ath10k: remove htt rx amsdu clear retry bit hack
[deliverable/linux.git] / include / linux / cgroup.h
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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>
eb6fd504 15#include <linux/rculist.h>
846c7bb0 16#include <linux/cgroupstats.h>
31a7df01 17#include <linux/prio_heap.h>
cc31edce 18#include <linux/rwsem.h>
38460b48 19#include <linux/idr.h>
48ddbe19 20#include <linux/workqueue.h>
03b1cde6 21#include <linux/xattr.h>
25a7e684 22#include <linux/fs.h>
d3daf28d 23#include <linux/percpu-refcount.h>
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24
25#ifdef CONFIG_CGROUPS
26
27struct cgroupfs_root;
28struct cgroup_subsys;
29struct inode;
84eea842 30struct cgroup;
38460b48 31struct css_id;
a27bb332 32struct eventfd_ctx;
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33
34extern int cgroup_init_early(void);
35extern int cgroup_init(void);
b4f48b63 36extern void cgroup_fork(struct task_struct *p);
817929ec 37extern void cgroup_post_fork(struct task_struct *p);
b4f48b63 38extern void cgroup_exit(struct task_struct *p, int run_callbacks);
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39extern int cgroupstats_build(struct cgroupstats *stats,
40 struct dentry *dentry);
e6a1105b 41extern int cgroup_load_subsys(struct cgroup_subsys *ss);
cf5d5941 42extern void cgroup_unload_subsys(struct cgroup_subsys *ss);
ddbcc7e8 43
8d8b97ba 44extern int proc_cgroup_show(struct seq_file *, void *);
a424316c 45
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46/*
47 * Define the enumeration of all cgroup subsystems.
48 *
49 * We define ids for builtin subsystems and then modular ones.
50 */
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51#define SUBSYS(_x) _x ## _subsys_id,
52enum cgroup_subsys_id {
7d8e0bf5 53#define IS_SUBSYS_ENABLED(option) IS_BUILTIN(option)
817929ec 54#include <linux/cgroup_subsys.h>
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55#undef IS_SUBSYS_ENABLED
56 CGROUP_BUILTIN_SUBSYS_COUNT,
57
58 __CGROUP_SUBSYS_TEMP_PLACEHOLDER = CGROUP_BUILTIN_SUBSYS_COUNT - 1,
59
60#define IS_SUBSYS_ENABLED(option) IS_MODULE(option)
817929ec 61#include <linux/cgroup_subsys.h>
7d8e0bf5 62#undef IS_SUBSYS_ENABLED
a6f00298 63 CGROUP_SUBSYS_COUNT,
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64};
65#undef SUBSYS
66
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67/* Per-subsystem/per-cgroup state maintained by the system. */
68struct cgroup_subsys_state {
72c97e54 69 /* the cgroup that this css is attached to */
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70 struct cgroup *cgroup;
71
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72 /* the cgroup subsystem that this css is attached to */
73 struct cgroup_subsys *ss;
74
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75 /* reference count - access via css_[try]get() and css_put() */
76 struct percpu_ref refcnt;
ddbcc7e8 77
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78 /* the parent css */
79 struct cgroup_subsys_state *parent;
80
ddbcc7e8 81 unsigned long flags;
38460b48 82 /* ID for this css, if possible */
2c392b8c 83 struct css_id __rcu *id;
48ddbe19 84
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85 /* percpu_ref killing and RCU release */
86 struct rcu_head rcu_head;
35ef10da 87 struct work_struct destroy_work;
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88};
89
90/* bits in struct cgroup_subsys_state flags field */
91enum {
38b53aba 92 CSS_ROOT = (1 << 0), /* this CSS is the root of the subsystem */
92fb9748 93 CSS_ONLINE = (1 << 1), /* between ->css_online() and ->css_offline() */
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94};
95
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96/**
97 * css_get - obtain a reference on the specified css
98 * @css: target css
99 *
100 * The caller must already have a reference.
ddbcc7e8 101 */
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102static inline void css_get(struct cgroup_subsys_state *css)
103{
104 /* We don't need to reference count the root state */
38b53aba 105 if (!(css->flags & CSS_ROOT))
d3daf28d 106 percpu_ref_get(&css->refcnt);
ddbcc7e8 107}
e7c5ec91 108
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109/**
110 * css_tryget - try to obtain a reference on the specified css
111 * @css: target css
112 *
113 * Obtain a reference on @css if it's alive. The caller naturally needs to
114 * ensure that @css is accessible but doesn't have to be holding a
115 * reference on it - IOW, RCU protected access is good enough for this
116 * function. Returns %true if a reference count was successfully obtained;
117 * %false otherwise.
118 */
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119static inline bool css_tryget(struct cgroup_subsys_state *css)
120{
38b53aba 121 if (css->flags & CSS_ROOT)
e7c5ec91 122 return true;
d3daf28d 123 return percpu_ref_tryget(&css->refcnt);
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124}
125
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126/**
127 * css_put - put a css reference
128 * @css: target css
129 *
130 * Put a reference obtained via css_get() and css_tryget().
131 */
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132static inline void css_put(struct cgroup_subsys_state *css)
133{
38b53aba 134 if (!(css->flags & CSS_ROOT))
d3daf28d 135 percpu_ref_put(&css->refcnt);
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136}
137
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138/* bits in struct cgroup flags field */
139enum {
140 /* Control Group is dead */
54766d4a 141 CGRP_DEAD,
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142 /*
143 * Control Group has previously had a child cgroup or a task,
144 * but no longer (only if CGRP_NOTIFY_ON_RELEASE is set)
145 */
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146 CGRP_RELEASABLE,
147 /* Control Group requires release notifications to userspace */
148 CGRP_NOTIFY_ON_RELEASE,
97978e6d 149 /*
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150 * Clone the parent's configuration when creating a new child
151 * cpuset cgroup. For historical reasons, this option can be
152 * specified at mount time and thus is implemented here.
97978e6d 153 */
2260e7fc 154 CGRP_CPUSET_CLONE_CHILDREN,
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155 /* see the comment above CGRP_ROOT_SANE_BEHAVIOR for details */
156 CGRP_SANE_BEHAVIOR,
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157};
158
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159struct cgroup_name {
160 struct rcu_head rcu_head;
161 char name[];
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162};
163
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164struct cgroup {
165 unsigned long flags; /* "unsigned long" so bitops work */
166
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167 /*
168 * idr allocated in-hierarchy ID.
169 *
170 * The ID of the root cgroup is always 0, and a new cgroup
171 * will be assigned with a smallest available ID.
172 */
173 int id;
0a950f65 174
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175 /* the number of attached css's */
176 int nr_css;
177
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178 /*
179 * We link our 'sibling' struct into our parent's 'children'.
180 * Our children link their 'sibling' into our 'children'.
181 */
182 struct list_head sibling; /* my parent's children */
183 struct list_head children; /* my children */
05ef1d7c 184 struct list_head files; /* my files */
ddbcc7e8 185
d20a390a 186 struct cgroup *parent; /* my parent */
febfcef6 187 struct dentry *dentry; /* cgroup fs entry, RCU protected */
ddbcc7e8 188
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189 /*
190 * Monotonically increasing unique serial number which defines a
191 * uniform order among all cgroups. It's guaranteed that all
192 * ->children lists are in the ascending order of ->serial_nr.
193 * It's used to allow interrupting and resuming iterations.
194 */
195 u64 serial_nr;
196
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197 /*
198 * This is a copy of dentry->d_name, and it's needed because
199 * we can't use dentry->d_name in cgroup_path().
200 *
201 * You must acquire rcu_read_lock() to access cgrp->name, and
202 * the only place that can change it is rename(), which is
203 * protected by parent dir's i_mutex.
204 *
205 * Normally you should use cgroup_name() wrapper rather than
206 * access it directly.
207 */
208 struct cgroup_name __rcu *name;
209
ddbcc7e8 210 /* Private pointers for each registered subsystem */
73e80ed8 211 struct cgroup_subsys_state __rcu *subsys[CGROUP_SUBSYS_COUNT];
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212
213 struct cgroupfs_root *root;
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214
215 /*
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216 * List of cgrp_cset_links pointing at css_sets with tasks in this
217 * cgroup. Protected by css_set_lock.
817929ec 218 */
69d0206c 219 struct list_head cset_links;
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220
221 /*
222 * Linked list running through all cgroups that can
223 * potentially be reaped by the release agent. Protected by
224 * release_list_lock
225 */
226 struct list_head release_list;
cc31edce 227
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228 /*
229 * list of pidlists, up to two for each namespace (one for procs, one
230 * for tasks); created on demand.
231 */
232 struct list_head pidlists;
233 struct mutex pidlist_mutex;
a47295e6 234
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235 /* dummy css with NULL ->ss, points back to this cgroup */
236 struct cgroup_subsys_state dummy_css;
237
d3daf28d 238 /* For css percpu_ref killing and RCU-protected deletion */
a47295e6 239 struct rcu_head rcu_head;
ea15f8cc 240 struct work_struct destroy_work;
0dea1168 241
25985edc 242 /* List of events which userspace want to receive */
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243 struct list_head event_list;
244 spinlock_t event_list_lock;
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245
246 /* directory xattrs */
247 struct simple_xattrs xattrs;
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248};
249
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250#define MAX_CGROUP_ROOT_NAMELEN 64
251
252/* cgroupfs_root->flags */
253enum {
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254 /*
255 * Unfortunately, cgroup core and various controllers are riddled
256 * with idiosyncrasies and pointless options. The following flag,
257 * when set, will force sane behavior - some options are forced on,
258 * others are disallowed, and some controllers will change their
259 * hierarchical or other behaviors.
260 *
261 * The set of behaviors affected by this flag are still being
262 * determined and developed and the mount option for this flag is
263 * prefixed with __DEVEL__. The prefix will be dropped once we
264 * reach the point where all behaviors are compatible with the
265 * planned unified hierarchy, which will automatically turn on this
266 * flag.
267 *
268 * The followings are the behaviors currently affected this flag.
269 *
270 * - Mount options "noprefix" and "clone_children" are disallowed.
271 * Also, cgroupfs file cgroup.clone_children is not created.
272 *
273 * - When mounting an existing superblock, mount options should
274 * match.
275 *
276 * - Remount is disallowed.
277 *
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278 * - rename(2) is disallowed.
279 *
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280 * - "tasks" is removed. Everything should be at process
281 * granularity. Use "cgroup.procs" instead.
f00baae7 282 *
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283 * - "release_agent" and "notify_on_release" are removed.
284 * Replacement notification mechanism will be implemented.
873fe09e 285 *
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286 * - cpuset: tasks will be kept in empty cpusets when hotplug happens
287 * and take masks of ancestors with non-empty cpus/mems, instead of
288 * being moved to an ancestor.
289 *
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290 * - cpuset: a task can be moved into an empty cpuset, and again it
291 * takes masks of ancestors.
6db8e85c 292 *
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293 * - memcg: use_hierarchy is on by default and the cgroup file for
294 * the flag is not created.
f00baae7 295 *
9138125b 296 * - blkcg: blk-throttle becomes properly hierarchical.
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297 */
298 CGRP_ROOT_SANE_BEHAVIOR = (1 << 0),
299
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300 CGRP_ROOT_NOPREFIX = (1 << 1), /* mounted subsystems have no named prefix */
301 CGRP_ROOT_XATTR = (1 << 2), /* supports extended attributes */
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302
303 /* mount options live below bit 16 */
304 CGRP_ROOT_OPTION_MASK = (1 << 16) - 1,
305
306 CGRP_ROOT_SUBSYS_BOUND = (1 << 16), /* subsystems finished binding */
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307};
308
309/*
310 * A cgroupfs_root represents the root of a cgroup hierarchy, and may be
311 * associated with a superblock to form an active hierarchy. This is
312 * internal to cgroup core. Don't access directly from controllers.
313 */
314struct cgroupfs_root {
315 struct super_block *sb;
316
a8a648c4 317 /* The bitmask of subsystems attached to this hierarchy */
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318 unsigned long subsys_mask;
319
320 /* Unique id for this hierarchy. */
321 int hierarchy_id;
322
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323 /* A list running through the attached subsystems */
324 struct list_head subsys_list;
325
326 /* The root cgroup for this hierarchy */
327 struct cgroup top_cgroup;
328
329 /* Tracks how many cgroups are currently defined in hierarchy.*/
330 int number_of_cgroups;
331
332 /* A list running through the active hierarchies */
333 struct list_head root_list;
334
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335 /* Hierarchy-specific flags */
336 unsigned long flags;
337
338 /* IDs for cgroups in this hierarchy */
4e96ee8e 339 struct idr cgroup_idr;
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340
341 /* The path to use for release notifications. */
342 char release_agent_path[PATH_MAX];
343
344 /* The name for this hierarchy - may be empty */
345 char name[MAX_CGROUP_ROOT_NAMELEN];
346};
347
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348/*
349 * A css_set is a structure holding pointers to a set of
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350 * cgroup_subsys_state objects. This saves space in the task struct
351 * object and speeds up fork()/exit(), since a single inc/dec and a
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352 * list_add()/del() can bump the reference count on the entire cgroup
353 * set for a task.
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354 */
355
356struct css_set {
357
358 /* Reference count */
146aa1bd 359 atomic_t refcount;
817929ec 360
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361 /*
362 * List running through all cgroup groups in the same hash
363 * slot. Protected by css_set_lock
364 */
365 struct hlist_node hlist;
366
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367 /*
368 * List running through all tasks using this cgroup
369 * group. Protected by css_set_lock
370 */
371 struct list_head tasks;
372
373 /*
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374 * List of cgrp_cset_links pointing at cgroups referenced from this
375 * css_set. Protected by css_set_lock.
817929ec 376 */
69d0206c 377 struct list_head cgrp_links;
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378
379 /*
380 * Set of subsystem states, one for each subsystem. This array
381 * is immutable after creation apart from the init_css_set
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382 * during subsystem registration (at boot time) and modular subsystem
383 * loading/unloading.
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384 */
385 struct cgroup_subsys_state *subsys[CGROUP_SUBSYS_COUNT];
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386
387 /* For RCU-protected deletion */
388 struct rcu_head rcu_head;
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389};
390
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391/*
392 * cgroup_map_cb is an abstract callback API for reporting map-valued
393 * control files
394 */
395
396struct cgroup_map_cb {
397 int (*fill)(struct cgroup_map_cb *cb, const char *key, u64 value);
398 void *state;
399};
400
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401/*
402 * struct cftype: handler definitions for cgroup control files
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403 *
404 * When reading/writing to a file:
a043e3b2 405 * - the cgroup to use is file->f_dentry->d_parent->d_fsdata
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406 * - the 'cftype' of the file is file->f_dentry->d_fsdata
407 */
408
8e3f6541 409/* cftype->flags */
02c402d9 410enum {
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411 CFTYPE_ONLY_ON_ROOT = (1 << 0), /* only create on root cgrp */
412 CFTYPE_NOT_ON_ROOT = (1 << 1), /* don't create on root cgrp */
02c402d9 413 CFTYPE_INSANE = (1 << 2), /* don't create if sane_behavior */
9fa4db33 414 CFTYPE_NO_PREFIX = (1 << 3), /* (DON'T USE FOR NEW FILES) no subsys prefix */
02c402d9 415};
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416
417#define MAX_CFTYPE_NAME 64
418
ddbcc7e8 419struct cftype {
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420 /*
421 * By convention, the name should begin with the name of the
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422 * subsystem, followed by a period. Zero length string indicates
423 * end of cftype array.
d20a390a 424 */
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425 char name[MAX_CFTYPE_NAME];
426 int private;
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427 /*
428 * If not 0, file mode is set to this value, otherwise it will
429 * be figured out automatically
430 */
a5e7ed32 431 umode_t mode;
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432
433 /*
434 * If non-zero, defines the maximum length of string that can
435 * be passed to write_string; defaults to 64
436 */
437 size_t max_write_len;
438
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439 /* CFTYPE_* flags */
440 unsigned int flags;
441
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442 /*
443 * The subsys this file belongs to. Initialized automatically
444 * during registration. NULL for cgroup core files.
445 */
446 struct cgroup_subsys *ss;
447
ce16b49d 448 int (*open)(struct inode *inode, struct file *file);
182446d0 449 ssize_t (*read)(struct cgroup_subsys_state *css, struct cftype *cft,
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450 struct file *file,
451 char __user *buf, size_t nbytes, loff_t *ppos);
ddbcc7e8 452 /*
f4c753b7 453 * read_u64() is a shortcut for the common case of returning a
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454 * single integer. Use it in place of read()
455 */
182446d0 456 u64 (*read_u64)(struct cgroup_subsys_state *css, struct cftype *cft);
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457 /*
458 * read_s64() is a signed version of read_u64()
459 */
182446d0 460 s64 (*read_s64)(struct cgroup_subsys_state *css, struct cftype *cft);
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461 /*
462 * read_map() is used for defining a map of key/value
463 * pairs. It should call cb->fill(cb, key, value) for each
464 * entry. The key/value pairs (and their ordering) should not
465 * change between reboots.
466 */
182446d0 467 int (*read_map)(struct cgroup_subsys_state *css, struct cftype *cft,
ce16b49d 468 struct cgroup_map_cb *cb);
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469 /*
470 * read_seq_string() is used for outputting a simple sequence
471 * using seqfile.
472 */
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473 int (*read_seq_string)(struct cgroup_subsys_state *css,
474 struct cftype *cft, struct seq_file *m);
91796569 475
182446d0 476 ssize_t (*write)(struct cgroup_subsys_state *css, struct cftype *cft,
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477 struct file *file,
478 const char __user *buf, size_t nbytes, loff_t *ppos);
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479
480 /*
f4c753b7 481 * write_u64() is a shortcut for the common case of accepting
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482 * a single integer (as parsed by simple_strtoull) from
483 * userspace. Use in place of write(); return 0 or error.
484 */
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485 int (*write_u64)(struct cgroup_subsys_state *css, struct cftype *cft,
486 u64 val);
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487 /*
488 * write_s64() is a signed version of write_u64()
489 */
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490 int (*write_s64)(struct cgroup_subsys_state *css, struct cftype *cft,
491 s64 val);
355e0c48 492
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493 /*
494 * write_string() is passed a nul-terminated kernelspace
495 * buffer of maximum length determined by max_write_len.
496 * Returns 0 or -ve error code.
497 */
182446d0 498 int (*write_string)(struct cgroup_subsys_state *css, struct cftype *cft,
db3b1497 499 const char *buffer);
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500 /*
501 * trigger() callback can be used to get some kick from the
502 * userspace, when the actual string written is not important
503 * at all. The private field can be used to determine the
504 * kick type for multiplexing.
505 */
182446d0 506 int (*trigger)(struct cgroup_subsys_state *css, unsigned int event);
d447ea2f 507
ce16b49d 508 int (*release)(struct inode *inode, struct file *file);
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509
510 /*
511 * register_event() callback will be used to add new userspace
512 * waiter for changes related to the cftype. Implement it if
513 * you want to provide this functionality. Use eventfd_signal()
514 * on eventfd to send notification to userspace.
515 */
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516 int (*register_event)(struct cgroup_subsys_state *css,
517 struct cftype *cft, struct eventfd_ctx *eventfd,
518 const char *args);
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519 /*
520 * unregister_event() callback will be called when userspace
521 * closes the eventfd or on cgroup removing.
522 * This callback must be implemented, if you want provide
523 * notification functionality.
0dea1168 524 */
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525 void (*unregister_event)(struct cgroup_subsys_state *css,
526 struct cftype *cft,
527 struct eventfd_ctx *eventfd);
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528};
529
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530/*
531 * cftype_sets describe cftypes belonging to a subsystem and are chained at
532 * cgroup_subsys->cftsets. Each cftset points to an array of cftypes
533 * terminated by zero length name.
534 */
535struct cftype_set {
536 struct list_head node; /* chained at subsys->cftsets */
03b1cde6 537 struct cftype *cfts;
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538};
539
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540/*
541 * See the comment above CGRP_ROOT_SANE_BEHAVIOR for details. This
542 * function can be called as long as @cgrp is accessible.
543 */
544static inline bool cgroup_sane_behavior(const struct cgroup *cgrp)
545{
546 return cgrp->root->flags & CGRP_ROOT_SANE_BEHAVIOR;
547}
548
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549/* Caller should hold rcu_read_lock() */
550static inline const char *cgroup_name(const struct cgroup *cgrp)
551{
552 return rcu_dereference(cgrp->name)->name;
553}
554
03b1cde6 555int cgroup_add_cftypes(struct cgroup_subsys *ss, struct cftype *cfts);
2bb566cb 556int cgroup_rm_cftypes(struct cftype *cfts);
8e3f6541 557
78574cf9 558bool cgroup_is_descendant(struct cgroup *cgrp, struct cgroup *ancestor);
ddbcc7e8 559
ffd2d883 560int cgroup_path(const struct cgroup *cgrp, char *buf, int buflen);
913ffdb5 561int task_cgroup_path(struct task_struct *task, char *buf, size_t buflen);
ddbcc7e8 562
ffd2d883 563int cgroup_task_count(const struct cgroup *cgrp);
bbcb81d0 564
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565/*
566 * Control Group taskset, used to pass around set of tasks to cgroup_subsys
567 * methods.
568 */
569struct cgroup_taskset;
570struct task_struct *cgroup_taskset_first(struct cgroup_taskset *tset);
571struct task_struct *cgroup_taskset_next(struct cgroup_taskset *tset);
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572struct cgroup_subsys_state *cgroup_taskset_cur_css(struct cgroup_taskset *tset,
573 int subsys_id);
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574int cgroup_taskset_size(struct cgroup_taskset *tset);
575
576/**
577 * cgroup_taskset_for_each - iterate cgroup_taskset
578 * @task: the loop cursor
d99c8727 579 * @skip_css: skip if task's css matches this, %NULL to iterate through all
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580 * @tset: taskset to iterate
581 */
d99c8727 582#define cgroup_taskset_for_each(task, skip_css, tset) \
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583 for ((task) = cgroup_taskset_first((tset)); (task); \
584 (task) = cgroup_taskset_next((tset))) \
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585 if (!(skip_css) || \
586 cgroup_taskset_cur_css((tset), \
587 (skip_css)->ss->subsys_id) != (skip_css))
2f7ee569 588
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589/*
590 * Control Group subsystem type.
591 * See Documentation/cgroups/cgroups.txt for details
592 */
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593
594struct cgroup_subsys {
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595 struct cgroup_subsys_state *(*css_alloc)(struct cgroup_subsys_state *parent_css);
596 int (*css_online)(struct cgroup_subsys_state *css);
597 void (*css_offline)(struct cgroup_subsys_state *css);
598 void (*css_free)(struct cgroup_subsys_state *css);
599
600 int (*can_attach)(struct cgroup_subsys_state *css,
601 struct cgroup_taskset *tset);
602 void (*cancel_attach)(struct cgroup_subsys_state *css,
603 struct cgroup_taskset *tset);
604 void (*attach)(struct cgroup_subsys_state *css,
605 struct cgroup_taskset *tset);
761b3ef5 606 void (*fork)(struct task_struct *task);
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607 void (*exit)(struct cgroup_subsys_state *css,
608 struct cgroup_subsys_state *old_css,
761b3ef5 609 struct task_struct *task);
eb95419b 610 void (*bind)(struct cgroup_subsys_state *root_css);
e5991371 611
ddbcc7e8 612 int subsys_id;
8bab8dde 613 int disabled;
ddbcc7e8 614 int early_init;
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615 /*
616 * True if this subsys uses ID. ID is not available before cgroup_init()
617 * (not available in early_init time.)
618 */
619 bool use_id;
48ddbe19 620
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621 /*
622 * If %false, this subsystem is properly hierarchical -
623 * configuration, resource accounting and restriction on a parent
624 * cgroup cover those of its children. If %true, hierarchy support
625 * is broken in some ways - some subsystems ignore hierarchy
626 * completely while others are only implemented half-way.
627 *
628 * It's now disallowed to create nested cgroups if the subsystem is
629 * broken and cgroup core will emit a warning message on such
630 * cases. Eventually, all subsystems will be made properly
631 * hierarchical and this will go away.
632 */
633 bool broken_hierarchy;
634 bool warned_broken_hierarchy;
635
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636#define MAX_CGROUP_TYPE_NAMELEN 32
637 const char *name;
638
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639 /*
640 * Link to parent, and list entry in parent's children.
6be96a5c 641 * Protected by cgroup_lock()
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642 */
643 struct cgroupfs_root *root;
ddbcc7e8 644 struct list_head sibling;
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645 /* used when use_id == true */
646 struct idr idr;
42aee6c4 647 spinlock_t id_lock;
e6a1105b 648
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649 /* list of cftype_sets */
650 struct list_head cftsets;
651
652 /* base cftypes, automatically [de]registered with subsys itself */
653 struct cftype *base_cftypes;
654 struct cftype_set base_cftset;
655
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656 /* should be defined only by modular subsystems */
657 struct module *module;
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658};
659
660#define SUBSYS(_x) extern struct cgroup_subsys _x ## _subsys;
5fc0b025 661#define IS_SUBSYS_ENABLED(option) IS_BUILTIN(option)
ddbcc7e8 662#include <linux/cgroup_subsys.h>
5fc0b025 663#undef IS_SUBSYS_ENABLED
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664#undef SUBSYS
665
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666/**
667 * css_parent - find the parent css
668 * @css: the target cgroup_subsys_state
669 *
670 * Return the parent css of @css. This function is guaranteed to return
671 * non-NULL parent as long as @css isn't the root.
672 */
673static inline
674struct cgroup_subsys_state *css_parent(struct cgroup_subsys_state *css)
675{
0ae78e0b 676 return css->parent;
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677}
678
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679/**
680 * task_css_set_check - obtain a task's css_set with extra access conditions
681 * @task: the task to obtain css_set for
682 * @__c: extra condition expression to be passed to rcu_dereference_check()
683 *
684 * A task's css_set is RCU protected, initialized and exited while holding
685 * task_lock(), and can only be modified while holding both cgroup_mutex
686 * and task_lock() while the task is alive. This macro verifies that the
687 * caller is inside proper critical section and returns @task's css_set.
688 *
689 * The caller can also specify additional allowed conditions via @__c, such
690 * as locks used during the cgroup_subsys::attach() methods.
dc61b1d6 691 */
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692#ifdef CONFIG_PROVE_RCU
693extern struct mutex cgroup_mutex;
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694#define task_css_set_check(task, __c) \
695 rcu_dereference_check((task)->cgroups, \
696 lockdep_is_held(&(task)->alloc_lock) || \
697 lockdep_is_held(&cgroup_mutex) || (__c))
2219449a 698#else
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699#define task_css_set_check(task, __c) \
700 rcu_dereference((task)->cgroups)
2219449a 701#endif
dc61b1d6 702
14611e51 703/**
8af01f56 704 * task_css_check - obtain css for (task, subsys) w/ extra access conds
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705 * @task: the target task
706 * @subsys_id: the target subsystem ID
707 * @__c: extra condition expression to be passed to rcu_dereference_check()
708 *
709 * Return the cgroup_subsys_state for the (@task, @subsys_id) pair. The
710 * synchronization rules are the same as task_css_set_check().
711 */
8af01f56 712#define task_css_check(task, subsys_id, __c) \
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713 task_css_set_check((task), (__c))->subsys[(subsys_id)]
714
715/**
716 * task_css_set - obtain a task's css_set
717 * @task: the task to obtain css_set for
718 *
719 * See task_css_set_check().
720 */
721static inline struct css_set *task_css_set(struct task_struct *task)
722{
723 return task_css_set_check(task, false);
724}
725
726/**
8af01f56 727 * task_css - obtain css for (task, subsys)
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728 * @task: the target task
729 * @subsys_id: the target subsystem ID
730 *
8af01f56 731 * See task_css_check().
14611e51 732 */
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733static inline struct cgroup_subsys_state *task_css(struct task_struct *task,
734 int subsys_id)
ddbcc7e8 735{
8af01f56 736 return task_css_check(task, subsys_id, false);
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737}
738
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739static inline struct cgroup *task_cgroup(struct task_struct *task,
740 int subsys_id)
ddbcc7e8 741{
8af01f56 742 return task_css(task, subsys_id)->cgroup;
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743}
744
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745struct cgroup_subsys_state *css_next_child(struct cgroup_subsys_state *pos,
746 struct cgroup_subsys_state *parent);
53fa5261 747
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748struct cgroup_subsys_state *css_from_id(int id, struct cgroup_subsys *ss);
749
574bd9f7 750/**
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751 * css_for_each_child - iterate through children of a css
752 * @pos: the css * to use as the loop cursor
753 * @parent: css whose children to walk
574bd9f7 754 *
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755 * Walk @parent's children. Must be called under rcu_read_lock(). A child
756 * css which hasn't finished ->css_online() or already has finished
92fb9748 757 * ->css_offline() may show up during traversal and it's each subsystem's
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758 * responsibility to verify that each @pos is alive.
759 *
92fb9748 760 * If a subsystem synchronizes against the parent in its ->css_online() and
492eb21b 761 * before starting iterating, a css which finished ->css_online() is
92fb9748 762 * guaranteed to be visible in the future iterations.
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763 *
764 * It is allowed to temporarily drop RCU read lock during iteration. The
765 * caller is responsible for ensuring that @pos remains accessible until
766 * the start of the next iteration by, for example, bumping the css refcnt.
574bd9f7 767 */
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768#define css_for_each_child(pos, parent) \
769 for ((pos) = css_next_child(NULL, (parent)); (pos); \
770 (pos) = css_next_child((pos), (parent)))
574bd9f7 771
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772struct cgroup_subsys_state *
773css_next_descendant_pre(struct cgroup_subsys_state *pos,
774 struct cgroup_subsys_state *css);
775
776struct cgroup_subsys_state *
777css_rightmost_descendant(struct cgroup_subsys_state *pos);
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778
779/**
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780 * css_for_each_descendant_pre - pre-order walk of a css's descendants
781 * @pos: the css * to use as the loop cursor
782 * @root: css whose descendants to walk
574bd9f7 783 *
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784 * Walk @root's descendants. @root is included in the iteration and the
785 * first node to be visited. Must be called under rcu_read_lock(). A
492eb21b 786 * descendant css which hasn't finished ->css_online() or already has
92fb9748 787 * finished ->css_offline() may show up during traversal and it's each
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788 * subsystem's responsibility to verify that each @pos is alive.
789 *
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790 * If a subsystem synchronizes against the parent in its ->css_online() and
791 * before starting iterating, and synchronizes against @pos on each
492eb21b 792 * iteration, any descendant css which finished ->css_online() is
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793 * guaranteed to be visible in the future iterations.
794 *
795 * In other words, the following guarantees that a descendant can't escape
796 * state updates of its ancestors.
797 *
492eb21b 798 * my_online(@css)
574bd9f7 799 * {
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800 * Lock @css's parent and @css;
801 * Inherit state from the parent;
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802 * Unlock both.
803 * }
804 *
492eb21b 805 * my_update_state(@css)
574bd9f7 806 * {
492eb21b 807 * css_for_each_descendant_pre(@pos, @css) {
574bd9f7 808 * Lock @pos;
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809 * if (@pos == @css)
810 * Update @css's state;
811 * else
812 * Verify @pos is alive and inherit state from its parent;
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813 * Unlock @pos;
814 * }
815 * }
816 *
817 * As long as the inheriting step, including checking the parent state, is
818 * enclosed inside @pos locking, double-locking the parent isn't necessary
819 * while inheriting. The state update to the parent is guaranteed to be
820 * visible by walking order and, as long as inheriting operations to the
821 * same @pos are atomic to each other, multiple updates racing each other
822 * still result in the correct state. It's guaranateed that at least one
492eb21b 823 * inheritance happens for any css after the latest update to its parent.
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824 *
825 * If checking parent's state requires locking the parent, each inheriting
826 * iteration should lock and unlock both @pos->parent and @pos.
827 *
828 * Alternatively, a subsystem may choose to use a single global lock to
92fb9748 829 * synchronize ->css_online() and ->css_offline() against tree-walking
574bd9f7 830 * operations.
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831 *
832 * It is allowed to temporarily drop RCU read lock during iteration. The
833 * caller is responsible for ensuring that @pos remains accessible until
834 * the start of the next iteration by, for example, bumping the css refcnt.
574bd9f7 835 */
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836#define css_for_each_descendant_pre(pos, css) \
837 for ((pos) = css_next_descendant_pre(NULL, (css)); (pos); \
838 (pos) = css_next_descendant_pre((pos), (css)))
574bd9f7 839
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840struct cgroup_subsys_state *
841css_next_descendant_post(struct cgroup_subsys_state *pos,
842 struct cgroup_subsys_state *css);
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843
844/**
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845 * css_for_each_descendant_post - post-order walk of a css's descendants
846 * @pos: the css * to use as the loop cursor
847 * @css: css whose descendants to walk
574bd9f7 848 *
492eb21b 849 * Similar to css_for_each_descendant_pre() but performs post-order
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850 * traversal instead. @root is included in the iteration and the last
851 * node to be visited. Note that the walk visibility guarantee described
852 * in pre-order walk doesn't apply the same to post-order walks.
574bd9f7 853 */
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854#define css_for_each_descendant_post(pos, css) \
855 for ((pos) = css_next_descendant_post(NULL, (css)); (pos); \
856 (pos) = css_next_descendant_post((pos), (css)))
574bd9f7 857
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858/* A css_task_iter should be treated as an opaque object */
859struct css_task_iter {
860 struct cgroup_subsys_state *origin_css;
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861 struct list_head *cset_link;
862 struct list_head *task;
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863};
864
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865void css_task_iter_start(struct cgroup_subsys_state *css,
866 struct css_task_iter *it);
867struct task_struct *css_task_iter_next(struct css_task_iter *it);
868void css_task_iter_end(struct css_task_iter *it);
e535837b 869
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870int css_scan_tasks(struct cgroup_subsys_state *css,
871 bool (*test)(struct task_struct *, void *),
872 void (*process)(struct task_struct *, void *),
873 void *data, struct ptr_heap *heap);
e535837b 874
31583bb0 875int cgroup_attach_task_all(struct task_struct *from, struct task_struct *);
8cc99345 876int cgroup_transfer_tasks(struct cgroup *to, struct cgroup *from);
31583bb0 877
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878/*
879 * CSS ID is ID for cgroup_subsys_state structs under subsys. This only works
880 * if cgroup_subsys.use_id == true. It can be used for looking up and scanning.
881 * CSS ID is assigned at cgroup allocation (create) automatically
882 * and removed when subsys calls free_css_id() function. This is because
883 * the lifetime of cgroup_subsys_state is subsys's matter.
884 *
885 * Looking up and scanning function should be called under rcu_read_lock().
6be96a5c 886 * Taking cgroup_mutex is not necessary for following calls.
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887 * But the css returned by this routine can be "not populated yet" or "being
888 * destroyed". The caller should check css and cgroup's status.
889 */
890
891/*
892 * Typically Called at ->destroy(), or somewhere the subsys frees
893 * cgroup_subsys_state.
894 */
895void free_css_id(struct cgroup_subsys *ss, struct cgroup_subsys_state *css);
896
897/* Find a cgroup_subsys_state which has given ID */
898
899struct cgroup_subsys_state *css_lookup(struct cgroup_subsys *ss, int id);
900
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901/* Returns true if root is ancestor of cg */
902bool css_is_ancestor(struct cgroup_subsys_state *cg,
0b7f569e 903 const struct cgroup_subsys_state *root);
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904
905/* Get id and depth of css */
906unsigned short css_id(struct cgroup_subsys_state *css);
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907struct cgroup_subsys_state *css_from_dir(struct dentry *dentry,
908 struct cgroup_subsys *ss);
38460b48 909
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910#else /* !CONFIG_CGROUPS */
911
912static inline int cgroup_init_early(void) { return 0; }
913static inline int cgroup_init(void) { return 0; }
b4f48b63 914static inline void cgroup_fork(struct task_struct *p) {}
817929ec 915static inline void cgroup_post_fork(struct task_struct *p) {}
b4f48b63 916static inline void cgroup_exit(struct task_struct *p, int callbacks) {}
ddbcc7e8 917
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918static inline int cgroupstats_build(struct cgroupstats *stats,
919 struct dentry *dentry)
920{
921 return -EINVAL;
922}
ddbcc7e8 923
d7926ee3 924/* No cgroups - nothing to do */
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925static inline int cgroup_attach_task_all(struct task_struct *from,
926 struct task_struct *t)
927{
928 return 0;
929}
d7926ee3 930
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931#endif /* !CONFIG_CGROUPS */
932
933#endif /* _LINUX_CGROUP_H */
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