ARM: Merge for-2635/samsung-hwmon
[linux-2.6-block.git] / kernel / kprobes.c
CommitLineData
1da177e4
LT
1/*
2 * Kernel Probes (KProbes)
3 * kernel/kprobes.c
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
18 *
19 * Copyright (C) IBM Corporation, 2002, 2004
20 *
21 * 2002-Oct Created by Vamsi Krishna S <vamsi_krishna@in.ibm.com> Kernel
22 * Probes initial implementation (includes suggestions from
23 * Rusty Russell).
24 * 2004-Aug Updated by Prasanna S Panchamukhi <prasanna@in.ibm.com> with
25 * hlists and exceptions notifier as suggested by Andi Kleen.
26 * 2004-July Suparna Bhattacharya <suparna@in.ibm.com> added jumper probes
27 * interface to access function arguments.
28 * 2004-Sep Prasanna S Panchamukhi <prasanna@in.ibm.com> Changed Kprobes
29 * exceptions notifier to be first on the priority list.
b94cce92
HN
30 * 2005-May Hien Nguyen <hien@us.ibm.com>, Jim Keniston
31 * <jkenisto@us.ibm.com> and Prasanna S Panchamukhi
32 * <prasanna@in.ibm.com> added function-return probes.
1da177e4
LT
33 */
34#include <linux/kprobes.h>
1da177e4
LT
35#include <linux/hash.h>
36#include <linux/init.h>
4e57b681 37#include <linux/slab.h>
e3869792 38#include <linux/stddef.h>
1da177e4 39#include <linux/module.h>
9ec4b1f3 40#include <linux/moduleloader.h>
3a872d89 41#include <linux/kallsyms.h>
b4c6c34a 42#include <linux/freezer.h>
346fd59b
SD
43#include <linux/seq_file.h>
44#include <linux/debugfs.h>
b2be84df 45#include <linux/sysctl.h>
1eeb66a1 46#include <linux/kdebug.h>
4460fdad 47#include <linux/memory.h>
4554dbcb 48#include <linux/ftrace.h>
afd66255 49#include <linux/cpu.h>
bf8f6e5b 50
d0aaff97 51#include <asm-generic/sections.h>
1da177e4
LT
52#include <asm/cacheflush.h>
53#include <asm/errno.h>
bf8f6e5b 54#include <asm/uaccess.h>
1da177e4
LT
55
56#define KPROBE_HASH_BITS 6
57#define KPROBE_TABLE_SIZE (1 << KPROBE_HASH_BITS)
58
3a872d89
AM
59
60/*
61 * Some oddball architectures like 64bit powerpc have function descriptors
62 * so this must be overridable.
63 */
64#ifndef kprobe_lookup_name
65#define kprobe_lookup_name(name, addr) \
66 addr = ((kprobe_opcode_t *)(kallsyms_lookup_name(name)))
67#endif
68
ef53d9c5 69static int kprobes_initialized;
1da177e4 70static struct hlist_head kprobe_table[KPROBE_TABLE_SIZE];
b94cce92 71static struct hlist_head kretprobe_inst_table[KPROBE_TABLE_SIZE];
1da177e4 72
bf8f6e5b 73/* NOTE: change this value only with kprobe_mutex held */
e579abeb 74static bool kprobes_all_disarmed;
bf8f6e5b 75
12941560 76static DEFINE_MUTEX(kprobe_mutex); /* Protects kprobe_table */
e6584523 77static DEFINE_PER_CPU(struct kprobe *, kprobe_instance) = NULL;
ef53d9c5 78static struct {
7e036d04 79 spinlock_t lock ____cacheline_aligned_in_smp;
ef53d9c5
S
80} kretprobe_table_locks[KPROBE_TABLE_SIZE];
81
82static spinlock_t *kretprobe_table_lock_ptr(unsigned long hash)
83{
84 return &(kretprobe_table_locks[hash].lock);
85}
1da177e4 86
3d8d996e
SD
87/*
88 * Normally, functions that we'd want to prohibit kprobes in, are marked
89 * __kprobes. But, there are cases where such functions already belong to
90 * a different section (__sched for preempt_schedule)
91 *
92 * For such cases, we now have a blacklist
93 */
544304b2 94static struct kprobe_blackpoint kprobe_blacklist[] = {
3d8d996e 95 {"preempt_schedule",},
65e234ec 96 {"native_get_debugreg",},
a00e817f
MH
97 {"irq_entries_start",},
98 {"common_interrupt",},
5ecaafdb 99 {"mcount",}, /* mcount can be called from everywhere */
3d8d996e
SD
100 {NULL} /* Terminator */
101};
102
2d14e39d 103#ifdef __ARCH_WANT_KPROBES_INSN_SLOT
9ec4b1f3
AM
104/*
105 * kprobe->ainsn.insn points to the copy of the instruction to be
106 * single-stepped. x86_64, POWER4 and above have no-exec support and
107 * stepping on the instruction on a vmalloced/kmalloced/data page
108 * is a recipe for disaster
109 */
9ec4b1f3 110struct kprobe_insn_page {
c5cb5a2d 111 struct list_head list;
9ec4b1f3 112 kprobe_opcode_t *insns; /* Page of instruction slots */
9ec4b1f3 113 int nused;
b4c6c34a 114 int ngarbage;
4610ee1d 115 char slot_used[];
9ec4b1f3
AM
116};
117
4610ee1d
MH
118#define KPROBE_INSN_PAGE_SIZE(slots) \
119 (offsetof(struct kprobe_insn_page, slot_used) + \
120 (sizeof(char) * (slots)))
121
122struct kprobe_insn_cache {
123 struct list_head pages; /* list of kprobe_insn_page */
124 size_t insn_size; /* size of instruction slot */
125 int nr_garbage;
126};
127
128static int slots_per_page(struct kprobe_insn_cache *c)
129{
130 return PAGE_SIZE/(c->insn_size * sizeof(kprobe_opcode_t));
131}
132
ab40c5c6
MH
133enum kprobe_slot_state {
134 SLOT_CLEAN = 0,
135 SLOT_DIRTY = 1,
136 SLOT_USED = 2,
137};
138
4610ee1d
MH
139static DEFINE_MUTEX(kprobe_insn_mutex); /* Protects kprobe_insn_slots */
140static struct kprobe_insn_cache kprobe_insn_slots = {
141 .pages = LIST_HEAD_INIT(kprobe_insn_slots.pages),
142 .insn_size = MAX_INSN_SIZE,
143 .nr_garbage = 0,
144};
145static int __kprobes collect_garbage_slots(struct kprobe_insn_cache *c);
b4c6c34a 146
9ec4b1f3 147/**
12941560 148 * __get_insn_slot() - Find a slot on an executable page for an instruction.
9ec4b1f3
AM
149 * We allocate an executable page if there's no room on existing ones.
150 */
4610ee1d 151static kprobe_opcode_t __kprobes *__get_insn_slot(struct kprobe_insn_cache *c)
9ec4b1f3
AM
152{
153 struct kprobe_insn_page *kip;
9ec4b1f3 154
6f716acd 155 retry:
4610ee1d
MH
156 list_for_each_entry(kip, &c->pages, list) {
157 if (kip->nused < slots_per_page(c)) {
9ec4b1f3 158 int i;
4610ee1d 159 for (i = 0; i < slots_per_page(c); i++) {
ab40c5c6
MH
160 if (kip->slot_used[i] == SLOT_CLEAN) {
161 kip->slot_used[i] = SLOT_USED;
9ec4b1f3 162 kip->nused++;
4610ee1d 163 return kip->insns + (i * c->insn_size);
9ec4b1f3
AM
164 }
165 }
4610ee1d
MH
166 /* kip->nused is broken. Fix it. */
167 kip->nused = slots_per_page(c);
168 WARN_ON(1);
9ec4b1f3
AM
169 }
170 }
171
b4c6c34a 172 /* If there are any garbage slots, collect it and try again. */
4610ee1d 173 if (c->nr_garbage && collect_garbage_slots(c) == 0)
b4c6c34a 174 goto retry;
4610ee1d
MH
175
176 /* All out of space. Need to allocate a new page. */
177 kip = kmalloc(KPROBE_INSN_PAGE_SIZE(slots_per_page(c)), GFP_KERNEL);
6f716acd 178 if (!kip)
9ec4b1f3 179 return NULL;
9ec4b1f3
AM
180
181 /*
182 * Use module_alloc so this page is within +/- 2GB of where the
183 * kernel image and loaded module images reside. This is required
184 * so x86_64 can correctly handle the %rip-relative fixups.
185 */
186 kip->insns = module_alloc(PAGE_SIZE);
187 if (!kip->insns) {
188 kfree(kip);
189 return NULL;
190 }
c5cb5a2d 191 INIT_LIST_HEAD(&kip->list);
4610ee1d 192 memset(kip->slot_used, SLOT_CLEAN, slots_per_page(c));
ab40c5c6 193 kip->slot_used[0] = SLOT_USED;
9ec4b1f3 194 kip->nused = 1;
b4c6c34a 195 kip->ngarbage = 0;
4610ee1d 196 list_add(&kip->list, &c->pages);
9ec4b1f3
AM
197 return kip->insns;
198}
199
4610ee1d 200
12941560
MH
201kprobe_opcode_t __kprobes *get_insn_slot(void)
202{
4610ee1d
MH
203 kprobe_opcode_t *ret = NULL;
204
12941560 205 mutex_lock(&kprobe_insn_mutex);
4610ee1d 206 ret = __get_insn_slot(&kprobe_insn_slots);
12941560 207 mutex_unlock(&kprobe_insn_mutex);
4610ee1d 208
12941560
MH
209 return ret;
210}
211
b4c6c34a
MH
212/* Return 1 if all garbages are collected, otherwise 0. */
213static int __kprobes collect_one_slot(struct kprobe_insn_page *kip, int idx)
214{
ab40c5c6 215 kip->slot_used[idx] = SLOT_CLEAN;
b4c6c34a
MH
216 kip->nused--;
217 if (kip->nused == 0) {
218 /*
219 * Page is no longer in use. Free it unless
220 * it's the last one. We keep the last one
221 * so as not to have to set it up again the
222 * next time somebody inserts a probe.
223 */
4610ee1d 224 if (!list_is_singular(&kip->list)) {
c5cb5a2d 225 list_del(&kip->list);
b4c6c34a
MH
226 module_free(NULL, kip->insns);
227 kfree(kip);
228 }
229 return 1;
230 }
231 return 0;
232}
233
4610ee1d 234static int __kprobes collect_garbage_slots(struct kprobe_insn_cache *c)
b4c6c34a 235{
c5cb5a2d 236 struct kprobe_insn_page *kip, *next;
b4c6c34a 237
615d0ebb
MH
238 /* Ensure no-one is interrupted on the garbages */
239 synchronize_sched();
b4c6c34a 240
4610ee1d 241 list_for_each_entry_safe(kip, next, &c->pages, list) {
b4c6c34a 242 int i;
b4c6c34a
MH
243 if (kip->ngarbage == 0)
244 continue;
245 kip->ngarbage = 0; /* we will collect all garbages */
4610ee1d 246 for (i = 0; i < slots_per_page(c); i++) {
ab40c5c6 247 if (kip->slot_used[i] == SLOT_DIRTY &&
b4c6c34a
MH
248 collect_one_slot(kip, i))
249 break;
250 }
251 }
4610ee1d 252 c->nr_garbage = 0;
b4c6c34a
MH
253 return 0;
254}
255
4610ee1d
MH
256static void __kprobes __free_insn_slot(struct kprobe_insn_cache *c,
257 kprobe_opcode_t *slot, int dirty)
9ec4b1f3
AM
258{
259 struct kprobe_insn_page *kip;
9ec4b1f3 260
4610ee1d 261 list_for_each_entry(kip, &c->pages, list) {
83ff56f4
MH
262 long idx = ((long)slot - (long)kip->insns) /
263 (c->insn_size * sizeof(kprobe_opcode_t));
4610ee1d
MH
264 if (idx >= 0 && idx < slots_per_page(c)) {
265 WARN_ON(kip->slot_used[idx] != SLOT_USED);
b4c6c34a 266 if (dirty) {
4610ee1d 267 kip->slot_used[idx] = SLOT_DIRTY;
b4c6c34a 268 kip->ngarbage++;
4610ee1d
MH
269 if (++c->nr_garbage > slots_per_page(c))
270 collect_garbage_slots(c);
c5cb5a2d 271 } else
4610ee1d
MH
272 collect_one_slot(kip, idx);
273 return;
9ec4b1f3
AM
274 }
275 }
4610ee1d
MH
276 /* Could not free this slot. */
277 WARN_ON(1);
278}
6f716acd 279
4610ee1d
MH
280void __kprobes free_insn_slot(kprobe_opcode_t * slot, int dirty)
281{
282 mutex_lock(&kprobe_insn_mutex);
283 __free_insn_slot(&kprobe_insn_slots, slot, dirty);
12941560 284 mutex_unlock(&kprobe_insn_mutex);
9ec4b1f3 285}
afd66255
MH
286#ifdef CONFIG_OPTPROBES
287/* For optimized_kprobe buffer */
288static DEFINE_MUTEX(kprobe_optinsn_mutex); /* Protects kprobe_optinsn_slots */
289static struct kprobe_insn_cache kprobe_optinsn_slots = {
290 .pages = LIST_HEAD_INIT(kprobe_optinsn_slots.pages),
291 /* .insn_size is initialized later */
292 .nr_garbage = 0,
293};
294/* Get a slot for optimized_kprobe buffer */
295kprobe_opcode_t __kprobes *get_optinsn_slot(void)
296{
297 kprobe_opcode_t *ret = NULL;
298
299 mutex_lock(&kprobe_optinsn_mutex);
300 ret = __get_insn_slot(&kprobe_optinsn_slots);
301 mutex_unlock(&kprobe_optinsn_mutex);
302
303 return ret;
304}
305
306void __kprobes free_optinsn_slot(kprobe_opcode_t * slot, int dirty)
307{
308 mutex_lock(&kprobe_optinsn_mutex);
309 __free_insn_slot(&kprobe_optinsn_slots, slot, dirty);
310 mutex_unlock(&kprobe_optinsn_mutex);
311}
312#endif
2d14e39d 313#endif
9ec4b1f3 314
e6584523
AM
315/* We have preemption disabled.. so it is safe to use __ versions */
316static inline void set_kprobe_instance(struct kprobe *kp)
317{
318 __get_cpu_var(kprobe_instance) = kp;
319}
320
321static inline void reset_kprobe_instance(void)
322{
323 __get_cpu_var(kprobe_instance) = NULL;
324}
325
3516a460
AM
326/*
327 * This routine is called either:
49a2a1b8 328 * - under the kprobe_mutex - during kprobe_[un]register()
3516a460 329 * OR
d217d545 330 * - with preemption disabled - from arch/xxx/kernel/kprobes.c
3516a460 331 */
d0aaff97 332struct kprobe __kprobes *get_kprobe(void *addr)
1da177e4
LT
333{
334 struct hlist_head *head;
335 struct hlist_node *node;
3516a460 336 struct kprobe *p;
1da177e4
LT
337
338 head = &kprobe_table[hash_ptr(addr, KPROBE_HASH_BITS)];
3516a460 339 hlist_for_each_entry_rcu(p, node, head, hlist) {
1da177e4
LT
340 if (p->addr == addr)
341 return p;
342 }
afd66255 343
1da177e4
LT
344 return NULL;
345}
346
afd66255
MH
347static int __kprobes aggr_pre_handler(struct kprobe *p, struct pt_regs *regs);
348
349/* Return true if the kprobe is an aggregator */
350static inline int kprobe_aggrprobe(struct kprobe *p)
351{
352 return p->pre_handler == aggr_pre_handler;
353}
354
355/*
356 * Keep all fields in the kprobe consistent
357 */
358static inline void copy_kprobe(struct kprobe *old_p, struct kprobe *p)
359{
360 memcpy(&p->opcode, &old_p->opcode, sizeof(kprobe_opcode_t));
361 memcpy(&p->ainsn, &old_p->ainsn, sizeof(struct arch_specific_insn));
362}
363
364#ifdef CONFIG_OPTPROBES
b2be84df
MH
365/* NOTE: change this value only with kprobe_mutex held */
366static bool kprobes_allow_optimization;
367
afd66255
MH
368/*
369 * Call all pre_handler on the list, but ignores its return value.
370 * This must be called from arch-dep optimized caller.
371 */
372void __kprobes opt_pre_handler(struct kprobe *p, struct pt_regs *regs)
373{
374 struct kprobe *kp;
375
376 list_for_each_entry_rcu(kp, &p->list, list) {
377 if (kp->pre_handler && likely(!kprobe_disabled(kp))) {
378 set_kprobe_instance(kp);
379 kp->pre_handler(kp, regs);
380 }
381 reset_kprobe_instance();
382 }
383}
384
385/* Return true(!0) if the kprobe is ready for optimization. */
386static inline int kprobe_optready(struct kprobe *p)
387{
388 struct optimized_kprobe *op;
389
390 if (kprobe_aggrprobe(p)) {
391 op = container_of(p, struct optimized_kprobe, kp);
392 return arch_prepared_optinsn(&op->optinsn);
393 }
394
395 return 0;
396}
397
398/*
399 * Return an optimized kprobe whose optimizing code replaces
400 * instructions including addr (exclude breakpoint).
401 */
402struct kprobe *__kprobes get_optimized_kprobe(unsigned long addr)
403{
404 int i;
405 struct kprobe *p = NULL;
406 struct optimized_kprobe *op;
407
408 /* Don't check i == 0, since that is a breakpoint case. */
409 for (i = 1; !p && i < MAX_OPTIMIZED_LENGTH; i++)
410 p = get_kprobe((void *)(addr - i));
411
412 if (p && kprobe_optready(p)) {
413 op = container_of(p, struct optimized_kprobe, kp);
414 if (arch_within_optimized_kprobe(op, addr))
415 return p;
416 }
417
418 return NULL;
419}
420
421/* Optimization staging list, protected by kprobe_mutex */
422static LIST_HEAD(optimizing_list);
423
424static void kprobe_optimizer(struct work_struct *work);
425static DECLARE_DELAYED_WORK(optimizing_work, kprobe_optimizer);
426#define OPTIMIZE_DELAY 5
427
428/* Kprobe jump optimizer */
429static __kprobes void kprobe_optimizer(struct work_struct *work)
430{
431 struct optimized_kprobe *op, *tmp;
432
433 /* Lock modules while optimizing kprobes */
434 mutex_lock(&module_mutex);
435 mutex_lock(&kprobe_mutex);
b2be84df 436 if (kprobes_all_disarmed || !kprobes_allow_optimization)
afd66255
MH
437 goto end;
438
439 /*
440 * Wait for quiesence period to ensure all running interrupts
441 * are done. Because optprobe may modify multiple instructions
442 * there is a chance that Nth instruction is interrupted. In that
443 * case, running interrupt can return to 2nd-Nth byte of jump
444 * instruction. This wait is for avoiding it.
445 */
446 synchronize_sched();
447
448 /*
449 * The optimization/unoptimization refers online_cpus via
450 * stop_machine() and cpu-hotplug modifies online_cpus.
451 * And same time, text_mutex will be held in cpu-hotplug and here.
452 * This combination can cause a deadlock (cpu-hotplug try to lock
453 * text_mutex but stop_machine can not be done because online_cpus
454 * has been changed)
455 * To avoid this deadlock, we need to call get_online_cpus()
456 * for preventing cpu-hotplug outside of text_mutex locking.
457 */
458 get_online_cpus();
459 mutex_lock(&text_mutex);
460 list_for_each_entry_safe(op, tmp, &optimizing_list, list) {
461 WARN_ON(kprobe_disabled(&op->kp));
462 if (arch_optimize_kprobe(op) < 0)
463 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
464 list_del_init(&op->list);
465 }
466 mutex_unlock(&text_mutex);
467 put_online_cpus();
468end:
469 mutex_unlock(&kprobe_mutex);
470 mutex_unlock(&module_mutex);
471}
472
473/* Optimize kprobe if p is ready to be optimized */
474static __kprobes void optimize_kprobe(struct kprobe *p)
475{
476 struct optimized_kprobe *op;
477
478 /* Check if the kprobe is disabled or not ready for optimization. */
b2be84df 479 if (!kprobe_optready(p) || !kprobes_allow_optimization ||
afd66255
MH
480 (kprobe_disabled(p) || kprobes_all_disarmed))
481 return;
482
483 /* Both of break_handler and post_handler are not supported. */
484 if (p->break_handler || p->post_handler)
485 return;
486
487 op = container_of(p, struct optimized_kprobe, kp);
488
489 /* Check there is no other kprobes at the optimized instructions */
490 if (arch_check_optimized_kprobe(op) < 0)
491 return;
492
493 /* Check if it is already optimized. */
494 if (op->kp.flags & KPROBE_FLAG_OPTIMIZED)
495 return;
496
497 op->kp.flags |= KPROBE_FLAG_OPTIMIZED;
498 list_add(&op->list, &optimizing_list);
499 if (!delayed_work_pending(&optimizing_work))
500 schedule_delayed_work(&optimizing_work, OPTIMIZE_DELAY);
501}
502
503/* Unoptimize a kprobe if p is optimized */
504static __kprobes void unoptimize_kprobe(struct kprobe *p)
505{
506 struct optimized_kprobe *op;
507
508 if ((p->flags & KPROBE_FLAG_OPTIMIZED) && kprobe_aggrprobe(p)) {
509 op = container_of(p, struct optimized_kprobe, kp);
510 if (!list_empty(&op->list))
511 /* Dequeue from the optimization queue */
512 list_del_init(&op->list);
513 else
514 /* Replace jump with break */
515 arch_unoptimize_kprobe(op);
516 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
517 }
518}
519
520/* Remove optimized instructions */
521static void __kprobes kill_optimized_kprobe(struct kprobe *p)
522{
523 struct optimized_kprobe *op;
524
525 op = container_of(p, struct optimized_kprobe, kp);
526 if (!list_empty(&op->list)) {
527 /* Dequeue from the optimization queue */
528 list_del_init(&op->list);
529 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
530 }
531 /* Don't unoptimize, because the target code will be freed. */
532 arch_remove_optimized_kprobe(op);
533}
534
535/* Try to prepare optimized instructions */
536static __kprobes void prepare_optimized_kprobe(struct kprobe *p)
537{
538 struct optimized_kprobe *op;
539
540 op = container_of(p, struct optimized_kprobe, kp);
541 arch_prepare_optimized_kprobe(op);
542}
543
544/* Free optimized instructions and optimized_kprobe */
545static __kprobes void free_aggr_kprobe(struct kprobe *p)
546{
547 struct optimized_kprobe *op;
548
549 op = container_of(p, struct optimized_kprobe, kp);
550 arch_remove_optimized_kprobe(op);
551 kfree(op);
552}
553
554/* Allocate new optimized_kprobe and try to prepare optimized instructions */
555static __kprobes struct kprobe *alloc_aggr_kprobe(struct kprobe *p)
556{
557 struct optimized_kprobe *op;
558
559 op = kzalloc(sizeof(struct optimized_kprobe), GFP_KERNEL);
560 if (!op)
561 return NULL;
562
563 INIT_LIST_HEAD(&op->list);
564 op->kp.addr = p->addr;
565 arch_prepare_optimized_kprobe(op);
566
567 return &op->kp;
568}
569
570static void __kprobes init_aggr_kprobe(struct kprobe *ap, struct kprobe *p);
571
572/*
573 * Prepare an optimized_kprobe and optimize it
574 * NOTE: p must be a normal registered kprobe
575 */
576static __kprobes void try_to_optimize_kprobe(struct kprobe *p)
577{
578 struct kprobe *ap;
579 struct optimized_kprobe *op;
580
581 ap = alloc_aggr_kprobe(p);
582 if (!ap)
583 return;
584
585 op = container_of(ap, struct optimized_kprobe, kp);
586 if (!arch_prepared_optinsn(&op->optinsn)) {
587 /* If failed to setup optimizing, fallback to kprobe */
588 free_aggr_kprobe(ap);
589 return;
590 }
591
592 init_aggr_kprobe(ap, p);
593 optimize_kprobe(ap);
594}
595
b2be84df
MH
596#ifdef CONFIG_SYSCTL
597static void __kprobes optimize_all_kprobes(void)
598{
599 struct hlist_head *head;
600 struct hlist_node *node;
601 struct kprobe *p;
602 unsigned int i;
603
604 /* If optimization is already allowed, just return */
605 if (kprobes_allow_optimization)
606 return;
607
608 kprobes_allow_optimization = true;
609 mutex_lock(&text_mutex);
610 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
611 head = &kprobe_table[i];
612 hlist_for_each_entry_rcu(p, node, head, hlist)
613 if (!kprobe_disabled(p))
614 optimize_kprobe(p);
615 }
616 mutex_unlock(&text_mutex);
617 printk(KERN_INFO "Kprobes globally optimized\n");
618}
619
620static void __kprobes unoptimize_all_kprobes(void)
621{
622 struct hlist_head *head;
623 struct hlist_node *node;
624 struct kprobe *p;
625 unsigned int i;
626
627 /* If optimization is already prohibited, just return */
628 if (!kprobes_allow_optimization)
629 return;
630
631 kprobes_allow_optimization = false;
632 printk(KERN_INFO "Kprobes globally unoptimized\n");
633 get_online_cpus(); /* For avoiding text_mutex deadlock */
634 mutex_lock(&text_mutex);
635 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
636 head = &kprobe_table[i];
637 hlist_for_each_entry_rcu(p, node, head, hlist) {
638 if (!kprobe_disabled(p))
639 unoptimize_kprobe(p);
640 }
641 }
642
643 mutex_unlock(&text_mutex);
644 put_online_cpus();
645 /* Allow all currently running kprobes to complete */
646 synchronize_sched();
647}
648
649int sysctl_kprobes_optimization;
650int proc_kprobes_optimization_handler(struct ctl_table *table, int write,
651 void __user *buffer, size_t *length,
652 loff_t *ppos)
653{
654 int ret;
655
656 mutex_lock(&kprobe_mutex);
657 sysctl_kprobes_optimization = kprobes_allow_optimization ? 1 : 0;
658 ret = proc_dointvec_minmax(table, write, buffer, length, ppos);
659
660 if (sysctl_kprobes_optimization)
661 optimize_all_kprobes();
662 else
663 unoptimize_all_kprobes();
664 mutex_unlock(&kprobe_mutex);
665
666 return ret;
667}
668#endif /* CONFIG_SYSCTL */
669
afd66255
MH
670static void __kprobes __arm_kprobe(struct kprobe *p)
671{
672 struct kprobe *old_p;
673
674 /* Check collision with other optimized kprobes */
675 old_p = get_optimized_kprobe((unsigned long)p->addr);
676 if (unlikely(old_p))
677 unoptimize_kprobe(old_p); /* Fallback to unoptimized kprobe */
678
679 arch_arm_kprobe(p);
680 optimize_kprobe(p); /* Try to optimize (add kprobe to a list) */
681}
682
683static void __kprobes __disarm_kprobe(struct kprobe *p)
684{
685 struct kprobe *old_p;
686
687 unoptimize_kprobe(p); /* Try to unoptimize */
688 arch_disarm_kprobe(p);
689
690 /* If another kprobe was blocked, optimize it. */
691 old_p = get_optimized_kprobe((unsigned long)p->addr);
692 if (unlikely(old_p))
693 optimize_kprobe(old_p);
694}
695
696#else /* !CONFIG_OPTPROBES */
697
698#define optimize_kprobe(p) do {} while (0)
699#define unoptimize_kprobe(p) do {} while (0)
700#define kill_optimized_kprobe(p) do {} while (0)
701#define prepare_optimized_kprobe(p) do {} while (0)
702#define try_to_optimize_kprobe(p) do {} while (0)
703#define __arm_kprobe(p) arch_arm_kprobe(p)
704#define __disarm_kprobe(p) arch_disarm_kprobe(p)
705
706static __kprobes void free_aggr_kprobe(struct kprobe *p)
707{
708 kfree(p);
709}
710
711static __kprobes struct kprobe *alloc_aggr_kprobe(struct kprobe *p)
712{
713 return kzalloc(sizeof(struct kprobe), GFP_KERNEL);
714}
715#endif /* CONFIG_OPTPROBES */
716
201517a7
MH
717/* Arm a kprobe with text_mutex */
718static void __kprobes arm_kprobe(struct kprobe *kp)
719{
afd66255
MH
720 /*
721 * Here, since __arm_kprobe() doesn't use stop_machine(),
722 * this doesn't cause deadlock on text_mutex. So, we don't
723 * need get_online_cpus().
724 */
201517a7 725 mutex_lock(&text_mutex);
afd66255 726 __arm_kprobe(kp);
201517a7
MH
727 mutex_unlock(&text_mutex);
728}
729
730/* Disarm a kprobe with text_mutex */
731static void __kprobes disarm_kprobe(struct kprobe *kp)
732{
afd66255 733 get_online_cpus(); /* For avoiding text_mutex deadlock */
201517a7 734 mutex_lock(&text_mutex);
afd66255 735 __disarm_kprobe(kp);
201517a7 736 mutex_unlock(&text_mutex);
afd66255 737 put_online_cpus();
201517a7
MH
738}
739
64f562c6
AM
740/*
741 * Aggregate handlers for multiple kprobes support - these handlers
742 * take care of invoking the individual kprobe handlers on p->list
743 */
d0aaff97 744static int __kprobes aggr_pre_handler(struct kprobe *p, struct pt_regs *regs)
64f562c6
AM
745{
746 struct kprobe *kp;
747
3516a460 748 list_for_each_entry_rcu(kp, &p->list, list) {
de5bd88d 749 if (kp->pre_handler && likely(!kprobe_disabled(kp))) {
e6584523 750 set_kprobe_instance(kp);
8b0914ea
PP
751 if (kp->pre_handler(kp, regs))
752 return 1;
64f562c6 753 }
e6584523 754 reset_kprobe_instance();
64f562c6
AM
755 }
756 return 0;
757}
758
d0aaff97
PP
759static void __kprobes aggr_post_handler(struct kprobe *p, struct pt_regs *regs,
760 unsigned long flags)
64f562c6
AM
761{
762 struct kprobe *kp;
763
3516a460 764 list_for_each_entry_rcu(kp, &p->list, list) {
de5bd88d 765 if (kp->post_handler && likely(!kprobe_disabled(kp))) {
e6584523 766 set_kprobe_instance(kp);
64f562c6 767 kp->post_handler(kp, regs, flags);
e6584523 768 reset_kprobe_instance();
64f562c6
AM
769 }
770 }
64f562c6
AM
771}
772
d0aaff97
PP
773static int __kprobes aggr_fault_handler(struct kprobe *p, struct pt_regs *regs,
774 int trapnr)
64f562c6 775{
e6584523
AM
776 struct kprobe *cur = __get_cpu_var(kprobe_instance);
777
64f562c6
AM
778 /*
779 * if we faulted "during" the execution of a user specified
780 * probe handler, invoke just that probe's fault handler
781 */
e6584523
AM
782 if (cur && cur->fault_handler) {
783 if (cur->fault_handler(cur, regs, trapnr))
64f562c6
AM
784 return 1;
785 }
786 return 0;
787}
788
d0aaff97 789static int __kprobes aggr_break_handler(struct kprobe *p, struct pt_regs *regs)
8b0914ea 790{
e6584523
AM
791 struct kprobe *cur = __get_cpu_var(kprobe_instance);
792 int ret = 0;
793
794 if (cur && cur->break_handler) {
795 if (cur->break_handler(cur, regs))
796 ret = 1;
8b0914ea 797 }
e6584523
AM
798 reset_kprobe_instance();
799 return ret;
8b0914ea
PP
800}
801
bf8d5c52
KA
802/* Walks the list and increments nmissed count for multiprobe case */
803void __kprobes kprobes_inc_nmissed_count(struct kprobe *p)
804{
805 struct kprobe *kp;
afd66255 806 if (!kprobe_aggrprobe(p)) {
bf8d5c52
KA
807 p->nmissed++;
808 } else {
809 list_for_each_entry_rcu(kp, &p->list, list)
810 kp->nmissed++;
811 }
812 return;
813}
814
99219a3f 815void __kprobes recycle_rp_inst(struct kretprobe_instance *ri,
816 struct hlist_head *head)
b94cce92 817{
ef53d9c5
S
818 struct kretprobe *rp = ri->rp;
819
b94cce92
HN
820 /* remove rp inst off the rprobe_inst_table */
821 hlist_del(&ri->hlist);
ef53d9c5
S
822 INIT_HLIST_NODE(&ri->hlist);
823 if (likely(rp)) {
824 spin_lock(&rp->lock);
825 hlist_add_head(&ri->hlist, &rp->free_instances);
826 spin_unlock(&rp->lock);
b94cce92
HN
827 } else
828 /* Unregistering */
99219a3f 829 hlist_add_head(&ri->hlist, head);
b94cce92
HN
830}
831
017c39bd 832void __kprobes kretprobe_hash_lock(struct task_struct *tsk,
ef53d9c5
S
833 struct hlist_head **head, unsigned long *flags)
834{
835 unsigned long hash = hash_ptr(tsk, KPROBE_HASH_BITS);
836 spinlock_t *hlist_lock;
837
838 *head = &kretprobe_inst_table[hash];
839 hlist_lock = kretprobe_table_lock_ptr(hash);
840 spin_lock_irqsave(hlist_lock, *flags);
841}
842
017c39bd
MH
843static void __kprobes kretprobe_table_lock(unsigned long hash,
844 unsigned long *flags)
b94cce92 845{
ef53d9c5
S
846 spinlock_t *hlist_lock = kretprobe_table_lock_ptr(hash);
847 spin_lock_irqsave(hlist_lock, *flags);
848}
849
017c39bd
MH
850void __kprobes kretprobe_hash_unlock(struct task_struct *tsk,
851 unsigned long *flags)
ef53d9c5
S
852{
853 unsigned long hash = hash_ptr(tsk, KPROBE_HASH_BITS);
854 spinlock_t *hlist_lock;
855
856 hlist_lock = kretprobe_table_lock_ptr(hash);
857 spin_unlock_irqrestore(hlist_lock, *flags);
858}
859
017c39bd 860void __kprobes kretprobe_table_unlock(unsigned long hash, unsigned long *flags)
ef53d9c5
S
861{
862 spinlock_t *hlist_lock = kretprobe_table_lock_ptr(hash);
863 spin_unlock_irqrestore(hlist_lock, *flags);
b94cce92
HN
864}
865
b94cce92 866/*
c6fd91f0 867 * This function is called from finish_task_switch when task tk becomes dead,
868 * so that we can recycle any function-return probe instances associated
869 * with this task. These left over instances represent probed functions
870 * that have been called but will never return.
b94cce92 871 */
d0aaff97 872void __kprobes kprobe_flush_task(struct task_struct *tk)
b94cce92 873{
62c27be0 874 struct kretprobe_instance *ri;
99219a3f 875 struct hlist_head *head, empty_rp;
802eae7c 876 struct hlist_node *node, *tmp;
ef53d9c5 877 unsigned long hash, flags = 0;
802eae7c 878
ef53d9c5
S
879 if (unlikely(!kprobes_initialized))
880 /* Early boot. kretprobe_table_locks not yet initialized. */
881 return;
882
883 hash = hash_ptr(tk, KPROBE_HASH_BITS);
884 head = &kretprobe_inst_table[hash];
885 kretprobe_table_lock(hash, &flags);
62c27be0 886 hlist_for_each_entry_safe(ri, node, tmp, head, hlist) {
887 if (ri->task == tk)
99219a3f 888 recycle_rp_inst(ri, &empty_rp);
62c27be0 889 }
ef53d9c5
S
890 kretprobe_table_unlock(hash, &flags);
891 INIT_HLIST_HEAD(&empty_rp);
99219a3f 892 hlist_for_each_entry_safe(ri, node, tmp, &empty_rp, hlist) {
893 hlist_del(&ri->hlist);
894 kfree(ri);
895 }
b94cce92
HN
896}
897
b94cce92
HN
898static inline void free_rp_inst(struct kretprobe *rp)
899{
900 struct kretprobe_instance *ri;
4c4308cb
CH
901 struct hlist_node *pos, *next;
902
ef53d9c5
S
903 hlist_for_each_entry_safe(ri, pos, next, &rp->free_instances, hlist) {
904 hlist_del(&ri->hlist);
b94cce92
HN
905 kfree(ri);
906 }
907}
908
4a296e07
MH
909static void __kprobes cleanup_rp_inst(struct kretprobe *rp)
910{
ef53d9c5 911 unsigned long flags, hash;
4a296e07
MH
912 struct kretprobe_instance *ri;
913 struct hlist_node *pos, *next;
ef53d9c5
S
914 struct hlist_head *head;
915
4a296e07 916 /* No race here */
ef53d9c5
S
917 for (hash = 0; hash < KPROBE_TABLE_SIZE; hash++) {
918 kretprobe_table_lock(hash, &flags);
919 head = &kretprobe_inst_table[hash];
920 hlist_for_each_entry_safe(ri, pos, next, head, hlist) {
921 if (ri->rp == rp)
922 ri->rp = NULL;
923 }
924 kretprobe_table_unlock(hash, &flags);
4a296e07 925 }
4a296e07
MH
926 free_rp_inst(rp);
927}
928
8b0914ea 929/*
b918e5e6 930* Add the new probe to ap->list. Fail if this is the
8b0914ea
PP
931* second jprobe at the address - two jprobes can't coexist
932*/
b918e5e6 933static int __kprobes add_new_kprobe(struct kprobe *ap, struct kprobe *p)
8b0914ea 934{
de5bd88d 935 BUG_ON(kprobe_gone(ap) || kprobe_gone(p));
afd66255
MH
936
937 if (p->break_handler || p->post_handler)
938 unoptimize_kprobe(ap); /* Fall back to normal kprobe */
939
8b0914ea 940 if (p->break_handler) {
b918e5e6 941 if (ap->break_handler)
36721656 942 return -EEXIST;
b918e5e6
MH
943 list_add_tail_rcu(&p->list, &ap->list);
944 ap->break_handler = aggr_break_handler;
8b0914ea 945 } else
b918e5e6
MH
946 list_add_rcu(&p->list, &ap->list);
947 if (p->post_handler && !ap->post_handler)
948 ap->post_handler = aggr_post_handler;
de5bd88d
MH
949
950 if (kprobe_disabled(ap) && !kprobe_disabled(p)) {
951 ap->flags &= ~KPROBE_FLAG_DISABLED;
952 if (!kprobes_all_disarmed)
953 /* Arm the breakpoint again. */
afd66255 954 __arm_kprobe(ap);
de5bd88d 955 }
8b0914ea
PP
956 return 0;
957}
958
64f562c6
AM
959/*
960 * Fill in the required fields of the "manager kprobe". Replace the
961 * earlier kprobe in the hlist with the manager kprobe
962 */
afd66255 963static void __kprobes init_aggr_kprobe(struct kprobe *ap, struct kprobe *p)
64f562c6 964{
afd66255 965 /* Copy p's insn slot to ap */
8b0914ea 966 copy_kprobe(p, ap);
a9ad965e 967 flush_insn_slot(ap);
64f562c6 968 ap->addr = p->addr;
afd66255 969 ap->flags = p->flags & ~KPROBE_FLAG_OPTIMIZED;
64f562c6 970 ap->pre_handler = aggr_pre_handler;
64f562c6 971 ap->fault_handler = aggr_fault_handler;
e8386a0c
MH
972 /* We don't care the kprobe which has gone. */
973 if (p->post_handler && !kprobe_gone(p))
36721656 974 ap->post_handler = aggr_post_handler;
e8386a0c 975 if (p->break_handler && !kprobe_gone(p))
36721656 976 ap->break_handler = aggr_break_handler;
64f562c6
AM
977
978 INIT_LIST_HEAD(&ap->list);
afd66255 979 INIT_HLIST_NODE(&ap->hlist);
64f562c6 980
afd66255 981 list_add_rcu(&p->list, &ap->list);
adad0f33 982 hlist_replace_rcu(&p->hlist, &ap->hlist);
64f562c6
AM
983}
984
985/*
986 * This is the second or subsequent kprobe at the address - handle
987 * the intricacies
64f562c6 988 */
d0aaff97
PP
989static int __kprobes register_aggr_kprobe(struct kprobe *old_p,
990 struct kprobe *p)
64f562c6
AM
991{
992 int ret = 0;
b918e5e6 993 struct kprobe *ap = old_p;
64f562c6 994
afd66255
MH
995 if (!kprobe_aggrprobe(old_p)) {
996 /* If old_p is not an aggr_kprobe, create new aggr_kprobe. */
997 ap = alloc_aggr_kprobe(old_p);
b918e5e6
MH
998 if (!ap)
999 return -ENOMEM;
afd66255 1000 init_aggr_kprobe(ap, old_p);
b918e5e6
MH
1001 }
1002
1003 if (kprobe_gone(ap)) {
e8386a0c
MH
1004 /*
1005 * Attempting to insert new probe at the same location that
1006 * had a probe in the module vaddr area which already
1007 * freed. So, the instruction slot has already been
1008 * released. We need a new slot for the new probe.
1009 */
b918e5e6 1010 ret = arch_prepare_kprobe(ap);
e8386a0c 1011 if (ret)
b918e5e6
MH
1012 /*
1013 * Even if fail to allocate new slot, don't need to
1014 * free aggr_probe. It will be used next time, or
1015 * freed by unregister_kprobe.
1016 */
e8386a0c 1017 return ret;
de5bd88d 1018
afd66255
MH
1019 /* Prepare optimized instructions if possible. */
1020 prepare_optimized_kprobe(ap);
1021
e8386a0c 1022 /*
de5bd88d
MH
1023 * Clear gone flag to prevent allocating new slot again, and
1024 * set disabled flag because it is not armed yet.
e8386a0c 1025 */
de5bd88d
MH
1026 ap->flags = (ap->flags & ~KPROBE_FLAG_GONE)
1027 | KPROBE_FLAG_DISABLED;
e8386a0c 1028 }
b918e5e6 1029
afd66255 1030 /* Copy ap's insn slot to p */
b918e5e6
MH
1031 copy_kprobe(ap, p);
1032 return add_new_kprobe(ap, p);
64f562c6
AM
1033}
1034
de5bd88d
MH
1035/* Try to disable aggr_kprobe, and return 1 if succeeded.*/
1036static int __kprobes try_to_disable_aggr_kprobe(struct kprobe *p)
1037{
1038 struct kprobe *kp;
1039
1040 list_for_each_entry_rcu(kp, &p->list, list) {
1041 if (!kprobe_disabled(kp))
1042 /*
1043 * There is an active probe on the list.
1044 * We can't disable aggr_kprobe.
1045 */
1046 return 0;
1047 }
1048 p->flags |= KPROBE_FLAG_DISABLED;
1049 return 1;
1050}
1051
d0aaff97
PP
1052static int __kprobes in_kprobes_functions(unsigned long addr)
1053{
3d8d996e
SD
1054 struct kprobe_blackpoint *kb;
1055
6f716acd
CH
1056 if (addr >= (unsigned long)__kprobes_text_start &&
1057 addr < (unsigned long)__kprobes_text_end)
d0aaff97 1058 return -EINVAL;
3d8d996e
SD
1059 /*
1060 * If there exists a kprobe_blacklist, verify and
1061 * fail any probe registration in the prohibited area
1062 */
1063 for (kb = kprobe_blacklist; kb->name != NULL; kb++) {
1064 if (kb->start_addr) {
1065 if (addr >= kb->start_addr &&
1066 addr < (kb->start_addr + kb->range))
1067 return -EINVAL;
1068 }
1069 }
d0aaff97
PP
1070 return 0;
1071}
1072
b2a5cd69
MH
1073/*
1074 * If we have a symbol_name argument, look it up and add the offset field
1075 * to it. This way, we can specify a relative address to a symbol.
1076 */
1077static kprobe_opcode_t __kprobes *kprobe_addr(struct kprobe *p)
1078{
1079 kprobe_opcode_t *addr = p->addr;
1080 if (p->symbol_name) {
1081 if (addr)
1082 return NULL;
1083 kprobe_lookup_name(p->symbol_name, addr);
1084 }
1085
1086 if (!addr)
1087 return NULL;
1088 return (kprobe_opcode_t *)(((char *)addr) + p->offset);
1089}
1090
1f0ab409
AM
1091/* Check passed kprobe is valid and return kprobe in kprobe_table. */
1092static struct kprobe * __kprobes __get_valid_kprobe(struct kprobe *p)
1093{
1094 struct kprobe *old_p, *list_p;
1095
1096 old_p = get_kprobe(p->addr);
1097 if (unlikely(!old_p))
1098 return NULL;
1099
1100 if (p != old_p) {
1101 list_for_each_entry_rcu(list_p, &old_p->list, list)
1102 if (list_p == p)
1103 /* kprobe p is a valid probe */
1104 goto valid;
1105 return NULL;
1106 }
1107valid:
1108 return old_p;
1109}
1110
1111/* Return error if the kprobe is being re-registered */
1112static inline int check_kprobe_rereg(struct kprobe *p)
1113{
1114 int ret = 0;
1115 struct kprobe *old_p;
1116
1117 mutex_lock(&kprobe_mutex);
1118 old_p = __get_valid_kprobe(p);
1119 if (old_p)
1120 ret = -EINVAL;
1121 mutex_unlock(&kprobe_mutex);
1122 return ret;
1123}
1124
49ad2fd7 1125int __kprobes register_kprobe(struct kprobe *p)
1da177e4
LT
1126{
1127 int ret = 0;
64f562c6 1128 struct kprobe *old_p;
df019b1d 1129 struct module *probed_mod;
b2a5cd69 1130 kprobe_opcode_t *addr;
b3e55c72 1131
b2a5cd69
MH
1132 addr = kprobe_addr(p);
1133 if (!addr)
3a872d89 1134 return -EINVAL;
b2a5cd69 1135 p->addr = addr;
3a872d89 1136
1f0ab409
AM
1137 ret = check_kprobe_rereg(p);
1138 if (ret)
1139 return ret;
1140
a189d035 1141 preempt_disable();
ec30c5f3 1142 if (!kernel_text_address((unsigned long) p->addr) ||
4554dbcb
MH
1143 in_kprobes_functions((unsigned long) p->addr) ||
1144 ftrace_text_reserved(p->addr, p->addr)) {
a189d035 1145 preempt_enable();
b3e55c72 1146 return -EINVAL;
a189d035 1147 }
b3e55c72 1148
de5bd88d
MH
1149 /* User can pass only KPROBE_FLAG_DISABLED to register_kprobe */
1150 p->flags &= KPROBE_FLAG_DISABLED;
1151
6f716acd
CH
1152 /*
1153 * Check if are we probing a module.
1154 */
a189d035 1155 probed_mod = __module_text_address((unsigned long) p->addr);
6f716acd 1156 if (probed_mod) {
6f716acd 1157 /*
e8386a0c
MH
1158 * We must hold a refcount of the probed module while updating
1159 * its code to prohibit unexpected unloading.
df019b1d 1160 */
49ad2fd7
MH
1161 if (unlikely(!try_module_get(probed_mod))) {
1162 preempt_enable();
1163 return -EINVAL;
1164 }
f24659d9
MH
1165 /*
1166 * If the module freed .init.text, we couldn't insert
1167 * kprobes in there.
1168 */
1169 if (within_module_init((unsigned long)p->addr, probed_mod) &&
1170 probed_mod->state != MODULE_STATE_COMING) {
1171 module_put(probed_mod);
1172 preempt_enable();
1173 return -EINVAL;
1174 }
df019b1d 1175 }
a189d035 1176 preempt_enable();
1da177e4 1177
3516a460 1178 p->nmissed = 0;
9861668f 1179 INIT_LIST_HEAD(&p->list);
7a7d1cf9 1180 mutex_lock(&kprobe_mutex);
afd66255
MH
1181
1182 get_online_cpus(); /* For avoiding text_mutex deadlock. */
1183 mutex_lock(&text_mutex);
1184
64f562c6
AM
1185 old_p = get_kprobe(p->addr);
1186 if (old_p) {
afd66255 1187 /* Since this may unoptimize old_p, locking text_mutex. */
64f562c6 1188 ret = register_aggr_kprobe(old_p, p);
1da177e4
LT
1189 goto out;
1190 }
1da177e4 1191
6f716acd
CH
1192 ret = arch_prepare_kprobe(p);
1193 if (ret)
afd66255 1194 goto out;
49a2a1b8 1195
64f562c6 1196 INIT_HLIST_NODE(&p->hlist);
3516a460 1197 hlist_add_head_rcu(&p->hlist,
1da177e4
LT
1198 &kprobe_table[hash_ptr(p->addr, KPROBE_HASH_BITS)]);
1199
de5bd88d 1200 if (!kprobes_all_disarmed && !kprobe_disabled(p))
afd66255
MH
1201 __arm_kprobe(p);
1202
1203 /* Try to optimize kprobe */
1204 try_to_optimize_kprobe(p);
74a0b576 1205
1da177e4 1206out:
afd66255
MH
1207 mutex_unlock(&text_mutex);
1208 put_online_cpus();
7a7d1cf9 1209 mutex_unlock(&kprobe_mutex);
49a2a1b8 1210
e8386a0c 1211 if (probed_mod)
df019b1d 1212 module_put(probed_mod);
e8386a0c 1213
1da177e4
LT
1214 return ret;
1215}
99081ab5 1216EXPORT_SYMBOL_GPL(register_kprobe);
1da177e4 1217
de5bd88d
MH
1218/*
1219 * Unregister a kprobe without a scheduler synchronization.
1220 */
1221static int __kprobes __unregister_kprobe_top(struct kprobe *p)
1222{
1223 struct kprobe *old_p, *list_p;
1224
1225 old_p = __get_valid_kprobe(p);
1226 if (old_p == NULL)
1227 return -EINVAL;
1228
6f716acd 1229 if (old_p == p ||
afd66255 1230 (kprobe_aggrprobe(old_p) &&
9861668f 1231 list_is_singular(&old_p->list))) {
bf8f6e5b
AM
1232 /*
1233 * Only probe on the hash list. Disarm only if kprobes are
e8386a0c
MH
1234 * enabled and not gone - otherwise, the breakpoint would
1235 * already have been removed. We save on flushing icache.
bf8f6e5b 1236 */
201517a7 1237 if (!kprobes_all_disarmed && !kprobe_disabled(old_p))
afd66255 1238 disarm_kprobe(old_p);
49a2a1b8 1239 hlist_del_rcu(&old_p->hlist);
49a2a1b8 1240 } else {
e8386a0c 1241 if (p->break_handler && !kprobe_gone(p))
9861668f 1242 old_p->break_handler = NULL;
e8386a0c 1243 if (p->post_handler && !kprobe_gone(p)) {
9861668f
MH
1244 list_for_each_entry_rcu(list_p, &old_p->list, list) {
1245 if ((list_p != p) && (list_p->post_handler))
1246 goto noclean;
1247 }
1248 old_p->post_handler = NULL;
1249 }
1250noclean:
49a2a1b8 1251 list_del_rcu(&p->list);
de5bd88d
MH
1252 if (!kprobe_disabled(old_p)) {
1253 try_to_disable_aggr_kprobe(old_p);
afd66255
MH
1254 if (!kprobes_all_disarmed) {
1255 if (kprobe_disabled(old_p))
1256 disarm_kprobe(old_p);
1257 else
1258 /* Try to optimize this probe again */
1259 optimize_kprobe(old_p);
1260 }
de5bd88d 1261 }
49a2a1b8 1262 }
9861668f
MH
1263 return 0;
1264}
3516a460 1265
9861668f
MH
1266static void __kprobes __unregister_kprobe_bottom(struct kprobe *p)
1267{
9861668f 1268 struct kprobe *old_p;
b3e55c72 1269
e8386a0c 1270 if (list_empty(&p->list))
0498b635 1271 arch_remove_kprobe(p);
e8386a0c
MH
1272 else if (list_is_singular(&p->list)) {
1273 /* "p" is the last child of an aggr_kprobe */
1274 old_p = list_entry(p->list.next, struct kprobe, list);
1275 list_del(&p->list);
1276 arch_remove_kprobe(old_p);
afd66255 1277 free_aggr_kprobe(old_p);
9861668f
MH
1278 }
1279}
1280
49ad2fd7 1281int __kprobes register_kprobes(struct kprobe **kps, int num)
9861668f
MH
1282{
1283 int i, ret = 0;
1284
1285 if (num <= 0)
1286 return -EINVAL;
1287 for (i = 0; i < num; i++) {
49ad2fd7 1288 ret = register_kprobe(kps[i]);
67dddaad
MH
1289 if (ret < 0) {
1290 if (i > 0)
1291 unregister_kprobes(kps, i);
9861668f 1292 break;
36721656 1293 }
49a2a1b8 1294 }
9861668f
MH
1295 return ret;
1296}
99081ab5 1297EXPORT_SYMBOL_GPL(register_kprobes);
9861668f 1298
9861668f
MH
1299void __kprobes unregister_kprobe(struct kprobe *p)
1300{
1301 unregister_kprobes(&p, 1);
1302}
99081ab5 1303EXPORT_SYMBOL_GPL(unregister_kprobe);
9861668f 1304
9861668f
MH
1305void __kprobes unregister_kprobes(struct kprobe **kps, int num)
1306{
1307 int i;
1308
1309 if (num <= 0)
1310 return;
1311 mutex_lock(&kprobe_mutex);
1312 for (i = 0; i < num; i++)
1313 if (__unregister_kprobe_top(kps[i]) < 0)
1314 kps[i]->addr = NULL;
1315 mutex_unlock(&kprobe_mutex);
1316
1317 synchronize_sched();
1318 for (i = 0; i < num; i++)
1319 if (kps[i]->addr)
1320 __unregister_kprobe_bottom(kps[i]);
1da177e4 1321}
99081ab5 1322EXPORT_SYMBOL_GPL(unregister_kprobes);
1da177e4
LT
1323
1324static struct notifier_block kprobe_exceptions_nb = {
3d5631e0
AK
1325 .notifier_call = kprobe_exceptions_notify,
1326 .priority = 0x7fffffff /* we need to be notified first */
1327};
1328
3d7e3382
ME
1329unsigned long __weak arch_deref_entry_point(void *entry)
1330{
1331 return (unsigned long)entry;
1332}
1da177e4 1333
49ad2fd7 1334int __kprobes register_jprobes(struct jprobe **jps, int num)
1da177e4 1335{
26b31c19
MH
1336 struct jprobe *jp;
1337 int ret = 0, i;
3d7e3382 1338
26b31c19 1339 if (num <= 0)
3d7e3382 1340 return -EINVAL;
26b31c19
MH
1341 for (i = 0; i < num; i++) {
1342 unsigned long addr;
1343 jp = jps[i];
1344 addr = arch_deref_entry_point(jp->entry);
1345
1346 if (!kernel_text_address(addr))
1347 ret = -EINVAL;
1348 else {
1349 /* Todo: Verify probepoint is a function entry point */
1350 jp->kp.pre_handler = setjmp_pre_handler;
1351 jp->kp.break_handler = longjmp_break_handler;
49ad2fd7 1352 ret = register_kprobe(&jp->kp);
26b31c19 1353 }
67dddaad
MH
1354 if (ret < 0) {
1355 if (i > 0)
1356 unregister_jprobes(jps, i);
26b31c19
MH
1357 break;
1358 }
1359 }
1360 return ret;
1361}
99081ab5 1362EXPORT_SYMBOL_GPL(register_jprobes);
3d7e3382 1363
26b31c19
MH
1364int __kprobes register_jprobe(struct jprobe *jp)
1365{
49ad2fd7 1366 return register_jprobes(&jp, 1);
1da177e4 1367}
99081ab5 1368EXPORT_SYMBOL_GPL(register_jprobe);
1da177e4 1369
d0aaff97 1370void __kprobes unregister_jprobe(struct jprobe *jp)
1da177e4 1371{
26b31c19
MH
1372 unregister_jprobes(&jp, 1);
1373}
99081ab5 1374EXPORT_SYMBOL_GPL(unregister_jprobe);
26b31c19 1375
26b31c19
MH
1376void __kprobes unregister_jprobes(struct jprobe **jps, int num)
1377{
1378 int i;
1379
1380 if (num <= 0)
1381 return;
1382 mutex_lock(&kprobe_mutex);
1383 for (i = 0; i < num; i++)
1384 if (__unregister_kprobe_top(&jps[i]->kp) < 0)
1385 jps[i]->kp.addr = NULL;
1386 mutex_unlock(&kprobe_mutex);
1387
1388 synchronize_sched();
1389 for (i = 0; i < num; i++) {
1390 if (jps[i]->kp.addr)
1391 __unregister_kprobe_bottom(&jps[i]->kp);
1392 }
1da177e4 1393}
99081ab5 1394EXPORT_SYMBOL_GPL(unregister_jprobes);
1da177e4 1395
9edddaa2 1396#ifdef CONFIG_KRETPROBES
e65cefe8
AB
1397/*
1398 * This kprobe pre_handler is registered with every kretprobe. When probe
1399 * hits it will set up the return probe.
1400 */
1401static int __kprobes pre_handler_kretprobe(struct kprobe *p,
1402 struct pt_regs *regs)
1403{
1404 struct kretprobe *rp = container_of(p, struct kretprobe, kp);
ef53d9c5
S
1405 unsigned long hash, flags = 0;
1406 struct kretprobe_instance *ri;
e65cefe8
AB
1407
1408 /*TODO: consider to only swap the RA after the last pre_handler fired */
ef53d9c5
S
1409 hash = hash_ptr(current, KPROBE_HASH_BITS);
1410 spin_lock_irqsave(&rp->lock, flags);
4c4308cb 1411 if (!hlist_empty(&rp->free_instances)) {
4c4308cb 1412 ri = hlist_entry(rp->free_instances.first,
ef53d9c5
S
1413 struct kretprobe_instance, hlist);
1414 hlist_del(&ri->hlist);
1415 spin_unlock_irqrestore(&rp->lock, flags);
1416
4c4308cb
CH
1417 ri->rp = rp;
1418 ri->task = current;
f47cd9b5 1419
f02b8624 1420 if (rp->entry_handler && rp->entry_handler(ri, regs))
f47cd9b5 1421 return 0;
f47cd9b5 1422
4c4308cb
CH
1423 arch_prepare_kretprobe(ri, regs);
1424
1425 /* XXX(hch): why is there no hlist_move_head? */
ef53d9c5
S
1426 INIT_HLIST_NODE(&ri->hlist);
1427 kretprobe_table_lock(hash, &flags);
1428 hlist_add_head(&ri->hlist, &kretprobe_inst_table[hash]);
1429 kretprobe_table_unlock(hash, &flags);
1430 } else {
4c4308cb 1431 rp->nmissed++;
ef53d9c5
S
1432 spin_unlock_irqrestore(&rp->lock, flags);
1433 }
e65cefe8
AB
1434 return 0;
1435}
1436
49ad2fd7 1437int __kprobes register_kretprobe(struct kretprobe *rp)
b94cce92
HN
1438{
1439 int ret = 0;
1440 struct kretprobe_instance *inst;
1441 int i;
b2a5cd69 1442 void *addr;
f438d914
MH
1443
1444 if (kretprobe_blacklist_size) {
b2a5cd69
MH
1445 addr = kprobe_addr(&rp->kp);
1446 if (!addr)
1447 return -EINVAL;
f438d914
MH
1448
1449 for (i = 0; kretprobe_blacklist[i].name != NULL; i++) {
1450 if (kretprobe_blacklist[i].addr == addr)
1451 return -EINVAL;
1452 }
1453 }
b94cce92
HN
1454
1455 rp->kp.pre_handler = pre_handler_kretprobe;
7522a842
AM
1456 rp->kp.post_handler = NULL;
1457 rp->kp.fault_handler = NULL;
1458 rp->kp.break_handler = NULL;
b94cce92
HN
1459
1460 /* Pre-allocate memory for max kretprobe instances */
1461 if (rp->maxactive <= 0) {
1462#ifdef CONFIG_PREEMPT
c2ef6661 1463 rp->maxactive = max_t(unsigned int, 10, 2*num_possible_cpus());
b94cce92 1464#else
4dae560f 1465 rp->maxactive = num_possible_cpus();
b94cce92
HN
1466#endif
1467 }
ef53d9c5 1468 spin_lock_init(&rp->lock);
b94cce92
HN
1469 INIT_HLIST_HEAD(&rp->free_instances);
1470 for (i = 0; i < rp->maxactive; i++) {
f47cd9b5
AS
1471 inst = kmalloc(sizeof(struct kretprobe_instance) +
1472 rp->data_size, GFP_KERNEL);
b94cce92
HN
1473 if (inst == NULL) {
1474 free_rp_inst(rp);
1475 return -ENOMEM;
1476 }
ef53d9c5
S
1477 INIT_HLIST_NODE(&inst->hlist);
1478 hlist_add_head(&inst->hlist, &rp->free_instances);
b94cce92
HN
1479 }
1480
1481 rp->nmissed = 0;
1482 /* Establish function entry probe point */
49ad2fd7 1483 ret = register_kprobe(&rp->kp);
4a296e07 1484 if (ret != 0)
b94cce92
HN
1485 free_rp_inst(rp);
1486 return ret;
1487}
99081ab5 1488EXPORT_SYMBOL_GPL(register_kretprobe);
b94cce92 1489
49ad2fd7 1490int __kprobes register_kretprobes(struct kretprobe **rps, int num)
4a296e07
MH
1491{
1492 int ret = 0, i;
1493
1494 if (num <= 0)
1495 return -EINVAL;
1496 for (i = 0; i < num; i++) {
49ad2fd7 1497 ret = register_kretprobe(rps[i]);
67dddaad
MH
1498 if (ret < 0) {
1499 if (i > 0)
1500 unregister_kretprobes(rps, i);
4a296e07
MH
1501 break;
1502 }
1503 }
1504 return ret;
1505}
99081ab5 1506EXPORT_SYMBOL_GPL(register_kretprobes);
4a296e07 1507
4a296e07
MH
1508void __kprobes unregister_kretprobe(struct kretprobe *rp)
1509{
1510 unregister_kretprobes(&rp, 1);
1511}
99081ab5 1512EXPORT_SYMBOL_GPL(unregister_kretprobe);
4a296e07 1513
4a296e07
MH
1514void __kprobes unregister_kretprobes(struct kretprobe **rps, int num)
1515{
1516 int i;
1517
1518 if (num <= 0)
1519 return;
1520 mutex_lock(&kprobe_mutex);
1521 for (i = 0; i < num; i++)
1522 if (__unregister_kprobe_top(&rps[i]->kp) < 0)
1523 rps[i]->kp.addr = NULL;
1524 mutex_unlock(&kprobe_mutex);
1525
1526 synchronize_sched();
1527 for (i = 0; i < num; i++) {
1528 if (rps[i]->kp.addr) {
1529 __unregister_kprobe_bottom(&rps[i]->kp);
1530 cleanup_rp_inst(rps[i]);
1531 }
1532 }
1533}
99081ab5 1534EXPORT_SYMBOL_GPL(unregister_kretprobes);
4a296e07 1535
9edddaa2 1536#else /* CONFIG_KRETPROBES */
d0aaff97 1537int __kprobes register_kretprobe(struct kretprobe *rp)
b94cce92
HN
1538{
1539 return -ENOSYS;
1540}
99081ab5 1541EXPORT_SYMBOL_GPL(register_kretprobe);
b94cce92 1542
4a296e07 1543int __kprobes register_kretprobes(struct kretprobe **rps, int num)
346fd59b 1544{
4a296e07 1545 return -ENOSYS;
346fd59b 1546}
99081ab5
MH
1547EXPORT_SYMBOL_GPL(register_kretprobes);
1548
d0aaff97 1549void __kprobes unregister_kretprobe(struct kretprobe *rp)
b94cce92 1550{
4a296e07 1551}
99081ab5 1552EXPORT_SYMBOL_GPL(unregister_kretprobe);
b94cce92 1553
4a296e07
MH
1554void __kprobes unregister_kretprobes(struct kretprobe **rps, int num)
1555{
1556}
99081ab5 1557EXPORT_SYMBOL_GPL(unregister_kretprobes);
4c4308cb 1558
4a296e07
MH
1559static int __kprobes pre_handler_kretprobe(struct kprobe *p,
1560 struct pt_regs *regs)
1561{
1562 return 0;
b94cce92
HN
1563}
1564
4a296e07
MH
1565#endif /* CONFIG_KRETPROBES */
1566
e8386a0c
MH
1567/* Set the kprobe gone and remove its instruction buffer. */
1568static void __kprobes kill_kprobe(struct kprobe *p)
1569{
1570 struct kprobe *kp;
de5bd88d 1571
e8386a0c 1572 p->flags |= KPROBE_FLAG_GONE;
afd66255 1573 if (kprobe_aggrprobe(p)) {
e8386a0c
MH
1574 /*
1575 * If this is an aggr_kprobe, we have to list all the
1576 * chained probes and mark them GONE.
1577 */
1578 list_for_each_entry_rcu(kp, &p->list, list)
1579 kp->flags |= KPROBE_FLAG_GONE;
1580 p->post_handler = NULL;
1581 p->break_handler = NULL;
afd66255 1582 kill_optimized_kprobe(p);
e8386a0c
MH
1583 }
1584 /*
1585 * Here, we can remove insn_slot safely, because no thread calls
1586 * the original probed function (which will be freed soon) any more.
1587 */
1588 arch_remove_kprobe(p);
1589}
1590
24851d24
FW
1591void __kprobes dump_kprobe(struct kprobe *kp)
1592{
1593 printk(KERN_WARNING "Dumping kprobe:\n");
1594 printk(KERN_WARNING "Name: %s\nAddress: %p\nOffset: %x\n",
1595 kp->symbol_name, kp->addr, kp->offset);
1596}
1597
e8386a0c
MH
1598/* Module notifier call back, checking kprobes on the module */
1599static int __kprobes kprobes_module_callback(struct notifier_block *nb,
1600 unsigned long val, void *data)
1601{
1602 struct module *mod = data;
1603 struct hlist_head *head;
1604 struct hlist_node *node;
1605 struct kprobe *p;
1606 unsigned int i;
f24659d9 1607 int checkcore = (val == MODULE_STATE_GOING);
e8386a0c 1608
f24659d9 1609 if (val != MODULE_STATE_GOING && val != MODULE_STATE_LIVE)
e8386a0c
MH
1610 return NOTIFY_DONE;
1611
1612 /*
f24659d9
MH
1613 * When MODULE_STATE_GOING was notified, both of module .text and
1614 * .init.text sections would be freed. When MODULE_STATE_LIVE was
1615 * notified, only .init.text section would be freed. We need to
1616 * disable kprobes which have been inserted in the sections.
e8386a0c
MH
1617 */
1618 mutex_lock(&kprobe_mutex);
1619 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
1620 head = &kprobe_table[i];
1621 hlist_for_each_entry_rcu(p, node, head, hlist)
f24659d9
MH
1622 if (within_module_init((unsigned long)p->addr, mod) ||
1623 (checkcore &&
1624 within_module_core((unsigned long)p->addr, mod))) {
e8386a0c
MH
1625 /*
1626 * The vaddr this probe is installed will soon
1627 * be vfreed buy not synced to disk. Hence,
1628 * disarming the breakpoint isn't needed.
1629 */
1630 kill_kprobe(p);
1631 }
1632 }
1633 mutex_unlock(&kprobe_mutex);
1634 return NOTIFY_DONE;
1635}
1636
1637static struct notifier_block kprobe_module_nb = {
1638 .notifier_call = kprobes_module_callback,
1639 .priority = 0
1640};
1641
1da177e4
LT
1642static int __init init_kprobes(void)
1643{
1644 int i, err = 0;
3d8d996e
SD
1645 unsigned long offset = 0, size = 0;
1646 char *modname, namebuf[128];
1647 const char *symbol_name;
1648 void *addr;
1649 struct kprobe_blackpoint *kb;
1da177e4
LT
1650
1651 /* FIXME allocate the probe table, currently defined statically */
1652 /* initialize all list heads */
b94cce92 1653 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
1da177e4 1654 INIT_HLIST_HEAD(&kprobe_table[i]);
b94cce92 1655 INIT_HLIST_HEAD(&kretprobe_inst_table[i]);
ef53d9c5 1656 spin_lock_init(&(kretprobe_table_locks[i].lock));
b94cce92 1657 }
1da177e4 1658
3d8d996e
SD
1659 /*
1660 * Lookup and populate the kprobe_blacklist.
1661 *
1662 * Unlike the kretprobe blacklist, we'll need to determine
1663 * the range of addresses that belong to the said functions,
1664 * since a kprobe need not necessarily be at the beginning
1665 * of a function.
1666 */
1667 for (kb = kprobe_blacklist; kb->name != NULL; kb++) {
1668 kprobe_lookup_name(kb->name, addr);
1669 if (!addr)
1670 continue;
1671
1672 kb->start_addr = (unsigned long)addr;
1673 symbol_name = kallsyms_lookup(kb->start_addr,
1674 &size, &offset, &modname, namebuf);
1675 if (!symbol_name)
1676 kb->range = 0;
1677 else
1678 kb->range = size;
1679 }
1680
f438d914
MH
1681 if (kretprobe_blacklist_size) {
1682 /* lookup the function address from its name */
1683 for (i = 0; kretprobe_blacklist[i].name != NULL; i++) {
1684 kprobe_lookup_name(kretprobe_blacklist[i].name,
1685 kretprobe_blacklist[i].addr);
1686 if (!kretprobe_blacklist[i].addr)
1687 printk("kretprobe: lookup failed: %s\n",
1688 kretprobe_blacklist[i].name);
1689 }
1690 }
1691
b2be84df
MH
1692#if defined(CONFIG_OPTPROBES)
1693#if defined(__ARCH_WANT_KPROBES_INSN_SLOT)
afd66255
MH
1694 /* Init kprobe_optinsn_slots */
1695 kprobe_optinsn_slots.insn_size = MAX_OPTINSN_SIZE;
1696#endif
b2be84df
MH
1697 /* By default, kprobes can be optimized */
1698 kprobes_allow_optimization = true;
1699#endif
afd66255 1700
e579abeb
MH
1701 /* By default, kprobes are armed */
1702 kprobes_all_disarmed = false;
bf8f6e5b 1703
6772926b 1704 err = arch_init_kprobes();
802eae7c
RL
1705 if (!err)
1706 err = register_die_notifier(&kprobe_exceptions_nb);
e8386a0c
MH
1707 if (!err)
1708 err = register_module_notifier(&kprobe_module_nb);
1709
ef53d9c5 1710 kprobes_initialized = (err == 0);
802eae7c 1711
8c1c9356
AM
1712 if (!err)
1713 init_test_probes();
1da177e4
LT
1714 return err;
1715}
1716
346fd59b
SD
1717#ifdef CONFIG_DEBUG_FS
1718static void __kprobes report_probe(struct seq_file *pi, struct kprobe *p,
afd66255 1719 const char *sym, int offset, char *modname, struct kprobe *pp)
346fd59b
SD
1720{
1721 char *kprobe_type;
1722
1723 if (p->pre_handler == pre_handler_kretprobe)
1724 kprobe_type = "r";
1725 else if (p->pre_handler == setjmp_pre_handler)
1726 kprobe_type = "j";
1727 else
1728 kprobe_type = "k";
afd66255 1729
346fd59b 1730 if (sym)
afd66255 1731 seq_printf(pi, "%p %s %s+0x%x %s ",
de5bd88d 1732 p->addr, kprobe_type, sym, offset,
afd66255 1733 (modname ? modname : " "));
346fd59b 1734 else
afd66255
MH
1735 seq_printf(pi, "%p %s %p ",
1736 p->addr, kprobe_type, p->addr);
1737
1738 if (!pp)
1739 pp = p;
1740 seq_printf(pi, "%s%s%s\n",
1741 (kprobe_gone(p) ? "[GONE]" : ""),
1742 ((kprobe_disabled(p) && !kprobe_gone(p)) ? "[DISABLED]" : ""),
1743 (kprobe_optimized(pp) ? "[OPTIMIZED]" : ""));
346fd59b
SD
1744}
1745
1746static void __kprobes *kprobe_seq_start(struct seq_file *f, loff_t *pos)
1747{
1748 return (*pos < KPROBE_TABLE_SIZE) ? pos : NULL;
1749}
1750
1751static void __kprobes *kprobe_seq_next(struct seq_file *f, void *v, loff_t *pos)
1752{
1753 (*pos)++;
1754 if (*pos >= KPROBE_TABLE_SIZE)
1755 return NULL;
1756 return pos;
1757}
1758
1759static void __kprobes kprobe_seq_stop(struct seq_file *f, void *v)
1760{
1761 /* Nothing to do */
1762}
1763
1764static int __kprobes show_kprobe_addr(struct seq_file *pi, void *v)
1765{
1766 struct hlist_head *head;
1767 struct hlist_node *node;
1768 struct kprobe *p, *kp;
1769 const char *sym = NULL;
1770 unsigned int i = *(loff_t *) v;
ffb45122 1771 unsigned long offset = 0;
346fd59b
SD
1772 char *modname, namebuf[128];
1773
1774 head = &kprobe_table[i];
1775 preempt_disable();
1776 hlist_for_each_entry_rcu(p, node, head, hlist) {
ffb45122 1777 sym = kallsyms_lookup((unsigned long)p->addr, NULL,
346fd59b 1778 &offset, &modname, namebuf);
afd66255 1779 if (kprobe_aggrprobe(p)) {
346fd59b 1780 list_for_each_entry_rcu(kp, &p->list, list)
afd66255 1781 report_probe(pi, kp, sym, offset, modname, p);
346fd59b 1782 } else
afd66255 1783 report_probe(pi, p, sym, offset, modname, NULL);
346fd59b
SD
1784 }
1785 preempt_enable();
1786 return 0;
1787}
1788
88e9d34c 1789static const struct seq_operations kprobes_seq_ops = {
346fd59b
SD
1790 .start = kprobe_seq_start,
1791 .next = kprobe_seq_next,
1792 .stop = kprobe_seq_stop,
1793 .show = show_kprobe_addr
1794};
1795
1796static int __kprobes kprobes_open(struct inode *inode, struct file *filp)
1797{
1798 return seq_open(filp, &kprobes_seq_ops);
1799}
1800
828c0950 1801static const struct file_operations debugfs_kprobes_operations = {
346fd59b
SD
1802 .open = kprobes_open,
1803 .read = seq_read,
1804 .llseek = seq_lseek,
1805 .release = seq_release,
1806};
1807
de5bd88d
MH
1808/* Disable one kprobe */
1809int __kprobes disable_kprobe(struct kprobe *kp)
1810{
1811 int ret = 0;
1812 struct kprobe *p;
1813
1814 mutex_lock(&kprobe_mutex);
1815
1816 /* Check whether specified probe is valid. */
1817 p = __get_valid_kprobe(kp);
1818 if (unlikely(p == NULL)) {
1819 ret = -EINVAL;
1820 goto out;
1821 }
1822
1823 /* If the probe is already disabled (or gone), just return */
1824 if (kprobe_disabled(kp))
1825 goto out;
1826
1827 kp->flags |= KPROBE_FLAG_DISABLED;
1828 if (p != kp)
1829 /* When kp != p, p is always enabled. */
1830 try_to_disable_aggr_kprobe(p);
1831
1832 if (!kprobes_all_disarmed && kprobe_disabled(p))
201517a7 1833 disarm_kprobe(p);
de5bd88d
MH
1834out:
1835 mutex_unlock(&kprobe_mutex);
1836 return ret;
1837}
1838EXPORT_SYMBOL_GPL(disable_kprobe);
1839
1840/* Enable one kprobe */
1841int __kprobes enable_kprobe(struct kprobe *kp)
1842{
1843 int ret = 0;
1844 struct kprobe *p;
1845
1846 mutex_lock(&kprobe_mutex);
1847
1848 /* Check whether specified probe is valid. */
1849 p = __get_valid_kprobe(kp);
1850 if (unlikely(p == NULL)) {
1851 ret = -EINVAL;
1852 goto out;
1853 }
1854
1855 if (kprobe_gone(kp)) {
1856 /* This kprobe has gone, we couldn't enable it. */
1857 ret = -EINVAL;
1858 goto out;
1859 }
1860
de5bd88d
MH
1861 if (p != kp)
1862 kp->flags &= ~KPROBE_FLAG_DISABLED;
afd66255
MH
1863
1864 if (!kprobes_all_disarmed && kprobe_disabled(p)) {
1865 p->flags &= ~KPROBE_FLAG_DISABLED;
1866 arm_kprobe(p);
1867 }
de5bd88d
MH
1868out:
1869 mutex_unlock(&kprobe_mutex);
1870 return ret;
1871}
1872EXPORT_SYMBOL_GPL(enable_kprobe);
1873
e579abeb 1874static void __kprobes arm_all_kprobes(void)
bf8f6e5b
AM
1875{
1876 struct hlist_head *head;
1877 struct hlist_node *node;
1878 struct kprobe *p;
1879 unsigned int i;
1880
1881 mutex_lock(&kprobe_mutex);
1882
e579abeb
MH
1883 /* If kprobes are armed, just return */
1884 if (!kprobes_all_disarmed)
bf8f6e5b
AM
1885 goto already_enabled;
1886
afd66255 1887 /* Arming kprobes doesn't optimize kprobe itself */
4460fdad 1888 mutex_lock(&text_mutex);
bf8f6e5b
AM
1889 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
1890 head = &kprobe_table[i];
1891 hlist_for_each_entry_rcu(p, node, head, hlist)
de5bd88d 1892 if (!kprobe_disabled(p))
afd66255 1893 __arm_kprobe(p);
bf8f6e5b 1894 }
4460fdad 1895 mutex_unlock(&text_mutex);
bf8f6e5b 1896
e579abeb 1897 kprobes_all_disarmed = false;
bf8f6e5b
AM
1898 printk(KERN_INFO "Kprobes globally enabled\n");
1899
1900already_enabled:
1901 mutex_unlock(&kprobe_mutex);
1902 return;
1903}
1904
e579abeb 1905static void __kprobes disarm_all_kprobes(void)
bf8f6e5b
AM
1906{
1907 struct hlist_head *head;
1908 struct hlist_node *node;
1909 struct kprobe *p;
1910 unsigned int i;
1911
1912 mutex_lock(&kprobe_mutex);
1913
e579abeb
MH
1914 /* If kprobes are already disarmed, just return */
1915 if (kprobes_all_disarmed)
bf8f6e5b
AM
1916 goto already_disabled;
1917
e579abeb 1918 kprobes_all_disarmed = true;
bf8f6e5b 1919 printk(KERN_INFO "Kprobes globally disabled\n");
afd66255
MH
1920
1921 /*
1922 * Here we call get_online_cpus() for avoiding text_mutex deadlock,
1923 * because disarming may also unoptimize kprobes.
1924 */
1925 get_online_cpus();
4460fdad 1926 mutex_lock(&text_mutex);
bf8f6e5b
AM
1927 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
1928 head = &kprobe_table[i];
1929 hlist_for_each_entry_rcu(p, node, head, hlist) {
de5bd88d 1930 if (!arch_trampoline_kprobe(p) && !kprobe_disabled(p))
afd66255 1931 __disarm_kprobe(p);
bf8f6e5b
AM
1932 }
1933 }
1934
4460fdad 1935 mutex_unlock(&text_mutex);
afd66255 1936 put_online_cpus();
bf8f6e5b
AM
1937 mutex_unlock(&kprobe_mutex);
1938 /* Allow all currently running kprobes to complete */
1939 synchronize_sched();
74a0b576 1940 return;
bf8f6e5b
AM
1941
1942already_disabled:
1943 mutex_unlock(&kprobe_mutex);
1944 return;
1945}
1946
1947/*
1948 * XXX: The debugfs bool file interface doesn't allow for callbacks
1949 * when the bool state is switched. We can reuse that facility when
1950 * available
1951 */
1952static ssize_t read_enabled_file_bool(struct file *file,
1953 char __user *user_buf, size_t count, loff_t *ppos)
1954{
1955 char buf[3];
1956
e579abeb 1957 if (!kprobes_all_disarmed)
bf8f6e5b
AM
1958 buf[0] = '1';
1959 else
1960 buf[0] = '0';
1961 buf[1] = '\n';
1962 buf[2] = 0x00;
1963 return simple_read_from_buffer(user_buf, count, ppos, buf, 2);
1964}
1965
1966static ssize_t write_enabled_file_bool(struct file *file,
1967 const char __user *user_buf, size_t count, loff_t *ppos)
1968{
1969 char buf[32];
1970 int buf_size;
1971
1972 buf_size = min(count, (sizeof(buf)-1));
1973 if (copy_from_user(buf, user_buf, buf_size))
1974 return -EFAULT;
1975
1976 switch (buf[0]) {
1977 case 'y':
1978 case 'Y':
1979 case '1':
e579abeb 1980 arm_all_kprobes();
bf8f6e5b
AM
1981 break;
1982 case 'n':
1983 case 'N':
1984 case '0':
e579abeb 1985 disarm_all_kprobes();
bf8f6e5b
AM
1986 break;
1987 }
1988
1989 return count;
1990}
1991
828c0950 1992static const struct file_operations fops_kp = {
bf8f6e5b
AM
1993 .read = read_enabled_file_bool,
1994 .write = write_enabled_file_bool,
1995};
1996
346fd59b
SD
1997static int __kprobes debugfs_kprobe_init(void)
1998{
1999 struct dentry *dir, *file;
bf8f6e5b 2000 unsigned int value = 1;
346fd59b
SD
2001
2002 dir = debugfs_create_dir("kprobes", NULL);
2003 if (!dir)
2004 return -ENOMEM;
2005
e3869792 2006 file = debugfs_create_file("list", 0444, dir, NULL,
346fd59b
SD
2007 &debugfs_kprobes_operations);
2008 if (!file) {
2009 debugfs_remove(dir);
2010 return -ENOMEM;
2011 }
2012
bf8f6e5b
AM
2013 file = debugfs_create_file("enabled", 0600, dir,
2014 &value, &fops_kp);
2015 if (!file) {
2016 debugfs_remove(dir);
2017 return -ENOMEM;
2018 }
2019
346fd59b
SD
2020 return 0;
2021}
2022
2023late_initcall(debugfs_kprobe_init);
2024#endif /* CONFIG_DEBUG_FS */
2025
2026module_init(init_kprobes);
1da177e4 2027
99081ab5 2028/* defined in arch/.../kernel/kprobes.c */
1da177e4 2029EXPORT_SYMBOL_GPL(jprobe_return);