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1/*
2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License as published by
4 * the Free Software Foundation; either version 2 of the License, or
5 * (at your option) any later version.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
15 *
16 * Copyright (C) 2007 Alan Stern
17 * Copyright (C) IBM Corporation, 2009
24f1e32c 18 * Copyright (C) 2009, Frederic Weisbecker <fweisbec@gmail.com>
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19 *
20 * Thanks to Ingo Molnar for his many suggestions.
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21 *
22 * Authors: Alan Stern <stern@rowland.harvard.edu>
23 * K.Prasad <prasad@linux.vnet.ibm.com>
24 * Frederic Weisbecker <fweisbec@gmail.com>
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25 */
26
27/*
28 * HW_breakpoint: a unified kernel/user-space hardware breakpoint facility,
29 * using the CPU's debug registers.
30 * This file contains the arch-independent routines.
31 */
32
33#include <linux/irqflags.h>
34#include <linux/kallsyms.h>
35#include <linux/notifier.h>
36#include <linux/kprobes.h>
37#include <linux/kdebug.h>
38#include <linux/kernel.h>
39#include <linux/module.h>
40#include <linux/percpu.h>
41#include <linux/sched.h>
42#include <linux/init.h>
88f7a890 43#include <linux/cpu.h>
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44#include <linux/smp.h>
45
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46#include <linux/hw_breakpoint.h>
47
ba1c813a
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48/*
49 * Constraints data
50 */
62a038d3 51
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52/* Number of pinned cpu breakpoints in a cpu */
53static DEFINE_PER_CPU(unsigned int, nr_cpu_bp_pinned);
54
55/* Number of pinned task breakpoints in a cpu */
6ab88863 56static DEFINE_PER_CPU(unsigned int, nr_task_bp_pinned[HBP_NUM]);
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57
58/* Number of non-pinned cpu/task breakpoints in a cpu */
59static DEFINE_PER_CPU(unsigned int, nr_bp_flexible);
60
61/* Gather the number of total pinned and un-pinned bp in a cpuset */
62struct bp_busy_slots {
63 unsigned int pinned;
64 unsigned int flexible;
65};
66
67/* Serialize accesses to the above constraints */
68static DEFINE_MUTEX(nr_bp_mutex);
69
70/*
71 * Report the maximum number of pinned breakpoints a task
72 * have in this cpu
73 */
74static unsigned int max_task_bp_pinned(int cpu)
62a038d3 75{
ba1c813a 76 int i;
6ab88863 77 unsigned int *tsk_pinned = per_cpu(nr_task_bp_pinned, cpu);
62a038d3 78
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79 for (i = HBP_NUM -1; i >= 0; i--) {
80 if (tsk_pinned[i] > 0)
81 return i + 1;
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82 }
83
24f1e32c 84 return 0;
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85}
86
56053170
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87static int task_bp_pinned(struct task_struct *tsk)
88{
89 struct perf_event_context *ctx = tsk->perf_event_ctxp;
90 struct list_head *list;
91 struct perf_event *bp;
92 unsigned long flags;
93 int count = 0;
94
95 if (WARN_ONCE(!ctx, "No perf context for this task"))
96 return 0;
97
98 list = &ctx->event_list;
99
e625cce1 100 raw_spin_lock_irqsave(&ctx->lock, flags);
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101
102 /*
103 * The current breakpoint counter is not included in the list
104 * at the open() callback time
105 */
106 list_for_each_entry(bp, list, event_entry) {
107 if (bp->attr.type == PERF_TYPE_BREAKPOINT)
108 count++;
109 }
110
e625cce1 111 raw_spin_unlock_irqrestore(&ctx->lock, flags);
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112
113 return count;
114}
115
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116/*
117 * Report the number of pinned/un-pinned breakpoints we have in
118 * a given cpu (cpu > -1) or in all of them (cpu = -1).
119 */
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120static void
121fetch_bp_busy_slots(struct bp_busy_slots *slots, struct perf_event *bp)
ba1c813a 122{
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123 int cpu = bp->cpu;
124 struct task_struct *tsk = bp->ctx->task;
125
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126 if (cpu >= 0) {
127 slots->pinned = per_cpu(nr_cpu_bp_pinned, cpu);
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128 if (!tsk)
129 slots->pinned += max_task_bp_pinned(cpu);
130 else
131 slots->pinned += task_bp_pinned(tsk);
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132 slots->flexible = per_cpu(nr_bp_flexible, cpu);
133
134 return;
135 }
136
137 for_each_online_cpu(cpu) {
138 unsigned int nr;
139
140 nr = per_cpu(nr_cpu_bp_pinned, cpu);
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141 if (!tsk)
142 nr += max_task_bp_pinned(cpu);
143 else
144 nr += task_bp_pinned(tsk);
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145
146 if (nr > slots->pinned)
147 slots->pinned = nr;
148
149 nr = per_cpu(nr_bp_flexible, cpu);
150
151 if (nr > slots->flexible)
152 slots->flexible = nr;
153 }
154}
155
156/*
157 * Add a pinned breakpoint for the given task in our constraint table
158 */
159static void toggle_bp_task_slot(struct task_struct *tsk, int cpu, bool enable)
160{
11e66357 161 unsigned int *tsk_pinned;
56053170 162 int count = 0;
ba1c813a 163
56053170 164 count = task_bp_pinned(tsk);
ba1c813a 165
6ab88863 166 tsk_pinned = per_cpu(nr_task_bp_pinned, cpu);
ba1c813a 167 if (enable) {
11e66357 168 tsk_pinned[count]++;
ba1c813a 169 if (count > 0)
11e66357 170 tsk_pinned[count-1]--;
ba1c813a 171 } else {
11e66357 172 tsk_pinned[count]--;
ba1c813a 173 if (count > 0)
11e66357 174 tsk_pinned[count-1]++;
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175 }
176}
177
178/*
179 * Add/remove the given breakpoint in our constraint table
180 */
181static void toggle_bp_slot(struct perf_event *bp, bool enable)
182{
183 int cpu = bp->cpu;
184 struct task_struct *tsk = bp->ctx->task;
185
186 /* Pinned counter task profiling */
187 if (tsk) {
188 if (cpu >= 0) {
189 toggle_bp_task_slot(tsk, cpu, enable);
190 return;
191 }
192
193 for_each_online_cpu(cpu)
194 toggle_bp_task_slot(tsk, cpu, enable);
195 return;
196 }
197
198 /* Pinned counter cpu profiling */
199 if (enable)
200 per_cpu(nr_cpu_bp_pinned, bp->cpu)++;
201 else
202 per_cpu(nr_cpu_bp_pinned, bp->cpu)--;
203}
204
205/*
206 * Contraints to check before allowing this new breakpoint counter:
207 *
208 * == Non-pinned counter == (Considered as pinned for now)
209 *
210 * - If attached to a single cpu, check:
211 *
212 * (per_cpu(nr_bp_flexible, cpu) || (per_cpu(nr_cpu_bp_pinned, cpu)
6ab88863 213 * + max(per_cpu(nr_task_bp_pinned, cpu)))) < HBP_NUM
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214 *
215 * -> If there are already non-pinned counters in this cpu, it means
216 * there is already a free slot for them.
217 * Otherwise, we check that the maximum number of per task
218 * breakpoints (for this cpu) plus the number of per cpu breakpoint
219 * (for this cpu) doesn't cover every registers.
220 *
221 * - If attached to every cpus, check:
222 *
223 * (per_cpu(nr_bp_flexible, *) || (max(per_cpu(nr_cpu_bp_pinned, *))
6ab88863 224 * + max(per_cpu(nr_task_bp_pinned, *)))) < HBP_NUM
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225 *
226 * -> This is roughly the same, except we check the number of per cpu
227 * bp for every cpu and we keep the max one. Same for the per tasks
228 * breakpoints.
229 *
230 *
231 * == Pinned counter ==
232 *
233 * - If attached to a single cpu, check:
234 *
235 * ((per_cpu(nr_bp_flexible, cpu) > 1) + per_cpu(nr_cpu_bp_pinned, cpu)
6ab88863 236 * + max(per_cpu(nr_task_bp_pinned, cpu))) < HBP_NUM
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237 *
238 * -> Same checks as before. But now the nr_bp_flexible, if any, must keep
239 * one register at least (or they will never be fed).
240 *
241 * - If attached to every cpus, check:
242 *
243 * ((per_cpu(nr_bp_flexible, *) > 1) + max(per_cpu(nr_cpu_bp_pinned, *))
6ab88863 244 * + max(per_cpu(nr_task_bp_pinned, *))) < HBP_NUM
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245 */
246int reserve_bp_slot(struct perf_event *bp)
247{
248 struct bp_busy_slots slots = {0};
249 int ret = 0;
250
251 mutex_lock(&nr_bp_mutex);
252
56053170 253 fetch_bp_busy_slots(&slots, bp);
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254
255 /* Flexible counters need to keep at least one slot */
256 if (slots.pinned + (!!slots.flexible) == HBP_NUM) {
257 ret = -ENOSPC;
258 goto end;
259 }
260
261 toggle_bp_slot(bp, true);
262
263end:
264 mutex_unlock(&nr_bp_mutex);
265
266 return ret;
267}
268
24f1e32c 269void release_bp_slot(struct perf_event *bp)
62a038d3 270{
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271 mutex_lock(&nr_bp_mutex);
272
273 toggle_bp_slot(bp, false);
274
275 mutex_unlock(&nr_bp_mutex);
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276}
277
ba1c813a 278
b326e956 279int register_perf_hw_breakpoint(struct perf_event *bp)
62a038d3 280{
24f1e32c 281 int ret;
62a038d3 282
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283 ret = reserve_bp_slot(bp);
284 if (ret)
285 return ret;
62a038d3 286
fdf6bc95
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287 /*
288 * Ptrace breakpoints can be temporary perf events only
289 * meant to reserve a slot. In this case, it is created disabled and
290 * we don't want to check the params right now (as we put a null addr)
291 * But perf tools create events as disabled and we want to check
292 * the params for them.
293 * This is a quick hack that will be removed soon, once we remove
294 * the tmp breakpoints from ptrace
295 */
b326e956 296 if (!bp->attr.disabled || !bp->overflow_handler)
24f1e32c 297 ret = arch_validate_hwbkpt_settings(bp, bp->ctx->task);
62a038d3 298
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299 return ret;
300}
62a038d3 301
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302/**
303 * register_user_hw_breakpoint - register a hardware breakpoint for user space
5fa10b28 304 * @attr: breakpoint attributes
24f1e32c 305 * @triggered: callback to trigger when we hit the breakpoint
62a038d3 306 * @tsk: pointer to 'task_struct' of the process to which the address belongs
62a038d3 307 */
24f1e32c 308struct perf_event *
5fa10b28 309register_user_hw_breakpoint(struct perf_event_attr *attr,
b326e956 310 perf_overflow_handler_t triggered,
5fa10b28 311 struct task_struct *tsk)
62a038d3 312{
5fa10b28 313 return perf_event_create_kernel_counter(attr, -1, tsk->pid, triggered);
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314}
315EXPORT_SYMBOL_GPL(register_user_hw_breakpoint);
316
317/**
318 * modify_user_hw_breakpoint - modify a user-space hardware breakpoint
24f1e32c 319 * @bp: the breakpoint structure to modify
5fa10b28 320 * @attr: new breakpoint attributes
24f1e32c 321 * @triggered: callback to trigger when we hit the breakpoint
62a038d3 322 * @tsk: pointer to 'task_struct' of the process to which the address belongs
62a038d3 323 */
44234adc 324int modify_user_hw_breakpoint(struct perf_event *bp, struct perf_event_attr *attr)
62a038d3 325{
44234adc
FW
326 u64 old_addr = bp->attr.bp_addr;
327 int old_type = bp->attr.bp_type;
328 int old_len = bp->attr.bp_len;
329 int err = 0;
330
331 perf_event_disable(bp);
332
333 bp->attr.bp_addr = attr->bp_addr;
334 bp->attr.bp_type = attr->bp_type;
335 bp->attr.bp_len = attr->bp_len;
336
337 if (attr->disabled)
338 goto end;
62a038d3 339
44234adc
FW
340 err = arch_validate_hwbkpt_settings(bp, bp->ctx->task);
341 if (!err)
342 perf_event_enable(bp);
343
344 if (err) {
345 bp->attr.bp_addr = old_addr;
346 bp->attr.bp_type = old_type;
347 bp->attr.bp_len = old_len;
348 if (!bp->attr.disabled)
349 perf_event_enable(bp);
350
351 return err;
352 }
353
354end:
355 bp->attr.disabled = attr->disabled;
356
357 return 0;
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358}
359EXPORT_SYMBOL_GPL(modify_user_hw_breakpoint);
360
361/**
24f1e32c 362 * unregister_hw_breakpoint - unregister a user-space hardware breakpoint
62a038d3 363 * @bp: the breakpoint structure to unregister
62a038d3 364 */
24f1e32c 365void unregister_hw_breakpoint(struct perf_event *bp)
62a038d3 366{
24f1e32c
FW
367 if (!bp)
368 return;
369 perf_event_release_kernel(bp);
370}
371EXPORT_SYMBOL_GPL(unregister_hw_breakpoint);
372
62a038d3 373/**
24f1e32c 374 * register_wide_hw_breakpoint - register a wide breakpoint in the kernel
dd1853c3 375 * @attr: breakpoint attributes
24f1e32c 376 * @triggered: callback to trigger when we hit the breakpoint
62a038d3 377 *
24f1e32c 378 * @return a set of per_cpu pointers to perf events
62a038d3 379 */
24f1e32c 380struct perf_event **
dd1853c3 381register_wide_hw_breakpoint(struct perf_event_attr *attr,
b326e956 382 perf_overflow_handler_t triggered)
62a038d3 383{
24f1e32c
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384 struct perf_event **cpu_events, **pevent, *bp;
385 long err;
386 int cpu;
387
388 cpu_events = alloc_percpu(typeof(*cpu_events));
389 if (!cpu_events)
390 return ERR_PTR(-ENOMEM);
62a038d3 391
88f7a890
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392 get_online_cpus();
393 for_each_online_cpu(cpu) {
24f1e32c 394 pevent = per_cpu_ptr(cpu_events, cpu);
dd1853c3 395 bp = perf_event_create_kernel_counter(attr, cpu, -1, triggered);
62a038d3 396
24f1e32c 397 *pevent = bp;
62a038d3 398
605bfaee 399 if (IS_ERR(bp)) {
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FW
400 err = PTR_ERR(bp);
401 goto fail;
402 }
62a038d3 403 }
88f7a890 404 put_online_cpus();
62a038d3 405
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406 return cpu_events;
407
408fail:
88f7a890 409 for_each_online_cpu(cpu) {
24f1e32c 410 pevent = per_cpu_ptr(cpu_events, cpu);
605bfaee 411 if (IS_ERR(*pevent))
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FW
412 break;
413 unregister_hw_breakpoint(*pevent);
414 }
88f7a890
LZ
415 put_online_cpus();
416
24f1e32c 417 free_percpu(cpu_events);
24f1e32c 418 return ERR_PTR(err);
62a038d3 419}
f60d24d2 420EXPORT_SYMBOL_GPL(register_wide_hw_breakpoint);
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421
422/**
24f1e32c
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423 * unregister_wide_hw_breakpoint - unregister a wide breakpoint in the kernel
424 * @cpu_events: the per cpu set of events to unregister
62a038d3 425 */
24f1e32c 426void unregister_wide_hw_breakpoint(struct perf_event **cpu_events)
62a038d3 427{
24f1e32c
FW
428 int cpu;
429 struct perf_event **pevent;
62a038d3 430
24f1e32c
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431 for_each_possible_cpu(cpu) {
432 pevent = per_cpu_ptr(cpu_events, cpu);
433 unregister_hw_breakpoint(*pevent);
62a038d3 434 }
24f1e32c 435 free_percpu(cpu_events);
62a038d3 436}
f60d24d2 437EXPORT_SYMBOL_GPL(unregister_wide_hw_breakpoint);
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438
439static struct notifier_block hw_breakpoint_exceptions_nb = {
440 .notifier_call = hw_breakpoint_exceptions_notify,
441 /* we need to be notified first */
442 .priority = 0x7fffffff
443};
444
445static int __init init_hw_breakpoint(void)
446{
447 return register_die_notifier(&hw_breakpoint_exceptions_nb);
448}
62a038d3 449core_initcall(init_hw_breakpoint);
24f1e32c
FW
450
451
452struct pmu perf_ops_bp = {
453 .enable = arch_install_hw_breakpoint,
454 .disable = arch_uninstall_hw_breakpoint,
455 .read = hw_breakpoint_pmu_read,
456 .unthrottle = hw_breakpoint_pmu_unthrottle
457};