Fix shared library load in gdb.base/global-var-nested-by-dso.exp.
[deliverable/binutils-gdb.git] / gdb / dcache.c
CommitLineData
69517000
AC
1/* Caching code for GDB, the GNU debugger.
2
32d0add0 3 Copyright (C) 1992-2015 Free Software Foundation, Inc.
c906108c
SS
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c906108c
SS
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
21#include "dcache.h"
22#include "gdbcmd.h"
c906108c 23#include "gdbcore.h"
68c765e2 24#include "target-dcache.h"
4e5d721f 25#include "inferior.h"
25f122dc 26#include "splay-tree.h"
c906108c 27
1a532630
PP
28/* Commands with a prefix of `{set,show} dcache'. */
29static struct cmd_list_element *dcache_set_list = NULL;
30static struct cmd_list_element *dcache_show_list = NULL;
31
29e57380
C
32/* The data cache could lead to incorrect results because it doesn't
33 know about volatile variables, thus making it impossible to debug
34 functions which use memory mapped I/O devices. Set the nocache
35 memory region attribute in those cases.
c906108c 36
25f122dc 37 In general the dcache speeds up performance. Some speed improvement
c906108c
SS
38 comes from the actual caching mechanism, but the major gain is in
39 the reduction of the remote protocol overhead; instead of reading
40 or writing a large area of memory in 4 byte requests, the cache
25f122dc
DE
41 bundles up the requests into LINE_SIZE chunks, reducing overhead
42 significantly. This is most useful when accessing a large amount
43 of data, such as when performing a backtrace.
44
45 The cache is a splay tree along with a linked list for replacement.
e124be18
MS
46 Each block caches a LINE_SIZE area of memory. Within each line we
47 remember the address of the line (which must be a multiple of
48 LINE_SIZE) and the actual data block.
25f122dc
DE
49
50 Lines are only allocated as needed, so DCACHE_SIZE really specifies the
51 *maximum* number of lines in the cache.
52
53 At present, the cache is write-through rather than writeback: as soon
54 as data is written to the cache, it is also immediately written to
55 the target. Therefore, cache lines are never "dirty". Whether a given
56 line is valid or not depends on where it is stored in the dcache_struct;
57 there is no per-block valid flag. */
c906108c 58
29e57380 59/* NOTE: Interaction of dcache and memory region attributes
c906108c 60
29e57380
C
61 As there is no requirement that memory region attributes be aligned
62 to or be a multiple of the dcache page size, dcache_read_line() and
63 dcache_write_line() must break up the page by memory region. If a
64 chunk does not have the cache attribute set, an invalid memory type
65 is set, etc., then the chunk is skipped. Those chunks are handled
66 in target_xfer_memory() (or target_xfer_memory_partial()).
c906108c 67
29e57380
C
68 This doesn't occur very often. The most common occurance is when
69 the last bit of the .text segment and the first bit of the .data
70 segment fall within the same dcache page with a ro/cacheable memory
71 region defined for the .text segment and a rw/non-cacheable memory
25f122dc 72 region defined for the .data segment. */
c906108c 73
25f122dc
DE
74/* The maximum number of lines stored. The total size of the cache is
75 equal to DCACHE_SIZE times LINE_SIZE. */
1a532630
PP
76#define DCACHE_DEFAULT_SIZE 4096
77static unsigned dcache_size = DCACHE_DEFAULT_SIZE;
c906108c 78
1a532630 79/* The default size of a cache line. Smaller values reduce the time taken to
25f122dc
DE
80 read a single byte and make the cache more granular, but increase
81 overhead and reduce the effectiveness of the cache as a prefetcher. */
1a532630
PP
82#define DCACHE_DEFAULT_LINE_SIZE 64
83static unsigned dcache_line_size = DCACHE_DEFAULT_LINE_SIZE;
c906108c
SS
84
85/* Each cache block holds LINE_SIZE bytes of data
86 starting at a multiple-of-LINE_SIZE address. */
87
1a532630
PP
88#define LINE_SIZE_MASK(dcache) ((dcache->line_size - 1))
89#define XFORM(dcache, x) ((x) & LINE_SIZE_MASK (dcache))
90#define MASK(dcache, x) ((x) & ~LINE_SIZE_MASK (dcache))
c906108c 91
c906108c 92struct dcache_block
25f122dc 93{
0963b4bd 94 /* For least-recently-allocated and free lists. */
6ffb2242
DE
95 struct dcache_block *prev;
96 struct dcache_block *next;
97
25f122dc 98 CORE_ADDR addr; /* address of data */
25f122dc 99 int refs; /* # hits */
1a532630 100 gdb_byte data[1]; /* line_size bytes at given address */
25f122dc 101};
29e57380 102
c5aa993b 103struct dcache_struct
25f122dc
DE
104{
105 splay_tree tree;
0963b4bd 106 struct dcache_block *oldest; /* least-recently-allocated list. */
c906108c 107
6ffb2242
DE
108 /* The free list is maintained identically to OLDEST to simplify
109 the code: we only need one set of accessors. */
25f122dc 110 struct dcache_block *freelist;
c906108c 111
25f122dc
DE
112 /* The number of in-use lines in the cache. */
113 int size;
1a532630 114 CORE_ADDR line_size; /* current line_size. */
4e5d721f
DE
115
116 /* The ptid of last inferior to use cache or null_ptid. */
117 ptid_t ptid;
25f122dc 118};
c906108c 119
6ffb2242
DE
120typedef void (block_func) (struct dcache_block *block, void *param);
121
8edbea78 122static struct dcache_block *dcache_hit (DCACHE *dcache, CORE_ADDR addr);
c906108c 123
8edbea78 124static int dcache_read_line (DCACHE *dcache, struct dcache_block *db);
c906108c 125
8edbea78
C
126static struct dcache_block *dcache_alloc (DCACHE *dcache, CORE_ADDR addr);
127
a14ed312 128static void dcache_info (char *exp, int tty);
c906108c 129
a14ed312 130void _initialize_dcache (void);
c906108c 131
4e5d721f 132static int dcache_enabled_p = 0; /* OBSOLETE */
07128da0 133
920d2a44
AC
134static void
135show_dcache_enabled_p (struct ui_file *file, int from_tty,
136 struct cmd_list_element *c, const char *value)
137{
4e5d721f 138 fprintf_filtered (file, _("Deprecated remotecache flag is %s.\n"), value);
920d2a44
AC
139}
140
6ffb2242
DE
141/* Add BLOCK to circular block list BLIST, behind the block at *BLIST.
142 *BLIST is not updated (unless it was previously NULL of course).
143 This is for the least-recently-allocated list's sake:
144 BLIST points to the oldest block.
145 ??? This makes for poor cache usage of the free list,
146 but is it measurable? */
c906108c 147
6ffb2242
DE
148static void
149append_block (struct dcache_block **blist, struct dcache_block *block)
c906108c 150{
6ffb2242
DE
151 if (*blist)
152 {
153 block->next = *blist;
154 block->prev = (*blist)->prev;
155 block->prev->next = block;
156 (*blist)->prev = block;
157 /* We don't update *BLIST here to maintain the invariant that for the
158 least-recently-allocated list *BLIST points to the oldest block. */
159 }
160 else
161 {
162 block->next = block;
163 block->prev = block;
164 *blist = block;
165 }
166}
c906108c 167
6ffb2242 168/* Remove BLOCK from circular block list BLIST. */
c906108c 169
6ffb2242
DE
170static void
171remove_block (struct dcache_block **blist, struct dcache_block *block)
172{
173 if (block->next == block)
174 {
175 *blist = NULL;
176 }
177 else
c906108c 178 {
6ffb2242
DE
179 block->next->prev = block->prev;
180 block->prev->next = block->next;
181 /* If we removed the block *BLIST points to, shift it to the next block
182 to maintain the invariant that for the least-recently-allocated list
183 *BLIST points to the oldest block. */
184 if (*blist == block)
185 *blist = block->next;
186 }
187}
c906108c 188
6ffb2242
DE
189/* Iterate over all elements in BLIST, calling FUNC.
190 PARAM is passed to FUNC.
191 FUNC may remove the block it's passed, but only that block. */
25f122dc 192
6ffb2242
DE
193static void
194for_each_block (struct dcache_block **blist, block_func *func, void *param)
195{
196 struct dcache_block *db;
197
198 if (*blist == NULL)
199 return;
200
201 db = *blist;
202 do
203 {
204 struct dcache_block *next = db->next;
205
206 func (db, param);
207 db = next;
c906108c 208 }
6ffb2242
DE
209 while (*blist && db != *blist);
210}
211
1a532630
PP
212/* BLOCK_FUNC routine for dcache_free. */
213
214static void
215free_block (struct dcache_block *block, void *param)
216{
217 xfree (block);
218}
219
220/* Free a data cache. */
221
222void
223dcache_free (DCACHE *dcache)
224{
1a532630
PP
225 splay_tree_delete (dcache->tree);
226 for_each_block (&dcache->oldest, free_block, NULL);
227 for_each_block (&dcache->freelist, free_block, NULL);
228 xfree (dcache);
229}
230
231
6ffb2242
DE
232/* BLOCK_FUNC function for dcache_invalidate.
233 This doesn't remove the block from the oldest list on purpose.
234 dcache_invalidate will do it later. */
235
236static void
237invalidate_block (struct dcache_block *block, void *param)
238{
239 DCACHE *dcache = (DCACHE *) param;
240
241 splay_tree_remove (dcache->tree, (splay_tree_key) block->addr);
242 append_block (&dcache->freelist, block);
243}
244
245/* Free all the data cache blocks, thus discarding all cached data. */
246
247void
248dcache_invalidate (DCACHE *dcache)
249{
250 for_each_block (&dcache->oldest, invalidate_block, dcache);
c906108c 251
25f122dc 252 dcache->oldest = NULL;
25f122dc 253 dcache->size = 0;
4e5d721f 254 dcache->ptid = null_ptid;
1a532630
PP
255
256 if (dcache->line_size != dcache_line_size)
257 {
258 /* We've been asked to use a different line size.
259 All of our freelist blocks are now the wrong size, so free them. */
260
261 for_each_block (&dcache->freelist, free_block, dcache);
262 dcache->freelist = NULL;
263 dcache->line_size = dcache_line_size;
264 }
4e5d721f
DE
265}
266
267/* Invalidate the line associated with ADDR. */
268
269static void
270dcache_invalidate_line (DCACHE *dcache, CORE_ADDR addr)
271{
272 struct dcache_block *db = dcache_hit (dcache, addr);
273
274 if (db)
275 {
276 splay_tree_remove (dcache->tree, (splay_tree_key) db->addr);
6ffb2242
DE
277 remove_block (&dcache->oldest, db);
278 append_block (&dcache->freelist, db);
4e5d721f
DE
279 --dcache->size;
280 }
c906108c
SS
281}
282
283/* If addr is present in the dcache, return the address of the block
7f79c47e 284 containing it. Otherwise return NULL. */
c906108c
SS
285
286static struct dcache_block *
fba45db2 287dcache_hit (DCACHE *dcache, CORE_ADDR addr)
c906108c 288{
52f0bd74 289 struct dcache_block *db;
c906108c 290
25f122dc 291 splay_tree_node node = splay_tree_lookup (dcache->tree,
1a532630 292 (splay_tree_key) MASK (dcache, addr));
c906108c 293
25f122dc
DE
294 if (!node)
295 return NULL;
c906108c 296
25f122dc
DE
297 db = (struct dcache_block *) node->value;
298 db->refs++;
299 return db;
c906108c
SS
300}
301
7f79c47e
DE
302/* Fill a cache line from target memory.
303 The result is 1 for success, 0 if the (entire) cache line
304 wasn't readable. */
c906108c 305
8edbea78
C
306static int
307dcache_read_line (DCACHE *dcache, struct dcache_block *db)
308{
309 CORE_ADDR memaddr;
6c932e54 310 gdb_byte *myaddr;
8edbea78
C
311 int len;
312 int res;
29e57380
C
313 int reg_len;
314 struct mem_region *region;
8edbea78 315
1a532630 316 len = dcache->line_size;
8edbea78
C
317 memaddr = db->addr;
318 myaddr = db->data;
319
320 while (len > 0)
321 {
25f122dc
DE
322 /* Don't overrun if this block is right at the end of the region. */
323 region = lookup_mem_region (memaddr);
324 if (region->hi == 0 || memaddr + len < region->hi)
29e57380
C
325 reg_len = len;
326 else
327 reg_len = region->hi - memaddr;
328
4e5d721f
DE
329 /* Skip non-readable regions. The cache attribute can be ignored,
330 since we may be loading this for a stack access. */
331 if (region->attrib.mode == MEM_WO)
29e57380
C
332 {
333 memaddr += reg_len;
334 myaddr += reg_len;
335 len -= reg_len;
336 continue;
337 }
9f713294 338
aee4bf85
PA
339 res = target_read_raw_memory (memaddr, myaddr, reg_len);
340 if (res != 0)
cf7a04e8 341 return 0;
8edbea78 342
aee4bf85
PA
343 memaddr += reg_len;
344 myaddr += reg_len;
345 len -= reg_len;
8edbea78
C
346 }
347
8edbea78
C
348 return 1;
349}
350
c906108c 351/* Get a free cache block, put or keep it on the valid list,
f1d7622b 352 and return its address. */
c906108c
SS
353
354static struct dcache_block *
f1d7622b 355dcache_alloc (DCACHE *dcache, CORE_ADDR addr)
c906108c 356{
52f0bd74 357 struct dcache_block *db;
c906108c 358
1a532630 359 if (dcache->size >= dcache_size)
c906108c 360 {
6ffb2242 361 /* Evict the least recently allocated line. */
25f122dc 362 db = dcache->oldest;
6ffb2242 363 remove_block (&dcache->oldest, db);
25f122dc
DE
364
365 splay_tree_remove (dcache->tree, (splay_tree_key) db->addr);
c906108c
SS
366 }
367 else
368 {
25f122dc
DE
369 db = dcache->freelist;
370 if (db)
6ffb2242 371 remove_block (&dcache->freelist, db);
25f122dc 372 else
1a532630
PP
373 db = xmalloc (offsetof (struct dcache_block, data) +
374 dcache->line_size);
c906108c 375
25f122dc 376 dcache->size++;
c906108c
SS
377 }
378
1a532630 379 db->addr = MASK (dcache, addr);
f1d7622b 380 db->refs = 0;
f1d7622b 381
6ffb2242
DE
382 /* Put DB at the end of the list, it's the newest. */
383 append_block (&dcache->oldest, db);
c906108c 384
25f122dc
DE
385 splay_tree_insert (dcache->tree, (splay_tree_key) db->addr,
386 (splay_tree_value) db);
c906108c 387
25f122dc 388 return db;
c906108c
SS
389}
390
7f79c47e 391/* Using the data cache DCACHE, store in *PTR the contents of the byte at
8edbea78
C
392 address ADDR in the remote machine.
393
25f122dc 394 Returns 1 for success, 0 for error. */
8edbea78
C
395
396static int
6c932e54 397dcache_peek_byte (DCACHE *dcache, CORE_ADDR addr, gdb_byte *ptr)
8edbea78 398{
52f0bd74 399 struct dcache_block *db = dcache_hit (dcache, addr);
8edbea78
C
400
401 if (!db)
402 {
403 db = dcache_alloc (dcache, addr);
25f122dc
DE
404
405 if (!dcache_read_line (dcache, db))
8edbea78
C
406 return 0;
407 }
408
1a532630 409 *ptr = db->data[XFORM (dcache, addr)];
8edbea78
C
410 return 1;
411}
412
c906108c 413/* Write the byte at PTR into ADDR in the data cache.
25f122dc 414
0f26cec1
PA
415 The caller should have written the data through to target memory
416 already.
25f122dc 417
0f26cec1
PA
418 If ADDR is not in cache, this function does nothing; writing to an
419 area of memory which wasn't present in the cache doesn't cause it
420 to be loaded in. */
25f122dc 421
0f26cec1
PA
422static void
423dcache_poke_byte (DCACHE *dcache, CORE_ADDR addr, const gdb_byte *ptr)
c906108c 424{
52f0bd74 425 struct dcache_block *db = dcache_hit (dcache, addr);
c906108c 426
25f122dc 427 if (db)
1a532630 428 db->data[XFORM (dcache, addr)] = *ptr;
c906108c
SS
429}
430
25f122dc
DE
431static int
432dcache_splay_tree_compare (splay_tree_key a, splay_tree_key b)
433{
434 if (a > b)
435 return 1;
436 else if (a == b)
437 return 0;
438 else
439 return -1;
440}
441
7f79c47e 442/* Allocate and initialize a data cache. */
25f122dc 443
c906108c 444DCACHE *
4930751a 445dcache_init (void)
c906108c 446{
8d749320 447 DCACHE *dcache = XNEW (DCACHE);
c906108c 448
25f122dc
DE
449 dcache->tree = splay_tree_new (dcache_splay_tree_compare,
450 NULL,
451 NULL);
c906108c 452
25f122dc 453 dcache->oldest = NULL;
25f122dc
DE
454 dcache->freelist = NULL;
455 dcache->size = 0;
1a532630 456 dcache->line_size = dcache_line_size;
4e5d721f 457 dcache->ptid = null_ptid;
25f122dc 458
c906108c
SS
459 return dcache;
460}
461
e99586d5 462
0f26cec1
PA
463/* Read LEN bytes from dcache memory at MEMADDR, transferring to
464 debugger address MYADDR. If the data is presently cached, this
465 fills the cache. Arguments/return are like the target_xfer_partial
466 interface. */
c906108c 467
0f26cec1
PA
468enum target_xfer_status
469dcache_read_memory_partial (struct target_ops *ops, DCACHE *dcache,
470 CORE_ADDR memaddr, gdb_byte *myaddr,
471 ULONGEST len, ULONGEST *xfered_len)
c906108c 472{
0f26cec1 473 ULONGEST i;
c906108c 474
4e5d721f
DE
475 /* If this is a different inferior from what we've recorded,
476 flush the cache. */
477
478 if (! ptid_equal (inferior_ptid, dcache->ptid))
479 {
480 dcache_invalidate (dcache);
481 dcache->ptid = inferior_ptid;
482 }
483
29e57380 484 for (i = 0; i < len; i++)
c906108c 485 {
0f26cec1 486 if (!dcache_peek_byte (dcache, memaddr + i, myaddr + i))
4e5d721f
DE
487 {
488 /* That failed. Discard its cache line so we don't have a
489 partially read line. */
490 dcache_invalidate_line (dcache, memaddr + i);
0f26cec1 491 break;
4e5d721f 492 }
c906108c 493 }
0f26cec1
PA
494
495 if (i == 0)
496 {
0256a6ac
PA
497 /* Even though reading the whole line failed, we may be able to
498 read a piece starting where the caller wanted. */
cc9f16aa
YQ
499 return raw_memory_xfer_partial (ops, myaddr, NULL, memaddr, len,
500 xfered_len);
0f26cec1
PA
501 }
502 else
503 {
504 *xfered_len = i;
505 return TARGET_XFER_OK;
506 }
25f122dc 507}
c906108c 508
25f122dc
DE
509/* FIXME: There would be some benefit to making the cache write-back and
510 moving the writeback operation to a higher layer, as it could occur
511 after a sequence of smaller writes have been completed (as when a stack
512 frame is constructed for an inferior function call). Note that only
513 moving it up one level to target_xfer_memory[_partial]() is not
514 sufficient since we want to coalesce memory transfers that are
515 "logically" connected but not actually a single call to one of the
516 memory transfer functions. */
29e57380 517
0f26cec1
PA
518/* Just update any cache lines which are already present. This is
519 called by the target_xfer_partial machinery when writing raw
520 memory. */
4e5d721f
DE
521
522void
0f26cec1
PA
523dcache_update (DCACHE *dcache, enum target_xfer_status status,
524 CORE_ADDR memaddr, const gdb_byte *myaddr,
525 ULONGEST len)
4e5d721f 526{
0f26cec1 527 ULONGEST i;
9a619af0 528
4e5d721f 529 for (i = 0; i < len; i++)
0f26cec1
PA
530 if (status == TARGET_XFER_OK)
531 dcache_poke_byte (dcache, memaddr + i, myaddr + i);
532 else
533 {
534 /* Discard the whole cache line so we don't have a partially
535 valid line. */
536 dcache_invalidate_line (dcache, memaddr + i);
537 }
4e5d721f
DE
538}
539
2a2f9fe4
YQ
540/* Print DCACHE line INDEX. */
541
25f122dc 542static void
2a2f9fe4 543dcache_print_line (DCACHE *dcache, int index)
25f122dc
DE
544{
545 splay_tree_node n;
546 struct dcache_block *db;
547 int i, j;
548
2a2f9fe4 549 if (dcache == NULL)
25f122dc
DE
550 {
551 printf_filtered (_("No data cache available.\n"));
552 return;
553 }
554
2a2f9fe4 555 n = splay_tree_min (dcache->tree);
25f122dc
DE
556
557 for (i = index; i > 0; --i)
558 {
559 if (!n)
560 break;
2a2f9fe4 561 n = splay_tree_successor (dcache->tree, n->key);
25f122dc
DE
562 }
563
564 if (!n)
565 {
566 printf_filtered (_("No such cache line exists.\n"));
567 return;
568 }
29e57380 569
25f122dc
DE
570 db = (struct dcache_block *) n->value;
571
51939b3d 572 printf_filtered (_("Line %d: address %s [%d hits]\n"),
f5656ead 573 index, paddress (target_gdbarch (), db->addr), db->refs);
25f122dc 574
2a2f9fe4 575 for (j = 0; j < dcache->line_size; j++)
25f122dc
DE
576 {
577 printf_filtered ("%02x ", db->data[j]);
578
0963b4bd 579 /* Print a newline every 16 bytes (48 characters). */
2a2f9fe4 580 if ((j % 16 == 15) && (j != dcache->line_size - 1))
25f122dc
DE
581 printf_filtered ("\n");
582 }
583 printf_filtered ("\n");
c906108c
SS
584}
585
2a2f9fe4
YQ
586/* Parse EXP and show the info about DCACHE. */
587
c5aa993b 588static void
2a2f9fe4 589dcache_info_1 (DCACHE *dcache, char *exp)
c906108c 590{
25f122dc 591 splay_tree_node n;
9128a503 592 int i, refcount;
25f122dc
DE
593
594 if (exp)
595 {
596 char *linestart;
9a619af0 597
25f122dc
DE
598 i = strtol (exp, &linestart, 10);
599 if (linestart == exp || i < 0)
600 {
601 printf_filtered (_("Usage: info dcache [linenumber]\n"));
602 return;
603 }
c906108c 604
2a2f9fe4 605 dcache_print_line (dcache, i);
25f122dc
DE
606 return;
607 }
608
1a532630
PP
609 printf_filtered (_("Dcache %u lines of %u bytes each.\n"),
610 dcache_size,
2a2f9fe4 611 dcache ? (unsigned) dcache->line_size
1a532630 612 : dcache_line_size);
c906108c 613
2a2f9fe4 614 if (dcache == NULL || ptid_equal (dcache->ptid, null_ptid))
c906108c 615 {
25f122dc
DE
616 printf_filtered (_("No data cache available.\n"));
617 return;
618 }
5e2039ea 619
4e5d721f 620 printf_filtered (_("Contains data for %s\n"),
2a2f9fe4 621 target_pid_to_str (dcache->ptid));
4e5d721f 622
25f122dc 623 refcount = 0;
c906108c 624
2a2f9fe4 625 n = splay_tree_min (dcache->tree);
25f122dc 626 i = 0;
c906108c 627
25f122dc
DE
628 while (n)
629 {
630 struct dcache_block *db = (struct dcache_block *) n->value;
631
51939b3d 632 printf_filtered (_("Line %d: address %s [%d hits]\n"),
f5656ead 633 i, paddress (target_gdbarch (), db->addr), db->refs);
25f122dc
DE
634 i++;
635 refcount += db->refs;
636
2a2f9fe4 637 n = splay_tree_successor (dcache->tree, n->key);
c906108c 638 }
25f122dc
DE
639
640 printf_filtered (_("Cache state: %d active lines, %d hits\n"), i, refcount);
c906108c
SS
641}
642
2a2f9fe4
YQ
643static void
644dcache_info (char *exp, int tty)
645{
646 dcache_info_1 (target_dcache_get (), exp);
647}
648
1a532630
PP
649static void
650set_dcache_size (char *args, int from_tty,
651 struct cmd_list_element *c)
652{
653 if (dcache_size == 0)
654 {
655 dcache_size = DCACHE_DEFAULT_SIZE;
656 error (_("Dcache size must be greater than 0."));
657 }
2a2f9fe4 658 target_dcache_invalidate ();
1a532630
PP
659}
660
661static void
662set_dcache_line_size (char *args, int from_tty,
663 struct cmd_list_element *c)
664{
665 if (dcache_line_size < 2
666 || (dcache_line_size & (dcache_line_size - 1)) != 0)
667 {
668 unsigned d = dcache_line_size;
669 dcache_line_size = DCACHE_DEFAULT_LINE_SIZE;
670 error (_("Invalid dcache line size: %u (must be power of 2)."), d);
671 }
2a2f9fe4 672 target_dcache_invalidate ();
1a532630
PP
673}
674
675static void
676set_dcache_command (char *arg, int from_tty)
677{
678 printf_unfiltered (
679 "\"set dcache\" must be followed by the name of a subcommand.\n");
635c7e8a 680 help_list (dcache_set_list, "set dcache ", all_commands, gdb_stdout);
1a532630
PP
681}
682
683static void
684show_dcache_command (char *args, int from_tty)
685{
686 cmd_show_list (dcache_show_list, from_tty, "");
687}
688
c906108c 689void
fba45db2 690_initialize_dcache (void)
c906108c 691{
5bf193a2
AC
692 add_setshow_boolean_cmd ("remotecache", class_support,
693 &dcache_enabled_p, _("\
694Set cache use for remote targets."), _("\
695Show cache use for remote targets."), _("\
4e5d721f
DE
696This used to enable the data cache for remote targets. The cache\n\
697functionality is now controlled by the memory region system and the\n\
698\"stack-cache\" flag; \"remotecache\" now does nothing and\n\
699exists only for compatibility reasons."),
5bf193a2 700 NULL,
920d2a44 701 show_dcache_enabled_p,
5bf193a2 702 &setlist, &showlist);
c906108c
SS
703
704 add_info ("dcache", dcache_info,
07128da0
DE
705 _("\
706Print information on the dcache performance.\n\
25f122dc
DE
707With no arguments, this command prints the cache configuration and a\n\
708summary of each line in the cache. Use \"info dcache <lineno> to dump\"\n\
709the contents of a given line."));
1a532630
PP
710
711 add_prefix_cmd ("dcache", class_obscure, set_dcache_command, _("\
712Use this command to set number of lines in dcache and line-size."),
713 &dcache_set_list, "set dcache ", /*allow_unknown*/0, &setlist);
714 add_prefix_cmd ("dcache", class_obscure, show_dcache_command, _("\
715Show dcachesettings."),
716 &dcache_show_list, "show dcache ", /*allow_unknown*/0, &showlist);
717
dfd1f9bb
PA
718 add_setshow_zuinteger_cmd ("line-size", class_obscure,
719 &dcache_line_size, _("\
1a532630
PP
720Set dcache line size in bytes (must be power of 2)."), _("\
721Show dcache line size."),
dfd1f9bb
PA
722 NULL,
723 set_dcache_line_size,
724 NULL,
725 &dcache_set_list, &dcache_show_list);
726 add_setshow_zuinteger_cmd ("size", class_obscure,
727 &dcache_size, _("\
1a532630
PP
728Set number of dcache lines."), _("\
729Show number of dcache lines."),
dfd1f9bb
PA
730 NULL,
731 set_dcache_size,
732 NULL,
733 &dcache_set_list, &dcache_show_list);
c906108c 734}
This page took 1.047578 seconds and 4 git commands to generate.