/root/doris/be/src/gutil/atomic_refcount.h
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1 | | // Copyright 2008 Google Inc. |
2 | | // All rights reserved. |
3 | | |
4 | | // Atomic increment and decrement for reference counting. |
5 | | // For atomic operations on statistics counters and sequence numbers, |
6 | | // see atomic_stats_counter.h and atomic_sequence_num.h respectively. |
7 | | |
8 | | // Some clients use atomic operations for reference counting. |
9 | | // you use one of them: |
10 | | // util/refcount/reference_counted.h |
11 | | // util/gtl/refcounted_ptr.h |
12 | | // util/gtl/shared_ptr.h |
13 | | // Alternatively, use a Mutex to maintain your reference count. |
14 | | // If you really must build your own reference counts with atomic operations, |
15 | | // use the following routines in the way suggested by this example: |
16 | | // AtomicWord ref_count_; // remember to initialize this to 0 |
17 | | // ... |
18 | | // void Ref() { |
19 | | // base::RefCountInc(&this->ref_count_); |
20 | | // } |
21 | | // void Unref() { |
22 | | // if (!base::RefCountDec(&this->ref_count_)) { |
23 | | // delete this; |
24 | | // } |
25 | | // } |
26 | | // Using these routines (rather than the ones in atomicops.h) will provide the |
27 | | // correct semantics; in particular, the memory ordering needed to make |
28 | | // reference counting work will be guaranteed. |
29 | | // You need not declare the reference count word "volatile". After |
30 | | // initialization you should use the word only via the routines below; the |
31 | | // "volatile" in the signatures below is for backwards compatibility. |
32 | | // |
33 | | // If you need to do something very different from this, use a Mutex. |
34 | | |
35 | | #pragma once |
36 | | |
37 | | #include <glog/logging.h> |
38 | | |
39 | | #include "gutil/atomicops.h" |
40 | | #include "gutil/integral_types.h" |
41 | | #include "gutil/logging-inl.h" |
42 | | |
43 | | namespace base { |
44 | | |
45 | | // These calls are available for both Atomic32, and AtomicWord types, |
46 | | // and also for base::subtle::Atomic64 if available on the platform. |
47 | | |
48 | | // Normally, clients are expected to use RefCountInc/RefCountDec. |
49 | | // In rare cases, it may be necessary to adjust the reference count by |
50 | | // more than 1, in which case they may use RefCountIncN/RefCountDecN. |
51 | | |
52 | | // Increment a reference count by "increment", which must exceed 0. |
53 | 5.91k | inline void RefCountIncN(volatile Atomic32* ptr, Atomic32 increment) { |
54 | 5.91k | DCHECK_GT(increment, 0); |
55 | 5.91k | base::subtle::NoBarrier_AtomicIncrement(ptr, increment); |
56 | 5.91k | } |
57 | | |
58 | | // Decrement a reference count by "decrement", which must exceed 0, |
59 | | // and return whether the result is non-zero. |
60 | | // Insert barriers to ensure that state written before the reference count |
61 | | // became zero will be visible to a thread that has just made the count zero. |
62 | 5.89k | inline bool RefCountDecN(volatile Atomic32* ptr, Atomic32 decrement) { |
63 | 5.89k | DCHECK_GT(decrement, 0); |
64 | 5.89k | bool res = base::subtle::Barrier_AtomicIncrement(ptr, -decrement) != 0; |
65 | 5.89k | return res; |
66 | 5.89k | } |
67 | | |
68 | | // Increment a reference count by 1. |
69 | 5.91k | inline void RefCountInc(volatile Atomic32* ptr) { |
70 | 5.91k | base::RefCountIncN(ptr, 1); |
71 | 5.91k | } |
72 | | |
73 | | // Decrement a reference count by 1 and return whether the result is non-zero. |
74 | | // Insert barriers to ensure that state written before the reference count |
75 | | // became zero will be visible to a thread that has just made the count zero. |
76 | 5.89k | inline bool RefCountDec(volatile Atomic32* ptr) { |
77 | 5.89k | return base::RefCountDecN(ptr, 1); |
78 | 5.89k | } |
79 | | |
80 | | // Return whether the reference count is one. |
81 | | // If the reference count is used in the conventional way, a |
82 | | // reference count of 1 implies that the current thread owns the |
83 | | // reference and no other thread shares it. |
84 | | // This call performs the test for a reference count of one, and |
85 | | // performs the memory barrier needed for the owning thread |
86 | | // to act on the object, knowing that it has exclusive access to the |
87 | | // object. |
88 | 0 | inline bool RefCountIsOne(const volatile Atomic32* ptr) { |
89 | 0 | return base::subtle::Acquire_Load(ptr) == 1; |
90 | 0 | } |
91 | | |
92 | | // Return whether the reference count is zero. With conventional object |
93 | | // referencing counting, the object will be destroyed, so the reference count |
94 | | // should never be zero. Hence this is generally used for a debug check. |
95 | 5.89k | inline bool RefCountIsZero(const volatile Atomic32* ptr) { |
96 | 5.89k | return subtle::Acquire_Load(ptr) == 0; |
97 | 5.89k | } |
98 | | |
99 | | #if BASE_HAS_ATOMIC64 |
100 | | // Implementations for Atomic64, if available. |
101 | 0 | inline void RefCountIncN(volatile base::subtle::Atomic64* ptr, base::subtle::Atomic64 increment) { |
102 | 0 | DCHECK_GT(increment, 0); |
103 | 0 | base::subtle::NoBarrier_AtomicIncrement(ptr, increment); |
104 | 0 | } |
105 | 0 | inline bool RefCountDecN(volatile base::subtle::Atomic64* ptr, base::subtle::Atomic64 decrement) { |
106 | 0 | DCHECK_GT(decrement, 0); |
107 | 0 | return base::subtle::Barrier_AtomicIncrement(ptr, -decrement) != 0; |
108 | 0 | } |
109 | 0 | inline void RefCountInc(volatile base::subtle::Atomic64* ptr) { |
110 | 0 | base::RefCountIncN(ptr, 1); |
111 | 0 | } |
112 | 0 | inline bool RefCountDec(volatile base::subtle::Atomic64* ptr) { |
113 | 0 | return base::RefCountDecN(ptr, 1); |
114 | 0 | } |
115 | 0 | inline bool RefCountIsOne(const volatile base::subtle::Atomic64* ptr) { |
116 | 0 | return base::subtle::Acquire_Load(ptr) == 1; |
117 | 0 | } |
118 | 0 | inline bool RefCountIsZero(const volatile base::subtle::Atomic64* ptr) { |
119 | 0 | return base::subtle::Acquire_Load(ptr) == 0; |
120 | 0 | } |
121 | | #endif |
122 | | |
123 | | #ifdef AtomicWordCastType |
124 | | // Implementations for AtomicWord, if it's a different type from the above. |
125 | | inline void RefCountIncN(volatile AtomicWord* ptr, AtomicWord increment) { |
126 | | base::RefCountIncN(reinterpret_cast<volatile AtomicWordCastType*>(ptr), increment); |
127 | | } |
128 | | inline bool RefCountDecN(volatile AtomicWord* ptr, AtomicWord decrement) { |
129 | | return base::RefCountDecN(reinterpret_cast<volatile AtomicWordCastType*>(ptr), decrement); |
130 | | } |
131 | | inline void RefCountInc(volatile AtomicWord* ptr) { |
132 | | base::RefCountIncN(ptr, 1); |
133 | | } |
134 | | inline bool RefCountDec(volatile AtomicWord* ptr) { |
135 | | return base::RefCountDecN(ptr, 1); |
136 | | } |
137 | | inline bool RefCountIsOne(const volatile AtomicWord* ptr) { |
138 | | return base::subtle::Acquire_Load(reinterpret_cast<const volatile AtomicWordCastType*>(ptr)) == |
139 | | 1; |
140 | | } |
141 | | inline bool RefCountIsZero(const volatile AtomicWord* ptr) { |
142 | | return base::subtle::Acquire_Load(reinterpret_cast<const volatile AtomicWordCastType*>(ptr)) == |
143 | | 0; |
144 | | } |
145 | | #endif |
146 | | |
147 | | } // namespace base |