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1 #include "sched.h"
2 
3 #include <linux/proc_fs.h>
4 #include <linux/seq_file.h>
5 #include <linux/kallsyms.h>
6 #include <linux/utsname.h>
7 #include <linux/security.h>
8 #include <linux/export.h>
9 
10 unsigned int __read_mostly sysctl_sched_autogroup_enabled = 1;
11 static struct autogroup autogroup_default;
12 static atomic_t autogroup_seq_nr;
13 
autogroup_init(struct task_struct * init_task)14 void __init autogroup_init(struct task_struct *init_task)
15 {
16 	autogroup_default.tg = &root_task_group;
17 	kref_init(&autogroup_default.kref);
18 	init_rwsem(&autogroup_default.lock);
19 	init_task->signal->autogroup = &autogroup_default;
20 }
21 
autogroup_free(struct task_group * tg)22 void autogroup_free(struct task_group *tg)
23 {
24 	kfree(tg->autogroup);
25 }
26 
autogroup_destroy(struct kref * kref)27 static inline void autogroup_destroy(struct kref *kref)
28 {
29 	struct autogroup *ag = container_of(kref, struct autogroup, kref);
30 
31 #ifdef CONFIG_RT_GROUP_SCHED
32 	/* We've redirected RT tasks to the root task group... */
33 	ag->tg->rt_se = NULL;
34 	ag->tg->rt_rq = NULL;
35 #endif
36 	sched_offline_group(ag->tg);
37 	sched_destroy_group(ag->tg);
38 }
39 
autogroup_kref_put(struct autogroup * ag)40 static inline void autogroup_kref_put(struct autogroup *ag)
41 {
42 	kref_put(&ag->kref, autogroup_destroy);
43 }
44 
autogroup_kref_get(struct autogroup * ag)45 static inline struct autogroup *autogroup_kref_get(struct autogroup *ag)
46 {
47 	kref_get(&ag->kref);
48 	return ag;
49 }
50 
autogroup_task_get(struct task_struct * p)51 static inline struct autogroup *autogroup_task_get(struct task_struct *p)
52 {
53 	struct autogroup *ag;
54 	unsigned long flags;
55 
56 	if (!lock_task_sighand(p, &flags))
57 		return autogroup_kref_get(&autogroup_default);
58 
59 	ag = autogroup_kref_get(p->signal->autogroup);
60 	unlock_task_sighand(p, &flags);
61 
62 	return ag;
63 }
64 
autogroup_create(void)65 static inline struct autogroup *autogroup_create(void)
66 {
67 	struct autogroup *ag = kzalloc(sizeof(*ag), GFP_KERNEL);
68 	struct task_group *tg;
69 
70 	if (!ag)
71 		goto out_fail;
72 
73 	tg = sched_create_group(&root_task_group);
74 
75 	if (IS_ERR(tg))
76 		goto out_free;
77 
78 	kref_init(&ag->kref);
79 	init_rwsem(&ag->lock);
80 	ag->id = atomic_inc_return(&autogroup_seq_nr);
81 	ag->tg = tg;
82 #ifdef CONFIG_RT_GROUP_SCHED
83 	/*
84 	 * Autogroup RT tasks are redirected to the root task group
85 	 * so we don't have to move tasks around upon policy change,
86 	 * or flail around trying to allocate bandwidth on the fly.
87 	 * A bandwidth exception in __sched_setscheduler() allows
88 	 * the policy change to proceed.
89 	 */
90 	free_rt_sched_group(tg);
91 	tg->rt_se = root_task_group.rt_se;
92 	tg->rt_rq = root_task_group.rt_rq;
93 #endif
94 	tg->autogroup = ag;
95 
96 	sched_online_group(tg, &root_task_group);
97 	return ag;
98 
99 out_free:
100 	kfree(ag);
101 out_fail:
102 	if (printk_ratelimit()) {
103 		printk(KERN_WARNING "autogroup_create: %s failure.\n",
104 			ag ? "sched_create_group()" : "kmalloc()");
105 	}
106 
107 	return autogroup_kref_get(&autogroup_default);
108 }
109 
task_wants_autogroup(struct task_struct * p,struct task_group * tg)110 bool task_wants_autogroup(struct task_struct *p, struct task_group *tg)
111 {
112 	if (tg != &root_task_group)
113 		return false;
114 	/*
115 	 * If we race with autogroup_move_group() the caller can use the old
116 	 * value of signal->autogroup but in this case sched_move_task() will
117 	 * be called again before autogroup_kref_put().
118 	 */
119 	return true;
120 }
121 
122 static void
autogroup_move_group(struct task_struct * p,struct autogroup * ag)123 autogroup_move_group(struct task_struct *p, struct autogroup *ag)
124 {
125 	struct autogroup *prev;
126 	struct task_struct *t;
127 	unsigned long flags;
128 
129 	BUG_ON(!lock_task_sighand(p, &flags));
130 
131 	prev = p->signal->autogroup;
132 	if (prev == ag) {
133 		unlock_task_sighand(p, &flags);
134 		return;
135 	}
136 
137 	p->signal->autogroup = autogroup_kref_get(ag);
138 	/*
139 	 * We can't avoid sched_move_task() after we changed signal->autogroup,
140 	 * this process can already run with task_group() == prev->tg or we can
141 	 * race with cgroup code which can read autogroup = prev under rq->lock.
142 	 * In the latter case for_each_thread() can not miss a migrating thread,
143 	 * cpu_cgroup_attach() must not be possible after cgroup_exit() and it
144 	 * can't be removed from thread list, we hold ->siglock.
145 	 */
146 	for_each_thread(p, t)
147 		sched_move_task(t);
148 
149 	unlock_task_sighand(p, &flags);
150 	autogroup_kref_put(prev);
151 }
152 
153 /* Allocates GFP_KERNEL, cannot be called under any spinlock */
sched_autogroup_create_attach(struct task_struct * p)154 void sched_autogroup_create_attach(struct task_struct *p)
155 {
156 	struct autogroup *ag = autogroup_create();
157 
158 	autogroup_move_group(p, ag);
159 	/* drop extra reference added by autogroup_create() */
160 	autogroup_kref_put(ag);
161 }
162 EXPORT_SYMBOL(sched_autogroup_create_attach);
163 
164 /* Cannot be called under siglock.  Currently has no users */
sched_autogroup_detach(struct task_struct * p)165 void sched_autogroup_detach(struct task_struct *p)
166 {
167 	autogroup_move_group(p, &autogroup_default);
168 }
169 EXPORT_SYMBOL(sched_autogroup_detach);
170 
sched_autogroup_fork(struct signal_struct * sig)171 void sched_autogroup_fork(struct signal_struct *sig)
172 {
173 	sig->autogroup = autogroup_task_get(current);
174 }
175 
sched_autogroup_exit(struct signal_struct * sig)176 void sched_autogroup_exit(struct signal_struct *sig)
177 {
178 	autogroup_kref_put(sig->autogroup);
179 }
180 
setup_autogroup(char * str)181 static int __init setup_autogroup(char *str)
182 {
183 	sysctl_sched_autogroup_enabled = 0;
184 
185 	return 1;
186 }
187 
188 __setup("noautogroup", setup_autogroup);
189 
190 #ifdef CONFIG_PROC_FS
191 
proc_sched_autogroup_set_nice(struct task_struct * p,int nice)192 int proc_sched_autogroup_set_nice(struct task_struct *p, int nice)
193 {
194 	static unsigned long next = INITIAL_JIFFIES;
195 	struct autogroup *ag;
196 	int err;
197 
198 	if (nice < MIN_NICE || nice > MAX_NICE)
199 		return -EINVAL;
200 
201 	err = security_task_setnice(current, nice);
202 	if (err)
203 		return err;
204 
205 	if (nice < 0 && !can_nice(current, nice))
206 		return -EPERM;
207 
208 	/* this is a heavy operation taking global locks.. */
209 	if (!capable(CAP_SYS_ADMIN) && time_before(jiffies, next))
210 		return -EAGAIN;
211 
212 	next = HZ / 10 + jiffies;
213 	ag = autogroup_task_get(p);
214 
215 	down_write(&ag->lock);
216 	err = sched_group_set_shares(ag->tg, prio_to_weight[nice + 20]);
217 	if (!err)
218 		ag->nice = nice;
219 	up_write(&ag->lock);
220 
221 	autogroup_kref_put(ag);
222 
223 	return err;
224 }
225 
proc_sched_autogroup_show_task(struct task_struct * p,struct seq_file * m)226 void proc_sched_autogroup_show_task(struct task_struct *p, struct seq_file *m)
227 {
228 	struct autogroup *ag = autogroup_task_get(p);
229 
230 	if (!task_group_is_autogroup(ag->tg))
231 		goto out;
232 
233 	down_read(&ag->lock);
234 	seq_printf(m, "/autogroup-%ld nice %d\n", ag->id, ag->nice);
235 	up_read(&ag->lock);
236 
237 out:
238 	autogroup_kref_put(ag);
239 }
240 #endif /* CONFIG_PROC_FS */
241 
242 #ifdef CONFIG_SCHED_DEBUG
autogroup_path(struct task_group * tg,char * buf,int buflen)243 int autogroup_path(struct task_group *tg, char *buf, int buflen)
244 {
245 	if (!task_group_is_autogroup(tg))
246 		return 0;
247 
248 	return snprintf(buf, buflen, "%s-%ld", "/autogroup", tg->autogroup->id);
249 }
250 #endif /* CONFIG_SCHED_DEBUG */
251