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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * kernel/cpuset.c
3 *
4 * Processor and Memory placement constraints for sets of tasks.
5 *
6 * Copyright (C) 2003 BULL SA.
Paul Jackson029190c2007-10-18 23:40:20 -07007 * Copyright (C) 2004-2007 Silicon Graphics, Inc.
Paul Menage8793d852007-10-18 23:39:39 -07008 * Copyright (C) 2006 Google, Inc
Linus Torvalds1da177e2005-04-16 15:20:36 -07009 *
10 * Portions derived from Patrick Mochel's sysfs code.
11 * sysfs is Copyright (c) 2001-3 Patrick Mochel
Linus Torvalds1da177e2005-04-16 15:20:36 -070012 *
Paul Jackson825a46a2006-03-24 03:16:03 -080013 * 2003-10-10 Written by Simon Derr.
Linus Torvalds1da177e2005-04-16 15:20:36 -070014 * 2003-10-22 Updates by Stephen Hemminger.
Paul Jackson825a46a2006-03-24 03:16:03 -080015 * 2004 May-July Rework by Paul Jackson.
Paul Menage8793d852007-10-18 23:39:39 -070016 * 2006 Rework by Paul Menage to use generic cgroups
Max Krasnyanskycf417142008-08-11 14:33:53 -070017 * 2008 Rework of the scheduler domains and CPU hotplug handling
18 * by Max Krasnyansky
Linus Torvalds1da177e2005-04-16 15:20:36 -070019 *
20 * This file is subject to the terms and conditions of the GNU General Public
21 * License. See the file COPYING in the main directory of the Linux
22 * distribution for more details.
23 */
24
Linus Torvalds1da177e2005-04-16 15:20:36 -070025#include <linux/cpu.h>
26#include <linux/cpumask.h>
27#include <linux/cpuset.h>
28#include <linux/err.h>
29#include <linux/errno.h>
30#include <linux/file.h>
31#include <linux/fs.h>
32#include <linux/init.h>
33#include <linux/interrupt.h>
34#include <linux/kernel.h>
35#include <linux/kmod.h>
36#include <linux/list.h>
Paul Jackson68860ec2005-10-30 15:02:36 -080037#include <linux/mempolicy.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070038#include <linux/mm.h>
Miao Xief4818912008-11-19 15:36:30 -080039#include <linux/memory.h>
Paul Gortmaker9984de12011-05-23 14:51:41 -040040#include <linux/export.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070041#include <linux/mount.h>
42#include <linux/namei.h>
43#include <linux/pagemap.h>
44#include <linux/proc_fs.h>
Paul Jackson6b9c2602006-01-08 01:02:02 -080045#include <linux/rcupdate.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070046#include <linux/sched.h>
47#include <linux/seq_file.h>
David Quigley22fb52d2006-06-23 02:04:00 -070048#include <linux/security.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070049#include <linux/slab.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070050#include <linux/spinlock.h>
51#include <linux/stat.h>
52#include <linux/string.h>
53#include <linux/time.h>
54#include <linux/backing-dev.h>
55#include <linux/sort.h>
56
57#include <asm/uaccess.h>
Arun Sharma600634972011-07-26 16:09:06 -070058#include <linux/atomic.h>
Ingo Molnar3d3f26a2006-03-23 03:00:18 -080059#include <linux/mutex.h>
Cliff Wickman956db3c2008-02-07 00:14:43 -080060#include <linux/workqueue.h>
61#include <linux/cgroup.h>
Li Zefane44193d2013-06-09 17:14:22 +080062#include <linux/wait.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070063
Paul Jackson202f72d2006-01-08 01:01:57 -080064/*
65 * Tracks how many cpusets are currently defined in system.
66 * When there is only one cpuset (the root cpuset) we can
67 * short circuit some hooks.
68 */
Paul Jackson7edc5962006-01-08 01:02:03 -080069int number_of_cpusets __read_mostly;
Paul Jackson202f72d2006-01-08 01:01:57 -080070
Paul Menage2df167a2008-02-07 00:14:45 -080071/* Forward declare cgroup structures */
Paul Menage8793d852007-10-18 23:39:39 -070072struct cgroup_subsys cpuset_subsys;
Paul Menage8793d852007-10-18 23:39:39 -070073
Paul Jackson3e0d98b2006-01-08 01:01:49 -080074/* See "Frequency meter" comments, below. */
75
76struct fmeter {
77 int cnt; /* unprocessed events count */
78 int val; /* most recent output value */
79 time_t time; /* clock (secs) when val computed */
80 spinlock_t lock; /* guards read or write of above */
81};
82
Linus Torvalds1da177e2005-04-16 15:20:36 -070083struct cpuset {
Paul Menage8793d852007-10-18 23:39:39 -070084 struct cgroup_subsys_state css;
85
Linus Torvalds1da177e2005-04-16 15:20:36 -070086 unsigned long flags; /* "unsigned long" so bitops work */
Li Zefan300ed6c2009-01-07 18:08:44 -080087 cpumask_var_t cpus_allowed; /* CPUs allowed to tasks in cpuset */
Linus Torvalds1da177e2005-04-16 15:20:36 -070088 nodemask_t mems_allowed; /* Memory Nodes allowed to tasks */
89
Li Zefan33ad8012013-06-09 17:15:08 +080090 /*
91 * This is old Memory Nodes tasks took on.
92 *
93 * - top_cpuset.old_mems_allowed is initialized to mems_allowed.
94 * - A new cpuset's old_mems_allowed is initialized when some
95 * task is moved into it.
96 * - old_mems_allowed is used in cpuset_migrate_mm() when we change
97 * cpuset.mems_allowed and have tasks' nodemask updated, and
98 * then old_mems_allowed is updated to mems_allowed.
99 */
100 nodemask_t old_mems_allowed;
101
Paul Jackson3e0d98b2006-01-08 01:01:49 -0800102 struct fmeter fmeter; /* memory_pressure filter */
Paul Jackson029190c2007-10-18 23:40:20 -0700103
Tejun Heo452477f2013-01-07 08:51:07 -0800104 /*
105 * Tasks are being attached to this cpuset. Used to prevent
106 * zeroing cpus/mems_allowed between ->can_attach() and ->attach().
107 */
108 int attach_in_progress;
109
Paul Jackson029190c2007-10-18 23:40:20 -0700110 /* partition number for rebuild_sched_domains() */
111 int pn;
Cliff Wickman956db3c2008-02-07 00:14:43 -0800112
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900113 /* for custom sched domain */
114 int relax_domain_level;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700115};
116
Tejun Heoa7c6d552013-08-08 20:11:23 -0400117static inline struct cpuset *css_cs(struct cgroup_subsys_state *css)
118{
119 return css ? container_of(css, struct cpuset, css) : NULL;
120}
121
Paul Menage8793d852007-10-18 23:39:39 -0700122/* Retrieve the cpuset for a cgroup */
Li Zefanc9e5fe62013-06-14 11:18:27 +0800123static inline struct cpuset *cgroup_cs(struct cgroup *cgrp)
Paul Menage8793d852007-10-18 23:39:39 -0700124{
Tejun Heoa7c6d552013-08-08 20:11:23 -0400125 return css_cs(cgroup_css(cgrp, cpuset_subsys_id));
Paul Menage8793d852007-10-18 23:39:39 -0700126}
127
128/* Retrieve the cpuset for a task */
129static inline struct cpuset *task_cs(struct task_struct *task)
130{
Tejun Heoa7c6d552013-08-08 20:11:23 -0400131 return css_cs(task_css(task, cpuset_subsys_id));
Paul Menage8793d852007-10-18 23:39:39 -0700132}
Paul Menage8793d852007-10-18 23:39:39 -0700133
Tejun Heoc9710d82013-08-08 20:11:22 -0400134static inline struct cpuset *parent_cs(struct cpuset *cs)
Tejun Heoc4310692013-01-07 08:51:08 -0800135{
Tejun Heo63876982013-08-08 20:11:23 -0400136 return css_cs(css_parent(&cs->css));
Tejun Heoc4310692013-01-07 08:51:08 -0800137}
138
David Rientjesb2462722011-12-19 17:11:52 -0800139#ifdef CONFIG_NUMA
140static inline bool task_has_mempolicy(struct task_struct *task)
141{
142 return task->mempolicy;
143}
144#else
145static inline bool task_has_mempolicy(struct task_struct *task)
146{
147 return false;
148}
149#endif
150
151
Linus Torvalds1da177e2005-04-16 15:20:36 -0700152/* bits in struct cpuset flags field */
153typedef enum {
Tejun Heoefeb77b2013-01-07 08:51:07 -0800154 CS_ONLINE,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155 CS_CPU_EXCLUSIVE,
156 CS_MEM_EXCLUSIVE,
Paul Menage78608362008-04-29 01:00:26 -0700157 CS_MEM_HARDWALL,
Paul Jackson45b07ef2006-01-08 01:00:56 -0800158 CS_MEMORY_MIGRATE,
Paul Jackson029190c2007-10-18 23:40:20 -0700159 CS_SCHED_LOAD_BALANCE,
Paul Jackson825a46a2006-03-24 03:16:03 -0800160 CS_SPREAD_PAGE,
161 CS_SPREAD_SLAB,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700162} cpuset_flagbits_t;
163
164/* convenient tests for these bits */
Tejun Heoefeb77b2013-01-07 08:51:07 -0800165static inline bool is_cpuset_online(const struct cpuset *cs)
166{
167 return test_bit(CS_ONLINE, &cs->flags);
168}
169
Linus Torvalds1da177e2005-04-16 15:20:36 -0700170static inline int is_cpu_exclusive(const struct cpuset *cs)
171{
Paul Jackson7b5b9ef2006-03-24 03:16:00 -0800172 return test_bit(CS_CPU_EXCLUSIVE, &cs->flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700173}
174
175static inline int is_mem_exclusive(const struct cpuset *cs)
176{
Paul Jackson7b5b9ef2006-03-24 03:16:00 -0800177 return test_bit(CS_MEM_EXCLUSIVE, &cs->flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700178}
179
Paul Menage78608362008-04-29 01:00:26 -0700180static inline int is_mem_hardwall(const struct cpuset *cs)
181{
182 return test_bit(CS_MEM_HARDWALL, &cs->flags);
183}
184
Paul Jackson029190c2007-10-18 23:40:20 -0700185static inline int is_sched_load_balance(const struct cpuset *cs)
186{
187 return test_bit(CS_SCHED_LOAD_BALANCE, &cs->flags);
188}
189
Paul Jackson45b07ef2006-01-08 01:00:56 -0800190static inline int is_memory_migrate(const struct cpuset *cs)
191{
Paul Jackson7b5b9ef2006-03-24 03:16:00 -0800192 return test_bit(CS_MEMORY_MIGRATE, &cs->flags);
Paul Jackson45b07ef2006-01-08 01:00:56 -0800193}
194
Paul Jackson825a46a2006-03-24 03:16:03 -0800195static inline int is_spread_page(const struct cpuset *cs)
196{
197 return test_bit(CS_SPREAD_PAGE, &cs->flags);
198}
199
200static inline int is_spread_slab(const struct cpuset *cs)
201{
202 return test_bit(CS_SPREAD_SLAB, &cs->flags);
203}
204
Linus Torvalds1da177e2005-04-16 15:20:36 -0700205static struct cpuset top_cpuset = {
Tejun Heoefeb77b2013-01-07 08:51:07 -0800206 .flags = ((1 << CS_ONLINE) | (1 << CS_CPU_EXCLUSIVE) |
207 (1 << CS_MEM_EXCLUSIVE)),
Linus Torvalds1da177e2005-04-16 15:20:36 -0700208};
209
Tejun Heoae8086c2013-01-07 08:51:07 -0800210/**
211 * cpuset_for_each_child - traverse online children of a cpuset
212 * @child_cs: loop cursor pointing to the current child
213 * @pos_cgrp: used for iteration
214 * @parent_cs: target cpuset to walk children of
Linus Torvalds1da177e2005-04-16 15:20:36 -0700215 *
Tejun Heoae8086c2013-01-07 08:51:07 -0800216 * Walk @child_cs through the online children of @parent_cs. Must be used
217 * with RCU read locked.
218 */
219#define cpuset_for_each_child(child_cs, pos_cgrp, parent_cs) \
220 cgroup_for_each_child((pos_cgrp), (parent_cs)->css.cgroup) \
221 if (is_cpuset_online(((child_cs) = cgroup_cs((pos_cgrp)))))
222
Tejun Heofc560a22013-01-07 08:51:08 -0800223/**
224 * cpuset_for_each_descendant_pre - pre-order walk of a cpuset's descendants
225 * @des_cs: loop cursor pointing to the current descendant
226 * @pos_cgrp: used for iteration
227 * @root_cs: target cpuset to walk ancestor of
228 *
229 * Walk @des_cs through the online descendants of @root_cs. Must be used
230 * with RCU read locked. The caller may modify @pos_cgrp by calling
231 * cgroup_rightmost_descendant() to skip subtree.
232 */
233#define cpuset_for_each_descendant_pre(des_cs, pos_cgrp, root_cs) \
234 cgroup_for_each_descendant_pre((pos_cgrp), (root_cs)->css.cgroup) \
235 if (is_cpuset_online(((des_cs) = cgroup_cs((pos_cgrp)))))
236
Linus Torvalds1da177e2005-04-16 15:20:36 -0700237/*
Tejun Heo5d21cc22013-01-07 08:51:08 -0800238 * There are two global mutexes guarding cpuset structures - cpuset_mutex
239 * and callback_mutex. The latter may nest inside the former. We also
240 * require taking task_lock() when dereferencing a task's cpuset pointer.
241 * See "The task_lock() exception", at the end of this comment.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700242 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800243 * A task must hold both mutexes to modify cpusets. If a task holds
244 * cpuset_mutex, then it blocks others wanting that mutex, ensuring that it
245 * is the only task able to also acquire callback_mutex and be able to
246 * modify cpusets. It can perform various checks on the cpuset structure
247 * first, knowing nothing will change. It can also allocate memory while
248 * just holding cpuset_mutex. While it is performing these checks, various
249 * callback routines can briefly acquire callback_mutex to query cpusets.
250 * Once it is ready to make the changes, it takes callback_mutex, blocking
251 * everyone else.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700252 *
Paul Jackson053199e2005-10-30 15:02:30 -0800253 * Calls to the kernel memory allocator can not be made while holding
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800254 * callback_mutex, as that would risk double tripping on callback_mutex
Paul Jackson053199e2005-10-30 15:02:30 -0800255 * from one of the callbacks into the cpuset code from within
256 * __alloc_pages().
Linus Torvalds1da177e2005-04-16 15:20:36 -0700257 *
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800258 * If a task is only holding callback_mutex, then it has read-only
Paul Jackson053199e2005-10-30 15:02:30 -0800259 * access to cpusets.
260 *
Miao Xie58568d22009-06-16 15:31:49 -0700261 * Now, the task_struct fields mems_allowed and mempolicy may be changed
262 * by other task, we use alloc_lock in the task_struct fields to protect
263 * them.
Paul Jackson053199e2005-10-30 15:02:30 -0800264 *
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800265 * The cpuset_common_file_read() handlers only hold callback_mutex across
Paul Jackson053199e2005-10-30 15:02:30 -0800266 * small pieces of code, such as when reading out possibly multi-word
267 * cpumasks and nodemasks.
268 *
Paul Menage2df167a2008-02-07 00:14:45 -0800269 * Accessing a task's cpuset should be done in accordance with the
270 * guidelines for accessing subsystem state in kernel/cgroup.c
Linus Torvalds1da177e2005-04-16 15:20:36 -0700271 */
272
Tejun Heo5d21cc22013-01-07 08:51:08 -0800273static DEFINE_MUTEX(cpuset_mutex);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800274static DEFINE_MUTEX(callback_mutex);
Paul Jackson4247bdc2005-09-10 00:26:06 -0700275
Max Krasnyanskycf417142008-08-11 14:33:53 -0700276/*
Tejun Heo3a5a6d02013-01-07 08:51:07 -0800277 * CPU / memory hotplug is handled asynchronously.
278 */
279static void cpuset_hotplug_workfn(struct work_struct *work);
Tejun Heo3a5a6d02013-01-07 08:51:07 -0800280static DECLARE_WORK(cpuset_hotplug_work, cpuset_hotplug_workfn);
281
Li Zefane44193d2013-06-09 17:14:22 +0800282static DECLARE_WAIT_QUEUE_HEAD(cpuset_attach_wq);
283
Tejun Heo3a5a6d02013-01-07 08:51:07 -0800284/*
Max Krasnyanskycf417142008-08-11 14:33:53 -0700285 * This is ugly, but preserves the userspace API for existing cpuset
Paul Menage8793d852007-10-18 23:39:39 -0700286 * users. If someone tries to mount the "cpuset" filesystem, we
Max Krasnyanskycf417142008-08-11 14:33:53 -0700287 * silently switch it to mount "cgroup" instead
288 */
Al Virof7e83572010-07-26 13:23:11 +0400289static struct dentry *cpuset_mount(struct file_system_type *fs_type,
290 int flags, const char *unused_dev_name, void *data)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700291{
Paul Menage8793d852007-10-18 23:39:39 -0700292 struct file_system_type *cgroup_fs = get_fs_type("cgroup");
Al Virof7e83572010-07-26 13:23:11 +0400293 struct dentry *ret = ERR_PTR(-ENODEV);
Paul Menage8793d852007-10-18 23:39:39 -0700294 if (cgroup_fs) {
295 char mountopts[] =
296 "cpuset,noprefix,"
297 "release_agent=/sbin/cpuset_release_agent";
Al Virof7e83572010-07-26 13:23:11 +0400298 ret = cgroup_fs->mount(cgroup_fs, flags,
299 unused_dev_name, mountopts);
Paul Menage8793d852007-10-18 23:39:39 -0700300 put_filesystem(cgroup_fs);
301 }
302 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700303}
304
305static struct file_system_type cpuset_fs_type = {
306 .name = "cpuset",
Al Virof7e83572010-07-26 13:23:11 +0400307 .mount = cpuset_mount,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700308};
309
Linus Torvalds1da177e2005-04-16 15:20:36 -0700310/*
Li Zefan300ed6c2009-01-07 18:08:44 -0800311 * Return in pmask the portion of a cpusets's cpus_allowed that
Linus Torvalds1da177e2005-04-16 15:20:36 -0700312 * are online. If none are online, walk up the cpuset hierarchy
Li Zefan40df2de2013-06-05 17:15:23 +0800313 * until we find one that does have some online cpus. The top
314 * cpuset always has some cpus online.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700315 *
316 * One way or another, we guarantee to return some non-empty subset
Rusty Russell5f054e32012-03-29 15:38:31 +1030317 * of cpu_online_mask.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700318 *
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800319 * Call with callback_mutex held.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700320 */
Tejun Heoc9710d82013-08-08 20:11:22 -0400321static void guarantee_online_cpus(struct cpuset *cs, struct cpumask *pmask)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700322{
Li Zefan40df2de2013-06-05 17:15:23 +0800323 while (!cpumask_intersects(cs->cpus_allowed, cpu_online_mask))
Tejun Heoc4310692013-01-07 08:51:08 -0800324 cs = parent_cs(cs);
Li Zefan40df2de2013-06-05 17:15:23 +0800325 cpumask_and(pmask, cs->cpus_allowed, cpu_online_mask);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700326}
327
328/*
329 * Return in *pmask the portion of a cpusets's mems_allowed that
Christoph Lameter0e1e7c72007-10-16 01:25:38 -0700330 * are online, with memory. If none are online with memory, walk
331 * up the cpuset hierarchy until we find one that does have some
Li Zefan40df2de2013-06-05 17:15:23 +0800332 * online mems. The top cpuset always has some mems online.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700333 *
334 * One way or another, we guarantee to return some non-empty subset
Lai Jiangshan38d7bee2012-12-12 13:51:24 -0800335 * of node_states[N_MEMORY].
Linus Torvalds1da177e2005-04-16 15:20:36 -0700336 *
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800337 * Call with callback_mutex held.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700338 */
Tejun Heoc9710d82013-08-08 20:11:22 -0400339static void guarantee_online_mems(struct cpuset *cs, nodemask_t *pmask)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700340{
Li Zefan40df2de2013-06-05 17:15:23 +0800341 while (!nodes_intersects(cs->mems_allowed, node_states[N_MEMORY]))
Tejun Heoc4310692013-01-07 08:51:08 -0800342 cs = parent_cs(cs);
Li Zefan40df2de2013-06-05 17:15:23 +0800343 nodes_and(*pmask, cs->mems_allowed, node_states[N_MEMORY]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700344}
345
Miao Xief3b39d42009-06-16 15:31:46 -0700346/*
347 * update task's spread flag if cpuset's page/slab spread flag is set
348 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800349 * Called with callback_mutex/cpuset_mutex held
Miao Xief3b39d42009-06-16 15:31:46 -0700350 */
351static void cpuset_update_task_spread_flag(struct cpuset *cs,
352 struct task_struct *tsk)
353{
354 if (is_spread_page(cs))
355 tsk->flags |= PF_SPREAD_PAGE;
356 else
357 tsk->flags &= ~PF_SPREAD_PAGE;
358 if (is_spread_slab(cs))
359 tsk->flags |= PF_SPREAD_SLAB;
360 else
361 tsk->flags &= ~PF_SPREAD_SLAB;
362}
363
Linus Torvalds1da177e2005-04-16 15:20:36 -0700364/*
365 * is_cpuset_subset(p, q) - Is cpuset p a subset of cpuset q?
366 *
367 * One cpuset is a subset of another if all its allowed CPUs and
368 * Memory Nodes are a subset of the other, and its exclusive flags
Tejun Heo5d21cc22013-01-07 08:51:08 -0800369 * are only set if the other's are set. Call holding cpuset_mutex.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700370 */
371
372static int is_cpuset_subset(const struct cpuset *p, const struct cpuset *q)
373{
Li Zefan300ed6c2009-01-07 18:08:44 -0800374 return cpumask_subset(p->cpus_allowed, q->cpus_allowed) &&
Linus Torvalds1da177e2005-04-16 15:20:36 -0700375 nodes_subset(p->mems_allowed, q->mems_allowed) &&
376 is_cpu_exclusive(p) <= is_cpu_exclusive(q) &&
377 is_mem_exclusive(p) <= is_mem_exclusive(q);
378}
379
Li Zefan645fcc92009-01-07 18:08:43 -0800380/**
381 * alloc_trial_cpuset - allocate a trial cpuset
382 * @cs: the cpuset that the trial cpuset duplicates
383 */
Tejun Heoc9710d82013-08-08 20:11:22 -0400384static struct cpuset *alloc_trial_cpuset(struct cpuset *cs)
Li Zefan645fcc92009-01-07 18:08:43 -0800385{
Li Zefan300ed6c2009-01-07 18:08:44 -0800386 struct cpuset *trial;
387
388 trial = kmemdup(cs, sizeof(*cs), GFP_KERNEL);
389 if (!trial)
390 return NULL;
391
392 if (!alloc_cpumask_var(&trial->cpus_allowed, GFP_KERNEL)) {
393 kfree(trial);
394 return NULL;
395 }
396 cpumask_copy(trial->cpus_allowed, cs->cpus_allowed);
397
398 return trial;
Li Zefan645fcc92009-01-07 18:08:43 -0800399}
400
401/**
402 * free_trial_cpuset - free the trial cpuset
403 * @trial: the trial cpuset to be freed
404 */
405static void free_trial_cpuset(struct cpuset *trial)
406{
Li Zefan300ed6c2009-01-07 18:08:44 -0800407 free_cpumask_var(trial->cpus_allowed);
Li Zefan645fcc92009-01-07 18:08:43 -0800408 kfree(trial);
409}
410
Linus Torvalds1da177e2005-04-16 15:20:36 -0700411/*
412 * validate_change() - Used to validate that any proposed cpuset change
413 * follows the structural rules for cpusets.
414 *
415 * If we replaced the flag and mask values of the current cpuset
416 * (cur) with those values in the trial cpuset (trial), would
417 * our various subset and exclusive rules still be valid? Presumes
Tejun Heo5d21cc22013-01-07 08:51:08 -0800418 * cpuset_mutex held.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700419 *
420 * 'cur' is the address of an actual, in-use cpuset. Operations
421 * such as list traversal that depend on the actual address of the
422 * cpuset in the list must use cur below, not trial.
423 *
424 * 'trial' is the address of bulk structure copy of cur, with
425 * perhaps one or more of the fields cpus_allowed, mems_allowed,
426 * or flags changed to new, trial values.
427 *
428 * Return 0 if valid, -errno if not.
429 */
430
Tejun Heoc9710d82013-08-08 20:11:22 -0400431static int validate_change(struct cpuset *cur, struct cpuset *trial)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700432{
Li Zefanc9e5fe62013-06-14 11:18:27 +0800433 struct cgroup *cgrp;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700434 struct cpuset *c, *par;
Tejun Heoae8086c2013-01-07 08:51:07 -0800435 int ret;
436
437 rcu_read_lock();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700438
439 /* Each of our child cpusets must be a subset of us */
Tejun Heoae8086c2013-01-07 08:51:07 -0800440 ret = -EBUSY;
Li Zefanc9e5fe62013-06-14 11:18:27 +0800441 cpuset_for_each_child(c, cgrp, cur)
Tejun Heoae8086c2013-01-07 08:51:07 -0800442 if (!is_cpuset_subset(c, trial))
443 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700444
445 /* Remaining checks don't apply to root cpuset */
Tejun Heoae8086c2013-01-07 08:51:07 -0800446 ret = 0;
Paul Jackson69604062006-12-06 20:36:15 -0800447 if (cur == &top_cpuset)
Tejun Heoae8086c2013-01-07 08:51:07 -0800448 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700449
Tejun Heoc4310692013-01-07 08:51:08 -0800450 par = parent_cs(cur);
Paul Jackson69604062006-12-06 20:36:15 -0800451
Linus Torvalds1da177e2005-04-16 15:20:36 -0700452 /* We must be a subset of our parent cpuset */
Tejun Heoae8086c2013-01-07 08:51:07 -0800453 ret = -EACCES;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700454 if (!is_cpuset_subset(trial, par))
Tejun Heoae8086c2013-01-07 08:51:07 -0800455 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700456
Paul Menage2df167a2008-02-07 00:14:45 -0800457 /*
458 * If either I or some sibling (!= me) is exclusive, we can't
459 * overlap
460 */
Tejun Heoae8086c2013-01-07 08:51:07 -0800461 ret = -EINVAL;
Li Zefanc9e5fe62013-06-14 11:18:27 +0800462 cpuset_for_each_child(c, cgrp, par) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700463 if ((is_cpu_exclusive(trial) || is_cpu_exclusive(c)) &&
464 c != cur &&
Li Zefan300ed6c2009-01-07 18:08:44 -0800465 cpumask_intersects(trial->cpus_allowed, c->cpus_allowed))
Tejun Heoae8086c2013-01-07 08:51:07 -0800466 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700467 if ((is_mem_exclusive(trial) || is_mem_exclusive(c)) &&
468 c != cur &&
469 nodes_intersects(trial->mems_allowed, c->mems_allowed))
Tejun Heoae8086c2013-01-07 08:51:07 -0800470 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700471 }
472
Tejun Heo452477f2013-01-07 08:51:07 -0800473 /*
474 * Cpusets with tasks - existing or newly being attached - can't
475 * have empty cpus_allowed or mems_allowed.
476 */
Tejun Heoae8086c2013-01-07 08:51:07 -0800477 ret = -ENOSPC;
Tejun Heo452477f2013-01-07 08:51:07 -0800478 if ((cgroup_task_count(cur->css.cgroup) || cur->attach_in_progress) &&
Li Zefan88fa5232013-06-09 17:16:46 +0800479 (cpumask_empty(trial->cpus_allowed) &&
Tejun Heoae8086c2013-01-07 08:51:07 -0800480 nodes_empty(trial->mems_allowed)))
481 goto out;
Paul Jackson020958b2007-10-18 23:40:21 -0700482
Tejun Heoae8086c2013-01-07 08:51:07 -0800483 ret = 0;
484out:
485 rcu_read_unlock();
486 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700487}
488
Paul Menagedb7f47c2009-04-02 16:57:55 -0700489#ifdef CONFIG_SMP
Dinakar Guniguntala85d7b942005-06-25 14:57:34 -0700490/*
Max Krasnyanskycf417142008-08-11 14:33:53 -0700491 * Helper routine for generate_sched_domains().
Paul Jackson029190c2007-10-18 23:40:20 -0700492 * Do cpusets a, b have overlapping cpus_allowed masks?
493 */
Paul Jackson029190c2007-10-18 23:40:20 -0700494static int cpusets_overlap(struct cpuset *a, struct cpuset *b)
495{
Li Zefan300ed6c2009-01-07 18:08:44 -0800496 return cpumask_intersects(a->cpus_allowed, b->cpus_allowed);
Paul Jackson029190c2007-10-18 23:40:20 -0700497}
498
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900499static void
500update_domain_attr(struct sched_domain_attr *dattr, struct cpuset *c)
501{
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900502 if (dattr->relax_domain_level < c->relax_domain_level)
503 dattr->relax_domain_level = c->relax_domain_level;
504 return;
505}
506
Tejun Heofc560a22013-01-07 08:51:08 -0800507static void update_domain_attr_tree(struct sched_domain_attr *dattr,
508 struct cpuset *root_cs)
Lai Jiangshanf5393692008-07-29 22:33:22 -0700509{
Tejun Heofc560a22013-01-07 08:51:08 -0800510 struct cpuset *cp;
511 struct cgroup *pos_cgrp;
Lai Jiangshanf5393692008-07-29 22:33:22 -0700512
Tejun Heofc560a22013-01-07 08:51:08 -0800513 rcu_read_lock();
514 cpuset_for_each_descendant_pre(cp, pos_cgrp, root_cs) {
515 /* skip the whole subtree if @cp doesn't have any CPU */
516 if (cpumask_empty(cp->cpus_allowed)) {
517 pos_cgrp = cgroup_rightmost_descendant(pos_cgrp);
Lai Jiangshanf5393692008-07-29 22:33:22 -0700518 continue;
Tejun Heofc560a22013-01-07 08:51:08 -0800519 }
Lai Jiangshanf5393692008-07-29 22:33:22 -0700520
521 if (is_sched_load_balance(cp))
522 update_domain_attr(dattr, cp);
Lai Jiangshanf5393692008-07-29 22:33:22 -0700523 }
Tejun Heofc560a22013-01-07 08:51:08 -0800524 rcu_read_unlock();
Lai Jiangshanf5393692008-07-29 22:33:22 -0700525}
526
Paul Jackson029190c2007-10-18 23:40:20 -0700527/*
Max Krasnyanskycf417142008-08-11 14:33:53 -0700528 * generate_sched_domains()
Paul Jackson029190c2007-10-18 23:40:20 -0700529 *
Max Krasnyanskycf417142008-08-11 14:33:53 -0700530 * This function builds a partial partition of the systems CPUs
531 * A 'partial partition' is a set of non-overlapping subsets whose
532 * union is a subset of that set.
Viresh Kumar0a0fca92013-06-04 13:10:24 +0530533 * The output of this function needs to be passed to kernel/sched/core.c
Max Krasnyanskycf417142008-08-11 14:33:53 -0700534 * partition_sched_domains() routine, which will rebuild the scheduler's
535 * load balancing domains (sched domains) as specified by that partial
536 * partition.
Paul Jackson029190c2007-10-18 23:40:20 -0700537 *
Li Zefan45ce80f2009-01-15 13:50:59 -0800538 * See "What is sched_load_balance" in Documentation/cgroups/cpusets.txt
Paul Jackson029190c2007-10-18 23:40:20 -0700539 * for a background explanation of this.
540 *
541 * Does not return errors, on the theory that the callers of this
542 * routine would rather not worry about failures to rebuild sched
543 * domains when operating in the severe memory shortage situations
544 * that could cause allocation failures below.
545 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800546 * Must be called with cpuset_mutex held.
Paul Jackson029190c2007-10-18 23:40:20 -0700547 *
548 * The three key local variables below are:
Li Zefanaeed6822008-07-29 22:33:24 -0700549 * q - a linked-list queue of cpuset pointers, used to implement a
Paul Jackson029190c2007-10-18 23:40:20 -0700550 * top-down scan of all cpusets. This scan loads a pointer
551 * to each cpuset marked is_sched_load_balance into the
552 * array 'csa'. For our purposes, rebuilding the schedulers
553 * sched domains, we can ignore !is_sched_load_balance cpusets.
554 * csa - (for CpuSet Array) Array of pointers to all the cpusets
555 * that need to be load balanced, for convenient iterative
556 * access by the subsequent code that finds the best partition,
557 * i.e the set of domains (subsets) of CPUs such that the
558 * cpus_allowed of every cpuset marked is_sched_load_balance
559 * is a subset of one of these domains, while there are as
560 * many such domains as possible, each as small as possible.
561 * doms - Conversion of 'csa' to an array of cpumasks, for passing to
Viresh Kumar0a0fca92013-06-04 13:10:24 +0530562 * the kernel/sched/core.c routine partition_sched_domains() in a
Paul Jackson029190c2007-10-18 23:40:20 -0700563 * convenient format, that can be easily compared to the prior
564 * value to determine what partition elements (sched domains)
565 * were changed (added or removed.)
566 *
567 * Finding the best partition (set of domains):
568 * The triple nested loops below over i, j, k scan over the
569 * load balanced cpusets (using the array of cpuset pointers in
570 * csa[]) looking for pairs of cpusets that have overlapping
571 * cpus_allowed, but which don't have the same 'pn' partition
572 * number and gives them in the same partition number. It keeps
573 * looping on the 'restart' label until it can no longer find
574 * any such pairs.
575 *
576 * The union of the cpus_allowed masks from the set of
577 * all cpusets having the same 'pn' value then form the one
578 * element of the partition (one sched domain) to be passed to
579 * partition_sched_domains().
580 */
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030581static int generate_sched_domains(cpumask_var_t **domains,
Max Krasnyanskycf417142008-08-11 14:33:53 -0700582 struct sched_domain_attr **attributes)
Paul Jackson029190c2007-10-18 23:40:20 -0700583{
Paul Jackson029190c2007-10-18 23:40:20 -0700584 struct cpuset *cp; /* scans q */
585 struct cpuset **csa; /* array of all cpuset ptrs */
586 int csn; /* how many cpuset ptrs in csa so far */
587 int i, j, k; /* indices for partition finding loops */
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030588 cpumask_var_t *doms; /* resulting partition; i.e. sched domains */
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900589 struct sched_domain_attr *dattr; /* attributes for custom domains */
Ingo Molnar15837152008-11-25 10:27:49 +0100590 int ndoms = 0; /* number of sched domains in result */
Li Zefan6af866a2009-01-07 18:08:45 -0800591 int nslot; /* next empty doms[] struct cpumask slot */
Tejun Heofc560a22013-01-07 08:51:08 -0800592 struct cgroup *pos_cgrp;
Paul Jackson029190c2007-10-18 23:40:20 -0700593
Paul Jackson029190c2007-10-18 23:40:20 -0700594 doms = NULL;
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900595 dattr = NULL;
Max Krasnyanskycf417142008-08-11 14:33:53 -0700596 csa = NULL;
Paul Jackson029190c2007-10-18 23:40:20 -0700597
598 /* Special case for the 99% of systems with one, full, sched domain */
599 if (is_sched_load_balance(&top_cpuset)) {
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030600 ndoms = 1;
601 doms = alloc_sched_domains(ndoms);
Paul Jackson029190c2007-10-18 23:40:20 -0700602 if (!doms)
Max Krasnyanskycf417142008-08-11 14:33:53 -0700603 goto done;
604
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900605 dattr = kmalloc(sizeof(struct sched_domain_attr), GFP_KERNEL);
606 if (dattr) {
607 *dattr = SD_ATTR_INIT;
Li Zefan93a65572008-07-29 22:33:23 -0700608 update_domain_attr_tree(dattr, &top_cpuset);
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900609 }
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030610 cpumask_copy(doms[0], top_cpuset.cpus_allowed);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700611
Max Krasnyanskycf417142008-08-11 14:33:53 -0700612 goto done;
Paul Jackson029190c2007-10-18 23:40:20 -0700613 }
614
Paul Jackson029190c2007-10-18 23:40:20 -0700615 csa = kmalloc(number_of_cpusets * sizeof(cp), GFP_KERNEL);
616 if (!csa)
617 goto done;
618 csn = 0;
619
Tejun Heofc560a22013-01-07 08:51:08 -0800620 rcu_read_lock();
621 cpuset_for_each_descendant_pre(cp, pos_cgrp, &top_cpuset) {
Lai Jiangshanf5393692008-07-29 22:33:22 -0700622 /*
Tejun Heofc560a22013-01-07 08:51:08 -0800623 * Continue traversing beyond @cp iff @cp has some CPUs and
624 * isn't load balancing. The former is obvious. The
625 * latter: All child cpusets contain a subset of the
626 * parent's cpus, so just skip them, and then we call
627 * update_domain_attr_tree() to calc relax_domain_level of
628 * the corresponding sched domain.
Lai Jiangshanf5393692008-07-29 22:33:22 -0700629 */
Tejun Heofc560a22013-01-07 08:51:08 -0800630 if (!cpumask_empty(cp->cpus_allowed) &&
631 !is_sched_load_balance(cp))
Lai Jiangshanf5393692008-07-29 22:33:22 -0700632 continue;
Lai Jiangshan489a5392008-07-25 01:47:23 -0700633
Tejun Heofc560a22013-01-07 08:51:08 -0800634 if (is_sched_load_balance(cp))
635 csa[csn++] = cp;
636
637 /* skip @cp's subtree */
638 pos_cgrp = cgroup_rightmost_descendant(pos_cgrp);
639 }
640 rcu_read_unlock();
Paul Jackson029190c2007-10-18 23:40:20 -0700641
642 for (i = 0; i < csn; i++)
643 csa[i]->pn = i;
644 ndoms = csn;
645
646restart:
647 /* Find the best partition (set of sched domains) */
648 for (i = 0; i < csn; i++) {
649 struct cpuset *a = csa[i];
650 int apn = a->pn;
651
652 for (j = 0; j < csn; j++) {
653 struct cpuset *b = csa[j];
654 int bpn = b->pn;
655
656 if (apn != bpn && cpusets_overlap(a, b)) {
657 for (k = 0; k < csn; k++) {
658 struct cpuset *c = csa[k];
659
660 if (c->pn == bpn)
661 c->pn = apn;
662 }
663 ndoms--; /* one less element */
664 goto restart;
665 }
666 }
667 }
668
Max Krasnyanskycf417142008-08-11 14:33:53 -0700669 /*
670 * Now we know how many domains to create.
671 * Convert <csn, csa> to <ndoms, doms> and populate cpu masks.
672 */
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030673 doms = alloc_sched_domains(ndoms);
Li Zefan700018e2008-11-18 14:02:03 +0800674 if (!doms)
Max Krasnyanskycf417142008-08-11 14:33:53 -0700675 goto done;
Max Krasnyanskycf417142008-08-11 14:33:53 -0700676
677 /*
678 * The rest of the code, including the scheduler, can deal with
679 * dattr==NULL case. No need to abort if alloc fails.
680 */
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +0900681 dattr = kmalloc(ndoms * sizeof(struct sched_domain_attr), GFP_KERNEL);
Paul Jackson029190c2007-10-18 23:40:20 -0700682
683 for (nslot = 0, i = 0; i < csn; i++) {
684 struct cpuset *a = csa[i];
Li Zefan6af866a2009-01-07 18:08:45 -0800685 struct cpumask *dp;
Paul Jackson029190c2007-10-18 23:40:20 -0700686 int apn = a->pn;
687
Max Krasnyanskycf417142008-08-11 14:33:53 -0700688 if (apn < 0) {
689 /* Skip completed partitions */
690 continue;
Paul Jackson029190c2007-10-18 23:40:20 -0700691 }
Max Krasnyanskycf417142008-08-11 14:33:53 -0700692
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030693 dp = doms[nslot];
Max Krasnyanskycf417142008-08-11 14:33:53 -0700694
695 if (nslot == ndoms) {
696 static int warnings = 10;
697 if (warnings) {
698 printk(KERN_WARNING
699 "rebuild_sched_domains confused:"
700 " nslot %d, ndoms %d, csn %d, i %d,"
701 " apn %d\n",
702 nslot, ndoms, csn, i, apn);
703 warnings--;
704 }
705 continue;
706 }
707
Li Zefan6af866a2009-01-07 18:08:45 -0800708 cpumask_clear(dp);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700709 if (dattr)
710 *(dattr + nslot) = SD_ATTR_INIT;
711 for (j = i; j < csn; j++) {
712 struct cpuset *b = csa[j];
713
714 if (apn == b->pn) {
Li Zefan300ed6c2009-01-07 18:08:44 -0800715 cpumask_or(dp, dp, b->cpus_allowed);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700716 if (dattr)
717 update_domain_attr_tree(dattr + nslot, b);
718
719 /* Done with this partition */
720 b->pn = -1;
721 }
722 }
723 nslot++;
Paul Jackson029190c2007-10-18 23:40:20 -0700724 }
725 BUG_ON(nslot != ndoms);
726
Paul Jackson029190c2007-10-18 23:40:20 -0700727done:
Paul Jackson029190c2007-10-18 23:40:20 -0700728 kfree(csa);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700729
Li Zefan700018e2008-11-18 14:02:03 +0800730 /*
731 * Fallback to the default domain if kmalloc() failed.
732 * See comments in partition_sched_domains().
733 */
734 if (doms == NULL)
735 ndoms = 1;
736
Max Krasnyanskycf417142008-08-11 14:33:53 -0700737 *domains = doms;
738 *attributes = dattr;
739 return ndoms;
740}
741
742/*
743 * Rebuild scheduler domains.
744 *
Tejun Heo699140b2013-01-07 08:51:07 -0800745 * If the flag 'sched_load_balance' of any cpuset with non-empty
746 * 'cpus' changes, or if the 'cpus' allowed changes in any cpuset
747 * which has that flag enabled, or if any cpuset with a non-empty
748 * 'cpus' is removed, then call this routine to rebuild the
749 * scheduler's dynamic sched domains.
Max Krasnyanskycf417142008-08-11 14:33:53 -0700750 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800751 * Call with cpuset_mutex held. Takes get_online_cpus().
Max Krasnyanskycf417142008-08-11 14:33:53 -0700752 */
Tejun Heo699140b2013-01-07 08:51:07 -0800753static void rebuild_sched_domains_locked(void)
Max Krasnyanskycf417142008-08-11 14:33:53 -0700754{
755 struct sched_domain_attr *attr;
Rusty Russellacc3f5d2009-11-03 14:53:40 +1030756 cpumask_var_t *doms;
Max Krasnyanskycf417142008-08-11 14:33:53 -0700757 int ndoms;
758
Tejun Heo5d21cc22013-01-07 08:51:08 -0800759 lockdep_assert_held(&cpuset_mutex);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700760 get_online_cpus();
761
Li Zefan5b16c2a2013-04-27 06:52:43 -0700762 /*
763 * We have raced with CPU hotplug. Don't do anything to avoid
764 * passing doms with offlined cpu to partition_sched_domains().
765 * Anyways, hotplug work item will rebuild sched domains.
766 */
767 if (!cpumask_equal(top_cpuset.cpus_allowed, cpu_active_mask))
768 goto out;
769
Max Krasnyanskycf417142008-08-11 14:33:53 -0700770 /* Generate domain masks and attrs */
Max Krasnyanskycf417142008-08-11 14:33:53 -0700771 ndoms = generate_sched_domains(&doms, &attr);
Max Krasnyanskycf417142008-08-11 14:33:53 -0700772
773 /* Have scheduler rebuild the domains */
774 partition_sched_domains(ndoms, doms, attr);
Li Zefan5b16c2a2013-04-27 06:52:43 -0700775out:
Max Krasnyanskycf417142008-08-11 14:33:53 -0700776 put_online_cpus();
777}
Paul Menagedb7f47c2009-04-02 16:57:55 -0700778#else /* !CONFIG_SMP */
Tejun Heo699140b2013-01-07 08:51:07 -0800779static void rebuild_sched_domains_locked(void)
Paul Menagedb7f47c2009-04-02 16:57:55 -0700780{
781}
Paul Menagedb7f47c2009-04-02 16:57:55 -0700782#endif /* CONFIG_SMP */
Max Krasnyanskycf417142008-08-11 14:33:53 -0700783
Max Krasnyanskycf417142008-08-11 14:33:53 -0700784void rebuild_sched_domains(void)
785{
Tejun Heo5d21cc22013-01-07 08:51:08 -0800786 mutex_lock(&cpuset_mutex);
Tejun Heo699140b2013-01-07 08:51:07 -0800787 rebuild_sched_domains_locked();
Tejun Heo5d21cc22013-01-07 08:51:08 -0800788 mutex_unlock(&cpuset_mutex);
Paul Jackson029190c2007-10-18 23:40:20 -0700789}
790
Li Zefan070b57f2013-06-09 17:15:22 +0800791/*
792 * effective_cpumask_cpuset - return nearest ancestor with non-empty cpus
793 * @cs: the cpuset in interest
Cliff Wickman58f47902008-02-07 00:14:44 -0800794 *
Li Zefan070b57f2013-06-09 17:15:22 +0800795 * A cpuset's effective cpumask is the cpumask of the nearest ancestor
796 * with non-empty cpus. We use effective cpumask whenever:
797 * - we update tasks' cpus_allowed. (they take on the ancestor's cpumask
798 * if the cpuset they reside in has no cpus)
799 * - we want to retrieve task_cs(tsk)'s cpus_allowed.
800 *
801 * Called with cpuset_mutex held. cpuset_cpus_allowed_fallback() is an
802 * exception. See comments there.
Paul Jackson053199e2005-10-30 15:02:30 -0800803 */
Li Zefan070b57f2013-06-09 17:15:22 +0800804static struct cpuset *effective_cpumask_cpuset(struct cpuset *cs)
Cliff Wickman58f47902008-02-07 00:14:44 -0800805{
Li Zefan070b57f2013-06-09 17:15:22 +0800806 while (cpumask_empty(cs->cpus_allowed))
807 cs = parent_cs(cs);
808 return cs;
809}
810
811/*
812 * effective_nodemask_cpuset - return nearest ancestor with non-empty mems
813 * @cs: the cpuset in interest
814 *
815 * A cpuset's effective nodemask is the nodemask of the nearest ancestor
816 * with non-empty memss. We use effective nodemask whenever:
817 * - we update tasks' mems_allowed. (they take on the ancestor's nodemask
818 * if the cpuset they reside in has no mems)
819 * - we want to retrieve task_cs(tsk)'s mems_allowed.
820 *
821 * Called with cpuset_mutex held.
822 */
823static struct cpuset *effective_nodemask_cpuset(struct cpuset *cs)
824{
825 while (nodes_empty(cs->mems_allowed))
826 cs = parent_cs(cs);
827 return cs;
Cliff Wickman58f47902008-02-07 00:14:44 -0800828}
Paul Jackson053199e2005-10-30 15:02:30 -0800829
Cliff Wickman58f47902008-02-07 00:14:44 -0800830/**
831 * cpuset_change_cpumask - make a task's cpus_allowed the same as its cpuset's
832 * @tsk: task to test
833 * @scan: struct cgroup_scanner containing the cgroup of the task
834 *
835 * Called by cgroup_scan_tasks() for each task in a cgroup whose
836 * cpus_allowed mask needs to be changed.
837 *
838 * We don't need to re-check for the cgroup/cpuset membership, since we're
Tejun Heo5d21cc22013-01-07 08:51:08 -0800839 * holding cpuset_mutex at this point.
Cliff Wickman58f47902008-02-07 00:14:44 -0800840 */
Adrian Bunk9e0c9142008-04-29 01:00:25 -0700841static void cpuset_change_cpumask(struct task_struct *tsk,
842 struct cgroup_scanner *scan)
Cliff Wickman58f47902008-02-07 00:14:44 -0800843{
Li Zefan070b57f2013-06-09 17:15:22 +0800844 struct cpuset *cpus_cs;
845
Li Zefan6f4b7e62013-07-31 16:18:36 +0800846 cpus_cs = effective_cpumask_cpuset(cgroup_cs(scan->cgrp));
Li Zefan070b57f2013-06-09 17:15:22 +0800847 set_cpus_allowed_ptr(tsk, cpus_cs->cpus_allowed);
Cliff Wickman58f47902008-02-07 00:14:44 -0800848}
849
850/**
Miao Xie0b2f6302008-07-25 01:47:21 -0700851 * update_tasks_cpumask - Update the cpumasks of tasks in the cpuset.
852 * @cs: the cpuset in which each task's cpus_allowed mask needs to be changed
Li Zefan4e743392008-09-13 02:33:08 -0700853 * @heap: if NULL, defer allocating heap memory to cgroup_scan_tasks()
Miao Xie0b2f6302008-07-25 01:47:21 -0700854 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800855 * Called with cpuset_mutex held
Miao Xie0b2f6302008-07-25 01:47:21 -0700856 *
857 * The cgroup_scan_tasks() function will scan all the tasks in a cgroup,
858 * calling callback functions for each.
859 *
Li Zefan4e743392008-09-13 02:33:08 -0700860 * No return value. It's guaranteed that cgroup_scan_tasks() always returns 0
861 * if @heap != NULL.
Miao Xie0b2f6302008-07-25 01:47:21 -0700862 */
Li Zefan4e743392008-09-13 02:33:08 -0700863static void update_tasks_cpumask(struct cpuset *cs, struct ptr_heap *heap)
Miao Xie0b2f6302008-07-25 01:47:21 -0700864{
865 struct cgroup_scanner scan;
Miao Xie0b2f6302008-07-25 01:47:21 -0700866
Li Zefan6f4b7e62013-07-31 16:18:36 +0800867 scan.cgrp = cs->css.cgroup;
Li Zefan249cc862013-06-05 17:15:48 +0800868 scan.test_task = NULL;
Miao Xie0b2f6302008-07-25 01:47:21 -0700869 scan.process_task = cpuset_change_cpumask;
Li Zefan4e743392008-09-13 02:33:08 -0700870 scan.heap = heap;
871 cgroup_scan_tasks(&scan);
Miao Xie0b2f6302008-07-25 01:47:21 -0700872}
873
Li Zefan5c5cc622013-06-09 17:16:29 +0800874/*
875 * update_tasks_cpumask_hier - Update the cpumasks of tasks in the hierarchy.
876 * @root_cs: the root cpuset of the hierarchy
877 * @update_root: update root cpuset or not?
878 * @heap: the heap used by cgroup_scan_tasks()
879 *
880 * This will update cpumasks of tasks in @root_cs and all other empty cpusets
881 * which take on cpumask of @root_cs.
882 *
883 * Called with cpuset_mutex held
884 */
885static void update_tasks_cpumask_hier(struct cpuset *root_cs,
886 bool update_root, struct ptr_heap *heap)
887{
888 struct cpuset *cp;
889 struct cgroup *pos_cgrp;
890
891 if (update_root)
892 update_tasks_cpumask(root_cs, heap);
893
894 rcu_read_lock();
895 cpuset_for_each_descendant_pre(cp, pos_cgrp, root_cs) {
896 /* skip the whole subtree if @cp have some CPU */
897 if (!cpumask_empty(cp->cpus_allowed)) {
898 pos_cgrp = cgroup_rightmost_descendant(pos_cgrp);
899 continue;
900 }
901 if (!css_tryget(&cp->css))
902 continue;
903 rcu_read_unlock();
904
905 update_tasks_cpumask(cp, heap);
906
907 rcu_read_lock();
908 css_put(&cp->css);
909 }
910 rcu_read_unlock();
911}
912
Miao Xie0b2f6302008-07-25 01:47:21 -0700913/**
Cliff Wickman58f47902008-02-07 00:14:44 -0800914 * update_cpumask - update the cpus_allowed mask of a cpuset and all tasks in it
915 * @cs: the cpuset to consider
916 * @buf: buffer of cpu numbers written to this cpuset
917 */
Li Zefan645fcc92009-01-07 18:08:43 -0800918static int update_cpumask(struct cpuset *cs, struct cpuset *trialcs,
919 const char *buf)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700920{
Li Zefan4e743392008-09-13 02:33:08 -0700921 struct ptr_heap heap;
Cliff Wickman58f47902008-02-07 00:14:44 -0800922 int retval;
923 int is_load_balanced;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700924
Rusty Russell5f054e32012-03-29 15:38:31 +1030925 /* top_cpuset.cpus_allowed tracks cpu_online_mask; it's read-only */
Paul Jackson4c4d50f2006-08-27 01:23:51 -0700926 if (cs == &top_cpuset)
927 return -EACCES;
928
David Rientjes6f7f02e2007-05-08 00:31:43 -0700929 /*
Paul Jacksonc8d9c902008-02-07 00:14:46 -0800930 * An empty cpus_allowed is ok only if the cpuset has no tasks.
Paul Jackson020958b2007-10-18 23:40:21 -0700931 * Since cpulist_parse() fails on an empty mask, we special case
932 * that parsing. The validate_change() call ensures that cpusets
933 * with tasks have cpus.
David Rientjes6f7f02e2007-05-08 00:31:43 -0700934 */
Paul Jackson020958b2007-10-18 23:40:21 -0700935 if (!*buf) {
Li Zefan300ed6c2009-01-07 18:08:44 -0800936 cpumask_clear(trialcs->cpus_allowed);
David Rientjes6f7f02e2007-05-08 00:31:43 -0700937 } else {
Li Zefan300ed6c2009-01-07 18:08:44 -0800938 retval = cpulist_parse(buf, trialcs->cpus_allowed);
David Rientjes6f7f02e2007-05-08 00:31:43 -0700939 if (retval < 0)
940 return retval;
Lai Jiangshan37340742008-06-05 22:46:32 -0700941
Peter Zijlstra6ad4c182009-11-25 13:31:39 +0100942 if (!cpumask_subset(trialcs->cpus_allowed, cpu_active_mask))
Lai Jiangshan37340742008-06-05 22:46:32 -0700943 return -EINVAL;
David Rientjes6f7f02e2007-05-08 00:31:43 -0700944 }
Paul Jackson029190c2007-10-18 23:40:20 -0700945
Paul Menage8707d8b2007-10-18 23:40:22 -0700946 /* Nothing to do if the cpus didn't change */
Li Zefan300ed6c2009-01-07 18:08:44 -0800947 if (cpumask_equal(cs->cpus_allowed, trialcs->cpus_allowed))
Paul Menage8707d8b2007-10-18 23:40:22 -0700948 return 0;
Cliff Wickman58f47902008-02-07 00:14:44 -0800949
Li Zefana73456f2013-06-05 17:15:59 +0800950 retval = validate_change(cs, trialcs);
951 if (retval < 0)
952 return retval;
953
Li Zefan4e743392008-09-13 02:33:08 -0700954 retval = heap_init(&heap, PAGE_SIZE, GFP_KERNEL, NULL);
955 if (retval)
956 return retval;
957
Li Zefan645fcc92009-01-07 18:08:43 -0800958 is_load_balanced = is_sched_load_balance(trialcs);
Paul Jackson029190c2007-10-18 23:40:20 -0700959
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800960 mutex_lock(&callback_mutex);
Li Zefan300ed6c2009-01-07 18:08:44 -0800961 cpumask_copy(cs->cpus_allowed, trialcs->cpus_allowed);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -0800962 mutex_unlock(&callback_mutex);
Paul Jackson029190c2007-10-18 23:40:20 -0700963
Li Zefan5c5cc622013-06-09 17:16:29 +0800964 update_tasks_cpumask_hier(cs, true, &heap);
Li Zefan4e743392008-09-13 02:33:08 -0700965
966 heap_free(&heap);
Cliff Wickman58f47902008-02-07 00:14:44 -0800967
Paul Menage8707d8b2007-10-18 23:40:22 -0700968 if (is_load_balanced)
Tejun Heo699140b2013-01-07 08:51:07 -0800969 rebuild_sched_domains_locked();
Dinakar Guniguntala85d7b942005-06-25 14:57:34 -0700970 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700971}
972
Paul Jackson053199e2005-10-30 15:02:30 -0800973/*
Paul Jacksone4e364e2006-03-31 02:30:52 -0800974 * cpuset_migrate_mm
975 *
976 * Migrate memory region from one set of nodes to another.
977 *
978 * Temporarilly set tasks mems_allowed to target nodes of migration,
979 * so that the migration code can allocate pages on these nodes.
980 *
Tejun Heo5d21cc22013-01-07 08:51:08 -0800981 * Call holding cpuset_mutex, so current's cpuset won't change
Paul Jacksonc8d9c902008-02-07 00:14:46 -0800982 * during this call, as manage_mutex holds off any cpuset_attach()
Paul Jacksone4e364e2006-03-31 02:30:52 -0800983 * calls. Therefore we don't need to take task_lock around the
984 * call to guarantee_online_mems(), as we know no one is changing
Paul Menage2df167a2008-02-07 00:14:45 -0800985 * our task's cpuset.
Paul Jacksone4e364e2006-03-31 02:30:52 -0800986 *
Paul Jacksone4e364e2006-03-31 02:30:52 -0800987 * While the mm_struct we are migrating is typically from some
988 * other task, the task_struct mems_allowed that we are hacking
989 * is for our current task, which must allocate new pages for that
990 * migrating memory region.
Paul Jacksone4e364e2006-03-31 02:30:52 -0800991 */
992
993static void cpuset_migrate_mm(struct mm_struct *mm, const nodemask_t *from,
994 const nodemask_t *to)
995{
996 struct task_struct *tsk = current;
Li Zefan070b57f2013-06-09 17:15:22 +0800997 struct cpuset *mems_cs;
Paul Jacksone4e364e2006-03-31 02:30:52 -0800998
Paul Jacksone4e364e2006-03-31 02:30:52 -0800999 tsk->mems_allowed = *to;
Paul Jacksone4e364e2006-03-31 02:30:52 -08001000
1001 do_migrate_pages(mm, from, to, MPOL_MF_MOVE_ALL);
1002
Li Zefan070b57f2013-06-09 17:15:22 +08001003 mems_cs = effective_nodemask_cpuset(task_cs(tsk));
1004 guarantee_online_mems(mems_cs, &tsk->mems_allowed);
Paul Jacksone4e364e2006-03-31 02:30:52 -08001005}
1006
Li Zefan3b6766f2009-04-02 16:57:51 -07001007/*
Miao Xie58568d22009-06-16 15:31:49 -07001008 * cpuset_change_task_nodemask - change task's mems_allowed and mempolicy
1009 * @tsk: the task to change
1010 * @newmems: new nodes that the task will be set
1011 *
1012 * In order to avoid seeing no nodes if the old and new nodes are disjoint,
1013 * we structure updates as setting all new allowed nodes, then clearing newly
1014 * disallowed ones.
Miao Xie58568d22009-06-16 15:31:49 -07001015 */
1016static void cpuset_change_task_nodemask(struct task_struct *tsk,
1017 nodemask_t *newmems)
1018{
David Rientjesb2462722011-12-19 17:11:52 -08001019 bool need_loop;
David Rientjes89e8a242011-11-02 13:38:39 -07001020
Miao Xiec0ff7452010-05-24 14:32:08 -07001021 /*
1022 * Allow tasks that have access to memory reserves because they have
1023 * been OOM killed to get memory anywhere.
1024 */
1025 if (unlikely(test_thread_flag(TIF_MEMDIE)))
1026 return;
1027 if (current->flags & PF_EXITING) /* Let dying task have memory */
1028 return;
1029
1030 task_lock(tsk);
David Rientjesb2462722011-12-19 17:11:52 -08001031 /*
1032 * Determine if a loop is necessary if another thread is doing
1033 * get_mems_allowed(). If at least one node remains unchanged and
1034 * tsk does not have a mempolicy, then an empty nodemask will not be
1035 * possible when mems_allowed is larger than a word.
1036 */
1037 need_loop = task_has_mempolicy(tsk) ||
1038 !nodes_intersects(*newmems, tsk->mems_allowed);
Mel Gormancc9a6c82012-03-21 16:34:11 -07001039
1040 if (need_loop)
1041 write_seqcount_begin(&tsk->mems_allowed_seq);
1042
Miao Xie58568d22009-06-16 15:31:49 -07001043 nodes_or(tsk->mems_allowed, tsk->mems_allowed, *newmems);
Miao Xiec0ff7452010-05-24 14:32:08 -07001044 mpol_rebind_task(tsk, newmems, MPOL_REBIND_STEP1);
1045
Miao Xiec0ff7452010-05-24 14:32:08 -07001046 mpol_rebind_task(tsk, newmems, MPOL_REBIND_STEP2);
Miao Xie58568d22009-06-16 15:31:49 -07001047 tsk->mems_allowed = *newmems;
Mel Gormancc9a6c82012-03-21 16:34:11 -07001048
1049 if (need_loop)
1050 write_seqcount_end(&tsk->mems_allowed_seq);
1051
Miao Xiec0ff7452010-05-24 14:32:08 -07001052 task_unlock(tsk);
Miao Xie58568d22009-06-16 15:31:49 -07001053}
1054
1055/*
1056 * Update task's mems_allowed and rebind its mempolicy and vmas' mempolicy
1057 * of it to cpuset's new mems_allowed, and migrate pages to new nodes if
Tejun Heo5d21cc22013-01-07 08:51:08 -08001058 * memory_migrate flag is set. Called with cpuset_mutex held.
Li Zefan3b6766f2009-04-02 16:57:51 -07001059 */
1060static void cpuset_change_nodemask(struct task_struct *p,
1061 struct cgroup_scanner *scan)
1062{
Li Zefan6f4b7e62013-07-31 16:18:36 +08001063 struct cpuset *cs = cgroup_cs(scan->cgrp);
Li Zefan3b6766f2009-04-02 16:57:51 -07001064 struct mm_struct *mm;
Li Zefan3b6766f2009-04-02 16:57:51 -07001065 int migrate;
Li Zefan33ad8012013-06-09 17:15:08 +08001066 nodemask_t *newmems = scan->data;
Miao Xie58568d22009-06-16 15:31:49 -07001067
Li Zefan33ad8012013-06-09 17:15:08 +08001068 cpuset_change_task_nodemask(p, newmems);
Miao Xie53feb292010-03-23 13:35:35 -07001069
Li Zefan3b6766f2009-04-02 16:57:51 -07001070 mm = get_task_mm(p);
1071 if (!mm)
1072 return;
1073
Li Zefan3b6766f2009-04-02 16:57:51 -07001074 migrate = is_memory_migrate(cs);
1075
1076 mpol_rebind_mm(mm, &cs->mems_allowed);
1077 if (migrate)
Li Zefan33ad8012013-06-09 17:15:08 +08001078 cpuset_migrate_mm(mm, &cs->old_mems_allowed, newmems);
Li Zefan3b6766f2009-04-02 16:57:51 -07001079 mmput(mm);
1080}
1081
Paul Menage8793d852007-10-18 23:39:39 -07001082static void *cpuset_being_rebound;
1083
Miao Xie0b2f6302008-07-25 01:47:21 -07001084/**
1085 * update_tasks_nodemask - Update the nodemasks of tasks in the cpuset.
1086 * @cs: the cpuset in which each task's mems_allowed mask needs to be changed
Li Zefan010cfac2009-04-02 16:57:52 -07001087 * @heap: if NULL, defer allocating heap memory to cgroup_scan_tasks()
Miao Xie0b2f6302008-07-25 01:47:21 -07001088 *
Tejun Heo5d21cc22013-01-07 08:51:08 -08001089 * Called with cpuset_mutex held
Li Zefan010cfac2009-04-02 16:57:52 -07001090 * No return value. It's guaranteed that cgroup_scan_tasks() always returns 0
1091 * if @heap != NULL.
Miao Xie0b2f6302008-07-25 01:47:21 -07001092 */
Li Zefan33ad8012013-06-09 17:15:08 +08001093static void update_tasks_nodemask(struct cpuset *cs, struct ptr_heap *heap)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001094{
Li Zefan33ad8012013-06-09 17:15:08 +08001095 static nodemask_t newmems; /* protected by cpuset_mutex */
Li Zefan3b6766f2009-04-02 16:57:51 -07001096 struct cgroup_scanner scan;
Li Zefan070b57f2013-06-09 17:15:22 +08001097 struct cpuset *mems_cs = effective_nodemask_cpuset(cs);
Paul Jackson59dac162006-01-08 01:01:52 -08001098
Lee Schermerhorn846a16b2008-04-28 02:13:09 -07001099 cpuset_being_rebound = cs; /* causes mpol_dup() rebind */
Paul Jackson42253992006-01-08 01:01:59 -08001100
Li Zefan070b57f2013-06-09 17:15:22 +08001101 guarantee_online_mems(mems_cs, &newmems);
Li Zefan33ad8012013-06-09 17:15:08 +08001102
Li Zefan6f4b7e62013-07-31 16:18:36 +08001103 scan.cgrp = cs->css.cgroup;
Li Zefan3b6766f2009-04-02 16:57:51 -07001104 scan.test_task = NULL;
1105 scan.process_task = cpuset_change_nodemask;
Li Zefan010cfac2009-04-02 16:57:52 -07001106 scan.heap = heap;
Li Zefan33ad8012013-06-09 17:15:08 +08001107 scan.data = &newmems;
Paul Jackson42253992006-01-08 01:01:59 -08001108
1109 /*
Li Zefan3b6766f2009-04-02 16:57:51 -07001110 * The mpol_rebind_mm() call takes mmap_sem, which we couldn't
1111 * take while holding tasklist_lock. Forks can happen - the
1112 * mpol_dup() cpuset_being_rebound check will catch such forks,
1113 * and rebind their vma mempolicies too. Because we still hold
Tejun Heo5d21cc22013-01-07 08:51:08 -08001114 * the global cpuset_mutex, we know that no other rebind effort
Li Zefan3b6766f2009-04-02 16:57:51 -07001115 * will be contending for the global variable cpuset_being_rebound.
Paul Jackson42253992006-01-08 01:01:59 -08001116 * It's ok if we rebind the same mm twice; mpol_rebind_mm()
Paul Jackson04c19fa2006-01-08 01:02:00 -08001117 * is idempotent. Also migrate pages in each mm to new nodes.
Paul Jackson42253992006-01-08 01:01:59 -08001118 */
Li Zefan010cfac2009-04-02 16:57:52 -07001119 cgroup_scan_tasks(&scan);
Paul Jackson42253992006-01-08 01:01:59 -08001120
Li Zefan33ad8012013-06-09 17:15:08 +08001121 /*
1122 * All the tasks' nodemasks have been updated, update
1123 * cs->old_mems_allowed.
1124 */
1125 cs->old_mems_allowed = newmems;
1126
Paul Menage2df167a2008-02-07 00:14:45 -08001127 /* We're done rebinding vmas to this cpuset's new mems_allowed. */
Paul Menage8793d852007-10-18 23:39:39 -07001128 cpuset_being_rebound = NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001129}
1130
Miao Xie0b2f6302008-07-25 01:47:21 -07001131/*
Li Zefan5c5cc622013-06-09 17:16:29 +08001132 * update_tasks_nodemask_hier - Update the nodemasks of tasks in the hierarchy.
1133 * @cs: the root cpuset of the hierarchy
1134 * @update_root: update the root cpuset or not?
1135 * @heap: the heap used by cgroup_scan_tasks()
1136 *
1137 * This will update nodemasks of tasks in @root_cs and all other empty cpusets
1138 * which take on nodemask of @root_cs.
1139 *
1140 * Called with cpuset_mutex held
1141 */
1142static void update_tasks_nodemask_hier(struct cpuset *root_cs,
1143 bool update_root, struct ptr_heap *heap)
1144{
1145 struct cpuset *cp;
1146 struct cgroup *pos_cgrp;
1147
1148 if (update_root)
1149 update_tasks_nodemask(root_cs, heap);
1150
1151 rcu_read_lock();
1152 cpuset_for_each_descendant_pre(cp, pos_cgrp, root_cs) {
1153 /* skip the whole subtree if @cp have some CPU */
1154 if (!nodes_empty(cp->mems_allowed)) {
1155 pos_cgrp = cgroup_rightmost_descendant(pos_cgrp);
1156 continue;
1157 }
1158 if (!css_tryget(&cp->css))
1159 continue;
1160 rcu_read_unlock();
1161
1162 update_tasks_nodemask(cp, heap);
1163
1164 rcu_read_lock();
1165 css_put(&cp->css);
1166 }
1167 rcu_read_unlock();
1168}
1169
1170/*
Miao Xie0b2f6302008-07-25 01:47:21 -07001171 * Handle user request to change the 'mems' memory placement
1172 * of a cpuset. Needs to validate the request, update the
Miao Xie58568d22009-06-16 15:31:49 -07001173 * cpusets mems_allowed, and for each task in the cpuset,
1174 * update mems_allowed and rebind task's mempolicy and any vma
1175 * mempolicies and if the cpuset is marked 'memory_migrate',
1176 * migrate the tasks pages to the new memory.
Miao Xie0b2f6302008-07-25 01:47:21 -07001177 *
Tejun Heo5d21cc22013-01-07 08:51:08 -08001178 * Call with cpuset_mutex held. May take callback_mutex during call.
Miao Xie0b2f6302008-07-25 01:47:21 -07001179 * Will take tasklist_lock, scan tasklist for tasks in cpuset cs,
1180 * lock each such tasks mm->mmap_sem, scan its vma's and rebind
1181 * their mempolicies to the cpusets new mems_allowed.
1182 */
Li Zefan645fcc92009-01-07 18:08:43 -08001183static int update_nodemask(struct cpuset *cs, struct cpuset *trialcs,
1184 const char *buf)
Miao Xie0b2f6302008-07-25 01:47:21 -07001185{
Miao Xie0b2f6302008-07-25 01:47:21 -07001186 int retval;
Li Zefan010cfac2009-04-02 16:57:52 -07001187 struct ptr_heap heap;
Miao Xie0b2f6302008-07-25 01:47:21 -07001188
1189 /*
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08001190 * top_cpuset.mems_allowed tracks node_stats[N_MEMORY];
Miao Xie0b2f6302008-07-25 01:47:21 -07001191 * it's read-only
1192 */
Miao Xie53feb292010-03-23 13:35:35 -07001193 if (cs == &top_cpuset) {
1194 retval = -EACCES;
1195 goto done;
1196 }
Miao Xie0b2f6302008-07-25 01:47:21 -07001197
Miao Xie0b2f6302008-07-25 01:47:21 -07001198 /*
1199 * An empty mems_allowed is ok iff there are no tasks in the cpuset.
1200 * Since nodelist_parse() fails on an empty mask, we special case
1201 * that parsing. The validate_change() call ensures that cpusets
1202 * with tasks have memory.
1203 */
1204 if (!*buf) {
Li Zefan645fcc92009-01-07 18:08:43 -08001205 nodes_clear(trialcs->mems_allowed);
Miao Xie0b2f6302008-07-25 01:47:21 -07001206 } else {
Li Zefan645fcc92009-01-07 18:08:43 -08001207 retval = nodelist_parse(buf, trialcs->mems_allowed);
Miao Xie0b2f6302008-07-25 01:47:21 -07001208 if (retval < 0)
1209 goto done;
1210
Li Zefan645fcc92009-01-07 18:08:43 -08001211 if (!nodes_subset(trialcs->mems_allowed,
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08001212 node_states[N_MEMORY])) {
Miao Xie53feb292010-03-23 13:35:35 -07001213 retval = -EINVAL;
1214 goto done;
1215 }
Miao Xie0b2f6302008-07-25 01:47:21 -07001216 }
Li Zefan33ad8012013-06-09 17:15:08 +08001217
1218 if (nodes_equal(cs->mems_allowed, trialcs->mems_allowed)) {
Miao Xie0b2f6302008-07-25 01:47:21 -07001219 retval = 0; /* Too easy - nothing to do */
1220 goto done;
1221 }
Li Zefan645fcc92009-01-07 18:08:43 -08001222 retval = validate_change(cs, trialcs);
Miao Xie0b2f6302008-07-25 01:47:21 -07001223 if (retval < 0)
1224 goto done;
1225
Li Zefan010cfac2009-04-02 16:57:52 -07001226 retval = heap_init(&heap, PAGE_SIZE, GFP_KERNEL, NULL);
1227 if (retval < 0)
1228 goto done;
1229
Miao Xie0b2f6302008-07-25 01:47:21 -07001230 mutex_lock(&callback_mutex);
Li Zefan645fcc92009-01-07 18:08:43 -08001231 cs->mems_allowed = trialcs->mems_allowed;
Miao Xie0b2f6302008-07-25 01:47:21 -07001232 mutex_unlock(&callback_mutex);
1233
Li Zefan5c5cc622013-06-09 17:16:29 +08001234 update_tasks_nodemask_hier(cs, true, &heap);
Li Zefan010cfac2009-04-02 16:57:52 -07001235
1236 heap_free(&heap);
Miao Xie0b2f6302008-07-25 01:47:21 -07001237done:
1238 return retval;
1239}
1240
Paul Menage8793d852007-10-18 23:39:39 -07001241int current_cpuset_is_being_rebound(void)
1242{
1243 return task_cs(current) == cpuset_being_rebound;
1244}
1245
Paul Menage5be7a472008-05-06 20:42:41 -07001246static int update_relax_domain_level(struct cpuset *cs, s64 val)
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001247{
Paul Menagedb7f47c2009-04-02 16:57:55 -07001248#ifdef CONFIG_SMP
Peter Zijlstra60495e72011-04-07 14:10:04 +02001249 if (val < -1 || val >= sched_domain_level_max)
Li Zefan30e0e172008-05-13 10:27:17 +08001250 return -EINVAL;
Paul Menagedb7f47c2009-04-02 16:57:55 -07001251#endif
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001252
1253 if (val != cs->relax_domain_level) {
1254 cs->relax_domain_level = val;
Li Zefan300ed6c2009-01-07 18:08:44 -08001255 if (!cpumask_empty(cs->cpus_allowed) &&
1256 is_sched_load_balance(cs))
Tejun Heo699140b2013-01-07 08:51:07 -08001257 rebuild_sched_domains_locked();
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001258 }
1259
1260 return 0;
1261}
1262
Paul Jackson3e0d98b2006-01-08 01:01:49 -08001263/*
Miao Xie950592f2009-06-16 15:31:47 -07001264 * cpuset_change_flag - make a task's spread flags the same as its cpuset's
1265 * @tsk: task to be updated
1266 * @scan: struct cgroup_scanner containing the cgroup of the task
1267 *
1268 * Called by cgroup_scan_tasks() for each task in a cgroup.
1269 *
1270 * We don't need to re-check for the cgroup/cpuset membership, since we're
Tejun Heo5d21cc22013-01-07 08:51:08 -08001271 * holding cpuset_mutex at this point.
Miao Xie950592f2009-06-16 15:31:47 -07001272 */
1273static void cpuset_change_flag(struct task_struct *tsk,
1274 struct cgroup_scanner *scan)
1275{
Li Zefan6f4b7e62013-07-31 16:18:36 +08001276 cpuset_update_task_spread_flag(cgroup_cs(scan->cgrp), tsk);
Miao Xie950592f2009-06-16 15:31:47 -07001277}
1278
1279/*
1280 * update_tasks_flags - update the spread flags of tasks in the cpuset.
1281 * @cs: the cpuset in which each task's spread flags needs to be changed
1282 * @heap: if NULL, defer allocating heap memory to cgroup_scan_tasks()
1283 *
Tejun Heo5d21cc22013-01-07 08:51:08 -08001284 * Called with cpuset_mutex held
Miao Xie950592f2009-06-16 15:31:47 -07001285 *
1286 * The cgroup_scan_tasks() function will scan all the tasks in a cgroup,
1287 * calling callback functions for each.
1288 *
1289 * No return value. It's guaranteed that cgroup_scan_tasks() always returns 0
1290 * if @heap != NULL.
1291 */
1292static void update_tasks_flags(struct cpuset *cs, struct ptr_heap *heap)
1293{
1294 struct cgroup_scanner scan;
1295
Li Zefan6f4b7e62013-07-31 16:18:36 +08001296 scan.cgrp = cs->css.cgroup;
Miao Xie950592f2009-06-16 15:31:47 -07001297 scan.test_task = NULL;
1298 scan.process_task = cpuset_change_flag;
1299 scan.heap = heap;
1300 cgroup_scan_tasks(&scan);
1301}
1302
1303/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001304 * update_flag - read a 0 or a 1 in a file and update associated flag
Paul Menage78608362008-04-29 01:00:26 -07001305 * bit: the bit to update (see cpuset_flagbits_t)
1306 * cs: the cpuset to update
1307 * turning_on: whether the flag is being set or cleared
Paul Jackson053199e2005-10-30 15:02:30 -08001308 *
Tejun Heo5d21cc22013-01-07 08:51:08 -08001309 * Call with cpuset_mutex held.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001310 */
1311
Paul Menage700fe1a2008-04-29 01:00:00 -07001312static int update_flag(cpuset_flagbits_t bit, struct cpuset *cs,
1313 int turning_on)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001314{
Li Zefan645fcc92009-01-07 18:08:43 -08001315 struct cpuset *trialcs;
Rakib Mullick40b6a762008-10-18 20:28:18 -07001316 int balance_flag_changed;
Miao Xie950592f2009-06-16 15:31:47 -07001317 int spread_flag_changed;
1318 struct ptr_heap heap;
1319 int err;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001320
Li Zefan645fcc92009-01-07 18:08:43 -08001321 trialcs = alloc_trial_cpuset(cs);
1322 if (!trialcs)
1323 return -ENOMEM;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001324
Li Zefan645fcc92009-01-07 18:08:43 -08001325 if (turning_on)
1326 set_bit(bit, &trialcs->flags);
1327 else
1328 clear_bit(bit, &trialcs->flags);
1329
1330 err = validate_change(cs, trialcs);
Dinakar Guniguntala85d7b942005-06-25 14:57:34 -07001331 if (err < 0)
Li Zefan645fcc92009-01-07 18:08:43 -08001332 goto out;
Paul Jackson029190c2007-10-18 23:40:20 -07001333
Miao Xie950592f2009-06-16 15:31:47 -07001334 err = heap_init(&heap, PAGE_SIZE, GFP_KERNEL, NULL);
1335 if (err < 0)
1336 goto out;
1337
Paul Jackson029190c2007-10-18 23:40:20 -07001338 balance_flag_changed = (is_sched_load_balance(cs) !=
Li Zefan645fcc92009-01-07 18:08:43 -08001339 is_sched_load_balance(trialcs));
Paul Jackson029190c2007-10-18 23:40:20 -07001340
Miao Xie950592f2009-06-16 15:31:47 -07001341 spread_flag_changed = ((is_spread_slab(cs) != is_spread_slab(trialcs))
1342 || (is_spread_page(cs) != is_spread_page(trialcs)));
1343
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001344 mutex_lock(&callback_mutex);
Li Zefan645fcc92009-01-07 18:08:43 -08001345 cs->flags = trialcs->flags;
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001346 mutex_unlock(&callback_mutex);
Dinakar Guniguntala85d7b942005-06-25 14:57:34 -07001347
Li Zefan300ed6c2009-01-07 18:08:44 -08001348 if (!cpumask_empty(trialcs->cpus_allowed) && balance_flag_changed)
Tejun Heo699140b2013-01-07 08:51:07 -08001349 rebuild_sched_domains_locked();
Paul Jackson029190c2007-10-18 23:40:20 -07001350
Miao Xie950592f2009-06-16 15:31:47 -07001351 if (spread_flag_changed)
1352 update_tasks_flags(cs, &heap);
1353 heap_free(&heap);
Li Zefan645fcc92009-01-07 18:08:43 -08001354out:
1355 free_trial_cpuset(trialcs);
1356 return err;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001357}
1358
Paul Jackson053199e2005-10-30 15:02:30 -08001359/*
Adrian Bunk80f72282006-06-30 18:27:16 +02001360 * Frequency meter - How fast is some event occurring?
Paul Jackson3e0d98b2006-01-08 01:01:49 -08001361 *
1362 * These routines manage a digitally filtered, constant time based,
1363 * event frequency meter. There are four routines:
1364 * fmeter_init() - initialize a frequency meter.
1365 * fmeter_markevent() - called each time the event happens.
1366 * fmeter_getrate() - returns the recent rate of such events.
1367 * fmeter_update() - internal routine used to update fmeter.
1368 *
1369 * A common data structure is passed to each of these routines,
1370 * which is used to keep track of the state required to manage the
1371 * frequency meter and its digital filter.
1372 *
1373 * The filter works on the number of events marked per unit time.
1374 * The filter is single-pole low-pass recursive (IIR). The time unit
1375 * is 1 second. Arithmetic is done using 32-bit integers scaled to
1376 * simulate 3 decimal digits of precision (multiplied by 1000).
1377 *
1378 * With an FM_COEF of 933, and a time base of 1 second, the filter
1379 * has a half-life of 10 seconds, meaning that if the events quit
1380 * happening, then the rate returned from the fmeter_getrate()
1381 * will be cut in half each 10 seconds, until it converges to zero.
1382 *
1383 * It is not worth doing a real infinitely recursive filter. If more
1384 * than FM_MAXTICKS ticks have elapsed since the last filter event,
1385 * just compute FM_MAXTICKS ticks worth, by which point the level
1386 * will be stable.
1387 *
1388 * Limit the count of unprocessed events to FM_MAXCNT, so as to avoid
1389 * arithmetic overflow in the fmeter_update() routine.
1390 *
1391 * Given the simple 32 bit integer arithmetic used, this meter works
1392 * best for reporting rates between one per millisecond (msec) and
1393 * one per 32 (approx) seconds. At constant rates faster than one
1394 * per msec it maxes out at values just under 1,000,000. At constant
1395 * rates between one per msec, and one per second it will stabilize
1396 * to a value N*1000, where N is the rate of events per second.
1397 * At constant rates between one per second and one per 32 seconds,
1398 * it will be choppy, moving up on the seconds that have an event,
1399 * and then decaying until the next event. At rates slower than
1400 * about one in 32 seconds, it decays all the way back to zero between
1401 * each event.
1402 */
1403
1404#define FM_COEF 933 /* coefficient for half-life of 10 secs */
1405#define FM_MAXTICKS ((time_t)99) /* useless computing more ticks than this */
1406#define FM_MAXCNT 1000000 /* limit cnt to avoid overflow */
1407#define FM_SCALE 1000 /* faux fixed point scale */
1408
1409/* Initialize a frequency meter */
1410static void fmeter_init(struct fmeter *fmp)
1411{
1412 fmp->cnt = 0;
1413 fmp->val = 0;
1414 fmp->time = 0;
1415 spin_lock_init(&fmp->lock);
1416}
1417
1418/* Internal meter update - process cnt events and update value */
1419static void fmeter_update(struct fmeter *fmp)
1420{
1421 time_t now = get_seconds();
1422 time_t ticks = now - fmp->time;
1423
1424 if (ticks == 0)
1425 return;
1426
1427 ticks = min(FM_MAXTICKS, ticks);
1428 while (ticks-- > 0)
1429 fmp->val = (FM_COEF * fmp->val) / FM_SCALE;
1430 fmp->time = now;
1431
1432 fmp->val += ((FM_SCALE - FM_COEF) * fmp->cnt) / FM_SCALE;
1433 fmp->cnt = 0;
1434}
1435
1436/* Process any previous ticks, then bump cnt by one (times scale). */
1437static void fmeter_markevent(struct fmeter *fmp)
1438{
1439 spin_lock(&fmp->lock);
1440 fmeter_update(fmp);
1441 fmp->cnt = min(FM_MAXCNT, fmp->cnt + FM_SCALE);
1442 spin_unlock(&fmp->lock);
1443}
1444
1445/* Process any previous ticks, then return current value. */
1446static int fmeter_getrate(struct fmeter *fmp)
1447{
1448 int val;
1449
1450 spin_lock(&fmp->lock);
1451 fmeter_update(fmp);
1452 val = fmp->val;
1453 spin_unlock(&fmp->lock);
1454 return val;
1455}
1456
Tejun Heo5d21cc22013-01-07 08:51:08 -08001457/* Called by cgroups to determine if a cpuset is usable; cpuset_mutex held */
Tejun Heoeb954192013-08-08 20:11:23 -04001458static int cpuset_can_attach(struct cgroup_subsys_state *css,
1459 struct cgroup_taskset *tset)
Ben Blumf780bdb2011-05-26 16:25:19 -07001460{
Tejun Heoeb954192013-08-08 20:11:23 -04001461 struct cpuset *cs = css_cs(css);
Tejun Heobb9d97b2011-12-12 18:12:21 -08001462 struct task_struct *task;
1463 int ret;
Ben Blumf780bdb2011-05-26 16:25:19 -07001464
Tejun Heo5d21cc22013-01-07 08:51:08 -08001465 mutex_lock(&cpuset_mutex);
1466
Li Zefan88fa5232013-06-09 17:16:46 +08001467 /*
1468 * We allow to move tasks into an empty cpuset if sane_behavior
1469 * flag is set.
1470 */
Tejun Heo5d21cc22013-01-07 08:51:08 -08001471 ret = -ENOSPC;
Tejun Heoeb954192013-08-08 20:11:23 -04001472 if (!cgroup_sane_behavior(css->cgroup) &&
Li Zefan88fa5232013-06-09 17:16:46 +08001473 (cpumask_empty(cs->cpus_allowed) || nodes_empty(cs->mems_allowed)))
Tejun Heo5d21cc22013-01-07 08:51:08 -08001474 goto out_unlock;
Ben Blumbe367d02009-09-23 15:56:31 -07001475
Tejun Heoeb954192013-08-08 20:11:23 -04001476 cgroup_taskset_for_each(task, css->cgroup, tset) {
Tejun Heobb9d97b2011-12-12 18:12:21 -08001477 /*
Tejun Heo14a40ff2013-03-19 13:45:20 -07001478 * Kthreads which disallow setaffinity shouldn't be moved
1479 * to a new cpuset; we don't want to change their cpu
1480 * affinity and isolating such threads by their set of
1481 * allowed nodes is unnecessary. Thus, cpusets are not
1482 * applicable for such threads. This prevents checking for
1483 * success of set_cpus_allowed_ptr() on all attached tasks
1484 * before cpus_allowed may be changed.
Tejun Heobb9d97b2011-12-12 18:12:21 -08001485 */
Tejun Heo5d21cc22013-01-07 08:51:08 -08001486 ret = -EINVAL;
Tejun Heo14a40ff2013-03-19 13:45:20 -07001487 if (task->flags & PF_NO_SETAFFINITY)
Tejun Heo5d21cc22013-01-07 08:51:08 -08001488 goto out_unlock;
1489 ret = security_task_setscheduler(task);
1490 if (ret)
1491 goto out_unlock;
Tejun Heobb9d97b2011-12-12 18:12:21 -08001492 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001493
Tejun Heo452477f2013-01-07 08:51:07 -08001494 /*
1495 * Mark attach is in progress. This makes validate_change() fail
1496 * changes which zero cpus/mems_allowed.
1497 */
1498 cs->attach_in_progress++;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001499 ret = 0;
1500out_unlock:
1501 mutex_unlock(&cpuset_mutex);
1502 return ret;
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001503}
1504
Tejun Heoeb954192013-08-08 20:11:23 -04001505static void cpuset_cancel_attach(struct cgroup_subsys_state *css,
Tejun Heo452477f2013-01-07 08:51:07 -08001506 struct cgroup_taskset *tset)
1507{
Tejun Heo5d21cc22013-01-07 08:51:08 -08001508 mutex_lock(&cpuset_mutex);
Tejun Heoeb954192013-08-08 20:11:23 -04001509 css_cs(css)->attach_in_progress--;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001510 mutex_unlock(&cpuset_mutex);
Tejun Heo452477f2013-01-07 08:51:07 -08001511}
1512
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001513/*
Tejun Heo5d21cc22013-01-07 08:51:08 -08001514 * Protected by cpuset_mutex. cpus_attach is used only by cpuset_attach()
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001515 * but we can't allocate it dynamically there. Define it global and
1516 * allocate from cpuset_init().
1517 */
1518static cpumask_var_t cpus_attach;
1519
Tejun Heoeb954192013-08-08 20:11:23 -04001520static void cpuset_attach(struct cgroup_subsys_state *css,
1521 struct cgroup_taskset *tset)
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001522{
Li Zefan67bd2c52013-06-05 17:15:35 +08001523 /* static buf protected by cpuset_mutex */
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001524 static nodemask_t cpuset_attach_nodemask_to;
1525 struct mm_struct *mm;
1526 struct task_struct *task;
1527 struct task_struct *leader = cgroup_taskset_first(tset);
1528 struct cgroup *oldcgrp = cgroup_taskset_cur_cgroup(tset);
Tejun Heoeb954192013-08-08 20:11:23 -04001529 struct cpuset *cs = css_cs(css);
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001530 struct cpuset *oldcs = cgroup_cs(oldcgrp);
Li Zefan070b57f2013-06-09 17:15:22 +08001531 struct cpuset *cpus_cs = effective_cpumask_cpuset(cs);
1532 struct cpuset *mems_cs = effective_nodemask_cpuset(cs);
Tejun Heo4e4c9a12013-01-07 08:51:07 -08001533
Tejun Heo5d21cc22013-01-07 08:51:08 -08001534 mutex_lock(&cpuset_mutex);
1535
Tejun Heo94196f52011-12-12 18:12:22 -08001536 /* prepare for attach */
Ben Blumf780bdb2011-05-26 16:25:19 -07001537 if (cs == &top_cpuset)
1538 cpumask_copy(cpus_attach, cpu_possible_mask);
1539 else
Li Zefan070b57f2013-06-09 17:15:22 +08001540 guarantee_online_cpus(cpus_cs, cpus_attach);
Ben Blumf780bdb2011-05-26 16:25:19 -07001541
Li Zefan070b57f2013-06-09 17:15:22 +08001542 guarantee_online_mems(mems_cs, &cpuset_attach_nodemask_to);
Tejun Heo94196f52011-12-12 18:12:22 -08001543
Tejun Heoeb954192013-08-08 20:11:23 -04001544 cgroup_taskset_for_each(task, css->cgroup, tset) {
Tejun Heobb9d97b2011-12-12 18:12:21 -08001545 /*
1546 * can_attach beforehand should guarantee that this doesn't
1547 * fail. TODO: have a better way to handle failure here
1548 */
1549 WARN_ON_ONCE(set_cpus_allowed_ptr(task, cpus_attach));
1550
1551 cpuset_change_task_nodemask(task, &cpuset_attach_nodemask_to);
1552 cpuset_update_task_spread_flag(cs, task);
1553 }
David Quigley22fb52d2006-06-23 02:04:00 -07001554
Ben Blumf780bdb2011-05-26 16:25:19 -07001555 /*
1556 * Change mm, possibly for multiple threads in a threadgroup. This is
1557 * expensive and may sleep.
1558 */
Ben Blumf780bdb2011-05-26 16:25:19 -07001559 cpuset_attach_nodemask_to = cs->mems_allowed;
Tejun Heobb9d97b2011-12-12 18:12:21 -08001560 mm = get_task_mm(leader);
Paul Jackson42253992006-01-08 01:01:59 -08001561 if (mm) {
Li Zefan070b57f2013-06-09 17:15:22 +08001562 struct cpuset *mems_oldcs = effective_nodemask_cpuset(oldcs);
1563
Ben Blumf780bdb2011-05-26 16:25:19 -07001564 mpol_rebind_mm(mm, &cpuset_attach_nodemask_to);
Li Zefanf047cec2013-06-13 15:11:44 +08001565
1566 /*
1567 * old_mems_allowed is the same with mems_allowed here, except
1568 * if this task is being moved automatically due to hotplug.
1569 * In that case @mems_allowed has been updated and is empty,
1570 * so @old_mems_allowed is the right nodesets that we migrate
1571 * mm from.
1572 */
1573 if (is_memory_migrate(cs)) {
1574 cpuset_migrate_mm(mm, &mems_oldcs->old_mems_allowed,
Ben Blumf780bdb2011-05-26 16:25:19 -07001575 &cpuset_attach_nodemask_to);
Li Zefanf047cec2013-06-13 15:11:44 +08001576 }
Paul Jackson42253992006-01-08 01:01:59 -08001577 mmput(mm);
1578 }
Tejun Heo452477f2013-01-07 08:51:07 -08001579
Li Zefan33ad8012013-06-09 17:15:08 +08001580 cs->old_mems_allowed = cpuset_attach_nodemask_to;
Tejun Heo02bb5862013-01-07 08:51:08 -08001581
Tejun Heo452477f2013-01-07 08:51:07 -08001582 cs->attach_in_progress--;
Li Zefane44193d2013-06-09 17:14:22 +08001583 if (!cs->attach_in_progress)
1584 wake_up(&cpuset_attach_wq);
Tejun Heo5d21cc22013-01-07 08:51:08 -08001585
1586 mutex_unlock(&cpuset_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001587}
1588
1589/* The various types of files and directories in a cpuset file system */
1590
1591typedef enum {
Paul Jackson45b07ef2006-01-08 01:00:56 -08001592 FILE_MEMORY_MIGRATE,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001593 FILE_CPULIST,
1594 FILE_MEMLIST,
1595 FILE_CPU_EXCLUSIVE,
1596 FILE_MEM_EXCLUSIVE,
Paul Menage78608362008-04-29 01:00:26 -07001597 FILE_MEM_HARDWALL,
Paul Jackson029190c2007-10-18 23:40:20 -07001598 FILE_SCHED_LOAD_BALANCE,
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001599 FILE_SCHED_RELAX_DOMAIN_LEVEL,
Paul Jackson3e0d98b2006-01-08 01:01:49 -08001600 FILE_MEMORY_PRESSURE_ENABLED,
1601 FILE_MEMORY_PRESSURE,
Paul Jackson825a46a2006-03-24 03:16:03 -08001602 FILE_SPREAD_PAGE,
1603 FILE_SPREAD_SLAB,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001604} cpuset_filetype_t;
1605
Tejun Heo182446d2013-08-08 20:11:24 -04001606static int cpuset_write_u64(struct cgroup_subsys_state *css, struct cftype *cft,
1607 u64 val)
Paul Menage700fe1a2008-04-29 01:00:00 -07001608{
Tejun Heo182446d2013-08-08 20:11:24 -04001609 struct cpuset *cs = css_cs(css);
Paul Menage700fe1a2008-04-29 01:00:00 -07001610 cpuset_filetype_t type = cft->private;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001611 int retval = -ENODEV;
Paul Menage700fe1a2008-04-29 01:00:00 -07001612
Tejun Heo5d21cc22013-01-07 08:51:08 -08001613 mutex_lock(&cpuset_mutex);
1614 if (!is_cpuset_online(cs))
1615 goto out_unlock;
Paul Menage700fe1a2008-04-29 01:00:00 -07001616
1617 switch (type) {
1618 case FILE_CPU_EXCLUSIVE:
1619 retval = update_flag(CS_CPU_EXCLUSIVE, cs, val);
1620 break;
1621 case FILE_MEM_EXCLUSIVE:
1622 retval = update_flag(CS_MEM_EXCLUSIVE, cs, val);
1623 break;
Paul Menage78608362008-04-29 01:00:26 -07001624 case FILE_MEM_HARDWALL:
1625 retval = update_flag(CS_MEM_HARDWALL, cs, val);
1626 break;
Paul Menage700fe1a2008-04-29 01:00:00 -07001627 case FILE_SCHED_LOAD_BALANCE:
1628 retval = update_flag(CS_SCHED_LOAD_BALANCE, cs, val);
1629 break;
1630 case FILE_MEMORY_MIGRATE:
1631 retval = update_flag(CS_MEMORY_MIGRATE, cs, val);
1632 break;
1633 case FILE_MEMORY_PRESSURE_ENABLED:
1634 cpuset_memory_pressure_enabled = !!val;
1635 break;
1636 case FILE_MEMORY_PRESSURE:
1637 retval = -EACCES;
1638 break;
1639 case FILE_SPREAD_PAGE:
1640 retval = update_flag(CS_SPREAD_PAGE, cs, val);
Paul Menage700fe1a2008-04-29 01:00:00 -07001641 break;
1642 case FILE_SPREAD_SLAB:
1643 retval = update_flag(CS_SPREAD_SLAB, cs, val);
Paul Menage700fe1a2008-04-29 01:00:00 -07001644 break;
1645 default:
1646 retval = -EINVAL;
1647 break;
1648 }
Tejun Heo5d21cc22013-01-07 08:51:08 -08001649out_unlock:
1650 mutex_unlock(&cpuset_mutex);
Paul Menage700fe1a2008-04-29 01:00:00 -07001651 return retval;
1652}
1653
Tejun Heo182446d2013-08-08 20:11:24 -04001654static int cpuset_write_s64(struct cgroup_subsys_state *css, struct cftype *cft,
1655 s64 val)
Paul Menage5be7a472008-05-06 20:42:41 -07001656{
Tejun Heo182446d2013-08-08 20:11:24 -04001657 struct cpuset *cs = css_cs(css);
Paul Menage5be7a472008-05-06 20:42:41 -07001658 cpuset_filetype_t type = cft->private;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001659 int retval = -ENODEV;
Paul Menage5be7a472008-05-06 20:42:41 -07001660
Tejun Heo5d21cc22013-01-07 08:51:08 -08001661 mutex_lock(&cpuset_mutex);
1662 if (!is_cpuset_online(cs))
1663 goto out_unlock;
Paul Menagee3712392008-07-25 01:47:02 -07001664
Paul Menage5be7a472008-05-06 20:42:41 -07001665 switch (type) {
1666 case FILE_SCHED_RELAX_DOMAIN_LEVEL:
1667 retval = update_relax_domain_level(cs, val);
1668 break;
1669 default:
1670 retval = -EINVAL;
1671 break;
1672 }
Tejun Heo5d21cc22013-01-07 08:51:08 -08001673out_unlock:
1674 mutex_unlock(&cpuset_mutex);
Paul Menage5be7a472008-05-06 20:42:41 -07001675 return retval;
1676}
1677
Linus Torvalds1da177e2005-04-16 15:20:36 -07001678/*
Paul Menagee3712392008-07-25 01:47:02 -07001679 * Common handling for a write to a "cpus" or "mems" file.
1680 */
Tejun Heo182446d2013-08-08 20:11:24 -04001681static int cpuset_write_resmask(struct cgroup_subsys_state *css,
1682 struct cftype *cft, const char *buf)
Paul Menagee3712392008-07-25 01:47:02 -07001683{
Tejun Heo182446d2013-08-08 20:11:24 -04001684 struct cpuset *cs = css_cs(css);
Li Zefan645fcc92009-01-07 18:08:43 -08001685 struct cpuset *trialcs;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001686 int retval = -ENODEV;
Paul Menagee3712392008-07-25 01:47:02 -07001687
Tejun Heo3a5a6d02013-01-07 08:51:07 -08001688 /*
1689 * CPU or memory hotunplug may leave @cs w/o any execution
1690 * resources, in which case the hotplug code asynchronously updates
1691 * configuration and transfers all tasks to the nearest ancestor
1692 * which can execute.
1693 *
1694 * As writes to "cpus" or "mems" may restore @cs's execution
1695 * resources, wait for the previously scheduled operations before
1696 * proceeding, so that we don't end up keep removing tasks added
1697 * after execution capability is restored.
1698 */
1699 flush_work(&cpuset_hotplug_work);
1700
Tejun Heo5d21cc22013-01-07 08:51:08 -08001701 mutex_lock(&cpuset_mutex);
1702 if (!is_cpuset_online(cs))
1703 goto out_unlock;
Paul Menagee3712392008-07-25 01:47:02 -07001704
Li Zefan645fcc92009-01-07 18:08:43 -08001705 trialcs = alloc_trial_cpuset(cs);
Li Zefanb75f38d2011-03-04 17:36:21 -08001706 if (!trialcs) {
1707 retval = -ENOMEM;
Tejun Heo5d21cc22013-01-07 08:51:08 -08001708 goto out_unlock;
Li Zefanb75f38d2011-03-04 17:36:21 -08001709 }
Li Zefan645fcc92009-01-07 18:08:43 -08001710
Paul Menagee3712392008-07-25 01:47:02 -07001711 switch (cft->private) {
1712 case FILE_CPULIST:
Li Zefan645fcc92009-01-07 18:08:43 -08001713 retval = update_cpumask(cs, trialcs, buf);
Paul Menagee3712392008-07-25 01:47:02 -07001714 break;
1715 case FILE_MEMLIST:
Li Zefan645fcc92009-01-07 18:08:43 -08001716 retval = update_nodemask(cs, trialcs, buf);
Paul Menagee3712392008-07-25 01:47:02 -07001717 break;
1718 default:
1719 retval = -EINVAL;
1720 break;
1721 }
Li Zefan645fcc92009-01-07 18:08:43 -08001722
1723 free_trial_cpuset(trialcs);
Tejun Heo5d21cc22013-01-07 08:51:08 -08001724out_unlock:
1725 mutex_unlock(&cpuset_mutex);
Paul Menagee3712392008-07-25 01:47:02 -07001726 return retval;
1727}
1728
1729/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001730 * These ascii lists should be read in a single call, by using a user
1731 * buffer large enough to hold the entire map. If read in smaller
1732 * chunks, there is no guarantee of atomicity. Since the display format
1733 * used, list of ranges of sequential numbers, is variable length,
1734 * and since these maps can change value dynamically, one could read
1735 * gibberish by doing partial reads while a list was changing.
1736 * A single large read to a buffer that crosses a page boundary is
1737 * ok, because the result being copied to user land is not recomputed
1738 * across a page fault.
1739 */
1740
Li Zefan9303e0c2011-03-23 16:42:45 -07001741static size_t cpuset_sprintf_cpulist(char *page, struct cpuset *cs)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001742{
Li Zefan9303e0c2011-03-23 16:42:45 -07001743 size_t count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001744
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001745 mutex_lock(&callback_mutex);
Li Zefan9303e0c2011-03-23 16:42:45 -07001746 count = cpulist_scnprintf(page, PAGE_SIZE, cs->cpus_allowed);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001747 mutex_unlock(&callback_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001748
Li Zefan9303e0c2011-03-23 16:42:45 -07001749 return count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001750}
1751
Li Zefan9303e0c2011-03-23 16:42:45 -07001752static size_t cpuset_sprintf_memlist(char *page, struct cpuset *cs)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001753{
Li Zefan9303e0c2011-03-23 16:42:45 -07001754 size_t count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001755
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001756 mutex_lock(&callback_mutex);
Li Zefan9303e0c2011-03-23 16:42:45 -07001757 count = nodelist_scnprintf(page, PAGE_SIZE, cs->mems_allowed);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08001758 mutex_unlock(&callback_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001759
Li Zefan9303e0c2011-03-23 16:42:45 -07001760 return count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001761}
1762
Tejun Heo182446d2013-08-08 20:11:24 -04001763static ssize_t cpuset_common_file_read(struct cgroup_subsys_state *css,
1764 struct cftype *cft, struct file *file,
1765 char __user *buf, size_t nbytes,
1766 loff_t *ppos)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001767{
Tejun Heo182446d2013-08-08 20:11:24 -04001768 struct cpuset *cs = css_cs(css);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001769 cpuset_filetype_t type = cft->private;
1770 char *page;
1771 ssize_t retval = 0;
1772 char *s;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001773
Mel Gormane12ba742007-10-16 01:25:52 -07001774 if (!(page = (char *)__get_free_page(GFP_TEMPORARY)))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001775 return -ENOMEM;
1776
1777 s = page;
1778
1779 switch (type) {
1780 case FILE_CPULIST:
1781 s += cpuset_sprintf_cpulist(s, cs);
1782 break;
1783 case FILE_MEMLIST:
1784 s += cpuset_sprintf_memlist(s, cs);
1785 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001786 default:
1787 retval = -EINVAL;
1788 goto out;
1789 }
1790 *s++ = '\n';
Linus Torvalds1da177e2005-04-16 15:20:36 -07001791
Al Viroeacaa1f2005-09-30 03:26:43 +01001792 retval = simple_read_from_buffer(buf, nbytes, ppos, page, s - page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001793out:
1794 free_page((unsigned long)page);
1795 return retval;
1796}
1797
Tejun Heo182446d2013-08-08 20:11:24 -04001798static u64 cpuset_read_u64(struct cgroup_subsys_state *css, struct cftype *cft)
Paul Menage700fe1a2008-04-29 01:00:00 -07001799{
Tejun Heo182446d2013-08-08 20:11:24 -04001800 struct cpuset *cs = css_cs(css);
Paul Menage700fe1a2008-04-29 01:00:00 -07001801 cpuset_filetype_t type = cft->private;
1802 switch (type) {
1803 case FILE_CPU_EXCLUSIVE:
1804 return is_cpu_exclusive(cs);
1805 case FILE_MEM_EXCLUSIVE:
1806 return is_mem_exclusive(cs);
Paul Menage78608362008-04-29 01:00:26 -07001807 case FILE_MEM_HARDWALL:
1808 return is_mem_hardwall(cs);
Paul Menage700fe1a2008-04-29 01:00:00 -07001809 case FILE_SCHED_LOAD_BALANCE:
1810 return is_sched_load_balance(cs);
1811 case FILE_MEMORY_MIGRATE:
1812 return is_memory_migrate(cs);
1813 case FILE_MEMORY_PRESSURE_ENABLED:
1814 return cpuset_memory_pressure_enabled;
1815 case FILE_MEMORY_PRESSURE:
1816 return fmeter_getrate(&cs->fmeter);
1817 case FILE_SPREAD_PAGE:
1818 return is_spread_page(cs);
1819 case FILE_SPREAD_SLAB:
1820 return is_spread_slab(cs);
1821 default:
1822 BUG();
1823 }
Max Krasnyanskycf417142008-08-11 14:33:53 -07001824
1825 /* Unreachable but makes gcc happy */
1826 return 0;
Paul Menage700fe1a2008-04-29 01:00:00 -07001827}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001828
Tejun Heo182446d2013-08-08 20:11:24 -04001829static s64 cpuset_read_s64(struct cgroup_subsys_state *css, struct cftype *cft)
Paul Menage5be7a472008-05-06 20:42:41 -07001830{
Tejun Heo182446d2013-08-08 20:11:24 -04001831 struct cpuset *cs = css_cs(css);
Paul Menage5be7a472008-05-06 20:42:41 -07001832 cpuset_filetype_t type = cft->private;
1833 switch (type) {
1834 case FILE_SCHED_RELAX_DOMAIN_LEVEL:
1835 return cs->relax_domain_level;
1836 default:
1837 BUG();
1838 }
Max Krasnyanskycf417142008-08-11 14:33:53 -07001839
1840 /* Unrechable but makes gcc happy */
1841 return 0;
Paul Menage5be7a472008-05-06 20:42:41 -07001842}
1843
Linus Torvalds1da177e2005-04-16 15:20:36 -07001844
1845/*
1846 * for the common functions, 'private' gives the type of file
1847 */
1848
Paul Menageaddf2c72008-04-29 01:00:26 -07001849static struct cftype files[] = {
1850 {
1851 .name = "cpus",
1852 .read = cpuset_common_file_read,
Paul Menagee3712392008-07-25 01:47:02 -07001853 .write_string = cpuset_write_resmask,
1854 .max_write_len = (100U + 6 * NR_CPUS),
Paul Menageaddf2c72008-04-29 01:00:26 -07001855 .private = FILE_CPULIST,
1856 },
Linus Torvalds1da177e2005-04-16 15:20:36 -07001857
Paul Menageaddf2c72008-04-29 01:00:26 -07001858 {
1859 .name = "mems",
1860 .read = cpuset_common_file_read,
Paul Menagee3712392008-07-25 01:47:02 -07001861 .write_string = cpuset_write_resmask,
1862 .max_write_len = (100U + 6 * MAX_NUMNODES),
Paul Menageaddf2c72008-04-29 01:00:26 -07001863 .private = FILE_MEMLIST,
1864 },
Linus Torvalds1da177e2005-04-16 15:20:36 -07001865
Paul Menageaddf2c72008-04-29 01:00:26 -07001866 {
1867 .name = "cpu_exclusive",
1868 .read_u64 = cpuset_read_u64,
1869 .write_u64 = cpuset_write_u64,
1870 .private = FILE_CPU_EXCLUSIVE,
1871 },
Linus Torvalds1da177e2005-04-16 15:20:36 -07001872
Paul Menageaddf2c72008-04-29 01:00:26 -07001873 {
1874 .name = "mem_exclusive",
1875 .read_u64 = cpuset_read_u64,
1876 .write_u64 = cpuset_write_u64,
1877 .private = FILE_MEM_EXCLUSIVE,
1878 },
Linus Torvalds1da177e2005-04-16 15:20:36 -07001879
Paul Menageaddf2c72008-04-29 01:00:26 -07001880 {
Paul Menage78608362008-04-29 01:00:26 -07001881 .name = "mem_hardwall",
1882 .read_u64 = cpuset_read_u64,
1883 .write_u64 = cpuset_write_u64,
1884 .private = FILE_MEM_HARDWALL,
1885 },
1886
1887 {
Paul Menageaddf2c72008-04-29 01:00:26 -07001888 .name = "sched_load_balance",
1889 .read_u64 = cpuset_read_u64,
1890 .write_u64 = cpuset_write_u64,
1891 .private = FILE_SCHED_LOAD_BALANCE,
1892 },
Paul Jackson029190c2007-10-18 23:40:20 -07001893
Paul Menageaddf2c72008-04-29 01:00:26 -07001894 {
1895 .name = "sched_relax_domain_level",
Paul Menage5be7a472008-05-06 20:42:41 -07001896 .read_s64 = cpuset_read_s64,
1897 .write_s64 = cpuset_write_s64,
Paul Menageaddf2c72008-04-29 01:00:26 -07001898 .private = FILE_SCHED_RELAX_DOMAIN_LEVEL,
1899 },
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001900
Paul Menageaddf2c72008-04-29 01:00:26 -07001901 {
1902 .name = "memory_migrate",
1903 .read_u64 = cpuset_read_u64,
1904 .write_u64 = cpuset_write_u64,
1905 .private = FILE_MEMORY_MIGRATE,
1906 },
1907
1908 {
1909 .name = "memory_pressure",
1910 .read_u64 = cpuset_read_u64,
1911 .write_u64 = cpuset_write_u64,
1912 .private = FILE_MEMORY_PRESSURE,
Li Zefan099fca32009-04-02 16:57:29 -07001913 .mode = S_IRUGO,
Paul Menageaddf2c72008-04-29 01:00:26 -07001914 },
1915
1916 {
1917 .name = "memory_spread_page",
1918 .read_u64 = cpuset_read_u64,
1919 .write_u64 = cpuset_write_u64,
1920 .private = FILE_SPREAD_PAGE,
1921 },
1922
1923 {
1924 .name = "memory_spread_slab",
1925 .read_u64 = cpuset_read_u64,
1926 .write_u64 = cpuset_write_u64,
1927 .private = FILE_SPREAD_SLAB,
1928 },
Tejun Heo4baf6e32012-04-01 12:09:55 -07001929
1930 {
1931 .name = "memory_pressure_enabled",
1932 .flags = CFTYPE_ONLY_ON_ROOT,
1933 .read_u64 = cpuset_read_u64,
1934 .write_u64 = cpuset_write_u64,
1935 .private = FILE_MEMORY_PRESSURE_ENABLED,
1936 },
1937
1938 { } /* terminate */
Paul Jackson45b07ef2006-01-08 01:00:56 -08001939};
1940
Linus Torvalds1da177e2005-04-16 15:20:36 -07001941/*
Tejun Heo92fb9742012-11-19 08:13:38 -08001942 * cpuset_css_alloc - allocate a cpuset css
Li Zefanc9e5fe62013-06-14 11:18:27 +08001943 * cgrp: control group that the new cpuset will be part of
Linus Torvalds1da177e2005-04-16 15:20:36 -07001944 */
1945
Tejun Heoeb954192013-08-08 20:11:23 -04001946static struct cgroup_subsys_state *
1947cpuset_css_alloc(struct cgroup_subsys_state *parent_css)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001948{
Tejun Heoc8f699b2013-01-07 08:51:07 -08001949 struct cpuset *cs;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001950
Tejun Heoeb954192013-08-08 20:11:23 -04001951 if (!parent_css)
Paul Menage8793d852007-10-18 23:39:39 -07001952 return &top_cpuset.css;
Tejun Heo033fa1c2012-11-19 08:13:39 -08001953
Tejun Heoc8f699b2013-01-07 08:51:07 -08001954 cs = kzalloc(sizeof(*cs), GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001955 if (!cs)
Paul Menage8793d852007-10-18 23:39:39 -07001956 return ERR_PTR(-ENOMEM);
Li Zefan300ed6c2009-01-07 18:08:44 -08001957 if (!alloc_cpumask_var(&cs->cpus_allowed, GFP_KERNEL)) {
1958 kfree(cs);
1959 return ERR_PTR(-ENOMEM);
1960 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001961
Paul Jackson029190c2007-10-18 23:40:20 -07001962 set_bit(CS_SCHED_LOAD_BALANCE, &cs->flags);
Li Zefan300ed6c2009-01-07 18:08:44 -08001963 cpumask_clear(cs->cpus_allowed);
Mike Travisf9a86fc2008-04-04 18:11:07 -07001964 nodes_clear(cs->mems_allowed);
Paul Jackson3e0d98b2006-01-08 01:01:49 -08001965 fmeter_init(&cs->fmeter);
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09001966 cs->relax_domain_level = -1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001967
Tejun Heoc8f699b2013-01-07 08:51:07 -08001968 return &cs->css;
1969}
1970
Tejun Heoeb954192013-08-08 20:11:23 -04001971static int cpuset_css_online(struct cgroup_subsys_state *css)
Tejun Heoc8f699b2013-01-07 08:51:07 -08001972{
Tejun Heoeb954192013-08-08 20:11:23 -04001973 struct cpuset *cs = css_cs(css);
Tejun Heoc4310692013-01-07 08:51:08 -08001974 struct cpuset *parent = parent_cs(cs);
Tejun Heoae8086c2013-01-07 08:51:07 -08001975 struct cpuset *tmp_cs;
Li Zefan6f4b7e62013-07-31 16:18:36 +08001976 struct cgroup *pos_cgrp;
Tejun Heoc8f699b2013-01-07 08:51:07 -08001977
1978 if (!parent)
1979 return 0;
1980
Tejun Heo5d21cc22013-01-07 08:51:08 -08001981 mutex_lock(&cpuset_mutex);
1982
Tejun Heoefeb77b2013-01-07 08:51:07 -08001983 set_bit(CS_ONLINE, &cs->flags);
Tejun Heoc8f699b2013-01-07 08:51:07 -08001984 if (is_spread_page(parent))
1985 set_bit(CS_SPREAD_PAGE, &cs->flags);
1986 if (is_spread_slab(parent))
1987 set_bit(CS_SPREAD_SLAB, &cs->flags);
1988
Paul Jackson202f72d2006-01-08 01:01:57 -08001989 number_of_cpusets++;
Tejun Heo033fa1c2012-11-19 08:13:39 -08001990
Tejun Heoeb954192013-08-08 20:11:23 -04001991 if (!test_bit(CGRP_CPUSET_CLONE_CHILDREN, &css->cgroup->flags))
Tejun Heo5d21cc22013-01-07 08:51:08 -08001992 goto out_unlock;
Tejun Heo033fa1c2012-11-19 08:13:39 -08001993
1994 /*
1995 * Clone @parent's configuration if CGRP_CPUSET_CLONE_CHILDREN is
1996 * set. This flag handling is implemented in cgroup core for
1997 * histrical reasons - the flag may be specified during mount.
1998 *
1999 * Currently, if any sibling cpusets have exclusive cpus or mem, we
2000 * refuse to clone the configuration - thereby refusing the task to
2001 * be entered, and as a result refusing the sys_unshare() or
2002 * clone() which initiated it. If this becomes a problem for some
2003 * users who wish to allow that scenario, then this could be
2004 * changed to grant parent->cpus_allowed-sibling_cpus_exclusive
2005 * (and likewise for mems) to the new cgroup.
2006 */
Tejun Heoae8086c2013-01-07 08:51:07 -08002007 rcu_read_lock();
Li Zefan6f4b7e62013-07-31 16:18:36 +08002008 cpuset_for_each_child(tmp_cs, pos_cgrp, parent) {
Tejun Heoae8086c2013-01-07 08:51:07 -08002009 if (is_mem_exclusive(tmp_cs) || is_cpu_exclusive(tmp_cs)) {
2010 rcu_read_unlock();
Tejun Heo5d21cc22013-01-07 08:51:08 -08002011 goto out_unlock;
Tejun Heoae8086c2013-01-07 08:51:07 -08002012 }
Tejun Heo033fa1c2012-11-19 08:13:39 -08002013 }
Tejun Heoae8086c2013-01-07 08:51:07 -08002014 rcu_read_unlock();
Tejun Heo033fa1c2012-11-19 08:13:39 -08002015
2016 mutex_lock(&callback_mutex);
2017 cs->mems_allowed = parent->mems_allowed;
2018 cpumask_copy(cs->cpus_allowed, parent->cpus_allowed);
2019 mutex_unlock(&callback_mutex);
Tejun Heo5d21cc22013-01-07 08:51:08 -08002020out_unlock:
2021 mutex_unlock(&cpuset_mutex);
Tejun Heoc8f699b2013-01-07 08:51:07 -08002022 return 0;
2023}
2024
Zhao Hongjiang0b9e6962013-07-27 11:56:53 +08002025/*
2026 * If the cpuset being removed has its flag 'sched_load_balance'
2027 * enabled, then simulate turning sched_load_balance off, which
2028 * will call rebuild_sched_domains_locked().
2029 */
2030
Tejun Heoeb954192013-08-08 20:11:23 -04002031static void cpuset_css_offline(struct cgroup_subsys_state *css)
Tejun Heoc8f699b2013-01-07 08:51:07 -08002032{
Tejun Heoeb954192013-08-08 20:11:23 -04002033 struct cpuset *cs = css_cs(css);
Tejun Heoc8f699b2013-01-07 08:51:07 -08002034
Tejun Heo5d21cc22013-01-07 08:51:08 -08002035 mutex_lock(&cpuset_mutex);
Tejun Heoc8f699b2013-01-07 08:51:07 -08002036
2037 if (is_sched_load_balance(cs))
2038 update_flag(CS_SCHED_LOAD_BALANCE, cs, 0);
2039
2040 number_of_cpusets--;
Tejun Heoefeb77b2013-01-07 08:51:07 -08002041 clear_bit(CS_ONLINE, &cs->flags);
Tejun Heoc8f699b2013-01-07 08:51:07 -08002042
Tejun Heo5d21cc22013-01-07 08:51:08 -08002043 mutex_unlock(&cpuset_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002044}
2045
Tejun Heoeb954192013-08-08 20:11:23 -04002046static void cpuset_css_free(struct cgroup_subsys_state *css)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002047{
Tejun Heoeb954192013-08-08 20:11:23 -04002048 struct cpuset *cs = css_cs(css);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002049
Li Zefan300ed6c2009-01-07 18:08:44 -08002050 free_cpumask_var(cs->cpus_allowed);
Paul Menage8793d852007-10-18 23:39:39 -07002051 kfree(cs);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002052}
2053
Paul Menage8793d852007-10-18 23:39:39 -07002054struct cgroup_subsys cpuset_subsys = {
2055 .name = "cpuset",
Tejun Heo92fb9742012-11-19 08:13:38 -08002056 .css_alloc = cpuset_css_alloc,
Tejun Heoc8f699b2013-01-07 08:51:07 -08002057 .css_online = cpuset_css_online,
2058 .css_offline = cpuset_css_offline,
Tejun Heo92fb9742012-11-19 08:13:38 -08002059 .css_free = cpuset_css_free,
Paul Menage8793d852007-10-18 23:39:39 -07002060 .can_attach = cpuset_can_attach,
Tejun Heo452477f2013-01-07 08:51:07 -08002061 .cancel_attach = cpuset_cancel_attach,
Paul Menage8793d852007-10-18 23:39:39 -07002062 .attach = cpuset_attach,
Paul Menage8793d852007-10-18 23:39:39 -07002063 .subsys_id = cpuset_subsys_id,
Tejun Heo4baf6e32012-04-01 12:09:55 -07002064 .base_cftypes = files,
Paul Menage8793d852007-10-18 23:39:39 -07002065 .early_init = 1,
2066};
2067
Linus Torvalds1da177e2005-04-16 15:20:36 -07002068/**
2069 * cpuset_init - initialize cpusets at system boot
2070 *
2071 * Description: Initialize top_cpuset and the cpuset internal file system,
2072 **/
2073
2074int __init cpuset_init(void)
2075{
Paul Menage8793d852007-10-18 23:39:39 -07002076 int err = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002077
Miao Xie58568d22009-06-16 15:31:49 -07002078 if (!alloc_cpumask_var(&top_cpuset.cpus_allowed, GFP_KERNEL))
2079 BUG();
2080
Li Zefan300ed6c2009-01-07 18:08:44 -08002081 cpumask_setall(top_cpuset.cpus_allowed);
Mike Travisf9a86fc2008-04-04 18:11:07 -07002082 nodes_setall(top_cpuset.mems_allowed);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002083
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002084 fmeter_init(&top_cpuset.fmeter);
Paul Jackson029190c2007-10-18 23:40:20 -07002085 set_bit(CS_SCHED_LOAD_BALANCE, &top_cpuset.flags);
Hidetoshi Seto1d3504f2008-04-15 14:04:23 +09002086 top_cpuset.relax_domain_level = -1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002087
Linus Torvalds1da177e2005-04-16 15:20:36 -07002088 err = register_filesystem(&cpuset_fs_type);
2089 if (err < 0)
Paul Menage8793d852007-10-18 23:39:39 -07002090 return err;
2091
Li Zefan2341d1b2009-01-07 18:08:42 -08002092 if (!alloc_cpumask_var(&cpus_attach, GFP_KERNEL))
2093 BUG();
2094
Paul Jackson202f72d2006-01-08 01:01:57 -08002095 number_of_cpusets = 1;
Paul Menage8793d852007-10-18 23:39:39 -07002096 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002097}
2098
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002099/*
Max Krasnyanskycf417142008-08-11 14:33:53 -07002100 * If CPU and/or memory hotplug handlers, below, unplug any CPUs
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002101 * or memory nodes, we need to walk over the cpuset hierarchy,
2102 * removing that CPU or node from all cpusets. If this removes the
Cliff Wickman956db3c2008-02-07 00:14:43 -08002103 * last CPU or node from a cpuset, then move the tasks in the empty
2104 * cpuset to its next-highest non-empty parent.
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002105 */
Cliff Wickman956db3c2008-02-07 00:14:43 -08002106static void remove_tasks_in_empty_cpuset(struct cpuset *cs)
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002107{
Cliff Wickman956db3c2008-02-07 00:14:43 -08002108 struct cpuset *parent;
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002109
Paul Jacksonc8d9c902008-02-07 00:14:46 -08002110 /*
Cliff Wickman956db3c2008-02-07 00:14:43 -08002111 * Find its next-highest non-empty parent, (top cpuset
2112 * has online cpus, so can't be empty).
2113 */
Tejun Heoc4310692013-01-07 08:51:08 -08002114 parent = parent_cs(cs);
Li Zefan300ed6c2009-01-07 18:08:44 -08002115 while (cpumask_empty(parent->cpus_allowed) ||
Paul Jacksonb4501292008-02-07 00:14:47 -08002116 nodes_empty(parent->mems_allowed))
Tejun Heoc4310692013-01-07 08:51:08 -08002117 parent = parent_cs(parent);
Cliff Wickman956db3c2008-02-07 00:14:43 -08002118
Tejun Heo8cc99342013-04-07 09:29:50 -07002119 if (cgroup_transfer_tasks(parent->css.cgroup, cs->css.cgroup)) {
2120 rcu_read_lock();
2121 printk(KERN_ERR "cpuset: failed to transfer tasks out of empty cpuset %s\n",
2122 cgroup_name(cs->css.cgroup));
2123 rcu_read_unlock();
2124 }
Cliff Wickman956db3c2008-02-07 00:14:43 -08002125}
2126
Tejun Heodeb7aa32013-01-07 08:51:07 -08002127/**
Li Zefan388afd82013-06-09 17:14:47 +08002128 * cpuset_hotplug_update_tasks - update tasks in a cpuset for hotunplug
Tejun Heodeb7aa32013-01-07 08:51:07 -08002129 * @cs: cpuset in interest
Cliff Wickman956db3c2008-02-07 00:14:43 -08002130 *
Tejun Heodeb7aa32013-01-07 08:51:07 -08002131 * Compare @cs's cpu and mem masks against top_cpuset and if some have gone
2132 * offline, update @cs accordingly. If @cs ends up with no CPU or memory,
2133 * all its tasks are moved to the nearest ancestor with both resources.
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002134 */
Li Zefan388afd82013-06-09 17:14:47 +08002135static void cpuset_hotplug_update_tasks(struct cpuset *cs)
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002136{
Tejun Heodeb7aa32013-01-07 08:51:07 -08002137 static cpumask_t off_cpus;
Li Zefan33ad8012013-06-09 17:15:08 +08002138 static nodemask_t off_mems;
Tejun Heo5d21cc22013-01-07 08:51:08 -08002139 bool is_empty;
Li Zefan5c5cc622013-06-09 17:16:29 +08002140 bool sane = cgroup_sane_behavior(cs->css.cgroup);
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002141
Li Zefane44193d2013-06-09 17:14:22 +08002142retry:
2143 wait_event(cpuset_attach_wq, cs->attach_in_progress == 0);
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002144
Tejun Heo5d21cc22013-01-07 08:51:08 -08002145 mutex_lock(&cpuset_mutex);
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002146
Li Zefane44193d2013-06-09 17:14:22 +08002147 /*
2148 * We have raced with task attaching. We wait until attaching
2149 * is finished, so we won't attach a task to an empty cpuset.
2150 */
2151 if (cs->attach_in_progress) {
2152 mutex_unlock(&cpuset_mutex);
2153 goto retry;
2154 }
2155
Tejun Heodeb7aa32013-01-07 08:51:07 -08002156 cpumask_andnot(&off_cpus, cs->cpus_allowed, top_cpuset.cpus_allowed);
2157 nodes_andnot(off_mems, cs->mems_allowed, top_cpuset.mems_allowed);
Paul Jacksonb4501292008-02-07 00:14:47 -08002158
Li Zefan5c5cc622013-06-09 17:16:29 +08002159 mutex_lock(&callback_mutex);
2160 cpumask_andnot(cs->cpus_allowed, cs->cpus_allowed, &off_cpus);
2161 mutex_unlock(&callback_mutex);
Cliff Wickman956db3c2008-02-07 00:14:43 -08002162
Li Zefan5c5cc622013-06-09 17:16:29 +08002163 /*
2164 * If sane_behavior flag is set, we need to update tasks' cpumask
Li Zefanf047cec2013-06-13 15:11:44 +08002165 * for empty cpuset to take on ancestor's cpumask. Otherwise, don't
2166 * call update_tasks_cpumask() if the cpuset becomes empty, as
2167 * the tasks in it will be migrated to an ancestor.
Li Zefan5c5cc622013-06-09 17:16:29 +08002168 */
2169 if ((sane && cpumask_empty(cs->cpus_allowed)) ||
Li Zefanf047cec2013-06-13 15:11:44 +08002170 (!cpumask_empty(&off_cpus) && !cpumask_empty(cs->cpus_allowed)))
Li Zefan5c5cc622013-06-09 17:16:29 +08002171 update_tasks_cpumask(cs, NULL);
2172
2173 mutex_lock(&callback_mutex);
2174 nodes_andnot(cs->mems_allowed, cs->mems_allowed, off_mems);
2175 mutex_unlock(&callback_mutex);
2176
2177 /*
2178 * If sane_behavior flag is set, we need to update tasks' nodemask
Li Zefanf047cec2013-06-13 15:11:44 +08002179 * for empty cpuset to take on ancestor's nodemask. Otherwise, don't
2180 * call update_tasks_nodemask() if the cpuset becomes empty, as
2181 * the tasks in it will be migratd to an ancestor.
Li Zefan5c5cc622013-06-09 17:16:29 +08002182 */
2183 if ((sane && nodes_empty(cs->mems_allowed)) ||
Li Zefanf047cec2013-06-13 15:11:44 +08002184 (!nodes_empty(off_mems) && !nodes_empty(cs->mems_allowed)))
Li Zefan33ad8012013-06-09 17:15:08 +08002185 update_tasks_nodemask(cs, NULL);
Miao Xief9b4fb82008-07-25 01:47:22 -07002186
Tejun Heo5d21cc22013-01-07 08:51:08 -08002187 is_empty = cpumask_empty(cs->cpus_allowed) ||
2188 nodes_empty(cs->mems_allowed);
Tejun Heo8d033942013-01-07 08:51:07 -08002189
Tejun Heo5d21cc22013-01-07 08:51:08 -08002190 mutex_unlock(&cpuset_mutex);
2191
2192 /*
Li Zefan5c5cc622013-06-09 17:16:29 +08002193 * If sane_behavior flag is set, we'll keep tasks in empty cpusets.
2194 *
2195 * Otherwise move tasks to the nearest ancestor with execution
2196 * resources. This is full cgroup operation which will
Tejun Heo5d21cc22013-01-07 08:51:08 -08002197 * also call back into cpuset. Should be done outside any lock.
2198 */
Li Zefan5c5cc622013-06-09 17:16:29 +08002199 if (!sane && is_empty)
Tejun Heo5d21cc22013-01-07 08:51:08 -08002200 remove_tasks_in_empty_cpuset(cs);
Tejun Heodeb7aa32013-01-07 08:51:07 -08002201}
Peter Zijlstra6ad4c182009-11-25 13:31:39 +01002202
Tejun Heodeb7aa32013-01-07 08:51:07 -08002203/**
Tejun Heo3a5a6d02013-01-07 08:51:07 -08002204 * cpuset_hotplug_workfn - handle CPU/memory hotunplug for a cpuset
Tejun Heodeb7aa32013-01-07 08:51:07 -08002205 *
2206 * This function is called after either CPU or memory configuration has
2207 * changed and updates cpuset accordingly. The top_cpuset is always
2208 * synchronized to cpu_active_mask and N_MEMORY, which is necessary in
2209 * order to make cpusets transparent (of no affect) on systems that are
2210 * actively using CPU hotplug but making no active use of cpusets.
2211 *
2212 * Non-root cpusets are only affected by offlining. If any CPUs or memory
Li Zefan388afd82013-06-09 17:14:47 +08002213 * nodes have been taken down, cpuset_hotplug_update_tasks() is invoked on
2214 * all descendants.
Tejun Heodeb7aa32013-01-07 08:51:07 -08002215 *
2216 * Note that CPU offlining during suspend is ignored. We don't modify
2217 * cpusets across suspend/resume cycles at all.
2218 */
Tejun Heo3a5a6d02013-01-07 08:51:07 -08002219static void cpuset_hotplug_workfn(struct work_struct *work)
Tejun Heodeb7aa32013-01-07 08:51:07 -08002220{
Li Zefan5c5cc622013-06-09 17:16:29 +08002221 static cpumask_t new_cpus;
2222 static nodemask_t new_mems;
Tejun Heodeb7aa32013-01-07 08:51:07 -08002223 bool cpus_updated, mems_updated;
Paul Jacksonb4501292008-02-07 00:14:47 -08002224
Tejun Heo5d21cc22013-01-07 08:51:08 -08002225 mutex_lock(&cpuset_mutex);
Cliff Wickman956db3c2008-02-07 00:14:43 -08002226
Tejun Heodeb7aa32013-01-07 08:51:07 -08002227 /* fetch the available cpus/mems and find out which changed how */
2228 cpumask_copy(&new_cpus, cpu_active_mask);
2229 new_mems = node_states[N_MEMORY];
Cliff Wickman956db3c2008-02-07 00:14:43 -08002230
Tejun Heodeb7aa32013-01-07 08:51:07 -08002231 cpus_updated = !cpumask_equal(top_cpuset.cpus_allowed, &new_cpus);
Tejun Heodeb7aa32013-01-07 08:51:07 -08002232 mems_updated = !nodes_equal(top_cpuset.mems_allowed, new_mems);
Srivatsa S. Bhat7ddf96b2012-05-24 19:46:55 +05302233
Tejun Heodeb7aa32013-01-07 08:51:07 -08002234 /* synchronize cpus_allowed to cpu_active_mask */
2235 if (cpus_updated) {
2236 mutex_lock(&callback_mutex);
2237 cpumask_copy(top_cpuset.cpus_allowed, &new_cpus);
2238 mutex_unlock(&callback_mutex);
2239 /* we don't mess with cpumasks of tasks in top_cpuset */
2240 }
Srivatsa S. Bhat7ddf96b2012-05-24 19:46:55 +05302241
Tejun Heodeb7aa32013-01-07 08:51:07 -08002242 /* synchronize mems_allowed to N_MEMORY */
2243 if (mems_updated) {
Tejun Heodeb7aa32013-01-07 08:51:07 -08002244 mutex_lock(&callback_mutex);
2245 top_cpuset.mems_allowed = new_mems;
2246 mutex_unlock(&callback_mutex);
Li Zefan33ad8012013-06-09 17:15:08 +08002247 update_tasks_nodemask(&top_cpuset, NULL);
Tejun Heodeb7aa32013-01-07 08:51:07 -08002248 }
2249
Tejun Heo5d21cc22013-01-07 08:51:08 -08002250 mutex_unlock(&cpuset_mutex);
Tejun Heodeb7aa32013-01-07 08:51:07 -08002251
Li Zefan5c5cc622013-06-09 17:16:29 +08002252 /* if cpus or mems changed, we need to propagate to descendants */
2253 if (cpus_updated || mems_updated) {
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08002254 struct cpuset *cs;
Srivatsa S. Bhat7ddf96b2012-05-24 19:46:55 +05302255 struct cgroup *pos_cgrp;
Paul Jacksonb4501292008-02-07 00:14:47 -08002256
Paul Jacksonb4501292008-02-07 00:14:47 -08002257 rcu_read_lock();
Li Zefan388afd82013-06-09 17:14:47 +08002258 cpuset_for_each_descendant_pre(cs, pos_cgrp, &top_cpuset) {
2259 if (!css_tryget(&cs->css))
2260 continue;
2261 rcu_read_unlock();
2262
2263 cpuset_hotplug_update_tasks(cs);
2264
2265 rcu_read_lock();
2266 css_put(&cs->css);
2267 }
Tejun Heodeb7aa32013-01-07 08:51:07 -08002268 rcu_read_unlock();
2269 }
Tejun Heo8d033942013-01-07 08:51:07 -08002270
Tejun Heodeb7aa32013-01-07 08:51:07 -08002271 /* rebuild sched domains if cpus_allowed has changed */
Li Zhonge0e80a02013-04-27 06:52:43 -07002272 if (cpus_updated)
2273 rebuild_sched_domains();
Paul Jacksonb1aac8b2006-09-29 02:01:17 -07002274}
2275
Srivatsa S. Bhat7ddf96b2012-05-24 19:46:55 +05302276void cpuset_update_active_cpus(bool cpu_online)
Paul Jackson4c4d50f2006-08-27 01:23:51 -07002277{
Tejun Heo3a5a6d02013-01-07 08:51:07 -08002278 /*
2279 * We're inside cpu hotplug critical region which usually nests
2280 * inside cgroup synchronization. Bounce actual hotplug processing
2281 * to a work item to avoid reverse locking order.
2282 *
2283 * We still need to do partition_sched_domains() synchronously;
2284 * otherwise, the scheduler will get confused and put tasks to the
2285 * dead CPU. Fall back to the default single domain.
2286 * cpuset_hotplug_workfn() will rebuild it as necessary.
2287 */
2288 partition_sched_domains(1, NULL, NULL);
2289 schedule_work(&cpuset_hotplug_work);
Paul Jackson4c4d50f2006-08-27 01:23:51 -07002290}
Paul Jackson4c4d50f2006-08-27 01:23:51 -07002291
Paul Jackson38837fc2006-09-29 02:01:16 -07002292/*
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08002293 * Keep top_cpuset.mems_allowed tracking node_states[N_MEMORY].
2294 * Call this routine anytime after node_states[N_MEMORY] changes.
Srivatsa S. Bhata1cd2b12012-05-24 19:47:03 +05302295 * See cpuset_update_active_cpus() for CPU hotplug handling.
Paul Jackson38837fc2006-09-29 02:01:16 -07002296 */
Miao Xief4818912008-11-19 15:36:30 -08002297static int cpuset_track_online_nodes(struct notifier_block *self,
2298 unsigned long action, void *arg)
Paul Jackson38837fc2006-09-29 02:01:16 -07002299{
Tejun Heo3a5a6d02013-01-07 08:51:07 -08002300 schedule_work(&cpuset_hotplug_work);
Miao Xief4818912008-11-19 15:36:30 -08002301 return NOTIFY_OK;
Paul Jackson38837fc2006-09-29 02:01:16 -07002302}
Andrew Mortond8f10cb2013-04-29 15:08:08 -07002303
2304static struct notifier_block cpuset_track_online_nodes_nb = {
2305 .notifier_call = cpuset_track_online_nodes,
2306 .priority = 10, /* ??! */
2307};
Paul Jackson38837fc2006-09-29 02:01:16 -07002308
Linus Torvalds1da177e2005-04-16 15:20:36 -07002309/**
2310 * cpuset_init_smp - initialize cpus_allowed
2311 *
2312 * Description: Finish top cpuset after cpu, node maps are initialized
Andrew Mortond8f10cb2013-04-29 15:08:08 -07002313 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002314void __init cpuset_init_smp(void)
2315{
Peter Zijlstra6ad4c182009-11-25 13:31:39 +01002316 cpumask_copy(top_cpuset.cpus_allowed, cpu_active_mask);
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08002317 top_cpuset.mems_allowed = node_states[N_MEMORY];
Li Zefan33ad8012013-06-09 17:15:08 +08002318 top_cpuset.old_mems_allowed = top_cpuset.mems_allowed;
Paul Jackson4c4d50f2006-08-27 01:23:51 -07002319
Andrew Mortond8f10cb2013-04-29 15:08:08 -07002320 register_hotmemory_notifier(&cpuset_track_online_nodes_nb);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002321}
2322
2323/**
Linus Torvalds1da177e2005-04-16 15:20:36 -07002324 * cpuset_cpus_allowed - return cpus_allowed mask from a tasks cpuset.
2325 * @tsk: pointer to task_struct from which to obtain cpuset->cpus_allowed.
Li Zefan6af866a2009-01-07 18:08:45 -08002326 * @pmask: pointer to struct cpumask variable to receive cpus_allowed set.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002327 *
Li Zefan300ed6c2009-01-07 18:08:44 -08002328 * Description: Returns the cpumask_var_t cpus_allowed of the cpuset
Linus Torvalds1da177e2005-04-16 15:20:36 -07002329 * attached to the specified @tsk. Guaranteed to return some non-empty
Rusty Russell5f054e32012-03-29 15:38:31 +10302330 * subset of cpu_online_mask, even if this means going outside the
Linus Torvalds1da177e2005-04-16 15:20:36 -07002331 * tasks cpuset.
2332 **/
2333
Li Zefan6af866a2009-01-07 18:08:45 -08002334void cpuset_cpus_allowed(struct task_struct *tsk, struct cpumask *pmask)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002335{
Li Zefan070b57f2013-06-09 17:15:22 +08002336 struct cpuset *cpus_cs;
2337
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08002338 mutex_lock(&callback_mutex);
Paul Jackson909d75a2006-01-08 01:01:55 -08002339 task_lock(tsk);
Li Zefan070b57f2013-06-09 17:15:22 +08002340 cpus_cs = effective_cpumask_cpuset(task_cs(tsk));
2341 guarantee_online_cpus(cpus_cs, pmask);
Paul Jackson909d75a2006-01-08 01:01:55 -08002342 task_unlock(tsk);
Oleg Nesterov897f0b32010-03-15 10:10:03 +01002343 mutex_unlock(&callback_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002344}
2345
Peter Zijlstra2baab4e2012-03-20 15:57:01 +01002346void cpuset_cpus_allowed_fallback(struct task_struct *tsk)
Oleg Nesterov9084bb82010-03-15 10:10:27 +01002347{
Tejun Heoc9710d82013-08-08 20:11:22 -04002348 struct cpuset *cpus_cs;
Oleg Nesterov9084bb82010-03-15 10:10:27 +01002349
2350 rcu_read_lock();
Li Zefan070b57f2013-06-09 17:15:22 +08002351 cpus_cs = effective_cpumask_cpuset(task_cs(tsk));
2352 do_set_cpus_allowed(tsk, cpus_cs->cpus_allowed);
Oleg Nesterov9084bb82010-03-15 10:10:27 +01002353 rcu_read_unlock();
2354
2355 /*
2356 * We own tsk->cpus_allowed, nobody can change it under us.
2357 *
2358 * But we used cs && cs->cpus_allowed lockless and thus can
2359 * race with cgroup_attach_task() or update_cpumask() and get
2360 * the wrong tsk->cpus_allowed. However, both cases imply the
2361 * subsequent cpuset_change_cpumask()->set_cpus_allowed_ptr()
2362 * which takes task_rq_lock().
2363 *
2364 * If we are called after it dropped the lock we must see all
2365 * changes in tsk_cs()->cpus_allowed. Otherwise we can temporary
2366 * set any mask even if it is not right from task_cs() pov,
2367 * the pending set_cpus_allowed_ptr() will fix things.
Peter Zijlstra2baab4e2012-03-20 15:57:01 +01002368 *
2369 * select_fallback_rq() will fix things ups and set cpu_possible_mask
2370 * if required.
Oleg Nesterov9084bb82010-03-15 10:10:27 +01002371 */
Oleg Nesterov9084bb82010-03-15 10:10:27 +01002372}
2373
Linus Torvalds1da177e2005-04-16 15:20:36 -07002374void cpuset_init_current_mems_allowed(void)
2375{
Mike Travisf9a86fc2008-04-04 18:11:07 -07002376 nodes_setall(current->mems_allowed);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002377}
2378
Randy Dunlapd9fd8a62005-07-27 11:45:11 -07002379/**
Paul Jackson909d75a2006-01-08 01:01:55 -08002380 * cpuset_mems_allowed - return mems_allowed mask from a tasks cpuset.
2381 * @tsk: pointer to task_struct from which to obtain cpuset->mems_allowed.
2382 *
2383 * Description: Returns the nodemask_t mems_allowed of the cpuset
2384 * attached to the specified @tsk. Guaranteed to return some non-empty
Lai Jiangshan38d7bee2012-12-12 13:51:24 -08002385 * subset of node_states[N_MEMORY], even if this means going outside the
Paul Jackson909d75a2006-01-08 01:01:55 -08002386 * tasks cpuset.
2387 **/
2388
2389nodemask_t cpuset_mems_allowed(struct task_struct *tsk)
2390{
Li Zefan070b57f2013-06-09 17:15:22 +08002391 struct cpuset *mems_cs;
Paul Jackson909d75a2006-01-08 01:01:55 -08002392 nodemask_t mask;
2393
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08002394 mutex_lock(&callback_mutex);
Paul Jackson909d75a2006-01-08 01:01:55 -08002395 task_lock(tsk);
Li Zefan070b57f2013-06-09 17:15:22 +08002396 mems_cs = effective_nodemask_cpuset(task_cs(tsk));
2397 guarantee_online_mems(mems_cs, &mask);
Paul Jackson909d75a2006-01-08 01:01:55 -08002398 task_unlock(tsk);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08002399 mutex_unlock(&callback_mutex);
Paul Jackson909d75a2006-01-08 01:01:55 -08002400
2401 return mask;
2402}
2403
2404/**
Mel Gorman19770b32008-04-28 02:12:18 -07002405 * cpuset_nodemask_valid_mems_allowed - check nodemask vs. curremt mems_allowed
2406 * @nodemask: the nodemask to be checked
Randy Dunlapd9fd8a62005-07-27 11:45:11 -07002407 *
Mel Gorman19770b32008-04-28 02:12:18 -07002408 * Are any of the nodes in the nodemask allowed in current->mems_allowed?
Linus Torvalds1da177e2005-04-16 15:20:36 -07002409 */
Mel Gorman19770b32008-04-28 02:12:18 -07002410int cpuset_nodemask_valid_mems_allowed(nodemask_t *nodemask)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002411{
Mel Gorman19770b32008-04-28 02:12:18 -07002412 return nodes_intersects(*nodemask, current->mems_allowed);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002413}
2414
Paul Jackson9bf22292005-09-06 15:18:12 -07002415/*
Paul Menage78608362008-04-29 01:00:26 -07002416 * nearest_hardwall_ancestor() - Returns the nearest mem_exclusive or
2417 * mem_hardwall ancestor to the specified cpuset. Call holding
2418 * callback_mutex. If no ancestor is mem_exclusive or mem_hardwall
2419 * (an unusual configuration), then returns the root cpuset.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002420 */
Tejun Heoc9710d82013-08-08 20:11:22 -04002421static struct cpuset *nearest_hardwall_ancestor(struct cpuset *cs)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002422{
Tejun Heoc4310692013-01-07 08:51:08 -08002423 while (!(is_mem_exclusive(cs) || is_mem_hardwall(cs)) && parent_cs(cs))
2424 cs = parent_cs(cs);
Paul Jackson9bf22292005-09-06 15:18:12 -07002425 return cs;
2426}
2427
2428/**
David Rientjesa1bc5a42009-04-02 16:57:54 -07002429 * cpuset_node_allowed_softwall - Can we allocate on a memory node?
2430 * @node: is this an allowed node?
Paul Jackson02a0e532006-12-13 00:34:25 -08002431 * @gfp_mask: memory allocation flags
Paul Jackson9bf22292005-09-06 15:18:12 -07002432 *
David Rientjesa1bc5a42009-04-02 16:57:54 -07002433 * If we're in interrupt, yes, we can always allocate. If __GFP_THISNODE is
2434 * set, yes, we can always allocate. If node is in our task's mems_allowed,
2435 * yes. If it's not a __GFP_HARDWALL request and this node is in the nearest
2436 * hardwalled cpuset ancestor to this task's cpuset, yes. If the task has been
2437 * OOM killed and has access to memory reserves as specified by the TIF_MEMDIE
2438 * flag, yes.
Paul Jackson9bf22292005-09-06 15:18:12 -07002439 * Otherwise, no.
2440 *
David Rientjesa1bc5a42009-04-02 16:57:54 -07002441 * If __GFP_HARDWALL is set, cpuset_node_allowed_softwall() reduces to
2442 * cpuset_node_allowed_hardwall(). Otherwise, cpuset_node_allowed_softwall()
2443 * might sleep, and might allow a node from an enclosing cpuset.
Paul Jackson02a0e532006-12-13 00:34:25 -08002444 *
David Rientjesa1bc5a42009-04-02 16:57:54 -07002445 * cpuset_node_allowed_hardwall() only handles the simpler case of hardwall
2446 * cpusets, and never sleeps.
Paul Jackson02a0e532006-12-13 00:34:25 -08002447 *
2448 * The __GFP_THISNODE placement logic is really handled elsewhere,
2449 * by forcibly using a zonelist starting at a specified node, and by
2450 * (in get_page_from_freelist()) refusing to consider the zones for
2451 * any node on the zonelist except the first. By the time any such
2452 * calls get to this routine, we should just shut up and say 'yes'.
2453 *
Paul Jackson9bf22292005-09-06 15:18:12 -07002454 * GFP_USER allocations are marked with the __GFP_HARDWALL bit,
David Rientjesc596d9f2007-05-06 14:49:32 -07002455 * and do not allow allocations outside the current tasks cpuset
2456 * unless the task has been OOM killed as is marked TIF_MEMDIE.
Paul Jackson9bf22292005-09-06 15:18:12 -07002457 * GFP_KERNEL allocations are not so marked, so can escape to the
Paul Menage78608362008-04-29 01:00:26 -07002458 * nearest enclosing hardwalled ancestor cpuset.
Paul Jackson9bf22292005-09-06 15:18:12 -07002459 *
Paul Jackson02a0e532006-12-13 00:34:25 -08002460 * Scanning up parent cpusets requires callback_mutex. The
2461 * __alloc_pages() routine only calls here with __GFP_HARDWALL bit
2462 * _not_ set if it's a GFP_KERNEL allocation, and all nodes in the
2463 * current tasks mems_allowed came up empty on the first pass over
2464 * the zonelist. So only GFP_KERNEL allocations, if all nodes in the
2465 * cpuset are short of memory, might require taking the callback_mutex
2466 * mutex.
Paul Jackson9bf22292005-09-06 15:18:12 -07002467 *
Paul Jackson36be57f2006-05-20 15:00:10 -07002468 * The first call here from mm/page_alloc:get_page_from_freelist()
Paul Jackson02a0e532006-12-13 00:34:25 -08002469 * has __GFP_HARDWALL set in gfp_mask, enforcing hardwall cpusets,
2470 * so no allocation on a node outside the cpuset is allowed (unless
2471 * in interrupt, of course).
Paul Jackson9bf22292005-09-06 15:18:12 -07002472 *
Paul Jackson36be57f2006-05-20 15:00:10 -07002473 * The second pass through get_page_from_freelist() doesn't even call
2474 * here for GFP_ATOMIC calls. For those calls, the __alloc_pages()
2475 * variable 'wait' is not set, and the bit ALLOC_CPUSET is not set
2476 * in alloc_flags. That logic and the checks below have the combined
2477 * affect that:
Paul Jackson9bf22292005-09-06 15:18:12 -07002478 * in_interrupt - any node ok (current task context irrelevant)
2479 * GFP_ATOMIC - any node ok
David Rientjesc596d9f2007-05-06 14:49:32 -07002480 * TIF_MEMDIE - any node ok
Paul Menage78608362008-04-29 01:00:26 -07002481 * GFP_KERNEL - any node in enclosing hardwalled cpuset ok
Paul Jackson9bf22292005-09-06 15:18:12 -07002482 * GFP_USER - only nodes in current tasks mems allowed ok.
Paul Jackson36be57f2006-05-20 15:00:10 -07002483 *
2484 * Rule:
David Rientjesa1bc5a42009-04-02 16:57:54 -07002485 * Don't call cpuset_node_allowed_softwall if you can't sleep, unless you
Paul Jackson36be57f2006-05-20 15:00:10 -07002486 * pass in the __GFP_HARDWALL flag set in gfp_flag, which disables
2487 * the code that might scan up ancestor cpusets and sleep.
Paul Jackson02a0e532006-12-13 00:34:25 -08002488 */
David Rientjesa1bc5a42009-04-02 16:57:54 -07002489int __cpuset_node_allowed_softwall(int node, gfp_t gfp_mask)
Paul Jackson9bf22292005-09-06 15:18:12 -07002490{
Tejun Heoc9710d82013-08-08 20:11:22 -04002491 struct cpuset *cs; /* current cpuset ancestors */
Paul Jackson29afd492006-03-24 03:16:12 -08002492 int allowed; /* is allocation in zone z allowed? */
Paul Jackson9bf22292005-09-06 15:18:12 -07002493
Christoph Lameter9b819d22006-09-25 23:31:40 -07002494 if (in_interrupt() || (gfp_mask & __GFP_THISNODE))
Paul Jackson9bf22292005-09-06 15:18:12 -07002495 return 1;
Paul Jackson92d1dbd2006-05-20 15:00:11 -07002496 might_sleep_if(!(gfp_mask & __GFP_HARDWALL));
Paul Jackson9bf22292005-09-06 15:18:12 -07002497 if (node_isset(node, current->mems_allowed))
2498 return 1;
David Rientjesc596d9f2007-05-06 14:49:32 -07002499 /*
2500 * Allow tasks that have access to memory reserves because they have
2501 * been OOM killed to get memory anywhere.
2502 */
2503 if (unlikely(test_thread_flag(TIF_MEMDIE)))
2504 return 1;
Paul Jackson9bf22292005-09-06 15:18:12 -07002505 if (gfp_mask & __GFP_HARDWALL) /* If hardwall request, stop here */
2506 return 0;
2507
Bob Picco5563e772005-11-13 16:06:35 -08002508 if (current->flags & PF_EXITING) /* Let dying task have memory */
2509 return 1;
2510
Paul Jackson9bf22292005-09-06 15:18:12 -07002511 /* Not hardwall and node outside mems_allowed: scan up cpusets */
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08002512 mutex_lock(&callback_mutex);
Paul Jackson053199e2005-10-30 15:02:30 -08002513
Paul Jackson053199e2005-10-30 15:02:30 -08002514 task_lock(current);
Paul Menage78608362008-04-29 01:00:26 -07002515 cs = nearest_hardwall_ancestor(task_cs(current));
Paul Jackson053199e2005-10-30 15:02:30 -08002516 task_unlock(current);
2517
Paul Jackson9bf22292005-09-06 15:18:12 -07002518 allowed = node_isset(node, cs->mems_allowed);
Ingo Molnar3d3f26a2006-03-23 03:00:18 -08002519 mutex_unlock(&callback_mutex);
Paul Jackson9bf22292005-09-06 15:18:12 -07002520 return allowed;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002521}
2522
Paul Jackson02a0e532006-12-13 00:34:25 -08002523/*
David Rientjesa1bc5a42009-04-02 16:57:54 -07002524 * cpuset_node_allowed_hardwall - Can we allocate on a memory node?
2525 * @node: is this an allowed node?
Paul Jackson02a0e532006-12-13 00:34:25 -08002526 * @gfp_mask: memory allocation flags
2527 *
David Rientjesa1bc5a42009-04-02 16:57:54 -07002528 * If we're in interrupt, yes, we can always allocate. If __GFP_THISNODE is
2529 * set, yes, we can always allocate. If node is in our task's mems_allowed,
2530 * yes. If the task has been OOM killed and has access to memory reserves as
2531 * specified by the TIF_MEMDIE flag, yes.
2532 * Otherwise, no.
Paul Jackson02a0e532006-12-13 00:34:25 -08002533 *
2534 * The __GFP_THISNODE placement logic is really handled elsewhere,
2535 * by forcibly using a zonelist starting at a specified node, and by
2536 * (in get_page_from_freelist()) refusing to consider the zones for
2537 * any node on the zonelist except the first. By the time any such
2538 * calls get to this routine, we should just shut up and say 'yes'.
2539 *
David Rientjesa1bc5a42009-04-02 16:57:54 -07002540 * Unlike the cpuset_node_allowed_softwall() variant, above,
2541 * this variant requires that the node be in the current task's
Paul Jackson02a0e532006-12-13 00:34:25 -08002542 * mems_allowed or that we're in interrupt. It does not scan up the
2543 * cpuset hierarchy for the nearest enclosing mem_exclusive cpuset.
2544 * It never sleeps.
2545 */
David Rientjesa1bc5a42009-04-02 16:57:54 -07002546int __cpuset_node_allowed_hardwall(int node, gfp_t gfp_mask)
Paul Jackson02a0e532006-12-13 00:34:25 -08002547{
Paul Jackson02a0e532006-12-13 00:34:25 -08002548 if (in_interrupt() || (gfp_mask & __GFP_THISNODE))
2549 return 1;
Paul Jackson02a0e532006-12-13 00:34:25 -08002550 if (node_isset(node, current->mems_allowed))
2551 return 1;
Daniel Walkerdedf8b72007-10-18 03:06:04 -07002552 /*
2553 * Allow tasks that have access to memory reserves because they have
2554 * been OOM killed to get memory anywhere.
2555 */
2556 if (unlikely(test_thread_flag(TIF_MEMDIE)))
2557 return 1;
Paul Jackson02a0e532006-12-13 00:34:25 -08002558 return 0;
2559}
2560
Paul Jacksonef08e3b2005-09-06 15:18:13 -07002561/**
Jack Steiner6adef3e2010-05-26 14:42:49 -07002562 * cpuset_mem_spread_node() - On which node to begin search for a file page
2563 * cpuset_slab_spread_node() - On which node to begin search for a slab page
Paul Jackson825a46a2006-03-24 03:16:03 -08002564 *
2565 * If a task is marked PF_SPREAD_PAGE or PF_SPREAD_SLAB (as for
2566 * tasks in a cpuset with is_spread_page or is_spread_slab set),
2567 * and if the memory allocation used cpuset_mem_spread_node()
2568 * to determine on which node to start looking, as it will for
2569 * certain page cache or slab cache pages such as used for file
2570 * system buffers and inode caches, then instead of starting on the
2571 * local node to look for a free page, rather spread the starting
2572 * node around the tasks mems_allowed nodes.
2573 *
2574 * We don't have to worry about the returned node being offline
2575 * because "it can't happen", and even if it did, it would be ok.
2576 *
2577 * The routines calling guarantee_online_mems() are careful to
2578 * only set nodes in task->mems_allowed that are online. So it
2579 * should not be possible for the following code to return an
2580 * offline node. But if it did, that would be ok, as this routine
2581 * is not returning the node where the allocation must be, only
2582 * the node where the search should start. The zonelist passed to
2583 * __alloc_pages() will include all nodes. If the slab allocator
2584 * is passed an offline node, it will fall back to the local node.
2585 * See kmem_cache_alloc_node().
2586 */
2587
Jack Steiner6adef3e2010-05-26 14:42:49 -07002588static int cpuset_spread_node(int *rotor)
Paul Jackson825a46a2006-03-24 03:16:03 -08002589{
2590 int node;
2591
Jack Steiner6adef3e2010-05-26 14:42:49 -07002592 node = next_node(*rotor, current->mems_allowed);
Paul Jackson825a46a2006-03-24 03:16:03 -08002593 if (node == MAX_NUMNODES)
2594 node = first_node(current->mems_allowed);
Jack Steiner6adef3e2010-05-26 14:42:49 -07002595 *rotor = node;
Paul Jackson825a46a2006-03-24 03:16:03 -08002596 return node;
2597}
Jack Steiner6adef3e2010-05-26 14:42:49 -07002598
2599int cpuset_mem_spread_node(void)
2600{
Michal Hocko778d3b02011-07-26 16:08:30 -07002601 if (current->cpuset_mem_spread_rotor == NUMA_NO_NODE)
2602 current->cpuset_mem_spread_rotor =
2603 node_random(&current->mems_allowed);
2604
Jack Steiner6adef3e2010-05-26 14:42:49 -07002605 return cpuset_spread_node(&current->cpuset_mem_spread_rotor);
2606}
2607
2608int cpuset_slab_spread_node(void)
2609{
Michal Hocko778d3b02011-07-26 16:08:30 -07002610 if (current->cpuset_slab_spread_rotor == NUMA_NO_NODE)
2611 current->cpuset_slab_spread_rotor =
2612 node_random(&current->mems_allowed);
2613
Jack Steiner6adef3e2010-05-26 14:42:49 -07002614 return cpuset_spread_node(&current->cpuset_slab_spread_rotor);
2615}
2616
Paul Jackson825a46a2006-03-24 03:16:03 -08002617EXPORT_SYMBOL_GPL(cpuset_mem_spread_node);
2618
2619/**
David Rientjesbbe373f2007-10-16 23:25:58 -07002620 * cpuset_mems_allowed_intersects - Does @tsk1's mems_allowed intersect @tsk2's?
2621 * @tsk1: pointer to task_struct of some task.
2622 * @tsk2: pointer to task_struct of some other task.
Paul Jacksonef08e3b2005-09-06 15:18:13 -07002623 *
David Rientjesbbe373f2007-10-16 23:25:58 -07002624 * Description: Return true if @tsk1's mems_allowed intersects the
2625 * mems_allowed of @tsk2. Used by the OOM killer to determine if
2626 * one of the task's memory usage might impact the memory available
2627 * to the other.
Paul Jacksonef08e3b2005-09-06 15:18:13 -07002628 **/
2629
David Rientjesbbe373f2007-10-16 23:25:58 -07002630int cpuset_mems_allowed_intersects(const struct task_struct *tsk1,
2631 const struct task_struct *tsk2)
Paul Jacksonef08e3b2005-09-06 15:18:13 -07002632{
David Rientjesbbe373f2007-10-16 23:25:58 -07002633 return nodes_intersects(tsk1->mems_allowed, tsk2->mems_allowed);
Paul Jacksonef08e3b2005-09-06 15:18:13 -07002634}
2635
Li Zefanf440d982013-03-01 15:02:15 +08002636#define CPUSET_NODELIST_LEN (256)
2637
David Rientjes75aa1992009-01-06 14:39:01 -08002638/**
2639 * cpuset_print_task_mems_allowed - prints task's cpuset and mems_allowed
2640 * @task: pointer to task_struct of some task.
2641 *
2642 * Description: Prints @task's name, cpuset name, and cached copy of its
2643 * mems_allowed to the kernel log. Must hold task_lock(task) to allow
2644 * dereferencing task_cs(task).
2645 */
2646void cpuset_print_task_mems_allowed(struct task_struct *tsk)
2647{
Li Zefanf440d982013-03-01 15:02:15 +08002648 /* Statically allocated to prevent using excess stack. */
2649 static char cpuset_nodelist[CPUSET_NODELIST_LEN];
2650 static DEFINE_SPINLOCK(cpuset_buffer_lock);
David Rientjes75aa1992009-01-06 14:39:01 -08002651
Li Zefanf440d982013-03-01 15:02:15 +08002652 struct cgroup *cgrp = task_cs(tsk)->css.cgroup;
2653
Li Zefancfb59662013-03-12 10:28:39 +08002654 rcu_read_lock();
David Rientjes75aa1992009-01-06 14:39:01 -08002655 spin_lock(&cpuset_buffer_lock);
Li Zefan63f43f52013-01-25 16:08:01 +08002656
David Rientjes75aa1992009-01-06 14:39:01 -08002657 nodelist_scnprintf(cpuset_nodelist, CPUSET_NODELIST_LEN,
2658 tsk->mems_allowed);
2659 printk(KERN_INFO "%s cpuset=%s mems_allowed=%s\n",
Li Zefanf440d982013-03-01 15:02:15 +08002660 tsk->comm, cgroup_name(cgrp), cpuset_nodelist);
2661
David Rientjes75aa1992009-01-06 14:39:01 -08002662 spin_unlock(&cpuset_buffer_lock);
Li Zefancfb59662013-03-12 10:28:39 +08002663 rcu_read_unlock();
David Rientjes75aa1992009-01-06 14:39:01 -08002664}
2665
Linus Torvalds1da177e2005-04-16 15:20:36 -07002666/*
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002667 * Collection of memory_pressure is suppressed unless
2668 * this flag is enabled by writing "1" to the special
2669 * cpuset file 'memory_pressure_enabled' in the root cpuset.
2670 */
2671
Paul Jacksonc5b2aff2006-01-08 01:01:51 -08002672int cpuset_memory_pressure_enabled __read_mostly;
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002673
2674/**
2675 * cpuset_memory_pressure_bump - keep stats of per-cpuset reclaims.
2676 *
2677 * Keep a running average of the rate of synchronous (direct)
2678 * page reclaim efforts initiated by tasks in each cpuset.
2679 *
2680 * This represents the rate at which some task in the cpuset
2681 * ran low on memory on all nodes it was allowed to use, and
2682 * had to enter the kernels page reclaim code in an effort to
2683 * create more free memory by tossing clean pages or swapping
2684 * or writing dirty pages.
2685 *
2686 * Display to user space in the per-cpuset read-only file
2687 * "memory_pressure". Value displayed is an integer
2688 * representing the recent rate of entry into the synchronous
2689 * (direct) page reclaim by any task attached to the cpuset.
2690 **/
2691
2692void __cpuset_memory_pressure_bump(void)
2693{
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002694 task_lock(current);
Paul Menage8793d852007-10-18 23:39:39 -07002695 fmeter_markevent(&task_cs(current)->fmeter);
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002696 task_unlock(current);
2697}
2698
Paul Menage8793d852007-10-18 23:39:39 -07002699#ifdef CONFIG_PROC_PID_CPUSET
Paul Jackson3e0d98b2006-01-08 01:01:49 -08002700/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002701 * proc_cpuset_show()
2702 * - Print tasks cpuset path into seq_file.
2703 * - Used for /proc/<pid>/cpuset.
Paul Jackson053199e2005-10-30 15:02:30 -08002704 * - No need to task_lock(tsk) on this tsk->cpuset reference, as it
2705 * doesn't really matter if tsk->cpuset changes after we read it,
Tejun Heo5d21cc22013-01-07 08:51:08 -08002706 * and we take cpuset_mutex, keeping cpuset_attach() from changing it
Paul Menage2df167a2008-02-07 00:14:45 -08002707 * anyway.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002708 */
Al Viro8d8b97b2013-04-19 23:11:24 -04002709int proc_cpuset_show(struct seq_file *m, void *unused_v)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002710{
Eric W. Biederman13b41b02006-06-26 00:25:56 -07002711 struct pid *pid;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002712 struct task_struct *tsk;
2713 char *buf;
Paul Menage8793d852007-10-18 23:39:39 -07002714 struct cgroup_subsys_state *css;
Eric W. Biederman99f89552006-06-26 00:25:55 -07002715 int retval;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002716
Eric W. Biederman99f89552006-06-26 00:25:55 -07002717 retval = -ENOMEM;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002718 buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
2719 if (!buf)
Eric W. Biederman99f89552006-06-26 00:25:55 -07002720 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002721
Eric W. Biederman99f89552006-06-26 00:25:55 -07002722 retval = -ESRCH;
Eric W. Biederman13b41b02006-06-26 00:25:56 -07002723 pid = m->private;
2724 tsk = get_pid_task(pid, PIDTYPE_PID);
Eric W. Biederman99f89552006-06-26 00:25:55 -07002725 if (!tsk)
2726 goto out_free;
2727
Li Zefan27e89ae2013-01-15 14:10:57 +08002728 rcu_read_lock();
Tejun Heo8af01f52013-08-08 20:11:22 -04002729 css = task_css(tsk, cpuset_subsys_id);
Paul Menage8793d852007-10-18 23:39:39 -07002730 retval = cgroup_path(css->cgroup, buf, PAGE_SIZE);
Li Zefan27e89ae2013-01-15 14:10:57 +08002731 rcu_read_unlock();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002732 if (retval < 0)
Li Zefan27e89ae2013-01-15 14:10:57 +08002733 goto out_put_task;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002734 seq_puts(m, buf);
2735 seq_putc(m, '\n');
Li Zefan27e89ae2013-01-15 14:10:57 +08002736out_put_task:
Eric W. Biederman99f89552006-06-26 00:25:55 -07002737 put_task_struct(tsk);
2738out_free:
Linus Torvalds1da177e2005-04-16 15:20:36 -07002739 kfree(buf);
Eric W. Biederman99f89552006-06-26 00:25:55 -07002740out:
Linus Torvalds1da177e2005-04-16 15:20:36 -07002741 return retval;
2742}
Paul Menage8793d852007-10-18 23:39:39 -07002743#endif /* CONFIG_PROC_PID_CPUSET */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002744
Heiko Carstensd01d4822009-09-21 11:06:27 +02002745/* Display task mems_allowed in /proc/<pid>/status file. */
Eric W. Biedermandf5f8312008-02-08 04:18:33 -08002746void cpuset_task_status_allowed(struct seq_file *m, struct task_struct *task)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002747{
Eric W. Biedermandf5f8312008-02-08 04:18:33 -08002748 seq_printf(m, "Mems_allowed:\t");
Lai Jiangshan30e8e132008-10-18 20:28:20 -07002749 seq_nodemask(m, &task->mems_allowed);
Eric W. Biedermandf5f8312008-02-08 04:18:33 -08002750 seq_printf(m, "\n");
Mike Travis39106dc2008-04-08 11:43:03 -07002751 seq_printf(m, "Mems_allowed_list:\t");
Lai Jiangshan30e8e132008-10-18 20:28:20 -07002752 seq_nodemask_list(m, &task->mems_allowed);
Mike Travis39106dc2008-04-08 11:43:03 -07002753 seq_printf(m, "\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -07002754}