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1/*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21/*
22 * Copyright (c) 2010, Oracle and/or its affiliates. All rights reserved.
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23 * Copyright (c) 2014, 2015 by Delphix. All rights reserved.
24 * Copyright 2016 The MathWorks, Inc. All rights reserved.
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25 */
26
27/*
28 * A Zero Reference Lock (ZRL) is a reference count that can lock out new
29 * references only when the count is zero and only without waiting if the count
30 * is not already zero. It is similar to a read-write lock in that it allows
31 * multiple readers and only a single writer, but it does not allow a writer to
32 * block while waiting for readers to exit, and therefore the question of
33 * reader/writer priority is moot (no WRWANT bit). Since the equivalent of
34 * rw_enter(&lock, RW_WRITER) is disallowed and only tryenter() is allowed, it
35 * is perfectly safe for the same reader to acquire the same lock multiple
36 * times. The fact that a ZRL is reentrant for readers (through multiple calls
37 * to zrl_add()) makes it convenient for determining whether something is
38 * actively referenced without the fuss of flagging lock ownership across
39 * function calls.
40 */
41#include <sys/zrlock.h>
ea04106b 42#include <sys/trace_zrlock.h>
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43
44/*
45 * A ZRL can be locked only while there are zero references, so ZRL_LOCKED is
46 * treated as zero references.
47 */
e10b0808 48#define ZRL_LOCKED -1
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49#define ZRL_DESTROYED -2
50
51void
52zrl_init(zrlock_t *zrl)
53{
54 mutex_init(&zrl->zr_mtx, NULL, MUTEX_DEFAULT, NULL);
55 zrl->zr_refcount = 0;
56 cv_init(&zrl->zr_cv, NULL, CV_DEFAULT, NULL);
57#ifdef ZFS_DEBUG
58 zrl->zr_owner = NULL;
59 zrl->zr_caller = NULL;
60#endif
61}
62
63void
64zrl_destroy(zrlock_t *zrl)
65{
e10b0808 66 ASSERT0(zrl->zr_refcount);
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67
68 mutex_destroy(&zrl->zr_mtx);
69 zrl->zr_refcount = ZRL_DESTROYED;
70 cv_destroy(&zrl->zr_cv);
71}
72
73void
cae5b340 74zrl_add_impl(zrlock_t *zrl, const char *zc)
572e2857 75{
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76 for (;;) {
77 uint32_t n = (uint32_t)zrl->zr_refcount;
78 while (n != ZRL_LOCKED) {
79 uint32_t cas = atomic_cas_32(
80 (uint32_t *)&zrl->zr_refcount, n, n + 1);
81 if (cas == n) {
82 ASSERT3S((int32_t)n, >=, 0);
572e2857 83#ifdef ZFS_DEBUG
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84 if (zrl->zr_owner == curthread) {
85 DTRACE_PROBE2(zrlock__reentry,
86 zrlock_t *, zrl, uint32_t, n);
87 }
88 zrl->zr_owner = curthread;
89 zrl->zr_caller = zc;
572e2857 90#endif
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91 return;
92 }
93 n = cas;
572e2857 94 }
572e2857 95
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96 mutex_enter(&zrl->zr_mtx);
97 while (zrl->zr_refcount == ZRL_LOCKED) {
98 cv_wait(&zrl->zr_cv, &zrl->zr_mtx);
99 }
100 mutex_exit(&zrl->zr_mtx);
572e2857 101 }
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102}
103
104void
105zrl_remove(zrlock_t *zrl)
106{
107 uint32_t n;
108
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109#ifdef ZFS_DEBUG
110 if (zrl->zr_owner == curthread) {
111 zrl->zr_owner = NULL;
112 zrl->zr_caller = NULL;
113 }
114#endif
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115 n = atomic_dec_32_nv((uint32_t *)&zrl->zr_refcount);
116 ASSERT3S((int32_t)n, >=, 0);
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117}
118
119int
120zrl_tryenter(zrlock_t *zrl)
121{
122 uint32_t n = (uint32_t)zrl->zr_refcount;
123
124 if (n == 0) {
125 uint32_t cas = atomic_cas_32(
126 (uint32_t *)&zrl->zr_refcount, 0, ZRL_LOCKED);
127 if (cas == 0) {
128#ifdef ZFS_DEBUG
e10b0808 129 ASSERT3P(zrl->zr_owner, ==, NULL);
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130 zrl->zr_owner = curthread;
131#endif
132 return (1);
133 }
134 }
135
e10b0808 136 ASSERT3S((int32_t)n, >, ZRL_DESTROYED);
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137
138 return (0);
139}
140
141void
142zrl_exit(zrlock_t *zrl)
143{
e10b0808 144 ASSERT3S(zrl->zr_refcount, ==, ZRL_LOCKED);
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145
146 mutex_enter(&zrl->zr_mtx);
147#ifdef ZFS_DEBUG
e10b0808 148 ASSERT3P(zrl->zr_owner, ==, curthread);
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149 zrl->zr_owner = NULL;
150 membar_producer(); /* make sure the owner store happens first */
151#endif
152 zrl->zr_refcount = 0;
153 cv_broadcast(&zrl->zr_cv);
154 mutex_exit(&zrl->zr_mtx);
155}
156
157int
158zrl_refcount(zrlock_t *zrl)
159{
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160 int n;
161
e10b0808 162 ASSERT3S(zrl->zr_refcount, >, ZRL_DESTROYED);
572e2857 163
d6320ddb 164 n = (int)zrl->zr_refcount;
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165 return (n <= 0 ? 0 : n);
166}
167
168int
169zrl_is_zero(zrlock_t *zrl)
170{
e10b0808 171 ASSERT3S(zrl->zr_refcount, >, ZRL_DESTROYED);
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172
173 return (zrl->zr_refcount <= 0);
174}
175
176int
177zrl_is_locked(zrlock_t *zrl)
178{
e10b0808 179 ASSERT3S(zrl->zr_refcount, >, ZRL_DESTROYED);
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180
181 return (zrl->zr_refcount == ZRL_LOCKED);
182}
183
184#ifdef ZFS_DEBUG
185kthread_t *
186zrl_owner(zrlock_t *zrl)
187{
188 return (zrl->zr_owner);
189}
190#endif
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191
192#if defined(_KERNEL) && defined(HAVE_SPL)
193
cae5b340 194EXPORT_SYMBOL(zrl_add_impl);
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195EXPORT_SYMBOL(zrl_remove);
196
197#endif