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b2441318 1/* SPDX-License-Identifier: GPL-2.0 */
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2/*
3 * Percpu refcounts:
4 * (C) 2012 Google, Inc.
5 * Author: Kent Overstreet <koverstreet@google.com>
6 *
7 * This implements a refcount with similar semantics to atomic_t - atomic_inc(),
8 * atomic_dec_and_test() - but percpu.
9 *
10 * There's one important difference between percpu refs and normal atomic_t
11 * refcounts; you have to keep track of your initial refcount, and then when you
12 * start shutting down you call percpu_ref_kill() _before_ dropping the initial
13 * refcount.
14 *
15 * The refcount will have a range of 0 to ((1U << 31) - 1), i.e. one bit less
16 * than an atomic_t - this is because of the way shutdown works, see
eecc16ba 17 * percpu_ref_kill()/PERCPU_COUNT_BIAS.
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18 *
19 * Before you call percpu_ref_kill(), percpu_ref_put() does not check for the
20 * refcount hitting 0 - it can't, if it was in percpu mode. percpu_ref_kill()
21 * puts the ref back in single atomic_t mode, collecting the per cpu refs and
22 * issuing the appropriate barriers, and then marks the ref as shutting down so
23 * that percpu_ref_put() will check for the ref hitting 0. After it returns,
24 * it's safe to drop the initial ref.
25 *
26 * USAGE:
27 *
28 * See fs/aio.c for some example usage; it's used there for struct kioctx, which
29 * is created when userspaces calls io_setup(), and destroyed when userspace
30 * calls io_destroy() or the process exits.
31 *
32 * In the aio code, kill_ioctx() is called when we wish to destroy a kioctx; it
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33 * removes the kioctx from the proccess's table of kioctxs and kills percpu_ref.
34 * After that, there can't be any new users of the kioctx (from lookup_ioctx())
35 * and it's then safe to drop the initial ref with percpu_ref_put().
36 *
37 * Note that the free path, free_ioctx(), needs to go through explicit call_rcu()
38 * to synchronize with RCU protected lookup_ioctx(). percpu_ref operations don't
39 * imply RCU grace periods of any kind and if a user wants to combine percpu_ref
40 * with RCU protection, it must be done explicitly.
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41 *
42 * Code that does a two stage shutdown like this often needs some kind of
43 * explicit synchronization to ensure the initial refcount can only be dropped
44 * once - percpu_ref_kill() does this for you, it returns true once and false if
45 * someone else already called it. The aio code uses it this way, but it's not
46 * necessary if the code has some other mechanism to synchronize teardown.
47 * around.
48 */
49
50#ifndef _LINUX_PERCPU_REFCOUNT_H
51#define _LINUX_PERCPU_REFCOUNT_H
52
53#include <linux/atomic.h>
54#include <linux/kernel.h>
55#include <linux/percpu.h>
56#include <linux/rcupdate.h>
a34375ef 57#include <linux/gfp.h>
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58
59struct percpu_ref;
ac899061 60typedef void (percpu_ref_func_t)(struct percpu_ref *);
215e262f 61
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62/* flags set in the lower bits of percpu_ref->percpu_count_ptr */
63enum {
64 __PERCPU_REF_ATOMIC = 1LU << 0, /* operating in atomic mode */
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65 __PERCPU_REF_DEAD = 1LU << 1, /* (being) killed */
66 __PERCPU_REF_ATOMIC_DEAD = __PERCPU_REF_ATOMIC | __PERCPU_REF_DEAD,
67
68 __PERCPU_REF_FLAG_BITS = 2,
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69};
70
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71/* @flags for percpu_ref_init() */
72enum {
73 /*
74 * Start w/ ref == 1 in atomic mode. Can be switched to percpu
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75 * operation using percpu_ref_switch_to_percpu(). If initialized
76 * with this flag, the ref will stay in atomic mode until
77 * percpu_ref_switch_to_percpu() is invoked on it.
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78 */
79 PERCPU_REF_INIT_ATOMIC = 1 << 0,
80
81 /*
82 * Start dead w/ ref == 0 in atomic mode. Must be revived with
83 * percpu_ref_reinit() before used. Implies INIT_ATOMIC.
84 */
85 PERCPU_REF_INIT_DEAD = 1 << 1,
86};
87
215e262f 88struct percpu_ref {
e625305b 89 atomic_long_t count;
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90 /*
91 * The low bit of the pointer indicates whether the ref is in percpu
9a1049da 92 * mode; if set, then get/put will manipulate the atomic_t.
215e262f 93 */
eecc16ba 94 unsigned long percpu_count_ptr;
ac899061 95 percpu_ref_func_t *release;
9e804d1f 96 percpu_ref_func_t *confirm_switch;
1cae13e7 97 bool force_atomic:1;
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98 struct rcu_head rcu;
99};
100
acac7883 101int __must_check percpu_ref_init(struct percpu_ref *ref,
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102 percpu_ref_func_t *release, unsigned int flags,
103 gfp_t gfp);
9a1049da 104void percpu_ref_exit(struct percpu_ref *ref);
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105void percpu_ref_switch_to_atomic(struct percpu_ref *ref,
106 percpu_ref_func_t *confirm_switch);
210f7cdc 107void percpu_ref_switch_to_atomic_sync(struct percpu_ref *ref);
f47ad457 108void percpu_ref_switch_to_percpu(struct percpu_ref *ref);
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109void percpu_ref_kill_and_confirm(struct percpu_ref *ref,
110 percpu_ref_func_t *confirm_kill);
18c9a6bb 111void percpu_ref_resurrect(struct percpu_ref *ref);
f47ad457 112void percpu_ref_reinit(struct percpu_ref *ref);
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113
114/**
115 * percpu_ref_kill - drop the initial ref
116 * @ref: percpu_ref to kill
117 *
118 * Must be used to drop the initial ref on a percpu refcount; must be called
119 * precisely once before shutdown.
120 *
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121 * Switches @ref into atomic mode before gathering up the percpu counters
122 * and dropping the initial ref.
123 *
124 * There are no implied RCU grace periods between kill and release.
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125 */
126static inline void percpu_ref_kill(struct percpu_ref *ref)
127{
4d414269 128 percpu_ref_kill_and_confirm(ref, NULL);
dbece3a0 129}
215e262f 130
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131/*
132 * Internal helper. Don't use outside percpu-refcount proper. The
133 * function doesn't return the pointer and let the caller test it for NULL
134 * because doing so forces the compiler to generate two conditional
eecc16ba 135 * branches as it can't assume that @ref->percpu_count is not NULL.
eae7975d 136 */
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137static inline bool __ref_is_percpu(struct percpu_ref *ref,
138 unsigned long __percpu **percpu_countp)
eae7975d 139{
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140 unsigned long percpu_ptr;
141
142 /*
143 * The value of @ref->percpu_count_ptr is tested for
144 * !__PERCPU_REF_ATOMIC, which may be set asynchronously, and then
145 * used as a pointer. If the compiler generates a separate fetch
146 * when using it as a pointer, __PERCPU_REF_ATOMIC may be set in
147 * between contaminating the pointer value, meaning that
ed8ebd1d 148 * READ_ONCE() is required when fetching it.
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149 *
150 * The smp_read_barrier_depends() implied by READ_ONCE() pairs
151 * with smp_store_release() in __percpu_ref_switch_to_percpu().
6810e4a3 152 */
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153 percpu_ptr = READ_ONCE(ref->percpu_count_ptr);
154
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155 /*
156 * Theoretically, the following could test just ATOMIC; however,
157 * then we'd have to mask off DEAD separately as DEAD may be
158 * visible without ATOMIC if we race with percpu_ref_kill(). DEAD
159 * implies ATOMIC anyway. Test them together.
160 */
161 if (unlikely(percpu_ptr & __PERCPU_REF_ATOMIC_DEAD))
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162 return false;
163
eecc16ba 164 *percpu_countp = (unsigned long __percpu *)percpu_ptr;
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165 return true;
166}
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167
168/**
e8ea14cc 169 * percpu_ref_get_many - increment a percpu refcount
ac899061 170 * @ref: percpu_ref to get
e8ea14cc 171 * @nr: number of references to get
215e262f 172 *
e8ea14cc 173 * Analogous to atomic_long_add().
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174 *
175 * This function is safe to call as long as @ref is between init and exit.
176 */
e8ea14cc 177static inline void percpu_ref_get_many(struct percpu_ref *ref, unsigned long nr)
215e262f 178{
eecc16ba 179 unsigned long __percpu *percpu_count;
215e262f 180
a4244454 181 rcu_read_lock_sched();
215e262f 182
9e804d1f 183 if (__ref_is_percpu(ref, &percpu_count))
e8ea14cc 184 this_cpu_add(*percpu_count, nr);
215e262f 185 else
e8ea14cc 186 atomic_long_add(nr, &ref->count);
215e262f 187
a4244454 188 rcu_read_unlock_sched();
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189}
190
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191/**
192 * percpu_ref_get - increment a percpu refcount
193 * @ref: percpu_ref to get
194 *
195 * Analagous to atomic_long_inc().
196 *
197 * This function is safe to call as long as @ref is between init and exit.
198 */
199static inline void percpu_ref_get(struct percpu_ref *ref)
200{
201 percpu_ref_get_many(ref, 1);
202}
203
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204/**
205 * percpu_ref_tryget - try to increment a percpu refcount
206 * @ref: percpu_ref to try-get
207 *
208 * Increment a percpu refcount unless its count already reached zero.
209 * Returns %true on success; %false on failure.
210 *
6251f997 211 * This function is safe to call as long as @ref is between init and exit.
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212 */
213static inline bool percpu_ref_tryget(struct percpu_ref *ref)
214{
eecc16ba 215 unsigned long __percpu *percpu_count;
966d2b04 216 bool ret;
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217
218 rcu_read_lock_sched();
219
9e804d1f 220 if (__ref_is_percpu(ref, &percpu_count)) {
eecc16ba 221 this_cpu_inc(*percpu_count);
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222 ret = true;
223 } else {
e625305b 224 ret = atomic_long_inc_not_zero(&ref->count);
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225 }
226
227 rcu_read_unlock_sched();
228
229 return ret;
230}
231
dbece3a0 232/**
2070d50e 233 * percpu_ref_tryget_live - try to increment a live percpu refcount
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234 * @ref: percpu_ref to try-get
235 *
236 * Increment a percpu refcount unless it has already been killed. Returns
237 * %true on success; %false on failure.
238 *
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239 * Completion of percpu_ref_kill() in itself doesn't guarantee that this
240 * function will fail. For such guarantee, percpu_ref_kill_and_confirm()
241 * should be used. After the confirm_kill callback is invoked, it's
242 * guaranteed that no new reference will be given out by
243 * percpu_ref_tryget_live().
4fb6e250 244 *
6251f997 245 * This function is safe to call as long as @ref is between init and exit.
dbece3a0 246 */
2070d50e 247static inline bool percpu_ref_tryget_live(struct percpu_ref *ref)
dbece3a0 248{
eecc16ba 249 unsigned long __percpu *percpu_count;
966d2b04 250 bool ret = false;
dbece3a0 251
a4244454 252 rcu_read_lock_sched();
dbece3a0 253
9e804d1f 254 if (__ref_is_percpu(ref, &percpu_count)) {
eecc16ba 255 this_cpu_inc(*percpu_count);
dbece3a0 256 ret = true;
6810e4a3 257 } else if (!(ref->percpu_count_ptr & __PERCPU_REF_DEAD)) {
490c79a6 258 ret = atomic_long_inc_not_zero(&ref->count);
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259 }
260
a4244454 261 rcu_read_unlock_sched();
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262
263 return ret;
264}
265
215e262f 266/**
e8ea14cc 267 * percpu_ref_put_many - decrement a percpu refcount
ac899061 268 * @ref: percpu_ref to put
e8ea14cc 269 * @nr: number of references to put
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270 *
271 * Decrement the refcount, and if 0, call the release function (which was passed
272 * to percpu_ref_init())
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273 *
274 * This function is safe to call as long as @ref is between init and exit.
215e262f 275 */
e8ea14cc 276static inline void percpu_ref_put_many(struct percpu_ref *ref, unsigned long nr)
215e262f 277{
eecc16ba 278 unsigned long __percpu *percpu_count;
215e262f 279
a4244454 280 rcu_read_lock_sched();
215e262f 281
9e804d1f 282 if (__ref_is_percpu(ref, &percpu_count))
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283 this_cpu_sub(*percpu_count, nr);
284 else if (unlikely(atomic_long_sub_and_test(nr, &ref->count)))
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285 ref->release(ref);
286
a4244454 287 rcu_read_unlock_sched();
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288}
289
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290/**
291 * percpu_ref_put - decrement a percpu refcount
292 * @ref: percpu_ref to put
293 *
294 * Decrement the refcount, and if 0, call the release function (which was passed
295 * to percpu_ref_init())
296 *
297 * This function is safe to call as long as @ref is between init and exit.
298 */
299static inline void percpu_ref_put(struct percpu_ref *ref)
300{
301 percpu_ref_put_many(ref, 1);
302}
303
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304/**
305 * percpu_ref_is_dying - test whether a percpu refcount is dying or dead
306 * @ref: percpu_ref to test
307 *
308 * Returns %true if @ref is dying or dead.
309 *
310 * This function is safe to call as long as @ref is between init and exit
311 * and the caller is responsible for synchronizing against state changes.
312 */
313static inline bool percpu_ref_is_dying(struct percpu_ref *ref)
314{
315 return ref->percpu_count_ptr & __PERCPU_REF_DEAD;
316}
317
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318/**
319 * percpu_ref_is_zero - test whether a percpu refcount reached zero
320 * @ref: percpu_ref to test
321 *
322 * Returns %true if @ref reached zero.
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323 *
324 * This function is safe to call as long as @ref is between init and exit.
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325 */
326static inline bool percpu_ref_is_zero(struct percpu_ref *ref)
327{
eecc16ba 328 unsigned long __percpu *percpu_count;
2d722782 329
9e804d1f 330 if (__ref_is_percpu(ref, &percpu_count))
2d722782 331 return false;
e625305b 332 return !atomic_long_read(&ref->count);
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333}
334
215e262f 335#endif