blob: bed9e7f80a50cee36e09c630c02688edd6b97624 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Generic pidhash and scalable, time-bounded PID allocator
3 *
4 * (C) 2002-2003 William Irwin, IBM
5 * (C) 2004 William Irwin, Oracle
6 * (C) 2002-2004 Ingo Molnar, Red Hat
7 *
8 * pid-structures are backing objects for tasks sharing a given ID to chain
9 * against. There is very little to them aside from hashing them and
10 * parking tasks using given ID's on a list.
11 *
12 * The hash is always changed with the tasklist_lock write-acquired,
13 * and the hash is only accessed with the tasklist_lock at least
14 * read-acquired, so there's no additional SMP locking needed here.
15 *
16 * We have a list of bitmap pages, which bitmaps represent the PID space.
17 * Allocating and freeing PIDs is completely lockless. The worst-case
18 * allocation scenario when all but one out of 1 million PIDs possible are
19 * allocated already: the scanning of 32 list entries and at most PAGE_SIZE
20 * bytes. The typical fastpath is a single successful setbit. Freeing is O(1).
Pavel Emelyanov30e49c22007-10-18 23:40:10 -070021 *
22 * Pid namespaces:
23 * (C) 2007 Pavel Emelyanov <xemul@openvz.org>, OpenVZ, SWsoft Inc.
24 * (C) 2007 Sukadev Bhattiprolu <sukadev@us.ibm.com>, IBM
25 * Many thanks to Oleg Nesterov for comments and help
26 *
Linus Torvalds1da177e2005-04-16 15:20:36 -070027 */
28
29#include <linux/mm.h>
30#include <linux/module.h>
31#include <linux/slab.h>
32#include <linux/init.h>
33#include <linux/bootmem.h>
34#include <linux/hash.h>
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -080035#include <linux/pid_namespace.h>
Sukadev Bhattiprolu820e45d2007-05-10 22:23:00 -070036#include <linux/init_task.h>
Sukadev Bhattiprolu3eb07c82007-10-18 23:40:13 -070037#include <linux/syscalls.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070038
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -070039#define pid_hashfn(nr, ns) \
40 hash_long((unsigned long)nr + (unsigned long)ns, pidhash_shift)
Eric W. Biederman92476d72006-03-31 02:31:42 -080041static struct hlist_head *pid_hash;
Linus Torvalds1da177e2005-04-16 15:20:36 -070042static int pidhash_shift;
Sukadev Bhattiprolu820e45d2007-05-10 22:23:00 -070043struct pid init_struct_pid = INIT_STRUCT_PID;
Sukadev Bhattiproluc9c5d922007-10-18 23:40:12 -070044static struct kmem_cache *pid_ns_cachep;
Linus Torvalds1da177e2005-04-16 15:20:36 -070045
46int pid_max = PID_MAX_DEFAULT;
Linus Torvalds1da177e2005-04-16 15:20:36 -070047
48#define RESERVED_PIDS 300
49
50int pid_max_min = RESERVED_PIDS + 1;
51int pid_max_max = PID_MAX_LIMIT;
52
Linus Torvalds1da177e2005-04-16 15:20:36 -070053#define BITS_PER_PAGE (PAGE_SIZE*8)
54#define BITS_PER_PAGE_MASK (BITS_PER_PAGE-1)
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -070055
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -080056static inline int mk_pid(struct pid_namespace *pid_ns,
57 struct pidmap *map, int off)
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -070058{
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -080059 return (map - pid_ns->pidmap)*BITS_PER_PAGE + off;
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -070060}
61
Linus Torvalds1da177e2005-04-16 15:20:36 -070062#define find_next_offset(map, off) \
63 find_next_zero_bit((map)->page, BITS_PER_PAGE, off)
64
65/*
66 * PID-map pages start out as NULL, they get allocated upon
67 * first use and are never deallocated. This way a low pid_max
68 * value does not cause lots of bitmaps to be allocated, but
69 * the scheme scales to up to 4 million PIDs, runtime.
70 */
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -080071struct pid_namespace init_pid_ns = {
Cedric Le Goater9a575a92006-12-08 02:37:59 -080072 .kref = {
73 .refcount = ATOMIC_INIT(2),
74 },
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -070075 .pidmap = {
76 [ 0 ... PIDMAP_ENTRIES-1] = { ATOMIC_INIT(BITS_PER_PAGE), NULL }
77 },
Sukadev Bhattiprolu84d73782006-12-08 02:38:01 -080078 .last_pid = 0,
Pavel Emelyanovfaacbfd2007-10-18 23:40:04 -070079 .level = 0,
80 .child_reaper = &init_task,
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -070081};
Pavel Emelyanov198fe212007-10-18 23:40:06 -070082EXPORT_SYMBOL_GPL(init_pid_ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -070083
Pavel Emelyanovb461cc02007-10-18 23:40:09 -070084int is_container_init(struct task_struct *tsk)
Serge E. Hallynb460cbc2007-10-18 23:39:52 -070085{
Pavel Emelyanovb461cc02007-10-18 23:40:09 -070086 int ret = 0;
87 struct pid *pid;
88
89 rcu_read_lock();
90 pid = task_pid(tsk);
91 if (pid != NULL && pid->numbers[pid->level].nr == 1)
92 ret = 1;
93 rcu_read_unlock();
94
95 return ret;
Serge E. Hallynb460cbc2007-10-18 23:39:52 -070096}
Pavel Emelyanovb461cc02007-10-18 23:40:09 -070097EXPORT_SYMBOL(is_container_init);
Serge E. Hallynb460cbc2007-10-18 23:39:52 -070098
Eric W. Biederman92476d72006-03-31 02:31:42 -080099/*
100 * Note: disable interrupts while the pidmap_lock is held as an
101 * interrupt might come in and do read_lock(&tasklist_lock).
102 *
103 * If we don't disable interrupts there is a nasty deadlock between
104 * detach_pid()->free_pid() and another cpu that does
105 * spin_lock(&pidmap_lock) followed by an interrupt routine that does
106 * read_lock(&tasklist_lock);
107 *
108 * After we clean up the tasklist_lock and know there are no
109 * irq handlers that take it we can leave the interrupts enabled.
110 * For now it is easier to be safe than to prove it can't happen.
111 */
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -0700112
Linus Torvalds1da177e2005-04-16 15:20:36 -0700113static __cacheline_aligned_in_smp DEFINE_SPINLOCK(pidmap_lock);
114
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800115static fastcall void free_pidmap(struct pid_namespace *pid_ns, int pid)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700116{
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800117 struct pidmap *map = pid_ns->pidmap + pid / BITS_PER_PAGE;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700118 int offset = pid & BITS_PER_PAGE_MASK;
119
120 clear_bit(offset, map->page);
121 atomic_inc(&map->nr_free);
122}
123
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800124static int alloc_pidmap(struct pid_namespace *pid_ns)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700125{
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800126 int i, offset, max_scan, pid, last = pid_ns->last_pid;
Sukadev Bhattiprolu6a1f3b82006-10-02 02:17:20 -0700127 struct pidmap *map;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700128
129 pid = last + 1;
130 if (pid >= pid_max)
131 pid = RESERVED_PIDS;
132 offset = pid & BITS_PER_PAGE_MASK;
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800133 map = &pid_ns->pidmap[pid/BITS_PER_PAGE];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700134 max_scan = (pid_max + BITS_PER_PAGE - 1)/BITS_PER_PAGE - !offset;
135 for (i = 0; i <= max_scan; ++i) {
136 if (unlikely(!map->page)) {
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -0700137 void *page = kzalloc(PAGE_SIZE, GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700138 /*
139 * Free the page if someone raced with us
140 * installing it:
141 */
Eric W. Biederman92476d72006-03-31 02:31:42 -0800142 spin_lock_irq(&pidmap_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700143 if (map->page)
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -0700144 kfree(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700145 else
Sukadev Bhattiprolu3fbc9642006-10-02 02:17:24 -0700146 map->page = page;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800147 spin_unlock_irq(&pidmap_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700148 if (unlikely(!map->page))
149 break;
150 }
151 if (likely(atomic_read(&map->nr_free))) {
152 do {
153 if (!test_and_set_bit(offset, map->page)) {
154 atomic_dec(&map->nr_free);
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800155 pid_ns->last_pid = pid;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700156 return pid;
157 }
158 offset = find_next_offset(map, offset);
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800159 pid = mk_pid(pid_ns, map, offset);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700160 /*
161 * find_next_offset() found a bit, the pid from it
162 * is in-bounds, and if we fell back to the last
163 * bitmap block and the final block was the same
164 * as the starting point, pid is before last_pid.
165 */
166 } while (offset < BITS_PER_PAGE && pid < pid_max &&
167 (i != max_scan || pid < last ||
168 !((last+1) & BITS_PER_PAGE_MASK)));
169 }
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800170 if (map < &pid_ns->pidmap[(pid_max-1)/BITS_PER_PAGE]) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700171 ++map;
172 offset = 0;
173 } else {
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800174 map = &pid_ns->pidmap[0];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700175 offset = RESERVED_PIDS;
176 if (unlikely(last == offset))
177 break;
178 }
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800179 pid = mk_pid(pid_ns, map, offset);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700180 }
181 return -1;
182}
183
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800184static int next_pidmap(struct pid_namespace *pid_ns, int last)
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700185{
186 int offset;
Eric W. Biedermanf40f50d2006-10-02 02:17:25 -0700187 struct pidmap *map, *end;
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700188
189 offset = (last + 1) & BITS_PER_PAGE_MASK;
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800190 map = &pid_ns->pidmap[(last + 1)/BITS_PER_PAGE];
191 end = &pid_ns->pidmap[PIDMAP_ENTRIES];
Eric W. Biedermanf40f50d2006-10-02 02:17:25 -0700192 for (; map < end; map++, offset = 0) {
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700193 if (unlikely(!map->page))
194 continue;
195 offset = find_next_bit((map)->page, BITS_PER_PAGE, offset);
196 if (offset < BITS_PER_PAGE)
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800197 return mk_pid(pid_ns, map, offset);
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700198 }
199 return -1;
200}
201
Eric W. Biederman92476d72006-03-31 02:31:42 -0800202fastcall void put_pid(struct pid *pid)
203{
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700204 struct pid_namespace *ns;
205
Eric W. Biederman92476d72006-03-31 02:31:42 -0800206 if (!pid)
207 return;
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700208
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700209 ns = pid->numbers[pid->level].ns;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800210 if ((atomic_read(&pid->count) == 1) ||
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700211 atomic_dec_and_test(&pid->count)) {
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700212 kmem_cache_free(ns->pid_cachep, pid);
Pavel Emelyanovb461cc02007-10-18 23:40:09 -0700213 put_pid_ns(ns);
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700214 }
Eric W. Biederman92476d72006-03-31 02:31:42 -0800215}
Eric W. Biedermanbbf73142006-10-02 02:17:11 -0700216EXPORT_SYMBOL_GPL(put_pid);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800217
218static void delayed_put_pid(struct rcu_head *rhp)
219{
220 struct pid *pid = container_of(rhp, struct pid, rcu);
221 put_pid(pid);
222}
223
224fastcall void free_pid(struct pid *pid)
225{
226 /* We can be called with write_lock_irq(&tasklist_lock) held */
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700227 int i;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800228 unsigned long flags;
229
230 spin_lock_irqsave(&pidmap_lock, flags);
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700231 for (i = 0; i <= pid->level; i++)
232 hlist_del_rcu(&pid->numbers[i].pid_chain);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800233 spin_unlock_irqrestore(&pidmap_lock, flags);
234
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700235 for (i = 0; i <= pid->level; i++)
236 free_pidmap(pid->numbers[i].ns, pid->numbers[i].nr);
237
Eric W. Biederman92476d72006-03-31 02:31:42 -0800238 call_rcu(&pid->rcu, delayed_put_pid);
239}
240
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700241struct pid *alloc_pid(struct pid_namespace *ns)
Eric W. Biederman92476d72006-03-31 02:31:42 -0800242{
243 struct pid *pid;
244 enum pid_type type;
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700245 int i, nr;
246 struct pid_namespace *tmp;
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700247 struct upid *upid;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800248
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700249 pid = kmem_cache_alloc(ns->pid_cachep, GFP_KERNEL);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800250 if (!pid)
251 goto out;
252
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700253 tmp = ns;
254 for (i = ns->level; i >= 0; i--) {
255 nr = alloc_pidmap(tmp);
256 if (nr < 0)
257 goto out_free;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800258
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700259 pid->numbers[i].nr = nr;
260 pid->numbers[i].ns = tmp;
261 tmp = tmp->parent;
262 }
263
Pavel Emelyanovb461cc02007-10-18 23:40:09 -0700264 get_pid_ns(ns);
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700265 pid->level = ns->level;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800266 atomic_set(&pid->count, 1);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800267 for (type = 0; type < PIDTYPE_MAX; ++type)
268 INIT_HLIST_HEAD(&pid->tasks[type]);
269
270 spin_lock_irq(&pidmap_lock);
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700271 for (i = ns->level; i >= 0; i--) {
272 upid = &pid->numbers[i];
273 hlist_add_head_rcu(&upid->pid_chain,
274 &pid_hash[pid_hashfn(upid->nr, upid->ns)]);
275 }
Eric W. Biederman92476d72006-03-31 02:31:42 -0800276 spin_unlock_irq(&pidmap_lock);
277
278out:
279 return pid;
280
281out_free:
Pavel Emelyanov8ef047a2007-10-18 23:40:05 -0700282 for (i++; i <= ns->level; i++)
283 free_pidmap(pid->numbers[i].ns, pid->numbers[i].nr);
284
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700285 kmem_cache_free(ns->pid_cachep, pid);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800286 pid = NULL;
287 goto out;
288}
289
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700290struct pid * fastcall find_pid_ns(int nr, struct pid_namespace *ns)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700291{
292 struct hlist_node *elem;
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700293 struct upid *pnr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700294
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700295 hlist_for_each_entry_rcu(pnr, elem,
296 &pid_hash[pid_hashfn(nr, ns)], pid_chain)
297 if (pnr->nr == nr && pnr->ns == ns)
298 return container_of(pnr, struct pid,
299 numbers[ns->level]);
300
Linus Torvalds1da177e2005-04-16 15:20:36 -0700301 return NULL;
302}
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700303EXPORT_SYMBOL_GPL(find_pid_ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700304
Sukadev Bhattiprolue713d0d2007-05-10 22:22:58 -0700305/*
306 * attach_pid() must be called with the tasklist_lock write-held.
307 */
308int fastcall attach_pid(struct task_struct *task, enum pid_type type,
309 struct pid *pid)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700310{
Eric W. Biederman92476d72006-03-31 02:31:42 -0800311 struct pid_link *link;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700312
Eric W. Biederman92476d72006-03-31 02:31:42 -0800313 link = &task->pids[type];
Sukadev Bhattiprolue713d0d2007-05-10 22:22:58 -0700314 link->pid = pid;
Eric W. Biederman92476d72006-03-31 02:31:42 -0800315 hlist_add_head_rcu(&link->node, &pid->tasks[type]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700316
317 return 0;
318}
319
Ingo Molnar36c8b582006-07-03 00:25:41 -0700320void fastcall detach_pid(struct task_struct *task, enum pid_type type)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700321{
Eric W. Biederman92476d72006-03-31 02:31:42 -0800322 struct pid_link *link;
323 struct pid *pid;
324 int tmp;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700325
Eric W. Biederman92476d72006-03-31 02:31:42 -0800326 link = &task->pids[type];
327 pid = link->pid;
328
329 hlist_del_rcu(&link->node);
330 link->pid = NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700331
332 for (tmp = PIDTYPE_MAX; --tmp >= 0; )
Eric W. Biederman92476d72006-03-31 02:31:42 -0800333 if (!hlist_empty(&pid->tasks[tmp]))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700334 return;
335
Eric W. Biederman92476d72006-03-31 02:31:42 -0800336 free_pid(pid);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700337}
338
Eric W. Biedermanc18258c2006-09-27 01:51:06 -0700339/* transfer_pid is an optimization of attach_pid(new), detach_pid(old) */
340void fastcall transfer_pid(struct task_struct *old, struct task_struct *new,
341 enum pid_type type)
342{
343 new->pids[type].pid = old->pids[type].pid;
344 hlist_replace_rcu(&old->pids[type].node, &new->pids[type].node);
345 old->pids[type].pid = NULL;
346}
347
Eric W. Biederman92476d72006-03-31 02:31:42 -0800348struct task_struct * fastcall pid_task(struct pid *pid, enum pid_type type)
349{
350 struct task_struct *result = NULL;
351 if (pid) {
352 struct hlist_node *first;
353 first = rcu_dereference(pid->tasks[type].first);
354 if (first)
355 result = hlist_entry(first, struct task_struct, pids[(type)].node);
356 }
357 return result;
358}
359
360/*
361 * Must be called under rcu_read_lock() or with tasklist_lock read-held.
362 */
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700363struct task_struct *find_task_by_pid_type_ns(int type, int nr,
364 struct pid_namespace *ns)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700365{
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700366 return pid_task(find_pid_ns(nr, ns), type);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700367}
368
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700369EXPORT_SYMBOL(find_task_by_pid_type_ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700370
Pavel Emelyanov228ebcb2007-10-18 23:40:16 -0700371struct task_struct *find_task_by_pid(pid_t nr)
372{
373 return find_task_by_pid_type_ns(PIDTYPE_PID, nr, &init_pid_ns);
374}
375EXPORT_SYMBOL(find_task_by_pid);
376
377struct task_struct *find_task_by_vpid(pid_t vnr)
378{
379 return find_task_by_pid_type_ns(PIDTYPE_PID, vnr,
380 current->nsproxy->pid_ns);
381}
382EXPORT_SYMBOL(find_task_by_vpid);
383
384struct task_struct *find_task_by_pid_ns(pid_t nr, struct pid_namespace *ns)
385{
386 return find_task_by_pid_type_ns(PIDTYPE_PID, nr, ns);
387}
388EXPORT_SYMBOL(find_task_by_pid_ns);
389
Oleg Nesterov1a657f72006-10-02 02:18:59 -0700390struct pid *get_task_pid(struct task_struct *task, enum pid_type type)
391{
392 struct pid *pid;
393 rcu_read_lock();
394 pid = get_pid(task->pids[type].pid);
395 rcu_read_unlock();
396 return pid;
397}
398
Eric W. Biederman92476d72006-03-31 02:31:42 -0800399struct task_struct *fastcall get_pid_task(struct pid *pid, enum pid_type type)
400{
401 struct task_struct *result;
402 rcu_read_lock();
403 result = pid_task(pid, type);
404 if (result)
405 get_task_struct(result);
406 rcu_read_unlock();
407 return result;
408}
409
410struct pid *find_get_pid(pid_t nr)
411{
412 struct pid *pid;
413
414 rcu_read_lock();
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700415 pid = get_pid(find_vpid(nr));
Eric W. Biederman92476d72006-03-31 02:31:42 -0800416 rcu_read_unlock();
417
418 return pid;
419}
420
Pavel Emelyanov7af57292007-10-18 23:40:06 -0700421pid_t pid_nr_ns(struct pid *pid, struct pid_namespace *ns)
422{
423 struct upid *upid;
424 pid_t nr = 0;
425
426 if (pid && ns->level <= pid->level) {
427 upid = &pid->numbers[ns->level];
428 if (upid->ns == ns)
429 nr = upid->nr;
430 }
431 return nr;
432}
433
Linus Torvalds1da177e2005-04-16 15:20:36 -0700434/*
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700435 * Used by proc to find the first pid that is greater then or equal to nr.
436 *
437 * If there is a pid at nr this function is exactly the same as find_pid.
438 */
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700439struct pid *find_ge_pid(int nr, struct pid_namespace *ns)
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700440{
441 struct pid *pid;
442
443 do {
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700444 pid = find_pid_ns(nr, ns);
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700445 if (pid)
446 break;
Pavel Emelyanov198fe212007-10-18 23:40:06 -0700447 nr = next_pidmap(ns, nr);
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700448 } while (nr > 0);
449
450 return pid;
451}
Eric W. Biedermanbbf73142006-10-02 02:17:11 -0700452EXPORT_SYMBOL_GPL(find_get_pid);
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700453
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700454struct pid_cache {
455 int nr_ids;
456 char name[16];
457 struct kmem_cache *cachep;
458 struct list_head list;
459};
460
461static LIST_HEAD(pid_caches_lh);
462static DEFINE_MUTEX(pid_caches_mutex);
463
464/*
465 * creates the kmem cache to allocate pids from.
466 * @nr_ids: the number of numerical ids this pid will have to carry
467 */
468
469static struct kmem_cache *create_pid_cachep(int nr_ids)
470{
471 struct pid_cache *pcache;
472 struct kmem_cache *cachep;
473
474 mutex_lock(&pid_caches_mutex);
475 list_for_each_entry (pcache, &pid_caches_lh, list)
476 if (pcache->nr_ids == nr_ids)
477 goto out;
478
479 pcache = kmalloc(sizeof(struct pid_cache), GFP_KERNEL);
480 if (pcache == NULL)
481 goto err_alloc;
482
483 snprintf(pcache->name, sizeof(pcache->name), "pid_%d", nr_ids);
484 cachep = kmem_cache_create(pcache->name,
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700485 sizeof(struct pid) + (nr_ids - 1) * sizeof(struct upid),
486 0, SLAB_HWCACHE_ALIGN, NULL);
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700487 if (cachep == NULL)
488 goto err_cachep;
489
490 pcache->nr_ids = nr_ids;
491 pcache->cachep = cachep;
492 list_add(&pcache->list, &pid_caches_lh);
493out:
494 mutex_unlock(&pid_caches_mutex);
495 return pcache->cachep;
496
497err_cachep:
498 kfree(pcache);
499err_alloc:
500 mutex_unlock(&pid_caches_mutex);
501 return NULL;
502}
503
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700504static struct pid_namespace *create_pid_namespace(int level)
505{
506 struct pid_namespace *ns;
507 int i;
508
Sukadev Bhattiproluc9c5d922007-10-18 23:40:12 -0700509 ns = kmem_cache_alloc(pid_ns_cachep, GFP_KERNEL);
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700510 if (ns == NULL)
511 goto out;
512
513 ns->pidmap[0].page = kzalloc(PAGE_SIZE, GFP_KERNEL);
514 if (!ns->pidmap[0].page)
515 goto out_free;
516
517 ns->pid_cachep = create_pid_cachep(level + 1);
518 if (ns->pid_cachep == NULL)
519 goto out_free_map;
520
521 kref_init(&ns->kref);
522 ns->last_pid = 0;
523 ns->child_reaper = NULL;
524 ns->level = level;
525
526 set_bit(0, ns->pidmap[0].page);
527 atomic_set(&ns->pidmap[0].nr_free, BITS_PER_PAGE - 1);
528
529 for (i = 1; i < PIDMAP_ENTRIES; i++) {
530 ns->pidmap[i].page = 0;
531 atomic_set(&ns->pidmap[i].nr_free, BITS_PER_PAGE);
532 }
533
534 return ns;
535
536out_free_map:
537 kfree(ns->pidmap[0].page);
538out_free:
Sukadev Bhattiproluc9c5d922007-10-18 23:40:12 -0700539 kmem_cache_free(pid_ns_cachep, ns);
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700540out:
541 return ERR_PTR(-ENOMEM);
542}
543
544static void destroy_pid_namespace(struct pid_namespace *ns)
545{
546 int i;
547
548 for (i = 0; i < PIDMAP_ENTRIES; i++)
549 kfree(ns->pidmap[i].page);
Sukadev Bhattiproluc9c5d922007-10-18 23:40:12 -0700550 kmem_cache_free(pid_ns_cachep, ns);
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700551}
552
Eric W. Biederman213dd262007-07-15 23:41:15 -0700553struct pid_namespace *copy_pid_ns(unsigned long flags, struct pid_namespace *old_ns)
Cedric Le Goater9a575a92006-12-08 02:37:59 -0800554{
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700555 struct pid_namespace *new_ns;
556
Badari Pulavartye3222c42007-05-08 00:25:21 -0700557 BUG_ON(!old_ns);
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700558 new_ns = get_pid_ns(old_ns);
559 if (!(flags & CLONE_NEWPID))
560 goto out;
561
562 new_ns = ERR_PTR(-EINVAL);
563 if (flags & CLONE_THREAD)
564 goto out_put;
565
566 new_ns = create_pid_namespace(old_ns->level + 1);
567 if (!IS_ERR(new_ns))
568 new_ns->parent = get_pid_ns(old_ns);
569
570out_put:
571 put_pid_ns(old_ns);
572out:
573 return new_ns;
Cedric Le Goater9a575a92006-12-08 02:37:59 -0800574}
575
576void free_pid_ns(struct kref *kref)
577{
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700578 struct pid_namespace *ns, *parent;
Cedric Le Goater9a575a92006-12-08 02:37:59 -0800579
580 ns = container_of(kref, struct pid_namespace, kref);
Pavel Emelyanov30e49c22007-10-18 23:40:10 -0700581
582 parent = ns->parent;
583 destroy_pid_namespace(ns);
584
585 if (parent != NULL)
586 put_pid_ns(parent);
Cedric Le Goater9a575a92006-12-08 02:37:59 -0800587}
588
Sukadev Bhattiprolu3eb07c82007-10-18 23:40:13 -0700589void zap_pid_ns_processes(struct pid_namespace *pid_ns)
590{
591 int nr;
592 int rc;
593
594 /*
595 * The last thread in the cgroup-init thread group is terminating.
596 * Find remaining pid_ts in the namespace, signal and wait for them
597 * to exit.
598 *
599 * Note: This signals each threads in the namespace - even those that
600 * belong to the same thread group, To avoid this, we would have
601 * to walk the entire tasklist looking a processes in this
602 * namespace, but that could be unnecessarily expensive if the
603 * pid namespace has just a few processes. Or we need to
604 * maintain a tasklist for each pid namespace.
605 *
606 */
607 read_lock(&tasklist_lock);
608 nr = next_pidmap(pid_ns, 1);
609 while (nr > 0) {
610 kill_proc_info(SIGKILL, SEND_SIG_PRIV, nr);
611 nr = next_pidmap(pid_ns, nr);
612 }
613 read_unlock(&tasklist_lock);
614
615 do {
616 clear_thread_flag(TIF_SIGPENDING);
617 rc = sys_wait4(-1, NULL, __WALL, NULL);
618 } while (rc != -ECHILD);
619
620
621 /* Child reaper for the pid namespace is going away */
622 pid_ns->child_reaper = NULL;
623 return;
624}
625
Eric W. Biederman0804ef42006-10-02 02:17:04 -0700626/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700627 * The pid hash table is scaled according to the amount of memory in the
628 * machine. From a minimum of 16 slots up to 4096 slots at one gigabyte or
629 * more.
630 */
631void __init pidhash_init(void)
632{
Eric W. Biederman92476d72006-03-31 02:31:42 -0800633 int i, pidhash_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700634 unsigned long megabytes = nr_kernel_pages >> (20 - PAGE_SHIFT);
635
636 pidhash_shift = max(4, fls(megabytes * 4));
637 pidhash_shift = min(12, pidhash_shift);
638 pidhash_size = 1 << pidhash_shift;
639
640 printk("PID hash table entries: %d (order: %d, %Zd bytes)\n",
641 pidhash_size, pidhash_shift,
Eric W. Biederman92476d72006-03-31 02:31:42 -0800642 pidhash_size * sizeof(struct hlist_head));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700643
Eric W. Biederman92476d72006-03-31 02:31:42 -0800644 pid_hash = alloc_bootmem(pidhash_size * sizeof(*(pid_hash)));
645 if (!pid_hash)
646 panic("Could not alloc pidhash!\n");
647 for (i = 0; i < pidhash_size; i++)
648 INIT_HLIST_HEAD(&pid_hash[i]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700649}
650
651void __init pidmap_init(void)
652{
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800653 init_pid_ns.pidmap[0].page = kzalloc(PAGE_SIZE, GFP_KERNEL);
Oleg Nesterov73b9ebf2006-03-28 16:11:07 -0800654 /* Reserve PID 0. We never call free_pidmap(0) */
Sukadev Bhattiprolu61a58c62006-12-08 02:37:58 -0800655 set_bit(0, init_pid_ns.pidmap[0].page);
656 atomic_dec(&init_pid_ns.pidmap[0].nr_free);
Eric W. Biederman92476d72006-03-31 02:31:42 -0800657
Pavel Emelianovbaf8f0f2007-10-18 23:39:48 -0700658 init_pid_ns.pid_cachep = create_pid_cachep(1);
659 if (init_pid_ns.pid_cachep == NULL)
660 panic("Can't create pid_1 cachep\n");
Sukadev Bhattiproluc9c5d922007-10-18 23:40:12 -0700661
662 pid_ns_cachep = KMEM_CACHE(pid_namespace, SLAB_PANIC);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700663}