void
717regcache_raw_write_part (struct regcache *regcache, int regnum,
2d522557 718 int offset, int len, const gdb_byte *buf)
06c0b04e
AC
719{
720 struct regcache_descr *descr = regcache->descr;
721 gdb_assert (regnum >= 0 && regnum < descr->nr_raw_registers);
722 regcache_xfer_part (regcache, regnum, offset, len, NULL, buf,
723 regcache_raw_read, regcache_raw_write);
724}
725
726void
727regcache_cooked_read_part (struct regcache *regcache, int regnum,
2d522557 728 int offset, int len, gdb_byte *buf)
06c0b04e
AC
729{
730 struct regcache_descr *descr = regcache->descr;
731 gdb_assert (regnum >= 0 && regnum < descr->nr_cooked_registers);
732 regcache_xfer_part (regcache, regnum, offset, len, buf, NULL,
733 regcache_cooked_read, regcache_cooked_write);
734}
735
736void
737regcache_cooked_write_part (struct regcache *regcache, int regnum,
2d522557 738 int offset, int len, const gdb_byte *buf)
06c0b04e
AC
739{
740 struct regcache_descr *descr = regcache->descr;
741 gdb_assert (regnum >= 0 && regnum < descr->nr_cooked_registers);
742 regcache_xfer_part (regcache, regnum, offset, len, NULL, buf,
743 regcache_cooked_read, regcache_cooked_write);
744}
32178cab 745
d3b22ed5
AC
746/* Hack to keep code that view the register buffer as raw bytes
747 working. */
748
749int
750register_offset_hack (struct gdbarch *gdbarch, int regnum)
751{
752 struct regcache_descr *descr = regcache_descr (gdbarch);
753 gdb_assert (regnum >= 0 && regnum < descr->nr_cooked_registers);
754 return descr->register_offset[regnum];
755}
756
5ebd2499 757/* Return the contents of register REGNUM as an unsigned integer. */
32178cab 758
173155e8 759ULONGEST
5ebd2499 760read_register (int regnum)
32178cab 761{
2d522557 762 gdb_byte *buf = alloca (register_size (current_gdbarch, regnum));
81c4a259
UW
763 gdb_assert (current_regcache != NULL);
764 gdb_assert (current_regcache->descr->gdbarch == current_gdbarch);
765 regcache_cooked_read (current_regcache, regnum, buf);
3acba339 766 return (extract_unsigned_integer (buf, register_size (current_gdbarch, regnum)));
32178cab
MS
767}
768
173155e8 769ULONGEST
39f77062 770read_register_pid (int regnum, ptid_t ptid)
32178cab 771{
39f77062 772 ptid_t save_ptid;
32178cab
MS
773 int save_pid;
774 CORE_ADDR retval;
775
39f77062 776 if (ptid_equal (ptid, inferior_ptid))
5ebd2499 777 return read_register (regnum);
32178cab 778
39f77062 779 save_ptid = inferior_ptid;
32178cab 780
39f77062 781 inferior_ptid = ptid;
32178cab 782
5ebd2499 783 retval = read_register (regnum);
32178cab 784
39f77062 785 inferior_ptid = save_ptid;
32178cab
MS
786
787 return retval;
788}
789
5ebd2499 790/* Store VALUE into the raw contents of register number REGNUM. */
32178cab
MS
791
792void
5ebd2499 793write_register (int regnum, LONGEST val)
32178cab 794{
61a0eb5b 795 void *buf;
32178cab 796 int size;
3acba339 797 size = register_size (current_gdbarch, regnum);
32178cab
MS
798 buf = alloca (size);
799 store_signed_integer (buf, size, (LONGEST) val);
81c4a259
UW
800 gdb_assert (current_regcache != NULL);
801 gdb_assert (current_regcache->descr->gdbarch == current_gdbarch);
802 regcache_cooked_write (current_regcache, regnum, buf);
32178cab
MS
803}
804
805void
39f77062 806write_register_pid (int regnum, CORE_ADDR val, ptid_t ptid)
32178cab 807{
39f77062 808 ptid_t save_ptid;
32178cab 809
39f77062 810 if (ptid_equal (ptid, inferior_ptid))
32178cab 811 {
5ebd2499 812 write_register (regnum, val);
32178cab
MS
813 return;
814 }
815
39f77062 816 save_ptid = inferior_ptid;
32178cab 817
39f77062 818 inferior_ptid = ptid;
32178cab 819
5ebd2499 820 write_register (regnum, val);
32178cab 821
39f77062 822 inferior_ptid = save_ptid;
32178cab
MS
823}
824
a16d75cc 825/* Supply register REGNUM, whose contents are stored in BUF, to REGCACHE. */
9a661b68
MK
826
827void
6618125d 828regcache_raw_supply (struct regcache *regcache, int regnum, const void *buf)
9a661b68
MK
829{
830 void *regbuf;
831 size_t size;
832
a16d75cc 833 gdb_assert (regcache != NULL);
9a661b68
MK
834 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
835 gdb_assert (!regcache->readonly_p);
836
837 /* FIXME: kettenis/20030828: It shouldn't be necessary to handle
838 CURRENT_REGCACHE specially here. */
839 if (regcache == current_regcache
840 && !ptid_equal (registers_ptid, inferior_ptid))
841 {
842 registers_changed ();
843 registers_ptid = inferior_ptid;
844 }
845
846 regbuf = register_buffer (regcache, regnum);
847 size = regcache->descr->sizeof_register[regnum];
848
849 if (buf)
850 memcpy (regbuf, buf, size);
851 else
852 memset (regbuf, 0, size);
853
854 /* Mark the register as cached. */
855 regcache->register_valid_p[regnum] = 1;
856}
857
858/* Collect register REGNUM from REGCACHE and store its contents in BUF. */
859
860void
6618125d 861regcache_raw_collect (const struct regcache *regcache, int regnum, void *buf)
9a661b68
MK
862{
863 const void *regbuf;
864 size_t size;
865
866 gdb_assert (regcache != NULL && buf != NULL);
867 gdb_assert (regnum >= 0 && regnum < regcache->descr->nr_raw_registers);
868
869 regbuf = register_buffer (regcache, regnum);
870 size = regcache->descr->sizeof_register[regnum];
871 memcpy (buf, regbuf, size);
872}
873
193cb69f 874
fb4443d8 875/* read_pc, write_pc, etc. Special handling for register PC. */
32178cab 876
9c8dbfa9
AC
877/* NOTE: cagney/2001-02-18: The functions read_pc_pid(), read_pc() and
878 read_sp(), will eventually be replaced by per-frame methods.
879 Instead of relying on the global INFERIOR_PTID, they will use the
880 contextual information provided by the FRAME. These functions do
881 not belong in the register cache. */
32178cab 882
cde9ea48 883/* NOTE: cagney/2003-06-07: The functions generic_target_write_pc(),
9c8dbfa9
AC
884 write_pc_pid() and write_pc(), all need to be replaced by something
885 that does not rely on global state. But what? */
32178cab
MS
886
887CORE_ADDR
39f77062 888read_pc_pid (ptid_t ptid)
32178cab 889{
39f77062 890 ptid_t saved_inferior_ptid;
32178cab
MS
891 CORE_ADDR pc_val;
892
39f77062
KB
893 /* In case ptid != inferior_ptid. */
894 saved_inferior_ptid = inferior_ptid;
895 inferior_ptid = ptid;
32178cab 896
cde9ea48
AC
897 if (TARGET_READ_PC_P ())
898 pc_val = TARGET_READ_PC (ptid);
899 /* Else use per-frame method on get_current_frame. */
900 else if (PC_REGNUM >= 0)
901 {
902 CORE_ADDR raw_val = read_register_pid (PC_REGNUM, ptid);
bf6ae464 903 pc_val = gdbarch_addr_bits_remove (current_gdbarch, raw_val);
cde9ea48
AC
904 }
905 else
e2e0b3e5 906 internal_error (__FILE__, __LINE__, _("read_pc_pid: Unable to find PC"));
32178cab 907
39f77062 908 inferior_ptid = saved_inferior_ptid;
32178cab
MS
909 return pc_val;
910}
911
912CORE_ADDR
913read_pc (void)
914{
39f77062 915 return read_pc_pid (inferior_ptid);
32178cab
MS
916}
917
32178cab 918void
39f77062 919generic_target_write_pc (CORE_ADDR pc, ptid_t ptid)
32178cab 920{
32178cab 921 if (PC_REGNUM >= 0)
39f77062 922 write_register_pid (PC_REGNUM, pc, ptid);
afb18d0f
AC
923 else
924 internal_error (__FILE__, __LINE__,
e2e0b3e5 925 _("generic_target_write_pc"));
32178cab
MS
926}
927
928void
39f77062 929write_pc_pid (CORE_ADDR pc, ptid_t ptid)
32178cab 930{
39f77062 931 ptid_t saved_inferior_ptid;
32178cab 932
39f77062
KB
933 /* In case ptid != inferior_ptid. */
934 saved_inferior_ptid = inferior_ptid;
935 inferior_ptid = ptid;
32178cab 936
39f77062 937 TARGET_WRITE_PC (pc, ptid);
32178cab 938
39f77062 939 inferior_ptid = saved_inferior_ptid;
32178cab
MS
940}
941
942void
943write_pc (CORE_ADDR pc)
944{
39f77062 945 write_pc_pid (pc, inferior_ptid);
32178cab
MS
946}
947
32178cab 948
705152c5
MS
949static void
950reg_flush_command (char *command, int from_tty)
951{
952 /* Force-flush the register cache. */
953 registers_changed ();
954 if (from_tty)
a3f17187 955 printf_filtered (_("Register cache flushed.\n"));
705152c5
MS
956}
957
32178cab
MS
958static void
959build_regcache (void)
3fadccb3
AC
960{
961 current_regcache = regcache_xmalloc (current_gdbarch);
2d28509a 962 current_regcache->readonly_p = 0;
3fadccb3
AC
963}
964
af030b9a
AC
965static void
966dump_endian_bytes (struct ui_file *file, enum bfd_endian endian,
967 const unsigned char *buf, long len)
968{
969 int i;
970 switch (endian)
971 {
972 case BFD_ENDIAN_BIG:
973 for (i = 0; i < len; i++)
974 fprintf_unfiltered (file, "%02x", buf[i]);
975 break;
976 case BFD_ENDIAN_LITTLE:
977 for (i = len - 1; i >= 0; i--)
978 fprintf_unfiltered (file, "%02x", buf[i]);
979 break;
980 default:
e2e0b3e5 981 internal_error (__FILE__, __LINE__, _("Bad switch"));
af030b9a
AC
982 }
983}
984
985enum regcache_dump_what
986{
b59ff9d5 987 regcache_dump_none, regcache_dump_raw, regcache_dump_cooked, regcache_dump_groups
af030b9a
AC
988};
989
990static void
991regcache_dump (struct regcache *regcache, struct ui_file *file,
992 enum regcache_dump_what what_to_dump)
993{
994 struct cleanup *cleanups = make_cleanup (null_cleanup, NULL);
b59ff9d5 995 struct gdbarch *gdbarch = regcache->descr->gdbarch;
af030b9a
AC
996 int regnum;
997 int footnote_nr = 0;
998 int footnote_register_size = 0;
999 int footnote_register_offset = 0;
1000 int footnote_register_type_name_null = 0;
1001 long register_offset = 0;
123a958e 1002 unsigned char buf[MAX_REGISTER_SIZE];
af030b9a
AC
1003
1004#if 0
af030b9a
AC
1005 fprintf_unfiltered (file, "nr_raw_registers %d\n",
1006 regcache->descr->nr_raw_registers);
1007 fprintf_unfiltered (file, "nr_cooked_registers %d\n",
1008 regcache->descr->nr_cooked_registers);
1009 fprintf_unfiltered (file, "sizeof_raw_registers %ld\n",
1010 regcache->descr->sizeof_raw_registers);
1011 fprintf_unfiltered (file, "sizeof_raw_register_valid_p %ld\n",
1012 regcache->descr->sizeof_raw_register_valid_p);
f57d151a
UW
1013 fprintf_unfiltered (file, "gdbarch_num_regs %d\n",
1014 gdbarch_num_regs (current_gdbarch));
1015 fprintf_unfiltered (file, "gdbarch_num_pseudo_regs %d\n",
1016 gdbarch_num_pseudo_regs (current_gdbarch));
af030b9a
AC
1017#endif
1018
1019 gdb_assert (regcache->descr->nr_cooked_registers
f57d151a
UW
1020 == (gdbarch_num_regs (current_gdbarch)
1021 + gdbarch_num_pseudo_regs (current_gdbarch)));
af030b9a
AC
1022
1023 for (regnum = -1; regnum < regcache->descr->nr_cooked_registers; regnum++)
1024 {
1025 /* Name. */
1026 if (regnum < 0)
1027 fprintf_unfiltered (file, " %-10s", "Name");
1028 else
1029 {
c9f4d572 1030 const char *p = gdbarch_register_name (current_gdbarch, regnum);
af030b9a
AC
1031 if (p == NULL)
1032 p = "";
1033 else if (p[0] == '\0')
1034 p = "''";
1035 fprintf_unfiltered (file, " %-10s", p);
1036 }
1037
1038 /* Number. */
1039 if (regnum < 0)
1040 fprintf_unfiltered (file, " %4s", "Nr");
1041 else
1042 fprintf_unfiltered (file, " %4d", regnum);
1043
1044 /* Relative number. */
1045 if (regnum < 0)
1046 fprintf_unfiltered (file, " %4s", "Rel");
f57d151a 1047 else if (regnum < gdbarch_num_regs (current_gdbarch))
af030b9a
AC
1048 fprintf_unfiltered (file, " %4d", regnum);
1049 else
f57d151a
UW
1050 fprintf_unfiltered (file, " %4d",
1051 (regnum - gdbarch_num_regs (current_gdbarch)));
af030b9a
AC
1052
1053 /* Offset. */
1054 if (regnum < 0)
1055 fprintf_unfiltered (file, " %6s ", "Offset");
1056 else
1057 {
1058 fprintf_unfiltered (file, " %6ld",
1059 regcache->descr->register_offset[regnum]);
a7e3c2ad 1060 if (register_offset != regcache->descr->register_offset[regnum]
d3b22ed5
AC
1061 || (regnum > 0
1062 && (regcache->descr->register_offset[regnum]
1063 != (regcache->descr->register_offset[regnum - 1]
1064 + regcache->descr->sizeof_register[regnum - 1])))
1065 )
af030b9a
AC
1066 {
1067 if (!footnote_register_offset)
1068 footnote_register_offset = ++footnote_nr;
1069 fprintf_unfiltered (file, "*%d", footnote_register_offset);
1070 }
1071 else
1072 fprintf_unfiltered (file, " ");
1073 register_offset = (regcache->descr->register_offset[regnum]
1074 + regcache->descr->sizeof_register[regnum]);
1075 }
1076
1077 /* Size. */
1078 if (regnum < 0)
1079 fprintf_unfiltered (file, " %5s ", "Size");
1080 else
01e1877c
AC
1081 fprintf_unfiltered (file, " %5ld",
1082 regcache->descr->sizeof_register[regnum]);
af030b9a
AC
1083
1084 /* Type. */
b59ff9d5
AC
1085 {
1086 const char *t;
1087 if (regnum < 0)
1088 t = "Type";
1089 else
1090 {
1091 static const char blt[] = "builtin_type";
1092 t = TYPE_NAME (register_type (regcache->descr->gdbarch, regnum));
1093 if (t == NULL)
1094 {
1095 char *n;
1096 if (!footnote_register_type_name_null)
1097 footnote_register_type_name_null = ++footnote_nr;
b435e160 1098 n = xstrprintf ("*%d", footnote_register_type_name_null);
b59ff9d5
AC
1099 make_cleanup (xfree, n);
1100 t = n;
1101 }
1102 /* Chop a leading builtin_type. */
1103 if (strncmp (t, blt, strlen (blt)) == 0)
1104 t += strlen (blt);
1105 }
1106 fprintf_unfiltered (file, " %-15s", t);
1107 }
1108
1109 /* Leading space always present. */
1110 fprintf_unfiltered (file, " ");
af030b9a
AC
1111
1112 /* Value, raw. */
1113 if (what_to_dump == regcache_dump_raw)
1114 {
1115 if (regnum < 0)
1116 fprintf_unfiltered (file, "Raw value");
1117 else if (regnum >= regcache->descr->nr_raw_registers)
1118 fprintf_unfiltered (file, "<cooked>");
1119 else if (!regcache_valid_p (regcache, regnum))
1120 fprintf_unfiltered (file, "<invalid>");
1121 else
1122 {
1123 regcache_raw_read (regcache, regnum, buf);
1124 fprintf_unfiltered (file, "0x");
0d20ae72
UW
1125 dump_endian_bytes (file,
1126 gdbarch_byte_order (current_gdbarch), buf,
01e1877c 1127 regcache->descr->sizeof_register[regnum]);
af030b9a
AC
1128 }
1129 }
1130
1131 /* Value, cooked. */
1132 if (what_to_dump == regcache_dump_cooked)
1133 {
1134 if (regnum < 0)
1135 fprintf_unfiltered (file, "Cooked value");
1136 else
1137 {
1138 regcache_cooked_read (regcache, regnum, buf);
1139 fprintf_unfiltered (file, "0x");
0d20ae72
UW
1140 dump_endian_bytes (file,
1141 gdbarch_byte_order (current_gdbarch), buf,
01e1877c 1142 regcache->descr->sizeof_register[regnum]);
af030b9a
AC
1143 }
1144 }
1145
b59ff9d5
AC
1146 /* Group members. */
1147 if (what_to_dump == regcache_dump_groups)
1148 {
1149 if (regnum < 0)
1150 fprintf_unfiltered (file, "Groups");
1151 else
1152 {
b59ff9d5 1153 const char *sep = "";
6c7d17ba
AC
1154 struct reggroup *group;
1155 for (group = reggroup_next (gdbarch, NULL);
1156 group != NULL;
1157 group = reggroup_next (gdbarch, group))
b59ff9d5 1158 {
6c7d17ba 1159 if (gdbarch_register_reggroup_p (gdbarch, regnum, group))
b59ff9d5 1160 {
6c7d17ba 1161 fprintf_unfiltered (file, "%s%s", sep, reggroup_name (group));
b59ff9d5
AC
1162 sep = ",";
1163 }
1164 }
1165 }
1166 }
1167
af030b9a
AC
1168 fprintf_unfiltered (file, "\n");
1169 }
1170
1171 if (footnote_register_size)
1172 fprintf_unfiltered (file, "*%d: Inconsistent register sizes.\n",
1173 footnote_register_size);
1174 if (footnote_register_offset)
1175 fprintf_unfiltered (file, "*%d: Inconsistent register offsets.\n",
1176 footnote_register_offset);
1177 if (footnote_register_type_name_null)
1178 fprintf_unfiltered (file,
1179 "*%d: Register type's name NULL.\n",
1180 footnote_register_type_name_null);
1181 do_cleanups (cleanups);
1182}
1183
1184static void
1185regcache_print (char *args, enum regcache_dump_what what_to_dump)
1186{
1187 if (args == NULL)
1188 regcache_dump (current_regcache, gdb_stdout, what_to_dump);
1189 else
1190 {
1191 struct ui_file *file = gdb_fopen (args, "w");
1192 if (file == NULL)
e2e0b3e5 1193 perror_with_name (_("maintenance print architecture"));
af030b9a
AC
1194 regcache_dump (current_regcache, file, what_to_dump);
1195 ui_file_delete (file);
1196 }
1197}
1198
1199static void
1200maintenance_print_registers (char *args, int from_tty)
1201{
1202 regcache_print (args, regcache_dump_none);
1203}
1204
1205static void
1206maintenance_print_raw_registers (char *args, int from_tty)
1207{
1208 regcache_print (args, regcache_dump_raw);
1209}
1210
1211static void
1212maintenance_print_cooked_registers (char *args, int from_tty)
1213{
1214 regcache_print (args, regcache_dump_cooked);
1215}
1216
b59ff9d5
AC
1217static void
1218maintenance_print_register_groups (char *args, int from_tty)
1219{
1220 regcache_print (args, regcache_dump_groups);
1221}
1222
b9362cc7
AC
1223extern initialize_file_ftype _initialize_regcache; /* -Wmissing-prototype */
1224
32178cab
MS
1225void
1226_initialize_regcache (void)
1227{
030f20e1 1228 regcache_descr_handle = gdbarch_data_register_post_init (init_regcache_descr);
046a4708 1229 DEPRECATED_REGISTER_GDBARCH_SWAP (current_regcache);
046a4708 1230 deprecated_register_gdbarch_swap (NULL, 0, build_regcache);
705152c5 1231
f4c5303c
OF
1232 observer_attach_target_changed (regcache_observer_target_changed);
1233
705152c5 1234 add_com ("flushregs", class_maintenance, reg_flush_command,
1bedd215 1235 _("Force gdb to flush its register cache (maintainer command)"));
39f77062
KB
1236
1237 /* Initialize the thread/process associated with the current set of
1238 registers. For now, -1 is special, and means `no current process'. */
1239 registers_ptid = pid_to_ptid (-1);
af030b9a 1240
1a966eab
AC
1241 add_cmd ("registers", class_maintenance, maintenance_print_registers, _("\
1242Print the internal register configuration.\n\
1243Takes an optional file parameter."), &maintenanceprintlist);
af030b9a 1244 add_cmd ("raw-registers", class_maintenance,
1a966eab
AC
1245 maintenance_print_raw_registers, _("\
1246Print the internal register configuration including raw values.\n\
1247Takes an optional file parameter."), &maintenanceprintlist);
af030b9a 1248 add_cmd ("cooked-registers", class_maintenance,
1a966eab
AC
1249 maintenance_print_cooked_registers, _("\
1250Print the internal register configuration including cooked values.\n\
1251Takes an optional file parameter."), &maintenanceprintlist);
b59ff9d5 1252 add_cmd ("register-groups", class_maintenance,
1a966eab
AC
1253 maintenance_print_register_groups, _("\
1254Print the internal register configuration including each register's group.\n\
1255Takes an optional file parameter."),
af030b9a
AC
1256 &maintenanceprintlist);
1257
32178cab 1258}
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