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[mirror_ubuntu-zesty-kernel.git] / kernel / ptrace.c
CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/ptrace.c
3 *
4 * (C) Copyright 1999 Linus Torvalds
5 *
6 * Common interfaces for "ptrace()" which we do not want
7 * to continually duplicate across every architecture.
8 */
9
c59ede7b 10#include <linux/capability.h>
9984de1a 11#include <linux/export.h>
1da177e4
LT
12#include <linux/sched.h>
13#include <linux/errno.h>
14#include <linux/mm.h>
15#include <linux/highmem.h>
16#include <linux/pagemap.h>
1da177e4
LT
17#include <linux/ptrace.h>
18#include <linux/security.h>
7ed20e1a 19#include <linux/signal.h>
a27bb332 20#include <linux/uio.h>
a5cb013d 21#include <linux/audit.h>
b488893a 22#include <linux/pid_namespace.h>
f17d30a8 23#include <linux/syscalls.h>
3a709703 24#include <linux/uaccess.h>
2225a122 25#include <linux/regset.h>
bf26c018 26#include <linux/hw_breakpoint.h>
f701e5b7 27#include <linux/cn_proc.h>
84c751bd 28#include <linux/compat.h>
1da177e4 29
84d77d3f
EB
30/*
31 * Access another process' address space via ptrace.
32 * Source/target buffer must be kernel space,
33 * Do not walk the page table directly, use get_user_pages
34 */
35int ptrace_access_vm(struct task_struct *tsk, unsigned long addr,
36 void *buf, int len, unsigned int gup_flags)
37{
38 struct mm_struct *mm;
39 int ret;
40
41 mm = get_task_mm(tsk);
42 if (!mm)
43 return 0;
44
45 if (!tsk->ptrace ||
46 (current != tsk->parent) ||
47 ((get_dumpable(mm) != SUID_DUMP_USER) &&
48 !ptracer_capable(tsk, mm->user_ns))) {
49 mmput(mm);
50 return 0;
51 }
52
53 ret = __access_remote_vm(tsk, mm, addr, buf, len, gup_flags);
54 mmput(mm);
55
56 return ret;
57}
58
bf53de90 59
1da177e4
LT
60/*
61 * ptrace a task: make the debugger its new parent and
62 * move it to the ptrace list.
63 *
64 * Must be called with the tasklist lock write-held.
65 */
36c8b586 66void __ptrace_link(struct task_struct *child, struct task_struct *new_parent)
1da177e4 67{
f470021a
RM
68 BUG_ON(!list_empty(&child->ptrace_entry));
69 list_add(&child->ptrace_entry, &new_parent->ptraced);
1da177e4 70 child->parent = new_parent;
64b875f7
EB
71 rcu_read_lock();
72 child->ptracer_cred = get_cred(__task_cred(new_parent));
73 rcu_read_unlock();
1da177e4 74}
3a709703 75
e3bd058f
TH
76/**
77 * __ptrace_unlink - unlink ptracee and restore its execution state
78 * @child: ptracee to be unlinked
1da177e4 79 *
0e9f0a4a
TH
80 * Remove @child from the ptrace list, move it back to the original parent,
81 * and restore the execution state so that it conforms to the group stop
82 * state.
83 *
84 * Unlinking can happen via two paths - explicit PTRACE_DETACH or ptracer
85 * exiting. For PTRACE_DETACH, unless the ptracee has been killed between
86 * ptrace_check_attach() and here, it's guaranteed to be in TASK_TRACED.
87 * If the ptracer is exiting, the ptracee can be in any state.
88 *
89 * After detach, the ptracee should be in a state which conforms to the
90 * group stop. If the group is stopped or in the process of stopping, the
91 * ptracee should be put into TASK_STOPPED; otherwise, it should be woken
92 * up from TASK_TRACED.
93 *
94 * If the ptracee is in TASK_TRACED and needs to be moved to TASK_STOPPED,
95 * it goes through TRACED -> RUNNING -> STOPPED transition which is similar
96 * to but in the opposite direction of what happens while attaching to a
97 * stopped task. However, in this direction, the intermediate RUNNING
98 * state is not hidden even from the current ptracer and if it immediately
99 * re-attaches and performs a WNOHANG wait(2), it may fail.
e3bd058f
TH
100 *
101 * CONTEXT:
102 * write_lock_irq(tasklist_lock)
1da177e4 103 */
36c8b586 104void __ptrace_unlink(struct task_struct *child)
1da177e4 105{
64b875f7 106 const struct cred *old_cred;
5ecfbae0
ON
107 BUG_ON(!child->ptrace);
108
0a5bf409
AN
109 clear_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
110
f470021a
RM
111 child->parent = child->real_parent;
112 list_del_init(&child->ptrace_entry);
64b875f7
EB
113 old_cred = child->ptracer_cred;
114 child->ptracer_cred = NULL;
115 put_cred(old_cred);
1da177e4 116
1da177e4 117 spin_lock(&child->sighand->siglock);
1333ab03 118 child->ptrace = 0;
73ddff2b
TH
119 /*
120 * Clear all pending traps and TRAPPING. TRAPPING should be
121 * cleared regardless of JOBCTL_STOP_PENDING. Do it explicitly.
122 */
123 task_clear_jobctl_pending(child, JOBCTL_TRAP_MASK);
124 task_clear_jobctl_trapping(child);
125
0e9f0a4a 126 /*
a8f072c1 127 * Reinstate JOBCTL_STOP_PENDING if group stop is in effect and
0e9f0a4a
TH
128 * @child isn't dead.
129 */
130 if (!(child->flags & PF_EXITING) &&
131 (child->signal->flags & SIGNAL_STOP_STOPPED ||
8a88951b 132 child->signal->group_stop_count)) {
a8f072c1 133 child->jobctl |= JOBCTL_STOP_PENDING;
0e9f0a4a 134
8a88951b
ON
135 /*
136 * This is only possible if this thread was cloned by the
137 * traced task running in the stopped group, set the signal
138 * for the future reports.
139 * FIXME: we should change ptrace_init_task() to handle this
140 * case.
141 */
142 if (!(child->jobctl & JOBCTL_STOP_SIGMASK))
143 child->jobctl |= SIGSTOP;
144 }
145
0e9f0a4a
TH
146 /*
147 * If transition to TASK_STOPPED is pending or in TASK_TRACED, kick
148 * @child in the butt. Note that @resume should be used iff @child
149 * is in TASK_TRACED; otherwise, we might unduly disrupt
150 * TASK_KILLABLE sleeps.
151 */
a8f072c1 152 if (child->jobctl & JOBCTL_STOP_PENDING || task_is_traced(child))
910ffdb1 153 ptrace_signal_wake_up(child, true);
0e9f0a4a 154
1da177e4 155 spin_unlock(&child->sighand->siglock);
1da177e4
LT
156}
157
9899d11f
ON
158/* Ensure that nothing can wake it up, even SIGKILL */
159static bool ptrace_freeze_traced(struct task_struct *task)
160{
161 bool ret = false;
162
163 /* Lockless, nobody but us can set this flag */
164 if (task->jobctl & JOBCTL_LISTENING)
165 return ret;
166
167 spin_lock_irq(&task->sighand->siglock);
168 if (task_is_traced(task) && !__fatal_signal_pending(task)) {
169 task->state = __TASK_TRACED;
170 ret = true;
171 }
172 spin_unlock_irq(&task->sighand->siglock);
173
174 return ret;
175}
176
177static void ptrace_unfreeze_traced(struct task_struct *task)
178{
179 if (task->state != __TASK_TRACED)
180 return;
181
182 WARN_ON(!task->ptrace || task->parent != current);
183
184 spin_lock_irq(&task->sighand->siglock);
185 if (__fatal_signal_pending(task))
186 wake_up_state(task, __TASK_TRACED);
187 else
188 task->state = TASK_TRACED;
189 spin_unlock_irq(&task->sighand->siglock);
190}
191
755e276b
TH
192/**
193 * ptrace_check_attach - check whether ptracee is ready for ptrace operation
194 * @child: ptracee to check for
195 * @ignore_state: don't check whether @child is currently %TASK_TRACED
196 *
197 * Check whether @child is being ptraced by %current and ready for further
198 * ptrace operations. If @ignore_state is %false, @child also should be in
199 * %TASK_TRACED state and on return the child is guaranteed to be traced
200 * and not executing. If @ignore_state is %true, @child can be in any
201 * state.
202 *
203 * CONTEXT:
204 * Grabs and releases tasklist_lock and @child->sighand->siglock.
205 *
206 * RETURNS:
207 * 0 on success, -ESRCH if %child is not ready.
1da177e4 208 */
edea0d03 209static int ptrace_check_attach(struct task_struct *child, bool ignore_state)
1da177e4
LT
210{
211 int ret = -ESRCH;
212
213 /*
214 * We take the read lock around doing both checks to close a
215 * possible race where someone else was tracing our child and
216 * detached between these two checks. After this locked check,
217 * we are sure that this is our traced child and that can only
218 * be changed by us so it's not changing right after this.
219 */
220 read_lock(&tasklist_lock);
9899d11f
ON
221 if (child->ptrace && child->parent == current) {
222 WARN_ON(child->state == __TASK_TRACED);
c0c0b649
ON
223 /*
224 * child->sighand can't be NULL, release_task()
225 * does ptrace_unlink() before __exit_signal().
226 */
9899d11f 227 if (ignore_state || ptrace_freeze_traced(child))
321fb561 228 ret = 0;
1da177e4
LT
229 }
230 read_unlock(&tasklist_lock);
231
9899d11f
ON
232 if (!ret && !ignore_state) {
233 if (!wait_task_inactive(child, __TASK_TRACED)) {
234 /*
235 * This can only happen if may_ptrace_stop() fails and
236 * ptrace_stop() changes ->state back to TASK_RUNNING,
237 * so we should not worry about leaking __TASK_TRACED.
238 */
239 WARN_ON(child->state == __TASK_TRACED);
240 ret = -ESRCH;
241 }
242 }
1da177e4 243
1da177e4
LT
244 return ret;
245}
246
69f594a3
EP
247static int ptrace_has_cap(struct user_namespace *ns, unsigned int mode)
248{
249 if (mode & PTRACE_MODE_NOAUDIT)
250 return has_ns_capability_noaudit(current, ns, CAP_SYS_PTRACE);
251 else
252 return has_ns_capability(current, ns, CAP_SYS_PTRACE);
253}
254
9f99798f
TH
255/* Returns 0 on success, -errno on denial. */
256static int __ptrace_may_access(struct task_struct *task, unsigned int mode)
ab8d11be 257{
c69e8d9c 258 const struct cred *cred = current_cred(), *tcred;
bfedb589 259 struct mm_struct *mm;
caaee623
JH
260 kuid_t caller_uid;
261 kgid_t caller_gid;
262
263 if (!(mode & PTRACE_MODE_FSCREDS) == !(mode & PTRACE_MODE_REALCREDS)) {
264 WARN(1, "denying ptrace access check without PTRACE_MODE_*CREDS\n");
265 return -EPERM;
266 }
b6dff3ec 267
df26c40e
EB
268 /* May we inspect the given task?
269 * This check is used both for attaching with ptrace
270 * and for allowing access to sensitive information in /proc.
271 *
272 * ptrace_attach denies several cases that /proc allows
273 * because setting up the necessary parent/child relationship
274 * or halting the specified task is impossible.
275 */
caaee623 276
df26c40e 277 /* Don't let security modules deny introspection */
73af963f 278 if (same_thread_group(task, current))
df26c40e 279 return 0;
c69e8d9c 280 rcu_read_lock();
caaee623
JH
281 if (mode & PTRACE_MODE_FSCREDS) {
282 caller_uid = cred->fsuid;
283 caller_gid = cred->fsgid;
284 } else {
285 /*
286 * Using the euid would make more sense here, but something
287 * in userland might rely on the old behavior, and this
288 * shouldn't be a security problem since
289 * PTRACE_MODE_REALCREDS implies that the caller explicitly
290 * used a syscall that requests access to another process
291 * (and not a filesystem syscall to procfs).
292 */
293 caller_uid = cred->uid;
294 caller_gid = cred->gid;
295 }
c69e8d9c 296 tcred = __task_cred(task);
caaee623
JH
297 if (uid_eq(caller_uid, tcred->euid) &&
298 uid_eq(caller_uid, tcred->suid) &&
299 uid_eq(caller_uid, tcred->uid) &&
300 gid_eq(caller_gid, tcred->egid) &&
301 gid_eq(caller_gid, tcred->sgid) &&
302 gid_eq(caller_gid, tcred->gid))
8409cca7 303 goto ok;
c4a4d603 304 if (ptrace_has_cap(tcred->user_ns, mode))
8409cca7
SH
305 goto ok;
306 rcu_read_unlock();
307 return -EPERM;
308ok:
c69e8d9c 309 rcu_read_unlock();
bfedb589
EB
310 mm = task->mm;
311 if (mm &&
312 ((get_dumpable(mm) != SUID_DUMP_USER) &&
313 !ptrace_has_cap(mm->user_ns, mode)))
314 return -EPERM;
ab8d11be 315
9e48858f 316 return security_ptrace_access_check(task, mode);
ab8d11be
MS
317}
318
006ebb40 319bool ptrace_may_access(struct task_struct *task, unsigned int mode)
ab8d11be
MS
320{
321 int err;
322 task_lock(task);
006ebb40 323 err = __ptrace_may_access(task, mode);
ab8d11be 324 task_unlock(task);
3a709703 325 return !err;
ab8d11be
MS
326}
327
3544d72a 328static int ptrace_attach(struct task_struct *task, long request,
aa9147c9 329 unsigned long addr,
3544d72a 330 unsigned long flags)
1da177e4 331{
3544d72a 332 bool seize = (request == PTRACE_SEIZE);
1da177e4 333 int retval;
f5b40e36 334
3544d72a 335 retval = -EIO;
aa9147c9
DV
336 if (seize) {
337 if (addr != 0)
338 goto out;
aa9147c9
DV
339 if (flags & ~(unsigned long)PTRACE_O_MASK)
340 goto out;
341 flags = PT_PTRACED | PT_SEIZED | (flags << PT_OPT_FLAG_SHIFT);
342 } else {
343 flags = PT_PTRACED;
344 }
3544d72a 345
a5cb013d
AV
346 audit_ptrace(task);
347
1da177e4 348 retval = -EPERM;
b79b7ba9
ON
349 if (unlikely(task->flags & PF_KTHREAD))
350 goto out;
bac0abd6 351 if (same_thread_group(task, current))
f5b40e36
LT
352 goto out;
353
f2f0b00a
ON
354 /*
355 * Protect exec's credential calculations against our interference;
86b6c1f3 356 * SUID, SGID and LSM creds get determined differently
5e751e99 357 * under ptrace.
d84f4f99 358 */
793285fc 359 retval = -ERESTARTNOINTR;
9b1bf12d 360 if (mutex_lock_interruptible(&task->signal->cred_guard_mutex))
d84f4f99 361 goto out;
f5b40e36 362
4b105cbb 363 task_lock(task);
caaee623 364 retval = __ptrace_may_access(task, PTRACE_MODE_ATTACH_REALCREDS);
4b105cbb 365 task_unlock(task);
1da177e4 366 if (retval)
4b105cbb 367 goto unlock_creds;
1da177e4 368
4b105cbb 369 write_lock_irq(&tasklist_lock);
b79b7ba9
ON
370 retval = -EPERM;
371 if (unlikely(task->exit_state))
4b105cbb 372 goto unlock_tasklist;
f2f0b00a 373 if (task->ptrace)
4b105cbb 374 goto unlock_tasklist;
b79b7ba9 375
3544d72a 376 if (seize)
aa9147c9 377 flags |= PT_SEIZED;
aa9147c9 378 task->ptrace = flags;
1da177e4 379
1da177e4 380 __ptrace_link(task, current);
3544d72a
TH
381
382 /* SEIZE doesn't trap tracee on attach */
383 if (!seize)
384 send_sig_info(SIGSTOP, SEND_SIG_FORCED, task);
b79b7ba9 385
d79fdd6d
TH
386 spin_lock(&task->sighand->siglock);
387
388 /*
73ddff2b 389 * If the task is already STOPPED, set JOBCTL_TRAP_STOP and
d79fdd6d
TH
390 * TRAPPING, and kick it so that it transits to TRACED. TRAPPING
391 * will be cleared if the child completes the transition or any
392 * event which clears the group stop states happens. We'll wait
393 * for the transition to complete before returning from this
394 * function.
395 *
396 * This hides STOPPED -> RUNNING -> TRACED transition from the
397 * attaching thread but a different thread in the same group can
398 * still observe the transient RUNNING state. IOW, if another
399 * thread's WNOHANG wait(2) on the stopped tracee races against
400 * ATTACH, the wait(2) may fail due to the transient RUNNING.
401 *
402 * The following task_is_stopped() test is safe as both transitions
403 * in and out of STOPPED are protected by siglock.
404 */
7dd3db54 405 if (task_is_stopped(task) &&
73ddff2b 406 task_set_jobctl_pending(task, JOBCTL_TRAP_STOP | JOBCTL_TRAPPING))
910ffdb1 407 signal_wake_up_state(task, __TASK_STOPPED);
d79fdd6d
TH
408
409 spin_unlock(&task->sighand->siglock);
410
b79b7ba9 411 retval = 0;
4b105cbb
ON
412unlock_tasklist:
413 write_unlock_irq(&tasklist_lock);
414unlock_creds:
9b1bf12d 415 mutex_unlock(&task->signal->cred_guard_mutex);
f5b40e36 416out:
f701e5b7 417 if (!retval) {
7c3b00e0
ON
418 /*
419 * We do not bother to change retval or clear JOBCTL_TRAPPING
420 * if wait_on_bit() was interrupted by SIGKILL. The tracer will
421 * not return to user-mode, it will exit and clear this bit in
422 * __ptrace_unlink() if it wasn't already cleared by the tracee;
423 * and until then nobody can ptrace this task.
424 */
425 wait_on_bit(&task->jobctl, JOBCTL_TRAPPING_BIT, TASK_KILLABLE);
f701e5b7
VZ
426 proc_ptrace_connector(task, PTRACE_ATTACH);
427 }
428
1da177e4
LT
429 return retval;
430}
431
f2f0b00a
ON
432/**
433 * ptrace_traceme -- helper for PTRACE_TRACEME
434 *
435 * Performs checks and sets PT_PTRACED.
436 * Should be used by all ptrace implementations for PTRACE_TRACEME.
437 */
e3e89cc5 438static int ptrace_traceme(void)
f2f0b00a
ON
439{
440 int ret = -EPERM;
441
4b105cbb
ON
442 write_lock_irq(&tasklist_lock);
443 /* Are we already being traced? */
f2f0b00a 444 if (!current->ptrace) {
f2f0b00a 445 ret = security_ptrace_traceme(current->parent);
f2f0b00a
ON
446 /*
447 * Check PF_EXITING to ensure ->real_parent has not passed
448 * exit_ptrace(). Otherwise we don't report the error but
449 * pretend ->real_parent untraces us right after return.
450 */
451 if (!ret && !(current->real_parent->flags & PF_EXITING)) {
452 current->ptrace = PT_PTRACED;
453 __ptrace_link(current, current->real_parent);
454 }
f2f0b00a 455 }
4b105cbb
ON
456 write_unlock_irq(&tasklist_lock);
457
f2f0b00a
ON
458 return ret;
459}
460
39c626ae
ON
461/*
462 * Called with irqs disabled, returns true if childs should reap themselves.
463 */
464static int ignoring_children(struct sighand_struct *sigh)
465{
466 int ret;
467 spin_lock(&sigh->siglock);
468 ret = (sigh->action[SIGCHLD-1].sa.sa_handler == SIG_IGN) ||
469 (sigh->action[SIGCHLD-1].sa.sa_flags & SA_NOCLDWAIT);
470 spin_unlock(&sigh->siglock);
471 return ret;
472}
473
474/*
475 * Called with tasklist_lock held for writing.
476 * Unlink a traced task, and clean it up if it was a traced zombie.
477 * Return true if it needs to be reaped with release_task().
478 * (We can't call release_task() here because we already hold tasklist_lock.)
479 *
480 * If it's a zombie, our attachedness prevented normal parent notification
481 * or self-reaping. Do notification now if it would have happened earlier.
482 * If it should reap itself, return true.
483 *
a7f0765e
ON
484 * If it's our own child, there is no notification to do. But if our normal
485 * children self-reap, then this child was prevented by ptrace and we must
486 * reap it now, in that case we must also wake up sub-threads sleeping in
487 * do_wait().
39c626ae
ON
488 */
489static bool __ptrace_detach(struct task_struct *tracer, struct task_struct *p)
490{
9843a1e9
ON
491 bool dead;
492
39c626ae
ON
493 __ptrace_unlink(p);
494
9843a1e9
ON
495 if (p->exit_state != EXIT_ZOMBIE)
496 return false;
497
498 dead = !thread_group_leader(p);
499
500 if (!dead && thread_group_empty(p)) {
501 if (!same_thread_group(p->real_parent, tracer))
502 dead = do_notify_parent(p, p->exit_signal);
503 else if (ignoring_children(tracer->sighand)) {
504 __wake_up_parent(p, tracer);
9843a1e9 505 dead = true;
39c626ae
ON
506 }
507 }
9843a1e9
ON
508 /* Mark it as in the process of being reaped. */
509 if (dead)
510 p->exit_state = EXIT_DEAD;
511 return dead;
39c626ae
ON
512}
513
e3e89cc5 514static int ptrace_detach(struct task_struct *child, unsigned int data)
1da177e4 515{
7ed20e1a 516 if (!valid_signal(data))
5ecfbae0 517 return -EIO;
1da177e4
LT
518
519 /* Architecture-specific hardware disable .. */
520 ptrace_disable(child);
521
95c3eb76 522 write_lock_irq(&tasklist_lock);
39c626ae 523 /*
64a4096c
ON
524 * We rely on ptrace_freeze_traced(). It can't be killed and
525 * untraced by another thread, it can't be a zombie.
39c626ae 526 */
64a4096c
ON
527 WARN_ON(!child->ptrace || child->exit_state);
528 /*
529 * tasklist_lock avoids the race with wait_task_stopped(), see
530 * the comment in ptrace_resume().
531 */
532 child->exit_code = data;
533 __ptrace_detach(current, child);
1da177e4
LT
534 write_unlock_irq(&tasklist_lock);
535
f701e5b7 536 proc_ptrace_connector(child, PTRACE_DETACH);
4576145c 537
1da177e4
LT
538 return 0;
539}
540
39c626ae 541/*
c7e49c14 542 * Detach all tasks we were using ptrace on. Called with tasklist held
7c8bd232 543 * for writing.
39c626ae 544 */
7c8bd232 545void exit_ptrace(struct task_struct *tracer, struct list_head *dead)
39c626ae
ON
546{
547 struct task_struct *p, *n;
c7e49c14 548
39c626ae 549 list_for_each_entry_safe(p, n, &tracer->ptraced, ptrace_entry) {
992fb6e1
ON
550 if (unlikely(p->ptrace & PT_EXITKILL))
551 send_sig_info(SIGKILL, SEND_SIG_FORCED, p);
552
39c626ae 553 if (__ptrace_detach(tracer, p))
7c8bd232 554 list_add(&p->ptrace_entry, dead);
39c626ae
ON
555 }
556}
557
1da177e4
LT
558int ptrace_readdata(struct task_struct *tsk, unsigned long src, char __user *dst, int len)
559{
560 int copied = 0;
561
562 while (len > 0) {
563 char buf[128];
564 int this_len, retval;
565
566 this_len = (len > sizeof(buf)) ? sizeof(buf) : len;
84d77d3f
EB
567 retval = ptrace_access_vm(tsk, src, buf, this_len, FOLL_FORCE);
568
1da177e4
LT
569 if (!retval) {
570 if (copied)
571 break;
572 return -EIO;
573 }
574 if (copy_to_user(dst, buf, retval))
575 return -EFAULT;
576 copied += retval;
577 src += retval;
578 dst += retval;
3a709703 579 len -= retval;
1da177e4
LT
580 }
581 return copied;
582}
583
584int ptrace_writedata(struct task_struct *tsk, char __user *src, unsigned long dst, int len)
585{
586 int copied = 0;
587
588 while (len > 0) {
589 char buf[128];
590 int this_len, retval;
591
592 this_len = (len > sizeof(buf)) ? sizeof(buf) : len;
593 if (copy_from_user(buf, src, this_len))
594 return -EFAULT;
84d77d3f 595 retval = ptrace_access_vm(tsk, dst, buf, this_len,
f307ab6d 596 FOLL_FORCE | FOLL_WRITE);
1da177e4
LT
597 if (!retval) {
598 if (copied)
599 break;
600 return -EIO;
601 }
602 copied += retval;
603 src += retval;
604 dst += retval;
3a709703 605 len -= retval;
1da177e4
LT
606 }
607 return copied;
608}
609
4abf9869 610static int ptrace_setoptions(struct task_struct *child, unsigned long data)
1da177e4 611{
86b6c1f3
DV
612 unsigned flags;
613
8c5cf9e5
DV
614 if (data & ~(unsigned long)PTRACE_O_MASK)
615 return -EINVAL;
616
13c4a901 617 if (unlikely(data & PTRACE_O_SUSPEND_SECCOMP)) {
97f2645f
MY
618 if (!IS_ENABLED(CONFIG_CHECKPOINT_RESTORE) ||
619 !IS_ENABLED(CONFIG_SECCOMP))
13c4a901
TA
620 return -EINVAL;
621
622 if (!capable(CAP_SYS_ADMIN))
623 return -EPERM;
624
625 if (seccomp_mode(&current->seccomp) != SECCOMP_MODE_DISABLED ||
626 current->ptrace & PT_SUSPEND_SECCOMP)
627 return -EPERM;
628 }
629
86b6c1f3
DV
630 /* Avoid intermediate state when all opts are cleared */
631 flags = child->ptrace;
632 flags &= ~(PTRACE_O_MASK << PT_OPT_FLAG_SHIFT);
633 flags |= (data << PT_OPT_FLAG_SHIFT);
634 child->ptrace = flags;
1da177e4 635
8c5cf9e5 636 return 0;
1da177e4
LT
637}
638
e16b2781 639static int ptrace_getsiginfo(struct task_struct *child, siginfo_t *info)
1da177e4 640{
e4961254 641 unsigned long flags;
1da177e4
LT
642 int error = -ESRCH;
643
e4961254 644 if (lock_task_sighand(child, &flags)) {
1da177e4 645 error = -EINVAL;
1da177e4 646 if (likely(child->last_siginfo != NULL)) {
e16b2781 647 *info = *child->last_siginfo;
1da177e4
LT
648 error = 0;
649 }
e4961254 650 unlock_task_sighand(child, &flags);
1da177e4 651 }
1da177e4
LT
652 return error;
653}
654
e16b2781 655static int ptrace_setsiginfo(struct task_struct *child, const siginfo_t *info)
1da177e4 656{
e4961254 657 unsigned long flags;
1da177e4
LT
658 int error = -ESRCH;
659
e4961254 660 if (lock_task_sighand(child, &flags)) {
1da177e4 661 error = -EINVAL;
1da177e4 662 if (likely(child->last_siginfo != NULL)) {
e16b2781 663 *child->last_siginfo = *info;
1da177e4
LT
664 error = 0;
665 }
e4961254 666 unlock_task_sighand(child, &flags);
1da177e4 667 }
1da177e4
LT
668 return error;
669}
670
84c751bd
AV
671static int ptrace_peek_siginfo(struct task_struct *child,
672 unsigned long addr,
673 unsigned long data)
674{
675 struct ptrace_peeksiginfo_args arg;
676 struct sigpending *pending;
677 struct sigqueue *q;
678 int ret, i;
679
680 ret = copy_from_user(&arg, (void __user *) addr,
681 sizeof(struct ptrace_peeksiginfo_args));
682 if (ret)
683 return -EFAULT;
684
685 if (arg.flags & ~PTRACE_PEEKSIGINFO_SHARED)
686 return -EINVAL; /* unknown flags */
687
688 if (arg.nr < 0)
689 return -EINVAL;
690
691 if (arg.flags & PTRACE_PEEKSIGINFO_SHARED)
692 pending = &child->signal->shared_pending;
693 else
694 pending = &child->pending;
695
696 for (i = 0; i < arg.nr; ) {
697 siginfo_t info;
698 s32 off = arg.off + i;
699
700 spin_lock_irq(&child->sighand->siglock);
701 list_for_each_entry(q, &pending->list, list) {
702 if (!off--) {
703 copy_siginfo(&info, &q->info);
704 break;
705 }
706 }
707 spin_unlock_irq(&child->sighand->siglock);
708
709 if (off >= 0) /* beyond the end of the list */
710 break;
711
712#ifdef CONFIG_COMPAT
5c465217 713 if (unlikely(in_compat_syscall())) {
84c751bd
AV
714 compat_siginfo_t __user *uinfo = compat_ptr(data);
715
706b23bd
MD
716 if (copy_siginfo_to_user32(uinfo, &info) ||
717 __put_user(info.si_code, &uinfo->si_code)) {
718 ret = -EFAULT;
719 break;
720 }
721
84c751bd
AV
722 } else
723#endif
724 {
725 siginfo_t __user *uinfo = (siginfo_t __user *) data;
726
706b23bd
MD
727 if (copy_siginfo_to_user(uinfo, &info) ||
728 __put_user(info.si_code, &uinfo->si_code)) {
729 ret = -EFAULT;
730 break;
731 }
84c751bd
AV
732 }
733
734 data += sizeof(siginfo_t);
735 i++;
736
737 if (signal_pending(current))
738 break;
739
740 cond_resched();
741 }
742
743 if (i > 0)
744 return i;
745
746 return ret;
747}
36df29d7
RM
748
749#ifdef PTRACE_SINGLESTEP
750#define is_singlestep(request) ((request) == PTRACE_SINGLESTEP)
751#else
752#define is_singlestep(request) 0
753#endif
754
5b88abbf
RM
755#ifdef PTRACE_SINGLEBLOCK
756#define is_singleblock(request) ((request) == PTRACE_SINGLEBLOCK)
757#else
758#define is_singleblock(request) 0
759#endif
760
36df29d7
RM
761#ifdef PTRACE_SYSEMU
762#define is_sysemu_singlestep(request) ((request) == PTRACE_SYSEMU_SINGLESTEP)
763#else
764#define is_sysemu_singlestep(request) 0
765#endif
766
4abf9869
NK
767static int ptrace_resume(struct task_struct *child, long request,
768 unsigned long data)
36df29d7 769{
b72c1869
ON
770 bool need_siglock;
771
36df29d7
RM
772 if (!valid_signal(data))
773 return -EIO;
774
775 if (request == PTRACE_SYSCALL)
776 set_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
777 else
778 clear_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
779
780#ifdef TIF_SYSCALL_EMU
781 if (request == PTRACE_SYSEMU || request == PTRACE_SYSEMU_SINGLESTEP)
782 set_tsk_thread_flag(child, TIF_SYSCALL_EMU);
783 else
784 clear_tsk_thread_flag(child, TIF_SYSCALL_EMU);
785#endif
786
5b88abbf
RM
787 if (is_singleblock(request)) {
788 if (unlikely(!arch_has_block_step()))
789 return -EIO;
790 user_enable_block_step(child);
791 } else if (is_singlestep(request) || is_sysemu_singlestep(request)) {
36df29d7
RM
792 if (unlikely(!arch_has_single_step()))
793 return -EIO;
794 user_enable_single_step(child);
3a709703 795 } else {
36df29d7 796 user_disable_single_step(child);
3a709703 797 }
36df29d7 798
b72c1869
ON
799 /*
800 * Change ->exit_code and ->state under siglock to avoid the race
801 * with wait_task_stopped() in between; a non-zero ->exit_code will
802 * wrongly look like another report from tracee.
803 *
804 * Note that we need siglock even if ->exit_code == data and/or this
805 * status was not reported yet, the new status must not be cleared by
806 * wait_task_stopped() after resume.
807 *
808 * If data == 0 we do not care if wait_task_stopped() reports the old
809 * status and clears the code too; this can't race with the tracee, it
810 * takes siglock after resume.
811 */
812 need_siglock = data && !thread_group_empty(current);
813 if (need_siglock)
814 spin_lock_irq(&child->sighand->siglock);
36df29d7 815 child->exit_code = data;
0666fb51 816 wake_up_state(child, __TASK_TRACED);
b72c1869
ON
817 if (need_siglock)
818 spin_unlock_irq(&child->sighand->siglock);
36df29d7
RM
819
820 return 0;
821}
822
2225a122
SS
823#ifdef CONFIG_HAVE_ARCH_TRACEHOOK
824
825static const struct user_regset *
826find_regset(const struct user_regset_view *view, unsigned int type)
827{
828 const struct user_regset *regset;
829 int n;
830
831 for (n = 0; n < view->n; ++n) {
832 regset = view->regsets + n;
833 if (regset->core_note_type == type)
834 return regset;
835 }
836
837 return NULL;
838}
839
840static int ptrace_regset(struct task_struct *task, int req, unsigned int type,
841 struct iovec *kiov)
842{
843 const struct user_regset_view *view = task_user_regset_view(task);
844 const struct user_regset *regset = find_regset(view, type);
845 int regset_no;
846
847 if (!regset || (kiov->iov_len % regset->size) != 0)
c6a0dd7e 848 return -EINVAL;
2225a122
SS
849
850 regset_no = regset - view->regsets;
851 kiov->iov_len = min(kiov->iov_len,
852 (__kernel_size_t) (regset->n * regset->size));
853
854 if (req == PTRACE_GETREGSET)
855 return copy_regset_to_user(task, view, regset_no, 0,
856 kiov->iov_len, kiov->iov_base);
857 else
858 return copy_regset_from_user(task, view, regset_no, 0,
859 kiov->iov_len, kiov->iov_base);
860}
861
e8440c14
JS
862/*
863 * This is declared in linux/regset.h and defined in machine-dependent
864 * code. We put the export here, near the primary machine-neutral use,
865 * to ensure no machine forgets it.
866 */
867EXPORT_SYMBOL_GPL(task_user_regset_view);
2225a122
SS
868#endif
869
1da177e4 870int ptrace_request(struct task_struct *child, long request,
4abf9869 871 unsigned long addr, unsigned long data)
1da177e4 872{
fca26f26 873 bool seized = child->ptrace & PT_SEIZED;
1da177e4 874 int ret = -EIO;
544b2c91 875 siginfo_t siginfo, *si;
9fed81dc
NK
876 void __user *datavp = (void __user *) data;
877 unsigned long __user *datalp = datavp;
fca26f26 878 unsigned long flags;
1da177e4
LT
879
880 switch (request) {
16c3e389
RM
881 case PTRACE_PEEKTEXT:
882 case PTRACE_PEEKDATA:
883 return generic_ptrace_peekdata(child, addr, data);
884 case PTRACE_POKETEXT:
885 case PTRACE_POKEDATA:
886 return generic_ptrace_pokedata(child, addr, data);
887
1da177e4
LT
888#ifdef PTRACE_OLDSETOPTIONS
889 case PTRACE_OLDSETOPTIONS:
890#endif
891 case PTRACE_SETOPTIONS:
892 ret = ptrace_setoptions(child, data);
893 break;
894 case PTRACE_GETEVENTMSG:
9fed81dc 895 ret = put_user(child->ptrace_message, datalp);
1da177e4 896 break;
e16b2781 897
84c751bd
AV
898 case PTRACE_PEEKSIGINFO:
899 ret = ptrace_peek_siginfo(child, addr, data);
900 break;
901
1da177e4 902 case PTRACE_GETSIGINFO:
e16b2781
RM
903 ret = ptrace_getsiginfo(child, &siginfo);
904 if (!ret)
9fed81dc 905 ret = copy_siginfo_to_user(datavp, &siginfo);
1da177e4 906 break;
e16b2781 907
1da177e4 908 case PTRACE_SETSIGINFO:
9fed81dc 909 if (copy_from_user(&siginfo, datavp, sizeof siginfo))
e16b2781
RM
910 ret = -EFAULT;
911 else
912 ret = ptrace_setsiginfo(child, &siginfo);
1da177e4 913 break;
e16b2781 914
29000cae
AV
915 case PTRACE_GETSIGMASK:
916 if (addr != sizeof(sigset_t)) {
917 ret = -EINVAL;
918 break;
919 }
920
921 if (copy_to_user(datavp, &child->blocked, sizeof(sigset_t)))
922 ret = -EFAULT;
923 else
924 ret = 0;
925
926 break;
927
928 case PTRACE_SETSIGMASK: {
929 sigset_t new_set;
930
931 if (addr != sizeof(sigset_t)) {
932 ret = -EINVAL;
933 break;
934 }
935
936 if (copy_from_user(&new_set, datavp, sizeof(sigset_t))) {
937 ret = -EFAULT;
938 break;
939 }
940
941 sigdelsetmask(&new_set, sigmask(SIGKILL)|sigmask(SIGSTOP));
942
943 /*
944 * Every thread does recalc_sigpending() after resume, so
945 * retarget_shared_pending() and recalc_sigpending() are not
946 * called here.
947 */
948 spin_lock_irq(&child->sighand->siglock);
949 child->blocked = new_set;
950 spin_unlock_irq(&child->sighand->siglock);
951
952 ret = 0;
953 break;
954 }
955
fca26f26
TH
956 case PTRACE_INTERRUPT:
957 /*
958 * Stop tracee without any side-effect on signal or job
959 * control. At least one trap is guaranteed to happen
960 * after this request. If @child is already trapped, the
961 * current trap is not disturbed and another trap will
962 * happen after the current trap is ended with PTRACE_CONT.
963 *
964 * The actual trap might not be PTRACE_EVENT_STOP trap but
965 * the pending condition is cleared regardless.
966 */
967 if (unlikely(!seized || !lock_task_sighand(child, &flags)))
968 break;
969
544b2c91
TH
970 /*
971 * INTERRUPT doesn't disturb existing trap sans one
972 * exception. If ptracer issued LISTEN for the current
973 * STOP, this INTERRUPT should clear LISTEN and re-trap
974 * tracee into STOP.
975 */
fca26f26 976 if (likely(task_set_jobctl_pending(child, JOBCTL_TRAP_STOP)))
910ffdb1 977 ptrace_signal_wake_up(child, child->jobctl & JOBCTL_LISTENING);
544b2c91
TH
978
979 unlock_task_sighand(child, &flags);
980 ret = 0;
981 break;
982
983 case PTRACE_LISTEN:
984 /*
985 * Listen for events. Tracee must be in STOP. It's not
986 * resumed per-se but is not considered to be in TRACED by
987 * wait(2) or ptrace(2). If an async event (e.g. group
988 * stop state change) happens, tracee will enter STOP trap
989 * again. Alternatively, ptracer can issue INTERRUPT to
990 * finish listening and re-trap tracee into STOP.
991 */
992 if (unlikely(!seized || !lock_task_sighand(child, &flags)))
993 break;
994
995 si = child->last_siginfo;
f9d81f61
ON
996 if (likely(si && (si->si_code >> 8) == PTRACE_EVENT_STOP)) {
997 child->jobctl |= JOBCTL_LISTENING;
998 /*
999 * If NOTIFY is set, it means event happened between
1000 * start of this trap and now. Trigger re-trap.
1001 */
1002 if (child->jobctl & JOBCTL_TRAP_NOTIFY)
910ffdb1 1003 ptrace_signal_wake_up(child, true);
f9d81f61
ON
1004 ret = 0;
1005 }
fca26f26 1006 unlock_task_sighand(child, &flags);
fca26f26
TH
1007 break;
1008
1bcf5482
AD
1009 case PTRACE_DETACH: /* detach a process that was attached. */
1010 ret = ptrace_detach(child, data);
1011 break;
36df29d7 1012
9c1a1259
MF
1013#ifdef CONFIG_BINFMT_ELF_FDPIC
1014 case PTRACE_GETFDPIC: {
e0129ef9 1015 struct mm_struct *mm = get_task_mm(child);
9c1a1259
MF
1016 unsigned long tmp = 0;
1017
e0129ef9
ON
1018 ret = -ESRCH;
1019 if (!mm)
1020 break;
1021
9c1a1259
MF
1022 switch (addr) {
1023 case PTRACE_GETFDPIC_EXEC:
e0129ef9 1024 tmp = mm->context.exec_fdpic_loadmap;
9c1a1259
MF
1025 break;
1026 case PTRACE_GETFDPIC_INTERP:
e0129ef9 1027 tmp = mm->context.interp_fdpic_loadmap;
9c1a1259
MF
1028 break;
1029 default:
1030 break;
1031 }
e0129ef9 1032 mmput(mm);
9c1a1259 1033
9fed81dc 1034 ret = put_user(tmp, datalp);
9c1a1259
MF
1035 break;
1036 }
1037#endif
1038
36df29d7
RM
1039#ifdef PTRACE_SINGLESTEP
1040 case PTRACE_SINGLESTEP:
1041#endif
5b88abbf
RM
1042#ifdef PTRACE_SINGLEBLOCK
1043 case PTRACE_SINGLEBLOCK:
1044#endif
36df29d7
RM
1045#ifdef PTRACE_SYSEMU
1046 case PTRACE_SYSEMU:
1047 case PTRACE_SYSEMU_SINGLESTEP:
1048#endif
1049 case PTRACE_SYSCALL:
1050 case PTRACE_CONT:
1051 return ptrace_resume(child, request, data);
1052
1053 case PTRACE_KILL:
1054 if (child->exit_state) /* already dead */
1055 return 0;
1056 return ptrace_resume(child, request, SIGKILL);
1057
2225a122
SS
1058#ifdef CONFIG_HAVE_ARCH_TRACEHOOK
1059 case PTRACE_GETREGSET:
29000cae 1060 case PTRACE_SETREGSET: {
2225a122 1061 struct iovec kiov;
9fed81dc 1062 struct iovec __user *uiov = datavp;
2225a122
SS
1063
1064 if (!access_ok(VERIFY_WRITE, uiov, sizeof(*uiov)))
1065 return -EFAULT;
1066
1067 if (__get_user(kiov.iov_base, &uiov->iov_base) ||
1068 __get_user(kiov.iov_len, &uiov->iov_len))
1069 return -EFAULT;
1070
1071 ret = ptrace_regset(child, request, addr, &kiov);
1072 if (!ret)
1073 ret = __put_user(kiov.iov_len, &uiov->iov_len);
1074 break;
1075 }
1076#endif
f8e529ed
TA
1077
1078 case PTRACE_SECCOMP_GET_FILTER:
1079 ret = seccomp_get_filter(child, addr, datavp);
1080 break;
1081
1da177e4
LT
1082 default:
1083 break;
1084 }
1085
1086 return ret;
1087}
481bed45 1088
8053bdd5 1089static struct task_struct *ptrace_get_task_struct(pid_t pid)
6b9c7ed8
CH
1090{
1091 struct task_struct *child;
481bed45 1092
8053bdd5 1093 rcu_read_lock();
228ebcbe 1094 child = find_task_by_vpid(pid);
481bed45
CH
1095 if (child)
1096 get_task_struct(child);
8053bdd5 1097 rcu_read_unlock();
f400e198 1098
481bed45 1099 if (!child)
6b9c7ed8
CH
1100 return ERR_PTR(-ESRCH);
1101 return child;
481bed45
CH
1102}
1103
0ac15559
CH
1104#ifndef arch_ptrace_attach
1105#define arch_ptrace_attach(child) do { } while (0)
1106#endif
1107
4abf9869
NK
1108SYSCALL_DEFINE4(ptrace, long, request, long, pid, unsigned long, addr,
1109 unsigned long, data)
481bed45
CH
1110{
1111 struct task_struct *child;
1112 long ret;
1113
6b9c7ed8
CH
1114 if (request == PTRACE_TRACEME) {
1115 ret = ptrace_traceme();
6ea6dd93
HS
1116 if (!ret)
1117 arch_ptrace_attach(current);
481bed45 1118 goto out;
6b9c7ed8
CH
1119 }
1120
1121 child = ptrace_get_task_struct(pid);
1122 if (IS_ERR(child)) {
1123 ret = PTR_ERR(child);
1124 goto out;
1125 }
481bed45 1126
3544d72a 1127 if (request == PTRACE_ATTACH || request == PTRACE_SEIZE) {
aa9147c9 1128 ret = ptrace_attach(child, request, addr, data);
0ac15559
CH
1129 /*
1130 * Some architectures need to do book-keeping after
1131 * a ptrace attach.
1132 */
1133 if (!ret)
1134 arch_ptrace_attach(child);
005f18df 1135 goto out_put_task_struct;
481bed45
CH
1136 }
1137
fca26f26
TH
1138 ret = ptrace_check_attach(child, request == PTRACE_KILL ||
1139 request == PTRACE_INTERRUPT);
481bed45
CH
1140 if (ret < 0)
1141 goto out_put_task_struct;
1142
1143 ret = arch_ptrace(child, request, addr, data);
9899d11f
ON
1144 if (ret || request != PTRACE_DETACH)
1145 ptrace_unfreeze_traced(child);
481bed45
CH
1146
1147 out_put_task_struct:
1148 put_task_struct(child);
1149 out:
481bed45
CH
1150 return ret;
1151}
76647323 1152
4abf9869
NK
1153int generic_ptrace_peekdata(struct task_struct *tsk, unsigned long addr,
1154 unsigned long data)
76647323
AD
1155{
1156 unsigned long tmp;
1157 int copied;
1158
84d77d3f 1159 copied = ptrace_access_vm(tsk, addr, &tmp, sizeof(tmp), FOLL_FORCE);
76647323
AD
1160 if (copied != sizeof(tmp))
1161 return -EIO;
1162 return put_user(tmp, (unsigned long __user *)data);
1163}
f284ce72 1164
4abf9869
NK
1165int generic_ptrace_pokedata(struct task_struct *tsk, unsigned long addr,
1166 unsigned long data)
f284ce72
AD
1167{
1168 int copied;
1169
84d77d3f 1170 copied = ptrace_access_vm(tsk, addr, &data, sizeof(data),
f307ab6d 1171 FOLL_FORCE | FOLL_WRITE);
f284ce72
AD
1172 return (copied == sizeof(data)) ? 0 : -EIO;
1173}
032d82d9 1174
96b8936a 1175#if defined CONFIG_COMPAT
032d82d9
RM
1176
1177int compat_ptrace_request(struct task_struct *child, compat_long_t request,
1178 compat_ulong_t addr, compat_ulong_t data)
1179{
1180 compat_ulong_t __user *datap = compat_ptr(data);
1181 compat_ulong_t word;
e16b2781 1182 siginfo_t siginfo;
032d82d9
RM
1183 int ret;
1184
1185 switch (request) {
1186 case PTRACE_PEEKTEXT:
1187 case PTRACE_PEEKDATA:
84d77d3f 1188 ret = ptrace_access_vm(child, addr, &word, sizeof(word),
f307ab6d 1189 FOLL_FORCE);
032d82d9
RM
1190 if (ret != sizeof(word))
1191 ret = -EIO;
1192 else
1193 ret = put_user(word, datap);
1194 break;
1195
1196 case PTRACE_POKETEXT:
1197 case PTRACE_POKEDATA:
84d77d3f 1198 ret = ptrace_access_vm(child, addr, &data, sizeof(data),
f307ab6d 1199 FOLL_FORCE | FOLL_WRITE);
032d82d9
RM
1200 ret = (ret != sizeof(data) ? -EIO : 0);
1201 break;
1202
1203 case PTRACE_GETEVENTMSG:
1204 ret = put_user((compat_ulong_t) child->ptrace_message, datap);
1205 break;
1206
e16b2781
RM
1207 case PTRACE_GETSIGINFO:
1208 ret = ptrace_getsiginfo(child, &siginfo);
1209 if (!ret)
1210 ret = copy_siginfo_to_user32(
1211 (struct compat_siginfo __user *) datap,
1212 &siginfo);
1213 break;
1214
1215 case PTRACE_SETSIGINFO:
1216 memset(&siginfo, 0, sizeof siginfo);
1217 if (copy_siginfo_from_user32(
1218 &siginfo, (struct compat_siginfo __user *) datap))
1219 ret = -EFAULT;
1220 else
1221 ret = ptrace_setsiginfo(child, &siginfo);
1222 break;
2225a122
SS
1223#ifdef CONFIG_HAVE_ARCH_TRACEHOOK
1224 case PTRACE_GETREGSET:
1225 case PTRACE_SETREGSET:
1226 {
1227 struct iovec kiov;
1228 struct compat_iovec __user *uiov =
1229 (struct compat_iovec __user *) datap;
1230 compat_uptr_t ptr;
1231 compat_size_t len;
1232
1233 if (!access_ok(VERIFY_WRITE, uiov, sizeof(*uiov)))
1234 return -EFAULT;
1235
1236 if (__get_user(ptr, &uiov->iov_base) ||
1237 __get_user(len, &uiov->iov_len))
1238 return -EFAULT;
1239
1240 kiov.iov_base = compat_ptr(ptr);
1241 kiov.iov_len = len;
1242
1243 ret = ptrace_regset(child, request, addr, &kiov);
1244 if (!ret)
1245 ret = __put_user(kiov.iov_len, &uiov->iov_len);
1246 break;
1247 }
1248#endif
e16b2781 1249
032d82d9
RM
1250 default:
1251 ret = ptrace_request(child, request, addr, data);
1252 }
1253
1254 return ret;
1255}
c269f196 1256
62a6fa97
HC
1257COMPAT_SYSCALL_DEFINE4(ptrace, compat_long_t, request, compat_long_t, pid,
1258 compat_long_t, addr, compat_long_t, data)
c269f196
RM
1259{
1260 struct task_struct *child;
1261 long ret;
1262
c269f196
RM
1263 if (request == PTRACE_TRACEME) {
1264 ret = ptrace_traceme();
1265 goto out;
1266 }
1267
1268 child = ptrace_get_task_struct(pid);
1269 if (IS_ERR(child)) {
1270 ret = PTR_ERR(child);
1271 goto out;
1272 }
1273
3544d72a 1274 if (request == PTRACE_ATTACH || request == PTRACE_SEIZE) {
aa9147c9 1275 ret = ptrace_attach(child, request, addr, data);
c269f196
RM
1276 /*
1277 * Some architectures need to do book-keeping after
1278 * a ptrace attach.
1279 */
1280 if (!ret)
1281 arch_ptrace_attach(child);
1282 goto out_put_task_struct;
1283 }
1284
fca26f26
TH
1285 ret = ptrace_check_attach(child, request == PTRACE_KILL ||
1286 request == PTRACE_INTERRUPT);
9899d11f 1287 if (!ret) {
c269f196 1288 ret = compat_arch_ptrace(child, request, addr, data);
9899d11f
ON
1289 if (ret || request != PTRACE_DETACH)
1290 ptrace_unfreeze_traced(child);
1291 }
c269f196
RM
1292
1293 out_put_task_struct:
1294 put_task_struct(child);
1295 out:
c269f196
RM
1296 return ret;
1297}
96b8936a 1298#endif /* CONFIG_COMPAT */