mirror of
https://github.com/mozilla/gecko-dev.git
synced 2024-11-01 14:45:29 +00:00
fe5445d030
--HG-- extra : rebase_source : 2eb167a1b86a1a93527761a9541ea30ad213785a
296 lines
8.8 KiB
C++
296 lines
8.8 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "mozilla/Assertions.h"
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#include "mozilla/Atomics.h"
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#include <stdint.h>
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using mozilla::Atomic;
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using mozilla::MemoryOrdering;
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using mozilla::Relaxed;
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using mozilla::ReleaseAcquire;
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using mozilla::SequentiallyConsistent;
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#define A(a,b) MOZ_RELEASE_ASSERT(a,b)
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template <typename T, MemoryOrdering Order>
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static void
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TestTypeWithOrdering()
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{
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Atomic<T, Order> atomic(5);
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A(atomic == 5, "Atomic variable did not initialize");
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// Test atomic increment
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A(++atomic == T(6), "Atomic increment did not work");
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A(atomic++ == T(6), "Atomic post-increment did not work");
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A(atomic == T(7), "Atomic post-increment did not work");
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// Test atomic decrement
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A(--atomic == 6, "Atomic decrement did not work");
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A(atomic-- == 6, "Atomic post-decrement did not work");
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A(atomic == 5, "Atomic post-decrement did not work");
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// Test other arithmetic.
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T result;
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result = (atomic += T(5));
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A(atomic == T(10), "Atomic += did not work");
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A(result == T(10), "Atomic += returned the wrong value");
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result = (atomic -= T(3));
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A(atomic == T(7), "Atomic -= did not work");
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A(result == T(7), "Atomic -= returned the wrong value");
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// Test assignment
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result = (atomic = T(5));
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A(atomic == T(5), "Atomic assignment failed");
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A(result == T(5), "Atomic assignment returned the wrong value");
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// Test logical operations.
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result = (atomic ^= T(2));
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A(atomic == T(7), "Atomic ^= did not work");
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A(result == T(7), "Atomic ^= returned the wrong value");
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result = (atomic ^= T(4));
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A(atomic == T(3), "Atomic ^= did not work");
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A(result == T(3), "Atomic ^= returned the wrong value");
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result = (atomic |= T(8));
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A(atomic == T(11), "Atomic |= did not work");
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A(result == T(11), "Atomic |= returned the wrong value");
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result = (atomic |= T(8));
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A(atomic == T(11), "Atomic |= did not work");
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A(result == T(11), "Atomic |= returned the wrong value");
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result = (atomic &= T(12));
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A(atomic == T(8), "Atomic &= did not work");
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A(result == T(8), "Atomic &= returned the wrong value");
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// Test exchange.
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atomic = T(30);
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result = atomic.exchange(42);
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A(atomic == T(42), "Atomic exchange did not work");
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A(result == T(30), "Atomic exchange returned the wrong value");
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// Test CAS.
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atomic = T(1);
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bool boolResult = atomic.compareExchange(0, 2);
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A(!boolResult, "CAS should have returned false.");
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A(atomic == T(1), "CAS shouldn't have done anything.");
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boolResult = atomic.compareExchange(1, 42);
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A(boolResult, "CAS should have succeeded.");
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A(atomic == T(42), "CAS should have changed atomic's value.");
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}
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template<typename T, MemoryOrdering Order>
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static void
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TestPointerWithOrdering()
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{
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T array1[10];
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Atomic<T*, Order> atomic(array1);
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A(atomic == array1, "Atomic variable did not initialize");
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// Test atomic increment
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A(++atomic == array1 + 1, "Atomic increment did not work");
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A(atomic++ == array1 + 1, "Atomic post-increment did not work");
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A(atomic == array1 + 2, "Atomic post-increment did not work");
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// Test atomic decrement
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A(--atomic == array1 + 1, "Atomic decrement did not work");
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A(atomic-- == array1 + 1, "Atomic post-decrement did not work");
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A(atomic == array1, "Atomic post-decrement did not work");
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// Test other arithmetic operations
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T* result;
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result = (atomic += 2);
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A(atomic == array1 + 2, "Atomic += did not work");
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A(result == array1 + 2, "Atomic += returned the wrong value");
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result = (atomic -= 1);
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A(atomic == array1 + 1, "Atomic -= did not work");
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A(result == array1 + 1, "Atomic -= returned the wrong value");
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// Test stores
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result = (atomic = array1);
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A(atomic == array1, "Atomic assignment did not work");
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A(result == array1, "Atomic assignment returned the wrong value");
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// Test exchange
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atomic = array1 + 2;
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result = atomic.exchange(array1);
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A(atomic == array1, "Atomic exchange did not work");
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A(result == array1 + 2, "Atomic exchange returned the wrong value");
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atomic = array1;
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bool boolResult = atomic.compareExchange(array1 + 1, array1 + 2);
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A(!boolResult, "CAS should have returned false.");
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A(atomic == array1, "CAS shouldn't have done anything.");
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boolResult = atomic.compareExchange(array1, array1 + 3);
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A(boolResult, "CAS should have succeeded.");
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A(atomic == array1 + 3, "CAS should have changed atomic's value.");
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}
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enum EnumType
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{
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EnumType_0 = 0,
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EnumType_1 = 1,
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EnumType_2 = 2,
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EnumType_3 = 3
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};
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template<MemoryOrdering Order>
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static void
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TestEnumWithOrdering()
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{
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Atomic<EnumType, Order> atomic(EnumType_2);
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A(atomic == EnumType_2, "Atomic variable did not initialize");
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// Test assignment
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EnumType result;
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result = (atomic = EnumType_3);
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A(atomic == EnumType_3, "Atomic assignment failed");
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A(result == EnumType_3, "Atomic assignment returned the wrong value");
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// Test exchange.
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atomic = EnumType_1;
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result = atomic.exchange(EnumType_2);
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A(atomic == EnumType_2, "Atomic exchange did not work");
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A(result == EnumType_1, "Atomic exchange returned the wrong value");
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// Test CAS.
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atomic = EnumType_1;
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bool boolResult = atomic.compareExchange(EnumType_0, EnumType_2);
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A(!boolResult, "CAS should have returned false.");
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A(atomic == EnumType_1, "CAS shouldn't have done anything.");
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boolResult = atomic.compareExchange(EnumType_1, EnumType_3);
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A(boolResult, "CAS should have succeeded.");
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A(atomic == EnumType_3, "CAS should have changed atomic's value.");
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}
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enum class EnumClass : uint32_t
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{
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Value0 = 0,
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Value1 = 1,
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Value2 = 2,
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Value3 = 3
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};
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template<MemoryOrdering Order>
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static void
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TestEnumClassWithOrdering()
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{
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Atomic<EnumClass, Order> atomic(EnumClass::Value2);
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A(atomic == EnumClass::Value2, "Atomic variable did not initialize");
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// Test assignment
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EnumClass result;
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result = (atomic = EnumClass::Value3);
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A(atomic == EnumClass::Value3, "Atomic assignment failed");
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A(result == EnumClass::Value3, "Atomic assignment returned the wrong value");
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// Test exchange.
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atomic = EnumClass::Value1;
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result = atomic.exchange(EnumClass::Value2);
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A(atomic == EnumClass::Value2, "Atomic exchange did not work");
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A(result == EnumClass::Value1, "Atomic exchange returned the wrong value");
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// Test CAS.
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atomic = EnumClass::Value1;
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bool boolResult = atomic.compareExchange(EnumClass::Value0, EnumClass::Value2);
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A(!boolResult, "CAS should have returned false.");
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A(atomic == EnumClass::Value1, "CAS shouldn't have done anything.");
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boolResult = atomic.compareExchange(EnumClass::Value1, EnumClass::Value3);
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A(boolResult, "CAS should have succeeded.");
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A(atomic == EnumClass::Value3, "CAS should have changed atomic's value.");
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}
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template <MemoryOrdering Order>
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static void
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TestBoolWithOrdering()
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{
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Atomic<bool, Order> atomic(false);
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A(atomic == false, "Atomic variable did not initialize");
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// Test assignment
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bool result;
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result = (atomic = true);
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A(atomic == true, "Atomic assignment failed");
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A(result == true, "Atomic assignment returned the wrong value");
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// Test exchange.
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atomic = false;
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result = atomic.exchange(true);
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A(atomic == true, "Atomic exchange did not work");
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A(result == false, "Atomic exchange returned the wrong value");
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// Test CAS.
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atomic = false;
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bool boolResult = atomic.compareExchange(true, false);
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A(!boolResult, "CAS should have returned false.");
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A(atomic == false, "CAS shouldn't have done anything.");
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boolResult = atomic.compareExchange(false, true);
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A(boolResult, "CAS should have succeeded.");
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A(atomic == true, "CAS should have changed atomic's value.");
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}
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template <typename T>
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static void
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TestType()
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{
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TestTypeWithOrdering<T, SequentiallyConsistent>();
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TestTypeWithOrdering<T, ReleaseAcquire>();
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TestTypeWithOrdering<T, Relaxed>();
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}
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template<typename T>
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static void
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TestPointer()
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{
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TestPointerWithOrdering<T, SequentiallyConsistent>();
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TestPointerWithOrdering<T, ReleaseAcquire>();
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TestPointerWithOrdering<T, Relaxed>();
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}
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static void
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TestEnum()
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{
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TestEnumWithOrdering<SequentiallyConsistent>();
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TestEnumWithOrdering<ReleaseAcquire>();
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TestEnumWithOrdering<Relaxed>();
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TestEnumClassWithOrdering<SequentiallyConsistent>();
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TestEnumClassWithOrdering<ReleaseAcquire>();
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TestEnumClassWithOrdering<Relaxed>();
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}
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static void
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TestBool()
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{
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TestBoolWithOrdering<SequentiallyConsistent>();
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TestBoolWithOrdering<ReleaseAcquire>();
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TestBoolWithOrdering<Relaxed>();
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}
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#undef A
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int
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main()
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{
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TestType<uint32_t>();
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TestType<int32_t>();
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TestType<uint64_t>();
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TestType<int64_t>();
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TestType<intptr_t>();
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TestType<uintptr_t>();
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TestPointer<int>();
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TestPointer<float>();
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TestPointer<uint16_t*>();
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TestPointer<uint32_t*>();
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TestEnum();
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TestBool();
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return 0;
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}
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