Daniel Agar
5 years ago
6 changed files with 298 additions and 0 deletions
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/****************************************************************************
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* |
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* Copyright (C) 2020 PX4 Development Team. All rights reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions |
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* are met: |
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* |
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* 1. Redistributions of source code must retain the above copyright |
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* notice, this list of conditions and the following disclaimer. |
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* 2. Redistributions in binary form must reproduce the above copyright |
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* notice, this list of conditions and the following disclaimer in |
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* the documentation and/or other materials provided with the |
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* distribution. |
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* 3. Neither the name PX4 nor the names of its contributors may be |
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* used to endorse or promote products derived from this software |
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* without specific prior written permission. |
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* |
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS |
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT |
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS |
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE |
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* COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, |
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, |
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS |
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* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED |
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN |
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* ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE |
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* POSSIBILITY OF SUCH DAMAGE. |
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* |
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****************************************************************************/ |
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/**
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* @file test_microbench_atomic.cpp |
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* Microbenchmark atomic operations. |
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*/ |
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#include <unit_test.h> |
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#include <time.h> |
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#include <stdlib.h> |
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#include <unistd.h> |
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#include <drivers/drv_hrt.h> |
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#include <perf/perf_counter.h> |
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#include <px4_platform_common/px4_config.h> |
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#include <px4_platform_common/micro_hal.h> |
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#include <px4_platform_common/atomic.h> |
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#ifdef __PX4_NUTTX |
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#include <nuttx/irq.h> |
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#endif |
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namespace MicroBenchAtomic |
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{ |
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#define PERF(name, op, count) do { \ |
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px4_usleep(100); \
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reset(); \
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perf_counter_t p = perf_alloc(PC_ELAPSED, name); \
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for (int i = 0; i < count; i++) { \
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px4_usleep(1); \
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lock(); \
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perf_begin(p); \
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op; \
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perf_end(p); \
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unlock(); \
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reset(); \
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} \
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perf_print_counter(p); \
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perf_free(p); \
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} while (0) |
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class MicroBenchAtomic : public UnitTest |
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{ |
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public: |
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bool run_tests() override; |
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private: |
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bool time_atomic_bool(); |
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bool time_atomic_int8(); |
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bool time_atomic_int16(); |
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bool time_atomic_int32(); |
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bool time_atomic_uint32(); |
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bool time_atomic_float(); |
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void reset(); |
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void lock() |
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{ |
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#ifdef __PX4_NUTTX |
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_flags = px4_enter_critical_section(); |
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#endif |
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} |
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void unlock() |
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{ |
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#ifdef __PX4_NUTTX |
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px4_leave_critical_section(_flags); |
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#endif |
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} |
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#ifdef __PX4_NUTTX |
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irqstate_t _flags {}; |
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#endif |
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px4::atomic<bool> _atomic_bool{false}; |
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px4::atomic<bool> _atomic_bool_storage{false}; |
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bool _test_load_bool{}; |
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px4::atomic<int8_t> _atomic_int8{0}; |
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px4::atomic<int8_t> _atomic_int8_storage{0}; |
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int8_t _test_load_int8{}; |
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px4::atomic<int16_t> _atomic_int16{0}; |
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px4::atomic<int16_t> _atomic_int16_storage{0}; |
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int16_t _test_load_int16{}; |
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px4::atomic<int32_t> _atomic_int32{0}; |
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px4::atomic<int32_t> _atomic_int32_storage{0}; |
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int32_t _test_load_int32{}; |
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px4::atomic<uint32_t> _atomic_uint32{0}; |
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px4::atomic<uint32_t> _atomic_uint32_storage{0}; |
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uint32_t _test_load_uint32{}; |
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px4::atomic<float> _atomic_float{0}; |
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px4::atomic<float> _atomic_float_storage{0}; |
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float _test_load_float{}; |
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}; |
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bool MicroBenchAtomic::run_tests() |
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{ |
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ut_run_test(time_atomic_bool); |
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ut_run_test(time_atomic_int8); |
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ut_run_test(time_atomic_int16); |
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ut_run_test(time_atomic_int32); |
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ut_run_test(time_atomic_uint32); |
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ut_run_test(time_atomic_float); |
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return (_tests_failed == 0); |
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} |
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void MicroBenchAtomic::reset() |
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{ |
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srand(time(nullptr)); |
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_atomic_bool.store(rand()); |
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_atomic_bool_storage.store(rand()); |
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_test_load_bool = rand(); |
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_atomic_int8.store(rand()); |
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_atomic_int8_storage.store(rand()); |
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_test_load_int8 = rand(); |
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_atomic_int16.store(rand()); |
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_atomic_int16_storage.store(rand()); |
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_test_load_int16 = rand(); |
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_atomic_int32.store(rand()); |
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_atomic_int32_storage.store(rand()); |
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_test_load_int32 = rand(); |
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_atomic_uint32.store(rand()); |
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_atomic_uint32_storage.store(rand()); |
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_test_load_uint32 = rand(); |
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_atomic_float.store(rand()); |
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_atomic_float_storage.store(rand()); |
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_test_load_float = rand(); |
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} |
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ut_declare_test_c(test_microbench_atomic, MicroBenchAtomic) |
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bool MicroBenchAtomic::time_atomic_bool() |
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{ |
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PERF("atomic bool load", _test_load_bool = _atomic_bool.load(), 100); |
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PERF("atomic bool store", _atomic_bool.store(_test_load_bool), 100); |
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PERF("atomic bool load and store", _atomic_bool_storage.store(_atomic_bool.load()), 100); |
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bool expected = true; |
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PERF("atomic bool compare exchange (same)", |
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volatile bool compare_exchange = _atomic_bool.compare_exchange(&expected, true), 100); |
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PERF("atomic bool compare exchange (different)", |
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volatile bool compare_exchange = _atomic_bool.compare_exchange(&expected, false), 100); |
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return true; |
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} |
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bool MicroBenchAtomic::time_atomic_int8() |
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{ |
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PERF("atomic int8 load", _test_load_int8 = _atomic_int8.load(), 100); |
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PERF("atomic int8 store", _atomic_int8.store(_test_load_int8), 100); |
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PERF("atomic int8 load and store", _atomic_int8_storage.store(_atomic_int8.load()), 100); |
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PERF("atomic int8 fetch add", _test_load_int8 = _atomic_int8.fetch_add(_test_load_int8), 100); |
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PERF("atomic int8 fetch sub", _test_load_int8 = _atomic_int8.fetch_sub(_test_load_int8), 100); |
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PERF("atomic int8 fetch and", _test_load_int8 = _atomic_int8.fetch_and(_test_load_int8), 100); |
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PERF("atomic int8 fetch xor", _test_load_int8 = _atomic_int8.fetch_xor(_test_load_int8), 100); |
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PERF("atomic int8 fetch or", _test_load_int8 = _atomic_int8.fetch_or(_test_load_int8), 100); |
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PERF("atomic int8 fetch nand", _test_load_int8 = _atomic_int8.fetch_nand(_test_load_int8), 100); |
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int8_t expected = 42; |
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PERF("atomic int8 compare exchange (same)", |
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volatile bool compare_exchange = _atomic_int8.compare_exchange(&expected, 42), 100); |
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PERF("atomic int8 compare exchange (different)", |
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volatile bool compare_exchange = _atomic_int8.compare_exchange(&expected, 0), 100); |
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return true; |
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} |
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bool MicroBenchAtomic::time_atomic_int16() |
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{ |
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PERF("atomic int16 load", _test_load_int16 = _atomic_int16.load(), 100); |
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PERF("atomic int16 store", _atomic_int16.store(_test_load_int16), 100); |
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PERF("atomic int16 load and store", _atomic_int16_storage.store(_atomic_int16.load()), 100); |
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PERF("atomic int16 fetch add", _test_load_int16 = _atomic_int16.fetch_add(_test_load_int16), 100); |
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PERF("atomic int16 fetch sub", _test_load_int16 = _atomic_int16.fetch_sub(_test_load_int16), 100); |
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PERF("atomic int16 fetch and", _test_load_int16 = _atomic_int16.fetch_and(_test_load_int16), 100); |
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PERF("atomic int16 fetch xor", _test_load_int16 = _atomic_int16.fetch_xor(_test_load_int16), 100); |
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PERF("atomic int16 fetch or", _test_load_int16 = _atomic_int16.fetch_or(_test_load_int16), 100); |
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PERF("atomic int16 fetch nand", _test_load_int16 = _atomic_int16.fetch_nand(_test_load_int16), 100); |
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int16_t expected = 42; |
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PERF("atomic int16 compare exchange (same)", |
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volatile bool compare_exchange = _atomic_int16.compare_exchange(&expected, 42), 100); |
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PERF("atomic int16 compare exchange (different)", |
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volatile bool compare_exchange = _atomic_int16.compare_exchange(&expected, 0), 100); |
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return true; |
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} |
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bool MicroBenchAtomic::time_atomic_int32() |
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{ |
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PERF("atomic int32 load", _test_load_int32 = _atomic_int32.load(), 100); |
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PERF("atomic int32 store", _atomic_int32.store(_test_load_int32), 100); |
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PERF("atomic int32 load and store", _atomic_int32_storage.store(_atomic_int32.load()), 100); |
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PERF("atomic int32 fetch add", _test_load_int32 = _atomic_int32.fetch_add(_test_load_int32), 100); |
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PERF("atomic int32 fetch sub", _test_load_int32 = _atomic_int32.fetch_sub(_test_load_int32), 100); |
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PERF("atomic int32 fetch and", _test_load_int32 = _atomic_int32.fetch_and(_test_load_int32), 100); |
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PERF("atomic int32 fetch xor", _test_load_int32 = _atomic_int32.fetch_xor(_test_load_int32), 100); |
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PERF("atomic int32 fetch or", _test_load_int32 = _atomic_int32.fetch_or(_test_load_int32), 100); |
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PERF("atomic int32 fetch nand", _test_load_int32 = _atomic_int32.fetch_nand(_test_load_int32), 100); |
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int32_t expected = 42; |
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PERF("atomic int32 compare exchange (same)", |
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volatile bool compare_exchange = _atomic_int32.compare_exchange(&expected, 42), 100); |
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PERF("atomic int32 compare exchange (different)", |
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volatile bool compare_exchange = _atomic_int32.compare_exchange(&expected, 0), 100); |
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return true; |
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} |
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bool MicroBenchAtomic::time_atomic_uint32() |
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{ |
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PERF("atomic uint32 load", _test_load_uint32 = _atomic_uint32.load(), 100); |
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PERF("atomic uint32 store", _atomic_uint32_storage.store(_test_load_uint32), 100); |
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PERF("atomic uint32 load and store", _atomic_uint32_storage.store(_atomic_uint32.load()), 100); |
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PERF("atomic uint32 fetch add", _test_load_uint32 = _atomic_uint32.fetch_add(_test_load_uint32), 100); |
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PERF("atomic uint32 fetch sub", _test_load_uint32 = _atomic_uint32.fetch_sub(_test_load_uint32), 100); |
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PERF("atomic uint32 fetch and", _test_load_uint32 = _atomic_uint32.fetch_and(_test_load_uint32), 100); |
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PERF("atomic uint32 fetch xor", _test_load_uint32 = _atomic_uint32.fetch_xor(_test_load_uint32), 100); |
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PERF("atomic uint32 fetch or", _test_load_uint32 = _atomic_uint32.fetch_or(_test_load_uint32), 100); |
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PERF("atomic uint32 fetch nand", _test_load_uint32 = _atomic_uint32.fetch_nand(_test_load_uint32), 100); |
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uint32_t expected = 42; |
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PERF("atomic uint32 compare exchange (same)", |
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volatile bool compare_exchange = _atomic_uint32.compare_exchange(&expected, 42), 100); |
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PERF("atomic uint32 compare exchange (different)", |
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volatile bool compare_exchange = _atomic_uint32.compare_exchange(&expected, 0), 100); |
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return true; |
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} |
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bool MicroBenchAtomic::time_atomic_float() |
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{ |
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//PERF("atomic float load", volatile float test_load = _atomic_float.load(), 100);
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PERF("atomic float store", _atomic_float.store(_test_load_float), 100); |
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//PERF("atomic float load and store", _atomic_float_storage.store(_atomic_float.load()), 100);
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float expected = 42; |
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PERF("atomic float compare exchange (same)", |
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volatile bool compare_exchange = _atomic_float.compare_exchange(&expected, 42), 100); |
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PERF("atomic float compare exchange (different)", |
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volatile bool compare_exchange = _atomic_float.compare_exchange(&expected, 0), 100); |
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return true; |
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} |
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} // namespace MicroBenchAtomic
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