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df7e5265 1/* Native-dependent code for x86 (i386 and x86-64).
7fa2737c 2
ecd75fc8 3 Copyright (C) 2001-2014 Free Software Foundation, Inc.
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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
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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/>. */
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19
20#include "defs.h"
df7e5265 21#include "x86-nat.h"
52b98211 22#include "gdbcmd.h"
4403d8e9 23#include "inferior.h"
52b98211 24
df7e5265 25/* Support for hardware watchpoints and breakpoints using the x86
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26 debug registers.
27
28 This provides several functions for inserting and removing
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29 hardware-assisted breakpoints and watchpoints, testing if one or
30 more of the watchpoints triggered and at what address, checking
31 whether a given region can be watched, etc.
32
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33 The functions below implement debug registers sharing by reference
34 counts, and allow to watch regions up to 16 bytes long. */
52b98211 35
6e62758f 36/* Low-level function vector. */
df7e5265 37struct x86_dr_low_type x86_dr_low;
9bb9e8ad 38
26cb8b7c
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39/* Per-process data. We don't bind this to a per-inferior registry
40 because of targets like x86 GNU/Linux that need to keep track of
41 processes that aren't bound to any inferior (e.g., fork children,
42 checkpoints). */
1ced966e 43
df7e5265 44struct x86_process_info
1ced966e 45{
26cb8b7c 46 /* Linked list. */
df7e5265 47 struct x86_process_info *next;
1ced966e 48
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49 /* The process identifier. */
50 pid_t pid;
4403d8e9 51
df7e5265
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52 /* Copy of x86 hardware debug registers. */
53 struct x86_debug_reg_state state;
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54};
55
df7e5265 56static struct x86_process_info *x86_process_list = NULL;
d0d8b0c6 57
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58/* Find process data for process PID. */
59
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60static struct x86_process_info *
61x86_find_process_pid (pid_t pid)
d0d8b0c6 62{
df7e5265 63 struct x86_process_info *proc;
26cb8b7c 64
df7e5265 65 for (proc = x86_process_list; proc; proc = proc->next)
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66 if (proc->pid == pid)
67 return proc;
d0d8b0c6 68
26cb8b7c 69 return NULL;
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70}
71
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72/* Add process data for process PID. Returns newly allocated info
73 object. */
4403d8e9 74
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75static struct x86_process_info *
76x86_add_process (pid_t pid)
4403d8e9 77{
df7e5265 78 struct x86_process_info *proc;
d0d8b0c6 79
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80 proc = xcalloc (1, sizeof (*proc));
81 proc->pid = pid;
4403d8e9 82
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83 proc->next = x86_process_list;
84 x86_process_list = proc;
4403d8e9 85
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86 return proc;
87}
4403d8e9 88
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89/* Get data specific info for process PID, creating it if necessary.
90 Never returns NULL. */
4403d8e9 91
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92static struct x86_process_info *
93x86_process_info_get (pid_t pid)
26cb8b7c 94{
df7e5265 95 struct x86_process_info *proc;
26cb8b7c 96
df7e5265 97 proc = x86_find_process_pid (pid);
26cb8b7c 98 if (proc == NULL)
df7e5265 99 proc = x86_add_process (pid);
4403d8e9 100
26cb8b7c 101 return proc;
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102}
103
26cb8b7c 104/* Get debug registers state for process PID. */
52b98211 105
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106struct x86_debug_reg_state *
107x86_debug_reg_state (pid_t pid)
7b50312a 108{
df7e5265 109 return &x86_process_info_get (pid)->state;
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110}
111
112/* See declaration in i386-nat.h. */
113
114void
df7e5265 115x86_forget_process (pid_t pid)
26cb8b7c 116{
df7e5265 117 struct x86_process_info *proc, **proc_link;
26cb8b7c 118
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119 proc = x86_process_list;
120 proc_link = &x86_process_list;
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121
122 while (proc != NULL)
123 {
124 if (proc->pid == pid)
125 {
126 *proc_link = proc->next;
127
128 xfree (proc);
129 return;
130 }
131
132 proc_link = &proc->next;
133 proc = *proc_link;
134 }
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135}
136
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137/* Clear the reference counts and forget everything we knew about the
138 debug registers. */
139
52b98211 140void
df7e5265 141x86_cleanup_dregs (void)
52b98211 142{
26cb8b7c 143 /* Starting from scratch has the same effect. */
df7e5265 144 x86_forget_process (ptid_get_pid (inferior_ptid));
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145}
146
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147/* Insert a watchpoint to watch a memory region which starts at
148 address ADDR and whose length is LEN bytes. Watch memory accesses
149 of the type TYPE. Return 0 on success, -1 on failure. */
7fa2737c 150
9bb9e8ad 151static int
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152x86_insert_watchpoint (struct target_ops *self,
153 CORE_ADDR addr, int len, int type,
154 struct expression *cond)
52b98211 155{
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156 struct x86_debug_reg_state *state
157 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
52b98211 158
df7e5265 159 return x86_dr_insert_watchpoint (state, type, addr, len);
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160}
161
162/* Remove a watchpoint that watched the memory region which starts at
163 address ADDR, whose length is LEN bytes, and for accesses of the
164 type TYPE. Return 0 on success, -1 on failure. */
9bb9e8ad 165static int
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166x86_remove_watchpoint (struct target_ops *self,
167 CORE_ADDR addr, int len, int type,
168 struct expression *cond)
52b98211 169{
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170 struct x86_debug_reg_state *state
171 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
1ced966e 172
df7e5265 173 return x86_dr_remove_watchpoint (state, type, addr, len);
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174}
175
176/* Return non-zero if we can watch a memory region that starts at
177 address ADDR and whose length is LEN bytes. */
7fa2737c 178
9bb9e8ad 179static int
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180x86_region_ok_for_watchpoint (struct target_ops *self,
181 CORE_ADDR addr, int len)
52b98211 182{
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183 struct x86_debug_reg_state *state
184 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
7fa2737c 185
df7e5265 186 return x86_dr_region_ok_for_watchpoint (state, addr, len);
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187}
188
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189/* If the inferior has some break/watchpoint that triggered, set the
190 address associated with that break/watchpoint and return non-zero.
4aa7a7f5 191 Otherwise, return zero. */
7fa2737c 192
9bb9e8ad 193static int
df7e5265 194x86_stopped_data_address (struct target_ops *ops, CORE_ADDR *addr_p)
52b98211 195{
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196 struct x86_debug_reg_state *state
197 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
52b98211 198
df7e5265 199 return x86_dr_stopped_data_address (state, addr_p);
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200}
201
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202/* Return non-zero if the inferior has some watchpoint that triggered.
203 Otherwise return zero. */
204
9bb9e8ad 205static int
df7e5265 206x86_stopped_by_watchpoint (struct target_ops *ops)
4aa7a7f5 207{
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208 struct x86_debug_reg_state *state
209 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
46e33252 210
df7e5265 211 return x86_dr_stopped_by_watchpoint (state);
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212}
213
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214/* Insert a hardware-assisted breakpoint at BP_TGT->placed_address.
215 Return 0 on success, EBUSY on failure. */
322a8e06 216
9bb9e8ad 217static int
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218x86_insert_hw_breakpoint (struct target_ops *self, struct gdbarch *gdbarch,
219 struct bp_target_info *bp_tgt)
52b98211 220{
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221 struct x86_debug_reg_state *state
222 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
46e33252 223
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224 return x86_dr_insert_watchpoint (state, hw_execute,
225 bp_tgt->placed_address, 1) ? EBUSY : 0;
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226}
227
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228/* Remove a hardware-assisted breakpoint at BP_TGT->placed_address.
229 Return 0 on success, -1 on failure. */
7fa2737c 230
9bb9e8ad 231static int
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232x86_remove_hw_breakpoint (struct target_ops *self, struct gdbarch *gdbarch,
233 struct bp_target_info *bp_tgt)
52b98211 234{
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235 struct x86_debug_reg_state *state
236 = x86_debug_reg_state (ptid_get_pid (inferior_ptid));
46e33252 237
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238 return x86_dr_remove_watchpoint (state, hw_execute,
239 bp_tgt->placed_address, 1);
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240}
241
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242/* Returns the number of hardware watchpoints of type TYPE that we can
243 set. Value is positive if we can set CNT watchpoints, zero if
244 setting watchpoints of type TYPE is not supported, and negative if
245 CNT is more than the maximum number of watchpoints of type TYPE
246 that we can support. TYPE is one of bp_hardware_watchpoint,
247 bp_read_watchpoint, bp_write_watchpoint, or bp_hardware_breakpoint.
248 CNT is the number of such watchpoints used so far (including this
249 one). OTHERTYPE is non-zero if other types of watchpoints are
250 currently enabled.
251
252 We always return 1 here because we don't have enough information
253 about possible overlap of addresses that they want to watch. As an
254 extreme example, consider the case where all the watchpoints watch
255 the same address and the same region length: then we can handle a
256 virtually unlimited number of watchpoints, due to debug register
257 sharing implemented via reference counts in i386-nat.c. */
258
259static int
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260x86_can_use_hw_breakpoint (struct target_ops *self,
261 int type, int cnt, int othertype)
c03374d5
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262{
263 return 1;
264}
265
9bb9e8ad
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266static void
267add_show_debug_regs_command (void)
268{
269 /* A maintenance command to enable printing the internal DRi mirror
270 variables. */
271 add_setshow_boolean_cmd ("show-debug-regs", class_maintenance,
c5e92cca 272 &show_debug_regs, _("\
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273Set whether to show variables that mirror the x86 debug registers."), _("\
274Show whether to show variables that mirror the x86 debug registers."), _("\
275Use \"on\" to enable, \"off\" to disable.\n\
276If enabled, the debug registers values are shown when GDB inserts\n\
277or removes a hardware breakpoint or watchpoint, and when the inferior\n\
278triggers a breakpoint or watchpoint."),
279 NULL,
280 NULL,
281 &maintenance_set_cmdlist,
282 &maintenance_show_cmdlist);
283}
284
285/* There are only two global functions left. */
286
c03374d5 287void
df7e5265 288x86_use_watchpoints (struct target_ops *t)
c03374d5
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289{
290 /* After a watchpoint trap, the PC points to the instruction after the
291 one that caused the trap. Therefore we don't need to step over it.
292 But we do need to reset the status register to avoid another trap. */
293 t->to_have_continuable_watchpoint = 1;
294
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295 t->to_can_use_hw_breakpoint = x86_can_use_hw_breakpoint;
296 t->to_region_ok_for_hw_watchpoint = x86_region_ok_for_watchpoint;
297 t->to_stopped_by_watchpoint = x86_stopped_by_watchpoint;
298 t->to_stopped_data_address = x86_stopped_data_address;
299 t->to_insert_watchpoint = x86_insert_watchpoint;
300 t->to_remove_watchpoint = x86_remove_watchpoint;
301 t->to_insert_hw_breakpoint = x86_insert_hw_breakpoint;
302 t->to_remove_hw_breakpoint = x86_remove_hw_breakpoint;
c03374d5
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303}
304
52b98211 305void
df7e5265 306x86_set_debug_register_length (int len)
52b98211 307{
9bb9e8ad 308 /* This function should be called only once for each native target. */
df7e5265 309 gdb_assert (x86_dr_low.debug_register_length == 0);
9bb9e8ad 310 gdb_assert (len == 4 || len == 8);
df7e5265 311 x86_dr_low.debug_register_length = len;
9bb9e8ad 312 add_show_debug_regs_command ();
52b98211 313}