/* * ============================================================================= * ROC Runtime Conformance Release License * ============================================================================= * The University of Illinois/NCSA * Open Source License (NCSA) * * Copyright (c) 2018, Advanced Micro Devices, Inc. * All rights reserved. * * Developed by: * * AMD Research and AMD ROC Software Development * * Advanced Micro Devices, Inc. * * www.amd.com * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to * deal with the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * - Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimers. * - Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimers in * the documentation and/or other materials provided with the distribution. * - Neither the names of , * nor the names of its contributors may be used to endorse or promote * products derived from this Software without specific prior written * permission. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * THE CONTRIBUTORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER * DEALINGS WITH THE SOFTWARE. * */ #pragma OPENCL EXTENSION cl_khr_global_int32_base_atomics : enable __kernel void test_atomic_add(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_add(&sysMemory[tid], value); atomic_add(&gpuMemory[tid], value); } __kernel void test_atomic_sub(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_sub(&sysMemory[tid], value); atomic_sub(&gpuMemory[tid], value); } __kernel void test_atomic_and(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_and(&sysMemory[tid], value); atomic_and(&gpuMemory[tid], value); } __kernel void test_atomic_or(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_or(&sysMemory[tid], value); atomic_or(&gpuMemory[tid], value); } __kernel void test_atomic_xor(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_xor(&sysMemory[tid], value); atomic_xor(&gpuMemory[tid], value); } __kernel void test_atomic_xchg(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_xchg(&sysMemory[tid], value); atomic_xchg(&gpuMemory[tid], value); } __kernel void test_atomic_inc(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues) { int tid = get_global_id(0); oldValues[tid] = atomic_inc(&sysMemory[tid]); atomic_inc(&sysMemory[tid]); atomic_inc(&sysMemory[tid]); atomic_inc(&sysMemory[tid]); atomic_inc(&gpuMemory[tid]); atomic_inc(&gpuMemory[tid]); atomic_inc(&gpuMemory[tid]); atomic_inc(&gpuMemory[tid]); } __kernel void test_atomic_dec(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues) { int tid = get_global_id(0); oldValues[tid] = atomic_dec(&sysMemory[tid]); atomic_dec(&sysMemory[tid]); atomic_dec(&sysMemory[tid]); atomic_dec(&sysMemory[tid]); atomic_dec(&gpuMemory[tid]); atomic_dec(&gpuMemory[tid]); atomic_dec(&gpuMemory[tid]); atomic_dec(&gpuMemory[tid]); } __kernel void test_atomic_max(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_max(&sysMemory[tid], value); atomic_max(&gpuMemory[tid], value); } __kernel void test_atomic_min(volatile __global int *sysMemory, volatile __global int *gpuMemory, __global int *oldValues, int value) { int tid = get_global_id(0); oldValues[tid] = atomic_min(&sysMemory[tid], value); atomic_min(&gpuMemory[tid], value); }