blob: 48c36935f5844b380813e90ce5e493759662cda5 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Fast Userspace Mutexes (which I call "Futexes!").
3 * (C) Rusty Russell, IBM 2002
4 *
5 * Generalized futexes, futex requeueing, misc fixes by Ingo Molnar
6 * (C) Copyright 2003 Red Hat Inc, All Rights Reserved
7 *
8 * Removed page pinning, fix privately mapped COW pages and other cleanups
9 * (C) Copyright 2003, 2004 Jamie Lokier
10 *
Ingo Molnar0771dfe2006-03-27 01:16:22 -080011 * Robust futex support started by Ingo Molnar
12 * (C) Copyright 2006 Red Hat Inc, All Rights Reserved
13 * Thanks to Thomas Gleixner for suggestions, analysis and fixes.
14 *
Ingo Molnarc87e2832006-06-27 02:54:58 -070015 * PI-futex support started by Ingo Molnar and Thomas Gleixner
16 * Copyright (C) 2006 Red Hat, Inc., Ingo Molnar <mingo@redhat.com>
17 * Copyright (C) 2006 Timesys Corp., Thomas Gleixner <tglx@timesys.com>
18 *
Eric Dumazet34f01cc2007-05-09 02:35:04 -070019 * PRIVATE futexes by Eric Dumazet
20 * Copyright (C) 2007 Eric Dumazet <dada1@cosmosbay.com>
21 *
Darren Hart52400ba2009-04-03 13:40:49 -070022 * Requeue-PI support by Darren Hart <dvhltc@us.ibm.com>
23 * Copyright (C) IBM Corporation, 2009
24 * Thanks to Thomas Gleixner for conceptual design and careful reviews.
25 *
Linus Torvalds1da177e2005-04-16 15:20:36 -070026 * Thanks to Ben LaHaise for yelling "hashed waitqueues" loudly
27 * enough at me, Linus for the original (flawed) idea, Matthew
28 * Kirkwood for proof-of-concept implementation.
29 *
30 * "The futexes are also cursed."
31 * "But they come in a choice of three flavours!"
32 *
33 * This program is free software; you can redistribute it and/or modify
34 * it under the terms of the GNU General Public License as published by
35 * the Free Software Foundation; either version 2 of the License, or
36 * (at your option) any later version.
37 *
38 * This program is distributed in the hope that it will be useful,
39 * but WITHOUT ANY WARRANTY; without even the implied warranty of
40 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
41 * GNU General Public License for more details.
42 *
43 * You should have received a copy of the GNU General Public License
44 * along with this program; if not, write to the Free Software
45 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
46 */
47#include <linux/slab.h>
48#include <linux/poll.h>
49#include <linux/fs.h>
50#include <linux/file.h>
51#include <linux/jhash.h>
52#include <linux/init.h>
53#include <linux/futex.h>
54#include <linux/mount.h>
55#include <linux/pagemap.h>
56#include <linux/syscalls.h>
Jesper Juhl7ed20e12005-05-01 08:59:14 -070057#include <linux/signal.h>
Paul Gortmaker9984de12011-05-23 14:51:41 -040058#include <linux/export.h>
Andrey Mirkinfd5eea42007-10-16 23:30:13 -070059#include <linux/magic.h>
Pavel Emelyanovb4888932007-10-18 23:40:14 -070060#include <linux/pid.h>
61#include <linux/nsproxy.h>
Kees Cookbdbb7762012-03-19 16:12:53 -070062#include <linux/ptrace.h>
Colin Cross943ea4a2013-05-06 23:50:18 +000063#include <linux/freezer.h>
Zhang Yia42efb72013-06-25 21:19:31 +080064#include <linux/hugetlb.h>
Pavel Emelyanovb4888932007-10-18 23:40:14 -070065
Jakub Jelinek4732efb2005-09-06 15:16:25 -070066#include <asm/futex.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070067
Ingo Molnarc87e2832006-06-27 02:54:58 -070068#include "rtmutex_common.h"
69
Thomas Gleixnera0c1e902008-02-23 15:23:57 -080070int __read_mostly futex_cmpxchg_enabled;
71
Linus Torvalds1da177e2005-04-16 15:20:36 -070072#define FUTEX_HASHBITS (CONFIG_BASE_SMALL ? 4 : 8)
73
74/*
Darren Hartb41277d2010-11-08 13:10:09 -080075 * Futex flags used to encode options to functions and preserve them across
76 * restarts.
77 */
78#define FLAGS_SHARED 0x01
79#define FLAGS_CLOCKRT 0x02
80#define FLAGS_HAS_TIMEOUT 0x04
81
82/*
Ingo Molnarc87e2832006-06-27 02:54:58 -070083 * Priority Inheritance state:
84 */
85struct futex_pi_state {
86 /*
87 * list of 'owned' pi_state instances - these have to be
88 * cleaned up in do_exit() if the task exits prematurely:
89 */
90 struct list_head list;
91
92 /*
93 * The PI object:
94 */
95 struct rt_mutex pi_mutex;
96
97 struct task_struct *owner;
98 atomic_t refcount;
99
100 union futex_key key;
101};
102
Darren Hartd8d88fb2009-09-21 22:30:30 -0700103/**
104 * struct futex_q - The hashed futex queue entry, one per waiting task
Randy Dunlapfb62db22010-10-13 11:02:34 -0700105 * @list: priority-sorted list of tasks waiting on this futex
Darren Hartd8d88fb2009-09-21 22:30:30 -0700106 * @task: the task waiting on the futex
107 * @lock_ptr: the hash bucket lock
108 * @key: the key the futex is hashed on
109 * @pi_state: optional priority inheritance state
110 * @rt_waiter: rt_waiter storage for use with requeue_pi
111 * @requeue_pi_key: the requeue_pi target futex key
112 * @bitset: bitset for the optional bitmasked wakeup
113 *
114 * We use this hashed waitqueue, instead of a normal wait_queue_t, so
Linus Torvalds1da177e2005-04-16 15:20:36 -0700115 * we can wake only the relevant ones (hashed queues may be shared).
116 *
117 * A futex_q has a woken state, just like tasks have TASK_RUNNING.
Pierre Peifferec92d082007-05-09 02:35:00 -0700118 * It is considered woken when plist_node_empty(&q->list) || q->lock_ptr == 0.
Randy Dunlapfb62db22010-10-13 11:02:34 -0700119 * The order of wakeup is always to make the first condition true, then
Darren Hartd8d88fb2009-09-21 22:30:30 -0700120 * the second.
121 *
122 * PI futexes are typically woken before they are removed from the hash list via
123 * the rt_mutex code. See unqueue_me_pi().
Linus Torvalds1da177e2005-04-16 15:20:36 -0700124 */
125struct futex_q {
Pierre Peifferec92d082007-05-09 02:35:00 -0700126 struct plist_node list;
Darren Hartd8d88fb2009-09-21 22:30:30 -0700127
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200128 struct task_struct *task;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700129 spinlock_t *lock_ptr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700130 union futex_key key;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700131 struct futex_pi_state *pi_state;
Darren Hart52400ba2009-04-03 13:40:49 -0700132 struct rt_mutex_waiter *rt_waiter;
Darren Hart84bc4af2009-08-13 17:36:53 -0700133 union futex_key *requeue_pi_key;
Thomas Gleixnercd689982008-02-01 17:45:14 +0100134 u32 bitset;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700135};
136
Darren Hart5bdb05f2010-11-08 13:40:28 -0800137static const struct futex_q futex_q_init = {
138 /* list gets initialized in queue_me()*/
139 .key = FUTEX_KEY_INIT,
140 .bitset = FUTEX_BITSET_MATCH_ANY
141};
142
Linus Torvalds1da177e2005-04-16 15:20:36 -0700143/*
Darren Hartb2d09942009-03-12 00:55:37 -0700144 * Hash buckets are shared by all the futex_keys that hash to the same
145 * location. Each key may have multiple futex_q structures, one for each task
146 * waiting on a futex.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700147 */
148struct futex_hash_bucket {
Pierre Peifferec92d082007-05-09 02:35:00 -0700149 spinlock_t lock;
150 struct plist_head chain;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700151};
152
153static struct futex_hash_bucket futex_queues[1<<FUTEX_HASHBITS];
154
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155/*
156 * We hash on the keys returned from get_futex_key (see below).
157 */
158static struct futex_hash_bucket *hash_futex(union futex_key *key)
159{
160 u32 hash = jhash2((u32*)&key->both.word,
161 (sizeof(key->both.word)+sizeof(key->both.ptr))/4,
162 key->both.offset);
163 return &futex_queues[hash & ((1 << FUTEX_HASHBITS)-1)];
164}
165
166/*
167 * Return 1 if two futex_keys are equal, 0 otherwise.
168 */
169static inline int match_futex(union futex_key *key1, union futex_key *key2)
170{
Darren Hart2bc87202009-10-14 10:12:39 -0700171 return (key1 && key2
172 && key1->both.word == key2->both.word
Linus Torvalds1da177e2005-04-16 15:20:36 -0700173 && key1->both.ptr == key2->both.ptr
174 && key1->both.offset == key2->both.offset);
175}
176
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200177/*
178 * Take a reference to the resource addressed by a key.
179 * Can be called while holding spinlocks.
180 *
181 */
182static void get_futex_key_refs(union futex_key *key)
183{
184 if (!key->both.ptr)
185 return;
186
187 switch (key->both.offset & (FUT_OFF_INODE|FUT_OFF_MMSHARED)) {
188 case FUT_OFF_INODE:
Al Viro7de9c6e2010-10-23 11:11:40 -0400189 ihold(key->shared.inode);
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200190 break;
191 case FUT_OFF_MMSHARED:
192 atomic_inc(&key->private.mm->mm_count);
193 break;
194 }
195}
196
197/*
198 * Drop a reference to the resource addressed by a key.
199 * The hash bucket spinlock must not be held.
200 */
201static void drop_futex_key_refs(union futex_key *key)
202{
Darren Hart90621c42008-12-29 19:43:21 -0800203 if (!key->both.ptr) {
204 /* If we're here then we tried to put a key we failed to get */
205 WARN_ON_ONCE(1);
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200206 return;
Darren Hart90621c42008-12-29 19:43:21 -0800207 }
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200208
209 switch (key->both.offset & (FUT_OFF_INODE|FUT_OFF_MMSHARED)) {
210 case FUT_OFF_INODE:
211 iput(key->shared.inode);
212 break;
213 case FUT_OFF_MMSHARED:
214 mmdrop(key->private.mm);
215 break;
216 }
217}
218
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700219/**
Darren Hartd96ee562009-09-21 22:30:22 -0700220 * get_futex_key() - Get parameters which are the keys for a futex
221 * @uaddr: virtual address of the futex
222 * @fshared: 0 for a PROCESS_PRIVATE futex, 1 for PROCESS_SHARED
223 * @key: address where result is stored.
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500224 * @rw: mapping needs to be read/write (values: VERIFY_READ,
225 * VERIFY_WRITE)
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700226 *
227 * Returns a negative error code or 0
228 * The key words are stored in *key on success.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700229 *
Josef "Jeff" Sipekf3a43f32006-12-08 02:36:43 -0800230 * For shared mappings, it's (page->index, vma->vm_file->f_path.dentry->d_inode,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700231 * offset_within_page). For private mappings, it's (uaddr, current->mm).
232 * We can usually work out the index without swapping in the page.
233 *
Darren Hartb2d09942009-03-12 00:55:37 -0700234 * lock_page() might sleep, the caller should not hold a spinlock.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700235 */
Thomas Gleixner64d13042009-05-18 21:20:10 +0200236static int
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500237get_futex_key(u32 __user *uaddr, int fshared, union futex_key *key, int rw)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700238{
Ingo Molnare2970f22006-06-27 02:54:47 -0700239 unsigned long address = (unsigned long)uaddr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700240 struct mm_struct *mm = current->mm;
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800241 struct page *page, *page_head;
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500242 int err, ro = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700243
244 /*
245 * The futex address must be "naturally" aligned.
246 */
Ingo Molnare2970f22006-06-27 02:54:47 -0700247 key->both.offset = address % PAGE_SIZE;
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700248 if (unlikely((address % sizeof(u32)) != 0))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700249 return -EINVAL;
Ingo Molnare2970f22006-06-27 02:54:47 -0700250 address -= key->both.offset;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700251
252 /*
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700253 * PROCESS_PRIVATE futexes are fast.
254 * As the mm cannot disappear under us and the 'key' only needs
255 * virtual address, we dont even have to find the underlying vma.
256 * Note : We do have to check 'uaddr' is a valid user address,
257 * but access_ok() should be faster than find_vma()
258 */
259 if (!fshared) {
KOSAKI Motohiro7485d0d2010-01-05 16:32:43 +0900260 if (unlikely(!access_ok(VERIFY_WRITE, uaddr, sizeof(u32))))
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700261 return -EFAULT;
262 key->private.mm = mm;
263 key->private.address = address;
Peter Zijlstra42569c32008-09-30 12:33:07 +0200264 get_futex_key_refs(key);
Eric Dumazet34f01cc2007-05-09 02:35:04 -0700265 return 0;
266 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700267
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200268again:
KOSAKI Motohiro7485d0d2010-01-05 16:32:43 +0900269 err = get_user_pages_fast(address, 1, 1, &page);
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500270 /*
271 * If write access is not required (eg. FUTEX_WAIT), try
272 * and get read-only access.
273 */
274 if (err == -EFAULT && rw == VERIFY_READ) {
275 err = get_user_pages_fast(address, 1, 0, &page);
276 ro = 1;
277 }
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200278 if (err < 0)
279 return err;
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500280 else
281 err = 0;
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200282
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800283#ifdef CONFIG_TRANSPARENT_HUGEPAGE
284 page_head = page;
285 if (unlikely(PageTail(page))) {
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200286 put_page(page);
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800287 /* serialize against __split_huge_page_splitting() */
288 local_irq_disable();
Linus Torvaldsee4bb252013-12-12 09:38:42 -0800289 if (likely(__get_user_pages_fast(address, 1, !ro, &page) == 1)) {
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800290 page_head = compound_head(page);
291 /*
292 * page_head is valid pointer but we must pin
293 * it before taking the PG_lock and/or
294 * PG_compound_lock. The moment we re-enable
295 * irqs __split_huge_page_splitting() can
296 * return and the head page can be freed from
297 * under us. We can't take the PG_lock and/or
298 * PG_compound_lock on a page that could be
299 * freed from under us.
300 */
301 if (page != page_head) {
302 get_page(page_head);
303 put_page(page);
304 }
305 local_irq_enable();
306 } else {
307 local_irq_enable();
308 goto again;
309 }
310 }
311#else
312 page_head = compound_head(page);
313 if (page != page_head) {
314 get_page(page_head);
315 put_page(page);
316 }
317#endif
318
319 lock_page(page_head);
Hugh Dickinse6780f72011-12-31 11:44:01 -0800320
321 /*
322 * If page_head->mapping is NULL, then it cannot be a PageAnon
323 * page; but it might be the ZERO_PAGE or in the gate area or
324 * in a special mapping (all cases which we are happy to fail);
325 * or it may have been a good file page when get_user_pages_fast
326 * found it, but truncated or holepunched or subjected to
327 * invalidate_complete_page2 before we got the page lock (also
328 * cases which we are happy to fail). And we hold a reference,
329 * so refcount care in invalidate_complete_page's remove_mapping
330 * prevents drop_caches from setting mapping to NULL beneath us.
331 *
332 * The case we do have to guard against is when memory pressure made
333 * shmem_writepage move it from filecache to swapcache beneath us:
334 * an unlikely race, but we do need to retry for page_head->mapping.
335 */
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800336 if (!page_head->mapping) {
Hugh Dickinse6780f72011-12-31 11:44:01 -0800337 int shmem_swizzled = PageSwapCache(page_head);
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800338 unlock_page(page_head);
339 put_page(page_head);
Hugh Dickinse6780f72011-12-31 11:44:01 -0800340 if (shmem_swizzled)
341 goto again;
342 return -EFAULT;
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200343 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700344
345 /*
346 * Private mappings are handled in a simple way.
347 *
348 * NOTE: When userspace waits on a MAP_SHARED mapping, even if
349 * it's a read-only handle, it's expected that futexes attach to
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200350 * the object not the particular process.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700351 */
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800352 if (PageAnon(page_head)) {
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500353 /*
354 * A RO anonymous page will never change and thus doesn't make
355 * sense for futex operations.
356 */
357 if (ro) {
358 err = -EFAULT;
359 goto out;
360 }
361
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200362 key->both.offset |= FUT_OFF_MMSHARED; /* ref taken on mm */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700363 key->private.mm = mm;
Ingo Molnare2970f22006-06-27 02:54:47 -0700364 key->private.address = address;
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200365 } else {
366 key->both.offset |= FUT_OFF_INODE; /* inode-based key */
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800367 key->shared.inode = page_head->mapping->host;
Zhang Yia42efb72013-06-25 21:19:31 +0800368 key->shared.pgoff = basepage_index(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700369 }
370
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200371 get_futex_key_refs(key);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700372
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500373out:
Andrea Arcangelia5b338f2011-01-13 15:46:34 -0800374 unlock_page(page_head);
375 put_page(page_head);
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500376 return err;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700377}
378
Thomas Gleixnerae791a22010-11-10 13:30:36 +0100379static inline void put_futex_key(union futex_key *key)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700380{
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200381 drop_futex_key_refs(key);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700382}
383
Darren Hartd96ee562009-09-21 22:30:22 -0700384/**
385 * fault_in_user_writeable() - Fault in user address and verify RW access
Thomas Gleixnerd0725992009-06-11 23:15:43 +0200386 * @uaddr: pointer to faulting user space address
387 *
388 * Slow path to fixup the fault we just took in the atomic write
389 * access to @uaddr.
390 *
Randy Dunlapfb62db22010-10-13 11:02:34 -0700391 * We have no generic implementation of a non-destructive write to the
Thomas Gleixnerd0725992009-06-11 23:15:43 +0200392 * user address. We know that we faulted in the atomic pagefault
393 * disabled section so we can as well avoid the #PF overhead by
394 * calling get_user_pages() right away.
395 */
396static int fault_in_user_writeable(u32 __user *uaddr)
397{
Andi Kleen722d0172009-12-08 13:19:42 +0100398 struct mm_struct *mm = current->mm;
399 int ret;
400
401 down_read(&mm->mmap_sem);
Benjamin Herrenschmidt2efaca92011-07-25 17:12:32 -0700402 ret = fixup_user_fault(current, mm, (unsigned long)uaddr,
403 FAULT_FLAG_WRITE);
Andi Kleen722d0172009-12-08 13:19:42 +0100404 up_read(&mm->mmap_sem);
405
Thomas Gleixnerd0725992009-06-11 23:15:43 +0200406 return ret < 0 ? ret : 0;
407}
408
Darren Hart4b1c4862009-04-03 13:39:42 -0700409/**
410 * futex_top_waiter() - Return the highest priority waiter on a futex
Darren Hartd96ee562009-09-21 22:30:22 -0700411 * @hb: the hash bucket the futex_q's reside in
412 * @key: the futex key (to distinguish it from other futex futex_q's)
Darren Hart4b1c4862009-04-03 13:39:42 -0700413 *
414 * Must be called with the hb lock held.
415 */
416static struct futex_q *futex_top_waiter(struct futex_hash_bucket *hb,
417 union futex_key *key)
418{
419 struct futex_q *this;
420
421 plist_for_each_entry(this, &hb->chain, list) {
422 if (match_futex(&this->key, key))
423 return this;
424 }
425 return NULL;
426}
427
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800428static int cmpxchg_futex_value_locked(u32 *curval, u32 __user *uaddr,
429 u32 uval, u32 newval)
Thomas Gleixner36cf3b52007-07-15 23:41:20 -0700430{
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800431 int ret;
Thomas Gleixner36cf3b52007-07-15 23:41:20 -0700432
433 pagefault_disable();
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800434 ret = futex_atomic_cmpxchg_inatomic(curval, uaddr, uval, newval);
Thomas Gleixner36cf3b52007-07-15 23:41:20 -0700435 pagefault_enable();
436
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800437 return ret;
Thomas Gleixner36cf3b52007-07-15 23:41:20 -0700438}
439
440static int get_futex_value_locked(u32 *dest, u32 __user *from)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700441{
442 int ret;
443
Peter Zijlstraa8663742006-12-06 20:32:20 -0800444 pagefault_disable();
Ingo Molnare2970f22006-06-27 02:54:47 -0700445 ret = __copy_from_user_inatomic(dest, from, sizeof(u32));
Peter Zijlstraa8663742006-12-06 20:32:20 -0800446 pagefault_enable();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700447
448 return ret ? -EFAULT : 0;
449}
450
Ingo Molnarc87e2832006-06-27 02:54:58 -0700451
452/*
453 * PI code:
454 */
455static int refill_pi_state_cache(void)
456{
457 struct futex_pi_state *pi_state;
458
459 if (likely(current->pi_state_cache))
460 return 0;
461
Burman Yan4668edc2006-12-06 20:38:51 -0800462 pi_state = kzalloc(sizeof(*pi_state), GFP_KERNEL);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700463
464 if (!pi_state)
465 return -ENOMEM;
466
Ingo Molnarc87e2832006-06-27 02:54:58 -0700467 INIT_LIST_HEAD(&pi_state->list);
468 /* pi_mutex gets initialized later */
469 pi_state->owner = NULL;
470 atomic_set(&pi_state->refcount, 1);
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200471 pi_state->key = FUTEX_KEY_INIT;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700472
473 current->pi_state_cache = pi_state;
474
475 return 0;
476}
477
478static struct futex_pi_state * alloc_pi_state(void)
479{
480 struct futex_pi_state *pi_state = current->pi_state_cache;
481
482 WARN_ON(!pi_state);
483 current->pi_state_cache = NULL;
484
485 return pi_state;
486}
487
488static void free_pi_state(struct futex_pi_state *pi_state)
489{
490 if (!atomic_dec_and_test(&pi_state->refcount))
491 return;
492
493 /*
494 * If pi_state->owner is NULL, the owner is most probably dying
495 * and has cleaned up the pi_state already
496 */
497 if (pi_state->owner) {
Thomas Gleixner1d615482009-11-17 14:54:03 +0100498 raw_spin_lock_irq(&pi_state->owner->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700499 list_del_init(&pi_state->list);
Thomas Gleixner1d615482009-11-17 14:54:03 +0100500 raw_spin_unlock_irq(&pi_state->owner->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700501
502 rt_mutex_proxy_unlock(&pi_state->pi_mutex, pi_state->owner);
503 }
504
505 if (current->pi_state_cache)
506 kfree(pi_state);
507 else {
508 /*
509 * pi_state->list is already empty.
510 * clear pi_state->owner.
511 * refcount is at 0 - put it back to 1.
512 */
513 pi_state->owner = NULL;
514 atomic_set(&pi_state->refcount, 1);
515 current->pi_state_cache = pi_state;
516 }
517}
518
519/*
520 * Look up the task based on what TID userspace gave us.
521 * We dont trust it.
522 */
523static struct task_struct * futex_find_get_task(pid_t pid)
524{
525 struct task_struct *p;
526
Oleg Nesterovd359b542006-09-29 02:00:55 -0700527 rcu_read_lock();
Pavel Emelyanov228ebcb2007-10-18 23:40:16 -0700528 p = find_task_by_vpid(pid);
Michal Hocko7a0ea092010-06-30 09:51:19 +0200529 if (p)
530 get_task_struct(p);
Thomas Gleixnera06381f2007-06-23 11:48:40 +0200531
Oleg Nesterovd359b542006-09-29 02:00:55 -0700532 rcu_read_unlock();
Ingo Molnarc87e2832006-06-27 02:54:58 -0700533
534 return p;
535}
536
537/*
538 * This task is holding PI mutexes at exit time => bad.
539 * Kernel cleans up PI-state, but userspace is likely hosed.
540 * (Robust-futex cleanup is separate and might save the day for userspace.)
541 */
542void exit_pi_state_list(struct task_struct *curr)
543{
Ingo Molnarc87e2832006-06-27 02:54:58 -0700544 struct list_head *next, *head = &curr->pi_state_list;
545 struct futex_pi_state *pi_state;
Ingo Molnar627371d2006-07-29 05:16:20 +0200546 struct futex_hash_bucket *hb;
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200547 union futex_key key = FUTEX_KEY_INIT;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700548
Thomas Gleixnera0c1e902008-02-23 15:23:57 -0800549 if (!futex_cmpxchg_enabled)
550 return;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700551 /*
552 * We are a ZOMBIE and nobody can enqueue itself on
553 * pi_state_list anymore, but we have to be careful
Ingo Molnar627371d2006-07-29 05:16:20 +0200554 * versus waiters unqueueing themselves:
Ingo Molnarc87e2832006-06-27 02:54:58 -0700555 */
Thomas Gleixner1d615482009-11-17 14:54:03 +0100556 raw_spin_lock_irq(&curr->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700557 while (!list_empty(head)) {
558
559 next = head->next;
560 pi_state = list_entry(next, struct futex_pi_state, list);
561 key = pi_state->key;
Ingo Molnar627371d2006-07-29 05:16:20 +0200562 hb = hash_futex(&key);
Thomas Gleixner1d615482009-11-17 14:54:03 +0100563 raw_spin_unlock_irq(&curr->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700564
Ingo Molnarc87e2832006-06-27 02:54:58 -0700565 spin_lock(&hb->lock);
566
Thomas Gleixner1d615482009-11-17 14:54:03 +0100567 raw_spin_lock_irq(&curr->pi_lock);
Ingo Molnar627371d2006-07-29 05:16:20 +0200568 /*
569 * We dropped the pi-lock, so re-check whether this
570 * task still owns the PI-state:
571 */
Ingo Molnarc87e2832006-06-27 02:54:58 -0700572 if (head->next != next) {
573 spin_unlock(&hb->lock);
574 continue;
575 }
576
Ingo Molnarc87e2832006-06-27 02:54:58 -0700577 WARN_ON(pi_state->owner != curr);
Ingo Molnar627371d2006-07-29 05:16:20 +0200578 WARN_ON(list_empty(&pi_state->list));
579 list_del_init(&pi_state->list);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700580 pi_state->owner = NULL;
Thomas Gleixner1d615482009-11-17 14:54:03 +0100581 raw_spin_unlock_irq(&curr->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700582
583 rt_mutex_unlock(&pi_state->pi_mutex);
584
585 spin_unlock(&hb->lock);
586
Thomas Gleixner1d615482009-11-17 14:54:03 +0100587 raw_spin_lock_irq(&curr->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700588 }
Thomas Gleixner1d615482009-11-17 14:54:03 +0100589 raw_spin_unlock_irq(&curr->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700590}
591
592static int
Pierre Peifferd0aa7a72007-05-09 02:35:02 -0700593lookup_pi_state(u32 uval, struct futex_hash_bucket *hb,
594 union futex_key *key, struct futex_pi_state **ps)
Ingo Molnarc87e2832006-06-27 02:54:58 -0700595{
596 struct futex_pi_state *pi_state = NULL;
597 struct futex_q *this, *next;
Pierre Peifferec92d082007-05-09 02:35:00 -0700598 struct plist_head *head;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700599 struct task_struct *p;
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700600 pid_t pid = uval & FUTEX_TID_MASK;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700601
602 head = &hb->chain;
603
Pierre Peifferec92d082007-05-09 02:35:00 -0700604 plist_for_each_entry_safe(this, next, head, list) {
Pierre Peifferd0aa7a72007-05-09 02:35:02 -0700605 if (match_futex(&this->key, key)) {
Ingo Molnarc87e2832006-06-27 02:54:58 -0700606 /*
607 * Another waiter already exists - bump up
608 * the refcount and return its pi_state:
609 */
610 pi_state = this->pi_state;
Thomas Gleixner06a9ec22006-07-10 04:44:30 -0700611 /*
Randy Dunlapfb62db22010-10-13 11:02:34 -0700612 * Userspace might have messed up non-PI and PI futexes
Thomas Gleixner06a9ec22006-07-10 04:44:30 -0700613 */
614 if (unlikely(!pi_state))
615 return -EINVAL;
616
Ingo Molnar627371d2006-07-29 05:16:20 +0200617 WARN_ON(!atomic_read(&pi_state->refcount));
Thomas Gleixner59647b62010-02-03 09:33:05 +0100618
619 /*
620 * When pi_state->owner is NULL then the owner died
621 * and another waiter is on the fly. pi_state->owner
622 * is fixed up by the task which acquires
623 * pi_state->rt_mutex.
624 *
625 * We do not check for pid == 0 which can happen when
626 * the owner died and robust_list_exit() cleared the
627 * TID.
628 */
629 if (pid && pi_state->owner) {
630 /*
631 * Bail out if user space manipulated the
632 * futex value.
633 */
634 if (pid != task_pid_vnr(pi_state->owner))
635 return -EINVAL;
636 }
Ingo Molnar627371d2006-07-29 05:16:20 +0200637
Ingo Molnarc87e2832006-06-27 02:54:58 -0700638 atomic_inc(&pi_state->refcount);
Pierre Peifferd0aa7a72007-05-09 02:35:02 -0700639 *ps = pi_state;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700640
641 return 0;
642 }
643 }
644
645 /*
Ingo Molnare3f2dde2006-07-29 05:17:57 +0200646 * We are the first waiter - try to look up the real owner and attach
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700647 * the new pi_state to it, but bail out when TID = 0
Ingo Molnarc87e2832006-06-27 02:54:58 -0700648 */
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700649 if (!pid)
Ingo Molnare3f2dde2006-07-29 05:17:57 +0200650 return -ESRCH;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700651 p = futex_find_get_task(pid);
Michal Hocko7a0ea092010-06-30 09:51:19 +0200652 if (!p)
653 return -ESRCH;
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700654
Thomas Gleixner0e807272014-05-12 20:45:35 +0000655 if (!p->mm) {
656 put_task_struct(p);
657 return -EPERM;
658 }
659
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700660 /*
661 * We need to look at the task state flags to figure out,
662 * whether the task is exiting. To protect against the do_exit
663 * change of the task flags, we do this protected by
664 * p->pi_lock:
665 */
Thomas Gleixner1d615482009-11-17 14:54:03 +0100666 raw_spin_lock_irq(&p->pi_lock);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700667 if (unlikely(p->flags & PF_EXITING)) {
668 /*
669 * The task is on the way out. When PF_EXITPIDONE is
670 * set, we know that the task has finished the
671 * cleanup:
672 */
673 int ret = (p->flags & PF_EXITPIDONE) ? -ESRCH : -EAGAIN;
674
Thomas Gleixner1d615482009-11-17 14:54:03 +0100675 raw_spin_unlock_irq(&p->pi_lock);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700676 put_task_struct(p);
677 return ret;
678 }
Ingo Molnarc87e2832006-06-27 02:54:58 -0700679
680 pi_state = alloc_pi_state();
681
682 /*
683 * Initialize the pi_mutex in locked state and make 'p'
684 * the owner of it:
685 */
686 rt_mutex_init_proxy_locked(&pi_state->pi_mutex, p);
687
688 /* Store the key for possible exit cleanups: */
Pierre Peifferd0aa7a72007-05-09 02:35:02 -0700689 pi_state->key = *key;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700690
Ingo Molnar627371d2006-07-29 05:16:20 +0200691 WARN_ON(!list_empty(&pi_state->list));
Ingo Molnarc87e2832006-06-27 02:54:58 -0700692 list_add(&pi_state->list, &p->pi_state_list);
693 pi_state->owner = p;
Thomas Gleixner1d615482009-11-17 14:54:03 +0100694 raw_spin_unlock_irq(&p->pi_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700695
696 put_task_struct(p);
697
Pierre Peifferd0aa7a72007-05-09 02:35:02 -0700698 *ps = pi_state;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700699
700 return 0;
701}
702
Darren Hart1a520842009-04-03 13:39:52 -0700703/**
Darren Hartd96ee562009-09-21 22:30:22 -0700704 * futex_lock_pi_atomic() - Atomic work required to acquire a pi aware futex
Darren Hartbab5bc92009-04-07 23:23:50 -0700705 * @uaddr: the pi futex user address
706 * @hb: the pi futex hash bucket
707 * @key: the futex key associated with uaddr and hb
708 * @ps: the pi_state pointer where we store the result of the
709 * lookup
710 * @task: the task to perform the atomic lock work for. This will
711 * be "current" except in the case of requeue pi.
712 * @set_waiters: force setting the FUTEX_WAITERS bit (1) or not (0)
Darren Hart1a520842009-04-03 13:39:52 -0700713 *
714 * Returns:
715 * 0 - ready to wait
716 * 1 - acquired the lock
717 * <0 - error
718 *
719 * The hb->lock and futex_key refs shall be held by the caller.
720 */
721static int futex_lock_pi_atomic(u32 __user *uaddr, struct futex_hash_bucket *hb,
722 union futex_key *key,
723 struct futex_pi_state **ps,
Darren Hartbab5bc92009-04-07 23:23:50 -0700724 struct task_struct *task, int set_waiters)
Darren Hart1a520842009-04-03 13:39:52 -0700725{
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200726 int lock_taken, ret, force_take = 0;
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +0100727 u32 uval, newval, curval, vpid = task_pid_vnr(task);
Darren Hart1a520842009-04-03 13:39:52 -0700728
729retry:
730 ret = lock_taken = 0;
731
732 /*
733 * To avoid races, we attempt to take the lock here again
734 * (by doing a 0 -> TID atomic cmpxchg), while holding all
735 * the locks. It will most likely not succeed.
736 */
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +0100737 newval = vpid;
Darren Hartbab5bc92009-04-07 23:23:50 -0700738 if (set_waiters)
739 newval |= FUTEX_WAITERS;
Darren Hart1a520842009-04-03 13:39:52 -0700740
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800741 if (unlikely(cmpxchg_futex_value_locked(&curval, uaddr, 0, newval)))
Darren Hart1a520842009-04-03 13:39:52 -0700742 return -EFAULT;
743
744 /*
745 * Detect deadlocks.
746 */
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +0100747 if ((unlikely((curval & FUTEX_TID_MASK) == vpid)))
Darren Hart1a520842009-04-03 13:39:52 -0700748 return -EDEADLK;
749
750 /*
751 * Surprise - we got the lock. Just return to userspace:
752 */
753 if (unlikely(!curval))
754 return 1;
755
756 uval = curval;
757
758 /*
759 * Set the FUTEX_WAITERS flag, so the owner will know it has someone
760 * to wake at the next unlock.
761 */
762 newval = curval | FUTEX_WAITERS;
763
764 /*
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200765 * Should we force take the futex? See below.
Darren Hart1a520842009-04-03 13:39:52 -0700766 */
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200767 if (unlikely(force_take)) {
768 /*
769 * Keep the OWNER_DIED and the WAITERS bit and set the
770 * new TID value.
771 */
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +0100772 newval = (curval & ~FUTEX_TID_MASK) | vpid;
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200773 force_take = 0;
Darren Hart1a520842009-04-03 13:39:52 -0700774 lock_taken = 1;
775 }
776
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800777 if (unlikely(cmpxchg_futex_value_locked(&curval, uaddr, uval, newval)))
Darren Hart1a520842009-04-03 13:39:52 -0700778 return -EFAULT;
779 if (unlikely(curval != uval))
780 goto retry;
781
782 /*
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200783 * We took the lock due to forced take over.
Darren Hart1a520842009-04-03 13:39:52 -0700784 */
785 if (unlikely(lock_taken))
786 return 1;
787
788 /*
789 * We dont have the lock. Look up the PI state (or create it if
790 * we are the first waiter):
791 */
792 ret = lookup_pi_state(uval, hb, key, ps);
793
794 if (unlikely(ret)) {
795 switch (ret) {
796 case -ESRCH:
797 /*
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200798 * We failed to find an owner for this
799 * futex. So we have no pi_state to block
800 * on. This can happen in two cases:
801 *
802 * 1) The owner died
803 * 2) A stale FUTEX_WAITERS bit
804 *
805 * Re-read the futex value.
Darren Hart1a520842009-04-03 13:39:52 -0700806 */
807 if (get_futex_value_locked(&curval, uaddr))
808 return -EFAULT;
809
810 /*
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200811 * If the owner died or we have a stale
812 * WAITERS bit the owner TID in the user space
813 * futex is 0.
Darren Hart1a520842009-04-03 13:39:52 -0700814 */
Thomas Gleixnerc4cbedf2012-10-23 22:29:38 +0200815 if (!(curval & FUTEX_TID_MASK)) {
816 force_take = 1;
Darren Hart1a520842009-04-03 13:39:52 -0700817 goto retry;
818 }
819 default:
820 break;
821 }
822 }
823
824 return ret;
825}
826
Lai Jiangshan2e129782010-12-22 14:18:50 +0800827/**
828 * __unqueue_futex() - Remove the futex_q from its futex_hash_bucket
829 * @q: The futex_q to unqueue
830 *
831 * The q->lock_ptr must not be NULL and must be held by the caller.
832 */
833static void __unqueue_futex(struct futex_q *q)
834{
835 struct futex_hash_bucket *hb;
836
Steven Rostedt29096202011-03-17 15:21:07 -0400837 if (WARN_ON_SMP(!q->lock_ptr || !spin_is_locked(q->lock_ptr))
838 || WARN_ON(plist_node_empty(&q->list)))
Lai Jiangshan2e129782010-12-22 14:18:50 +0800839 return;
840
841 hb = container_of(q->lock_ptr, struct futex_hash_bucket, lock);
842 plist_del(&q->list, &hb->chain);
843}
844
Ingo Molnarc87e2832006-06-27 02:54:58 -0700845/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700846 * The hash bucket lock must be held when this is called.
847 * Afterwards, the futex_q must not be accessed.
848 */
849static void wake_futex(struct futex_q *q)
850{
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200851 struct task_struct *p = q->task;
852
Darren Hartfceca5e2012-11-26 16:29:56 -0800853 if (WARN(q->pi_state || q->rt_waiter, "refusing to wake PI futex\n"))
854 return;
855
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200856 /*
857 * We set q->lock_ptr = NULL _before_ we wake up the task. If
Randy Dunlapfb62db22010-10-13 11:02:34 -0700858 * a non-futex wake up happens on another CPU then the task
859 * might exit and p would dereference a non-existing task
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200860 * struct. Prevent this by holding a reference on p across the
861 * wake up.
862 */
863 get_task_struct(p);
864
Lai Jiangshan2e129782010-12-22 14:18:50 +0800865 __unqueue_futex(q);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700866 /*
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200867 * The waiting task can free the futex_q as soon as
868 * q->lock_ptr = NULL is written, without taking any locks. A
869 * memory barrier is required here to prevent the following
870 * store to lock_ptr from getting ahead of the plist_del.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700871 */
Ralf Baechleccdea2f2006-12-06 20:40:26 -0800872 smp_wmb();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700873 q->lock_ptr = NULL;
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +0200874
875 wake_up_state(p, TASK_NORMAL);
876 put_task_struct(p);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700877}
878
Ingo Molnarc87e2832006-06-27 02:54:58 -0700879static int wake_futex_pi(u32 __user *uaddr, u32 uval, struct futex_q *this)
880{
881 struct task_struct *new_owner;
882 struct futex_pi_state *pi_state = this->pi_state;
Vitaliy Ivanov7cfdaf32011-07-07 15:10:31 +0300883 u32 uninitialized_var(curval), newval;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700884
885 if (!pi_state)
886 return -EINVAL;
887
Thomas Gleixner51246bf2010-02-02 11:40:27 +0100888 /*
889 * If current does not own the pi_state then the futex is
890 * inconsistent and user space fiddled with the futex value.
891 */
892 if (pi_state->owner != current)
893 return -EINVAL;
894
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100895 raw_spin_lock(&pi_state->pi_mutex.wait_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700896 new_owner = rt_mutex_next_owner(&pi_state->pi_mutex);
897
898 /*
Steven Rostedtf123c982011-01-06 15:08:29 -0500899 * It is possible that the next waiter (the one that brought
900 * this owner to the kernel) timed out and is no longer
901 * waiting on the lock.
Ingo Molnarc87e2832006-06-27 02:54:58 -0700902 */
903 if (!new_owner)
904 new_owner = this->task;
905
906 /*
907 * We pass it to the next owner. (The WAITERS bit is always
908 * kept enabled while there is PI state around. We must also
909 * preserve the owner died bit.)
910 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +0200911 if (!(uval & FUTEX_OWNER_DIED)) {
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700912 int ret = 0;
913
Pavel Emelyanovb4888932007-10-18 23:40:14 -0700914 newval = FUTEX_WAITERS | task_pid_vnr(new_owner);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700915
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800916 if (cmpxchg_futex_value_locked(&curval, uaddr, uval, newval))
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700917 ret = -EFAULT;
Thomas Gleixnercde898f2007-12-05 15:46:09 +0100918 else if (curval != uval)
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700919 ret = -EINVAL;
920 if (ret) {
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100921 raw_spin_unlock(&pi_state->pi_mutex.wait_lock);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -0700922 return ret;
923 }
Ingo Molnare3f2dde2006-07-29 05:17:57 +0200924 }
Ingo Molnarc87e2832006-06-27 02:54:58 -0700925
Thomas Gleixner1d615482009-11-17 14:54:03 +0100926 raw_spin_lock_irq(&pi_state->owner->pi_lock);
Ingo Molnar627371d2006-07-29 05:16:20 +0200927 WARN_ON(list_empty(&pi_state->list));
928 list_del_init(&pi_state->list);
Thomas Gleixner1d615482009-11-17 14:54:03 +0100929 raw_spin_unlock_irq(&pi_state->owner->pi_lock);
Ingo Molnar627371d2006-07-29 05:16:20 +0200930
Thomas Gleixner1d615482009-11-17 14:54:03 +0100931 raw_spin_lock_irq(&new_owner->pi_lock);
Ingo Molnar627371d2006-07-29 05:16:20 +0200932 WARN_ON(!list_empty(&pi_state->list));
Ingo Molnarc87e2832006-06-27 02:54:58 -0700933 list_add(&pi_state->list, &new_owner->pi_state_list);
934 pi_state->owner = new_owner;
Thomas Gleixner1d615482009-11-17 14:54:03 +0100935 raw_spin_unlock_irq(&new_owner->pi_lock);
Ingo Molnar627371d2006-07-29 05:16:20 +0200936
Thomas Gleixnerd209d742009-11-17 18:22:11 +0100937 raw_spin_unlock(&pi_state->pi_mutex.wait_lock);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700938 rt_mutex_unlock(&pi_state->pi_mutex);
939
940 return 0;
941}
942
943static int unlock_futex_pi(u32 __user *uaddr, u32 uval)
944{
Vitaliy Ivanov7cfdaf32011-07-07 15:10:31 +0300945 u32 uninitialized_var(oldval);
Ingo Molnarc87e2832006-06-27 02:54:58 -0700946
947 /*
948 * There is no waiter, so we unlock the futex. The owner died
949 * bit has not to be preserved here. We are the owner:
950 */
Michel Lespinasse37a9d912011-03-10 18:48:51 -0800951 if (cmpxchg_futex_value_locked(&oldval, uaddr, uval, 0))
952 return -EFAULT;
Ingo Molnarc87e2832006-06-27 02:54:58 -0700953 if (oldval != uval)
954 return -EAGAIN;
955
956 return 0;
957}
958
Linus Torvalds1da177e2005-04-16 15:20:36 -0700959/*
Ingo Molnar8b8f3192006-07-03 00:25:05 -0700960 * Express the locking dependencies for lockdep:
961 */
962static inline void
963double_lock_hb(struct futex_hash_bucket *hb1, struct futex_hash_bucket *hb2)
964{
965 if (hb1 <= hb2) {
966 spin_lock(&hb1->lock);
967 if (hb1 < hb2)
968 spin_lock_nested(&hb2->lock, SINGLE_DEPTH_NESTING);
969 } else { /* hb1 > hb2 */
970 spin_lock(&hb2->lock);
971 spin_lock_nested(&hb1->lock, SINGLE_DEPTH_NESTING);
972 }
973}
974
Darren Hart5eb3dc62009-03-12 00:55:52 -0700975static inline void
976double_unlock_hb(struct futex_hash_bucket *hb1, struct futex_hash_bucket *hb2)
977{
Darren Hartf061d352009-03-12 15:11:18 -0700978 spin_unlock(&hb1->lock);
Ingo Molnar88f502f2009-03-13 10:32:07 +0100979 if (hb1 != hb2)
980 spin_unlock(&hb2->lock);
Darren Hart5eb3dc62009-03-12 00:55:52 -0700981}
982
Ingo Molnar8b8f3192006-07-03 00:25:05 -0700983/*
Darren Hartb2d09942009-03-12 00:55:37 -0700984 * Wake up waiters matching bitset queued on this futex (uaddr).
Linus Torvalds1da177e2005-04-16 15:20:36 -0700985 */
Darren Hartb41277d2010-11-08 13:10:09 -0800986static int
987futex_wake(u32 __user *uaddr, unsigned int flags, int nr_wake, u32 bitset)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700988{
Ingo Molnare2970f22006-06-27 02:54:47 -0700989 struct futex_hash_bucket *hb;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700990 struct futex_q *this, *next;
Pierre Peifferec92d082007-05-09 02:35:00 -0700991 struct plist_head *head;
Peter Zijlstra38d47c12008-09-26 19:32:20 +0200992 union futex_key key = FUTEX_KEY_INIT;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700993 int ret;
994
Thomas Gleixnercd689982008-02-01 17:45:14 +0100995 if (!bitset)
996 return -EINVAL;
997
Shawn Bohrer9ea71502011-06-30 11:21:32 -0500998 ret = get_futex_key(uaddr, flags & FLAGS_SHARED, &key, VERIFY_READ);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700999 if (unlikely(ret != 0))
1000 goto out;
1001
Ingo Molnare2970f22006-06-27 02:54:47 -07001002 hb = hash_futex(&key);
1003 spin_lock(&hb->lock);
1004 head = &hb->chain;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001005
Pierre Peifferec92d082007-05-09 02:35:00 -07001006 plist_for_each_entry_safe(this, next, head, list) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001007 if (match_futex (&this->key, &key)) {
Darren Hart52400ba2009-04-03 13:40:49 -07001008 if (this->pi_state || this->rt_waiter) {
Ingo Molnared6f7b12006-07-01 04:35:46 -07001009 ret = -EINVAL;
1010 break;
1011 }
Thomas Gleixnercd689982008-02-01 17:45:14 +01001012
1013 /* Check if one of the bits is set in both bitsets */
1014 if (!(this->bitset & bitset))
1015 continue;
1016
Linus Torvalds1da177e2005-04-16 15:20:36 -07001017 wake_futex(this);
1018 if (++ret >= nr_wake)
1019 break;
1020 }
1021 }
1022
Ingo Molnare2970f22006-06-27 02:54:47 -07001023 spin_unlock(&hb->lock);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001024 put_futex_key(&key);
Darren Hart42d35d42008-12-29 15:49:53 -08001025out:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001026 return ret;
1027}
1028
1029/*
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001030 * Wake up all waiters hashed on the physical page that is mapped
1031 * to this virtual address:
1032 */
Ingo Molnare2970f22006-06-27 02:54:47 -07001033static int
Darren Hartb41277d2010-11-08 13:10:09 -08001034futex_wake_op(u32 __user *uaddr1, unsigned int flags, u32 __user *uaddr2,
Ingo Molnare2970f22006-06-27 02:54:47 -07001035 int nr_wake, int nr_wake2, int op)
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001036{
Peter Zijlstra38d47c12008-09-26 19:32:20 +02001037 union futex_key key1 = FUTEX_KEY_INIT, key2 = FUTEX_KEY_INIT;
Ingo Molnare2970f22006-06-27 02:54:47 -07001038 struct futex_hash_bucket *hb1, *hb2;
Pierre Peifferec92d082007-05-09 02:35:00 -07001039 struct plist_head *head;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001040 struct futex_q *this, *next;
Darren Harte4dc5b72009-03-12 00:56:13 -07001041 int ret, op_ret;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001042
Darren Harte4dc5b72009-03-12 00:56:13 -07001043retry:
Shawn Bohrer9ea71502011-06-30 11:21:32 -05001044 ret = get_futex_key(uaddr1, flags & FLAGS_SHARED, &key1, VERIFY_READ);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001045 if (unlikely(ret != 0))
1046 goto out;
Shawn Bohrer9ea71502011-06-30 11:21:32 -05001047 ret = get_futex_key(uaddr2, flags & FLAGS_SHARED, &key2, VERIFY_WRITE);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001048 if (unlikely(ret != 0))
Darren Hart42d35d42008-12-29 15:49:53 -08001049 goto out_put_key1;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001050
Ingo Molnare2970f22006-06-27 02:54:47 -07001051 hb1 = hash_futex(&key1);
1052 hb2 = hash_futex(&key2);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001053
Darren Harte4dc5b72009-03-12 00:56:13 -07001054retry_private:
Thomas Gleixnereaaea802009-10-04 09:34:17 +02001055 double_lock_hb(hb1, hb2);
Ingo Molnare2970f22006-06-27 02:54:47 -07001056 op_ret = futex_atomic_op_inuser(op, uaddr2);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001057 if (unlikely(op_ret < 0)) {
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001058
Darren Hart5eb3dc62009-03-12 00:55:52 -07001059 double_unlock_hb(hb1, hb2);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001060
David Howells7ee1dd32006-01-06 00:11:44 -08001061#ifndef CONFIG_MMU
Ingo Molnare2970f22006-06-27 02:54:47 -07001062 /*
1063 * we don't get EFAULT from MMU faults if we don't have an MMU,
1064 * but we might get them from range checking
1065 */
David Howells7ee1dd32006-01-06 00:11:44 -08001066 ret = op_ret;
Darren Hart42d35d42008-12-29 15:49:53 -08001067 goto out_put_keys;
David Howells7ee1dd32006-01-06 00:11:44 -08001068#endif
1069
David Gibson796f8d92005-11-07 00:59:33 -08001070 if (unlikely(op_ret != -EFAULT)) {
1071 ret = op_ret;
Darren Hart42d35d42008-12-29 15:49:53 -08001072 goto out_put_keys;
David Gibson796f8d92005-11-07 00:59:33 -08001073 }
1074
Thomas Gleixnerd0725992009-06-11 23:15:43 +02001075 ret = fault_in_user_writeable(uaddr2);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001076 if (ret)
Darren Hartde87fcc2009-03-12 00:55:46 -07001077 goto out_put_keys;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001078
Darren Hartb41277d2010-11-08 13:10:09 -08001079 if (!(flags & FLAGS_SHARED))
Darren Harte4dc5b72009-03-12 00:56:13 -07001080 goto retry_private;
1081
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001082 put_futex_key(&key2);
1083 put_futex_key(&key1);
Darren Harte4dc5b72009-03-12 00:56:13 -07001084 goto retry;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001085 }
1086
Ingo Molnare2970f22006-06-27 02:54:47 -07001087 head = &hb1->chain;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001088
Pierre Peifferec92d082007-05-09 02:35:00 -07001089 plist_for_each_entry_safe(this, next, head, list) {
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001090 if (match_futex (&this->key, &key1)) {
Darren Hartfceca5e2012-11-26 16:29:56 -08001091 if (this->pi_state || this->rt_waiter) {
1092 ret = -EINVAL;
1093 goto out_unlock;
1094 }
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001095 wake_futex(this);
1096 if (++ret >= nr_wake)
1097 break;
1098 }
1099 }
1100
1101 if (op_ret > 0) {
Ingo Molnare2970f22006-06-27 02:54:47 -07001102 head = &hb2->chain;
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001103
1104 op_ret = 0;
Pierre Peifferec92d082007-05-09 02:35:00 -07001105 plist_for_each_entry_safe(this, next, head, list) {
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001106 if (match_futex (&this->key, &key2)) {
Darren Hartfceca5e2012-11-26 16:29:56 -08001107 if (this->pi_state || this->rt_waiter) {
1108 ret = -EINVAL;
1109 goto out_unlock;
1110 }
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001111 wake_futex(this);
1112 if (++op_ret >= nr_wake2)
1113 break;
1114 }
1115 }
1116 ret += op_ret;
1117 }
1118
Darren Hartfceca5e2012-11-26 16:29:56 -08001119out_unlock:
Darren Hart5eb3dc62009-03-12 00:55:52 -07001120 double_unlock_hb(hb1, hb2);
Darren Hart42d35d42008-12-29 15:49:53 -08001121out_put_keys:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001122 put_futex_key(&key2);
Darren Hart42d35d42008-12-29 15:49:53 -08001123out_put_key1:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001124 put_futex_key(&key1);
Darren Hart42d35d42008-12-29 15:49:53 -08001125out:
Jakub Jelinek4732efb2005-09-06 15:16:25 -07001126 return ret;
1127}
1128
Darren Hart9121e472009-04-03 13:40:31 -07001129/**
1130 * requeue_futex() - Requeue a futex_q from one hb to another
1131 * @q: the futex_q to requeue
1132 * @hb1: the source hash_bucket
1133 * @hb2: the target hash_bucket
1134 * @key2: the new key for the requeued futex_q
1135 */
1136static inline
1137void requeue_futex(struct futex_q *q, struct futex_hash_bucket *hb1,
1138 struct futex_hash_bucket *hb2, union futex_key *key2)
1139{
1140
1141 /*
1142 * If key1 and key2 hash to the same bucket, no need to
1143 * requeue.
1144 */
1145 if (likely(&hb1->chain != &hb2->chain)) {
1146 plist_del(&q->list, &hb1->chain);
1147 plist_add(&q->list, &hb2->chain);
1148 q->lock_ptr = &hb2->lock;
Darren Hart9121e472009-04-03 13:40:31 -07001149 }
1150 get_futex_key_refs(key2);
1151 q->key = *key2;
1152}
1153
Darren Hart52400ba2009-04-03 13:40:49 -07001154/**
1155 * requeue_pi_wake_futex() - Wake a task that acquired the lock during requeue
Darren Hartd96ee562009-09-21 22:30:22 -07001156 * @q: the futex_q
1157 * @key: the key of the requeue target futex
1158 * @hb: the hash_bucket of the requeue target futex
Darren Hart52400ba2009-04-03 13:40:49 -07001159 *
1160 * During futex_requeue, with requeue_pi=1, it is possible to acquire the
1161 * target futex if it is uncontended or via a lock steal. Set the futex_q key
1162 * to the requeue target futex so the waiter can detect the wakeup on the right
1163 * futex, but remove it from the hb and NULL the rt_waiter so it can detect
Darren Hartbeda2c72009-08-09 15:34:39 -07001164 * atomic lock acquisition. Set the q->lock_ptr to the requeue target hb->lock
1165 * to protect access to the pi_state to fixup the owner later. Must be called
1166 * with both q->lock_ptr and hb->lock held.
Darren Hart52400ba2009-04-03 13:40:49 -07001167 */
1168static inline
Darren Hartbeda2c72009-08-09 15:34:39 -07001169void requeue_pi_wake_futex(struct futex_q *q, union futex_key *key,
1170 struct futex_hash_bucket *hb)
Darren Hart52400ba2009-04-03 13:40:49 -07001171{
Darren Hart52400ba2009-04-03 13:40:49 -07001172 get_futex_key_refs(key);
1173 q->key = *key;
1174
Lai Jiangshan2e129782010-12-22 14:18:50 +08001175 __unqueue_futex(q);
Darren Hart52400ba2009-04-03 13:40:49 -07001176
1177 WARN_ON(!q->rt_waiter);
1178 q->rt_waiter = NULL;
1179
Darren Hartbeda2c72009-08-09 15:34:39 -07001180 q->lock_ptr = &hb->lock;
Darren Hartbeda2c72009-08-09 15:34:39 -07001181
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +02001182 wake_up_state(q->task, TASK_NORMAL);
Darren Hart52400ba2009-04-03 13:40:49 -07001183}
1184
1185/**
1186 * futex_proxy_trylock_atomic() - Attempt an atomic lock for the top waiter
Darren Hartbab5bc92009-04-07 23:23:50 -07001187 * @pifutex: the user address of the to futex
1188 * @hb1: the from futex hash bucket, must be locked by the caller
1189 * @hb2: the to futex hash bucket, must be locked by the caller
1190 * @key1: the from futex key
1191 * @key2: the to futex key
1192 * @ps: address to store the pi_state pointer
1193 * @set_waiters: force setting the FUTEX_WAITERS bit (1) or not (0)
Darren Hart52400ba2009-04-03 13:40:49 -07001194 *
1195 * Try and get the lock on behalf of the top waiter if we can do it atomically.
Darren Hartbab5bc92009-04-07 23:23:50 -07001196 * Wake the top waiter if we succeed. If the caller specified set_waiters,
1197 * then direct futex_lock_pi_atomic() to force setting the FUTEX_WAITERS bit.
1198 * hb1 and hb2 must be held by the caller.
Darren Hart52400ba2009-04-03 13:40:49 -07001199 *
1200 * Returns:
1201 * 0 - failed to acquire the lock atomicly
1202 * 1 - acquired the lock
1203 * <0 - error
1204 */
1205static int futex_proxy_trylock_atomic(u32 __user *pifutex,
1206 struct futex_hash_bucket *hb1,
1207 struct futex_hash_bucket *hb2,
1208 union futex_key *key1, union futex_key *key2,
Darren Hartbab5bc92009-04-07 23:23:50 -07001209 struct futex_pi_state **ps, int set_waiters)
Darren Hart52400ba2009-04-03 13:40:49 -07001210{
Darren Hartbab5bc92009-04-07 23:23:50 -07001211 struct futex_q *top_waiter = NULL;
Darren Hart52400ba2009-04-03 13:40:49 -07001212 u32 curval;
1213 int ret;
1214
1215 if (get_futex_value_locked(&curval, pifutex))
1216 return -EFAULT;
1217
Darren Hartbab5bc92009-04-07 23:23:50 -07001218 /*
1219 * Find the top_waiter and determine if there are additional waiters.
1220 * If the caller intends to requeue more than 1 waiter to pifutex,
1221 * force futex_lock_pi_atomic() to set the FUTEX_WAITERS bit now,
1222 * as we have means to handle the possible fault. If not, don't set
1223 * the bit unecessarily as it will force the subsequent unlock to enter
1224 * the kernel.
1225 */
Darren Hart52400ba2009-04-03 13:40:49 -07001226 top_waiter = futex_top_waiter(hb1, key1);
1227
1228 /* There are no waiters, nothing for us to do. */
1229 if (!top_waiter)
1230 return 0;
1231
Darren Hart84bc4af2009-08-13 17:36:53 -07001232 /* Ensure we requeue to the expected futex. */
1233 if (!match_futex(top_waiter->requeue_pi_key, key2))
1234 return -EINVAL;
1235
Darren Hart52400ba2009-04-03 13:40:49 -07001236 /*
Darren Hartbab5bc92009-04-07 23:23:50 -07001237 * Try to take the lock for top_waiter. Set the FUTEX_WAITERS bit in
1238 * the contended case or if set_waiters is 1. The pi_state is returned
1239 * in ps in contended cases.
Darren Hart52400ba2009-04-03 13:40:49 -07001240 */
Darren Hartbab5bc92009-04-07 23:23:50 -07001241 ret = futex_lock_pi_atomic(pifutex, hb2, key2, ps, top_waiter->task,
1242 set_waiters);
Darren Hart52400ba2009-04-03 13:40:49 -07001243 if (ret == 1)
Darren Hartbeda2c72009-08-09 15:34:39 -07001244 requeue_pi_wake_futex(top_waiter, key2, hb2);
Darren Hart52400ba2009-04-03 13:40:49 -07001245
1246 return ret;
1247}
1248
1249/**
1250 * futex_requeue() - Requeue waiters from uaddr1 to uaddr2
Randy Dunlapfb62db22010-10-13 11:02:34 -07001251 * @uaddr1: source futex user address
Darren Hartb41277d2010-11-08 13:10:09 -08001252 * @flags: futex flags (FLAGS_SHARED, etc.)
Randy Dunlapfb62db22010-10-13 11:02:34 -07001253 * @uaddr2: target futex user address
1254 * @nr_wake: number of waiters to wake (must be 1 for requeue_pi)
1255 * @nr_requeue: number of waiters to requeue (0-INT_MAX)
1256 * @cmpval: @uaddr1 expected value (or %NULL)
1257 * @requeue_pi: if we are attempting to requeue from a non-pi futex to a
Darren Hartb41277d2010-11-08 13:10:09 -08001258 * pi futex (pi to pi requeue is not supported)
Darren Hart52400ba2009-04-03 13:40:49 -07001259 *
1260 * Requeue waiters on uaddr1 to uaddr2. In the requeue_pi case, try to acquire
1261 * uaddr2 atomically on behalf of the top waiter.
1262 *
1263 * Returns:
1264 * >=0 - on success, the number of tasks requeued or woken
1265 * <0 - on error
Linus Torvalds1da177e2005-04-16 15:20:36 -07001266 */
Darren Hartb41277d2010-11-08 13:10:09 -08001267static int futex_requeue(u32 __user *uaddr1, unsigned int flags,
1268 u32 __user *uaddr2, int nr_wake, int nr_requeue,
1269 u32 *cmpval, int requeue_pi)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001270{
Peter Zijlstra38d47c12008-09-26 19:32:20 +02001271 union futex_key key1 = FUTEX_KEY_INIT, key2 = FUTEX_KEY_INIT;
Darren Hart52400ba2009-04-03 13:40:49 -07001272 int drop_count = 0, task_count = 0, ret;
1273 struct futex_pi_state *pi_state = NULL;
Ingo Molnare2970f22006-06-27 02:54:47 -07001274 struct futex_hash_bucket *hb1, *hb2;
Pierre Peifferec92d082007-05-09 02:35:00 -07001275 struct plist_head *head1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001276 struct futex_q *this, *next;
Darren Hart52400ba2009-04-03 13:40:49 -07001277 u32 curval2;
1278
1279 if (requeue_pi) {
1280 /*
1281 * requeue_pi requires a pi_state, try to allocate it now
1282 * without any locks in case it fails.
1283 */
1284 if (refill_pi_state_cache())
1285 return -ENOMEM;
1286 /*
1287 * requeue_pi must wake as many tasks as it can, up to nr_wake
1288 * + nr_requeue, since it acquires the rt_mutex prior to
1289 * returning to userspace, so as to not leave the rt_mutex with
1290 * waiters and no owner. However, second and third wake-ups
1291 * cannot be predicted as they involve race conditions with the
1292 * first wake and a fault while looking up the pi_state. Both
1293 * pthread_cond_signal() and pthread_cond_broadcast() should
1294 * use nr_wake=1.
1295 */
1296 if (nr_wake != 1)
1297 return -EINVAL;
1298 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001299
Darren Hart42d35d42008-12-29 15:49:53 -08001300retry:
Darren Hart52400ba2009-04-03 13:40:49 -07001301 if (pi_state != NULL) {
1302 /*
1303 * We will have to lookup the pi_state again, so free this one
1304 * to keep the accounting correct.
1305 */
1306 free_pi_state(pi_state);
1307 pi_state = NULL;
1308 }
1309
Shawn Bohrer9ea71502011-06-30 11:21:32 -05001310 ret = get_futex_key(uaddr1, flags & FLAGS_SHARED, &key1, VERIFY_READ);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001311 if (unlikely(ret != 0))
1312 goto out;
Shawn Bohrer9ea71502011-06-30 11:21:32 -05001313 ret = get_futex_key(uaddr2, flags & FLAGS_SHARED, &key2,
1314 requeue_pi ? VERIFY_WRITE : VERIFY_READ);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001315 if (unlikely(ret != 0))
Darren Hart42d35d42008-12-29 15:49:53 -08001316 goto out_put_key1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001317
Ingo Molnare2970f22006-06-27 02:54:47 -07001318 hb1 = hash_futex(&key1);
1319 hb2 = hash_futex(&key2);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001320
Darren Harte4dc5b72009-03-12 00:56:13 -07001321retry_private:
Ingo Molnar8b8f3192006-07-03 00:25:05 -07001322 double_lock_hb(hb1, hb2);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001323
Ingo Molnare2970f22006-06-27 02:54:47 -07001324 if (likely(cmpval != NULL)) {
1325 u32 curval;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001326
Ingo Molnare2970f22006-06-27 02:54:47 -07001327 ret = get_futex_value_locked(&curval, uaddr1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001328
1329 if (unlikely(ret)) {
Darren Hart5eb3dc62009-03-12 00:55:52 -07001330 double_unlock_hb(hb1, hb2);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001331
Darren Harte4dc5b72009-03-12 00:56:13 -07001332 ret = get_user(curval, uaddr1);
1333 if (ret)
1334 goto out_put_keys;
1335
Darren Hartb41277d2010-11-08 13:10:09 -08001336 if (!(flags & FLAGS_SHARED))
Darren Harte4dc5b72009-03-12 00:56:13 -07001337 goto retry_private;
1338
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001339 put_futex_key(&key2);
1340 put_futex_key(&key1);
Darren Harte4dc5b72009-03-12 00:56:13 -07001341 goto retry;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001342 }
Ingo Molnare2970f22006-06-27 02:54:47 -07001343 if (curval != *cmpval) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001344 ret = -EAGAIN;
1345 goto out_unlock;
1346 }
1347 }
1348
Darren Hart52400ba2009-04-03 13:40:49 -07001349 if (requeue_pi && (task_count - nr_wake < nr_requeue)) {
Darren Hartbab5bc92009-04-07 23:23:50 -07001350 /*
1351 * Attempt to acquire uaddr2 and wake the top waiter. If we
1352 * intend to requeue waiters, force setting the FUTEX_WAITERS
1353 * bit. We force this here where we are able to easily handle
1354 * faults rather in the requeue loop below.
1355 */
Darren Hart52400ba2009-04-03 13:40:49 -07001356 ret = futex_proxy_trylock_atomic(uaddr2, hb1, hb2, &key1,
Darren Hartbab5bc92009-04-07 23:23:50 -07001357 &key2, &pi_state, nr_requeue);
Darren Hart52400ba2009-04-03 13:40:49 -07001358
1359 /*
1360 * At this point the top_waiter has either taken uaddr2 or is
1361 * waiting on it. If the former, then the pi_state will not
1362 * exist yet, look it up one more time to ensure we have a
1363 * reference to it.
1364 */
1365 if (ret == 1) {
1366 WARN_ON(pi_state);
Darren Hart89061d32009-10-15 15:30:48 -07001367 drop_count++;
Darren Hart52400ba2009-04-03 13:40:49 -07001368 task_count++;
1369 ret = get_futex_value_locked(&curval2, uaddr2);
1370 if (!ret)
1371 ret = lookup_pi_state(curval2, hb2, &key2,
1372 &pi_state);
1373 }
1374
1375 switch (ret) {
1376 case 0:
1377 break;
1378 case -EFAULT:
1379 double_unlock_hb(hb1, hb2);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001380 put_futex_key(&key2);
1381 put_futex_key(&key1);
Thomas Gleixnerd0725992009-06-11 23:15:43 +02001382 ret = fault_in_user_writeable(uaddr2);
Darren Hart52400ba2009-04-03 13:40:49 -07001383 if (!ret)
1384 goto retry;
1385 goto out;
1386 case -EAGAIN:
1387 /* The owner was exiting, try again. */
1388 double_unlock_hb(hb1, hb2);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001389 put_futex_key(&key2);
1390 put_futex_key(&key1);
Darren Hart52400ba2009-04-03 13:40:49 -07001391 cond_resched();
1392 goto retry;
1393 default:
1394 goto out_unlock;
1395 }
1396 }
1397
Ingo Molnare2970f22006-06-27 02:54:47 -07001398 head1 = &hb1->chain;
Pierre Peifferec92d082007-05-09 02:35:00 -07001399 plist_for_each_entry_safe(this, next, head1, list) {
Darren Hart52400ba2009-04-03 13:40:49 -07001400 if (task_count - nr_wake >= nr_requeue)
1401 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001402
Darren Hart52400ba2009-04-03 13:40:49 -07001403 if (!match_futex(&this->key, &key1))
1404 continue;
1405
Darren Hart392741e2009-08-07 15:20:48 -07001406 /*
1407 * FUTEX_WAIT_REQEUE_PI and FUTEX_CMP_REQUEUE_PI should always
1408 * be paired with each other and no other futex ops.
Darren Hartfceca5e2012-11-26 16:29:56 -08001409 *
1410 * We should never be requeueing a futex_q with a pi_state,
1411 * which is awaiting a futex_unlock_pi().
Darren Hart392741e2009-08-07 15:20:48 -07001412 */
1413 if ((requeue_pi && !this->rt_waiter) ||
Darren Hartfceca5e2012-11-26 16:29:56 -08001414 (!requeue_pi && this->rt_waiter) ||
1415 this->pi_state) {
Darren Hart392741e2009-08-07 15:20:48 -07001416 ret = -EINVAL;
1417 break;
1418 }
Darren Hart52400ba2009-04-03 13:40:49 -07001419
1420 /*
1421 * Wake nr_wake waiters. For requeue_pi, if we acquired the
1422 * lock, we already woke the top_waiter. If not, it will be
1423 * woken by futex_unlock_pi().
1424 */
1425 if (++task_count <= nr_wake && !requeue_pi) {
1426 wake_futex(this);
1427 continue;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001428 }
Darren Hart52400ba2009-04-03 13:40:49 -07001429
Darren Hart84bc4af2009-08-13 17:36:53 -07001430 /* Ensure we requeue to the expected futex for requeue_pi. */
1431 if (requeue_pi && !match_futex(this->requeue_pi_key, &key2)) {
1432 ret = -EINVAL;
1433 break;
1434 }
1435
Darren Hart52400ba2009-04-03 13:40:49 -07001436 /*
1437 * Requeue nr_requeue waiters and possibly one more in the case
1438 * of requeue_pi if we couldn't acquire the lock atomically.
1439 */
1440 if (requeue_pi) {
1441 /* Prepare the waiter to take the rt_mutex. */
1442 atomic_inc(&pi_state->refcount);
1443 this->pi_state = pi_state;
1444 ret = rt_mutex_start_proxy_lock(&pi_state->pi_mutex,
1445 this->rt_waiter,
1446 this->task, 1);
1447 if (ret == 1) {
1448 /* We got the lock. */
Darren Hartbeda2c72009-08-09 15:34:39 -07001449 requeue_pi_wake_futex(this, &key2, hb2);
Darren Hart89061d32009-10-15 15:30:48 -07001450 drop_count++;
Darren Hart52400ba2009-04-03 13:40:49 -07001451 continue;
1452 } else if (ret) {
1453 /* -EDEADLK */
1454 this->pi_state = NULL;
1455 free_pi_state(pi_state);
1456 goto out_unlock;
1457 }
1458 }
1459 requeue_futex(this, hb1, hb2, &key2);
1460 drop_count++;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001461 }
1462
1463out_unlock:
Darren Hart5eb3dc62009-03-12 00:55:52 -07001464 double_unlock_hb(hb1, hb2);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001465
Darren Hartcd84a422009-04-02 14:19:38 -07001466 /*
1467 * drop_futex_key_refs() must be called outside the spinlocks. During
1468 * the requeue we moved futex_q's from the hash bucket at key1 to the
1469 * one at key2 and updated their key pointer. We no longer need to
1470 * hold the references to key1.
1471 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001472 while (--drop_count >= 0)
Rusty Russell9adef582007-05-08 00:26:42 -07001473 drop_futex_key_refs(&key1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001474
Darren Hart42d35d42008-12-29 15:49:53 -08001475out_put_keys:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001476 put_futex_key(&key2);
Darren Hart42d35d42008-12-29 15:49:53 -08001477out_put_key1:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001478 put_futex_key(&key1);
Darren Hart42d35d42008-12-29 15:49:53 -08001479out:
Darren Hart52400ba2009-04-03 13:40:49 -07001480 if (pi_state != NULL)
1481 free_pi_state(pi_state);
1482 return ret ? ret : task_count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001483}
1484
1485/* The key must be already stored in q->key. */
Eric Sesterhenn82af7ac2008-01-25 10:40:46 +01001486static inline struct futex_hash_bucket *queue_lock(struct futex_q *q)
Namhyung Kim15e408c2010-09-14 21:43:48 +09001487 __acquires(&hb->lock)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001488{
Ingo Molnare2970f22006-06-27 02:54:47 -07001489 struct futex_hash_bucket *hb;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001490
Ingo Molnare2970f22006-06-27 02:54:47 -07001491 hb = hash_futex(&q->key);
1492 q->lock_ptr = &hb->lock;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001493
Ingo Molnare2970f22006-06-27 02:54:47 -07001494 spin_lock(&hb->lock);
1495 return hb;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001496}
1497
Darren Hartd40d65c2009-09-21 22:30:15 -07001498static inline void
1499queue_unlock(struct futex_q *q, struct futex_hash_bucket *hb)
Namhyung Kim15e408c2010-09-14 21:43:48 +09001500 __releases(&hb->lock)
Darren Hartd40d65c2009-09-21 22:30:15 -07001501{
1502 spin_unlock(&hb->lock);
Darren Hartd40d65c2009-09-21 22:30:15 -07001503}
1504
1505/**
1506 * queue_me() - Enqueue the futex_q on the futex_hash_bucket
1507 * @q: The futex_q to enqueue
1508 * @hb: The destination hash bucket
1509 *
1510 * The hb->lock must be held by the caller, and is released here. A call to
1511 * queue_me() is typically paired with exactly one call to unqueue_me(). The
1512 * exceptions involve the PI related operations, which may use unqueue_me_pi()
1513 * or nothing if the unqueue is done as part of the wake process and the unqueue
1514 * state is implicit in the state of woken task (see futex_wait_requeue_pi() for
1515 * an example).
1516 */
Eric Sesterhenn82af7ac2008-01-25 10:40:46 +01001517static inline void queue_me(struct futex_q *q, struct futex_hash_bucket *hb)
Namhyung Kim15e408c2010-09-14 21:43:48 +09001518 __releases(&hb->lock)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001519{
Pierre Peifferec92d082007-05-09 02:35:00 -07001520 int prio;
1521
1522 /*
1523 * The priority used to register this element is
1524 * - either the real thread-priority for the real-time threads
1525 * (i.e. threads with a priority lower than MAX_RT_PRIO)
1526 * - or MAX_RT_PRIO for non-RT threads.
1527 * Thus, all RT-threads are woken first in priority order, and
1528 * the others are woken last, in FIFO order.
1529 */
1530 prio = min(current->normal_prio, MAX_RT_PRIO);
1531
1532 plist_node_init(&q->list, prio);
Pierre Peifferec92d082007-05-09 02:35:00 -07001533 plist_add(&q->list, &hb->chain);
Ingo Molnarc87e2832006-06-27 02:54:58 -07001534 q->task = current;
Ingo Molnare2970f22006-06-27 02:54:47 -07001535 spin_unlock(&hb->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001536}
1537
Darren Hartd40d65c2009-09-21 22:30:15 -07001538/**
1539 * unqueue_me() - Remove the futex_q from its futex_hash_bucket
1540 * @q: The futex_q to unqueue
1541 *
1542 * The q->lock_ptr must not be held by the caller. A call to unqueue_me() must
1543 * be paired with exactly one earlier call to queue_me().
1544 *
1545 * Returns:
1546 * 1 - if the futex_q was still queued (and we removed unqueued it)
1547 * 0 - if the futex_q was already removed by the waking thread
Linus Torvalds1da177e2005-04-16 15:20:36 -07001548 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001549static int unqueue_me(struct futex_q *q)
1550{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001551 spinlock_t *lock_ptr;
Ingo Molnare2970f22006-06-27 02:54:47 -07001552 int ret = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001553
1554 /* In the common case we don't take the spinlock, which is nice. */
Darren Hart42d35d42008-12-29 15:49:53 -08001555retry:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001556 lock_ptr = q->lock_ptr;
Christian Borntraegere91467e2006-08-05 12:13:52 -07001557 barrier();
Stephen Hemmingerc80544d2007-10-18 03:07:05 -07001558 if (lock_ptr != NULL) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001559 spin_lock(lock_ptr);
1560 /*
1561 * q->lock_ptr can change between reading it and
1562 * spin_lock(), causing us to take the wrong lock. This
1563 * corrects the race condition.
1564 *
1565 * Reasoning goes like this: if we have the wrong lock,
1566 * q->lock_ptr must have changed (maybe several times)
1567 * between reading it and the spin_lock(). It can
1568 * change again after the spin_lock() but only if it was
1569 * already changed before the spin_lock(). It cannot,
1570 * however, change back to the original value. Therefore
1571 * we can detect whether we acquired the correct lock.
1572 */
1573 if (unlikely(lock_ptr != q->lock_ptr)) {
1574 spin_unlock(lock_ptr);
1575 goto retry;
1576 }
Lai Jiangshan2e129782010-12-22 14:18:50 +08001577 __unqueue_futex(q);
Ingo Molnarc87e2832006-06-27 02:54:58 -07001578
1579 BUG_ON(q->pi_state);
1580
Linus Torvalds1da177e2005-04-16 15:20:36 -07001581 spin_unlock(lock_ptr);
1582 ret = 1;
1583 }
1584
Rusty Russell9adef582007-05-08 00:26:42 -07001585 drop_futex_key_refs(&q->key);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001586 return ret;
1587}
1588
Ingo Molnarc87e2832006-06-27 02:54:58 -07001589/*
1590 * PI futexes can not be requeued and must remove themself from the
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001591 * hash bucket. The hash bucket lock (i.e. lock_ptr) is held on entry
1592 * and dropped here.
Ingo Molnarc87e2832006-06-27 02:54:58 -07001593 */
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001594static void unqueue_me_pi(struct futex_q *q)
Namhyung Kim15e408c2010-09-14 21:43:48 +09001595 __releases(q->lock_ptr)
Ingo Molnarc87e2832006-06-27 02:54:58 -07001596{
Lai Jiangshan2e129782010-12-22 14:18:50 +08001597 __unqueue_futex(q);
Ingo Molnarc87e2832006-06-27 02:54:58 -07001598
1599 BUG_ON(!q->pi_state);
1600 free_pi_state(q->pi_state);
1601 q->pi_state = NULL;
1602
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001603 spin_unlock(q->lock_ptr);
Ingo Molnarc87e2832006-06-27 02:54:58 -07001604}
1605
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001606/*
Thomas Gleixnercdf71a12008-01-08 19:47:38 +01001607 * Fixup the pi_state owner with the new owner.
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001608 *
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07001609 * Must be called with hash bucket lock held and mm->sem held for non
1610 * private futexes.
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001611 */
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07001612static int fixup_pi_state_owner(u32 __user *uaddr, struct futex_q *q,
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001613 struct task_struct *newowner)
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001614{
Thomas Gleixnercdf71a12008-01-08 19:47:38 +01001615 u32 newtid = task_pid_vnr(newowner) | FUTEX_WAITERS;
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001616 struct futex_pi_state *pi_state = q->pi_state;
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001617 struct task_struct *oldowner = pi_state->owner;
Vitaliy Ivanov7cfdaf32011-07-07 15:10:31 +03001618 u32 uval, uninitialized_var(curval), newval;
Darren Harte4dc5b72009-03-12 00:56:13 -07001619 int ret;
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001620
1621 /* Owner died? */
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001622 if (!pi_state->owner)
1623 newtid |= FUTEX_OWNER_DIED;
1624
1625 /*
1626 * We are here either because we stole the rtmutex from the
Lai Jiangshan81612392011-01-14 17:09:41 +08001627 * previous highest priority waiter or we are the highest priority
1628 * waiter but failed to get the rtmutex the first time.
1629 * We have to replace the newowner TID in the user space variable.
1630 * This must be atomic as we have to preserve the owner died bit here.
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001631 *
Darren Hartb2d09942009-03-12 00:55:37 -07001632 * Note: We write the user space value _before_ changing the pi_state
1633 * because we can fault here. Imagine swapped out pages or a fork
1634 * that marked all the anonymous memory readonly for cow.
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001635 *
1636 * Modifying pi_state _before_ the user space value would
1637 * leave the pi_state in an inconsistent state when we fault
1638 * here, because we need to drop the hash bucket lock to
1639 * handle the fault. This might be observed in the PID check
1640 * in lookup_pi_state.
1641 */
1642retry:
1643 if (get_futex_value_locked(&uval, uaddr))
1644 goto handle_fault;
1645
1646 while (1) {
1647 newval = (uval & FUTEX_OWNER_DIED) | newtid;
1648
Michel Lespinasse37a9d912011-03-10 18:48:51 -08001649 if (cmpxchg_futex_value_locked(&curval, uaddr, uval, newval))
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001650 goto handle_fault;
1651 if (curval == uval)
1652 break;
1653 uval = curval;
1654 }
1655
1656 /*
1657 * We fixed up user space. Now we need to fix the pi_state
1658 * itself.
1659 */
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001660 if (pi_state->owner != NULL) {
Thomas Gleixner1d615482009-11-17 14:54:03 +01001661 raw_spin_lock_irq(&pi_state->owner->pi_lock);
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001662 WARN_ON(list_empty(&pi_state->list));
1663 list_del_init(&pi_state->list);
Thomas Gleixner1d615482009-11-17 14:54:03 +01001664 raw_spin_unlock_irq(&pi_state->owner->pi_lock);
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001665 }
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001666
Thomas Gleixnercdf71a12008-01-08 19:47:38 +01001667 pi_state->owner = newowner;
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001668
Thomas Gleixner1d615482009-11-17 14:54:03 +01001669 raw_spin_lock_irq(&newowner->pi_lock);
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001670 WARN_ON(!list_empty(&pi_state->list));
Thomas Gleixnercdf71a12008-01-08 19:47:38 +01001671 list_add(&pi_state->list, &newowner->pi_state_list);
Thomas Gleixner1d615482009-11-17 14:54:03 +01001672 raw_spin_unlock_irq(&newowner->pi_lock);
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001673 return 0;
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001674
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001675 /*
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001676 * To handle the page fault we need to drop the hash bucket
Lai Jiangshan81612392011-01-14 17:09:41 +08001677 * lock here. That gives the other task (either the highest priority
1678 * waiter itself or the task which stole the rtmutex) the
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001679 * chance to try the fixup of the pi_state. So once we are
1680 * back from handling the fault we need to check the pi_state
1681 * after reacquiring the hash bucket lock and before trying to
1682 * do another fixup. When the fixup has been done already we
1683 * simply return.
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001684 */
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001685handle_fault:
1686 spin_unlock(q->lock_ptr);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07001687
Thomas Gleixnerd0725992009-06-11 23:15:43 +02001688 ret = fault_in_user_writeable(uaddr);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07001689
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001690 spin_lock(q->lock_ptr);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07001691
Thomas Gleixner1b7558e2008-06-23 11:21:58 +02001692 /*
1693 * Check if someone else fixed it for us:
1694 */
1695 if (pi_state->owner != oldowner)
1696 return 0;
1697
1698 if (ret)
1699 return ret;
1700
1701 goto retry;
Pierre Peifferd0aa7a72007-05-09 02:35:02 -07001702}
1703
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001704static long futex_wait_restart(struct restart_block *restart);
Thomas Gleixner36cf3b52007-07-15 23:41:20 -07001705
Darren Hartca5f9522009-04-03 13:39:33 -07001706/**
Darren Hartdd973992009-04-03 13:40:02 -07001707 * fixup_owner() - Post lock pi_state and corner case management
1708 * @uaddr: user address of the futex
Darren Hartdd973992009-04-03 13:40:02 -07001709 * @q: futex_q (contains pi_state and access to the rt_mutex)
1710 * @locked: if the attempt to take the rt_mutex succeeded (1) or not (0)
1711 *
1712 * After attempting to lock an rt_mutex, this function is called to cleanup
1713 * the pi_state owner as well as handle race conditions that may allow us to
1714 * acquire the lock. Must be called with the hb lock held.
1715 *
1716 * Returns:
1717 * 1 - success, lock taken
1718 * 0 - success, lock not taken
1719 * <0 - on error (-EFAULT)
1720 */
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001721static int fixup_owner(u32 __user *uaddr, struct futex_q *q, int locked)
Darren Hartdd973992009-04-03 13:40:02 -07001722{
1723 struct task_struct *owner;
1724 int ret = 0;
1725
1726 if (locked) {
1727 /*
1728 * Got the lock. We might not be the anticipated owner if we
1729 * did a lock-steal - fix up the PI-state in that case:
1730 */
1731 if (q->pi_state->owner != current)
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001732 ret = fixup_pi_state_owner(uaddr, q, current);
Darren Hartdd973992009-04-03 13:40:02 -07001733 goto out;
1734 }
1735
1736 /*
1737 * Catch the rare case, where the lock was released when we were on the
1738 * way back before we locked the hash bucket.
1739 */
1740 if (q->pi_state->owner == current) {
1741 /*
1742 * Try to get the rt_mutex now. This might fail as some other
1743 * task acquired the rt_mutex after we removed ourself from the
1744 * rt_mutex waiters list.
1745 */
1746 if (rt_mutex_trylock(&q->pi_state->pi_mutex)) {
1747 locked = 1;
1748 goto out;
1749 }
1750
1751 /*
1752 * pi_state is incorrect, some other task did a lock steal and
1753 * we returned due to timeout or signal without taking the
Lai Jiangshan81612392011-01-14 17:09:41 +08001754 * rt_mutex. Too late.
Darren Hartdd973992009-04-03 13:40:02 -07001755 */
Lai Jiangshan81612392011-01-14 17:09:41 +08001756 raw_spin_lock(&q->pi_state->pi_mutex.wait_lock);
Darren Hartdd973992009-04-03 13:40:02 -07001757 owner = rt_mutex_owner(&q->pi_state->pi_mutex);
Lai Jiangshan81612392011-01-14 17:09:41 +08001758 if (!owner)
1759 owner = rt_mutex_next_owner(&q->pi_state->pi_mutex);
1760 raw_spin_unlock(&q->pi_state->pi_mutex.wait_lock);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001761 ret = fixup_pi_state_owner(uaddr, q, owner);
Darren Hartdd973992009-04-03 13:40:02 -07001762 goto out;
1763 }
1764
1765 /*
1766 * Paranoia check. If we did not take the lock, then we should not be
Lai Jiangshan81612392011-01-14 17:09:41 +08001767 * the owner of the rt_mutex.
Darren Hartdd973992009-04-03 13:40:02 -07001768 */
1769 if (rt_mutex_owner(&q->pi_state->pi_mutex) == current)
1770 printk(KERN_ERR "fixup_owner: ret = %d pi-mutex: %p "
1771 "pi-state %p\n", ret,
1772 q->pi_state->pi_mutex.owner,
1773 q->pi_state->owner);
1774
1775out:
1776 return ret ? ret : locked;
1777}
1778
1779/**
Darren Hartca5f9522009-04-03 13:39:33 -07001780 * futex_wait_queue_me() - queue_me() and wait for wakeup, timeout, or signal
1781 * @hb: the futex hash bucket, must be locked by the caller
1782 * @q: the futex_q to queue up on
1783 * @timeout: the prepared hrtimer_sleeper, or null for no timeout
Darren Hartca5f9522009-04-03 13:39:33 -07001784 */
1785static void futex_wait_queue_me(struct futex_hash_bucket *hb, struct futex_q *q,
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +02001786 struct hrtimer_sleeper *timeout)
Darren Hartca5f9522009-04-03 13:39:33 -07001787{
Darren Hart9beba3c2009-09-24 11:54:47 -07001788 /*
1789 * The task state is guaranteed to be set before another task can
1790 * wake it. set_current_state() is implemented using set_mb() and
1791 * queue_me() calls spin_unlock() upon completion, both serializing
1792 * access to the hash list and forcing another memory barrier.
1793 */
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +02001794 set_current_state(TASK_INTERRUPTIBLE);
Darren Hart0729e192009-09-21 22:30:38 -07001795 queue_me(q, hb);
Darren Hartca5f9522009-04-03 13:39:33 -07001796
1797 /* Arm the timer */
1798 if (timeout) {
1799 hrtimer_start_expires(&timeout->timer, HRTIMER_MODE_ABS);
1800 if (!hrtimer_active(&timeout->timer))
1801 timeout->task = NULL;
1802 }
1803
1804 /*
Darren Hart0729e192009-09-21 22:30:38 -07001805 * If we have been removed from the hash list, then another task
1806 * has tried to wake us, and we can skip the call to schedule().
Darren Hartca5f9522009-04-03 13:39:33 -07001807 */
1808 if (likely(!plist_node_empty(&q->list))) {
1809 /*
1810 * If the timer has already expired, current will already be
1811 * flagged for rescheduling. Only call schedule if there
1812 * is no timeout, or if it has yet to expire.
1813 */
1814 if (!timeout || timeout->task)
Colin Cross943ea4a2013-05-06 23:50:18 +00001815 freezable_schedule();
Darren Hartca5f9522009-04-03 13:39:33 -07001816 }
1817 __set_current_state(TASK_RUNNING);
1818}
1819
Darren Hartf8010732009-04-03 13:40:40 -07001820/**
1821 * futex_wait_setup() - Prepare to wait on a futex
1822 * @uaddr: the futex userspace address
1823 * @val: the expected value
Darren Hartb41277d2010-11-08 13:10:09 -08001824 * @flags: futex flags (FLAGS_SHARED, etc.)
Darren Hartf8010732009-04-03 13:40:40 -07001825 * @q: the associated futex_q
1826 * @hb: storage for hash_bucket pointer to be returned to caller
1827 *
1828 * Setup the futex_q and locate the hash_bucket. Get the futex value and
1829 * compare it with the expected value. Handle atomic faults internally.
1830 * Return with the hb lock held and a q.key reference on success, and unlocked
1831 * with no q.key reference on failure.
1832 *
1833 * Returns:
1834 * 0 - uaddr contains val and hb has been locked
Bart Van Asscheca4a04c2011-07-17 09:01:00 +02001835 * <1 - -EFAULT or -EWOULDBLOCK (uaddr does not contain val) and hb is unlocked
Darren Hartf8010732009-04-03 13:40:40 -07001836 */
Darren Hartb41277d2010-11-08 13:10:09 -08001837static int futex_wait_setup(u32 __user *uaddr, u32 val, unsigned int flags,
Darren Hartf8010732009-04-03 13:40:40 -07001838 struct futex_q *q, struct futex_hash_bucket **hb)
1839{
1840 u32 uval;
1841 int ret;
1842
1843 /*
1844 * Access the page AFTER the hash-bucket is locked.
1845 * Order is important:
1846 *
1847 * Userspace waiter: val = var; if (cond(val)) futex_wait(&var, val);
1848 * Userspace waker: if (cond(var)) { var = new; futex_wake(&var); }
1849 *
1850 * The basic logical guarantee of a futex is that it blocks ONLY
1851 * if cond(var) is known to be true at the time of blocking, for
Michel Lespinasse8fe8f542011-03-06 18:07:50 -08001852 * any cond. If we locked the hash-bucket after testing *uaddr, that
1853 * would open a race condition where we could block indefinitely with
Darren Hartf8010732009-04-03 13:40:40 -07001854 * cond(var) false, which would violate the guarantee.
1855 *
Michel Lespinasse8fe8f542011-03-06 18:07:50 -08001856 * On the other hand, we insert q and release the hash-bucket only
1857 * after testing *uaddr. This guarantees that futex_wait() will NOT
1858 * absorb a wakeup if *uaddr does not match the desired values
1859 * while the syscall executes.
Darren Hartf8010732009-04-03 13:40:40 -07001860 */
1861retry:
Shawn Bohrer9ea71502011-06-30 11:21:32 -05001862 ret = get_futex_key(uaddr, flags & FLAGS_SHARED, &q->key, VERIFY_READ);
Darren Hartf8010732009-04-03 13:40:40 -07001863 if (unlikely(ret != 0))
Darren Harta5a2a0c2009-04-10 09:50:05 -07001864 return ret;
Darren Hartf8010732009-04-03 13:40:40 -07001865
1866retry_private:
1867 *hb = queue_lock(q);
1868
1869 ret = get_futex_value_locked(&uval, uaddr);
1870
1871 if (ret) {
1872 queue_unlock(q, *hb);
1873
1874 ret = get_user(uval, uaddr);
1875 if (ret)
1876 goto out;
1877
Darren Hartb41277d2010-11-08 13:10:09 -08001878 if (!(flags & FLAGS_SHARED))
Darren Hartf8010732009-04-03 13:40:40 -07001879 goto retry_private;
1880
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001881 put_futex_key(&q->key);
Darren Hartf8010732009-04-03 13:40:40 -07001882 goto retry;
1883 }
1884
1885 if (uval != val) {
1886 queue_unlock(q, *hb);
1887 ret = -EWOULDBLOCK;
1888 }
1889
1890out:
1891 if (ret)
Thomas Gleixnerae791a22010-11-10 13:30:36 +01001892 put_futex_key(&q->key);
Darren Hartf8010732009-04-03 13:40:40 -07001893 return ret;
1894}
1895
Darren Hartb41277d2010-11-08 13:10:09 -08001896static int futex_wait(u32 __user *uaddr, unsigned int flags, u32 val,
1897 ktime_t *abs_time, u32 bitset)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001898{
Darren Hartca5f9522009-04-03 13:39:33 -07001899 struct hrtimer_sleeper timeout, *to = NULL;
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001900 struct restart_block *restart;
Ingo Molnare2970f22006-06-27 02:54:47 -07001901 struct futex_hash_bucket *hb;
Darren Hart5bdb05f2010-11-08 13:40:28 -08001902 struct futex_q q = futex_q_init;
Ingo Molnare2970f22006-06-27 02:54:47 -07001903 int ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001904
Thomas Gleixnercd689982008-02-01 17:45:14 +01001905 if (!bitset)
1906 return -EINVAL;
Thomas Gleixnercd689982008-02-01 17:45:14 +01001907 q.bitset = bitset;
Darren Hartca5f9522009-04-03 13:39:33 -07001908
1909 if (abs_time) {
1910 to = &timeout;
1911
Darren Hartb41277d2010-11-08 13:10:09 -08001912 hrtimer_init_on_stack(&to->timer, (flags & FLAGS_CLOCKRT) ?
1913 CLOCK_REALTIME : CLOCK_MONOTONIC,
1914 HRTIMER_MODE_ABS);
Darren Hartca5f9522009-04-03 13:39:33 -07001915 hrtimer_init_sleeper(to, current);
1916 hrtimer_set_expires_range_ns(&to->timer, *abs_time,
1917 current->timer_slack_ns);
1918 }
1919
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02001920retry:
Darren Hart7ada8762010-10-17 08:35:04 -07001921 /*
1922 * Prepare to wait on uaddr. On success, holds hb lock and increments
1923 * q.key refs.
1924 */
Darren Hartb41277d2010-11-08 13:10:09 -08001925 ret = futex_wait_setup(uaddr, val, flags, &q, &hb);
Darren Hartf8010732009-04-03 13:40:40 -07001926 if (ret)
Darren Hart42d35d42008-12-29 15:49:53 -08001927 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001928
Darren Hartca5f9522009-04-03 13:39:33 -07001929 /* queue_me and wait for wakeup, timeout, or a signal. */
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +02001930 futex_wait_queue_me(hb, &q, to);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001931
1932 /* If we were woken (and unqueued), we succeeded, whatever. */
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001933 ret = 0;
Darren Hart7ada8762010-10-17 08:35:04 -07001934 /* unqueue_me() drops q.key ref */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001935 if (!unqueue_me(&q))
Darren Hart7ada8762010-10-17 08:35:04 -07001936 goto out;
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001937 ret = -ETIMEDOUT;
Darren Hartca5f9522009-04-03 13:39:33 -07001938 if (to && !to->task)
Darren Hart7ada8762010-10-17 08:35:04 -07001939 goto out;
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001940
Ingo Molnare2970f22006-06-27 02:54:47 -07001941 /*
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02001942 * We expect signal_pending(current), but we might be the
1943 * victim of a spurious wakeup as well.
Ingo Molnare2970f22006-06-27 02:54:47 -07001944 */
Darren Hart7ada8762010-10-17 08:35:04 -07001945 if (!signal_pending(current))
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02001946 goto retry;
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02001947
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001948 ret = -ERESTARTSYS;
Pierre Peifferc19384b2007-05-09 02:35:02 -07001949 if (!abs_time)
Darren Hart7ada8762010-10-17 08:35:04 -07001950 goto out;
Steven Rostedtce6bd422007-12-05 15:46:09 +01001951
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001952 restart = &current_thread_info()->restart_block;
1953 restart->fn = futex_wait_restart;
Namhyung Kima3c74c52010-09-14 21:43:47 +09001954 restart->futex.uaddr = uaddr;
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001955 restart->futex.val = val;
1956 restart->futex.time = abs_time->tv64;
1957 restart->futex.bitset = bitset;
Darren Hart0cd9c642011-04-14 15:41:57 -07001958 restart->futex.flags = flags | FLAGS_HAS_TIMEOUT;
Peter Zijlstra2fff78c72009-02-11 18:10:10 +01001959
1960 ret = -ERESTART_RESTARTBLOCK;
1961
Darren Hart42d35d42008-12-29 15:49:53 -08001962out:
Darren Hartca5f9522009-04-03 13:39:33 -07001963 if (to) {
1964 hrtimer_cancel(&to->timer);
1965 destroy_hrtimer_on_stack(&to->timer);
1966 }
Ingo Molnarc87e2832006-06-27 02:54:58 -07001967 return ret;
1968}
1969
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001970
1971static long futex_wait_restart(struct restart_block *restart)
1972{
Namhyung Kima3c74c52010-09-14 21:43:47 +09001973 u32 __user *uaddr = restart->futex.uaddr;
Darren Harta72188d2009-04-03 13:40:22 -07001974 ktime_t t, *tp = NULL;
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001975
Darren Harta72188d2009-04-03 13:40:22 -07001976 if (restart->futex.flags & FLAGS_HAS_TIMEOUT) {
1977 t.tv64 = restart->futex.time;
1978 tp = &t;
1979 }
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001980 restart->fn = do_no_restart_syscall;
Darren Hartb41277d2010-11-08 13:10:09 -08001981
1982 return (long)futex_wait(uaddr, restart->futex.flags,
1983 restart->futex.val, tp, restart->futex.bitset);
Nick Piggin72c1bbf2007-05-08 00:26:43 -07001984}
1985
1986
Ingo Molnarc87e2832006-06-27 02:54:58 -07001987/*
1988 * Userspace tried a 0 -> TID atomic transition of the futex value
1989 * and failed. The kernel side here does the whole locking operation:
1990 * if there are waiters then it will block, it does PI, etc. (Due to
1991 * races the kernel might see a 0 value of the futex too.)
1992 */
Darren Hartb41277d2010-11-08 13:10:09 -08001993static int futex_lock_pi(u32 __user *uaddr, unsigned int flags, int detect,
1994 ktime_t *time, int trylock)
Ingo Molnarc87e2832006-06-27 02:54:58 -07001995{
Thomas Gleixnerc5780e92006-09-08 09:47:15 -07001996 struct hrtimer_sleeper timeout, *to = NULL;
Ingo Molnarc87e2832006-06-27 02:54:58 -07001997 struct futex_hash_bucket *hb;
Darren Hart5bdb05f2010-11-08 13:40:28 -08001998 struct futex_q q = futex_q_init;
Darren Hartdd973992009-04-03 13:40:02 -07001999 int res, ret;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002000
2001 if (refill_pi_state_cache())
2002 return -ENOMEM;
2003
Pierre Peifferc19384b2007-05-09 02:35:02 -07002004 if (time) {
Thomas Gleixnerc5780e92006-09-08 09:47:15 -07002005 to = &timeout;
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07002006 hrtimer_init_on_stack(&to->timer, CLOCK_REALTIME,
2007 HRTIMER_MODE_ABS);
Thomas Gleixnerc5780e92006-09-08 09:47:15 -07002008 hrtimer_init_sleeper(to, current);
Arjan van de Vencc584b22008-09-01 15:02:30 -07002009 hrtimer_set_expires(&to->timer, *time);
Thomas Gleixnerc5780e92006-09-08 09:47:15 -07002010 }
2011
Darren Hart42d35d42008-12-29 15:49:53 -08002012retry:
Shawn Bohrer9ea71502011-06-30 11:21:32 -05002013 ret = get_futex_key(uaddr, flags & FLAGS_SHARED, &q.key, VERIFY_WRITE);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002014 if (unlikely(ret != 0))
Darren Hart42d35d42008-12-29 15:49:53 -08002015 goto out;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002016
Darren Harte4dc5b72009-03-12 00:56:13 -07002017retry_private:
Eric Sesterhenn82af7ac2008-01-25 10:40:46 +01002018 hb = queue_lock(&q);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002019
Darren Hartbab5bc92009-04-07 23:23:50 -07002020 ret = futex_lock_pi_atomic(uaddr, hb, &q.key, &q.pi_state, current, 0);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002021 if (unlikely(ret)) {
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002022 switch (ret) {
Darren Hart1a520842009-04-03 13:39:52 -07002023 case 1:
2024 /* We got the lock. */
2025 ret = 0;
2026 goto out_unlock_put_key;
2027 case -EFAULT:
2028 goto uaddr_faulted;
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002029 case -EAGAIN:
2030 /*
2031 * Task is exiting and we just wait for the
2032 * exit to complete.
2033 */
2034 queue_unlock(&q, hb);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002035 put_futex_key(&q.key);
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002036 cond_resched();
2037 goto retry;
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002038 default:
Darren Hart42d35d42008-12-29 15:49:53 -08002039 goto out_unlock_put_key;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002040 }
Ingo Molnarc87e2832006-06-27 02:54:58 -07002041 }
2042
2043 /*
2044 * Only actually queue now that the atomic ops are done:
2045 */
Eric Sesterhenn82af7ac2008-01-25 10:40:46 +01002046 queue_me(&q, hb);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002047
Ingo Molnarc87e2832006-06-27 02:54:58 -07002048 WARN_ON(!q.pi_state);
2049 /*
2050 * Block on the PI mutex:
2051 */
2052 if (!trylock)
2053 ret = rt_mutex_timed_lock(&q.pi_state->pi_mutex, to, 1);
2054 else {
2055 ret = rt_mutex_trylock(&q.pi_state->pi_mutex);
2056 /* Fixup the trylock return value: */
2057 ret = ret ? 0 : -EWOULDBLOCK;
2058 }
2059
Vernon Mauerya99e4e42006-07-01 04:35:42 -07002060 spin_lock(q.lock_ptr);
Darren Hartdd973992009-04-03 13:40:02 -07002061 /*
2062 * Fixup the pi_state owner and possibly acquire the lock if we
2063 * haven't already.
2064 */
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002065 res = fixup_owner(uaddr, &q, !ret);
Darren Hartdd973992009-04-03 13:40:02 -07002066 /*
2067 * If fixup_owner() returned an error, proprogate that. If it acquired
2068 * the lock, clear our -ETIMEDOUT or -EINTR.
2069 */
2070 if (res)
2071 ret = (res < 0) ? res : 0;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002072
Darren Harte8f63862009-03-12 00:56:06 -07002073 /*
Darren Hartdd973992009-04-03 13:40:02 -07002074 * If fixup_owner() faulted and was unable to handle the fault, unlock
2075 * it and return the fault to userspace.
Darren Harte8f63862009-03-12 00:56:06 -07002076 */
2077 if (ret && (rt_mutex_owner(&q.pi_state->pi_mutex) == current))
2078 rt_mutex_unlock(&q.pi_state->pi_mutex);
2079
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002080 /* Unqueue and drop the lock */
2081 unqueue_me_pi(&q);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002082
Mikael Pettersson5ecb01c2010-01-23 22:36:29 +01002083 goto out_put_key;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002084
Darren Hart42d35d42008-12-29 15:49:53 -08002085out_unlock_put_key:
Ingo Molnarc87e2832006-06-27 02:54:58 -07002086 queue_unlock(&q, hb);
2087
Darren Hart42d35d42008-12-29 15:49:53 -08002088out_put_key:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002089 put_futex_key(&q.key);
Darren Hart42d35d42008-12-29 15:49:53 -08002090out:
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07002091 if (to)
2092 destroy_hrtimer_on_stack(&to->timer);
Darren Hartdd973992009-04-03 13:40:02 -07002093 return ret != -EINTR ? ret : -ERESTARTNOINTR;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002094
Darren Hart42d35d42008-12-29 15:49:53 -08002095uaddr_faulted:
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002096 queue_unlock(&q, hb);
2097
Thomas Gleixnerd0725992009-06-11 23:15:43 +02002098 ret = fault_in_user_writeable(uaddr);
Darren Harte4dc5b72009-03-12 00:56:13 -07002099 if (ret)
2100 goto out_put_key;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002101
Darren Hartb41277d2010-11-08 13:10:09 -08002102 if (!(flags & FLAGS_SHARED))
Darren Harte4dc5b72009-03-12 00:56:13 -07002103 goto retry_private;
2104
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002105 put_futex_key(&q.key);
Darren Harte4dc5b72009-03-12 00:56:13 -07002106 goto retry;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002107}
2108
2109/*
Ingo Molnarc87e2832006-06-27 02:54:58 -07002110 * Userspace attempted a TID -> 0 atomic transition, and failed.
2111 * This is the in-kernel slowpath: we look up the PI state (if any),
2112 * and do the rt-mutex unlock.
2113 */
Darren Hartb41277d2010-11-08 13:10:09 -08002114static int futex_unlock_pi(u32 __user *uaddr, unsigned int flags)
Ingo Molnarc87e2832006-06-27 02:54:58 -07002115{
2116 struct futex_hash_bucket *hb;
2117 struct futex_q *this, *next;
Pierre Peifferec92d082007-05-09 02:35:00 -07002118 struct plist_head *head;
Peter Zijlstra38d47c12008-09-26 19:32:20 +02002119 union futex_key key = FUTEX_KEY_INIT;
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +01002120 u32 uval, vpid = task_pid_vnr(current);
Darren Harte4dc5b72009-03-12 00:56:13 -07002121 int ret;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002122
2123retry:
2124 if (get_user(uval, uaddr))
2125 return -EFAULT;
2126 /*
2127 * We release only a lock we actually own:
2128 */
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +01002129 if ((uval & FUTEX_TID_MASK) != vpid)
Ingo Molnarc87e2832006-06-27 02:54:58 -07002130 return -EPERM;
Ingo Molnarc87e2832006-06-27 02:54:58 -07002131
Shawn Bohrer9ea71502011-06-30 11:21:32 -05002132 ret = get_futex_key(uaddr, flags & FLAGS_SHARED, &key, VERIFY_WRITE);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002133 if (unlikely(ret != 0))
2134 goto out;
2135
2136 hb = hash_futex(&key);
2137 spin_lock(&hb->lock);
2138
Ingo Molnarc87e2832006-06-27 02:54:58 -07002139 /*
2140 * To avoid races, try to do the TID -> 0 atomic transition
2141 * again. If it succeeds then we can return without waking
2142 * anyone else up:
2143 */
Michel Lespinasse37a9d912011-03-10 18:48:51 -08002144 if (!(uval & FUTEX_OWNER_DIED) &&
2145 cmpxchg_futex_value_locked(&uval, uaddr, vpid, 0))
Ingo Molnarc87e2832006-06-27 02:54:58 -07002146 goto pi_faulted;
2147 /*
2148 * Rare case: we managed to release the lock atomically,
2149 * no need to wake anyone else up:
2150 */
Thomas Gleixnerc0c9ed12011-03-11 11:51:22 +01002151 if (unlikely(uval == vpid))
Ingo Molnarc87e2832006-06-27 02:54:58 -07002152 goto out_unlock;
2153
2154 /*
2155 * Ok, other tasks may need to be woken up - check waiters
2156 * and do the wakeup if necessary:
2157 */
2158 head = &hb->chain;
2159
Pierre Peifferec92d082007-05-09 02:35:00 -07002160 plist_for_each_entry_safe(this, next, head, list) {
Ingo Molnarc87e2832006-06-27 02:54:58 -07002161 if (!match_futex (&this->key, &key))
2162 continue;
2163 ret = wake_futex_pi(uaddr, uval, this);
2164 /*
2165 * The atomic access to the futex value
2166 * generated a pagefault, so retry the
2167 * user-access and the wakeup:
2168 */
2169 if (ret == -EFAULT)
2170 goto pi_faulted;
2171 goto out_unlock;
2172 }
2173 /*
2174 * No waiters - kernel unlocks the futex:
2175 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002176 if (!(uval & FUTEX_OWNER_DIED)) {
2177 ret = unlock_futex_pi(uaddr, uval);
2178 if (ret == -EFAULT)
2179 goto pi_faulted;
2180 }
Ingo Molnarc87e2832006-06-27 02:54:58 -07002181
2182out_unlock:
2183 spin_unlock(&hb->lock);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002184 put_futex_key(&key);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002185
Darren Hart42d35d42008-12-29 15:49:53 -08002186out:
Ingo Molnarc87e2832006-06-27 02:54:58 -07002187 return ret;
2188
2189pi_faulted:
Alexey Kuznetsov778e9a92007-06-08 13:47:00 -07002190 spin_unlock(&hb->lock);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002191 put_futex_key(&key);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002192
Thomas Gleixnerd0725992009-06-11 23:15:43 +02002193 ret = fault_in_user_writeable(uaddr);
Darren Hartb5686362008-12-18 15:06:34 -08002194 if (!ret)
Ingo Molnarc87e2832006-06-27 02:54:58 -07002195 goto retry;
2196
Linus Torvalds1da177e2005-04-16 15:20:36 -07002197 return ret;
2198}
2199
Darren Hart52400ba2009-04-03 13:40:49 -07002200/**
2201 * handle_early_requeue_pi_wakeup() - Detect early wakeup on the initial futex
2202 * @hb: the hash_bucket futex_q was original enqueued on
2203 * @q: the futex_q woken while waiting to be requeued
2204 * @key2: the futex_key of the requeue target futex
2205 * @timeout: the timeout associated with the wait (NULL if none)
2206 *
2207 * Detect if the task was woken on the initial futex as opposed to the requeue
2208 * target futex. If so, determine if it was a timeout or a signal that caused
2209 * the wakeup and return the appropriate error code to the caller. Must be
2210 * called with the hb lock held.
2211 *
2212 * Returns
2213 * 0 - no early wakeup detected
Thomas Gleixner1c840c12009-05-20 09:22:40 +02002214 * <0 - -ETIMEDOUT or -ERESTARTNOINTR
Darren Hart52400ba2009-04-03 13:40:49 -07002215 */
2216static inline
2217int handle_early_requeue_pi_wakeup(struct futex_hash_bucket *hb,
2218 struct futex_q *q, union futex_key *key2,
2219 struct hrtimer_sleeper *timeout)
2220{
2221 int ret = 0;
2222
2223 /*
2224 * With the hb lock held, we avoid races while we process the wakeup.
2225 * We only need to hold hb (and not hb2) to ensure atomicity as the
2226 * wakeup code can't change q.key from uaddr to uaddr2 if we hold hb.
2227 * It can't be requeued from uaddr2 to something else since we don't
2228 * support a PI aware source futex for requeue.
2229 */
2230 if (!match_futex(&q->key, key2)) {
2231 WARN_ON(q->lock_ptr && (&hb->lock != q->lock_ptr));
2232 /*
2233 * We were woken prior to requeue by a timeout or a signal.
2234 * Unqueue the futex_q and determine which it was.
2235 */
Lai Jiangshan2e129782010-12-22 14:18:50 +08002236 plist_del(&q->list, &hb->chain);
Darren Hart52400ba2009-04-03 13:40:49 -07002237
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02002238 /* Handle spurious wakeups gracefully */
Thomas Gleixner11df6dd2009-10-28 20:26:48 +01002239 ret = -EWOULDBLOCK;
Darren Hart52400ba2009-04-03 13:40:49 -07002240 if (timeout && !timeout->task)
2241 ret = -ETIMEDOUT;
Thomas Gleixnerd58e6572009-10-13 20:40:43 +02002242 else if (signal_pending(current))
Thomas Gleixner1c840c12009-05-20 09:22:40 +02002243 ret = -ERESTARTNOINTR;
Darren Hart52400ba2009-04-03 13:40:49 -07002244 }
2245 return ret;
2246}
2247
2248/**
2249 * futex_wait_requeue_pi() - Wait on uaddr and take uaddr2
Darren Hart56ec1602009-09-21 22:29:59 -07002250 * @uaddr: the futex we initially wait on (non-pi)
Darren Hartb41277d2010-11-08 13:10:09 -08002251 * @flags: futex flags (FLAGS_SHARED, FLAGS_CLOCKRT, etc.), they must be
Darren Hart52400ba2009-04-03 13:40:49 -07002252 * the same type, no requeueing from private to shared, etc.
2253 * @val: the expected value of uaddr
2254 * @abs_time: absolute timeout
Darren Hart56ec1602009-09-21 22:29:59 -07002255 * @bitset: 32 bit wakeup bitset set by userspace, defaults to all
Darren Hart52400ba2009-04-03 13:40:49 -07002256 * @clockrt: whether to use CLOCK_REALTIME (1) or CLOCK_MONOTONIC (0)
2257 * @uaddr2: the pi futex we will take prior to returning to user-space
2258 *
2259 * The caller will wait on uaddr and will be requeued by futex_requeue() to
Darren Hartb3f95762012-07-20 11:53:31 -07002260 * uaddr2 which must be PI aware and unique from uaddr. Normal wakeup will wake
2261 * on uaddr2 and complete the acquisition of the rt_mutex prior to returning to
2262 * userspace. This ensures the rt_mutex maintains an owner when it has waiters;
2263 * without one, the pi logic would not know which task to boost/deboost, if
2264 * there was a need to.
Darren Hart52400ba2009-04-03 13:40:49 -07002265 *
2266 * We call schedule in futex_wait_queue_me() when we enqueue and return there
2267 * via the following:
2268 * 1) wakeup on uaddr2 after an atomic lock acquisition by futex_requeue()
Darren Hartcc6db4e2009-07-31 16:20:10 -07002269 * 2) wakeup on uaddr2 after a requeue
2270 * 3) signal
2271 * 4) timeout
Darren Hart52400ba2009-04-03 13:40:49 -07002272 *
Darren Hartcc6db4e2009-07-31 16:20:10 -07002273 * If 3, cleanup and return -ERESTARTNOINTR.
Darren Hart52400ba2009-04-03 13:40:49 -07002274 *
2275 * If 2, we may then block on trying to take the rt_mutex and return via:
2276 * 5) successful lock
2277 * 6) signal
2278 * 7) timeout
2279 * 8) other lock acquisition failure
2280 *
Darren Hartcc6db4e2009-07-31 16:20:10 -07002281 * If 6, return -EWOULDBLOCK (restarting the syscall would do the same).
Darren Hart52400ba2009-04-03 13:40:49 -07002282 *
2283 * If 4 or 7, we cleanup and return with -ETIMEDOUT.
2284 *
2285 * Returns:
2286 * 0 - On success
2287 * <0 - On error
2288 */
Darren Hartb41277d2010-11-08 13:10:09 -08002289static int futex_wait_requeue_pi(u32 __user *uaddr, unsigned int flags,
Darren Hart52400ba2009-04-03 13:40:49 -07002290 u32 val, ktime_t *abs_time, u32 bitset,
Darren Hartb41277d2010-11-08 13:10:09 -08002291 u32 __user *uaddr2)
Darren Hart52400ba2009-04-03 13:40:49 -07002292{
2293 struct hrtimer_sleeper timeout, *to = NULL;
2294 struct rt_mutex_waiter rt_waiter;
2295 struct rt_mutex *pi_mutex = NULL;
Darren Hart52400ba2009-04-03 13:40:49 -07002296 struct futex_hash_bucket *hb;
Darren Hart5bdb05f2010-11-08 13:40:28 -08002297 union futex_key key2 = FUTEX_KEY_INIT;
2298 struct futex_q q = futex_q_init;
Darren Hart52400ba2009-04-03 13:40:49 -07002299 int res, ret;
Darren Hart52400ba2009-04-03 13:40:49 -07002300
Darren Hartb3f95762012-07-20 11:53:31 -07002301 if (uaddr == uaddr2)
2302 return -EINVAL;
2303
Darren Hart52400ba2009-04-03 13:40:49 -07002304 if (!bitset)
2305 return -EINVAL;
2306
2307 if (abs_time) {
2308 to = &timeout;
Darren Hartb41277d2010-11-08 13:10:09 -08002309 hrtimer_init_on_stack(&to->timer, (flags & FLAGS_CLOCKRT) ?
2310 CLOCK_REALTIME : CLOCK_MONOTONIC,
2311 HRTIMER_MODE_ABS);
Darren Hart52400ba2009-04-03 13:40:49 -07002312 hrtimer_init_sleeper(to, current);
2313 hrtimer_set_expires_range_ns(&to->timer, *abs_time,
2314 current->timer_slack_ns);
2315 }
2316
2317 /*
2318 * The waiter is allocated on our stack, manipulated by the requeue
2319 * code while we sleep on uaddr.
2320 */
2321 debug_rt_mutex_init_waiter(&rt_waiter);
2322 rt_waiter.task = NULL;
2323
Shawn Bohrer9ea71502011-06-30 11:21:32 -05002324 ret = get_futex_key(uaddr2, flags & FLAGS_SHARED, &key2, VERIFY_WRITE);
Darren Hart52400ba2009-04-03 13:40:49 -07002325 if (unlikely(ret != 0))
2326 goto out;
2327
Darren Hart84bc4af2009-08-13 17:36:53 -07002328 q.bitset = bitset;
2329 q.rt_waiter = &rt_waiter;
2330 q.requeue_pi_key = &key2;
2331
Darren Hart7ada8762010-10-17 08:35:04 -07002332 /*
2333 * Prepare to wait on uaddr. On success, increments q.key (key1) ref
2334 * count.
2335 */
Darren Hartb41277d2010-11-08 13:10:09 -08002336 ret = futex_wait_setup(uaddr, val, flags, &q, &hb);
Thomas Gleixnerc8b15a72009-05-20 09:18:50 +02002337 if (ret)
2338 goto out_key2;
Darren Hart52400ba2009-04-03 13:40:49 -07002339
2340 /* Queue the futex_q, drop the hb lock, wait for wakeup. */
Thomas Gleixnerf1a11e02009-05-05 19:21:40 +02002341 futex_wait_queue_me(hb, &q, to);
Darren Hart52400ba2009-04-03 13:40:49 -07002342
2343 spin_lock(&hb->lock);
2344 ret = handle_early_requeue_pi_wakeup(hb, &q, &key2, to);
2345 spin_unlock(&hb->lock);
2346 if (ret)
2347 goto out_put_keys;
2348
2349 /*
2350 * In order for us to be here, we know our q.key == key2, and since
2351 * we took the hb->lock above, we also know that futex_requeue() has
2352 * completed and we no longer have to concern ourselves with a wakeup
Darren Hart7ada8762010-10-17 08:35:04 -07002353 * race with the atomic proxy lock acquisition by the requeue code. The
2354 * futex_requeue dropped our key1 reference and incremented our key2
2355 * reference count.
Darren Hart52400ba2009-04-03 13:40:49 -07002356 */
2357
2358 /* Check if the requeue code acquired the second futex for us. */
2359 if (!q.rt_waiter) {
2360 /*
2361 * Got the lock. We might not be the anticipated owner if we
2362 * did a lock-steal - fix up the PI-state in that case.
2363 */
2364 if (q.pi_state && (q.pi_state->owner != current)) {
2365 spin_lock(q.lock_ptr);
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002366 ret = fixup_pi_state_owner(uaddr2, &q, current);
Darren Hart52400ba2009-04-03 13:40:49 -07002367 spin_unlock(q.lock_ptr);
2368 }
2369 } else {
2370 /*
2371 * We have been woken up by futex_unlock_pi(), a timeout, or a
2372 * signal. futex_unlock_pi() will not destroy the lock_ptr nor
2373 * the pi_state.
2374 */
Darren Hart47b6ff72012-07-20 11:53:30 -07002375 WARN_ON(!q.pi_state);
Darren Hart52400ba2009-04-03 13:40:49 -07002376 pi_mutex = &q.pi_state->pi_mutex;
2377 ret = rt_mutex_finish_proxy_lock(pi_mutex, to, &rt_waiter, 1);
2378 debug_rt_mutex_free_waiter(&rt_waiter);
2379
2380 spin_lock(q.lock_ptr);
2381 /*
2382 * Fixup the pi_state owner and possibly acquire the lock if we
2383 * haven't already.
2384 */
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002385 res = fixup_owner(uaddr2, &q, !ret);
Darren Hart52400ba2009-04-03 13:40:49 -07002386 /*
2387 * If fixup_owner() returned an error, proprogate that. If it
Darren Hart56ec1602009-09-21 22:29:59 -07002388 * acquired the lock, clear -ETIMEDOUT or -EINTR.
Darren Hart52400ba2009-04-03 13:40:49 -07002389 */
2390 if (res)
2391 ret = (res < 0) ? res : 0;
2392
2393 /* Unqueue and drop the lock. */
2394 unqueue_me_pi(&q);
2395 }
2396
2397 /*
2398 * If fixup_pi_state_owner() faulted and was unable to handle the
2399 * fault, unlock the rt_mutex and return the fault to userspace.
2400 */
2401 if (ret == -EFAULT) {
Darren Hartd48c1ba2012-07-20 11:53:29 -07002402 if (pi_mutex && rt_mutex_owner(pi_mutex) == current)
Darren Hart52400ba2009-04-03 13:40:49 -07002403 rt_mutex_unlock(pi_mutex);
2404 } else if (ret == -EINTR) {
Darren Hart52400ba2009-04-03 13:40:49 -07002405 /*
Darren Hartcc6db4e2009-07-31 16:20:10 -07002406 * We've already been requeued, but cannot restart by calling
2407 * futex_lock_pi() directly. We could restart this syscall, but
2408 * it would detect that the user space "val" changed and return
2409 * -EWOULDBLOCK. Save the overhead of the restart and return
2410 * -EWOULDBLOCK directly.
Darren Hart52400ba2009-04-03 13:40:49 -07002411 */
Thomas Gleixner20708872009-05-19 23:04:59 +02002412 ret = -EWOULDBLOCK;
Darren Hart52400ba2009-04-03 13:40:49 -07002413 }
2414
2415out_put_keys:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002416 put_futex_key(&q.key);
Thomas Gleixnerc8b15a72009-05-20 09:18:50 +02002417out_key2:
Thomas Gleixnerae791a22010-11-10 13:30:36 +01002418 put_futex_key(&key2);
Darren Hart52400ba2009-04-03 13:40:49 -07002419
2420out:
2421 if (to) {
2422 hrtimer_cancel(&to->timer);
2423 destroy_hrtimer_on_stack(&to->timer);
2424 }
2425 return ret;
2426}
2427
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002428/*
2429 * Support for robust futexes: the kernel cleans up held futexes at
2430 * thread exit time.
2431 *
2432 * Implementation: user-space maintains a per-thread list of locks it
2433 * is holding. Upon do_exit(), the kernel carefully walks this list,
2434 * and marks all locks that are owned by this thread with the
Ingo Molnarc87e2832006-06-27 02:54:58 -07002435 * FUTEX_OWNER_DIED bit, and wakes up a waiter (if any). The list is
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002436 * always manipulated with the lock held, so the list is private and
2437 * per-thread. Userspace also maintains a per-thread 'list_op_pending'
2438 * field, to allow the kernel to clean up if the thread dies after
2439 * acquiring the lock, but just before it could have added itself to
2440 * the list. There can only be one such pending lock.
2441 */
2442
2443/**
Darren Hartd96ee562009-09-21 22:30:22 -07002444 * sys_set_robust_list() - Set the robust-futex list head of a task
2445 * @head: pointer to the list-head
2446 * @len: length of the list-head, as userspace expects
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002447 */
Heiko Carstens836f92a2009-01-14 14:14:33 +01002448SYSCALL_DEFINE2(set_robust_list, struct robust_list_head __user *, head,
2449 size_t, len)
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002450{
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002451 if (!futex_cmpxchg_enabled)
2452 return -ENOSYS;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002453 /*
2454 * The kernel knows only one size for now:
2455 */
2456 if (unlikely(len != sizeof(*head)))
2457 return -EINVAL;
2458
2459 current->robust_list = head;
2460
2461 return 0;
2462}
2463
2464/**
Darren Hartd96ee562009-09-21 22:30:22 -07002465 * sys_get_robust_list() - Get the robust-futex list head of a task
2466 * @pid: pid of the process [zero for current task]
2467 * @head_ptr: pointer to a list-head pointer, the kernel fills it in
2468 * @len_ptr: pointer to a length field, the kernel fills in the header size
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002469 */
Heiko Carstens836f92a2009-01-14 14:14:33 +01002470SYSCALL_DEFINE3(get_robust_list, int, pid,
2471 struct robust_list_head __user * __user *, head_ptr,
2472 size_t __user *, len_ptr)
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002473{
Al Viroba46df92006-10-10 22:46:07 +01002474 struct robust_list_head __user *head;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002475 unsigned long ret;
Kees Cookbdbb7762012-03-19 16:12:53 -07002476 struct task_struct *p;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002477
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002478 if (!futex_cmpxchg_enabled)
2479 return -ENOSYS;
2480
Kees Cookbdbb7762012-03-19 16:12:53 -07002481 rcu_read_lock();
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002482
Kees Cookbdbb7762012-03-19 16:12:53 -07002483 ret = -ESRCH;
2484 if (!pid)
2485 p = current;
2486 else {
Pavel Emelyanov228ebcb2007-10-18 23:40:16 -07002487 p = find_task_by_vpid(pid);
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002488 if (!p)
2489 goto err_unlock;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002490 }
2491
Kees Cookbdbb7762012-03-19 16:12:53 -07002492 ret = -EPERM;
2493 if (!ptrace_may_access(p, PTRACE_MODE_READ))
2494 goto err_unlock;
2495
2496 head = p->robust_list;
2497 rcu_read_unlock();
2498
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002499 if (put_user(sizeof(*head), len_ptr))
2500 return -EFAULT;
2501 return put_user(head, head_ptr);
2502
2503err_unlock:
Oleg Nesterovaaa2a972006-09-29 02:00:55 -07002504 rcu_read_unlock();
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002505
2506 return ret;
2507}
2508
2509/*
2510 * Process a futex-list entry, check whether it's owned by the
2511 * dying task, and do notification if so:
2512 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002513int handle_futex_death(u32 __user *uaddr, struct task_struct *curr, int pi)
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002514{
Vitaliy Ivanov7cfdaf32011-07-07 15:10:31 +03002515 u32 uval, uninitialized_var(nval), mval;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002516
Ingo Molnar8f17d3a2006-03-27 01:16:27 -08002517retry:
2518 if (get_user(uval, uaddr))
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002519 return -1;
2520
Pavel Emelyanovb4888932007-10-18 23:40:14 -07002521 if ((uval & FUTEX_TID_MASK) == task_pid_vnr(curr)) {
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002522 /*
2523 * Ok, this dying thread is truly holding a futex
2524 * of interest. Set the OWNER_DIED bit atomically
2525 * via cmpxchg, and if the value had FUTEX_WAITERS
2526 * set, wake up a waiter (if any). (We have to do a
2527 * futex_wake() even if OWNER_DIED is already set -
2528 * to handle the rare but possible case of recursive
2529 * thread-death.) The rest of the cleanup is done in
2530 * userspace.
2531 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002532 mval = (uval & FUTEX_WAITERS) | FUTEX_OWNER_DIED;
Thomas Gleixner6e0aa9f2011-03-14 10:34:35 +01002533 /*
2534 * We are not holding a lock here, but we want to have
2535 * the pagefault_disable/enable() protection because
2536 * we want to handle the fault gracefully. If the
2537 * access fails we try to fault in the futex with R/W
2538 * verification via get_user_pages. get_user() above
2539 * does not guarantee R/W access. If that fails we
2540 * give up and leave the futex locked.
2541 */
2542 if (cmpxchg_futex_value_locked(&nval, uaddr, uval, mval)) {
2543 if (fault_in_user_writeable(uaddr))
2544 return -1;
2545 goto retry;
2546 }
Ingo Molnarc87e2832006-06-27 02:54:58 -07002547 if (nval != uval)
Ingo Molnar8f17d3a2006-03-27 01:16:27 -08002548 goto retry;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002549
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002550 /*
2551 * Wake robust non-PI futexes here. The wakeup of
2552 * PI futexes happens in exit_pi_state():
2553 */
Thomas Gleixner36cf3b52007-07-15 23:41:20 -07002554 if (!pi && (uval & FUTEX_WAITERS))
Peter Zijlstrac2f9f202008-09-26 19:32:23 +02002555 futex_wake(uaddr, 1, 1, FUTEX_BITSET_MATCH_ANY);
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002556 }
2557 return 0;
2558}
2559
2560/*
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002561 * Fetch a robust-list pointer. Bit 0 signals PI futexes:
2562 */
2563static inline int fetch_robust_entry(struct robust_list __user **entry,
Al Viroba46df92006-10-10 22:46:07 +01002564 struct robust_list __user * __user *head,
Namhyung Kim1dcc41b2010-09-14 21:43:46 +09002565 unsigned int *pi)
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002566{
2567 unsigned long uentry;
2568
Al Viroba46df92006-10-10 22:46:07 +01002569 if (get_user(uentry, (unsigned long __user *)head))
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002570 return -EFAULT;
2571
Al Viroba46df92006-10-10 22:46:07 +01002572 *entry = (void __user *)(uentry & ~1UL);
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002573 *pi = uentry & 1;
2574
2575 return 0;
2576}
2577
2578/*
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002579 * Walk curr->robust_list (very carefully, it's a userspace list!)
2580 * and mark any locks found there dead, and notify any waiters.
2581 *
2582 * We silently return on any sign of list-walking problem.
2583 */
2584void exit_robust_list(struct task_struct *curr)
2585{
2586 struct robust_list_head __user *head = curr->robust_list;
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002587 struct robust_list __user *entry, *next_entry, *pending;
Darren Hart4c115e92010-11-04 15:00:00 -04002588 unsigned int limit = ROBUST_LIST_LIMIT, pi, pip;
2589 unsigned int uninitialized_var(next_pi);
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002590 unsigned long futex_offset;
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002591 int rc;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002592
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002593 if (!futex_cmpxchg_enabled)
2594 return;
2595
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002596 /*
2597 * Fetch the list head (which was registered earlier, via
2598 * sys_set_robust_list()):
2599 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002600 if (fetch_robust_entry(&entry, &head->list.next, &pi))
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002601 return;
2602 /*
2603 * Fetch the relative futex offset:
2604 */
2605 if (get_user(futex_offset, &head->futex_offset))
2606 return;
2607 /*
2608 * Fetch any possibly pending lock-add first, and handle it
2609 * if it exists:
2610 */
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002611 if (fetch_robust_entry(&pending, &head->list_op_pending, &pip))
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002612 return;
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002613
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002614 next_entry = NULL; /* avoid warning with gcc */
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002615 while (entry != &head->list) {
2616 /*
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002617 * Fetch the next entry in the list before calling
2618 * handle_futex_death:
2619 */
2620 rc = fetch_robust_entry(&next_entry, &entry->next, &next_pi);
2621 /*
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002622 * A pending lock might already be on the list, so
Ingo Molnarc87e2832006-06-27 02:54:58 -07002623 * don't process it twice:
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002624 */
2625 if (entry != pending)
Al Viroba46df92006-10-10 22:46:07 +01002626 if (handle_futex_death((void __user *)entry + futex_offset,
Ingo Molnare3f2dde2006-07-29 05:17:57 +02002627 curr, pi))
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002628 return;
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002629 if (rc)
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002630 return;
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002631 entry = next_entry;
2632 pi = next_pi;
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002633 /*
2634 * Avoid excessively long or circular lists:
2635 */
2636 if (!--limit)
2637 break;
2638
2639 cond_resched();
2640 }
Martin Schwidefsky9f96cb12007-10-01 01:20:13 -07002641
2642 if (pending)
2643 handle_futex_death((void __user *)pending + futex_offset,
2644 curr, pip);
Ingo Molnar0771dfe2006-03-27 01:16:22 -08002645}
2646
Pierre Peifferc19384b2007-05-09 02:35:02 -07002647long do_futex(u32 __user *uaddr, int op, u32 val, ktime_t *timeout,
Ingo Molnare2970f22006-06-27 02:54:47 -07002648 u32 __user *uaddr2, u32 val2, u32 val3)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002649{
Thomas Gleixner81b40532012-02-15 12:17:09 +01002650 int cmd = op & FUTEX_CMD_MASK;
Darren Hartb41277d2010-11-08 13:10:09 -08002651 unsigned int flags = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002652
Eric Dumazet34f01cc2007-05-09 02:35:04 -07002653 if (!(op & FUTEX_PRIVATE_FLAG))
Darren Hartb41277d2010-11-08 13:10:09 -08002654 flags |= FLAGS_SHARED;
Eric Dumazet34f01cc2007-05-09 02:35:04 -07002655
Darren Hartb41277d2010-11-08 13:10:09 -08002656 if (op & FUTEX_CLOCK_REALTIME) {
2657 flags |= FLAGS_CLOCKRT;
2658 if (cmd != FUTEX_WAIT_BITSET && cmd != FUTEX_WAIT_REQUEUE_PI)
2659 return -ENOSYS;
2660 }
Eric Dumazet34f01cc2007-05-09 02:35:04 -07002661
2662 switch (cmd) {
Thomas Gleixner59263b52012-02-15 12:08:34 +01002663 case FUTEX_LOCK_PI:
2664 case FUTEX_UNLOCK_PI:
2665 case FUTEX_TRYLOCK_PI:
2666 case FUTEX_WAIT_REQUEUE_PI:
2667 case FUTEX_CMP_REQUEUE_PI:
2668 if (!futex_cmpxchg_enabled)
2669 return -ENOSYS;
2670 }
2671
2672 switch (cmd) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002673 case FUTEX_WAIT:
Thomas Gleixnercd689982008-02-01 17:45:14 +01002674 val3 = FUTEX_BITSET_MATCH_ANY;
2675 case FUTEX_WAIT_BITSET:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002676 return futex_wait(uaddr, flags, val, timeout, val3);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002677 case FUTEX_WAKE:
Thomas Gleixnercd689982008-02-01 17:45:14 +01002678 val3 = FUTEX_BITSET_MATCH_ANY;
2679 case FUTEX_WAKE_BITSET:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002680 return futex_wake(uaddr, flags, val, val3);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002681 case FUTEX_REQUEUE:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002682 return futex_requeue(uaddr, flags, uaddr2, val, val2, NULL, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002683 case FUTEX_CMP_REQUEUE:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002684 return futex_requeue(uaddr, flags, uaddr2, val, val2, &val3, 0);
Jakub Jelinek4732efb2005-09-06 15:16:25 -07002685 case FUTEX_WAKE_OP:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002686 return futex_wake_op(uaddr, flags, uaddr2, val, val2, val3);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002687 case FUTEX_LOCK_PI:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002688 return futex_lock_pi(uaddr, flags, val, timeout, 0);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002689 case FUTEX_UNLOCK_PI:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002690 return futex_unlock_pi(uaddr, flags);
Ingo Molnarc87e2832006-06-27 02:54:58 -07002691 case FUTEX_TRYLOCK_PI:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002692 return futex_lock_pi(uaddr, flags, 0, timeout, 1);
Darren Hart52400ba2009-04-03 13:40:49 -07002693 case FUTEX_WAIT_REQUEUE_PI:
2694 val3 = FUTEX_BITSET_MATCH_ANY;
Thomas Gleixner81b40532012-02-15 12:17:09 +01002695 return futex_wait_requeue_pi(uaddr, flags, val, timeout, val3,
2696 uaddr2);
Darren Hart52400ba2009-04-03 13:40:49 -07002697 case FUTEX_CMP_REQUEUE_PI:
Thomas Gleixner81b40532012-02-15 12:17:09 +01002698 return futex_requeue(uaddr, flags, uaddr2, val, val2, &val3, 1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002699 }
Thomas Gleixner81b40532012-02-15 12:17:09 +01002700 return -ENOSYS;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002701}
2702
2703
Heiko Carstens17da2bd2009-01-14 14:14:10 +01002704SYSCALL_DEFINE6(futex, u32 __user *, uaddr, int, op, u32, val,
2705 struct timespec __user *, utime, u32 __user *, uaddr2,
2706 u32, val3)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002707{
Pierre Peifferc19384b2007-05-09 02:35:02 -07002708 struct timespec ts;
2709 ktime_t t, *tp = NULL;
Ingo Molnare2970f22006-06-27 02:54:47 -07002710 u32 val2 = 0;
Eric Dumazet34f01cc2007-05-09 02:35:04 -07002711 int cmd = op & FUTEX_CMD_MASK;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002712
Thomas Gleixnercd689982008-02-01 17:45:14 +01002713 if (utime && (cmd == FUTEX_WAIT || cmd == FUTEX_LOCK_PI ||
Darren Hart52400ba2009-04-03 13:40:49 -07002714 cmd == FUTEX_WAIT_BITSET ||
2715 cmd == FUTEX_WAIT_REQUEUE_PI)) {
Pierre Peifferc19384b2007-05-09 02:35:02 -07002716 if (copy_from_user(&ts, utime, sizeof(ts)) != 0)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002717 return -EFAULT;
Pierre Peifferc19384b2007-05-09 02:35:02 -07002718 if (!timespec_valid(&ts))
Thomas Gleixner9741ef92006-03-31 02:31:32 -08002719 return -EINVAL;
Pierre Peifferc19384b2007-05-09 02:35:02 -07002720
2721 t = timespec_to_ktime(ts);
Eric Dumazet34f01cc2007-05-09 02:35:04 -07002722 if (cmd == FUTEX_WAIT)
Thomas Gleixner5a7780e2008-02-13 09:20:43 +01002723 t = ktime_add_safe(ktime_get(), t);
Pierre Peifferc19384b2007-05-09 02:35:02 -07002724 tp = &t;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002725 }
2726 /*
Darren Hart52400ba2009-04-03 13:40:49 -07002727 * requeue parameter in 'utime' if cmd == FUTEX_*_REQUEUE_*.
Andreas Schwabf54f0982007-07-31 00:38:51 -07002728 * number of waiters to wake in 'utime' if cmd == FUTEX_WAKE_OP.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002729 */
Andreas Schwabf54f0982007-07-31 00:38:51 -07002730 if (cmd == FUTEX_REQUEUE || cmd == FUTEX_CMP_REQUEUE ||
Darren Hartba9c22f2009-04-20 22:22:22 -07002731 cmd == FUTEX_CMP_REQUEUE_PI || cmd == FUTEX_WAKE_OP)
Ingo Molnare2970f22006-06-27 02:54:47 -07002732 val2 = (u32) (unsigned long) utime;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002733
Pierre Peifferc19384b2007-05-09 02:35:02 -07002734 return do_futex(uaddr, op, val, tp, uaddr2, val2, val3);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002735}
2736
Benjamin Herrenschmidtf6d107f2008-03-27 14:52:15 +11002737static int __init futex_init(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002738{
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002739 u32 curval;
Thomas Gleixner3e4ab742008-02-23 15:23:55 -08002740 int i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002741
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002742 /*
2743 * This will fail and we want it. Some arch implementations do
2744 * runtime detection of the futex_atomic_cmpxchg_inatomic()
2745 * functionality. We want to know that before we call in any
2746 * of the complex code paths. Also we want to prevent
2747 * registration of robust lists in that case. NULL is
2748 * guaranteed to fault and we get -EFAULT on functional
Randy Dunlapfb62db22010-10-13 11:02:34 -07002749 * implementation, the non-functional ones will return
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002750 * -ENOSYS.
2751 */
Michel Lespinasse37a9d912011-03-10 18:48:51 -08002752 if (cmpxchg_futex_value_locked(&curval, NULL, 0, 0) == -EFAULT)
Thomas Gleixnera0c1e902008-02-23 15:23:57 -08002753 futex_cmpxchg_enabled = 1;
2754
Thomas Gleixner3e4ab742008-02-23 15:23:55 -08002755 for (i = 0; i < ARRAY_SIZE(futex_queues); i++) {
Dima Zavin732375c2011-07-07 17:27:59 -07002756 plist_head_init(&futex_queues[i].chain);
Thomas Gleixner3e4ab742008-02-23 15:23:55 -08002757 spin_lock_init(&futex_queues[i].lock);
2758 }
2759
Linus Torvalds1da177e2005-04-16 15:20:36 -07002760 return 0;
2761}
Benjamin Herrenschmidtf6d107f2008-03-27 14:52:15 +11002762__initcall(futex_init);