C++11 并发指南六( <atomic> 类型详解二 std::atomic ) 介绍了基本的原子类型 std::atomic 的用法,本节我会给你们介绍C++11 标准库中的 std::atomic 针对整形(integral)和指针类型的特化版本作了哪些改进。html
总地来讲,C++11 标准库中的 std::atomic 针对整形(integral)和指针类型的特化版本新增了一些算术运算和逻辑运算操做。具体以下:并发
integral fetch_add(integral, memory_order = memory_order_seq_cst) volatile; integral fetch_add(integral, memory_order = memory_order_seq_cst); integral fetch_sub(integral, memory_order = memory_order_seq_cst) volatile; integral fetch_sub(integral, memory_order = memory_order_seq_cst); integral fetch_and(integral, memory_order = memory_order_seq_cst) volatile; integral fetch_and(integral, memory_order = memory_order_seq_cst); integral fetch_or(integral, memory_order = memory_order_seq_cst) volatile; integral fetch_or(integral, memory_order = memory_order_seq_cst); integral fetch_xor(integral, memory_order = memory_order_seq_cst) volatile; integral fetch_xor(integral, memory_order = memory_order_seq_cst); integral operator++(int) volatile; integral operator++(int); integral operator--(int) volatile; integral operator--(int); integral operator++() volatile; integral operator++(); integral operator--() volatile; integral operator--(); integral operator+=(integral) volatile; integral operator+=(integral); integral operator-=(integral) volatile; integral operator-=(integral); integral operator&=(integral) volatile; integral operator&=(integral); integral operator|=(integral) volatile; integral operator|=(integral); integral operator^=(integral) volatile; integral operator^=(integral);
下面咱们来简单介绍以上的 std::atomic 特化版本的成员函数。函数
if T is integral (1) | T fetch_add (T val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_add (T val, memory_order sync = memory_order_seq_cst) noexcept; |
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if T is pointer (2) | T fetch_add (ptrdiff_t val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_add (ptrdiff_t val, memory_order sync = memory_order_seq_cst) noexcept; |
Memory Order 值 | Memory Order 类型 |
---|---|
memory_order_relaxed | Relaxed |
memory_order_consume | Consume |
memory_order_acquire | Acquire |
memory_order_release | Release |
memory_order_acq_rel | Acquire/Release |
memory_order_seq_cst | Sequentially consistent |
if T is integral (1) | T fetch_sub (T val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_sub (T val, memory_order sync = memory_order_seq_cst) noexcept; |
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if T is pointer (2) | T fetch_sub (ptrdiff_t val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_sub (ptrdiff_t val, memory_order sync = memory_order_seq_cst) noexcept; |
Memory Order 值 | Memory Order 类型 |
---|---|
memory_order_relaxed | Relaxed |
memory_order_consume | Consume |
memory_order_acquire | Acquire |
memory_order_release | Release |
memory_order_acq_rel | Acquire/Release |
memory_order_seq_cst | Sequentially consistent |
T fetch_and (T val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_and (T val, memory_order sync = memory_order_seq_cst) noexcept;
Memory Order 值 | Memory Order 类型 |
---|---|
memory_order_relaxed | Relaxed |
memory_order_consume | Consume |
memory_order_acquire | Acquire |
memory_order_release | Release |
memory_order_acq_rel | Acquire/Release |
memory_order_seq_cst | Sequentially consistent |
T fetch_or (T val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_or (T val, memory_order sync = memory_order_seq_cst) noexcept;
Memory Order 值 | Memory Order 类型 |
---|---|
memory_order_relaxed | Relaxed |
memory_order_consume | Consume |
memory_order_acquire | Acquire |
memory_order_release | Release |
memory_order_acq_rel | Acquire/Release |
memory_order_seq_cst | Sequentially consistent |
T fetch_xor (T val, memory_order sync = memory_order_seq_cst) volatile noexcept; T fetch_xor (T val, memory_order sync = memory_order_seq_cst) noexcept;
Memory Order 值 | Memory Order 类型 |
---|---|
memory_order_relaxed | Relaxed |
memory_order_consume | Consume |
memory_order_acquire | Acquire |
memory_order_release | Release |
memory_order_acq_rel | Acquire/Release |
memory_order_seq_cst | Sequentially consistent |
pre-increment (1) | T operator++() volatile noexcept; T operator++() noexcept; |
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post-increment (2) | T operator++ (int) volatile noexcept; T operator++ (int) noexcept; |
if T is integral (1) | T operator+= (T val) volatile noexcept; T operator+= (T val) noexcept; T operator-= (T val) volatile noexcept; T operator-= (T val) noexcept; T operator&= (T val) volatile noexcept; T operator&= (T val) noexcept; T operator|= (T val) volatile noexcept; T operator|= (T val) noexcept; T operator^= (T val) volatile noexcept; T operator^= (T val) noexcept; |
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if T is pointer (2) | T operator+= (ptrdiff_t val) volatile noexcept; T operator+= (ptrdiff_t val) noexcept; T operator-= (ptrdiff_t val) volatile noexcept; T operator-= (ptrdiff_t val) noexcept; |
以上各个 operator 都会有对应的 fetch_* 操做,详细见下表:post
操做符 | 成员函数 | 支持类型 | |||
---|---|---|---|---|---|
复合赋值 | 等价于 | 整型 | 指针类型 | 其余类型 | |
+ |
atomic::operator+= | atomic::fetch_add | 是 | 是 | 否 |
- |
atomic::operator-= | atomic::fetch_sub | 是 | 是 | 否 |
& |
atomic::operator&= | atomic::fetch_and | 是 | 否 | 否 |
| |
atomic::operator|= | atomic::fetch_or | 是 | 否 | 否 |
^ |
atomic::operator^= | atomic::fetch_xor | 是 | 否 | 否 |
好了,本节先介绍这里,下一节我会介绍 C++11 中 C 风格的原子操做 API。fetch