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611cb4a5 | 1 | /* Memory breakpoint operations for the remote server for GDB. |
ecd75fc8 | 2 | Copyright (C) 2002-2014 Free Software Foundation, Inc. |
611cb4a5 DJ |
3 | |
4 | Contributed by MontaVista Software. | |
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 |
611cb4a5 DJ |
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/>. */ |
611cb4a5 DJ |
20 | |
21 | #include "server.h" | |
9f3a5c85 LM |
22 | #include "regcache.h" |
23 | #include "ax.h" | |
7f216e7c | 24 | #include <stdint.h> |
611cb4a5 | 25 | |
f450004a | 26 | const unsigned char *breakpoint_data; |
611cb4a5 DJ |
27 | int breakpoint_len; |
28 | ||
29 | #define MAX_BREAKPOINT_LEN 8 | |
30 | ||
8b07ae33 | 31 | /* GDB will never try to install multiple breakpoints at the same |
802e8e6d PA |
32 | address. However, we can see GDB requesting to insert a breakpoint |
33 | at an address is had already inserted one previously in a few | |
34 | situations. | |
35 | ||
36 | - The RSP documentation on Z packets says that to avoid potential | |
37 | problems with duplicate packets, the operations should be | |
38 | implemented in an idempotent way. | |
39 | ||
40 | - A breakpoint is set at ADDR, an address in a shared library. | |
41 | Then the shared library is unloaded. And then another, unrelated, | |
42 | breakpoint at ADDR is set. There is not breakpoint removal request | |
43 | between the first and the second breakpoint. | |
44 | ||
45 | - When GDB wants to update the target-side breakpoint conditions or | |
46 | commands, it re-inserts the breakpoint, with updated | |
47 | conditions/commands associated. | |
48 | ||
49 | Also, we need to keep track of internal breakpoints too, so we do | |
50 | need to be able to install multiple breakpoints at the same address | |
51 | transparently. | |
52 | ||
53 | We keep track of two different, and closely related structures. A | |
54 | raw breakpoint, which manages the low level, close to the metal | |
55 | aspect of a breakpoint. It holds the breakpoint address, and for | |
56 | software breakpoints, a buffer holding a copy of the instructions | |
8b07ae33 PA |
57 | that would be in memory had not been a breakpoint there (we call |
58 | that the shadow memory of the breakpoint). We occasionally need to | |
59 | temporarilly uninsert a breakpoint without the client knowing about | |
60 | it (e.g., to step over an internal breakpoint), so we keep an | |
61 | `inserted' state associated with this low level breakpoint | |
62 | structure. There can only be one such object for a given address. | |
63 | Then, we have (a bit higher level) breakpoints. This structure | |
64 | holds a callback to be called whenever a breakpoint is hit, a | |
65 | high-level type, and a link to a low level raw breakpoint. There | |
66 | can be many high-level breakpoints at the same address, and all of | |
67 | them will point to the same raw breakpoint, which is reference | |
68 | counted. */ | |
69 | ||
70 | /* The low level, physical, raw breakpoint. */ | |
71 | struct raw_breakpoint | |
72 | { | |
73 | struct raw_breakpoint *next; | |
74 | ||
802e8e6d PA |
75 | /* The low level type of the breakpoint (software breakpoint, |
76 | watchpoint, etc.) */ | |
77 | enum raw_bkpt_type raw_type; | |
78 | ||
8b07ae33 PA |
79 | /* A reference count. Each high level breakpoint referencing this |
80 | raw breakpoint accounts for one reference. */ | |
81 | int refcount; | |
82 | ||
83 | /* The breakpoint's insertion address. There can only be one raw | |
84 | breakpoint for a given PC. */ | |
85 | CORE_ADDR pc; | |
86 | ||
802e8e6d PA |
87 | /* The breakpoint's size. */ |
88 | int size; | |
89 | ||
8b07ae33 PA |
90 | /* The breakpoint's shadow memory. */ |
91 | unsigned char old_data[MAX_BREAKPOINT_LEN]; | |
92 | ||
802e8e6d PA |
93 | /* Positive if this breakpoint is currently inserted in the |
94 | inferior. Negative if it was, but we've detected that it's now | |
95 | gone. Zero if not inserted. */ | |
8b07ae33 PA |
96 | int inserted; |
97 | }; | |
98 | ||
414a389f PA |
99 | /* The type of a breakpoint. */ |
100 | enum bkpt_type | |
101 | { | |
8b07ae33 | 102 | /* A GDB breakpoint, requested with a Z0 packet. */ |
802e8e6d PA |
103 | gdb_breakpoint_Z0, |
104 | ||
105 | /* A GDB hardware breakpoint, requested with a Z1 packet. */ | |
106 | gdb_breakpoint_Z1, | |
107 | ||
108 | /* A GDB write watchpoint, requested with a Z2 packet. */ | |
109 | gdb_breakpoint_Z2, | |
110 | ||
111 | /* A GDB read watchpoint, requested with a Z3 packet. */ | |
112 | gdb_breakpoint_Z3, | |
113 | ||
114 | /* A GDB access watchpoint, requested with a Z4 packet. */ | |
115 | gdb_breakpoint_Z4, | |
8b07ae33 | 116 | |
414a389f PA |
117 | /* A basic-software-single-step breakpoint. */ |
118 | reinsert_breakpoint, | |
119 | ||
120 | /* Any other breakpoint type that doesn't require specific | |
121 | treatment goes here. E.g., an event breakpoint. */ | |
122 | other_breakpoint, | |
123 | }; | |
124 | ||
9f3a5c85 LM |
125 | struct point_cond_list |
126 | { | |
127 | /* Pointer to the agent expression that is the breakpoint's | |
128 | conditional. */ | |
129 | struct agent_expr *cond; | |
130 | ||
131 | /* Pointer to the next condition. */ | |
132 | struct point_cond_list *next; | |
133 | }; | |
134 | ||
d3ce09f5 SS |
135 | struct point_command_list |
136 | { | |
137 | /* Pointer to the agent expression that is the breakpoint's | |
138 | commands. */ | |
139 | struct agent_expr *cmd; | |
140 | ||
141 | /* Flag that is true if this command should run even while GDB is | |
142 | disconnected. */ | |
143 | int persistence; | |
144 | ||
145 | /* Pointer to the next command. */ | |
146 | struct point_command_list *next; | |
147 | }; | |
148 | ||
8b07ae33 | 149 | /* A high level (in gdbserver's perspective) breakpoint. */ |
611cb4a5 DJ |
150 | struct breakpoint |
151 | { | |
152 | struct breakpoint *next; | |
611cb4a5 | 153 | |
414a389f PA |
154 | /* The breakpoint's type. */ |
155 | enum bkpt_type type; | |
156 | ||
9f3a5c85 LM |
157 | /* Pointer to the condition list that should be evaluated on |
158 | the target or NULL if the breakpoint is unconditional or | |
159 | if GDB doesn't want us to evaluate the conditionals on the | |
160 | target's side. */ | |
161 | struct point_cond_list *cond_list; | |
162 | ||
d3ce09f5 SS |
163 | /* Point to the list of commands to run when this is hit. */ |
164 | struct point_command_list *command_list; | |
165 | ||
8b07ae33 PA |
166 | /* Link to this breakpoint's raw breakpoint. This is always |
167 | non-NULL. */ | |
168 | struct raw_breakpoint *raw; | |
169 | ||
b65d95c5 | 170 | /* Function to call when we hit this breakpoint. If it returns 1, |
8b07ae33 PA |
171 | the breakpoint shall be deleted; 0 or if this callback is NULL, |
172 | it will be left inserted. */ | |
b65d95c5 | 173 | int (*handler) (CORE_ADDR); |
611cb4a5 DJ |
174 | }; |
175 | ||
802e8e6d PA |
176 | /* See mem-break.h. */ |
177 | ||
932539e3 | 178 | enum target_hw_bp_type |
802e8e6d | 179 | raw_bkpt_type_to_target_hw_bp_type (enum raw_bkpt_type raw_type) |
932539e3 | 180 | { |
802e8e6d | 181 | switch (raw_type) |
932539e3 | 182 | { |
802e8e6d | 183 | case raw_bkpt_type_hw: |
932539e3 | 184 | return hw_execute; |
802e8e6d | 185 | case raw_bkpt_type_write_wp: |
932539e3 | 186 | return hw_write; |
802e8e6d | 187 | case raw_bkpt_type_read_wp: |
932539e3 | 188 | return hw_read; |
802e8e6d | 189 | case raw_bkpt_type_access_wp: |
932539e3 PA |
190 | return hw_access; |
191 | default: | |
38e08fca GB |
192 | internal_error (__FILE__, __LINE__, |
193 | "bad raw breakpoint type %d", (int) raw_type); | |
802e8e6d PA |
194 | } |
195 | } | |
196 | ||
197 | /* See mem-break.h. */ | |
198 | ||
199 | static enum bkpt_type | |
200 | Z_packet_to_bkpt_type (char z_type) | |
201 | { | |
202 | gdb_assert ('0' <= z_type && z_type <= '4'); | |
203 | ||
204 | return gdb_breakpoint_Z0 + (z_type - '0'); | |
205 | } | |
206 | ||
207 | /* See mem-break.h. */ | |
208 | ||
209 | enum raw_bkpt_type | |
210 | Z_packet_to_raw_bkpt_type (char z_type) | |
211 | { | |
212 | switch (z_type) | |
213 | { | |
214 | case Z_PACKET_SW_BP: | |
215 | return raw_bkpt_type_sw; | |
216 | case Z_PACKET_HW_BP: | |
217 | return raw_bkpt_type_hw; | |
218 | case Z_PACKET_WRITE_WP: | |
219 | return raw_bkpt_type_write_wp; | |
220 | case Z_PACKET_READ_WP: | |
221 | return raw_bkpt_type_read_wp; | |
222 | case Z_PACKET_ACCESS_WP: | |
223 | return raw_bkpt_type_access_wp; | |
224 | default: | |
225 | gdb_assert_not_reached ("unhandled Z packet type."); | |
932539e3 PA |
226 | } |
227 | } | |
228 | ||
d3ce09f5 SS |
229 | int |
230 | any_persistent_commands () | |
231 | { | |
232 | struct process_info *proc = current_process (); | |
233 | struct breakpoint *bp; | |
234 | struct point_command_list *cl; | |
235 | ||
236 | for (bp = proc->breakpoints; bp != NULL; bp = bp->next) | |
237 | { | |
238 | for (cl = bp->command_list; cl != NULL; cl = cl->next) | |
239 | if (cl->persistence) | |
240 | return 1; | |
241 | } | |
242 | ||
243 | return 0; | |
244 | } | |
245 | ||
802e8e6d PA |
246 | /* Find low-level breakpoint of type TYPE at address ADDR that is not |
247 | insert-disabled. Returns NULL if not found. */ | |
248 | ||
8b07ae33 | 249 | static struct raw_breakpoint * |
802e8e6d | 250 | find_enabled_raw_code_breakpoint_at (CORE_ADDR addr, enum raw_bkpt_type type) |
8b07ae33 PA |
251 | { |
252 | struct process_info *proc = current_process (); | |
253 | struct raw_breakpoint *bp; | |
414a389f | 254 | |
8b07ae33 | 255 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) |
802e8e6d PA |
256 | if (bp->pc == addr |
257 | && bp->raw_type == type | |
258 | && bp->inserted >= 0) | |
8b07ae33 PA |
259 | return bp; |
260 | ||
261 | return NULL; | |
262 | } | |
263 | ||
802e8e6d PA |
264 | /* Find low-level breakpoint of type TYPE at address ADDR. Returns |
265 | NULL if not found. */ | |
266 | ||
8b07ae33 | 267 | static struct raw_breakpoint * |
802e8e6d | 268 | find_raw_breakpoint_at (CORE_ADDR addr, enum raw_bkpt_type type, int size) |
611cb4a5 | 269 | { |
95954743 | 270 | struct process_info *proc = current_process (); |
8b07ae33 | 271 | struct raw_breakpoint *bp; |
802e8e6d PA |
272 | |
273 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) | |
274 | if (bp->pc == addr && bp->raw_type == type && bp->size == size) | |
275 | return bp; | |
276 | ||
277 | return NULL; | |
278 | } | |
279 | ||
280 | /* See mem-break.h. */ | |
281 | ||
282 | int | |
283 | insert_memory_breakpoint (struct raw_breakpoint *bp) | |
284 | { | |
6bf36717 | 285 | unsigned char buf[MAX_BREAKPOINT_LEN]; |
802e8e6d | 286 | int err; |
611cb4a5 DJ |
287 | |
288 | if (breakpoint_data == NULL) | |
802e8e6d | 289 | return 1; |
611cb4a5 | 290 | |
802e8e6d PA |
291 | /* If the architecture treats the size field of Z packets as a |
292 | 'kind' field, then we'll need to be able to know which is the | |
293 | breakpoint instruction too. */ | |
294 | if (bp->size != breakpoint_len) | |
8b07ae33 | 295 | { |
802e8e6d PA |
296 | if (debug_threads) |
297 | debug_printf ("Don't know how to insert breakpoints of size %d.\n", | |
298 | bp->size); | |
299 | return -1; | |
8b07ae33 PA |
300 | } |
301 | ||
fa593d66 PA |
302 | /* Note that there can be fast tracepoint jumps installed in the |
303 | same memory range, so to get at the original memory, we need to | |
304 | use read_inferior_memory, which masks those out. */ | |
802e8e6d | 305 | err = read_inferior_memory (bp->pc, buf, breakpoint_len); |
d50171e4 PA |
306 | if (err != 0) |
307 | { | |
308 | if (debug_threads) | |
87ce2a04 DE |
309 | debug_printf ("Failed to read shadow memory of" |
310 | " breakpoint at 0x%s (%s).\n", | |
802e8e6d | 311 | paddress (bp->pc), strerror (err)); |
d50171e4 | 312 | } |
802e8e6d PA |
313 | else |
314 | { | |
315 | memcpy (bp->old_data, buf, breakpoint_len); | |
611cb4a5 | 316 | |
802e8e6d PA |
317 | err = (*the_target->write_memory) (bp->pc, breakpoint_data, |
318 | breakpoint_len); | |
319 | if (err != 0) | |
320 | { | |
321 | if (debug_threads) | |
322 | debug_printf ("Failed to insert breakpoint at 0x%s (%s).\n", | |
323 | paddress (bp->pc), strerror (err)); | |
324 | } | |
325 | } | |
326 | return err != 0 ? -1 : 0; | |
327 | } | |
328 | ||
329 | /* See mem-break.h */ | |
330 | ||
331 | int | |
332 | remove_memory_breakpoint (struct raw_breakpoint *bp) | |
333 | { | |
334 | unsigned char buf[MAX_BREAKPOINT_LEN]; | |
335 | int err; | |
336 | ||
337 | /* Since there can be trap breakpoints inserted in the same address | |
338 | range, we use `write_inferior_memory', which takes care of | |
339 | layering breakpoints on top of fast tracepoints, and on top of | |
340 | the buffer we pass it. This works because the caller has already | |
341 | either unlinked the breakpoint or marked it uninserted. Also | |
342 | note that we need to pass the current shadow contents, because | |
343 | write_inferior_memory updates any shadow memory with what we pass | |
344 | here, and we want that to be a nop. */ | |
345 | memcpy (buf, bp->old_data, breakpoint_len); | |
346 | err = write_inferior_memory (bp->pc, buf, breakpoint_len); | |
d50171e4 PA |
347 | if (err != 0) |
348 | { | |
349 | if (debug_threads) | |
802e8e6d PA |
350 | debug_printf ("Failed to uninsert raw breakpoint " |
351 | "at 0x%s (%s) while deleting it.\n", | |
352 | paddress (bp->pc), strerror (err)); | |
353 | } | |
354 | return err != 0 ? -1 : 0; | |
355 | } | |
356 | ||
357 | /* Set a RAW breakpoint of type TYPE and size SIZE at WHERE. On | |
358 | success, a pointer to the new breakpoint is returned. On failure, | |
359 | returns NULL and writes the error code to *ERR. */ | |
360 | ||
361 | static struct raw_breakpoint * | |
362 | set_raw_breakpoint_at (enum raw_bkpt_type type, CORE_ADDR where, int size, | |
363 | int *err) | |
364 | { | |
365 | struct process_info *proc = current_process (); | |
366 | struct raw_breakpoint *bp; | |
367 | ||
368 | if (type == raw_bkpt_type_sw || type == raw_bkpt_type_hw) | |
369 | { | |
370 | bp = find_enabled_raw_code_breakpoint_at (where, type); | |
371 | if (bp != NULL && bp->size != size) | |
372 | { | |
373 | /* A different size than previously seen. The previous | |
374 | breakpoint must be gone then. */ | |
375 | if (debug_threads) | |
376 | debug_printf ("Inconsistent breakpoint size? Was %d, now %d.\n", | |
377 | bp->size, size); | |
378 | bp->inserted = -1; | |
379 | bp = NULL; | |
380 | } | |
381 | } | |
382 | else | |
383 | bp = find_raw_breakpoint_at (where, type, size); | |
384 | ||
385 | if (bp != NULL) | |
386 | { | |
387 | bp->refcount++; | |
388 | return bp; | |
389 | } | |
390 | ||
391 | bp = xcalloc (1, sizeof (*bp)); | |
392 | bp->pc = where; | |
393 | bp->size = size; | |
394 | bp->refcount = 1; | |
395 | bp->raw_type = type; | |
396 | ||
397 | *err = the_target->insert_point (bp->raw_type, bp->pc, bp->size, bp); | |
398 | if (*err != 0) | |
399 | { | |
400 | if (debug_threads) | |
401 | debug_printf ("Failed to insert breakpoint at 0x%s (%d).\n", | |
402 | paddress (where), *err); | |
d50171e4 PA |
403 | free (bp); |
404 | return NULL; | |
405 | } | |
406 | ||
d50171e4 | 407 | bp->inserted = 1; |
802e8e6d | 408 | /* Link the breakpoint in. */ |
8b07ae33 PA |
409 | bp->next = proc->raw_breakpoints; |
410 | proc->raw_breakpoints = bp; | |
d50171e4 PA |
411 | return bp; |
412 | } | |
413 | ||
fa593d66 PA |
414 | /* Notice that breakpoint traps are always installed on top of fast |
415 | tracepoint jumps. This is even if the fast tracepoint is installed | |
416 | at a later time compared to when the breakpoint was installed. | |
417 | This means that a stopping breakpoint or tracepoint has higher | |
418 | "priority". In turn, this allows having fast and slow tracepoints | |
419 | (and breakpoints) at the same address behave correctly. */ | |
420 | ||
421 | ||
422 | /* A fast tracepoint jump. */ | |
423 | ||
424 | struct fast_tracepoint_jump | |
425 | { | |
426 | struct fast_tracepoint_jump *next; | |
427 | ||
428 | /* A reference count. GDB can install more than one fast tracepoint | |
429 | at the same address (each with its own action list, for | |
430 | example). */ | |
431 | int refcount; | |
432 | ||
433 | /* The fast tracepoint's insertion address. There can only be one | |
434 | of these for a given PC. */ | |
435 | CORE_ADDR pc; | |
436 | ||
437 | /* Non-zero if this fast tracepoint jump is currently inserted in | |
438 | the inferior. */ | |
439 | int inserted; | |
440 | ||
441 | /* The length of the jump instruction. */ | |
442 | int length; | |
443 | ||
444 | /* A poor-man's flexible array member, holding both the jump | |
445 | instruction to insert, and a copy of the instruction that would | |
446 | be in memory had not been a jump there (the shadow memory of the | |
447 | tracepoint jump). */ | |
448 | unsigned char insn_and_shadow[0]; | |
449 | }; | |
450 | ||
451 | /* Fast tracepoint FP's jump instruction to insert. */ | |
452 | #define fast_tracepoint_jump_insn(fp) \ | |
453 | ((fp)->insn_and_shadow + 0) | |
454 | ||
455 | /* The shadow memory of fast tracepoint jump FP. */ | |
456 | #define fast_tracepoint_jump_shadow(fp) \ | |
457 | ((fp)->insn_and_shadow + (fp)->length) | |
458 | ||
459 | ||
460 | /* Return the fast tracepoint jump set at WHERE. */ | |
461 | ||
462 | static struct fast_tracepoint_jump * | |
463 | find_fast_tracepoint_jump_at (CORE_ADDR where) | |
464 | { | |
465 | struct process_info *proc = current_process (); | |
466 | struct fast_tracepoint_jump *jp; | |
467 | ||
468 | for (jp = proc->fast_tracepoint_jumps; jp != NULL; jp = jp->next) | |
469 | if (jp->pc == where) | |
470 | return jp; | |
471 | ||
472 | return NULL; | |
473 | } | |
474 | ||
475 | int | |
476 | fast_tracepoint_jump_here (CORE_ADDR where) | |
477 | { | |
478 | struct fast_tracepoint_jump *jp = find_fast_tracepoint_jump_at (where); | |
479 | ||
480 | return (jp != NULL); | |
481 | } | |
482 | ||
483 | int | |
484 | delete_fast_tracepoint_jump (struct fast_tracepoint_jump *todel) | |
485 | { | |
486 | struct fast_tracepoint_jump *bp, **bp_link; | |
487 | int ret; | |
488 | struct process_info *proc = current_process (); | |
489 | ||
490 | bp = proc->fast_tracepoint_jumps; | |
491 | bp_link = &proc->fast_tracepoint_jumps; | |
492 | ||
493 | while (bp) | |
494 | { | |
495 | if (bp == todel) | |
496 | { | |
497 | if (--bp->refcount == 0) | |
498 | { | |
499 | struct fast_tracepoint_jump *prev_bp_link = *bp_link; | |
6bf36717 | 500 | unsigned char *buf; |
fa593d66 PA |
501 | |
502 | /* Unlink it. */ | |
503 | *bp_link = bp->next; | |
504 | ||
505 | /* Since there can be breakpoints inserted in the same | |
506 | address range, we use `write_inferior_memory', which | |
507 | takes care of layering breakpoints on top of fast | |
508 | tracepoints, and on top of the buffer we pass it. | |
509 | This works because we've already unlinked the fast | |
510 | tracepoint jump above. Also note that we need to | |
511 | pass the current shadow contents, because | |
512 | write_inferior_memory updates any shadow memory with | |
513 | what we pass here, and we want that to be a nop. */ | |
6bf36717 JK |
514 | buf = alloca (bp->length); |
515 | memcpy (buf, fast_tracepoint_jump_shadow (bp), bp->length); | |
516 | ret = write_inferior_memory (bp->pc, buf, bp->length); | |
fa593d66 PA |
517 | if (ret != 0) |
518 | { | |
519 | /* Something went wrong, relink the jump. */ | |
520 | *bp_link = prev_bp_link; | |
521 | ||
522 | if (debug_threads) | |
87ce2a04 DE |
523 | debug_printf ("Failed to uninsert fast tracepoint jump " |
524 | "at 0x%s (%s) while deleting it.\n", | |
525 | paddress (bp->pc), strerror (ret)); | |
fa593d66 PA |
526 | return ret; |
527 | } | |
528 | ||
529 | free (bp); | |
530 | } | |
531 | ||
532 | return 0; | |
533 | } | |
534 | else | |
535 | { | |
536 | bp_link = &bp->next; | |
537 | bp = *bp_link; | |
538 | } | |
539 | } | |
540 | ||
541 | warning ("Could not find fast tracepoint jump in list."); | |
542 | return ENOENT; | |
543 | } | |
544 | ||
5c73ff4e YQ |
545 | void |
546 | inc_ref_fast_tracepoint_jump (struct fast_tracepoint_jump *jp) | |
547 | { | |
548 | jp->refcount++; | |
549 | } | |
550 | ||
fa593d66 PA |
551 | struct fast_tracepoint_jump * |
552 | set_fast_tracepoint_jump (CORE_ADDR where, | |
553 | unsigned char *insn, ULONGEST length) | |
554 | { | |
555 | struct process_info *proc = current_process (); | |
556 | struct fast_tracepoint_jump *jp; | |
557 | int err; | |
6bf36717 | 558 | unsigned char *buf; |
fa593d66 PA |
559 | |
560 | /* We refcount fast tracepoint jumps. Check if we already know | |
561 | about a jump at this address. */ | |
562 | jp = find_fast_tracepoint_jump_at (where); | |
563 | if (jp != NULL) | |
564 | { | |
565 | jp->refcount++; | |
566 | return jp; | |
567 | } | |
568 | ||
569 | /* We don't, so create a new object. Double the length, because the | |
570 | flexible array member holds both the jump insn, and the | |
571 | shadow. */ | |
572 | jp = xcalloc (1, sizeof (*jp) + (length * 2)); | |
573 | jp->pc = where; | |
574 | jp->length = length; | |
575 | memcpy (fast_tracepoint_jump_insn (jp), insn, length); | |
576 | jp->refcount = 1; | |
6bf36717 | 577 | buf = alloca (length); |
fa593d66 PA |
578 | |
579 | /* Note that there can be trap breakpoints inserted in the same | |
580 | address range. To access the original memory contents, we use | |
581 | `read_inferior_memory', which masks out breakpoints. */ | |
6bf36717 | 582 | err = read_inferior_memory (where, buf, length); |
fa593d66 PA |
583 | if (err != 0) |
584 | { | |
585 | if (debug_threads) | |
87ce2a04 DE |
586 | debug_printf ("Failed to read shadow memory of" |
587 | " fast tracepoint at 0x%s (%s).\n", | |
588 | paddress (where), strerror (err)); | |
fa593d66 PA |
589 | free (jp); |
590 | return NULL; | |
591 | } | |
6bf36717 | 592 | memcpy (fast_tracepoint_jump_shadow (jp), buf, length); |
fa593d66 PA |
593 | |
594 | /* Link the jump in. */ | |
595 | jp->inserted = 1; | |
596 | jp->next = proc->fast_tracepoint_jumps; | |
597 | proc->fast_tracepoint_jumps = jp; | |
598 | ||
599 | /* Since there can be trap breakpoints inserted in the same address | |
600 | range, we use use `write_inferior_memory', which takes care of | |
601 | layering breakpoints on top of fast tracepoints, on top of the | |
602 | buffer we pass it. This works because we've already linked in | |
603 | the fast tracepoint jump above. Also note that we need to pass | |
604 | the current shadow contents, because write_inferior_memory | |
605 | updates any shadow memory with what we pass here, and we want | |
606 | that to be a nop. */ | |
6bf36717 | 607 | err = write_inferior_memory (where, buf, length); |
fa593d66 PA |
608 | if (err != 0) |
609 | { | |
610 | if (debug_threads) | |
87ce2a04 DE |
611 | debug_printf ("Failed to insert fast tracepoint jump at 0x%s (%s).\n", |
612 | paddress (where), strerror (err)); | |
fa593d66 PA |
613 | |
614 | /* Unlink it. */ | |
615 | proc->fast_tracepoint_jumps = jp->next; | |
616 | free (jp); | |
617 | ||
618 | return NULL; | |
619 | } | |
620 | ||
621 | return jp; | |
622 | } | |
623 | ||
624 | void | |
625 | uninsert_fast_tracepoint_jumps_at (CORE_ADDR pc) | |
626 | { | |
627 | struct fast_tracepoint_jump *jp; | |
628 | int err; | |
629 | ||
630 | jp = find_fast_tracepoint_jump_at (pc); | |
631 | if (jp == NULL) | |
632 | { | |
633 | /* This can happen when we remove all breakpoints while handling | |
634 | a step-over. */ | |
635 | if (debug_threads) | |
87ce2a04 DE |
636 | debug_printf ("Could not find fast tracepoint jump at 0x%s " |
637 | "in list (uninserting).\n", | |
638 | paddress (pc)); | |
fa593d66 PA |
639 | return; |
640 | } | |
641 | ||
642 | if (jp->inserted) | |
643 | { | |
6bf36717 JK |
644 | unsigned char *buf; |
645 | ||
fa593d66 PA |
646 | jp->inserted = 0; |
647 | ||
648 | /* Since there can be trap breakpoints inserted in the same | |
649 | address range, we use use `write_inferior_memory', which | |
650 | takes care of layering breakpoints on top of fast | |
651 | tracepoints, and on top of the buffer we pass it. This works | |
652 | because we've already marked the fast tracepoint fast | |
653 | tracepoint jump uninserted above. Also note that we need to | |
654 | pass the current shadow contents, because | |
655 | write_inferior_memory updates any shadow memory with what we | |
656 | pass here, and we want that to be a nop. */ | |
6bf36717 JK |
657 | buf = alloca (jp->length); |
658 | memcpy (buf, fast_tracepoint_jump_shadow (jp), jp->length); | |
659 | err = write_inferior_memory (jp->pc, buf, jp->length); | |
fa593d66 PA |
660 | if (err != 0) |
661 | { | |
662 | jp->inserted = 1; | |
663 | ||
664 | if (debug_threads) | |
87ce2a04 DE |
665 | debug_printf ("Failed to uninsert fast tracepoint jump at" |
666 | " 0x%s (%s).\n", | |
667 | paddress (pc), strerror (err)); | |
fa593d66 PA |
668 | } |
669 | } | |
670 | } | |
671 | ||
672 | void | |
673 | reinsert_fast_tracepoint_jumps_at (CORE_ADDR where) | |
674 | { | |
675 | struct fast_tracepoint_jump *jp; | |
676 | int err; | |
6bf36717 | 677 | unsigned char *buf; |
fa593d66 PA |
678 | |
679 | jp = find_fast_tracepoint_jump_at (where); | |
680 | if (jp == NULL) | |
681 | { | |
682 | /* This can happen when we remove breakpoints when a tracepoint | |
683 | hit causes a tracing stop, while handling a step-over. */ | |
684 | if (debug_threads) | |
87ce2a04 DE |
685 | debug_printf ("Could not find fast tracepoint jump at 0x%s " |
686 | "in list (reinserting).\n", | |
687 | paddress (where)); | |
fa593d66 PA |
688 | return; |
689 | } | |
690 | ||
691 | if (jp->inserted) | |
692 | error ("Jump already inserted at reinsert time."); | |
693 | ||
694 | jp->inserted = 1; | |
695 | ||
696 | /* Since there can be trap breakpoints inserted in the same address | |
697 | range, we use `write_inferior_memory', which takes care of | |
698 | layering breakpoints on top of fast tracepoints, and on top of | |
699 | the buffer we pass it. This works because we've already marked | |
700 | the fast tracepoint jump inserted above. Also note that we need | |
701 | to pass the current shadow contents, because | |
702 | write_inferior_memory updates any shadow memory with what we pass | |
703 | here, and we want that to be a nop. */ | |
6bf36717 JK |
704 | buf = alloca (jp->length); |
705 | memcpy (buf, fast_tracepoint_jump_shadow (jp), jp->length); | |
706 | err = write_inferior_memory (where, buf, jp->length); | |
fa593d66 PA |
707 | if (err != 0) |
708 | { | |
709 | jp->inserted = 0; | |
710 | ||
711 | if (debug_threads) | |
87ce2a04 DE |
712 | debug_printf ("Failed to reinsert fast tracepoint jump at" |
713 | " 0x%s (%s).\n", | |
714 | paddress (where), strerror (err)); | |
fa593d66 PA |
715 | } |
716 | } | |
717 | ||
802e8e6d PA |
718 | /* Set a high-level breakpoint of type TYPE, with low level type |
719 | RAW_TYPE and size SIZE, at WHERE. On success, a pointer to the new | |
720 | breakpoint is returned. On failure, returns NULL and writes the | |
721 | error code to *ERR. HANDLER is called when the breakpoint is hit. | |
722 | HANDLER should return 1 if the breakpoint should be deleted, 0 | |
723 | otherwise. */ | |
724 | ||
725 | static struct breakpoint * | |
726 | set_breakpoint (enum bkpt_type type, enum raw_bkpt_type raw_type, | |
727 | CORE_ADDR where, int size, | |
728 | int (*handler) (CORE_ADDR), int *err) | |
d50171e4 PA |
729 | { |
730 | struct process_info *proc = current_process (); | |
731 | struct breakpoint *bp; | |
8b07ae33 | 732 | struct raw_breakpoint *raw; |
d50171e4 | 733 | |
802e8e6d | 734 | raw = set_raw_breakpoint_at (raw_type, where, size, err); |
d50171e4 | 735 | |
8b07ae33 | 736 | if (raw == NULL) |
d50171e4 PA |
737 | { |
738 | /* warn? */ | |
414a389f | 739 | return NULL; |
d50171e4 PA |
740 | } |
741 | ||
742 | bp = xcalloc (1, sizeof (struct breakpoint)); | |
802e8e6d | 743 | bp->type = type; |
8b07ae33 PA |
744 | |
745 | bp->raw = raw; | |
611cb4a5 DJ |
746 | bp->handler = handler; |
747 | ||
95954743 PA |
748 | bp->next = proc->breakpoints; |
749 | proc->breakpoints = bp; | |
414a389f PA |
750 | |
751 | return bp; | |
611cb4a5 DJ |
752 | } |
753 | ||
802e8e6d PA |
754 | /* See mem-break.h */ |
755 | ||
756 | struct breakpoint * | |
757 | set_breakpoint_at (CORE_ADDR where, int (*handler) (CORE_ADDR)) | |
758 | { | |
759 | int err_ignored; | |
760 | ||
761 | return set_breakpoint (other_breakpoint, raw_bkpt_type_sw, | |
762 | where, breakpoint_len, handler, | |
763 | &err_ignored); | |
764 | } | |
765 | ||
766 | ||
8b07ae33 PA |
767 | static int |
768 | delete_raw_breakpoint (struct process_info *proc, struct raw_breakpoint *todel) | |
769 | { | |
770 | struct raw_breakpoint *bp, **bp_link; | |
771 | int ret; | |
772 | ||
773 | bp = proc->raw_breakpoints; | |
774 | bp_link = &proc->raw_breakpoints; | |
775 | ||
776 | while (bp) | |
777 | { | |
778 | if (bp == todel) | |
779 | { | |
802e8e6d | 780 | if (bp->inserted > 0) |
8b07ae33 PA |
781 | { |
782 | struct raw_breakpoint *prev_bp_link = *bp_link; | |
783 | ||
784 | *bp_link = bp->next; | |
785 | ||
802e8e6d PA |
786 | ret = the_target->remove_point (bp->raw_type, bp->pc, bp->size, |
787 | bp); | |
8b07ae33 PA |
788 | if (ret != 0) |
789 | { | |
790 | /* Something went wrong, relink the breakpoint. */ | |
791 | *bp_link = prev_bp_link; | |
792 | ||
793 | if (debug_threads) | |
87ce2a04 | 794 | debug_printf ("Failed to uninsert raw breakpoint " |
802e8e6d PA |
795 | "at 0x%s while deleting it.\n", |
796 | paddress (bp->pc)); | |
8b07ae33 PA |
797 | return ret; |
798 | } | |
8b07ae33 PA |
799 | } |
800 | else | |
801 | *bp_link = bp->next; | |
802 | ||
803 | free (bp); | |
804 | return 0; | |
805 | } | |
806 | else | |
807 | { | |
808 | bp_link = &bp->next; | |
809 | bp = *bp_link; | |
810 | } | |
811 | } | |
812 | ||
813 | warning ("Could not find raw breakpoint in list."); | |
814 | return ENOENT; | |
815 | } | |
816 | ||
817 | static int | |
818 | release_breakpoint (struct process_info *proc, struct breakpoint *bp) | |
819 | { | |
820 | int newrefcount; | |
821 | int ret; | |
822 | ||
823 | newrefcount = bp->raw->refcount - 1; | |
824 | if (newrefcount == 0) | |
825 | { | |
826 | ret = delete_raw_breakpoint (proc, bp->raw); | |
827 | if (ret != 0) | |
828 | return ret; | |
829 | } | |
830 | else | |
831 | bp->raw->refcount = newrefcount; | |
832 | ||
833 | free (bp); | |
834 | ||
835 | return 0; | |
836 | } | |
837 | ||
838 | static int | |
839 | delete_breakpoint_1 (struct process_info *proc, struct breakpoint *todel) | |
611cb4a5 | 840 | { |
414a389f | 841 | struct breakpoint *bp, **bp_link; |
8b07ae33 | 842 | int err; |
611cb4a5 | 843 | |
414a389f PA |
844 | bp = proc->breakpoints; |
845 | bp_link = &proc->breakpoints; | |
846 | ||
847 | while (bp) | |
611cb4a5 | 848 | { |
414a389f | 849 | if (bp == todel) |
611cb4a5 | 850 | { |
414a389f PA |
851 | *bp_link = bp->next; |
852 | ||
8b07ae33 PA |
853 | err = release_breakpoint (proc, bp); |
854 | if (err != 0) | |
855 | return err; | |
856 | ||
857 | bp = *bp_link; | |
858 | return 0; | |
611cb4a5 | 859 | } |
414a389f PA |
860 | else |
861 | { | |
862 | bp_link = &bp->next; | |
863 | bp = *bp_link; | |
864 | } | |
611cb4a5 | 865 | } |
414a389f | 866 | |
611cb4a5 | 867 | warning ("Could not find breakpoint in list."); |
8b07ae33 PA |
868 | return ENOENT; |
869 | } | |
870 | ||
219f2f23 | 871 | int |
8b07ae33 PA |
872 | delete_breakpoint (struct breakpoint *todel) |
873 | { | |
874 | struct process_info *proc = current_process (); | |
875 | return delete_breakpoint_1 (proc, todel); | |
611cb4a5 DJ |
876 | } |
877 | ||
802e8e6d PA |
878 | /* Locate a GDB breakpoint of type Z_TYPE and size SIZE placed at |
879 | address ADDR and return a pointer to its structure. If SIZE is -1, | |
880 | the breakpoints' sizes are ignored. */ | |
51aa91f9 PA |
881 | |
882 | static struct breakpoint * | |
802e8e6d | 883 | find_gdb_breakpoint (char z_type, CORE_ADDR addr, int size) |
611cb4a5 | 884 | { |
95954743 | 885 | struct process_info *proc = current_process (); |
8b07ae33 | 886 | struct breakpoint *bp; |
802e8e6d | 887 | enum bkpt_type type = Z_packet_to_bkpt_type (z_type); |
611cb4a5 | 888 | |
8b07ae33 | 889 | for (bp = proc->breakpoints; bp != NULL; bp = bp->next) |
802e8e6d PA |
890 | if (bp->type == type && bp->raw->pc == addr |
891 | && (size == -1 || bp->raw->size == size)) | |
8b07ae33 | 892 | return bp; |
611cb4a5 DJ |
893 | |
894 | return NULL; | |
895 | } | |
896 | ||
802e8e6d PA |
897 | static int |
898 | z_type_supported (char z_type) | |
899 | { | |
900 | return (z_type >= '0' && z_type <= '4' | |
ef7cab6b | 901 | && the_target->supports_z_point_type != NULL |
802e8e6d PA |
902 | && the_target->supports_z_point_type (z_type)); |
903 | } | |
904 | ||
905 | /* Create a new GDB breakpoint of type Z_TYPE at ADDR with size SIZE. | |
906 | Returns a pointer to the newly created breakpoint on success. On | |
907 | failure returns NULL and sets *ERR to either -1 for error, or 1 if | |
908 | Z_TYPE breakpoints are not supported on this target. */ | |
909 | ||
910 | static struct breakpoint * | |
911 | set_gdb_breakpoint_1 (char z_type, CORE_ADDR addr, int size, int *err) | |
68070c10 | 912 | { |
8b07ae33 | 913 | struct breakpoint *bp; |
802e8e6d PA |
914 | enum bkpt_type type; |
915 | enum raw_bkpt_type raw_type; | |
916 | ||
917 | /* If we see GDB inserting a second code breakpoint at the same | |
918 | address, then either: GDB is updating the breakpoint's conditions | |
919 | or commands; or, the first breakpoint must have disappeared due | |
920 | to a shared library unload. On targets where the shared | |
921 | libraries are handled by userspace, like SVR4, for example, | |
922 | GDBserver can't tell if a library was loaded or unloaded. Since | |
923 | we refcount raw breakpoints, we must be careful to make sure GDB | |
924 | breakpoints never contribute more than one reference. if we | |
925 | didn't do this, in case the previous breakpoint is gone due to a | |
926 | shared library unload, we'd just increase the refcount of the | |
927 | previous breakpoint at this address, but the trap was not planted | |
928 | in the inferior anymore, thus the breakpoint would never be hit. | |
929 | Note this must be careful to not create a window where | |
930 | breakpoints are removed from the target, for non-stop, in case | |
931 | the target can poke at memory while the program is running. */ | |
932 | if (z_type == Z_PACKET_SW_BP | |
933 | || z_type == Z_PACKET_HW_BP) | |
934 | { | |
935 | bp = find_gdb_breakpoint (z_type, addr, -1); | |
8b07ae33 | 936 | |
802e8e6d PA |
937 | if (bp != NULL) |
938 | { | |
939 | if (bp->raw->size != size) | |
940 | { | |
941 | /* A different size than previously seen. The previous | |
942 | breakpoint must be gone then. */ | |
943 | bp->raw->inserted = -1; | |
944 | delete_breakpoint (bp); | |
945 | bp = NULL; | |
946 | } | |
947 | else if (z_type == Z_PACKET_SW_BP) | |
948 | { | |
949 | /* Check if the breakpoint is actually gone from the | |
950 | target, due to an solib unload, for example. Might | |
951 | as well validate _all_ breakpoints. */ | |
952 | validate_breakpoints (); | |
953 | ||
954 | /* Breakpoints that don't pass validation are | |
955 | deleted. */ | |
956 | bp = find_gdb_breakpoint (z_type, addr, -1); | |
957 | } | |
958 | } | |
959 | } | |
960 | else | |
961 | { | |
962 | /* Data breakpoints for the same address but different size are | |
963 | expected. GDB doesn't merge these. The backend gets to do | |
964 | that if it wants/can. */ | |
965 | bp = find_gdb_breakpoint (z_type, addr, size); | |
966 | } | |
8b07ae33 | 967 | |
d3bbe7a0 PA |
968 | if (bp != NULL) |
969 | { | |
802e8e6d PA |
970 | /* We already know about this breakpoint, there's nothing else |
971 | to do - GDB's reference is already accounted for. Note that | |
972 | whether the breakpoint inserted is left as is - we may be | |
973 | stepping over it, for example, in which case we don't want to | |
974 | force-reinsert it. */ | |
975 | return bp; | |
976 | } | |
977 | ||
978 | raw_type = Z_packet_to_raw_bkpt_type (z_type); | |
979 | type = Z_packet_to_bkpt_type (z_type); | |
980 | return set_breakpoint (type, raw_type, addr, size, NULL, err); | |
981 | } | |
982 | ||
983 | static int | |
984 | check_gdb_bp_preconditions (char z_type, int *err) | |
985 | { | |
986 | /* As software/memory breakpoints work by poking at memory, we need | |
987 | to prepare to access memory. If that operation fails, we need to | |
988 | return error. Seeing an error, if this is the first breakpoint | |
989 | of that type that GDB tries to insert, GDB would then assume the | |
990 | breakpoint type is supported, but it may actually not be. So we | |
991 | need to check whether the type is supported at all before | |
992 | preparing to access memory. */ | |
993 | if (!z_type_supported (z_type)) | |
994 | { | |
995 | *err = 1; | |
996 | return 0; | |
997 | } | |
998 | else if (current_inferior == NULL) | |
999 | { | |
1000 | *err = -1; | |
1001 | return 0; | |
1002 | } | |
1003 | else | |
1004 | return 1; | |
1005 | } | |
1006 | ||
1007 | /* See mem-break.h. This is a wrapper for set_gdb_breakpoint_1 that | |
1008 | knows to prepare to access memory for Z0 breakpoints. */ | |
d3bbe7a0 | 1009 | |
802e8e6d PA |
1010 | struct breakpoint * |
1011 | set_gdb_breakpoint (char z_type, CORE_ADDR addr, int size, int *err) | |
1012 | { | |
1013 | struct breakpoint *bp; | |
1014 | ||
1015 | if (!check_gdb_bp_preconditions (z_type, err)) | |
1016 | return NULL; | |
1017 | ||
1018 | /* If inserting a software/memory breakpoint, need to prepare to | |
1019 | access memory. */ | |
1020 | if (z_type == Z_PACKET_SW_BP) | |
1021 | { | |
1022 | *err = prepare_to_access_memory (); | |
1023 | if (*err != 0) | |
1024 | return NULL; | |
d3bbe7a0 PA |
1025 | } |
1026 | ||
802e8e6d | 1027 | bp = set_gdb_breakpoint_1 (z_type, addr, size, err); |
8b07ae33 | 1028 | |
802e8e6d PA |
1029 | if (z_type == Z_PACKET_SW_BP) |
1030 | done_accessing_memory (); | |
1031 | ||
1032 | return bp; | |
8b07ae33 PA |
1033 | } |
1034 | ||
802e8e6d PA |
1035 | /* Delete a GDB breakpoint of type Z_TYPE and size SIZE previously |
1036 | inserted at ADDR with set_gdb_breakpoint_at. Returns 0 on success, | |
1037 | -1 on error, and 1 if Z_TYPE breakpoints are not supported on this | |
1038 | target. */ | |
1039 | ||
1040 | static int | |
1041 | delete_gdb_breakpoint_1 (char z_type, CORE_ADDR addr, int size) | |
8b07ae33 PA |
1042 | { |
1043 | struct breakpoint *bp; | |
1044 | int err; | |
1045 | ||
802e8e6d | 1046 | bp = find_gdb_breakpoint (z_type, addr, size); |
8b07ae33 PA |
1047 | if (bp == NULL) |
1048 | return -1; | |
1049 | ||
0a261ed8 PA |
1050 | /* Before deleting the breakpoint, make sure to free its condition |
1051 | and command lists. */ | |
1052 | clear_breakpoint_conditions_and_commands (bp); | |
8b07ae33 | 1053 | err = delete_breakpoint (bp); |
802e8e6d | 1054 | if (err != 0) |
8b07ae33 PA |
1055 | return -1; |
1056 | ||
1057 | return 0; | |
1058 | } | |
1059 | ||
802e8e6d PA |
1060 | /* See mem-break.h. This is a wrapper for delete_gdb_breakpoint that |
1061 | knows to prepare to access memory for Z0 breakpoints. */ | |
1062 | ||
1063 | int | |
1064 | delete_gdb_breakpoint (char z_type, CORE_ADDR addr, int size) | |
1065 | { | |
1066 | int ret; | |
1067 | ||
1068 | if (!check_gdb_bp_preconditions (z_type, &ret)) | |
1069 | return ret; | |
1070 | ||
1071 | /* If inserting a software/memory breakpoint, need to prepare to | |
1072 | access memory. */ | |
1073 | if (z_type == Z_PACKET_SW_BP) | |
1074 | { | |
1075 | int err; | |
1076 | ||
1077 | err = prepare_to_access_memory (); | |
1078 | if (err != 0) | |
1079 | return -1; | |
1080 | } | |
1081 | ||
1082 | ret = delete_gdb_breakpoint_1 (z_type, addr, size); | |
1083 | ||
1084 | if (z_type == Z_PACKET_SW_BP) | |
1085 | done_accessing_memory (); | |
1086 | ||
1087 | return ret; | |
1088 | } | |
1089 | ||
1090 | /* Clear all conditions associated with a breakpoint. */ | |
9f3a5c85 | 1091 | |
0a261ed8 | 1092 | static void |
802e8e6d | 1093 | clear_breakpoint_conditions (struct breakpoint *bp) |
9f3a5c85 | 1094 | { |
412c89dd | 1095 | struct point_cond_list *cond; |
9f3a5c85 | 1096 | |
802e8e6d | 1097 | if (bp->cond_list == NULL) |
9f3a5c85 LM |
1098 | return; |
1099 | ||
1100 | cond = bp->cond_list; | |
9f3a5c85 LM |
1101 | |
1102 | while (cond != NULL) | |
1103 | { | |
412c89dd LM |
1104 | struct point_cond_list *cond_next; |
1105 | ||
1106 | cond_next = cond->next; | |
0a261ed8 | 1107 | gdb_free_agent_expr (cond->cond); |
9f3a5c85 | 1108 | free (cond); |
412c89dd | 1109 | cond = cond_next; |
9f3a5c85 LM |
1110 | } |
1111 | ||
1112 | bp->cond_list = NULL; | |
1113 | } | |
1114 | ||
0a261ed8 PA |
1115 | /* Clear all commands associated with a breakpoint. */ |
1116 | ||
1117 | static void | |
1118 | clear_breakpoint_commands (struct breakpoint *bp) | |
1119 | { | |
1120 | struct point_command_list *cmd; | |
1121 | ||
1122 | if (bp->command_list == NULL) | |
1123 | return; | |
1124 | ||
1125 | cmd = bp->command_list; | |
1126 | ||
1127 | while (cmd != NULL) | |
1128 | { | |
1129 | struct point_command_list *cmd_next; | |
1130 | ||
1131 | cmd_next = cmd->next; | |
1132 | gdb_free_agent_expr (cmd->cmd); | |
1133 | free (cmd); | |
1134 | cmd = cmd_next; | |
1135 | } | |
1136 | ||
1137 | bp->command_list = NULL; | |
1138 | } | |
1139 | ||
1140 | void | |
1141 | clear_breakpoint_conditions_and_commands (struct breakpoint *bp) | |
1142 | { | |
1143 | clear_breakpoint_conditions (bp); | |
1144 | clear_breakpoint_commands (bp); | |
1145 | } | |
1146 | ||
9f3a5c85 LM |
1147 | /* Add condition CONDITION to GDBserver's breakpoint BP. */ |
1148 | ||
802e8e6d | 1149 | static void |
9f3a5c85 LM |
1150 | add_condition_to_breakpoint (struct breakpoint *bp, |
1151 | struct agent_expr *condition) | |
1152 | { | |
1153 | struct point_cond_list *new_cond; | |
1154 | ||
1155 | /* Create new condition. */ | |
1156 | new_cond = xcalloc (1, sizeof (*new_cond)); | |
1157 | new_cond->cond = condition; | |
1158 | ||
1159 | /* Add condition to the list. */ | |
1160 | new_cond->next = bp->cond_list; | |
1161 | bp->cond_list = new_cond; | |
1162 | } | |
1163 | ||
802e8e6d | 1164 | /* Add a target-side condition CONDITION to a breakpoint. */ |
9f3a5c85 | 1165 | |
8b07ae33 | 1166 | int |
802e8e6d | 1167 | add_breakpoint_condition (struct breakpoint *bp, char **condition) |
9f3a5c85 | 1168 | { |
9f3a5c85 LM |
1169 | char *actparm = *condition; |
1170 | struct agent_expr *cond; | |
1171 | ||
9f3a5c85 LM |
1172 | if (condition == NULL) |
1173 | return 1; | |
1174 | ||
d708bcd1 PA |
1175 | if (bp == NULL) |
1176 | return 0; | |
1177 | ||
9f3a5c85 LM |
1178 | cond = gdb_parse_agent_expr (&actparm); |
1179 | ||
1180 | if (cond == NULL) | |
1181 | { | |
1182 | fprintf (stderr, "Condition evaluation failed. " | |
1183 | "Assuming unconditional.\n"); | |
1184 | return 0; | |
1185 | } | |
1186 | ||
1187 | add_condition_to_breakpoint (bp, cond); | |
1188 | ||
1189 | *condition = actparm; | |
1190 | ||
d708bcd1 | 1191 | return 1; |
9f3a5c85 LM |
1192 | } |
1193 | ||
1194 | /* Evaluate condition (if any) at breakpoint BP. Return 1 if | |
1195 | true and 0 otherwise. */ | |
1196 | ||
802e8e6d PA |
1197 | static int |
1198 | gdb_condition_true_at_breakpoint_z_type (char z_type, CORE_ADDR addr) | |
8b07ae33 | 1199 | { |
9f3a5c85 | 1200 | /* Fetch registers for the current inferior. */ |
802e8e6d | 1201 | struct breakpoint *bp = find_gdb_breakpoint (z_type, addr, -1); |
9f3a5c85 LM |
1202 | ULONGEST value = 0; |
1203 | struct point_cond_list *cl; | |
1204 | int err = 0; | |
5ae4861a | 1205 | struct eval_agent_expr_context ctx; |
9f3a5c85 LM |
1206 | |
1207 | if (bp == NULL) | |
1208 | return 0; | |
8b07ae33 | 1209 | |
9f3a5c85 LM |
1210 | /* Check if the breakpoint is unconditional. If it is, |
1211 | the condition always evaluates to TRUE. */ | |
1212 | if (bp->cond_list == NULL) | |
1213 | return 1; | |
1214 | ||
5ae4861a YQ |
1215 | ctx.regcache = get_thread_regcache (current_inferior, 1); |
1216 | ctx.tframe = NULL; | |
1217 | ctx.tpoint = NULL; | |
1218 | ||
9f3a5c85 LM |
1219 | /* Evaluate each condition in the breakpoint's list of conditions. |
1220 | Return true if any of the conditions evaluates to TRUE. | |
1221 | ||
1222 | If we failed to evaluate the expression, TRUE is returned. This | |
1223 | forces GDB to reevaluate the conditions. */ | |
1224 | for (cl = bp->cond_list; | |
1225 | cl && !value && !err; cl = cl->next) | |
1226 | { | |
1227 | /* Evaluate the condition. */ | |
5ae4861a | 1228 | err = gdb_eval_agent_expr (&ctx, cl->cond, &value); |
9f3a5c85 LM |
1229 | } |
1230 | ||
1231 | if (err) | |
1232 | return 1; | |
1233 | ||
1234 | return (value != 0); | |
1235 | } | |
1236 | ||
802e8e6d PA |
1237 | int |
1238 | gdb_condition_true_at_breakpoint (CORE_ADDR where) | |
1239 | { | |
1240 | /* Only check code (software or hardware) breakpoints. */ | |
1241 | return (gdb_condition_true_at_breakpoint_z_type (Z_PACKET_SW_BP, where) | |
1242 | || gdb_condition_true_at_breakpoint_z_type (Z_PACKET_HW_BP, where)); | |
1243 | } | |
1244 | ||
d3ce09f5 SS |
1245 | /* Add commands COMMANDS to GDBserver's breakpoint BP. */ |
1246 | ||
1247 | void | |
1248 | add_commands_to_breakpoint (struct breakpoint *bp, | |
1249 | struct agent_expr *commands, int persist) | |
1250 | { | |
1251 | struct point_command_list *new_cmd; | |
1252 | ||
1253 | /* Create new command. */ | |
1254 | new_cmd = xcalloc (1, sizeof (*new_cmd)); | |
1255 | new_cmd->cmd = commands; | |
1256 | new_cmd->persistence = persist; | |
1257 | ||
1258 | /* Add commands to the list. */ | |
1259 | new_cmd->next = bp->command_list; | |
1260 | bp->command_list = new_cmd; | |
1261 | } | |
1262 | ||
1263 | /* Add a target-side command COMMAND to the breakpoint at ADDR. */ | |
1264 | ||
1265 | int | |
802e8e6d PA |
1266 | add_breakpoint_commands (struct breakpoint *bp, char **command, |
1267 | int persist) | |
d3ce09f5 | 1268 | { |
d3ce09f5 SS |
1269 | char *actparm = *command; |
1270 | struct agent_expr *cmd; | |
1271 | ||
d3ce09f5 SS |
1272 | if (command == NULL) |
1273 | return 1; | |
1274 | ||
d708bcd1 PA |
1275 | if (bp == NULL) |
1276 | return 0; | |
1277 | ||
d3ce09f5 SS |
1278 | cmd = gdb_parse_agent_expr (&actparm); |
1279 | ||
1280 | if (cmd == NULL) | |
1281 | { | |
1282 | fprintf (stderr, "Command evaluation failed. " | |
1283 | "Disabling.\n"); | |
1284 | return 0; | |
1285 | } | |
1286 | ||
1287 | add_commands_to_breakpoint (bp, cmd, persist); | |
1288 | ||
1289 | *command = actparm; | |
1290 | ||
d708bcd1 | 1291 | return 1; |
d3ce09f5 SS |
1292 | } |
1293 | ||
1294 | /* Return true if there are no commands to run at this location, | |
1295 | which likely means we want to report back to GDB. */ | |
802e8e6d PA |
1296 | |
1297 | static int | |
1298 | gdb_no_commands_at_breakpoint_z_type (char z_type, CORE_ADDR addr) | |
d3ce09f5 | 1299 | { |
802e8e6d | 1300 | struct breakpoint *bp = find_gdb_breakpoint (z_type, addr, -1); |
d3ce09f5 SS |
1301 | |
1302 | if (bp == NULL) | |
802e8e6d | 1303 | return 1; |
d3ce09f5 SS |
1304 | |
1305 | if (debug_threads) | |
802e8e6d PA |
1306 | debug_printf ("at 0x%s, type Z%c, bp command_list is 0x%s\n", |
1307 | paddress (addr), z_type, | |
87ce2a04 | 1308 | phex_nz ((uintptr_t) bp->command_list, 0)); |
d3ce09f5 SS |
1309 | return (bp->command_list == NULL); |
1310 | } | |
1311 | ||
802e8e6d PA |
1312 | /* Return true if there are no commands to run at this location, |
1313 | which likely means we want to report back to GDB. */ | |
1314 | ||
1315 | int | |
1316 | gdb_no_commands_at_breakpoint (CORE_ADDR where) | |
1317 | { | |
1318 | /* Only check code (software or hardware) breakpoints. */ | |
1319 | return (gdb_no_commands_at_breakpoint_z_type (Z_PACKET_SW_BP, where) | |
1320 | && gdb_no_commands_at_breakpoint_z_type (Z_PACKET_HW_BP, where)); | |
1321 | } | |
1322 | ||
1323 | /* Run a breakpoint's commands. Returns 0 if there was a problem | |
1324 | running any command, 1 otherwise. */ | |
1325 | ||
1326 | static int | |
1327 | run_breakpoint_commands_z_type (char z_type, CORE_ADDR addr) | |
d3ce09f5 SS |
1328 | { |
1329 | /* Fetch registers for the current inferior. */ | |
802e8e6d | 1330 | struct breakpoint *bp = find_gdb_breakpoint (z_type, addr, -1); |
d3ce09f5 SS |
1331 | ULONGEST value = 0; |
1332 | struct point_command_list *cl; | |
1333 | int err = 0; | |
5ae4861a | 1334 | struct eval_agent_expr_context ctx; |
d3ce09f5 SS |
1335 | |
1336 | if (bp == NULL) | |
802e8e6d | 1337 | return 1; |
d3ce09f5 | 1338 | |
5ae4861a YQ |
1339 | ctx.regcache = get_thread_regcache (current_inferior, 1); |
1340 | ctx.tframe = NULL; | |
1341 | ctx.tpoint = NULL; | |
1342 | ||
d3ce09f5 SS |
1343 | for (cl = bp->command_list; |
1344 | cl && !value && !err; cl = cl->next) | |
1345 | { | |
1346 | /* Run the command. */ | |
5ae4861a | 1347 | err = gdb_eval_agent_expr (&ctx, cl->cmd, &value); |
d3ce09f5 SS |
1348 | |
1349 | /* If one command has a problem, stop digging the hole deeper. */ | |
1350 | if (err) | |
802e8e6d | 1351 | return 0; |
d3ce09f5 | 1352 | } |
802e8e6d PA |
1353 | |
1354 | return 1; | |
d3ce09f5 SS |
1355 | } |
1356 | ||
802e8e6d PA |
1357 | void |
1358 | run_breakpoint_commands (CORE_ADDR where) | |
1359 | { | |
1360 | /* Only check code (software or hardware) breakpoints. If one | |
1361 | command has a problem, stop digging the hole deeper. */ | |
1362 | if (run_breakpoint_commands_z_type (Z_PACKET_SW_BP, where)) | |
1363 | run_breakpoint_commands_z_type (Z_PACKET_HW_BP, where); | |
1364 | } | |
1365 | ||
1366 | /* See mem-break.h. */ | |
9f3a5c85 LM |
1367 | |
1368 | int | |
1369 | gdb_breakpoint_here (CORE_ADDR where) | |
1370 | { | |
802e8e6d PA |
1371 | /* Only check code (software or hardware) breakpoints. */ |
1372 | return (find_gdb_breakpoint (Z_PACKET_SW_BP, where, -1) != NULL | |
1373 | || find_gdb_breakpoint (Z_PACKET_HW_BP, where, -1) != NULL); | |
68070c10 PA |
1374 | } |
1375 | ||
d50171e4 PA |
1376 | void |
1377 | set_reinsert_breakpoint (CORE_ADDR stop_at) | |
611cb4a5 | 1378 | { |
414a389f PA |
1379 | struct breakpoint *bp; |
1380 | ||
1381 | bp = set_breakpoint_at (stop_at, NULL); | |
414a389f | 1382 | bp->type = reinsert_breakpoint; |
611cb4a5 DJ |
1383 | } |
1384 | ||
1385 | void | |
d50171e4 | 1386 | delete_reinsert_breakpoints (void) |
611cb4a5 | 1387 | { |
d50171e4 PA |
1388 | struct process_info *proc = current_process (); |
1389 | struct breakpoint *bp, **bp_link; | |
611cb4a5 | 1390 | |
d50171e4 PA |
1391 | bp = proc->breakpoints; |
1392 | bp_link = &proc->breakpoints; | |
611cb4a5 | 1393 | |
d50171e4 PA |
1394 | while (bp) |
1395 | { | |
414a389f PA |
1396 | if (bp->type == reinsert_breakpoint) |
1397 | { | |
1398 | *bp_link = bp->next; | |
8b07ae33 | 1399 | release_breakpoint (proc, bp); |
414a389f PA |
1400 | bp = *bp_link; |
1401 | } | |
1402 | else | |
1403 | { | |
1404 | bp_link = &bp->next; | |
1405 | bp = *bp_link; | |
1406 | } | |
d50171e4 PA |
1407 | } |
1408 | } | |
b65d95c5 | 1409 | |
d50171e4 | 1410 | static void |
8b07ae33 | 1411 | uninsert_raw_breakpoint (struct raw_breakpoint *bp) |
d50171e4 | 1412 | { |
802e8e6d PA |
1413 | if (bp->inserted < 0) |
1414 | { | |
1415 | if (debug_threads) | |
1416 | debug_printf ("Breakpoint at %s is marked insert-disabled.\n", | |
1417 | paddress (bp->pc)); | |
1418 | } | |
1419 | else if (bp->inserted > 0) | |
d50171e4 PA |
1420 | { |
1421 | int err; | |
1422 | ||
1423 | bp->inserted = 0; | |
802e8e6d PA |
1424 | |
1425 | err = the_target->remove_point (bp->raw_type, bp->pc, bp->size, bp); | |
d50171e4 PA |
1426 | if (err != 0) |
1427 | { | |
1428 | bp->inserted = 1; | |
611cb4a5 | 1429 | |
d50171e4 | 1430 | if (debug_threads) |
802e8e6d PA |
1431 | debug_printf ("Failed to uninsert raw breakpoint at 0x%s.\n", |
1432 | paddress (bp->pc)); | |
d50171e4 PA |
1433 | } |
1434 | } | |
611cb4a5 DJ |
1435 | } |
1436 | ||
1437 | void | |
d50171e4 | 1438 | uninsert_breakpoints_at (CORE_ADDR pc) |
611cb4a5 | 1439 | { |
802e8e6d | 1440 | struct process_info *proc = current_process (); |
8b07ae33 | 1441 | struct raw_breakpoint *bp; |
802e8e6d | 1442 | int found = 0; |
611cb4a5 | 1443 | |
802e8e6d PA |
1444 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) |
1445 | if ((bp->raw_type == raw_bkpt_type_sw | |
1446 | || bp->raw_type == raw_bkpt_type_hw) | |
1447 | && bp->pc == pc) | |
1448 | { | |
1449 | found = 1; | |
1450 | ||
1451 | if (bp->inserted) | |
1452 | uninsert_raw_breakpoint (bp); | |
1453 | } | |
1454 | ||
1455 | if (!found) | |
d50171e4 PA |
1456 | { |
1457 | /* This can happen when we remove all breakpoints while handling | |
1458 | a step-over. */ | |
1459 | if (debug_threads) | |
87ce2a04 DE |
1460 | debug_printf ("Could not find breakpoint at 0x%s " |
1461 | "in list (uninserting).\n", | |
1462 | paddress (pc)); | |
d50171e4 | 1463 | } |
611cb4a5 DJ |
1464 | } |
1465 | ||
0fb4aa4b PA |
1466 | void |
1467 | uninsert_all_breakpoints (void) | |
1468 | { | |
1469 | struct process_info *proc = current_process (); | |
1470 | struct raw_breakpoint *bp; | |
1471 | ||
1472 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) | |
802e8e6d PA |
1473 | if ((bp->raw_type == raw_bkpt_type_sw |
1474 | || bp->raw_type == raw_bkpt_type_hw) | |
1475 | && bp->inserted) | |
0fb4aa4b PA |
1476 | uninsert_raw_breakpoint (bp); |
1477 | } | |
1478 | ||
d50171e4 | 1479 | static void |
8b07ae33 | 1480 | reinsert_raw_breakpoint (struct raw_breakpoint *bp) |
611cb4a5 | 1481 | { |
d50171e4 | 1482 | int err; |
611cb4a5 | 1483 | |
d50171e4 | 1484 | if (bp->inserted) |
611cb4a5 DJ |
1485 | error ("Breakpoint already inserted at reinsert time."); |
1486 | ||
802e8e6d | 1487 | err = the_target->insert_point (bp->raw_type, bp->pc, bp->size, bp); |
d50171e4 PA |
1488 | if (err == 0) |
1489 | bp->inserted = 1; | |
1490 | else if (debug_threads) | |
802e8e6d PA |
1491 | debug_printf ("Failed to reinsert breakpoint at 0x%s (%d).\n", |
1492 | paddress (bp->pc), err); | |
611cb4a5 DJ |
1493 | } |
1494 | ||
d50171e4 PA |
1495 | void |
1496 | reinsert_breakpoints_at (CORE_ADDR pc) | |
611cb4a5 | 1497 | { |
802e8e6d | 1498 | struct process_info *proc = current_process (); |
8b07ae33 | 1499 | struct raw_breakpoint *bp; |
802e8e6d | 1500 | int found = 0; |
611cb4a5 | 1501 | |
802e8e6d PA |
1502 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) |
1503 | if ((bp->raw_type == raw_bkpt_type_sw | |
1504 | || bp->raw_type == raw_bkpt_type_hw) | |
1505 | && bp->pc == pc) | |
1506 | { | |
1507 | found = 1; | |
1508 | ||
1509 | reinsert_raw_breakpoint (bp); | |
1510 | } | |
1511 | ||
1512 | if (!found) | |
611cb4a5 | 1513 | { |
d50171e4 PA |
1514 | /* This can happen when we remove all breakpoints while handling |
1515 | a step-over. */ | |
1516 | if (debug_threads) | |
87ce2a04 DE |
1517 | debug_printf ("Could not find raw breakpoint at 0x%s " |
1518 | "in list (reinserting).\n", | |
1519 | paddress (pc)); | |
611cb4a5 | 1520 | } |
d50171e4 PA |
1521 | } |
1522 | ||
0fb4aa4b PA |
1523 | void |
1524 | reinsert_all_breakpoints (void) | |
1525 | { | |
1526 | struct process_info *proc = current_process (); | |
1527 | struct raw_breakpoint *bp; | |
1528 | ||
1529 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) | |
802e8e6d PA |
1530 | if ((bp->raw_type == raw_bkpt_type_sw |
1531 | || bp->raw_type == raw_bkpt_type_hw) | |
1532 | && !bp->inserted) | |
0fb4aa4b PA |
1533 | reinsert_raw_breakpoint (bp); |
1534 | } | |
1535 | ||
d50171e4 PA |
1536 | void |
1537 | check_breakpoints (CORE_ADDR stop_pc) | |
1538 | { | |
1539 | struct process_info *proc = current_process (); | |
1540 | struct breakpoint *bp, **bp_link; | |
1541 | ||
1542 | bp = proc->breakpoints; | |
1543 | bp_link = &proc->breakpoints; | |
1544 | ||
1545 | while (bp) | |
b65d95c5 | 1546 | { |
802e8e6d PA |
1547 | struct raw_breakpoint *raw = bp->raw; |
1548 | ||
1549 | if ((raw->raw_type == raw_bkpt_type_sw | |
1550 | || raw->raw_type == raw_bkpt_type_hw) | |
1551 | && raw->pc == stop_pc) | |
d50171e4 | 1552 | { |
802e8e6d | 1553 | if (!raw->inserted) |
d50171e4 PA |
1554 | { |
1555 | warning ("Hit a removed breakpoint?"); | |
1556 | return; | |
1557 | } | |
1558 | ||
1559 | if (bp->handler != NULL && (*bp->handler) (stop_pc)) | |
1560 | { | |
1561 | *bp_link = bp->next; | |
1562 | ||
8b07ae33 | 1563 | release_breakpoint (proc, bp); |
d50171e4 PA |
1564 | |
1565 | bp = *bp_link; | |
1566 | continue; | |
1567 | } | |
1568 | } | |
1569 | ||
1570 | bp_link = &bp->next; | |
1571 | bp = *bp_link; | |
b65d95c5 | 1572 | } |
611cb4a5 DJ |
1573 | } |
1574 | ||
1575 | void | |
f450004a | 1576 | set_breakpoint_data (const unsigned char *bp_data, int bp_len) |
611cb4a5 DJ |
1577 | { |
1578 | breakpoint_data = bp_data; | |
1579 | breakpoint_len = bp_len; | |
1580 | } | |
1581 | ||
d50171e4 PA |
1582 | int |
1583 | breakpoint_here (CORE_ADDR addr) | |
1584 | { | |
802e8e6d PA |
1585 | struct process_info *proc = current_process (); |
1586 | struct raw_breakpoint *bp; | |
1587 | ||
1588 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) | |
1589 | if ((bp->raw_type == raw_bkpt_type_sw | |
1590 | || bp->raw_type == raw_bkpt_type_hw) | |
1591 | && bp->pc == addr) | |
1592 | return 1; | |
1593 | ||
1594 | return 0; | |
d50171e4 PA |
1595 | } |
1596 | ||
1597 | int | |
1598 | breakpoint_inserted_here (CORE_ADDR addr) | |
1599 | { | |
802e8e6d | 1600 | struct process_info *proc = current_process (); |
8b07ae33 | 1601 | struct raw_breakpoint *bp; |
d50171e4 | 1602 | |
802e8e6d PA |
1603 | for (bp = proc->raw_breakpoints; bp != NULL; bp = bp->next) |
1604 | if ((bp->raw_type == raw_bkpt_type_sw | |
1605 | || bp->raw_type == raw_bkpt_type_hw) | |
1606 | && bp->pc == addr | |
1607 | && bp->inserted) | |
1608 | return 1; | |
d50171e4 | 1609 | |
802e8e6d | 1610 | return 0; |
d50171e4 PA |
1611 | } |
1612 | ||
d3bbe7a0 PA |
1613 | static int |
1614 | validate_inserted_breakpoint (struct raw_breakpoint *bp) | |
1615 | { | |
1616 | unsigned char *buf; | |
1617 | int err; | |
1618 | ||
1619 | gdb_assert (bp->inserted); | |
802e8e6d | 1620 | gdb_assert (bp->raw_type == raw_bkpt_type_sw); |
d3bbe7a0 PA |
1621 | |
1622 | buf = alloca (breakpoint_len); | |
1623 | err = (*the_target->read_memory) (bp->pc, buf, breakpoint_len); | |
1624 | if (err || memcmp (buf, breakpoint_data, breakpoint_len) != 0) | |
1625 | { | |
1626 | /* Tag it as gone. */ | |
802e8e6d | 1627 | bp->inserted = -1; |
d3bbe7a0 PA |
1628 | return 0; |
1629 | } | |
1630 | ||
1631 | return 1; | |
1632 | } | |
1633 | ||
1634 | static void | |
1635 | delete_disabled_breakpoints (void) | |
1636 | { | |
1637 | struct process_info *proc = current_process (); | |
1638 | struct breakpoint *bp, *next; | |
1639 | ||
1640 | for (bp = proc->breakpoints; bp != NULL; bp = next) | |
1641 | { | |
1642 | next = bp->next; | |
802e8e6d | 1643 | if (bp->raw->inserted < 0) |
d3bbe7a0 PA |
1644 | delete_breakpoint_1 (proc, bp); |
1645 | } | |
1646 | } | |
1647 | ||
1648 | /* Check if breakpoints we inserted still appear to be inserted. They | |
1649 | may disappear due to a shared library unload, and worse, a new | |
1650 | shared library may be reloaded at the same address as the | |
1651 | previously unloaded one. If that happens, we should make sure that | |
1652 | the shadow memory of the old breakpoints isn't used when reading or | |
1653 | writing memory. */ | |
1654 | ||
1655 | void | |
1656 | validate_breakpoints (void) | |
1657 | { | |
1658 | struct process_info *proc = current_process (); | |
1659 | struct breakpoint *bp; | |
1660 | ||
1661 | for (bp = proc->breakpoints; bp != NULL; bp = bp->next) | |
1662 | { | |
802e8e6d PA |
1663 | struct raw_breakpoint *raw = bp->raw; |
1664 | ||
1665 | if (raw->raw_type == raw_bkpt_type_sw && raw->inserted > 0) | |
1666 | validate_inserted_breakpoint (raw); | |
d3bbe7a0 PA |
1667 | } |
1668 | ||
1669 | delete_disabled_breakpoints (); | |
1670 | } | |
1671 | ||
611cb4a5 | 1672 | void |
f450004a | 1673 | check_mem_read (CORE_ADDR mem_addr, unsigned char *buf, int mem_len) |
611cb4a5 | 1674 | { |
95954743 | 1675 | struct process_info *proc = current_process (); |
8b07ae33 | 1676 | struct raw_breakpoint *bp = proc->raw_breakpoints; |
fa593d66 | 1677 | struct fast_tracepoint_jump *jp = proc->fast_tracepoint_jumps; |
611cb4a5 | 1678 | CORE_ADDR mem_end = mem_addr + mem_len; |
d3bbe7a0 | 1679 | int disabled_one = 0; |
611cb4a5 | 1680 | |
fa593d66 PA |
1681 | for (; jp != NULL; jp = jp->next) |
1682 | { | |
1683 | CORE_ADDR bp_end = jp->pc + jp->length; | |
1684 | CORE_ADDR start, end; | |
1685 | int copy_offset, copy_len, buf_offset; | |
1686 | ||
6bf36717 JK |
1687 | gdb_assert (fast_tracepoint_jump_shadow (jp) >= buf + mem_len |
1688 | || buf >= fast_tracepoint_jump_shadow (jp) + (jp)->length); | |
1689 | ||
fa593d66 PA |
1690 | if (mem_addr >= bp_end) |
1691 | continue; | |
1692 | if (jp->pc >= mem_end) | |
1693 | continue; | |
1694 | ||
1695 | start = jp->pc; | |
1696 | if (mem_addr > start) | |
1697 | start = mem_addr; | |
1698 | ||
1699 | end = bp_end; | |
1700 | if (end > mem_end) | |
1701 | end = mem_end; | |
1702 | ||
1703 | copy_len = end - start; | |
1704 | copy_offset = start - jp->pc; | |
1705 | buf_offset = start - mem_addr; | |
1706 | ||
1707 | if (jp->inserted) | |
1708 | memcpy (buf + buf_offset, | |
1709 | fast_tracepoint_jump_shadow (jp) + copy_offset, | |
1710 | copy_len); | |
1711 | } | |
1712 | ||
611cb4a5 DJ |
1713 | for (; bp != NULL; bp = bp->next) |
1714 | { | |
1715 | CORE_ADDR bp_end = bp->pc + breakpoint_len; | |
1716 | CORE_ADDR start, end; | |
1717 | int copy_offset, copy_len, buf_offset; | |
1718 | ||
802e8e6d PA |
1719 | if (bp->raw_type != raw_bkpt_type_sw) |
1720 | continue; | |
1721 | ||
6bf36717 JK |
1722 | gdb_assert (bp->old_data >= buf + mem_len |
1723 | || buf >= &bp->old_data[sizeof (bp->old_data)]); | |
1724 | ||
611cb4a5 DJ |
1725 | if (mem_addr >= bp_end) |
1726 | continue; | |
1727 | if (bp->pc >= mem_end) | |
1728 | continue; | |
1729 | ||
1730 | start = bp->pc; | |
1731 | if (mem_addr > start) | |
1732 | start = mem_addr; | |
1733 | ||
1734 | end = bp_end; | |
1735 | if (end > mem_end) | |
1736 | end = mem_end; | |
1737 | ||
1738 | copy_len = end - start; | |
1739 | copy_offset = start - bp->pc; | |
1740 | buf_offset = start - mem_addr; | |
1741 | ||
802e8e6d | 1742 | if (bp->inserted > 0) |
d3bbe7a0 PA |
1743 | { |
1744 | if (validate_inserted_breakpoint (bp)) | |
1745 | memcpy (buf + buf_offset, bp->old_data + copy_offset, copy_len); | |
1746 | else | |
1747 | disabled_one = 1; | |
1748 | } | |
611cb4a5 | 1749 | } |
d3bbe7a0 PA |
1750 | |
1751 | if (disabled_one) | |
1752 | delete_disabled_breakpoints (); | |
611cb4a5 DJ |
1753 | } |
1754 | ||
1755 | void | |
b9fd1791 PA |
1756 | check_mem_write (CORE_ADDR mem_addr, unsigned char *buf, |
1757 | const unsigned char *myaddr, int mem_len) | |
611cb4a5 | 1758 | { |
95954743 | 1759 | struct process_info *proc = current_process (); |
8b07ae33 | 1760 | struct raw_breakpoint *bp = proc->raw_breakpoints; |
fa593d66 | 1761 | struct fast_tracepoint_jump *jp = proc->fast_tracepoint_jumps; |
611cb4a5 | 1762 | CORE_ADDR mem_end = mem_addr + mem_len; |
d3bbe7a0 | 1763 | int disabled_one = 0; |
611cb4a5 | 1764 | |
fa593d66 PA |
1765 | /* First fast tracepoint jumps, then breakpoint traps on top. */ |
1766 | ||
1767 | for (; jp != NULL; jp = jp->next) | |
1768 | { | |
1769 | CORE_ADDR jp_end = jp->pc + jp->length; | |
1770 | CORE_ADDR start, end; | |
1771 | int copy_offset, copy_len, buf_offset; | |
1772 | ||
6bf36717 JK |
1773 | gdb_assert (fast_tracepoint_jump_shadow (jp) >= myaddr + mem_len |
1774 | || myaddr >= fast_tracepoint_jump_shadow (jp) + (jp)->length); | |
1775 | gdb_assert (fast_tracepoint_jump_insn (jp) >= buf + mem_len | |
1776 | || buf >= fast_tracepoint_jump_insn (jp) + (jp)->length); | |
1777 | ||
fa593d66 PA |
1778 | if (mem_addr >= jp_end) |
1779 | continue; | |
1780 | if (jp->pc >= mem_end) | |
1781 | continue; | |
1782 | ||
1783 | start = jp->pc; | |
1784 | if (mem_addr > start) | |
1785 | start = mem_addr; | |
1786 | ||
1787 | end = jp_end; | |
1788 | if (end > mem_end) | |
1789 | end = mem_end; | |
1790 | ||
1791 | copy_len = end - start; | |
1792 | copy_offset = start - jp->pc; | |
1793 | buf_offset = start - mem_addr; | |
1794 | ||
1795 | memcpy (fast_tracepoint_jump_shadow (jp) + copy_offset, | |
b9fd1791 | 1796 | myaddr + buf_offset, copy_len); |
fa593d66 PA |
1797 | if (jp->inserted) |
1798 | memcpy (buf + buf_offset, | |
1799 | fast_tracepoint_jump_insn (jp) + copy_offset, copy_len); | |
1800 | } | |
1801 | ||
611cb4a5 DJ |
1802 | for (; bp != NULL; bp = bp->next) |
1803 | { | |
1804 | CORE_ADDR bp_end = bp->pc + breakpoint_len; | |
1805 | CORE_ADDR start, end; | |
1806 | int copy_offset, copy_len, buf_offset; | |
1807 | ||
802e8e6d PA |
1808 | if (bp->raw_type != raw_bkpt_type_sw) |
1809 | continue; | |
1810 | ||
6bf36717 JK |
1811 | gdb_assert (bp->old_data >= myaddr + mem_len |
1812 | || myaddr >= &bp->old_data[sizeof (bp->old_data)]); | |
1813 | ||
611cb4a5 DJ |
1814 | if (mem_addr >= bp_end) |
1815 | continue; | |
1816 | if (bp->pc >= mem_end) | |
1817 | continue; | |
1818 | ||
1819 | start = bp->pc; | |
1820 | if (mem_addr > start) | |
1821 | start = mem_addr; | |
1822 | ||
1823 | end = bp_end; | |
1824 | if (end > mem_end) | |
1825 | end = mem_end; | |
1826 | ||
1827 | copy_len = end - start; | |
1828 | copy_offset = start - bp->pc; | |
1829 | buf_offset = start - mem_addr; | |
1830 | ||
b9fd1791 | 1831 | memcpy (bp->old_data + copy_offset, myaddr + buf_offset, copy_len); |
802e8e6d | 1832 | if (bp->inserted > 0) |
d3bbe7a0 PA |
1833 | { |
1834 | if (validate_inserted_breakpoint (bp)) | |
1835 | memcpy (buf + buf_offset, breakpoint_data + copy_offset, copy_len); | |
1836 | else | |
1837 | disabled_one = 1; | |
1838 | } | |
611cb4a5 | 1839 | } |
d3bbe7a0 PA |
1840 | |
1841 | if (disabled_one) | |
1842 | delete_disabled_breakpoints (); | |
611cb4a5 | 1843 | } |
ae13219e | 1844 | |
95954743 | 1845 | /* Delete all breakpoints, and un-insert them from the inferior. */ |
ae13219e DJ |
1846 | |
1847 | void | |
1848 | delete_all_breakpoints (void) | |
1849 | { | |
95954743 PA |
1850 | struct process_info *proc = current_process (); |
1851 | ||
1852 | while (proc->breakpoints) | |
8b07ae33 | 1853 | delete_breakpoint_1 (proc, proc->breakpoints); |
95954743 PA |
1854 | } |
1855 | ||
f9e39928 | 1856 | /* Clear the "inserted" flag in all breakpoints. */ |
95954743 PA |
1857 | |
1858 | void | |
f9e39928 | 1859 | mark_breakpoints_out (struct process_info *proc) |
95954743 | 1860 | { |
8b07ae33 | 1861 | struct raw_breakpoint *raw_bp; |
95954743 | 1862 | |
8b07ae33 PA |
1863 | for (raw_bp = proc->raw_breakpoints; raw_bp != NULL; raw_bp = raw_bp->next) |
1864 | raw_bp->inserted = 0; | |
f9e39928 PA |
1865 | } |
1866 | ||
1867 | /* Release all breakpoints, but do not try to un-insert them from the | |
1868 | inferior. */ | |
1869 | ||
1870 | void | |
1871 | free_all_breakpoints (struct process_info *proc) | |
1872 | { | |
1873 | mark_breakpoints_out (proc); | |
8b07ae33 PA |
1874 | |
1875 | /* Note: use PROC explicitly instead of deferring to | |
1876 | delete_all_breakpoints --- CURRENT_INFERIOR may already have been | |
1877 | released when we get here. There should be no call to | |
1878 | current_process from here on. */ | |
95954743 | 1879 | while (proc->breakpoints) |
8b07ae33 | 1880 | delete_breakpoint_1 (proc, proc->breakpoints); |
ae13219e | 1881 | } |