mm/shmem: shmem_replace_page() remember NR_SHMEM
[linux-2.6-block.git] / kernel / kprobes.c
CommitLineData
1a59d1b8 1// SPDX-License-Identifier: GPL-2.0-or-later
1da177e4
LT
2/*
3 * Kernel Probes (KProbes)
1da177e4 4 *
1da177e4
LT
5 * Copyright (C) IBM Corporation, 2002, 2004
6 *
7 * 2002-Oct Created by Vamsi Krishna S <vamsi_krishna@in.ibm.com> Kernel
8 * Probes initial implementation (includes suggestions from
9 * Rusty Russell).
10 * 2004-Aug Updated by Prasanna S Panchamukhi <prasanna@in.ibm.com> with
11 * hlists and exceptions notifier as suggested by Andi Kleen.
12 * 2004-July Suparna Bhattacharya <suparna@in.ibm.com> added jumper probes
13 * interface to access function arguments.
14 * 2004-Sep Prasanna S Panchamukhi <prasanna@in.ibm.com> Changed Kprobes
15 * exceptions notifier to be first on the priority list.
b94cce92
HN
16 * 2005-May Hien Nguyen <hien@us.ibm.com>, Jim Keniston
17 * <jkenisto@us.ibm.com> and Prasanna S Panchamukhi
18 * <prasanna@in.ibm.com> added function-return probes.
1da177e4 19 */
9c89bb8e
MH
20
21#define pr_fmt(fmt) "kprobes: " fmt
22
1da177e4 23#include <linux/kprobes.h>
1da177e4
LT
24#include <linux/hash.h>
25#include <linux/init.h>
4e57b681 26#include <linux/slab.h>
e3869792 27#include <linux/stddef.h>
9984de1a 28#include <linux/export.h>
9ec4b1f3 29#include <linux/moduleloader.h>
3a872d89 30#include <linux/kallsyms.h>
b4c6c34a 31#include <linux/freezer.h>
346fd59b
SD
32#include <linux/seq_file.h>
33#include <linux/debugfs.h>
b2be84df 34#include <linux/sysctl.h>
1eeb66a1 35#include <linux/kdebug.h>
4460fdad 36#include <linux/memory.h>
4554dbcb 37#include <linux/ftrace.h>
afd66255 38#include <linux/cpu.h>
bf5438fc 39#include <linux/jump_label.h>
fa68bd09 40#include <linux/static_call.h>
69e49088 41#include <linux/perf_event.h>
bf8f6e5b 42
bfd45be0 43#include <asm/sections.h>
1da177e4
LT
44#include <asm/cacheflush.h>
45#include <asm/errno.h>
7c0f6ba6 46#include <linux/uaccess.h>
1da177e4
LT
47
48#define KPROBE_HASH_BITS 6
49#define KPROBE_TABLE_SIZE (1 << KPROBE_HASH_BITS)
50
a737a3c6
XN
51#if !defined(CONFIG_OPTPROBES) || !defined(CONFIG_SYSCTL)
52#define kprobe_sysctls_init() do { } while (0)
53#endif
3a872d89 54
ef53d9c5 55static int kprobes_initialized;
7e6a71d8 56/* kprobe_table can be accessed by
223a76b2 57 * - Normal hlist traversal and RCU add/del under 'kprobe_mutex' is held.
7e6a71d8
MH
58 * Or
59 * - RCU hlist traversal under disabling preempt (breakpoint handlers)
60 */
1da177e4
LT
61static struct hlist_head kprobe_table[KPROBE_TABLE_SIZE];
62
223a76b2 63/* NOTE: change this value only with 'kprobe_mutex' held */
e579abeb 64static bool kprobes_all_disarmed;
bf8f6e5b 65
223a76b2 66/* This protects 'kprobe_table' and 'optimizing_list' */
43948f50 67static DEFINE_MUTEX(kprobe_mutex);
223a76b2 68static DEFINE_PER_CPU(struct kprobe *, kprobe_instance);
ef53d9c5 69
290e3070
NR
70kprobe_opcode_t * __weak kprobe_lookup_name(const char *name,
71 unsigned int __unused)
49e0b465
NR
72{
73 return ((kprobe_opcode_t *)(kallsyms_lookup_name(name)));
74}
75
223a76b2
MH
76/*
77 * Blacklist -- list of 'struct kprobe_blacklist_entry' to store info where
78 * kprobes can not probe.
79 */
376e2424 80static LIST_HEAD(kprobe_blacklist);
3d8d996e 81
2d14e39d 82#ifdef __ARCH_WANT_KPROBES_INSN_SLOT
9ec4b1f3 83/*
223a76b2 84 * 'kprobe::ainsn.insn' points to the copy of the instruction to be
9ec4b1f3
AM
85 * single-stepped. x86_64, POWER4 and above have no-exec support and
86 * stepping on the instruction on a vmalloced/kmalloced/data page
87 * is a recipe for disaster
88 */
9ec4b1f3 89struct kprobe_insn_page {
c5cb5a2d 90 struct list_head list;
9ec4b1f3 91 kprobe_opcode_t *insns; /* Page of instruction slots */
af96397d 92 struct kprobe_insn_cache *cache;
9ec4b1f3 93 int nused;
b4c6c34a 94 int ngarbage;
4610ee1d 95 char slot_used[];
9ec4b1f3
AM
96};
97
4610ee1d
MH
98#define KPROBE_INSN_PAGE_SIZE(slots) \
99 (offsetof(struct kprobe_insn_page, slot_used) + \
100 (sizeof(char) * (slots)))
101
4610ee1d
MH
102static int slots_per_page(struct kprobe_insn_cache *c)
103{
104 return PAGE_SIZE/(c->insn_size * sizeof(kprobe_opcode_t));
105}
106
ab40c5c6
MH
107enum kprobe_slot_state {
108 SLOT_CLEAN = 0,
109 SLOT_DIRTY = 1,
110 SLOT_USED = 2,
111};
112
63fef14f 113void __weak *alloc_insn_page(void)
af96397d 114{
223a76b2
MH
115 /*
116 * Use module_alloc() so this page is within +/- 2GB of where the
117 * kernel image and loaded module images reside. This is required
118 * for most of the architectures.
119 * (e.g. x86-64 needs this to handle the %rip-relative fixups.)
120 */
af96397d
HC
121 return module_alloc(PAGE_SIZE);
122}
123
66ce7514 124static void free_insn_page(void *page)
af96397d 125{
be1f221c 126 module_memfree(page);
af96397d
HC
127}
128
c802d64a
HC
129struct kprobe_insn_cache kprobe_insn_slots = {
130 .mutex = __MUTEX_INITIALIZER(kprobe_insn_slots.mutex),
af96397d
HC
131 .alloc = alloc_insn_page,
132 .free = free_insn_page,
d002b8bc 133 .sym = KPROBE_INSN_PAGE_SYM,
4610ee1d
MH
134 .pages = LIST_HEAD_INIT(kprobe_insn_slots.pages),
135 .insn_size = MAX_INSN_SIZE,
136 .nr_garbage = 0,
137};
55479f64 138static int collect_garbage_slots(struct kprobe_insn_cache *c);
b4c6c34a 139
9ec4b1f3 140/**
12941560 141 * __get_insn_slot() - Find a slot on an executable page for an instruction.
9ec4b1f3
AM
142 * We allocate an executable page if there's no room on existing ones.
143 */
55479f64 144kprobe_opcode_t *__get_insn_slot(struct kprobe_insn_cache *c)
9ec4b1f3
AM
145{
146 struct kprobe_insn_page *kip;
c802d64a 147 kprobe_opcode_t *slot = NULL;
9ec4b1f3 148
5b485629 149 /* Since the slot array is not protected by rcu, we need a mutex */
c802d64a 150 mutex_lock(&c->mutex);
6f716acd 151 retry:
5b485629
MH
152 rcu_read_lock();
153 list_for_each_entry_rcu(kip, &c->pages, list) {
4610ee1d 154 if (kip->nused < slots_per_page(c)) {
9ec4b1f3 155 int i;
223a76b2 156
4610ee1d 157 for (i = 0; i < slots_per_page(c); i++) {
ab40c5c6
MH
158 if (kip->slot_used[i] == SLOT_CLEAN) {
159 kip->slot_used[i] = SLOT_USED;
9ec4b1f3 160 kip->nused++;
c802d64a 161 slot = kip->insns + (i * c->insn_size);
5b485629 162 rcu_read_unlock();
c802d64a 163 goto out;
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 }
5b485629 171 rcu_read_unlock();
9ec4b1f3 172
b4c6c34a 173 /* If there are any garbage slots, collect it and try again. */
4610ee1d 174 if (c->nr_garbage && collect_garbage_slots(c) == 0)
b4c6c34a 175 goto retry;
4610ee1d
MH
176
177 /* All out of space. Need to allocate a new page. */
178 kip = kmalloc(KPROBE_INSN_PAGE_SIZE(slots_per_page(c)), GFP_KERNEL);
6f716acd 179 if (!kip)
c802d64a 180 goto out;
9ec4b1f3 181
af96397d 182 kip->insns = c->alloc();
9ec4b1f3
AM
183 if (!kip->insns) {
184 kfree(kip);
c802d64a 185 goto out;
9ec4b1f3 186 }
c5cb5a2d 187 INIT_LIST_HEAD(&kip->list);
4610ee1d 188 memset(kip->slot_used, SLOT_CLEAN, slots_per_page(c));
ab40c5c6 189 kip->slot_used[0] = SLOT_USED;
9ec4b1f3 190 kip->nused = 1;
b4c6c34a 191 kip->ngarbage = 0;
af96397d 192 kip->cache = c;
5b485629 193 list_add_rcu(&kip->list, &c->pages);
c802d64a 194 slot = kip->insns;
69e49088
AH
195
196 /* Record the perf ksymbol register event after adding the page */
197 perf_event_ksymbol(PERF_RECORD_KSYMBOL_TYPE_OOL, (unsigned long)kip->insns,
198 PAGE_SIZE, false, c->sym);
c802d64a
HC
199out:
200 mutex_unlock(&c->mutex);
201 return slot;
12941560
MH
202}
203
29e8077a
MH
204/* Return true if all garbages are collected, otherwise false. */
205static bool collect_one_slot(struct kprobe_insn_page *kip, int idx)
b4c6c34a 206{
ab40c5c6 207 kip->slot_used[idx] = SLOT_CLEAN;
b4c6c34a
MH
208 kip->nused--;
209 if (kip->nused == 0) {
210 /*
211 * Page is no longer in use. Free it unless
212 * it's the last one. We keep the last one
213 * so as not to have to set it up again the
214 * next time somebody inserts a probe.
215 */
4610ee1d 216 if (!list_is_singular(&kip->list)) {
69e49088
AH
217 /*
218 * Record perf ksymbol unregister event before removing
219 * the page.
220 */
221 perf_event_ksymbol(PERF_RECORD_KSYMBOL_TYPE_OOL,
222 (unsigned long)kip->insns, PAGE_SIZE, true,
223 kip->cache->sym);
5b485629
MH
224 list_del_rcu(&kip->list);
225 synchronize_rcu();
af96397d 226 kip->cache->free(kip->insns);
b4c6c34a
MH
227 kfree(kip);
228 }
29e8077a 229 return true;
b4c6c34a 230 }
29e8077a 231 return false;
b4c6c34a
MH
232}
233
55479f64 234static int collect_garbage_slots(struct kprobe_insn_cache *c)
b4c6c34a 235{
c5cb5a2d 236 struct kprobe_insn_page *kip, *next;
b4c6c34a 237
615d0ebb 238 /* Ensure no-one is interrupted on the garbages */
ae8b7ce7 239 synchronize_rcu();
b4c6c34a 240
4610ee1d 241 list_for_each_entry_safe(kip, next, &c->pages, list) {
b4c6c34a 242 int i;
223a76b2 243
b4c6c34a
MH
244 if (kip->ngarbage == 0)
245 continue;
246 kip->ngarbage = 0; /* we will collect all garbages */
4610ee1d 247 for (i = 0; i < slots_per_page(c); i++) {
5b485629 248 if (kip->slot_used[i] == SLOT_DIRTY && collect_one_slot(kip, i))
b4c6c34a
MH
249 break;
250 }
251 }
4610ee1d 252 c->nr_garbage = 0;
b4c6c34a
MH
253 return 0;
254}
255
55479f64
MH
256void __free_insn_slot(struct kprobe_insn_cache *c,
257 kprobe_opcode_t *slot, int dirty)
9ec4b1f3
AM
258{
259 struct kprobe_insn_page *kip;
5b485629 260 long idx;
9ec4b1f3 261
c802d64a 262 mutex_lock(&c->mutex);
5b485629
MH
263 rcu_read_lock();
264 list_for_each_entry_rcu(kip, &c->pages, list) {
265 idx = ((long)slot - (long)kip->insns) /
266 (c->insn_size * sizeof(kprobe_opcode_t));
267 if (idx >= 0 && idx < slots_per_page(c))
c802d64a 268 goto out;
9ec4b1f3 269 }
5b485629 270 /* Could not find this slot. */
4610ee1d 271 WARN_ON(1);
5b485629 272 kip = NULL;
c802d64a 273out:
5b485629
MH
274 rcu_read_unlock();
275 /* Mark and sweep: this may sleep */
276 if (kip) {
277 /* Check double free */
278 WARN_ON(kip->slot_used[idx] != SLOT_USED);
279 if (dirty) {
280 kip->slot_used[idx] = SLOT_DIRTY;
281 kip->ngarbage++;
282 if (++c->nr_garbage > slots_per_page(c))
283 collect_garbage_slots(c);
284 } else {
285 collect_one_slot(kip, idx);
286 }
287 }
c802d64a 288 mutex_unlock(&c->mutex);
4610ee1d 289}
6f716acd 290
5b485629
MH
291/*
292 * Check given address is on the page of kprobe instruction slots.
293 * This will be used for checking whether the address on a stack
294 * is on a text area or not.
295 */
296bool __is_insn_slot_addr(struct kprobe_insn_cache *c, unsigned long addr)
297{
298 struct kprobe_insn_page *kip;
299 bool ret = false;
300
301 rcu_read_lock();
302 list_for_each_entry_rcu(kip, &c->pages, list) {
303 if (addr >= (unsigned long)kip->insns &&
304 addr < (unsigned long)kip->insns + PAGE_SIZE) {
305 ret = true;
306 break;
307 }
308 }
309 rcu_read_unlock();
310
311 return ret;
312}
313
d002b8bc
AH
314int kprobe_cache_get_kallsym(struct kprobe_insn_cache *c, unsigned int *symnum,
315 unsigned long *value, char *type, char *sym)
316{
317 struct kprobe_insn_page *kip;
318 int ret = -ERANGE;
319
320 rcu_read_lock();
321 list_for_each_entry_rcu(kip, &c->pages, list) {
322 if ((*symnum)--)
323 continue;
223a76b2 324 strscpy(sym, c->sym, KSYM_NAME_LEN);
d002b8bc
AH
325 *type = 't';
326 *value = (unsigned long)kip->insns;
327 ret = 0;
328 break;
329 }
330 rcu_read_unlock();
331
332 return ret;
333}
334
afd66255 335#ifdef CONFIG_OPTPROBES
7ee3e97e
CL
336void __weak *alloc_optinsn_page(void)
337{
338 return alloc_insn_page();
339}
340
341void __weak free_optinsn_page(void *page)
342{
343 free_insn_page(page);
344}
345
afd66255 346/* For optimized_kprobe buffer */
c802d64a
HC
347struct kprobe_insn_cache kprobe_optinsn_slots = {
348 .mutex = __MUTEX_INITIALIZER(kprobe_optinsn_slots.mutex),
7ee3e97e
CL
349 .alloc = alloc_optinsn_page,
350 .free = free_optinsn_page,
d002b8bc 351 .sym = KPROBE_OPTINSN_PAGE_SYM,
afd66255
MH
352 .pages = LIST_HEAD_INIT(kprobe_optinsn_slots.pages),
353 /* .insn_size is initialized later */
354 .nr_garbage = 0,
355};
afd66255 356#endif
2d14e39d 357#endif
9ec4b1f3 358
e6584523
AM
359/* We have preemption disabled.. so it is safe to use __ versions */
360static inline void set_kprobe_instance(struct kprobe *kp)
361{
b76834bc 362 __this_cpu_write(kprobe_instance, kp);
e6584523
AM
363}
364
365static inline void reset_kprobe_instance(void)
366{
b76834bc 367 __this_cpu_write(kprobe_instance, NULL);
e6584523
AM
368}
369
3516a460
AM
370/*
371 * This routine is called either:
223a76b2
MH
372 * - under the 'kprobe_mutex' - during kprobe_[un]register().
373 * OR
374 * - with preemption disabled - from architecture specific code.
3516a460 375 */
820aede0 376struct kprobe *get_kprobe(void *addr)
1da177e4
LT
377{
378 struct hlist_head *head;
3516a460 379 struct kprobe *p;
1da177e4
LT
380
381 head = &kprobe_table[hash_ptr(addr, KPROBE_HASH_BITS)];
6743ad43
MH
382 hlist_for_each_entry_rcu(p, head, hlist,
383 lockdep_is_held(&kprobe_mutex)) {
1da177e4
LT
384 if (p->addr == addr)
385 return p;
386 }
afd66255 387
1da177e4
LT
388 return NULL;
389}
820aede0 390NOKPROBE_SYMBOL(get_kprobe);
1da177e4 391
820aede0 392static int aggr_pre_handler(struct kprobe *p, struct pt_regs *regs);
afd66255 393
223a76b2 394/* Return true if 'p' is an aggregator */
29e8077a 395static inline bool kprobe_aggrprobe(struct kprobe *p)
afd66255
MH
396{
397 return p->pre_handler == aggr_pre_handler;
398}
399
223a76b2 400/* Return true if 'p' is unused */
29e8077a 401static inline bool kprobe_unused(struct kprobe *p)
6274de49
MH
402{
403 return kprobe_aggrprobe(p) && kprobe_disabled(p) &&
404 list_empty(&p->list);
405}
406
223a76b2 407/* Keep all fields in the kprobe consistent. */
6d8e40a8 408static inline void copy_kprobe(struct kprobe *ap, struct kprobe *p)
afd66255 409{
6d8e40a8
MH
410 memcpy(&p->opcode, &ap->opcode, sizeof(kprobe_opcode_t));
411 memcpy(&p->ainsn, &ap->ainsn, sizeof(struct arch_specific_insn));
afd66255
MH
412}
413
414#ifdef CONFIG_OPTPROBES
223a76b2 415/* NOTE: This is protected by 'kprobe_mutex'. */
b2be84df
MH
416static bool kprobes_allow_optimization;
417
afd66255 418/*
223a76b2 419 * Call all 'kprobe::pre_handler' on the list, but ignores its return value.
afd66255
MH
420 * This must be called from arch-dep optimized caller.
421 */
820aede0 422void opt_pre_handler(struct kprobe *p, struct pt_regs *regs)
afd66255
MH
423{
424 struct kprobe *kp;
425
426 list_for_each_entry_rcu(kp, &p->list, list) {
427 if (kp->pre_handler && likely(!kprobe_disabled(kp))) {
428 set_kprobe_instance(kp);
4f3a8714 429 kp->pre_handler(kp, regs);
afd66255
MH
430 }
431 reset_kprobe_instance();
432 }
433}
820aede0 434NOKPROBE_SYMBOL(opt_pre_handler);
afd66255 435
6274de49 436/* Free optimized instructions and optimized_kprobe */
55479f64 437static void free_aggr_kprobe(struct kprobe *p)
6274de49
MH
438{
439 struct optimized_kprobe *op;
440
441 op = container_of(p, struct optimized_kprobe, kp);
442 arch_remove_optimized_kprobe(op);
443 arch_remove_kprobe(p);
444 kfree(op);
445}
446
223a76b2 447/* Return true if the kprobe is ready for optimization. */
afd66255
MH
448static inline int kprobe_optready(struct kprobe *p)
449{
450 struct optimized_kprobe *op;
451
452 if (kprobe_aggrprobe(p)) {
453 op = container_of(p, struct optimized_kprobe, kp);
454 return arch_prepared_optinsn(&op->optinsn);
455 }
456
457 return 0;
458}
459
223a76b2 460/* Return true if the kprobe is disarmed. Note: p must be on hash list */
29e8077a 461static inline bool kprobe_disarmed(struct kprobe *p)
6274de49
MH
462{
463 struct optimized_kprobe *op;
464
465 /* If kprobe is not aggr/opt probe, just return kprobe is disabled */
466 if (!kprobe_aggrprobe(p))
467 return kprobe_disabled(p);
468
469 op = container_of(p, struct optimized_kprobe, kp);
470
471 return kprobe_disabled(p) && list_empty(&op->list);
472}
473
223a76b2 474/* Return true if the probe is queued on (un)optimizing lists */
29e8077a 475static bool kprobe_queued(struct kprobe *p)
6274de49
MH
476{
477 struct optimized_kprobe *op;
478
479 if (kprobe_aggrprobe(p)) {
480 op = container_of(p, struct optimized_kprobe, kp);
481 if (!list_empty(&op->list))
29e8077a 482 return true;
6274de49 483 }
29e8077a 484 return false;
6274de49
MH
485}
486
afd66255
MH
487/*
488 * Return an optimized kprobe whose optimizing code replaces
223a76b2 489 * instructions including 'addr' (exclude breakpoint).
afd66255 490 */
c42421e2 491static struct kprobe *get_optimized_kprobe(kprobe_opcode_t *addr)
afd66255
MH
492{
493 int i;
494 struct kprobe *p = NULL;
495 struct optimized_kprobe *op;
496
497 /* Don't check i == 0, since that is a breakpoint case. */
c42421e2
MH
498 for (i = 1; !p && i < MAX_OPTIMIZED_LENGTH / sizeof(kprobe_opcode_t); i++)
499 p = get_kprobe(addr - i);
afd66255
MH
500
501 if (p && kprobe_optready(p)) {
502 op = container_of(p, struct optimized_kprobe, kp);
503 if (arch_within_optimized_kprobe(op, addr))
504 return p;
505 }
506
507 return NULL;
508}
509
223a76b2 510/* Optimization staging list, protected by 'kprobe_mutex' */
afd66255 511static LIST_HEAD(optimizing_list);
6274de49 512static LIST_HEAD(unoptimizing_list);
7b959fc5 513static LIST_HEAD(freeing_list);
afd66255
MH
514
515static void kprobe_optimizer(struct work_struct *work);
516static DECLARE_DELAYED_WORK(optimizing_work, kprobe_optimizer);
517#define OPTIMIZE_DELAY 5
518
61f4e13f
MH
519/*
520 * Optimize (replace a breakpoint with a jump) kprobes listed on
223a76b2 521 * 'optimizing_list'.
61f4e13f 522 */
55479f64 523static void do_optimize_kprobes(void)
afd66255 524{
f1c6ece2 525 lockdep_assert_held(&text_mutex);
afd66255 526 /*
223a76b2
MH
527 * The optimization/unoptimization refers 'online_cpus' via
528 * stop_machine() and cpu-hotplug modifies the 'online_cpus'.
529 * And same time, 'text_mutex' will be held in cpu-hotplug and here.
530 * This combination can cause a deadlock (cpu-hotplug tries to lock
531 * 'text_mutex' but stop_machine() can not be done because
532 * the 'online_cpus' has been changed)
533 * To avoid this deadlock, caller must have locked cpu-hotplug
534 * for preventing cpu-hotplug outside of 'text_mutex' locking.
afd66255 535 */
2d1e38f5
TG
536 lockdep_assert_cpus_held();
537
538 /* Optimization never be done when disarmed */
539 if (kprobes_all_disarmed || !kprobes_allow_optimization ||
540 list_empty(&optimizing_list))
541 return;
542
cd7ebe22 543 arch_optimize_kprobes(&optimizing_list);
61f4e13f
MH
544}
545
6274de49
MH
546/*
547 * Unoptimize (replace a jump with a breakpoint and remove the breakpoint
223a76b2 548 * if need) kprobes listed on 'unoptimizing_list'.
6274de49 549 */
55479f64 550static void do_unoptimize_kprobes(void)
6274de49
MH
551{
552 struct optimized_kprobe *op, *tmp;
553
f1c6ece2 554 lockdep_assert_held(&text_mutex);
2d1e38f5
TG
555 /* See comment in do_optimize_kprobes() */
556 lockdep_assert_cpus_held();
557
6274de49
MH
558 /* Unoptimization must be done anytime */
559 if (list_empty(&unoptimizing_list))
560 return;
561
7b959fc5 562 arch_unoptimize_kprobes(&unoptimizing_list, &freeing_list);
223a76b2 563 /* Loop on 'freeing_list' for disarming */
7b959fc5 564 list_for_each_entry_safe(op, tmp, &freeing_list, list) {
f66c0447
MH
565 /* Switching from detour code to origin */
566 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
6274de49
MH
567 /* Disarm probes if marked disabled */
568 if (kprobe_disabled(&op->kp))
569 arch_disarm_kprobe(&op->kp);
570 if (kprobe_unused(&op->kp)) {
571 /*
572 * Remove unused probes from hash list. After waiting
573 * for synchronization, these probes are reclaimed.
223a76b2 574 * (reclaiming is done by do_free_cleaned_kprobes().)
6274de49
MH
575 */
576 hlist_del_rcu(&op->kp.hlist);
6274de49
MH
577 } else
578 list_del_init(&op->list);
579 }
6274de49
MH
580}
581
223a76b2 582/* Reclaim all kprobes on the 'freeing_list' */
55479f64 583static void do_free_cleaned_kprobes(void)
6274de49
MH
584{
585 struct optimized_kprobe *op, *tmp;
586
7b959fc5 587 list_for_each_entry_safe(op, tmp, &freeing_list, list) {
6274de49 588 list_del_init(&op->list);
cbdd96f5
MH
589 if (WARN_ON_ONCE(!kprobe_unused(&op->kp))) {
590 /*
591 * This must not happen, but if there is a kprobe
592 * still in use, keep it on kprobes hash list.
593 */
594 continue;
595 }
6274de49
MH
596 free_aggr_kprobe(&op->kp);
597 }
598}
599
600/* Start optimizer after OPTIMIZE_DELAY passed */
55479f64 601static void kick_kprobe_optimizer(void)
6274de49 602{
ad72b3be 603 schedule_delayed_work(&optimizing_work, OPTIMIZE_DELAY);
6274de49
MH
604}
605
61f4e13f 606/* Kprobe jump optimizer */
55479f64 607static void kprobe_optimizer(struct work_struct *work)
61f4e13f 608{
72ef3794 609 mutex_lock(&kprobe_mutex);
2d1e38f5 610 cpus_read_lock();
f1c6ece2 611 mutex_lock(&text_mutex);
61f4e13f
MH
612
613 /*
6274de49
MH
614 * Step 1: Unoptimize kprobes and collect cleaned (unused and disarmed)
615 * kprobes before waiting for quiesence period.
616 */
7b959fc5 617 do_unoptimize_kprobes();
6274de49
MH
618
619 /*
a30b85df
MH
620 * Step 2: Wait for quiesence period to ensure all potentially
621 * preempted tasks to have normally scheduled. Because optprobe
622 * may modify multiple instructions, there is a chance that Nth
623 * instruction is preempted. In that case, such tasks can return
624 * to 2nd-Nth byte of jump instruction. This wait is for avoiding it.
625 * Note that on non-preemptive kernel, this is transparently converted
626 * to synchronoze_sched() to wait for all interrupts to have completed.
61f4e13f 627 */
a30b85df 628 synchronize_rcu_tasks();
61f4e13f 629
6274de49 630 /* Step 3: Optimize kprobes after quiesence period */
61f4e13f 631 do_optimize_kprobes();
6274de49
MH
632
633 /* Step 4: Free cleaned kprobes after quiesence period */
7b959fc5 634 do_free_cleaned_kprobes();
6274de49 635
f1c6ece2 636 mutex_unlock(&text_mutex);
2d1e38f5 637 cpus_read_unlock();
6274de49 638
cd7ebe22 639 /* Step 5: Kick optimizer again if needed */
f984ba4e 640 if (!list_empty(&optimizing_list) || !list_empty(&unoptimizing_list))
cd7ebe22 641 kick_kprobe_optimizer();
1a0aa991
MH
642
643 mutex_unlock(&kprobe_mutex);
6274de49
MH
644}
645
646/* Wait for completing optimization and unoptimization */
30e7d894 647void wait_for_kprobe_optimizer(void)
6274de49 648{
ad72b3be
TH
649 mutex_lock(&kprobe_mutex);
650
651 while (!list_empty(&optimizing_list) || !list_empty(&unoptimizing_list)) {
652 mutex_unlock(&kprobe_mutex);
653
223a76b2 654 /* This will also make 'optimizing_work' execute immmediately */
ad72b3be 655 flush_delayed_work(&optimizing_work);
223a76b2 656 /* 'optimizing_work' might not have been queued yet, relax */
ad72b3be
TH
657 cpu_relax();
658
659 mutex_lock(&kprobe_mutex);
660 }
661
662 mutex_unlock(&kprobe_mutex);
afd66255
MH
663}
664
e4add247
MH
665static bool optprobe_queued_unopt(struct optimized_kprobe *op)
666{
667 struct optimized_kprobe *_op;
668
669 list_for_each_entry(_op, &unoptimizing_list, list) {
670 if (op == _op)
671 return true;
672 }
673
674 return false;
675}
676
afd66255 677/* Optimize kprobe if p is ready to be optimized */
55479f64 678static void optimize_kprobe(struct kprobe *p)
afd66255
MH
679{
680 struct optimized_kprobe *op;
681
682 /* Check if the kprobe is disabled or not ready for optimization. */
b2be84df 683 if (!kprobe_optready(p) || !kprobes_allow_optimization ||
afd66255
MH
684 (kprobe_disabled(p) || kprobes_all_disarmed))
685 return;
686
223a76b2 687 /* kprobes with 'post_handler' can not be optimized */
059053a2 688 if (p->post_handler)
afd66255
MH
689 return;
690
691 op = container_of(p, struct optimized_kprobe, kp);
692
693 /* Check there is no other kprobes at the optimized instructions */
694 if (arch_check_optimized_kprobe(op) < 0)
695 return;
696
697 /* Check if it is already optimized. */
e4add247
MH
698 if (op->kp.flags & KPROBE_FLAG_OPTIMIZED) {
699 if (optprobe_queued_unopt(op)) {
700 /* This is under unoptimizing. Just dequeue the probe */
701 list_del_init(&op->list);
702 }
afd66255 703 return;
e4add247 704 }
afd66255 705 op->kp.flags |= KPROBE_FLAG_OPTIMIZED;
6274de49 706
223a76b2
MH
707 /*
708 * On the 'unoptimizing_list' and 'optimizing_list',
709 * 'op' must have OPTIMIZED flag
710 */
e4add247
MH
711 if (WARN_ON_ONCE(!list_empty(&op->list)))
712 return;
713
714 list_add(&op->list, &optimizing_list);
715 kick_kprobe_optimizer();
6274de49
MH
716}
717
718/* Short cut to direct unoptimizing */
55479f64 719static void force_unoptimize_kprobe(struct optimized_kprobe *op)
6274de49 720{
2d1e38f5 721 lockdep_assert_cpus_held();
6274de49 722 arch_unoptimize_kprobe(op);
f66c0447 723 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
afd66255
MH
724}
725
726/* Unoptimize a kprobe if p is optimized */
55479f64 727static void unoptimize_kprobe(struct kprobe *p, bool force)
afd66255
MH
728{
729 struct optimized_kprobe *op;
730
6274de49
MH
731 if (!kprobe_aggrprobe(p) || kprobe_disarmed(p))
732 return; /* This is not an optprobe nor optimized */
733
734 op = container_of(p, struct optimized_kprobe, kp);
e4add247 735 if (!kprobe_optimized(p))
6274de49 736 return;
6274de49 737
6274de49 738 if (!list_empty(&op->list)) {
e4add247
MH
739 if (optprobe_queued_unopt(op)) {
740 /* Queued in unoptimizing queue */
741 if (force) {
742 /*
743 * Forcibly unoptimize the kprobe here, and queue it
744 * in the freeing list for release afterwards.
745 */
746 force_unoptimize_kprobe(op);
747 list_move(&op->list, &freeing_list);
748 }
749 } else {
750 /* Dequeue from the optimizing queue */
751 list_del_init(&op->list);
752 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
753 }
6274de49
MH
754 return;
755 }
e4add247 756
6274de49 757 /* Optimized kprobe case */
e4add247 758 if (force) {
6274de49
MH
759 /* Forcibly update the code: this is a special case */
760 force_unoptimize_kprobe(op);
e4add247 761 } else {
6274de49
MH
762 list_add(&op->list, &unoptimizing_list);
763 kick_kprobe_optimizer();
afd66255
MH
764 }
765}
766
0490cd1f 767/* Cancel unoptimizing for reusing */
819319fc 768static int reuse_unused_kprobe(struct kprobe *ap)
0490cd1f
MH
769{
770 struct optimized_kprobe *op;
771
0490cd1f
MH
772 /*
773 * Unused kprobe MUST be on the way of delayed unoptimizing (means
774 * there is still a relative jump) and disabled.
775 */
776 op = container_of(ap, struct optimized_kprobe, kp);
4458515b 777 WARN_ON_ONCE(list_empty(&op->list));
0490cd1f
MH
778 /* Enable the probe again */
779 ap->flags &= ~KPROBE_FLAG_DISABLED;
223a76b2 780 /* Optimize it again. (remove from 'op->list') */
5f843ed4
MH
781 if (!kprobe_optready(ap))
782 return -EINVAL;
819319fc 783
0490cd1f 784 optimize_kprobe(ap);
819319fc 785 return 0;
0490cd1f
MH
786}
787
afd66255 788/* Remove optimized instructions */
55479f64 789static void kill_optimized_kprobe(struct kprobe *p)
afd66255
MH
790{
791 struct optimized_kprobe *op;
792
793 op = container_of(p, struct optimized_kprobe, kp);
6274de49
MH
794 if (!list_empty(&op->list))
795 /* Dequeue from the (un)optimization queue */
afd66255 796 list_del_init(&op->list);
6274de49 797 op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
7b959fc5
MH
798
799 if (kprobe_unused(p)) {
800 /* Enqueue if it is unused */
801 list_add(&op->list, &freeing_list);
802 /*
803 * Remove unused probes from the hash list. After waiting
804 * for synchronization, this probe is reclaimed.
805 * (reclaiming is done by do_free_cleaned_kprobes().)
806 */
807 hlist_del_rcu(&op->kp.hlist);
808 }
809
6274de49 810 /* Don't touch the code, because it is already freed. */
afd66255
MH
811 arch_remove_optimized_kprobe(op);
812}
813
a460246c
MH
814static inline
815void __prepare_optimized_kprobe(struct optimized_kprobe *op, struct kprobe *p)
816{
817 if (!kprobe_ftrace(p))
818 arch_prepare_optimized_kprobe(op, p);
819}
820
afd66255 821/* Try to prepare optimized instructions */
55479f64 822static void prepare_optimized_kprobe(struct kprobe *p)
afd66255
MH
823{
824 struct optimized_kprobe *op;
825
826 op = container_of(p, struct optimized_kprobe, kp);
a460246c 827 __prepare_optimized_kprobe(op, p);
afd66255
MH
828}
829
223a76b2 830/* Allocate new optimized_kprobe and try to prepare optimized instructions. */
55479f64 831static struct kprobe *alloc_aggr_kprobe(struct kprobe *p)
afd66255
MH
832{
833 struct optimized_kprobe *op;
834
835 op = kzalloc(sizeof(struct optimized_kprobe), GFP_KERNEL);
836 if (!op)
837 return NULL;
838
839 INIT_LIST_HEAD(&op->list);
840 op->kp.addr = p->addr;
a460246c 841 __prepare_optimized_kprobe(op, p);
afd66255
MH
842
843 return &op->kp;
844}
845
55479f64 846static void init_aggr_kprobe(struct kprobe *ap, struct kprobe *p);
afd66255
MH
847
848/*
223a76b2
MH
849 * Prepare an optimized_kprobe and optimize it.
850 * NOTE: 'p' must be a normal registered kprobe.
afd66255 851 */
55479f64 852static void try_to_optimize_kprobe(struct kprobe *p)
afd66255
MH
853{
854 struct kprobe *ap;
855 struct optimized_kprobe *op;
856
223a76b2 857 /* Impossible to optimize ftrace-based kprobe. */
ae6aa16f
MH
858 if (kprobe_ftrace(p))
859 return;
860
223a76b2 861 /* For preparing optimization, jump_label_text_reserved() is called. */
2d1e38f5 862 cpus_read_lock();
25764288
MH
863 jump_label_lock();
864 mutex_lock(&text_mutex);
865
afd66255
MH
866 ap = alloc_aggr_kprobe(p);
867 if (!ap)
25764288 868 goto out;
afd66255
MH
869
870 op = container_of(ap, struct optimized_kprobe, kp);
871 if (!arch_prepared_optinsn(&op->optinsn)) {
223a76b2 872 /* If failed to setup optimizing, fallback to kprobe. */
6274de49
MH
873 arch_remove_optimized_kprobe(op);
874 kfree(op);
25764288 875 goto out;
afd66255
MH
876 }
877
878 init_aggr_kprobe(ap, p);
223a76b2 879 optimize_kprobe(ap); /* This just kicks optimizer thread. */
25764288
MH
880
881out:
882 mutex_unlock(&text_mutex);
883 jump_label_unlock();
2d1e38f5 884 cpus_read_unlock();
afd66255
MH
885}
886
55479f64 887static void optimize_all_kprobes(void)
b2be84df
MH
888{
889 struct hlist_head *head;
b2be84df
MH
890 struct kprobe *p;
891 unsigned int i;
892
5c51543b 893 mutex_lock(&kprobe_mutex);
223a76b2 894 /* If optimization is already allowed, just return. */
b2be84df 895 if (kprobes_allow_optimization)
5c51543b 896 goto out;
b2be84df 897
2d1e38f5 898 cpus_read_lock();
b2be84df 899 kprobes_allow_optimization = true;
b2be84df
MH
900 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
901 head = &kprobe_table[i];
7e6a71d8 902 hlist_for_each_entry(p, head, hlist)
b2be84df
MH
903 if (!kprobe_disabled(p))
904 optimize_kprobe(p);
905 }
2d1e38f5 906 cpus_read_unlock();
9c89bb8e 907 pr_info("kprobe jump-optimization is enabled. All kprobes are optimized if possible.\n");
5c51543b
MH
908out:
909 mutex_unlock(&kprobe_mutex);
b2be84df
MH
910}
911
c85c9a2c 912#ifdef CONFIG_SYSCTL
55479f64 913static void unoptimize_all_kprobes(void)
b2be84df
MH
914{
915 struct hlist_head *head;
b2be84df
MH
916 struct kprobe *p;
917 unsigned int i;
918
5c51543b 919 mutex_lock(&kprobe_mutex);
223a76b2 920 /* If optimization is already prohibited, just return. */
5c51543b
MH
921 if (!kprobes_allow_optimization) {
922 mutex_unlock(&kprobe_mutex);
b2be84df 923 return;
5c51543b 924 }
b2be84df 925
2d1e38f5 926 cpus_read_lock();
b2be84df 927 kprobes_allow_optimization = false;
b2be84df
MH
928 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
929 head = &kprobe_table[i];
7e6a71d8 930 hlist_for_each_entry(p, head, hlist) {
b2be84df 931 if (!kprobe_disabled(p))
6274de49 932 unoptimize_kprobe(p, false);
b2be84df
MH
933 }
934 }
2d1e38f5 935 cpus_read_unlock();
5c51543b
MH
936 mutex_unlock(&kprobe_mutex);
937
223a76b2 938 /* Wait for unoptimizing completion. */
6274de49 939 wait_for_kprobe_optimizer();
9c89bb8e 940 pr_info("kprobe jump-optimization is disabled. All kprobes are based on software breakpoint.\n");
b2be84df
MH
941}
942
5c51543b 943static DEFINE_MUTEX(kprobe_sysctl_mutex);
a737a3c6
XN
944static int sysctl_kprobes_optimization;
945static int proc_kprobes_optimization_handler(struct ctl_table *table,
946 int write, void *buffer,
947 size_t *length, loff_t *ppos)
b2be84df
MH
948{
949 int ret;
950
5c51543b 951 mutex_lock(&kprobe_sysctl_mutex);
b2be84df
MH
952 sysctl_kprobes_optimization = kprobes_allow_optimization ? 1 : 0;
953 ret = proc_dointvec_minmax(table, write, buffer, length, ppos);
954
955 if (sysctl_kprobes_optimization)
956 optimize_all_kprobes();
957 else
958 unoptimize_all_kprobes();
5c51543b 959 mutex_unlock(&kprobe_sysctl_mutex);
b2be84df
MH
960
961 return ret;
962}
a737a3c6
XN
963
964static struct ctl_table kprobe_sysctls[] = {
965 {
966 .procname = "kprobes-optimization",
967 .data = &sysctl_kprobes_optimization,
968 .maxlen = sizeof(int),
969 .mode = 0644,
970 .proc_handler = proc_kprobes_optimization_handler,
971 .extra1 = SYSCTL_ZERO,
972 .extra2 = SYSCTL_ONE,
973 },
974 {}
975};
976
977static void __init kprobe_sysctls_init(void)
978{
979 register_sysctl_init("debug", kprobe_sysctls);
980}
b2be84df
MH
981#endif /* CONFIG_SYSCTL */
982
57d4e317 983/* Put a breakpoint for a probe. */
55479f64 984static void __arm_kprobe(struct kprobe *p)
afd66255 985{
6d8e40a8 986 struct kprobe *_p;
afd66255 987
57d4e317
MH
988 lockdep_assert_held(&text_mutex);
989
223a76b2 990 /* Find the overlapping optimized kprobes. */
c42421e2 991 _p = get_optimized_kprobe(p->addr);
6d8e40a8 992 if (unlikely(_p))
6274de49
MH
993 /* Fallback to unoptimized kprobe */
994 unoptimize_kprobe(_p, true);
afd66255
MH
995
996 arch_arm_kprobe(p);
997 optimize_kprobe(p); /* Try to optimize (add kprobe to a list) */
998}
999
57d4e317 1000/* Remove the breakpoint of a probe. */
55479f64 1001static void __disarm_kprobe(struct kprobe *p, bool reopt)
afd66255 1002{
6d8e40a8 1003 struct kprobe *_p;
afd66255 1004
57d4e317
MH
1005 lockdep_assert_held(&text_mutex);
1006
69d54b91
WN
1007 /* Try to unoptimize */
1008 unoptimize_kprobe(p, kprobes_all_disarmed);
afd66255 1009
6274de49
MH
1010 if (!kprobe_queued(p)) {
1011 arch_disarm_kprobe(p);
223a76b2 1012 /* If another kprobe was blocked, re-optimize it. */
c42421e2 1013 _p = get_optimized_kprobe(p->addr);
6274de49
MH
1014 if (unlikely(_p) && reopt)
1015 optimize_kprobe(_p);
1016 }
223a76b2
MH
1017 /*
1018 * TODO: Since unoptimization and real disarming will be done by
1019 * the worker thread, we can not check whether another probe are
1020 * unoptimized because of this probe here. It should be re-optimized
1021 * by the worker thread.
1022 */
afd66255
MH
1023}
1024
1025#else /* !CONFIG_OPTPROBES */
1026
1027#define optimize_kprobe(p) do {} while (0)
6274de49 1028#define unoptimize_kprobe(p, f) do {} while (0)
afd66255
MH
1029#define kill_optimized_kprobe(p) do {} while (0)
1030#define prepare_optimized_kprobe(p) do {} while (0)
1031#define try_to_optimize_kprobe(p) do {} while (0)
1032#define __arm_kprobe(p) arch_arm_kprobe(p)
6274de49
MH
1033#define __disarm_kprobe(p, o) arch_disarm_kprobe(p)
1034#define kprobe_disarmed(p) kprobe_disabled(p)
1035#define wait_for_kprobe_optimizer() do {} while (0)
afd66255 1036
819319fc 1037static int reuse_unused_kprobe(struct kprobe *ap)
0490cd1f 1038{
819319fc
MH
1039 /*
1040 * If the optimized kprobe is NOT supported, the aggr kprobe is
1041 * released at the same time that the last aggregated kprobe is
1042 * unregistered.
1043 * Thus there should be no chance to reuse unused kprobe.
1044 */
9c89bb8e 1045 WARN_ON_ONCE(1);
819319fc 1046 return -EINVAL;
0490cd1f
MH
1047}
1048
55479f64 1049static void free_aggr_kprobe(struct kprobe *p)
afd66255 1050{
6274de49 1051 arch_remove_kprobe(p);
afd66255
MH
1052 kfree(p);
1053}
1054
55479f64 1055static struct kprobe *alloc_aggr_kprobe(struct kprobe *p)
afd66255
MH
1056{
1057 return kzalloc(sizeof(struct kprobe), GFP_KERNEL);
1058}
1059#endif /* CONFIG_OPTPROBES */
1060
e7dbfe34 1061#ifdef CONFIG_KPROBES_ON_FTRACE
ae6aa16f 1062static struct ftrace_ops kprobe_ftrace_ops __read_mostly = {
0bc11ed5
MH
1063 .func = kprobe_ftrace_handler,
1064 .flags = FTRACE_OPS_FL_SAVE_REGS,
1065};
1066
1067static struct ftrace_ops kprobe_ipmodify_ops __read_mostly = {
e5253896 1068 .func = kprobe_ftrace_handler,
1d70be34 1069 .flags = FTRACE_OPS_FL_SAVE_REGS | FTRACE_OPS_FL_IPMODIFY,
ae6aa16f 1070};
0bc11ed5
MH
1071
1072static int kprobe_ipmodify_enabled;
ae6aa16f
MH
1073static int kprobe_ftrace_enabled;
1074
0bc11ed5
MH
1075static int __arm_kprobe_ftrace(struct kprobe *p, struct ftrace_ops *ops,
1076 int *cnt)
ae6aa16f 1077{
12310e34 1078 int ret = 0;
ae6aa16f 1079
57d4e317
MH
1080 lockdep_assert_held(&kprobe_mutex);
1081
0bc11ed5 1082 ret = ftrace_set_filter_ip(ops, (unsigned long)p->addr, 0, 0);
9c89bb8e 1083 if (WARN_ONCE(ret < 0, "Failed to arm kprobe-ftrace at %pS (error %d)\n", p->addr, ret))
12310e34 1084 return ret;
12310e34 1085
0bc11ed5
MH
1086 if (*cnt == 0) {
1087 ret = register_ftrace_function(ops);
9c89bb8e 1088 if (WARN(ret < 0, "Failed to register kprobe-ftrace (error %d)\n", ret))
12310e34 1089 goto err_ftrace;
ae6aa16f 1090 }
12310e34 1091
0bc11ed5 1092 (*cnt)++;
12310e34
JY
1093 return ret;
1094
1095err_ftrace:
1096 /*
0bc11ed5
MH
1097 * At this point, sinec ops is not registered, we should be sefe from
1098 * registering empty filter.
12310e34 1099 */
0bc11ed5 1100 ftrace_set_filter_ip(ops, (unsigned long)p->addr, 1, 0);
12310e34 1101 return ret;
ae6aa16f
MH
1102}
1103
0bc11ed5
MH
1104static int arm_kprobe_ftrace(struct kprobe *p)
1105{
1106 bool ipmodify = (p->post_handler != NULL);
1107
1108 return __arm_kprobe_ftrace(p,
1109 ipmodify ? &kprobe_ipmodify_ops : &kprobe_ftrace_ops,
1110 ipmodify ? &kprobe_ipmodify_enabled : &kprobe_ftrace_enabled);
1111}
1112
0bc11ed5
MH
1113static int __disarm_kprobe_ftrace(struct kprobe *p, struct ftrace_ops *ops,
1114 int *cnt)
ae6aa16f 1115{
297f9233 1116 int ret = 0;
ae6aa16f 1117
57d4e317
MH
1118 lockdep_assert_held(&kprobe_mutex);
1119
0bc11ed5
MH
1120 if (*cnt == 1) {
1121 ret = unregister_ftrace_function(ops);
9c89bb8e 1122 if (WARN(ret < 0, "Failed to unregister kprobe-ftrace (error %d)\n", ret))
297f9233 1123 return ret;
ae6aa16f 1124 }
297f9233 1125
0bc11ed5 1126 (*cnt)--;
297f9233 1127
0bc11ed5 1128 ret = ftrace_set_filter_ip(ops, (unsigned long)p->addr, 1, 0);
9c89bb8e 1129 WARN_ONCE(ret < 0, "Failed to disarm kprobe-ftrace at %pS (error %d)\n",
4458515b 1130 p->addr, ret);
297f9233 1131 return ret;
ae6aa16f 1132}
0bc11ed5
MH
1133
1134static int disarm_kprobe_ftrace(struct kprobe *p)
1135{
1136 bool ipmodify = (p->post_handler != NULL);
1137
1138 return __disarm_kprobe_ftrace(p,
1139 ipmodify ? &kprobe_ipmodify_ops : &kprobe_ftrace_ops,
1140 ipmodify ? &kprobe_ipmodify_enabled : &kprobe_ftrace_enabled);
1141}
e7dbfe34 1142#else /* !CONFIG_KPROBES_ON_FTRACE */
10de795a
MS
1143static inline int arm_kprobe_ftrace(struct kprobe *p)
1144{
1145 return -ENODEV;
1146}
1147
1148static inline int disarm_kprobe_ftrace(struct kprobe *p)
1149{
1150 return -ENODEV;
1151}
ae6aa16f
MH
1152#endif
1153
02afb8d6
PA
1154static int prepare_kprobe(struct kprobe *p)
1155{
1156 /* Must ensure p->addr is really on ftrace */
1157 if (kprobe_ftrace(p))
1158 return arch_prepare_kprobe_ftrace(p);
1159
1160 return arch_prepare_kprobe(p);
1161}
1162
12310e34 1163static int arm_kprobe(struct kprobe *kp)
201517a7 1164{
12310e34
JY
1165 if (unlikely(kprobe_ftrace(kp)))
1166 return arm_kprobe_ftrace(kp);
1167
2d1e38f5 1168 cpus_read_lock();
201517a7 1169 mutex_lock(&text_mutex);
afd66255 1170 __arm_kprobe(kp);
201517a7 1171 mutex_unlock(&text_mutex);
2d1e38f5 1172 cpus_read_unlock();
12310e34
JY
1173
1174 return 0;
201517a7
MH
1175}
1176
297f9233 1177static int disarm_kprobe(struct kprobe *kp, bool reopt)
201517a7 1178{
297f9233
JY
1179 if (unlikely(kprobe_ftrace(kp)))
1180 return disarm_kprobe_ftrace(kp);
2d1e38f5
TG
1181
1182 cpus_read_lock();
201517a7 1183 mutex_lock(&text_mutex);
ae6aa16f 1184 __disarm_kprobe(kp, reopt);
201517a7 1185 mutex_unlock(&text_mutex);
2d1e38f5 1186 cpus_read_unlock();
297f9233
JY
1187
1188 return 0;
201517a7
MH
1189}
1190
64f562c6
AM
1191/*
1192 * Aggregate handlers for multiple kprobes support - these handlers
1193 * take care of invoking the individual kprobe handlers on p->list
1194 */
820aede0 1195static int aggr_pre_handler(struct kprobe *p, struct pt_regs *regs)
64f562c6
AM
1196{
1197 struct kprobe *kp;
1198
3516a460 1199 list_for_each_entry_rcu(kp, &p->list, list) {
de5bd88d 1200 if (kp->pre_handler && likely(!kprobe_disabled(kp))) {
e6584523 1201 set_kprobe_instance(kp);
8b0914ea
PP
1202 if (kp->pre_handler(kp, regs))
1203 return 1;
64f562c6 1204 }
e6584523 1205 reset_kprobe_instance();
64f562c6
AM
1206 }
1207 return 0;
1208}
820aede0 1209NOKPROBE_SYMBOL(aggr_pre_handler);
64f562c6 1210
820aede0
MH
1211static void aggr_post_handler(struct kprobe *p, struct pt_regs *regs,
1212 unsigned long flags)
64f562c6
AM
1213{
1214 struct kprobe *kp;
1215
3516a460 1216 list_for_each_entry_rcu(kp, &p->list, list) {
de5bd88d 1217 if (kp->post_handler && likely(!kprobe_disabled(kp))) {
e6584523 1218 set_kprobe_instance(kp);
64f562c6 1219 kp->post_handler(kp, regs, flags);
e6584523 1220 reset_kprobe_instance();
64f562c6
AM
1221 }
1222 }
64f562c6 1223}
820aede0 1224NOKPROBE_SYMBOL(aggr_post_handler);
64f562c6 1225
223a76b2 1226/* Walks the list and increments 'nmissed' if 'p' has child probes. */
820aede0 1227void kprobes_inc_nmissed_count(struct kprobe *p)
bf8d5c52
KA
1228{
1229 struct kprobe *kp;
223a76b2 1230
afd66255 1231 if (!kprobe_aggrprobe(p)) {
bf8d5c52
KA
1232 p->nmissed++;
1233 } else {
1234 list_for_each_entry_rcu(kp, &p->list, list)
1235 kp->nmissed++;
1236 }
bf8d5c52 1237}
820aede0 1238NOKPROBE_SYMBOL(kprobes_inc_nmissed_count);
bf8d5c52 1239
73f9b911
MH
1240static struct kprobe kprobe_busy = {
1241 .addr = (void *) get_kprobe,
1242};
1243
1244void kprobe_busy_begin(void)
1245{
1246 struct kprobe_ctlblk *kcb;
1247
1248 preempt_disable();
1249 __this_cpu_write(current_kprobe, &kprobe_busy);
1250 kcb = get_kprobe_ctlblk();
1251 kcb->kprobe_status = KPROBE_HIT_ACTIVE;
1252}
1253
1254void kprobe_busy_end(void)
1255{
1256 __this_cpu_write(current_kprobe, NULL);
1257 preempt_enable();
1258}
1259
223a76b2 1260/* Add the new probe to 'ap->list'. */
55479f64 1261static int add_new_kprobe(struct kprobe *ap, struct kprobe *p)
8b0914ea 1262{
059053a2 1263 if (p->post_handler)
6274de49 1264 unoptimize_kprobe(ap, true); /* Fall back to normal kprobe */
afd66255 1265
059053a2 1266 list_add_rcu(&p->list, &ap->list);
b918e5e6
MH
1267 if (p->post_handler && !ap->post_handler)
1268 ap->post_handler = aggr_post_handler;
de5bd88d 1269
8b0914ea
PP
1270 return 0;
1271}
1272
64f562c6 1273/*
223a76b2
MH
1274 * Fill in the required fields of the aggregator kprobe. Replace the
1275 * earlier kprobe in the hlist with the aggregator kprobe.
64f562c6 1276 */
55479f64 1277static void init_aggr_kprobe(struct kprobe *ap, struct kprobe *p)
64f562c6 1278{
223a76b2 1279 /* Copy the insn slot of 'p' to 'ap'. */
8b0914ea 1280 copy_kprobe(p, ap);
a9ad965e 1281 flush_insn_slot(ap);
64f562c6 1282 ap->addr = p->addr;
afd66255 1283 ap->flags = p->flags & ~KPROBE_FLAG_OPTIMIZED;
64f562c6 1284 ap->pre_handler = aggr_pre_handler;
e8386a0c
MH
1285 /* We don't care the kprobe which has gone. */
1286 if (p->post_handler && !kprobe_gone(p))
36721656 1287 ap->post_handler = aggr_post_handler;
64f562c6
AM
1288
1289 INIT_LIST_HEAD(&ap->list);
afd66255 1290 INIT_HLIST_NODE(&ap->hlist);
64f562c6 1291
afd66255 1292 list_add_rcu(&p->list, &ap->list);
adad0f33 1293 hlist_replace_rcu(&p->hlist, &ap->hlist);
64f562c6
AM
1294}
1295
1296/*
223a76b2 1297 * This registers the second or subsequent kprobe at the same address.
64f562c6 1298 */
55479f64 1299static int register_aggr_kprobe(struct kprobe *orig_p, struct kprobe *p)
64f562c6
AM
1300{
1301 int ret = 0;
6d8e40a8 1302 struct kprobe *ap = orig_p;
64f562c6 1303
2d1e38f5
TG
1304 cpus_read_lock();
1305
25764288
MH
1306 /* For preparing optimization, jump_label_text_reserved() is called */
1307 jump_label_lock();
25764288
MH
1308 mutex_lock(&text_mutex);
1309
6d8e40a8 1310 if (!kprobe_aggrprobe(orig_p)) {
223a76b2 1311 /* If 'orig_p' is not an 'aggr_kprobe', create new one. */
6d8e40a8 1312 ap = alloc_aggr_kprobe(orig_p);
25764288
MH
1313 if (!ap) {
1314 ret = -ENOMEM;
1315 goto out;
1316 }
6d8e40a8 1317 init_aggr_kprobe(ap, orig_p);
819319fc 1318 } else if (kprobe_unused(ap)) {
0490cd1f 1319 /* This probe is going to die. Rescue it */
819319fc
MH
1320 ret = reuse_unused_kprobe(ap);
1321 if (ret)
1322 goto out;
1323 }
b918e5e6
MH
1324
1325 if (kprobe_gone(ap)) {
e8386a0c
MH
1326 /*
1327 * Attempting to insert new probe at the same location that
1328 * had a probe in the module vaddr area which already
1329 * freed. So, the instruction slot has already been
1330 * released. We need a new slot for the new probe.
1331 */
b918e5e6 1332 ret = arch_prepare_kprobe(ap);
e8386a0c 1333 if (ret)
b918e5e6
MH
1334 /*
1335 * Even if fail to allocate new slot, don't need to
223a76b2
MH
1336 * free the 'ap'. It will be used next time, or
1337 * freed by unregister_kprobe().
b918e5e6 1338 */
25764288 1339 goto out;
de5bd88d 1340
afd66255
MH
1341 /* Prepare optimized instructions if possible. */
1342 prepare_optimized_kprobe(ap);
1343
e8386a0c 1344 /*
de5bd88d
MH
1345 * Clear gone flag to prevent allocating new slot again, and
1346 * set disabled flag because it is not armed yet.
e8386a0c 1347 */
de5bd88d
MH
1348 ap->flags = (ap->flags & ~KPROBE_FLAG_GONE)
1349 | KPROBE_FLAG_DISABLED;
e8386a0c 1350 }
b918e5e6 1351
223a76b2 1352 /* Copy the insn slot of 'p' to 'ap'. */
b918e5e6 1353 copy_kprobe(ap, p);
25764288
MH
1354 ret = add_new_kprobe(ap, p);
1355
1356out:
1357 mutex_unlock(&text_mutex);
25764288 1358 jump_label_unlock();
2d1e38f5 1359 cpus_read_unlock();
25764288
MH
1360
1361 if (ret == 0 && kprobe_disabled(ap) && !kprobe_disabled(p)) {
1362 ap->flags &= ~KPROBE_FLAG_DISABLED;
12310e34 1363 if (!kprobes_all_disarmed) {
25764288 1364 /* Arm the breakpoint again. */
12310e34
JY
1365 ret = arm_kprobe(ap);
1366 if (ret) {
1367 ap->flags |= KPROBE_FLAG_DISABLED;
1368 list_del_rcu(&p->list);
ae8b7ce7 1369 synchronize_rcu();
12310e34
JY
1370 }
1371 }
25764288
MH
1372 }
1373 return ret;
64f562c6
AM
1374}
1375
be8f2743
MH
1376bool __weak arch_within_kprobe_blacklist(unsigned long addr)
1377{
223a76b2 1378 /* The '__kprobes' functions and entry code must not be probed. */
be8f2743
MH
1379 return addr >= (unsigned long)__kprobes_text_start &&
1380 addr < (unsigned long)__kprobes_text_end;
1381}
1382
6143c6fb 1383static bool __within_kprobe_blacklist(unsigned long addr)
d0aaff97 1384{
376e2424 1385 struct kprobe_blacklist_entry *ent;
3d8d996e 1386
be8f2743 1387 if (arch_within_kprobe_blacklist(addr))
376e2424 1388 return true;
3d8d996e 1389 /*
223a76b2
MH
1390 * If 'kprobe_blacklist' is defined, check the address and
1391 * reject any probe registration in the prohibited area.
3d8d996e 1392 */
376e2424
MH
1393 list_for_each_entry(ent, &kprobe_blacklist, list) {
1394 if (addr >= ent->start_addr && addr < ent->end_addr)
1395 return true;
3d8d996e 1396 }
6143c6fb
MH
1397 return false;
1398}
376e2424 1399
6143c6fb
MH
1400bool within_kprobe_blacklist(unsigned long addr)
1401{
1402 char symname[KSYM_NAME_LEN], *p;
1403
1404 if (__within_kprobe_blacklist(addr))
1405 return true;
1406
1407 /* Check if the address is on a suffixed-symbol */
1408 if (!lookup_symbol_name(addr, symname)) {
1409 p = strchr(symname, '.');
1410 if (!p)
1411 return false;
1412 *p = '\0';
1413 addr = (unsigned long)kprobe_lookup_name(symname, 0);
1414 if (addr)
1415 return __within_kprobe_blacklist(addr);
1416 }
376e2424 1417 return false;
d0aaff97
PP
1418}
1419
cc66bb91
PZ
1420/*
1421 * arch_adjust_kprobe_addr - adjust the address
1422 * @addr: symbol base address
1423 * @offset: offset within the symbol
1424 * @on_func_entry: was this @addr+@offset on the function entry
1425 *
1426 * Typically returns @addr + @offset, except for special cases where the
1427 * function might be prefixed by a CFI landing pad, in that case any offset
1428 * inside the landing pad is mapped to the first 'real' instruction of the
1429 * symbol.
1430 *
1431 * Specifically, for things like IBT/BTI, skip the resp. ENDBR/BTI.C
1432 * instruction at +0.
1433 */
1434kprobe_opcode_t *__weak arch_adjust_kprobe_addr(unsigned long addr,
1435 unsigned long offset,
1436 bool *on_func_entry)
1437{
1438 *on_func_entry = !offset;
1439 return (kprobe_opcode_t *)(addr + offset);
1440}
1441
b2a5cd69 1442/*
223a76b2 1443 * If 'symbol_name' is specified, look it up and add the 'offset'
b2a5cd69 1444 * to it. This way, we can specify a relative address to a symbol.
bc81d48d
MH
1445 * This returns encoded errors if it fails to look up symbol or invalid
1446 * combination of parameters.
b2a5cd69 1447 */
cc66bb91
PZ
1448static kprobe_opcode_t *
1449_kprobe_addr(kprobe_opcode_t *addr, const char *symbol_name,
1450 unsigned long offset, bool *on_func_entry)
b2a5cd69 1451{
1d585e70 1452 if ((symbol_name && addr) || (!symbol_name && !addr))
bc81d48d
MH
1453 goto invalid;
1454
1d585e70 1455 if (symbol_name) {
cc66bb91
PZ
1456 /*
1457 * Input: @sym + @offset
1458 * Output: @addr + @offset
1459 *
1460 * NOTE: kprobe_lookup_name() does *NOT* fold the offset
1461 * argument into it's output!
1462 */
7246f600 1463 addr = kprobe_lookup_name(symbol_name, offset);
bc81d48d
MH
1464 if (!addr)
1465 return ERR_PTR(-ENOENT);
b2a5cd69
MH
1466 }
1467
cc66bb91
PZ
1468 /*
1469 * So here we have @addr + @offset, displace it into a new
1470 * @addr' + @offset' where @addr' is the symbol start address.
1471 */
1472 addr = (void *)addr + offset;
1473 if (!kallsyms_lookup_size_offset((unsigned long)addr, NULL, &offset))
1474 return ERR_PTR(-ENOENT);
1475 addr = (void *)addr - offset;
1476
1477 /*
1478 * Then ask the architecture to re-combine them, taking care of
1479 * magical function entry details while telling us if this was indeed
1480 * at the start of the function.
1481 */
1482 addr = arch_adjust_kprobe_addr((unsigned long)addr, offset, on_func_entry);
bc81d48d
MH
1483 if (addr)
1484 return addr;
1485
1486invalid:
1487 return ERR_PTR(-EINVAL);
b2a5cd69
MH
1488}
1489
1d585e70
NR
1490static kprobe_opcode_t *kprobe_addr(struct kprobe *p)
1491{
cc66bb91
PZ
1492 bool on_func_entry;
1493 return _kprobe_addr(p->addr, p->symbol_name, p->offset, &on_func_entry);
1d585e70
NR
1494}
1495
223a76b2
MH
1496/*
1497 * Check the 'p' is valid and return the aggregator kprobe
1498 * at the same address.
1499 */
55479f64 1500static struct kprobe *__get_valid_kprobe(struct kprobe *p)
1f0ab409 1501{
6d8e40a8 1502 struct kprobe *ap, *list_p;
1f0ab409 1503
7e6a71d8
MH
1504 lockdep_assert_held(&kprobe_mutex);
1505
6d8e40a8
MH
1506 ap = get_kprobe(p->addr);
1507 if (unlikely(!ap))
1f0ab409
AM
1508 return NULL;
1509
6d8e40a8 1510 if (p != ap) {
7e6a71d8 1511 list_for_each_entry(list_p, &ap->list, list)
1f0ab409
AM
1512 if (list_p == p)
1513 /* kprobe p is a valid probe */
1514 goto valid;
1515 return NULL;
1516 }
1517valid:
6d8e40a8 1518 return ap;
1f0ab409
AM
1519}
1520
33b1d146
MH
1521/*
1522 * Warn and return error if the kprobe is being re-registered since
1523 * there must be a software bug.
1524 */
1525static inline int warn_kprobe_rereg(struct kprobe *p)
1f0ab409
AM
1526{
1527 int ret = 0;
1f0ab409
AM
1528
1529 mutex_lock(&kprobe_mutex);
33b1d146 1530 if (WARN_ON_ONCE(__get_valid_kprobe(p)))
1f0ab409
AM
1531 ret = -EINVAL;
1532 mutex_unlock(&kprobe_mutex);
6d8e40a8 1533
1f0ab409
AM
1534 return ret;
1535}
1536
4402deae 1537static int check_ftrace_location(struct kprobe *p)
1da177e4 1538{
aebfd125 1539 unsigned long addr = (unsigned long)p->addr;
ae6aa16f 1540
aebfd125 1541 if (ftrace_location(addr) == addr) {
e7dbfe34 1542#ifdef CONFIG_KPROBES_ON_FTRACE
ae6aa16f 1543 p->flags |= KPROBE_FLAG_FTRACE;
e7dbfe34 1544#else /* !CONFIG_KPROBES_ON_FTRACE */
ae6aa16f
MH
1545 return -EINVAL;
1546#endif
1547 }
f7f242ff
HC
1548 return 0;
1549}
1550
1551static int check_kprobe_address_safe(struct kprobe *p,
1552 struct module **probed_mod)
1553{
1554 int ret;
1f0ab409 1555
4402deae 1556 ret = check_ftrace_location(p);
f7f242ff
HC
1557 if (ret)
1558 return ret;
91bad2f8 1559 jump_label_lock();
de31c3ca 1560 preempt_disable();
f7fa6ef0
MH
1561
1562 /* Ensure it is not in reserved area nor out of text */
28f6c37a
CZ
1563 if (!(core_kernel_text((unsigned long) p->addr) ||
1564 is_module_text_address((unsigned long) p->addr)) ||
376e2424 1565 within_kprobe_blacklist((unsigned long) p->addr) ||
e336b402 1566 jump_label_text_reserved(p->addr, p->addr) ||
fa68bd09 1567 static_call_text_reserved(p->addr, p->addr) ||
e336b402 1568 find_bug((unsigned long)p->addr)) {
f986a499 1569 ret = -EINVAL;
f7fa6ef0 1570 goto out;
f986a499 1571 }
b3e55c72 1572
223a76b2 1573 /* Check if 'p' is probing a module. */
f7fa6ef0
MH
1574 *probed_mod = __module_text_address((unsigned long) p->addr);
1575 if (*probed_mod) {
6f716acd 1576 /*
e8386a0c
MH
1577 * We must hold a refcount of the probed module while updating
1578 * its code to prohibit unexpected unloading.
df019b1d 1579 */
f7fa6ef0
MH
1580 if (unlikely(!try_module_get(*probed_mod))) {
1581 ret = -ENOENT;
1582 goto out;
1583 }
de31c3ca 1584
f24659d9 1585 /*
223a76b2 1586 * If the module freed '.init.text', we couldn't insert
f24659d9
MH
1587 * kprobes in there.
1588 */
f7fa6ef0
MH
1589 if (within_module_init((unsigned long)p->addr, *probed_mod) &&
1590 (*probed_mod)->state != MODULE_STATE_COMING) {
1591 module_put(*probed_mod);
1592 *probed_mod = NULL;
1593 ret = -ENOENT;
f24659d9 1594 }
df019b1d 1595 }
f7fa6ef0 1596out:
a189d035 1597 preempt_enable();
de31c3ca 1598 jump_label_unlock();
1da177e4 1599
f7fa6ef0
MH
1600 return ret;
1601}
1602
55479f64 1603int register_kprobe(struct kprobe *p)
f7fa6ef0
MH
1604{
1605 int ret;
1606 struct kprobe *old_p;
1607 struct module *probed_mod;
1608 kprobe_opcode_t *addr;
1609
1610 /* Adjust probe address from symbol */
1611 addr = kprobe_addr(p);
1612 if (IS_ERR(addr))
1613 return PTR_ERR(addr);
1614 p->addr = addr;
1615
33b1d146 1616 ret = warn_kprobe_rereg(p);
f7fa6ef0
MH
1617 if (ret)
1618 return ret;
1619
1620 /* User can pass only KPROBE_FLAG_DISABLED to register_kprobe */
1621 p->flags &= KPROBE_FLAG_DISABLED;
3516a460 1622 p->nmissed = 0;
9861668f 1623 INIT_LIST_HEAD(&p->list);
afd66255 1624
f7fa6ef0
MH
1625 ret = check_kprobe_address_safe(p, &probed_mod);
1626 if (ret)
1627 return ret;
1628
1629 mutex_lock(&kprobe_mutex);
afd66255 1630
64f562c6
AM
1631 old_p = get_kprobe(p->addr);
1632 if (old_p) {
223a76b2 1633 /* Since this may unoptimize 'old_p', locking 'text_mutex'. */
64f562c6 1634 ret = register_aggr_kprobe(old_p, p);
1da177e4
LT
1635 goto out;
1636 }
1da177e4 1637
2d1e38f5
TG
1638 cpus_read_lock();
1639 /* Prevent text modification */
1640 mutex_lock(&text_mutex);
ae6aa16f 1641 ret = prepare_kprobe(p);
25764288 1642 mutex_unlock(&text_mutex);
2d1e38f5 1643 cpus_read_unlock();
6f716acd 1644 if (ret)
afd66255 1645 goto out;
49a2a1b8 1646
64f562c6 1647 INIT_HLIST_NODE(&p->hlist);
3516a460 1648 hlist_add_head_rcu(&p->hlist,
1da177e4
LT
1649 &kprobe_table[hash_ptr(p->addr, KPROBE_HASH_BITS)]);
1650
12310e34
JY
1651 if (!kprobes_all_disarmed && !kprobe_disabled(p)) {
1652 ret = arm_kprobe(p);
1653 if (ret) {
1654 hlist_del_rcu(&p->hlist);
ae8b7ce7 1655 synchronize_rcu();
12310e34
JY
1656 goto out;
1657 }
1658 }
afd66255
MH
1659
1660 /* Try to optimize kprobe */
1661 try_to_optimize_kprobe(p);
1da177e4 1662out:
7a7d1cf9 1663 mutex_unlock(&kprobe_mutex);
49a2a1b8 1664
e8386a0c 1665 if (probed_mod)
df019b1d 1666 module_put(probed_mod);
e8386a0c 1667
1da177e4
LT
1668 return ret;
1669}
99081ab5 1670EXPORT_SYMBOL_GPL(register_kprobe);
1da177e4 1671
223a76b2 1672/* Check if all probes on the 'ap' are disabled. */
29e8077a 1673static bool aggr_kprobe_disabled(struct kprobe *ap)
6f0f1dd7
MH
1674{
1675 struct kprobe *kp;
1676
7e6a71d8
MH
1677 lockdep_assert_held(&kprobe_mutex);
1678
1679 list_for_each_entry(kp, &ap->list, list)
6f0f1dd7
MH
1680 if (!kprobe_disabled(kp))
1681 /*
223a76b2
MH
1682 * Since there is an active probe on the list,
1683 * we can't disable this 'ap'.
6f0f1dd7 1684 */
29e8077a 1685 return false;
6f0f1dd7 1686
29e8077a 1687 return true;
6f0f1dd7
MH
1688}
1689
55479f64 1690static struct kprobe *__disable_kprobe(struct kprobe *p)
6f0f1dd7
MH
1691{
1692 struct kprobe *orig_p;
297f9233 1693 int ret;
6f0f1dd7 1694
57d4e317
MH
1695 lockdep_assert_held(&kprobe_mutex);
1696
6f0f1dd7
MH
1697 /* Get an original kprobe for return */
1698 orig_p = __get_valid_kprobe(p);
1699 if (unlikely(orig_p == NULL))
297f9233 1700 return ERR_PTR(-EINVAL);
6f0f1dd7
MH
1701
1702 if (!kprobe_disabled(p)) {
1703 /* Disable probe if it is a child probe */
1704 if (p != orig_p)
1705 p->flags |= KPROBE_FLAG_DISABLED;
1706
1707 /* Try to disarm and disable this/parent probe */
1708 if (p == orig_p || aggr_kprobe_disabled(orig_p)) {
69d54b91 1709 /*
223a76b2 1710 * If 'kprobes_all_disarmed' is set, 'orig_p'
69d54b91
WN
1711 * should have already been disarmed, so
1712 * skip unneed disarming process.
1713 */
297f9233
JY
1714 if (!kprobes_all_disarmed) {
1715 ret = disarm_kprobe(orig_p, true);
1716 if (ret) {
1717 p->flags &= ~KPROBE_FLAG_DISABLED;
1718 return ERR_PTR(ret);
1719 }
1720 }
6f0f1dd7
MH
1721 orig_p->flags |= KPROBE_FLAG_DISABLED;
1722 }
1723 }
1724
1725 return orig_p;
1726}
1727
de5bd88d
MH
1728/*
1729 * Unregister a kprobe without a scheduler synchronization.
1730 */
55479f64 1731static int __unregister_kprobe_top(struct kprobe *p)
de5bd88d 1732{
6d8e40a8 1733 struct kprobe *ap, *list_p;
de5bd88d 1734
6f0f1dd7
MH
1735 /* Disable kprobe. This will disarm it if needed. */
1736 ap = __disable_kprobe(p);
297f9233
JY
1737 if (IS_ERR(ap))
1738 return PTR_ERR(ap);
de5bd88d 1739
6f0f1dd7 1740 if (ap == p)
bf8f6e5b 1741 /*
6f0f1dd7
MH
1742 * This probe is an independent(and non-optimized) kprobe
1743 * (not an aggrprobe). Remove from the hash list.
bf8f6e5b 1744 */
6f0f1dd7
MH
1745 goto disarmed;
1746
1747 /* Following process expects this probe is an aggrprobe */
1748 WARN_ON(!kprobe_aggrprobe(ap));
1749
6274de49
MH
1750 if (list_is_singular(&ap->list) && kprobe_disarmed(ap))
1751 /*
1752 * !disarmed could be happen if the probe is under delayed
1753 * unoptimizing.
1754 */
6f0f1dd7
MH
1755 goto disarmed;
1756 else {
1757 /* If disabling probe has special handlers, update aggrprobe */
e8386a0c 1758 if (p->post_handler && !kprobe_gone(p)) {
7e6a71d8 1759 list_for_each_entry(list_p, &ap->list, list) {
9861668f
MH
1760 if ((list_p != p) && (list_p->post_handler))
1761 goto noclean;
1762 }
6d8e40a8 1763 ap->post_handler = NULL;
9861668f
MH
1764 }
1765noclean:
6f0f1dd7
MH
1766 /*
1767 * Remove from the aggrprobe: this path will do nothing in
1768 * __unregister_kprobe_bottom().
1769 */
49a2a1b8 1770 list_del_rcu(&p->list);
6f0f1dd7
MH
1771 if (!kprobe_disabled(ap) && !kprobes_all_disarmed)
1772 /*
1773 * Try to optimize this probe again, because post
1774 * handler may have been changed.
1775 */
1776 optimize_kprobe(ap);
49a2a1b8 1777 }
9861668f 1778 return 0;
6f0f1dd7
MH
1779
1780disarmed:
1781 hlist_del_rcu(&ap->hlist);
1782 return 0;
9861668f 1783}
3516a460 1784
55479f64 1785static void __unregister_kprobe_bottom(struct kprobe *p)
9861668f 1786{
6d8e40a8 1787 struct kprobe *ap;
b3e55c72 1788
e8386a0c 1789 if (list_empty(&p->list))
6274de49 1790 /* This is an independent kprobe */
0498b635 1791 arch_remove_kprobe(p);
e8386a0c 1792 else if (list_is_singular(&p->list)) {
6274de49 1793 /* This is the last child of an aggrprobe */
6d8e40a8 1794 ap = list_entry(p->list.next, struct kprobe, list);
e8386a0c 1795 list_del(&p->list);
6d8e40a8 1796 free_aggr_kprobe(ap);
9861668f 1797 }
6274de49 1798 /* Otherwise, do nothing. */
9861668f
MH
1799}
1800
55479f64 1801int register_kprobes(struct kprobe **kps, int num)
9861668f
MH
1802{
1803 int i, ret = 0;
1804
1805 if (num <= 0)
1806 return -EINVAL;
1807 for (i = 0; i < num; i++) {
49ad2fd7 1808 ret = register_kprobe(kps[i]);
67dddaad
MH
1809 if (ret < 0) {
1810 if (i > 0)
1811 unregister_kprobes(kps, i);
9861668f 1812 break;
36721656 1813 }
49a2a1b8 1814 }
9861668f
MH
1815 return ret;
1816}
99081ab5 1817EXPORT_SYMBOL_GPL(register_kprobes);
9861668f 1818
55479f64 1819void unregister_kprobe(struct kprobe *p)
9861668f
MH
1820{
1821 unregister_kprobes(&p, 1);
1822}
99081ab5 1823EXPORT_SYMBOL_GPL(unregister_kprobe);
9861668f 1824
55479f64 1825void unregister_kprobes(struct kprobe **kps, int num)
9861668f
MH
1826{
1827 int i;
1828
1829 if (num <= 0)
1830 return;
1831 mutex_lock(&kprobe_mutex);
1832 for (i = 0; i < num; i++)
1833 if (__unregister_kprobe_top(kps[i]) < 0)
1834 kps[i]->addr = NULL;
1835 mutex_unlock(&kprobe_mutex);
1836
ae8b7ce7 1837 synchronize_rcu();
9861668f
MH
1838 for (i = 0; i < num; i++)
1839 if (kps[i]->addr)
1840 __unregister_kprobe_bottom(kps[i]);
1da177e4 1841}
99081ab5 1842EXPORT_SYMBOL_GPL(unregister_kprobes);
1da177e4 1843
5f6bee34
NR
1844int __weak kprobe_exceptions_notify(struct notifier_block *self,
1845 unsigned long val, void *data)
fc62d020
NR
1846{
1847 return NOTIFY_DONE;
1848}
5f6bee34 1849NOKPROBE_SYMBOL(kprobe_exceptions_notify);
fc62d020 1850
1da177e4 1851static struct notifier_block kprobe_exceptions_nb = {
3d5631e0
AK
1852 .notifier_call = kprobe_exceptions_notify,
1853 .priority = 0x7fffffff /* we need to be notified first */
1854};
1855
9edddaa2 1856#ifdef CONFIG_KRETPROBES
66ada2cc 1857
73f9b911 1858#if !defined(CONFIG_KRETPROBE_ON_RETHOOK)
43994049
MH
1859static void free_rp_inst_rcu(struct rcu_head *head)
1860{
1861 struct kretprobe_instance *ri = container_of(head, struct kretprobe_instance, rcu);
1862
1863 if (refcount_dec_and_test(&ri->rph->ref))
1864 kfree(ri->rph);
1865 kfree(ri);
1866}
1867NOKPROBE_SYMBOL(free_rp_inst_rcu);
1868
1869static void recycle_rp_inst(struct kretprobe_instance *ri)
1870{
1871 struct kretprobe *rp = get_kretprobe(ri);
1872
1873 if (likely(rp))
1874 freelist_add(&ri->freelist, &rp->freelist);
1875 else
1876 call_rcu(&ri->rcu, free_rp_inst_rcu);
1877}
1878NOKPROBE_SYMBOL(recycle_rp_inst);
1879
1880/*
1881 * This function is called from delayed_put_task_struct() when a task is
1882 * dead and cleaned up to recycle any kretprobe instances associated with
1883 * this task. These left over instances represent probed functions that
1884 * have been called but will never return.
1885 */
1886void kprobe_flush_task(struct task_struct *tk)
1887{
1888 struct kretprobe_instance *ri;
1889 struct llist_node *node;
1890
1891 /* Early boot, not yet initialized. */
1892 if (unlikely(!kprobes_initialized))
1893 return;
1894
1895 kprobe_busy_begin();
1896
1897 node = __llist_del_all(&tk->kretprobe_instances);
1898 while (node) {
1899 ri = container_of(node, struct kretprobe_instance, llist);
1900 node = node->next;
1901
1902 recycle_rp_inst(ri);
1903 }
1904
1905 kprobe_busy_end();
1906}
1907NOKPROBE_SYMBOL(kprobe_flush_task);
1908
1909static inline void free_rp_inst(struct kretprobe *rp)
1910{
1911 struct kretprobe_instance *ri;
1912 struct freelist_node *node;
1913 int count = 0;
1914
1915 node = rp->freelist.head;
1916 while (node) {
1917 ri = container_of(node, struct kretprobe_instance, freelist);
1918 node = node->next;
1919
1920 kfree(ri);
1921 count++;
1922 }
1923
1924 if (refcount_sub_and_test(count, &rp->rph->ref)) {
1925 kfree(rp->rph);
1926 rp->rph = NULL;
1927 }
1928}
1929
03bac0df
MH
1930/* This assumes the 'tsk' is the current task or the is not running. */
1931static kprobe_opcode_t *__kretprobe_find_ret_addr(struct task_struct *tsk,
1932 struct llist_node **cur)
3d7e3382 1933{
d741bf41 1934 struct kretprobe_instance *ri = NULL;
03bac0df
MH
1935 struct llist_node *node = *cur;
1936
1937 if (!node)
1938 node = tsk->kretprobe_instances.first;
1939 else
1940 node = node->next;
66ada2cc 1941
d741bf41
PZ
1942 while (node) {
1943 ri = container_of(node, struct kretprobe_instance, llist);
96fed8ac 1944 if (ri->ret_addr != kretprobe_trampoline_addr()) {
03bac0df
MH
1945 *cur = node;
1946 return ri->ret_addr;
d741bf41 1947 }
d741bf41 1948 node = node->next;
66ada2cc 1949 }
03bac0df 1950 return NULL;
3d7e3382 1951}
03bac0df 1952NOKPROBE_SYMBOL(__kretprobe_find_ret_addr);
1da177e4 1953
03bac0df
MH
1954/**
1955 * kretprobe_find_ret_addr -- Find correct return address modified by kretprobe
1956 * @tsk: Target task
1957 * @fp: A frame pointer
1958 * @cur: a storage of the loop cursor llist_node pointer for next call
1959 *
1960 * Find the correct return address modified by a kretprobe on @tsk in unsigned
1961 * long type. If it finds the return address, this returns that address value,
1962 * or this returns 0.
1963 * The @tsk must be 'current' or a task which is not running. @fp is a hint
1964 * to get the currect return address - which is compared with the
1965 * kretprobe_instance::fp field. The @cur is a loop cursor for searching the
1966 * kretprobe return addresses on the @tsk. The '*@cur' should be NULL at the
1967 * first call, but '@cur' itself must NOT NULL.
1968 */
1969unsigned long kretprobe_find_ret_addr(struct task_struct *tsk, void *fp,
1970 struct llist_node **cur)
1971{
1972 struct kretprobe_instance *ri = NULL;
1973 kprobe_opcode_t *ret;
1974
1975 if (WARN_ON_ONCE(!cur))
1976 return 0;
66ada2cc 1977
03bac0df
MH
1978 do {
1979 ret = __kretprobe_find_ret_addr(tsk, cur);
1980 if (!ret)
1981 break;
1982 ri = container_of(*cur, struct kretprobe_instance, llist);
1983 } while (ri->fp != fp);
1984
1985 return (unsigned long)ret;
1986}
1987NOKPROBE_SYMBOL(kretprobe_find_ret_addr);
1988
bf094cff
MH
1989void __weak arch_kretprobe_fixup_return(struct pt_regs *regs,
1990 kprobe_opcode_t *correct_ret_addr)
1991{
1992 /*
1993 * Do nothing by default. Please fill this to update the fake return
1994 * address on the stack with the correct one on each arch if possible.
1995 */
1996}
66ada2cc
MH
1997
1998unsigned long __kretprobe_trampoline_handler(struct pt_regs *regs,
66ada2cc
MH
1999 void *frame_pointer)
2000{
66ada2cc 2001 kprobe_opcode_t *correct_ret_addr = NULL;
d741bf41 2002 struct kretprobe_instance *ri = NULL;
03bac0df 2003 struct llist_node *first, *node = NULL;
d741bf41 2004 struct kretprobe *rp;
66ada2cc 2005
03bac0df
MH
2006 /* Find correct address and all nodes for this frame. */
2007 correct_ret_addr = __kretprobe_find_ret_addr(current, &node);
2008 if (!correct_ret_addr) {
2009 pr_err("kretprobe: Return address not found, not execute handler. Maybe there is a bug in the kernel.\n");
2010 BUG_ON(1);
66ada2cc
MH
2011 }
2012
df91c5bc
MH
2013 /*
2014 * Set the return address as the instruction pointer, because if the
2015 * user handler calls stack_trace_save_regs() with this 'regs',
2016 * the stack trace will start from the instruction pointer.
2017 */
2018 instruction_pointer_set(regs, (unsigned long)correct_ret_addr);
66ada2cc 2019
03bac0df
MH
2020 /* Run the user handler of the nodes. */
2021 first = current->kretprobe_instances.first;
d741bf41
PZ
2022 while (first) {
2023 ri = container_of(first, struct kretprobe_instance, llist);
03bac0df
MH
2024
2025 if (WARN_ON_ONCE(ri->fp != frame_pointer))
2026 break;
66ada2cc 2027
d741bf41
PZ
2028 rp = get_kretprobe(ri);
2029 if (rp && rp->handler) {
66ada2cc
MH
2030 struct kprobe *prev = kprobe_running();
2031
d741bf41 2032 __this_cpu_write(current_kprobe, &rp->kp);
66ada2cc 2033 ri->ret_addr = correct_ret_addr;
d741bf41 2034 rp->handler(ri, regs);
66ada2cc
MH
2035 __this_cpu_write(current_kprobe, prev);
2036 }
03bac0df
MH
2037 if (first == node)
2038 break;
2039
2040 first = first->next;
2041 }
2042
bf094cff
MH
2043 arch_kretprobe_fixup_return(regs, correct_ret_addr);
2044
03bac0df
MH
2045 /* Unlink all nodes for this frame. */
2046 first = current->kretprobe_instances.first;
2047 current->kretprobe_instances.first = node->next;
2048 node->next = NULL;
2049
2050 /* Recycle free instances. */
2051 while (first) {
2052 ri = container_of(first, struct kretprobe_instance, llist);
2053 first = first->next;
66ada2cc 2054
b3388178 2055 recycle_rp_inst(ri);
66ada2cc
MH
2056 }
2057
66ada2cc
MH
2058 return (unsigned long)correct_ret_addr;
2059}
2060NOKPROBE_SYMBOL(__kretprobe_trampoline_handler)
2061
e65cefe8
AB
2062/*
2063 * This kprobe pre_handler is registered with every kretprobe. When probe
2064 * hits it will set up the return probe.
2065 */
820aede0 2066static int pre_handler_kretprobe(struct kprobe *p, struct pt_regs *regs)
e65cefe8
AB
2067{
2068 struct kretprobe *rp = container_of(p, struct kretprobe, kp);
ef53d9c5 2069 struct kretprobe_instance *ri;
6e426e0f 2070 struct freelist_node *fn;
e65cefe8 2071
6e426e0f
PZ
2072 fn = freelist_try_get(&rp->freelist);
2073 if (!fn) {
2074 rp->nmissed++;
2075 return 0;
2076 }
4c4308cb 2077
6e426e0f 2078 ri = container_of(fn, struct kretprobe_instance, freelist);
d741bf41 2079
6e426e0f
PZ
2080 if (rp->entry_handler && rp->entry_handler(ri, regs)) {
2081 freelist_add(&ri->freelist, &rp->freelist);
2082 return 0;
ef53d9c5 2083 }
6e426e0f
PZ
2084
2085 arch_prepare_kretprobe(ri, regs);
2086
2087 __llist_add(&ri->llist, &current->kretprobe_instances);
2088
e65cefe8
AB
2089 return 0;
2090}
820aede0 2091NOKPROBE_SYMBOL(pre_handler_kretprobe);
73f9b911
MH
2092#else /* CONFIG_KRETPROBE_ON_RETHOOK */
2093/*
2094 * This kprobe pre_handler is registered with every kretprobe. When probe
2095 * hits it will set up the return probe.
2096 */
2097static int pre_handler_kretprobe(struct kprobe *p, struct pt_regs *regs)
2098{
2099 struct kretprobe *rp = container_of(p, struct kretprobe, kp);
2100 struct kretprobe_instance *ri;
2101 struct rethook_node *rhn;
2102
2103 rhn = rethook_try_get(rp->rh);
2104 if (!rhn) {
2105 rp->nmissed++;
2106 return 0;
2107 }
2108
2109 ri = container_of(rhn, struct kretprobe_instance, node);
2110
2111 if (rp->entry_handler && rp->entry_handler(ri, regs))
2112 rethook_recycle(rhn);
2113 else
2114 rethook_hook(rhn, regs, kprobe_ftrace(p));
2115
2116 return 0;
2117}
2118NOKPROBE_SYMBOL(pre_handler_kretprobe);
2119
2120static void kretprobe_rethook_handler(struct rethook_node *rh, void *data,
2121 struct pt_regs *regs)
2122{
2123 struct kretprobe *rp = (struct kretprobe *)data;
2124 struct kretprobe_instance *ri;
2125 struct kprobe_ctlblk *kcb;
2126
2127 /* The data must NOT be null. This means rethook data structure is broken. */
1d661ed5 2128 if (WARN_ON_ONCE(!data) || !rp->handler)
73f9b911
MH
2129 return;
2130
2131 __this_cpu_write(current_kprobe, &rp->kp);
2132 kcb = get_kprobe_ctlblk();
2133 kcb->kprobe_status = KPROBE_HIT_ACTIVE;
2134
2135 ri = container_of(rh, struct kretprobe_instance, node);
2136 rp->handler(ri, regs);
2137
2138 __this_cpu_write(current_kprobe, NULL);
2139}
2140NOKPROBE_SYMBOL(kretprobe_rethook_handler);
2141
2142#endif /* !CONFIG_KRETPROBE_ON_RETHOOK */
e65cefe8 2143
97c753e6
MH
2144/**
2145 * kprobe_on_func_entry() -- check whether given address is function entry
2146 * @addr: Target address
2147 * @sym: Target symbol name
2148 * @offset: The offset from the symbol or the address
2149 *
2150 * This checks whether the given @addr+@offset or @sym+@offset is on the
2151 * function entry address or not.
2152 * This returns 0 if it is the function entry, or -EINVAL if it is not.
2153 * And also it returns -ENOENT if it fails the symbol or address lookup.
2154 * Caller must pass @addr or @sym (either one must be NULL), or this
2155 * returns -EINVAL.
2156 */
2157int kprobe_on_func_entry(kprobe_opcode_t *addr, const char *sym, unsigned long offset)
1d585e70 2158{
cc66bb91
PZ
2159 bool on_func_entry;
2160 kprobe_opcode_t *kp_addr = _kprobe_addr(addr, sym, offset, &on_func_entry);
1d585e70
NR
2161
2162 if (IS_ERR(kp_addr))
97c753e6 2163 return PTR_ERR(kp_addr);
1d585e70 2164
cc66bb91 2165 if (!on_func_entry)
97c753e6
MH
2166 return -EINVAL;
2167
2168 return 0;
1d585e70
NR
2169}
2170
55479f64 2171int register_kretprobe(struct kretprobe *rp)
b94cce92 2172{
97c753e6 2173 int ret;
b94cce92
HN
2174 struct kretprobe_instance *inst;
2175 int i;
b2a5cd69 2176 void *addr;
90ec5e89 2177
97c753e6
MH
2178 ret = kprobe_on_func_entry(rp->kp.addr, rp->kp.symbol_name, rp->kp.offset);
2179 if (ret)
2180 return ret;
f438d914 2181
223a76b2 2182 /* If only 'rp->kp.addr' is specified, check reregistering kprobes */
33b1d146 2183 if (rp->kp.addr && warn_kprobe_rereg(&rp->kp))
0188b878
WS
2184 return -EINVAL;
2185
f438d914 2186 if (kretprobe_blacklist_size) {
b2a5cd69 2187 addr = kprobe_addr(&rp->kp);
bc81d48d
MH
2188 if (IS_ERR(addr))
2189 return PTR_ERR(addr);
f438d914
MH
2190
2191 for (i = 0; kretprobe_blacklist[i].name != NULL; i++) {
2192 if (kretprobe_blacklist[i].addr == addr)
2193 return -EINVAL;
2194 }
2195 }
b94cce92 2196
6bbfa441
MH
2197 if (rp->data_size > KRETPROBE_MAX_DATA_SIZE)
2198 return -E2BIG;
2199
b94cce92 2200 rp->kp.pre_handler = pre_handler_kretprobe;
7522a842 2201 rp->kp.post_handler = NULL;
b94cce92
HN
2202
2203 /* Pre-allocate memory for max kretprobe instances */
2204 if (rp->maxactive <= 0) {
92616606 2205#ifdef CONFIG_PREEMPTION
c2ef6661 2206 rp->maxactive = max_t(unsigned int, 10, 2*num_possible_cpus());
b94cce92 2207#else
4dae560f 2208 rp->maxactive = num_possible_cpus();
b94cce92
HN
2209#endif
2210 }
73f9b911
MH
2211#ifdef CONFIG_KRETPROBE_ON_RETHOOK
2212 rp->rh = rethook_alloc((void *)rp, kretprobe_rethook_handler);
2213 if (!rp->rh)
2214 return -ENOMEM;
2215
2216 for (i = 0; i < rp->maxactive; i++) {
2217 inst = kzalloc(sizeof(struct kretprobe_instance) +
2218 rp->data_size, GFP_KERNEL);
2219 if (inst == NULL) {
2220 rethook_free(rp->rh);
2221 rp->rh = NULL;
2222 return -ENOMEM;
2223 }
2224 rethook_add_node(rp->rh, &inst->node);
2225 }
2226 rp->nmissed = 0;
2227 /* Establish function entry probe point */
2228 ret = register_kprobe(&rp->kp);
2229 if (ret != 0) {
2230 rethook_free(rp->rh);
2231 rp->rh = NULL;
2232 }
2233#else /* !CONFIG_KRETPROBE_ON_RETHOOK */
6e426e0f 2234 rp->freelist.head = NULL;
d741bf41
PZ
2235 rp->rph = kzalloc(sizeof(struct kretprobe_holder), GFP_KERNEL);
2236 if (!rp->rph)
2237 return -ENOMEM;
2238
2239 rp->rph->rp = rp;
b94cce92 2240 for (i = 0; i < rp->maxactive; i++) {
d741bf41 2241 inst = kzalloc(sizeof(struct kretprobe_instance) +
f47cd9b5 2242 rp->data_size, GFP_KERNEL);
b94cce92 2243 if (inst == NULL) {
d741bf41 2244 refcount_set(&rp->rph->ref, i);
b94cce92
HN
2245 free_rp_inst(rp);
2246 return -ENOMEM;
2247 }
d741bf41 2248 inst->rph = rp->rph;
6e426e0f 2249 freelist_add(&inst->freelist, &rp->freelist);
b94cce92 2250 }
d741bf41 2251 refcount_set(&rp->rph->ref, i);
b94cce92
HN
2252
2253 rp->nmissed = 0;
2254 /* Establish function entry probe point */
49ad2fd7 2255 ret = register_kprobe(&rp->kp);
4a296e07 2256 if (ret != 0)
b94cce92 2257 free_rp_inst(rp);
73f9b911 2258#endif
b94cce92
HN
2259 return ret;
2260}
99081ab5 2261EXPORT_SYMBOL_GPL(register_kretprobe);
b94cce92 2262
55479f64 2263int register_kretprobes(struct kretprobe **rps, int num)
4a296e07
MH
2264{
2265 int ret = 0, i;
2266
2267 if (num <= 0)
2268 return -EINVAL;
2269 for (i = 0; i < num; i++) {
49ad2fd7 2270 ret = register_kretprobe(rps[i]);
67dddaad
MH
2271 if (ret < 0) {
2272 if (i > 0)
2273 unregister_kretprobes(rps, i);
4a296e07
MH
2274 break;
2275 }
2276 }
2277 return ret;
2278}
99081ab5 2279EXPORT_SYMBOL_GPL(register_kretprobes);
4a296e07 2280
55479f64 2281void unregister_kretprobe(struct kretprobe *rp)
4a296e07
MH
2282{
2283 unregister_kretprobes(&rp, 1);
2284}
99081ab5 2285EXPORT_SYMBOL_GPL(unregister_kretprobe);
4a296e07 2286
55479f64 2287void unregister_kretprobes(struct kretprobe **rps, int num)
4a296e07
MH
2288{
2289 int i;
2290
2291 if (num <= 0)
2292 return;
2293 mutex_lock(&kprobe_mutex);
d741bf41 2294 for (i = 0; i < num; i++) {
4a296e07
MH
2295 if (__unregister_kprobe_top(&rps[i]->kp) < 0)
2296 rps[i]->kp.addr = NULL;
73f9b911
MH
2297#ifdef CONFIG_KRETPROBE_ON_RETHOOK
2298 rethook_free(rps[i]->rh);
2299#else
d741bf41 2300 rps[i]->rph->rp = NULL;
73f9b911 2301#endif
d741bf41 2302 }
4a296e07
MH
2303 mutex_unlock(&kprobe_mutex);
2304
ae8b7ce7 2305 synchronize_rcu();
4a296e07
MH
2306 for (i = 0; i < num; i++) {
2307 if (rps[i]->kp.addr) {
2308 __unregister_kprobe_bottom(&rps[i]->kp);
73f9b911 2309#ifndef CONFIG_KRETPROBE_ON_RETHOOK
d741bf41 2310 free_rp_inst(rps[i]);
73f9b911 2311#endif
4a296e07
MH
2312 }
2313 }
2314}
99081ab5 2315EXPORT_SYMBOL_GPL(unregister_kretprobes);
4a296e07 2316
9edddaa2 2317#else /* CONFIG_KRETPROBES */
55479f64 2318int register_kretprobe(struct kretprobe *rp)
b94cce92 2319{
223a76b2 2320 return -EOPNOTSUPP;
b94cce92 2321}
99081ab5 2322EXPORT_SYMBOL_GPL(register_kretprobe);
b94cce92 2323
55479f64 2324int register_kretprobes(struct kretprobe **rps, int num)
346fd59b 2325{
223a76b2 2326 return -EOPNOTSUPP;
346fd59b 2327}
99081ab5
MH
2328EXPORT_SYMBOL_GPL(register_kretprobes);
2329
55479f64 2330void unregister_kretprobe(struct kretprobe *rp)
b94cce92 2331{
4a296e07 2332}
99081ab5 2333EXPORT_SYMBOL_GPL(unregister_kretprobe);
b94cce92 2334
55479f64 2335void unregister_kretprobes(struct kretprobe **rps, int num)
4a296e07
MH
2336{
2337}
99081ab5 2338EXPORT_SYMBOL_GPL(unregister_kretprobes);
4c4308cb 2339
820aede0 2340static int pre_handler_kretprobe(struct kprobe *p, struct pt_regs *regs)
4a296e07
MH
2341{
2342 return 0;
b94cce92 2343}
820aede0 2344NOKPROBE_SYMBOL(pre_handler_kretprobe);
b94cce92 2345
4a296e07
MH
2346#endif /* CONFIG_KRETPROBES */
2347
e8386a0c 2348/* Set the kprobe gone and remove its instruction buffer. */
55479f64 2349static void kill_kprobe(struct kprobe *p)
e8386a0c
MH
2350{
2351 struct kprobe *kp;
de5bd88d 2352
7e6a71d8
MH
2353 lockdep_assert_held(&kprobe_mutex);
2354
e8386a0c 2355 p->flags |= KPROBE_FLAG_GONE;
afd66255 2356 if (kprobe_aggrprobe(p)) {
e8386a0c
MH
2357 /*
2358 * If this is an aggr_kprobe, we have to list all the
2359 * chained probes and mark them GONE.
2360 */
7e6a71d8 2361 list_for_each_entry(kp, &p->list, list)
e8386a0c
MH
2362 kp->flags |= KPROBE_FLAG_GONE;
2363 p->post_handler = NULL;
afd66255 2364 kill_optimized_kprobe(p);
e8386a0c
MH
2365 }
2366 /*
2367 * Here, we can remove insn_slot safely, because no thread calls
2368 * the original probed function (which will be freed soon) any more.
2369 */
2370 arch_remove_kprobe(p);
0cb2f137
MS
2371
2372 /*
2373 * The module is going away. We should disarm the kprobe which
bcb53209 2374 * is using ftrace, because ftrace framework is still available at
223a76b2 2375 * 'MODULE_STATE_GOING' notification.
0cb2f137 2376 */
bcb53209 2377 if (kprobe_ftrace(p) && !kprobe_disabled(p) && !kprobes_all_disarmed)
0cb2f137 2378 disarm_kprobe_ftrace(p);
e8386a0c
MH
2379}
2380
c0614829 2381/* Disable one kprobe */
55479f64 2382int disable_kprobe(struct kprobe *kp)
c0614829
MH
2383{
2384 int ret = 0;
297f9233 2385 struct kprobe *p;
c0614829
MH
2386
2387 mutex_lock(&kprobe_mutex);
2388
6f0f1dd7 2389 /* Disable this kprobe */
297f9233
JY
2390 p = __disable_kprobe(kp);
2391 if (IS_ERR(p))
2392 ret = PTR_ERR(p);
c0614829 2393
c0614829
MH
2394 mutex_unlock(&kprobe_mutex);
2395 return ret;
2396}
2397EXPORT_SYMBOL_GPL(disable_kprobe);
2398
2399/* Enable one kprobe */
55479f64 2400int enable_kprobe(struct kprobe *kp)
c0614829
MH
2401{
2402 int ret = 0;
2403 struct kprobe *p;
2404
2405 mutex_lock(&kprobe_mutex);
2406
2407 /* Check whether specified probe is valid. */
2408 p = __get_valid_kprobe(kp);
2409 if (unlikely(p == NULL)) {
2410 ret = -EINVAL;
2411 goto out;
2412 }
2413
2414 if (kprobe_gone(kp)) {
2415 /* This kprobe has gone, we couldn't enable it. */
2416 ret = -EINVAL;
2417 goto out;
2418 }
2419
2420 if (p != kp)
2421 kp->flags &= ~KPROBE_FLAG_DISABLED;
2422
2423 if (!kprobes_all_disarmed && kprobe_disabled(p)) {
2424 p->flags &= ~KPROBE_FLAG_DISABLED;
12310e34
JY
2425 ret = arm_kprobe(p);
2426 if (ret)
2427 p->flags |= KPROBE_FLAG_DISABLED;
c0614829
MH
2428 }
2429out:
2430 mutex_unlock(&kprobe_mutex);
2431 return ret;
2432}
2433EXPORT_SYMBOL_GPL(enable_kprobe);
2434
4458515b 2435/* Caller must NOT call this in usual path. This is only for critical case */
820aede0 2436void dump_kprobe(struct kprobe *kp)
24851d24 2437{
9c89bb8e 2438 pr_err("Dump kprobe:\n.symbol_name = %s, .offset = %x, .addr = %pS\n",
4458515b 2439 kp->symbol_name, kp->offset, kp->addr);
24851d24 2440}
820aede0 2441NOKPROBE_SYMBOL(dump_kprobe);
24851d24 2442
fb1a59fa
MH
2443int kprobe_add_ksym_blacklist(unsigned long entry)
2444{
2445 struct kprobe_blacklist_entry *ent;
2446 unsigned long offset = 0, size = 0;
2447
2448 if (!kernel_text_address(entry) ||
2449 !kallsyms_lookup_size_offset(entry, &size, &offset))
2450 return -EINVAL;
2451
2452 ent = kmalloc(sizeof(*ent), GFP_KERNEL);
2453 if (!ent)
2454 return -ENOMEM;
2455 ent->start_addr = entry;
2456 ent->end_addr = entry + size;
2457 INIT_LIST_HEAD(&ent->list);
2458 list_add_tail(&ent->list, &kprobe_blacklist);
2459
2460 return (int)size;
2461}
2462
2463/* Add all symbols in given area into kprobe blacklist */
2464int kprobe_add_area_blacklist(unsigned long start, unsigned long end)
2465{
2466 unsigned long entry;
2467 int ret = 0;
2468
2469 for (entry = start; entry < end; entry += ret) {
2470 ret = kprobe_add_ksym_blacklist(entry);
2471 if (ret < 0)
2472 return ret;
2473 if (ret == 0) /* In case of alias symbol */
2474 ret = 1;
2475 }
2476 return 0;
2477}
2478
1e6769b0
MH
2479/* Remove all symbols in given area from kprobe blacklist */
2480static void kprobe_remove_area_blacklist(unsigned long start, unsigned long end)
2481{
2482 struct kprobe_blacklist_entry *ent, *n;
2483
2484 list_for_each_entry_safe(ent, n, &kprobe_blacklist, list) {
2485 if (ent->start_addr < start || ent->start_addr >= end)
2486 continue;
2487 list_del(&ent->list);
2488 kfree(ent);
2489 }
2490}
2491
16db6264
MH
2492static void kprobe_remove_ksym_blacklist(unsigned long entry)
2493{
2494 kprobe_remove_area_blacklist(entry, entry + 1);
2495}
2496
d002b8bc
AH
2497int __weak arch_kprobe_get_kallsym(unsigned int *symnum, unsigned long *value,
2498 char *type, char *sym)
2499{
2500 return -ERANGE;
2501}
2502
2503int kprobe_get_kallsym(unsigned int symnum, unsigned long *value, char *type,
2504 char *sym)
2505{
2506#ifdef __ARCH_WANT_KPROBES_INSN_SLOT
2507 if (!kprobe_cache_get_kallsym(&kprobe_insn_slots, &symnum, value, type, sym))
2508 return 0;
2509#ifdef CONFIG_OPTPROBES
2510 if (!kprobe_cache_get_kallsym(&kprobe_optinsn_slots, &symnum, value, type, sym))
2511 return 0;
2512#endif
2513#endif
2514 if (!arch_kprobe_get_kallsym(&symnum, value, type, sym))
2515 return 0;
2516 return -ERANGE;
2517}
2518
fb1a59fa
MH
2519int __init __weak arch_populate_kprobe_blacklist(void)
2520{
2521 return 0;
2522}
2523
376e2424
MH
2524/*
2525 * Lookup and populate the kprobe_blacklist.
2526 *
2527 * Unlike the kretprobe blacklist, we'll need to determine
2528 * the range of addresses that belong to the said functions,
2529 * since a kprobe need not necessarily be at the beginning
2530 * of a function.
2531 */
2532static int __init populate_kprobe_blacklist(unsigned long *start,
2533 unsigned long *end)
2534{
fb1a59fa 2535 unsigned long entry;
376e2424 2536 unsigned long *iter;
fb1a59fa 2537 int ret;
376e2424
MH
2538
2539 for (iter = start; iter < end; iter++) {
f2ec8d9a 2540 entry = (unsigned long)dereference_symbol_descriptor((void *)*iter);
fb1a59fa
MH
2541 ret = kprobe_add_ksym_blacklist(entry);
2542 if (ret == -EINVAL)
376e2424 2543 continue;
fb1a59fa
MH
2544 if (ret < 0)
2545 return ret;
376e2424 2546 }
fb1a59fa 2547
223a76b2 2548 /* Symbols in '__kprobes_text' are blacklisted */
fb1a59fa
MH
2549 ret = kprobe_add_area_blacklist((unsigned long)__kprobes_text_start,
2550 (unsigned long)__kprobes_text_end);
66e9b071
TG
2551 if (ret)
2552 return ret;
2553
223a76b2 2554 /* Symbols in 'noinstr' section are blacklisted */
66e9b071
TG
2555 ret = kprobe_add_area_blacklist((unsigned long)__noinstr_text_start,
2556 (unsigned long)__noinstr_text_end);
fb1a59fa
MH
2557
2558 return ret ? : arch_populate_kprobe_blacklist();
376e2424
MH
2559}
2560
1e6769b0
MH
2561static void add_module_kprobe_blacklist(struct module *mod)
2562{
2563 unsigned long start, end;
16db6264
MH
2564 int i;
2565
2566 if (mod->kprobe_blacklist) {
2567 for (i = 0; i < mod->num_kprobe_blacklist; i++)
2568 kprobe_add_ksym_blacklist(mod->kprobe_blacklist[i]);
2569 }
1e6769b0
MH
2570
2571 start = (unsigned long)mod->kprobes_text_start;
2572 if (start) {
2573 end = start + mod->kprobes_text_size;
2574 kprobe_add_area_blacklist(start, end);
2575 }
66e9b071
TG
2576
2577 start = (unsigned long)mod->noinstr_text_start;
2578 if (start) {
2579 end = start + mod->noinstr_text_size;
2580 kprobe_add_area_blacklist(start, end);
2581 }
1e6769b0
MH
2582}
2583
2584static void remove_module_kprobe_blacklist(struct module *mod)
2585{
2586 unsigned long start, end;
16db6264
MH
2587 int i;
2588
2589 if (mod->kprobe_blacklist) {
2590 for (i = 0; i < mod->num_kprobe_blacklist; i++)
2591 kprobe_remove_ksym_blacklist(mod->kprobe_blacklist[i]);
2592 }
1e6769b0
MH
2593
2594 start = (unsigned long)mod->kprobes_text_start;
2595 if (start) {
2596 end = start + mod->kprobes_text_size;
2597 kprobe_remove_area_blacklist(start, end);
2598 }
66e9b071
TG
2599
2600 start = (unsigned long)mod->noinstr_text_start;
2601 if (start) {
2602 end = start + mod->noinstr_text_size;
2603 kprobe_remove_area_blacklist(start, end);
2604 }
1e6769b0
MH
2605}
2606
e8386a0c 2607/* Module notifier call back, checking kprobes on the module */
55479f64
MH
2608static int kprobes_module_callback(struct notifier_block *nb,
2609 unsigned long val, void *data)
e8386a0c
MH
2610{
2611 struct module *mod = data;
2612 struct hlist_head *head;
e8386a0c
MH
2613 struct kprobe *p;
2614 unsigned int i;
f24659d9 2615 int checkcore = (val == MODULE_STATE_GOING);
e8386a0c 2616
1e6769b0
MH
2617 if (val == MODULE_STATE_COMING) {
2618 mutex_lock(&kprobe_mutex);
2619 add_module_kprobe_blacklist(mod);
2620 mutex_unlock(&kprobe_mutex);
2621 }
f24659d9 2622 if (val != MODULE_STATE_GOING && val != MODULE_STATE_LIVE)
e8386a0c
MH
2623 return NOTIFY_DONE;
2624
2625 /*
223a76b2
MH
2626 * When 'MODULE_STATE_GOING' was notified, both of module '.text' and
2627 * '.init.text' sections would be freed. When 'MODULE_STATE_LIVE' was
2628 * notified, only '.init.text' section would be freed. We need to
f24659d9 2629 * disable kprobes which have been inserted in the sections.
e8386a0c
MH
2630 */
2631 mutex_lock(&kprobe_mutex);
2632 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
2633 head = &kprobe_table[i];
7e6a71d8 2634 hlist_for_each_entry(p, head, hlist)
f24659d9
MH
2635 if (within_module_init((unsigned long)p->addr, mod) ||
2636 (checkcore &&
2637 within_module_core((unsigned long)p->addr, mod))) {
e8386a0c
MH
2638 /*
2639 * The vaddr this probe is installed will soon
2640 * be vfreed buy not synced to disk. Hence,
2641 * disarming the breakpoint isn't needed.
545a0281
SRV
2642 *
2643 * Note, this will also move any optimized probes
2644 * that are pending to be removed from their
223a76b2 2645 * corresponding lists to the 'freeing_list' and
545a0281 2646 * will not be touched by the delayed
223a76b2 2647 * kprobe_optimizer() work handler.
e8386a0c
MH
2648 */
2649 kill_kprobe(p);
2650 }
2651 }
1e6769b0
MH
2652 if (val == MODULE_STATE_GOING)
2653 remove_module_kprobe_blacklist(mod);
e8386a0c
MH
2654 mutex_unlock(&kprobe_mutex);
2655 return NOTIFY_DONE;
2656}
2657
2658static struct notifier_block kprobe_module_nb = {
2659 .notifier_call = kprobes_module_callback,
2660 .priority = 0
2661};
2662
82d083ab
MH
2663void kprobe_free_init_mem(void)
2664{
2665 void *start = (void *)(&__init_begin);
2666 void *end = (void *)(&__init_end);
2667 struct hlist_head *head;
2668 struct kprobe *p;
2669 int i;
2670
2671 mutex_lock(&kprobe_mutex);
2672
223a76b2 2673 /* Kill all kprobes on initmem because the target code has been freed. */
82d083ab
MH
2674 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
2675 head = &kprobe_table[i];
2676 hlist_for_each_entry(p, head, hlist) {
2677 if (start <= (void *)p->addr && (void *)p->addr < end)
2678 kill_kprobe(p);
2679 }
2680 }
2681
2682 mutex_unlock(&kprobe_mutex);
2683}
2684
1da177e4
LT
2685static int __init init_kprobes(void)
2686{
2687 int i, err = 0;
2688
2689 /* FIXME allocate the probe table, currently defined statically */
2690 /* initialize all list heads */
d741bf41 2691 for (i = 0; i < KPROBE_TABLE_SIZE; i++)
1da177e4
LT
2692 INIT_HLIST_HEAD(&kprobe_table[i]);
2693
376e2424
MH
2694 err = populate_kprobe_blacklist(__start_kprobe_blacklist,
2695 __stop_kprobe_blacklist);
223a76b2 2696 if (err)
9c89bb8e 2697 pr_err("Failed to populate blacklist (error %d), kprobes not restricted, be careful using them!\n", err);
3d8d996e 2698
f438d914
MH
2699 if (kretprobe_blacklist_size) {
2700 /* lookup the function address from its name */
2701 for (i = 0; kretprobe_blacklist[i].name != NULL; i++) {
49e0b465 2702 kretprobe_blacklist[i].addr =
290e3070 2703 kprobe_lookup_name(kretprobe_blacklist[i].name, 0);
f438d914 2704 if (!kretprobe_blacklist[i].addr)
9c89bb8e 2705 pr_err("Failed to lookup symbol '%s' for kretprobe blacklist. Maybe the target function is removed or renamed.\n",
f438d914
MH
2706 kretprobe_blacklist[i].name);
2707 }
2708 }
2709
e579abeb
MH
2710 /* By default, kprobes are armed */
2711 kprobes_all_disarmed = false;
bf8f6e5b 2712
c85c9a2c 2713#if defined(CONFIG_OPTPROBES) && defined(__ARCH_WANT_KPROBES_INSN_SLOT)
223a76b2 2714 /* Init 'kprobe_optinsn_slots' for allocation */
c85c9a2c
MH
2715 kprobe_optinsn_slots.insn_size = MAX_OPTINSN_SIZE;
2716#endif
2717
6772926b 2718 err = arch_init_kprobes();
802eae7c
RL
2719 if (!err)
2720 err = register_die_notifier(&kprobe_exceptions_nb);
e8386a0c
MH
2721 if (!err)
2722 err = register_module_notifier(&kprobe_module_nb);
2723
ef53d9c5 2724 kprobes_initialized = (err == 0);
a737a3c6 2725 kprobe_sysctls_init();
1da177e4
LT
2726 return err;
2727}
36dadef2 2728early_initcall(init_kprobes);
1da177e4 2729
c85c9a2c
MH
2730#if defined(CONFIG_OPTPROBES)
2731static int __init init_optprobes(void)
2732{
2733 /*
2734 * Enable kprobe optimization - this kicks the optimizer which
2735 * depends on synchronize_rcu_tasks() and ksoftirqd, that is
2736 * not spawned in early initcall. So delay the optimization.
2737 */
2738 optimize_all_kprobes();
2739
2740 return 0;
2741}
2742subsys_initcall(init_optprobes);
2743#endif
2744
346fd59b 2745#ifdef CONFIG_DEBUG_FS
55479f64 2746static void report_probe(struct seq_file *pi, struct kprobe *p,
afd66255 2747 const char *sym, int offset, char *modname, struct kprobe *pp)
346fd59b
SD
2748{
2749 char *kprobe_type;
81365a94 2750 void *addr = p->addr;
346fd59b
SD
2751
2752 if (p->pre_handler == pre_handler_kretprobe)
2753 kprobe_type = "r";
346fd59b
SD
2754 else
2755 kprobe_type = "k";
afd66255 2756
60f7bb66 2757 if (!kallsyms_show_value(pi->file->f_cred))
81365a94
MH
2758 addr = NULL;
2759
346fd59b 2760 if (sym)
81365a94
MH
2761 seq_printf(pi, "%px %s %s+0x%x %s ",
2762 addr, kprobe_type, sym, offset,
afd66255 2763 (modname ? modname : " "));
81365a94
MH
2764 else /* try to use %pS */
2765 seq_printf(pi, "%px %s %pS ",
2766 addr, kprobe_type, p->addr);
afd66255
MH
2767
2768 if (!pp)
2769 pp = p;
ae6aa16f 2770 seq_printf(pi, "%s%s%s%s\n",
afd66255
MH
2771 (kprobe_gone(p) ? "[GONE]" : ""),
2772 ((kprobe_disabled(p) && !kprobe_gone(p)) ? "[DISABLED]" : ""),
ae6aa16f
MH
2773 (kprobe_optimized(pp) ? "[OPTIMIZED]" : ""),
2774 (kprobe_ftrace(pp) ? "[FTRACE]" : ""));
346fd59b
SD
2775}
2776
55479f64 2777static void *kprobe_seq_start(struct seq_file *f, loff_t *pos)
346fd59b
SD
2778{
2779 return (*pos < KPROBE_TABLE_SIZE) ? pos : NULL;
2780}
2781
55479f64 2782static void *kprobe_seq_next(struct seq_file *f, void *v, loff_t *pos)
346fd59b
SD
2783{
2784 (*pos)++;
2785 if (*pos >= KPROBE_TABLE_SIZE)
2786 return NULL;
2787 return pos;
2788}
2789
55479f64 2790static void kprobe_seq_stop(struct seq_file *f, void *v)
346fd59b
SD
2791{
2792 /* Nothing to do */
2793}
2794
55479f64 2795static int show_kprobe_addr(struct seq_file *pi, void *v)
346fd59b
SD
2796{
2797 struct hlist_head *head;
346fd59b
SD
2798 struct kprobe *p, *kp;
2799 const char *sym = NULL;
2800 unsigned int i = *(loff_t *) v;
ffb45122 2801 unsigned long offset = 0;
ab767865 2802 char *modname, namebuf[KSYM_NAME_LEN];
346fd59b
SD
2803
2804 head = &kprobe_table[i];
2805 preempt_disable();
b67bfe0d 2806 hlist_for_each_entry_rcu(p, head, hlist) {
ffb45122 2807 sym = kallsyms_lookup((unsigned long)p->addr, NULL,
346fd59b 2808 &offset, &modname, namebuf);
afd66255 2809 if (kprobe_aggrprobe(p)) {
346fd59b 2810 list_for_each_entry_rcu(kp, &p->list, list)
afd66255 2811 report_probe(pi, kp, sym, offset, modname, p);
346fd59b 2812 } else
afd66255 2813 report_probe(pi, p, sym, offset, modname, NULL);
346fd59b
SD
2814 }
2815 preempt_enable();
2816 return 0;
2817}
2818
eac2cece 2819static const struct seq_operations kprobes_sops = {
346fd59b
SD
2820 .start = kprobe_seq_start,
2821 .next = kprobe_seq_next,
2822 .stop = kprobe_seq_stop,
2823 .show = show_kprobe_addr
2824};
2825
eac2cece 2826DEFINE_SEQ_ATTRIBUTE(kprobes);
346fd59b 2827
63724740
MH
2828/* kprobes/blacklist -- shows which functions can not be probed */
2829static void *kprobe_blacklist_seq_start(struct seq_file *m, loff_t *pos)
2830{
4fdd8887 2831 mutex_lock(&kprobe_mutex);
63724740
MH
2832 return seq_list_start(&kprobe_blacklist, *pos);
2833}
2834
2835static void *kprobe_blacklist_seq_next(struct seq_file *m, void *v, loff_t *pos)
2836{
2837 return seq_list_next(v, &kprobe_blacklist, pos);
2838}
2839
2840static int kprobe_blacklist_seq_show(struct seq_file *m, void *v)
2841{
2842 struct kprobe_blacklist_entry *ent =
2843 list_entry(v, struct kprobe_blacklist_entry, list);
2844
ffb9bd68 2845 /*
223a76b2 2846 * If '/proc/kallsyms' is not showing kernel address, we won't
ffb9bd68
MH
2847 * show them here either.
2848 */
60f7bb66 2849 if (!kallsyms_show_value(m->file->f_cred))
ffb9bd68
MH
2850 seq_printf(m, "0x%px-0x%px\t%ps\n", NULL, NULL,
2851 (void *)ent->start_addr);
2852 else
2853 seq_printf(m, "0x%px-0x%px\t%ps\n", (void *)ent->start_addr,
2854 (void *)ent->end_addr, (void *)ent->start_addr);
63724740
MH
2855 return 0;
2856}
2857
4fdd8887
MH
2858static void kprobe_blacklist_seq_stop(struct seq_file *f, void *v)
2859{
2860 mutex_unlock(&kprobe_mutex);
2861}
2862
eac2cece 2863static const struct seq_operations kprobe_blacklist_sops = {
63724740
MH
2864 .start = kprobe_blacklist_seq_start,
2865 .next = kprobe_blacklist_seq_next,
4fdd8887 2866 .stop = kprobe_blacklist_seq_stop,
63724740
MH
2867 .show = kprobe_blacklist_seq_show,
2868};
eac2cece 2869DEFINE_SEQ_ATTRIBUTE(kprobe_blacklist);
63724740 2870
12310e34 2871static int arm_all_kprobes(void)
bf8f6e5b
AM
2872{
2873 struct hlist_head *head;
bf8f6e5b 2874 struct kprobe *p;
12310e34
JY
2875 unsigned int i, total = 0, errors = 0;
2876 int err, ret = 0;
bf8f6e5b
AM
2877
2878 mutex_lock(&kprobe_mutex);
2879
e579abeb
MH
2880 /* If kprobes are armed, just return */
2881 if (!kprobes_all_disarmed)
bf8f6e5b
AM
2882 goto already_enabled;
2883
977ad481
WN
2884 /*
2885 * optimize_kprobe() called by arm_kprobe() checks
2886 * kprobes_all_disarmed, so set kprobes_all_disarmed before
2887 * arm_kprobe.
2888 */
2889 kprobes_all_disarmed = false;
afd66255 2890 /* Arming kprobes doesn't optimize kprobe itself */
bf8f6e5b
AM
2891 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
2892 head = &kprobe_table[i];
12310e34 2893 /* Arm all kprobes on a best-effort basis */
7e6a71d8 2894 hlist_for_each_entry(p, head, hlist) {
12310e34
JY
2895 if (!kprobe_disabled(p)) {
2896 err = arm_kprobe(p);
2897 if (err) {
2898 errors++;
2899 ret = err;
2900 }
2901 total++;
2902 }
2903 }
bf8f6e5b
AM
2904 }
2905
12310e34 2906 if (errors)
9c89bb8e 2907 pr_warn("Kprobes globally enabled, but failed to enable %d out of %d probes. Please check which kprobes are kept disabled via debugfs.\n",
12310e34
JY
2908 errors, total);
2909 else
2910 pr_info("Kprobes globally enabled\n");
bf8f6e5b
AM
2911
2912already_enabled:
2913 mutex_unlock(&kprobe_mutex);
12310e34 2914 return ret;
bf8f6e5b
AM
2915}
2916
297f9233 2917static int disarm_all_kprobes(void)
bf8f6e5b
AM
2918{
2919 struct hlist_head *head;
bf8f6e5b 2920 struct kprobe *p;
297f9233
JY
2921 unsigned int i, total = 0, errors = 0;
2922 int err, ret = 0;
bf8f6e5b
AM
2923
2924 mutex_lock(&kprobe_mutex);
2925
e579abeb 2926 /* If kprobes are already disarmed, just return */
6274de49
MH
2927 if (kprobes_all_disarmed) {
2928 mutex_unlock(&kprobe_mutex);
297f9233 2929 return 0;
6274de49 2930 }
bf8f6e5b 2931
e579abeb 2932 kprobes_all_disarmed = true;
afd66255 2933
bf8f6e5b
AM
2934 for (i = 0; i < KPROBE_TABLE_SIZE; i++) {
2935 head = &kprobe_table[i];
297f9233 2936 /* Disarm all kprobes on a best-effort basis */
7e6a71d8 2937 hlist_for_each_entry(p, head, hlist) {
297f9233
JY
2938 if (!arch_trampoline_kprobe(p) && !kprobe_disabled(p)) {
2939 err = disarm_kprobe(p, false);
2940 if (err) {
2941 errors++;
2942 ret = err;
2943 }
2944 total++;
2945 }
bf8f6e5b
AM
2946 }
2947 }
297f9233
JY
2948
2949 if (errors)
9c89bb8e 2950 pr_warn("Kprobes globally disabled, but failed to disable %d out of %d probes. Please check which kprobes are kept enabled via debugfs.\n",
297f9233
JY
2951 errors, total);
2952 else
2953 pr_info("Kprobes globally disabled\n");
2954
bf8f6e5b 2955 mutex_unlock(&kprobe_mutex);
bf8f6e5b 2956
6274de49
MH
2957 /* Wait for disarming all kprobes by optimizer */
2958 wait_for_kprobe_optimizer();
297f9233
JY
2959
2960 return ret;
bf8f6e5b
AM
2961}
2962
2963/*
2964 * XXX: The debugfs bool file interface doesn't allow for callbacks
2965 * when the bool state is switched. We can reuse that facility when
2966 * available
2967 */
2968static ssize_t read_enabled_file_bool(struct file *file,
2969 char __user *user_buf, size_t count, loff_t *ppos)
2970{
2971 char buf[3];
2972
e579abeb 2973 if (!kprobes_all_disarmed)
bf8f6e5b
AM
2974 buf[0] = '1';
2975 else
2976 buf[0] = '0';
2977 buf[1] = '\n';
2978 buf[2] = 0x00;
2979 return simple_read_from_buffer(user_buf, count, ppos, buf, 2);
2980}
2981
2982static ssize_t write_enabled_file_bool(struct file *file,
2983 const char __user *user_buf, size_t count, loff_t *ppos)
2984{
5d6de7d7
PA
2985 bool enable;
2986 int ret;
bf8f6e5b 2987
5d6de7d7
PA
2988 ret = kstrtobool_from_user(user_buf, count, &enable);
2989 if (ret)
2990 return ret;
bf8f6e5b 2991
5d6de7d7 2992 ret = enable ? arm_all_kprobes() : disarm_all_kprobes();
12310e34
JY
2993 if (ret)
2994 return ret;
2995
bf8f6e5b
AM
2996 return count;
2997}
2998
828c0950 2999static const struct file_operations fops_kp = {
bf8f6e5b
AM
3000 .read = read_enabled_file_bool,
3001 .write = write_enabled_file_bool,
6038f373 3002 .llseek = default_llseek,
bf8f6e5b
AM
3003};
3004
55479f64 3005static int __init debugfs_kprobe_init(void)
346fd59b 3006{
8c0fd1fa 3007 struct dentry *dir;
346fd59b
SD
3008
3009 dir = debugfs_create_dir("kprobes", NULL);
346fd59b 3010
eac2cece 3011 debugfs_create_file("list", 0400, dir, NULL, &kprobes_fops);
346fd59b 3012
8f7262cd 3013 debugfs_create_file("enabled", 0600, dir, NULL, &fops_kp);
63724740 3014
8c0fd1fa 3015 debugfs_create_file("blacklist", 0400, dir, NULL,
eac2cece 3016 &kprobe_blacklist_fops);
bf8f6e5b 3017
346fd59b
SD
3018 return 0;
3019}
3020
3021late_initcall(debugfs_kprobe_init);
3022#endif /* CONFIG_DEBUG_FS */