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1#define pr_fmt(fmt) "%s: " fmt "\n", __func__
2
3#include <linux/kernel.h>
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4#include <linux/sched.h>
5#include <linux/wait.h>
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6#include <linux/percpu-refcount.h>
7
8/*
9 * Initially, a percpu refcount is just a set of percpu counters. Initially, we
10 * don't try to detect the ref hitting 0 - which means that get/put can just
11 * increment or decrement the local counter. Note that the counter on a
12 * particular cpu can (and will) wrap - this is fine, when we go to shutdown the
13 * percpu counters will all sum to the correct value
14 *
bdb428c8 15 * (More precisely: because modular arithmetic is commutative the sum of all the
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16 * percpu_count vars will be equal to what it would have been if all the gets
17 * and puts were done to a single integer, even if some of the percpu integers
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18 * overflow or underflow).
19 *
20 * The real trick to implementing percpu refcounts is shutdown. We can't detect
21 * the ref hitting 0 on every put - this would require global synchronization
22 * and defeat the whole purpose of using percpu refs.
23 *
24 * What we do is require the user to keep track of the initial refcount; we know
25 * the ref can't hit 0 before the user drops the initial ref, so as long as we
26 * convert to non percpu mode before the initial ref is dropped everything
27 * works.
28 *
29 * Converting to non percpu mode is done with some RCUish stuff in
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30 * percpu_ref_kill. Additionally, we need a bias value so that the
31 * atomic_long_t can't hit 0 before we've added up all the percpu refs.
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32 */
33
eecc16ba 34#define PERCPU_COUNT_BIAS (1LU << (BITS_PER_LONG - 1))
215e262f 35
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36static DECLARE_WAIT_QUEUE_HEAD(percpu_ref_switch_waitq);
37
eecc16ba 38static unsigned long __percpu *percpu_count_ptr(struct percpu_ref *ref)
eae7975d 39{
eecc16ba 40 return (unsigned long __percpu *)
27344a90 41 (ref->percpu_count_ptr & ~__PERCPU_REF_ATOMIC_DEAD);
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42}
43
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44/**
45 * percpu_ref_init - initialize a percpu refcount
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46 * @ref: percpu_ref to initialize
47 * @release: function which will be called when refcount hits 0
2aad2a86 48 * @flags: PERCPU_REF_INIT_* flags
a34375ef 49 * @gfp: allocation mask to use
215e262f 50 *
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51 * Initializes @ref. If @flags is zero, @ref starts in percpu mode with a
52 * refcount of 1; analagous to atomic_long_set(ref, 1). See the
53 * definitions of PERCPU_REF_INIT_* flags for flag behaviors.
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54 *
55 * Note that @release must not sleep - it may potentially be called from RCU
56 * callback context by percpu_ref_kill().
57 */
a34375ef 58int percpu_ref_init(struct percpu_ref *ref, percpu_ref_func_t *release,
2aad2a86 59 unsigned int flags, gfp_t gfp)
215e262f 60{
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61 size_t align = max_t(size_t, 1 << __PERCPU_REF_FLAG_BITS,
62 __alignof__(unsigned long));
2aad2a86 63 unsigned long start_count = 0;
215e262f 64
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65 ref->percpu_count_ptr = (unsigned long)
66 __alloc_percpu_gfp(sizeof(unsigned long), align, gfp);
eecc16ba 67 if (!ref->percpu_count_ptr)
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68 return -ENOMEM;
69
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70 ref->force_atomic = flags & PERCPU_REF_INIT_ATOMIC;
71
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72 if (flags & (PERCPU_REF_INIT_ATOMIC | PERCPU_REF_INIT_DEAD))
73 ref->percpu_count_ptr |= __PERCPU_REF_ATOMIC;
74 else
75 start_count += PERCPU_COUNT_BIAS;
76
77 if (flags & PERCPU_REF_INIT_DEAD)
78 ref->percpu_count_ptr |= __PERCPU_REF_DEAD;
79 else
80 start_count++;
81
82 atomic_long_set(&ref->count, start_count);
83
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84 ref->release = release;
85 return 0;
86}
5e9dd373 87EXPORT_SYMBOL_GPL(percpu_ref_init);
215e262f 88
bc497bd3 89/**
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90 * percpu_ref_exit - undo percpu_ref_init()
91 * @ref: percpu_ref to exit
bc497bd3 92 *
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93 * This function exits @ref. The caller is responsible for ensuring that
94 * @ref is no longer in active use. The usual places to invoke this
95 * function from are the @ref->release() callback or in init failure path
96 * where percpu_ref_init() succeeded but other parts of the initialization
97 * of the embedding object failed.
bc497bd3 98 */
9a1049da 99void percpu_ref_exit(struct percpu_ref *ref)
bc497bd3 100{
eecc16ba 101 unsigned long __percpu *percpu_count = percpu_count_ptr(ref);
bc497bd3 102
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103 if (percpu_count) {
104 free_percpu(percpu_count);
27344a90 105 ref->percpu_count_ptr = __PERCPU_REF_ATOMIC_DEAD;
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106 }
107}
9a1049da 108EXPORT_SYMBOL_GPL(percpu_ref_exit);
bc497bd3 109
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110static void percpu_ref_call_confirm_rcu(struct rcu_head *rcu)
111{
112 struct percpu_ref *ref = container_of(rcu, struct percpu_ref, rcu);
113
114 ref->confirm_switch(ref);
115 ref->confirm_switch = NULL;
116 wake_up_all(&percpu_ref_switch_waitq);
117
118 /* drop ref from percpu_ref_switch_to_atomic() */
119 percpu_ref_put(ref);
120}
121
122static void percpu_ref_switch_to_atomic_rcu(struct rcu_head *rcu)
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123{
124 struct percpu_ref *ref = container_of(rcu, struct percpu_ref, rcu);
eecc16ba 125 unsigned long __percpu *percpu_count = percpu_count_ptr(ref);
e625305b 126 unsigned long count = 0;
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127 int cpu;
128
215e262f 129 for_each_possible_cpu(cpu)
eecc16ba 130 count += *per_cpu_ptr(percpu_count, cpu);
215e262f 131
eecc16ba 132 pr_debug("global %ld percpu %ld",
e625305b 133 atomic_long_read(&ref->count), (long)count);
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134
135 /*
136 * It's crucial that we sum the percpu counters _before_ adding the sum
137 * to &ref->count; since gets could be happening on one cpu while puts
138 * happen on another, adding a single cpu's count could cause
139 * @ref->count to hit 0 before we've got a consistent value - but the
140 * sum of all the counts will be consistent and correct.
141 *
142 * Subtracting the bias value then has to happen _after_ adding count to
143 * &ref->count; we need the bias value to prevent &ref->count from
144 * reaching 0 before we add the percpu counts. But doing it at the same
145 * time is equivalent and saves us atomic operations:
146 */
eecc16ba 147 atomic_long_add((long)count - PERCPU_COUNT_BIAS, &ref->count);
215e262f 148
e625305b 149 WARN_ONCE(atomic_long_read(&ref->count) <= 0,
490c79a6 150 "percpu ref (%pf) <= 0 (%ld) after switching to atomic",
e625305b 151 ref->release, atomic_long_read(&ref->count));
687b0ad2 152
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153 /* @ref is viewed as dead on all CPUs, send out switch confirmation */
154 percpu_ref_call_confirm_rcu(rcu);
155}
dbece3a0 156
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157static void percpu_ref_noop_confirm_switch(struct percpu_ref *ref)
158{
159}
160
161static void __percpu_ref_switch_to_atomic(struct percpu_ref *ref,
162 percpu_ref_func_t *confirm_switch)
163{
164 if (!(ref->percpu_count_ptr & __PERCPU_REF_ATOMIC)) {
165 /* switching from percpu to atomic */
166 ref->percpu_count_ptr |= __PERCPU_REF_ATOMIC;
167
168 /*
169 * Non-NULL ->confirm_switch is used to indicate that
170 * switching is in progress. Use noop one if unspecified.
171 */
172 WARN_ON_ONCE(ref->confirm_switch);
173 ref->confirm_switch =
174 confirm_switch ?: percpu_ref_noop_confirm_switch;
175
176 percpu_ref_get(ref); /* put after confirmation */
177 call_rcu_sched(&ref->rcu, percpu_ref_switch_to_atomic_rcu);
178 } else if (confirm_switch) {
179 /*
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180 * Somebody else already set ATOMIC. Wait for its
181 * completion and invoke @confirm_switch() directly.
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182 */
183 wait_event(percpu_ref_switch_waitq, !ref->confirm_switch);
a2f5630c 184 confirm_switch(ref);
490c79a6 185 }
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186}
187
188/**
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189 * percpu_ref_switch_to_atomic - switch a percpu_ref to atomic mode
190 * @ref: percpu_ref to switch to atomic mode
191 * @confirm_switch: optional confirmation callback
215e262f 192 *
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193 * There's no reason to use this function for the usual reference counting.
194 * Use percpu_ref_kill[_and_confirm]().
195 *
196 * Schedule switching of @ref to atomic mode. All its percpu counts will
197 * be collected to the main atomic counter. On completion, when all CPUs
198 * are guaraneed to be in atomic mode, @confirm_switch, which may not
199 * block, is invoked. This function may be invoked concurrently with all
200 * the get/put operations and can safely be mixed with kill and reinit
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201 * operations. Note that @ref will stay in atomic mode across kill/reinit
202 * cycles until percpu_ref_switch_to_percpu() is called.
215e262f 203 *
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204 * This function normally doesn't block and can be called from any context
205 * but it may block if @confirm_kill is specified and @ref is already in
206 * the process of switching to atomic mode. In such cases, @confirm_switch
207 * will be invoked after the switching is complete.
215e262f 208 */
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209void percpu_ref_switch_to_atomic(struct percpu_ref *ref,
210 percpu_ref_func_t *confirm_switch)
215e262f 211{
1cae13e7 212 ref->force_atomic = true;
490c79a6 213 __percpu_ref_switch_to_atomic(ref, confirm_switch);
215e262f 214}
a2237370 215
f47ad457 216static void __percpu_ref_switch_to_percpu(struct percpu_ref *ref)
a2237370 217{
eecc16ba 218 unsigned long __percpu *percpu_count = percpu_count_ptr(ref);
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219 int cpu;
220
eecc16ba 221 BUG_ON(!percpu_count);
a2237370 222
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223 if (!(ref->percpu_count_ptr & __PERCPU_REF_ATOMIC))
224 return;
225
226 wait_event(percpu_ref_switch_waitq, !ref->confirm_switch);
227
228 atomic_long_add(PERCPU_COUNT_BIAS, &ref->count);
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229
230 /*
231 * Restore per-cpu operation. smp_store_release() is paired with
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232 * smp_read_barrier_depends() in __ref_is_percpu() and guarantees
233 * that the zeroing is visible to all percpu accesses which can see
f47ad457 234 * the following __PERCPU_REF_ATOMIC clearing.
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235 */
236 for_each_possible_cpu(cpu)
eecc16ba 237 *per_cpu_ptr(percpu_count, cpu) = 0;
a2237370 238
eecc16ba 239 smp_store_release(&ref->percpu_count_ptr,
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240 ref->percpu_count_ptr & ~__PERCPU_REF_ATOMIC);
241}
242
243/**
244 * percpu_ref_switch_to_percpu - switch a percpu_ref to percpu mode
245 * @ref: percpu_ref to switch to percpu mode
246 *
247 * There's no reason to use this function for the usual reference counting.
248 * To re-use an expired ref, use percpu_ref_reinit().
249 *
250 * Switch @ref to percpu mode. This function may be invoked concurrently
251 * with all the get/put operations and can safely be mixed with kill and
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252 * reinit operations. This function reverses the sticky atomic state set
253 * by PERCPU_REF_INIT_ATOMIC or percpu_ref_switch_to_atomic(). If @ref is
254 * dying or dead, the actual switching takes place on the following
255 * percpu_ref_reinit().
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256 *
257 * This function normally doesn't block and can be called from any context
258 * but it may block if @ref is in the process of switching to atomic mode
259 * by percpu_ref_switch_atomic().
260 */
261void percpu_ref_switch_to_percpu(struct percpu_ref *ref)
262{
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263 ref->force_atomic = false;
264
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265 /* a dying or dead ref can't be switched to percpu mode w/o reinit */
266 if (!(ref->percpu_count_ptr & __PERCPU_REF_DEAD))
267 __percpu_ref_switch_to_percpu(ref);
a2237370 268}
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269
270/**
271 * percpu_ref_kill_and_confirm - drop the initial ref and schedule confirmation
272 * @ref: percpu_ref to kill
273 * @confirm_kill: optional confirmation callback
274 *
275 * Equivalent to percpu_ref_kill() but also schedules kill confirmation if
276 * @confirm_kill is not NULL. @confirm_kill, which may not block, will be
277 * called after @ref is seen as dead from all CPUs at which point all
278 * further invocations of percpu_ref_tryget_live() will fail. See
279 * percpu_ref_tryget_live() for details.
280 *
281 * This function normally doesn't block and can be called from any context
f47ad457 282 * but it may block if @confirm_kill is specified and @ref is in the
a2f5630c 283 * process of switching to atomic mode by percpu_ref_switch_to_atomic().
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284 */
285void percpu_ref_kill_and_confirm(struct percpu_ref *ref,
286 percpu_ref_func_t *confirm_kill)
287{
288 WARN_ONCE(ref->percpu_count_ptr & __PERCPU_REF_DEAD,
289 "%s called more than once on %pf!", __func__, ref->release);
290
291 ref->percpu_count_ptr |= __PERCPU_REF_DEAD;
292 __percpu_ref_switch_to_atomic(ref, confirm_kill);
293 percpu_ref_put(ref);
294}
295EXPORT_SYMBOL_GPL(percpu_ref_kill_and_confirm);
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296
297/**
298 * percpu_ref_reinit - re-initialize a percpu refcount
299 * @ref: perpcu_ref to re-initialize
300 *
301 * Re-initialize @ref so that it's in the same state as when it finished
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302 * percpu_ref_init() ignoring %PERCPU_REF_INIT_DEAD. @ref must have been
303 * initialized successfully and reached 0 but not exited.
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304 *
305 * Note that percpu_ref_tryget[_live]() are safe to perform on @ref while
306 * this function is in progress.
307 */
308void percpu_ref_reinit(struct percpu_ref *ref)
309{
310 WARN_ON_ONCE(!percpu_ref_is_zero(ref));
311
312 ref->percpu_count_ptr &= ~__PERCPU_REF_DEAD;
313 percpu_ref_get(ref);
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314 if (!ref->force_atomic)
315 __percpu_ref_switch_to_percpu(ref);
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316}
317EXPORT_SYMBOL_GPL(percpu_ref_reinit);