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1#ifndef _LINUX_CGROUP_H
2#define _LINUX_CGROUP_H
3/*
4 * cgroup interface
5 *
6 * Copyright (C) 2003 BULL SA
7 * Copyright (C) 2004-2006 Silicon Graphics, Inc.
8 *
9 */
10
11#include <linux/sched.h>
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12#include <linux/cpumask.h>
13#include <linux/nodemask.h>
14#include <linux/rcupdate.h>
846c7bb0 15#include <linux/cgroupstats.h>
31a7df01 16#include <linux/prio_heap.h>
cc31edce 17#include <linux/rwsem.h>
38460b48 18#include <linux/idr.h>
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19
20#ifdef CONFIG_CGROUPS
21
22struct cgroupfs_root;
23struct cgroup_subsys;
24struct inode;
84eea842 25struct cgroup;
38460b48 26struct css_id;
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27
28extern int cgroup_init_early(void);
29extern int cgroup_init(void);
ddbcc7e8 30extern void cgroup_lock(void);
84eea842 31extern bool cgroup_lock_live_group(struct cgroup *cgrp);
ddbcc7e8 32extern void cgroup_unlock(void);
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33extern void cgroup_fork(struct task_struct *p);
34extern void cgroup_fork_callbacks(struct task_struct *p);
817929ec 35extern void cgroup_post_fork(struct task_struct *p);
b4f48b63 36extern void cgroup_exit(struct task_struct *p, int run_callbacks);
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37extern int cgroupstats_build(struct cgroupstats *stats,
38 struct dentry *dentry);
ddbcc7e8 39
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40extern struct file_operations proc_cgroup_operations;
41
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42/* Define the enumeration of all cgroup subsystems */
43#define SUBSYS(_x) _x ## _subsys_id,
44enum cgroup_subsys_id {
45#include <linux/cgroup_subsys.h>
46 CGROUP_SUBSYS_COUNT
47};
48#undef SUBSYS
49
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50/* Per-subsystem/per-cgroup state maintained by the system. */
51struct cgroup_subsys_state {
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52 /*
53 * The cgroup that this subsystem is attached to. Useful
ddbcc7e8 54 * for subsystems that want to know about the cgroup
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55 * hierarchy structure
56 */
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57 struct cgroup *cgroup;
58
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59 /*
60 * State maintained by the cgroup system to allow subsystems
e7c5ec91 61 * to be "busy". Should be accessed via css_get(),
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62 * css_tryget() and and css_put().
63 */
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64
65 atomic_t refcnt;
66
67 unsigned long flags;
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68 /* ID for this css, if possible */
69 struct css_id *id;
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70};
71
72/* bits in struct cgroup_subsys_state flags field */
73enum {
74 CSS_ROOT, /* This CSS is the root of the subsystem */
e7c5ec91 75 CSS_REMOVED, /* This CSS is dead */
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76};
77
78/*
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79 * Call css_get() to hold a reference on the css; it can be used
80 * for a reference obtained via:
81 * - an existing ref-counted reference to the css
82 * - task->cgroups for a locked task
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83 */
84
85static inline void css_get(struct cgroup_subsys_state *css)
86{
87 /* We don't need to reference count the root state */
88 if (!test_bit(CSS_ROOT, &css->flags))
89 atomic_inc(&css->refcnt);
90}
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91
92static inline bool css_is_removed(struct cgroup_subsys_state *css)
93{
94 return test_bit(CSS_REMOVED, &css->flags);
95}
96
97/*
98 * Call css_tryget() to take a reference on a css if your existing
99 * (known-valid) reference isn't already ref-counted. Returns false if
100 * the css has been destroyed.
101 */
102
103static inline bool css_tryget(struct cgroup_subsys_state *css)
104{
105 if (test_bit(CSS_ROOT, &css->flags))
106 return true;
107 while (!atomic_inc_not_zero(&css->refcnt)) {
108 if (test_bit(CSS_REMOVED, &css->flags))
109 return false;
804b3c28 110 cpu_relax();
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111 }
112 return true;
113}
114
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115/*
116 * css_put() should be called to release a reference taken by
e7c5ec91 117 * css_get() or css_tryget()
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118 */
119
81a6a5cd 120extern void __css_put(struct cgroup_subsys_state *css);
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121static inline void css_put(struct cgroup_subsys_state *css)
122{
123 if (!test_bit(CSS_ROOT, &css->flags))
81a6a5cd 124 __css_put(css);
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125}
126
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127/* bits in struct cgroup flags field */
128enum {
129 /* Control Group is dead */
130 CGRP_REMOVED,
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131 /*
132 * Control Group has previously had a child cgroup or a task,
133 * but no longer (only if CGRP_NOTIFY_ON_RELEASE is set)
134 */
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135 CGRP_RELEASABLE,
136 /* Control Group requires release notifications to userspace */
137 CGRP_NOTIFY_ON_RELEASE,
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138 /*
139 * A thread in rmdir() is wating for this cgroup.
140 */
141 CGRP_WAIT_ON_RMDIR,
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142};
143
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144struct cgroup {
145 unsigned long flags; /* "unsigned long" so bitops work */
146
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147 /*
148 * count users of this cgroup. >0 means busy, but doesn't
149 * necessarily indicate the number of tasks in the cgroup
150 */
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151 atomic_t count;
152
153 /*
154 * We link our 'sibling' struct into our parent's 'children'.
155 * Our children link their 'sibling' into our 'children'.
156 */
157 struct list_head sibling; /* my parent's children */
158 struct list_head children; /* my children */
159
d20a390a 160 struct cgroup *parent; /* my parent */
a47295e6 161 struct dentry *dentry; /* cgroup fs entry, RCU protected */
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162
163 /* Private pointers for each registered subsystem */
164 struct cgroup_subsys_state *subsys[CGROUP_SUBSYS_COUNT];
165
166 struct cgroupfs_root *root;
167 struct cgroup *top_cgroup;
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168
169 /*
170 * List of cg_cgroup_links pointing at css_sets with
171 * tasks in this cgroup. Protected by css_set_lock
172 */
173 struct list_head css_sets;
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174
175 /*
176 * Linked list running through all cgroups that can
177 * potentially be reaped by the release agent. Protected by
178 * release_list_lock
179 */
180 struct list_head release_list;
cc31edce 181
096b7fe0 182 /* pids_mutex protects pids_list and cached pid arrays. */
cc31edce 183 struct rw_semaphore pids_mutex;
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184
185 /* Linked list of struct cgroup_pids */
186 struct list_head pids_list;
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187
188 /* For RCU-protected deletion */
189 struct rcu_head rcu_head;
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190};
191
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192/*
193 * A css_set is a structure holding pointers to a set of
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194 * cgroup_subsys_state objects. This saves space in the task struct
195 * object and speeds up fork()/exit(), since a single inc/dec and a
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196 * list_add()/del() can bump the reference count on the entire cgroup
197 * set for a task.
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198 */
199
200struct css_set {
201
202 /* Reference count */
146aa1bd 203 atomic_t refcount;
817929ec 204
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205 /*
206 * List running through all cgroup groups in the same hash
207 * slot. Protected by css_set_lock
208 */
209 struct hlist_node hlist;
210
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211 /*
212 * List running through all tasks using this cgroup
213 * group. Protected by css_set_lock
214 */
215 struct list_head tasks;
216
217 /*
218 * List of cg_cgroup_link objects on link chains from
219 * cgroups referenced from this css_set. Protected by
220 * css_set_lock
221 */
222 struct list_head cg_links;
223
224 /*
225 * Set of subsystem states, one for each subsystem. This array
226 * is immutable after creation apart from the init_css_set
227 * during subsystem registration (at boot time).
228 */
229 struct cgroup_subsys_state *subsys[CGROUP_SUBSYS_COUNT];
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230};
231
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232/*
233 * cgroup_map_cb is an abstract callback API for reporting map-valued
234 * control files
235 */
236
237struct cgroup_map_cb {
238 int (*fill)(struct cgroup_map_cb *cb, const char *key, u64 value);
239 void *state;
240};
241
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242/*
243 * struct cftype: handler definitions for cgroup control files
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244 *
245 * When reading/writing to a file:
a043e3b2 246 * - the cgroup to use is file->f_dentry->d_parent->d_fsdata
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247 * - the 'cftype' of the file is file->f_dentry->d_fsdata
248 */
249
250#define MAX_CFTYPE_NAME 64
251struct cftype {
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252 /*
253 * By convention, the name should begin with the name of the
254 * subsystem, followed by a period
255 */
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256 char name[MAX_CFTYPE_NAME];
257 int private;
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258 /*
259 * If not 0, file mode is set to this value, otherwise it will
260 * be figured out automatically
261 */
262 mode_t mode;
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263
264 /*
265 * If non-zero, defines the maximum length of string that can
266 * be passed to write_string; defaults to 64
267 */
268 size_t max_write_len;
269
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270 int (*open)(struct inode *inode, struct file *file);
271 ssize_t (*read)(struct cgroup *cgrp, struct cftype *cft,
272 struct file *file,
273 char __user *buf, size_t nbytes, loff_t *ppos);
ddbcc7e8 274 /*
f4c753b7 275 * read_u64() is a shortcut for the common case of returning a
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276 * single integer. Use it in place of read()
277 */
ce16b49d 278 u64 (*read_u64)(struct cgroup *cgrp, struct cftype *cft);
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279 /*
280 * read_s64() is a signed version of read_u64()
281 */
ce16b49d 282 s64 (*read_s64)(struct cgroup *cgrp, struct cftype *cft);
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283 /*
284 * read_map() is used for defining a map of key/value
285 * pairs. It should call cb->fill(cb, key, value) for each
286 * entry. The key/value pairs (and their ordering) should not
287 * change between reboots.
288 */
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289 int (*read_map)(struct cgroup *cont, struct cftype *cft,
290 struct cgroup_map_cb *cb);
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291 /*
292 * read_seq_string() is used for outputting a simple sequence
293 * using seqfile.
294 */
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295 int (*read_seq_string)(struct cgroup *cont, struct cftype *cft,
296 struct seq_file *m);
91796569 297
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298 ssize_t (*write)(struct cgroup *cgrp, struct cftype *cft,
299 struct file *file,
300 const char __user *buf, size_t nbytes, loff_t *ppos);
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301
302 /*
f4c753b7 303 * write_u64() is a shortcut for the common case of accepting
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304 * a single integer (as parsed by simple_strtoull) from
305 * userspace. Use in place of write(); return 0 or error.
306 */
ce16b49d 307 int (*write_u64)(struct cgroup *cgrp, struct cftype *cft, u64 val);
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308 /*
309 * write_s64() is a signed version of write_u64()
310 */
ce16b49d 311 int (*write_s64)(struct cgroup *cgrp, struct cftype *cft, s64 val);
355e0c48 312
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313 /*
314 * write_string() is passed a nul-terminated kernelspace
315 * buffer of maximum length determined by max_write_len.
316 * Returns 0 or -ve error code.
317 */
318 int (*write_string)(struct cgroup *cgrp, struct cftype *cft,
319 const char *buffer);
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320 /*
321 * trigger() callback can be used to get some kick from the
322 * userspace, when the actual string written is not important
323 * at all. The private field can be used to determine the
324 * kick type for multiplexing.
325 */
326 int (*trigger)(struct cgroup *cgrp, unsigned int event);
327
ce16b49d 328 int (*release)(struct inode *inode, struct file *file);
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329};
330
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331struct cgroup_scanner {
332 struct cgroup *cg;
333 int (*test_task)(struct task_struct *p, struct cgroup_scanner *scan);
334 void (*process_task)(struct task_struct *p,
335 struct cgroup_scanner *scan);
336 struct ptr_heap *heap;
bd1a8ab7 337 void *data;
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338};
339
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340/*
341 * Add a new file to the given cgroup directory. Should only be
342 * called by subsystems from within a populate() method
343 */
ffd2d883 344int cgroup_add_file(struct cgroup *cgrp, struct cgroup_subsys *subsys,
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345 const struct cftype *cft);
346
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347/*
348 * Add a set of new files to the given cgroup directory. Should
349 * only be called by subsystems from within a populate() method
350 */
ffd2d883 351int cgroup_add_files(struct cgroup *cgrp,
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352 struct cgroup_subsys *subsys,
353 const struct cftype cft[],
354 int count);
355
ffd2d883 356int cgroup_is_removed(const struct cgroup *cgrp);
ddbcc7e8 357
ffd2d883 358int cgroup_path(const struct cgroup *cgrp, char *buf, int buflen);
ddbcc7e8 359
ffd2d883 360int cgroup_task_count(const struct cgroup *cgrp);
bbcb81d0 361
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362/* Return true if cgrp is a descendant of the task's cgroup */
363int cgroup_is_descendant(const struct cgroup *cgrp, struct task_struct *task);
ddbcc7e8 364
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365/*
366 * Control Group subsystem type.
367 * See Documentation/cgroups/cgroups.txt for details
368 */
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369
370struct cgroup_subsys {
371 struct cgroup_subsys_state *(*create)(struct cgroup_subsys *ss,
ffd2d883 372 struct cgroup *cgrp);
ec64f515 373 int (*pre_destroy)(struct cgroup_subsys *ss, struct cgroup *cgrp);
ffd2d883 374 void (*destroy)(struct cgroup_subsys *ss, struct cgroup *cgrp);
ddbcc7e8 375 int (*can_attach)(struct cgroup_subsys *ss,
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376 struct cgroup *cgrp, struct task_struct *tsk);
377 void (*attach)(struct cgroup_subsys *ss, struct cgroup *cgrp,
378 struct cgroup *old_cgrp, struct task_struct *tsk);
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379 void (*fork)(struct cgroup_subsys *ss, struct task_struct *task);
380 void (*exit)(struct cgroup_subsys *ss, struct task_struct *task);
381 int (*populate)(struct cgroup_subsys *ss,
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382 struct cgroup *cgrp);
383 void (*post_clone)(struct cgroup_subsys *ss, struct cgroup *cgrp);
ddbcc7e8 384 void (*bind)(struct cgroup_subsys *ss, struct cgroup *root);
e5991371 385
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386 int subsys_id;
387 int active;
8bab8dde 388 int disabled;
ddbcc7e8 389 int early_init;
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390 /*
391 * True if this subsys uses ID. ID is not available before cgroup_init()
392 * (not available in early_init time.)
393 */
394 bool use_id;
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395#define MAX_CGROUP_TYPE_NAMELEN 32
396 const char *name;
397
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398 /*
399 * Protects sibling/children links of cgroups in this
400 * hierarchy, plus protects which hierarchy (or none) the
401 * subsystem is a part of (i.e. root/sibling). To avoid
402 * potential deadlocks, the following operations should not be
403 * undertaken while holding any hierarchy_mutex:
404 *
405 * - allocating memory
406 * - initiating hotplug events
407 */
408 struct mutex hierarchy_mutex;
cfebe563 409 struct lock_class_key subsys_key;
ddbcc7e8 410
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411 /*
412 * Link to parent, and list entry in parent's children.
413 * Protected by this->hierarchy_mutex and cgroup_lock()
414 */
415 struct cgroupfs_root *root;
ddbcc7e8 416 struct list_head sibling;
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417 /* used when use_id == true */
418 struct idr idr;
419 spinlock_t id_lock;
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420};
421
422#define SUBSYS(_x) extern struct cgroup_subsys _x ## _subsys;
423#include <linux/cgroup_subsys.h>
424#undef SUBSYS
425
426static inline struct cgroup_subsys_state *cgroup_subsys_state(
ffd2d883 427 struct cgroup *cgrp, int subsys_id)
ddbcc7e8 428{
ffd2d883 429 return cgrp->subsys[subsys_id];
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430}
431
432static inline struct cgroup_subsys_state *task_subsys_state(
433 struct task_struct *task, int subsys_id)
434{
817929ec 435 return rcu_dereference(task->cgroups->subsys[subsys_id]);
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436}
437
438static inline struct cgroup* task_cgroup(struct task_struct *task,
439 int subsys_id)
440{
441 return task_subsys_state(task, subsys_id)->cgroup;
442}
443
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444int cgroup_clone(struct task_struct *tsk, struct cgroup_subsys *ss,
445 char *nodename);
697f4161 446
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447/* A cgroup_iter should be treated as an opaque object */
448struct cgroup_iter {
449 struct list_head *cg_link;
450 struct list_head *task;
451};
452
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453/*
454 * To iterate across the tasks in a cgroup:
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455 *
456 * 1) call cgroup_iter_start to intialize an iterator
457 *
458 * 2) call cgroup_iter_next() to retrieve member tasks until it
459 * returns NULL or until you want to end the iteration
460 *
461 * 3) call cgroup_iter_end() to destroy the iterator.
31a7df01 462 *
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463 * Or, call cgroup_scan_tasks() to iterate through every task in a
464 * cgroup - cgroup_scan_tasks() holds the css_set_lock when calling
465 * the test_task() callback, but not while calling the process_task()
466 * callback.
817929ec 467 */
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468void cgroup_iter_start(struct cgroup *cgrp, struct cgroup_iter *it);
469struct task_struct *cgroup_iter_next(struct cgroup *cgrp,
817929ec 470 struct cgroup_iter *it);
ffd2d883 471void cgroup_iter_end(struct cgroup *cgrp, struct cgroup_iter *it);
31a7df01 472int cgroup_scan_tasks(struct cgroup_scanner *scan);
956db3ca 473int cgroup_attach_task(struct cgroup *, struct task_struct *);
817929ec 474
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475/*
476 * CSS ID is ID for cgroup_subsys_state structs under subsys. This only works
477 * if cgroup_subsys.use_id == true. It can be used for looking up and scanning.
478 * CSS ID is assigned at cgroup allocation (create) automatically
479 * and removed when subsys calls free_css_id() function. This is because
480 * the lifetime of cgroup_subsys_state is subsys's matter.
481 *
482 * Looking up and scanning function should be called under rcu_read_lock().
483 * Taking cgroup_mutex()/hierarchy_mutex() is not necessary for following calls.
484 * But the css returned by this routine can be "not populated yet" or "being
485 * destroyed". The caller should check css and cgroup's status.
486 */
487
488/*
489 * Typically Called at ->destroy(), or somewhere the subsys frees
490 * cgroup_subsys_state.
491 */
492void free_css_id(struct cgroup_subsys *ss, struct cgroup_subsys_state *css);
493
494/* Find a cgroup_subsys_state which has given ID */
495
496struct cgroup_subsys_state *css_lookup(struct cgroup_subsys *ss, int id);
497
498/*
499 * Get a cgroup whose id is greater than or equal to id under tree of root.
500 * Returning a cgroup_subsys_state or NULL.
501 */
502struct cgroup_subsys_state *css_get_next(struct cgroup_subsys *ss, int id,
503 struct cgroup_subsys_state *root, int *foundid);
504
505/* Returns true if root is ancestor of cg */
506bool css_is_ancestor(struct cgroup_subsys_state *cg,
0b7f569e 507 const struct cgroup_subsys_state *root);
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508
509/* Get id and depth of css */
510unsigned short css_id(struct cgroup_subsys_state *css);
511unsigned short css_depth(struct cgroup_subsys_state *css);
512
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513#else /* !CONFIG_CGROUPS */
514
515static inline int cgroup_init_early(void) { return 0; }
516static inline int cgroup_init(void) { return 0; }
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517static inline void cgroup_fork(struct task_struct *p) {}
518static inline void cgroup_fork_callbacks(struct task_struct *p) {}
817929ec 519static inline void cgroup_post_fork(struct task_struct *p) {}
b4f48b63 520static inline void cgroup_exit(struct task_struct *p, int callbacks) {}
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521
522static inline void cgroup_lock(void) {}
523static inline void cgroup_unlock(void) {}
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524static inline int cgroupstats_build(struct cgroupstats *stats,
525 struct dentry *dentry)
526{
527 return -EINVAL;
528}
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529
530#endif /* !CONFIG_CGROUPS */
531
532#endif /* _LINUX_CGROUP_H */