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https://github.com/KhronosGroup/OpenCL-CTS.git
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Merge test_barrier and test_wg_barrier. Reformat using clang-format kernel source code. Signed-off-by: John Kesapides <john.kesapides@arm.com>
157 lines
5.2 KiB
C++
157 lines
5.2 KiB
C++
//
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// Copyright (c) 2017 The Khronos Group Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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#include "harness/compat.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <algorithm>
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#include <numeric>
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#include <vector>
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#include "procs.h"
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namespace {
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const char *barrier_kernel_code = R"(
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__kernel void compute_sum(__global int *a, int n, __global int *tmp_sum,
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__global int *sum)
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{
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int tid = get_local_id(0);
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int lsize = get_local_size(0);
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int i;
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tmp_sum[tid] = 0;
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for (i = tid; i < n; i += lsize) tmp_sum[tid] += a[i];
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// updated to work for any workgroup size
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for (i = hadd(lsize, 1); lsize > 1; i = hadd(i, 1))
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{
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BARRIER(CLK_GLOBAL_MEM_FENCE);
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if (tid + i < lsize) tmp_sum[tid] += tmp_sum[tid + i];
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lsize = i;
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}
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// no barrier is required here because last person to write to tmp_sum[0]
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// was tid 0
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if (tid == 0) *sum = tmp_sum[0];
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}
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)";
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void generate_random_inputs(std::vector<cl_int> &v)
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{
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RandomSeed seed(gRandomSeed);
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auto random_generator = [&seed]() {
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return static_cast<cl_int>(
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get_random_float(-0x01000000, 0x01000000, seed));
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};
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std::generate(v.begin(), v.end(), random_generator);
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}
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int test_barrier_common(cl_device_id device, cl_context context,
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cl_command_queue queue, int num_elements,
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std::string barrier_str)
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{
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clMemWrapper streams[3];
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clProgramWrapper program;
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clKernelWrapper kernel;
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cl_int output;
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int err;
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size_t max_threadgroup_size = 0;
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std::string build_options = std::string("-DBARRIER=") + barrier_str;
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err = create_single_kernel_helper(context, &program, &kernel, 1,
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&barrier_kernel_code, "compute_sum",
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build_options.c_str());
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test_error(err, "Failed to build kernel/program.");
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err = get_max_allowed_1d_work_group_size_on_device(device, kernel,
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&max_threadgroup_size);
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test_error(err, "get_max_allowed_1d_work_group_size_on_device failed.");
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// work group size must divide evenly into the global size
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while (num_elements % max_threadgroup_size) max_threadgroup_size--;
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std::vector<cl_int> input(num_elements);
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streams[0] = clCreateBuffer(context, CL_MEM_READ_WRITE,
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sizeof(cl_int) * num_elements, nullptr, &err);
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test_error(err, "clCreateBuffer failed.");
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streams[1] = clCreateBuffer(context, CL_MEM_READ_WRITE, sizeof(cl_int),
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nullptr, &err);
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test_error(err, "clCreateBuffer failed.");
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streams[2] =
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clCreateBuffer(context, CL_MEM_READ_WRITE,
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sizeof(cl_int) * max_threadgroup_size, nullptr, &err);
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test_error(err, "clCreateBuffer failed.");
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generate_random_inputs(input);
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err = clEnqueueWriteBuffer(queue, streams[0], CL_TRUE, 0,
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sizeof(cl_int) * num_elements, input.data(), 0,
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nullptr, nullptr);
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test_error(err, "clEnqueueWriteBuffer failed.");
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err = clSetKernelArg(kernel, 0, sizeof(streams[0]), &streams[0]);
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err |= clSetKernelArg(kernel, 1, sizeof(num_elements), &num_elements);
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err |= clSetKernelArg(kernel, 2, sizeof(streams[2]), &streams[2]);
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err |= clSetKernelArg(kernel, 3, sizeof(streams[1]), &streams[1]);
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test_error(err, "clSetKernelArg failed.");
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size_t global_threads[] = { max_threadgroup_size };
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size_t local_threads[] = { max_threadgroup_size };
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err = clEnqueueNDRangeKernel(queue, kernel, 1, nullptr, global_threads,
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local_threads, 0, nullptr, nullptr);
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test_error(err, "clEnqueueNDRangeKernel failed.");
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err = clEnqueueReadBuffer(queue, streams[1], true, 0, sizeof(cl_int),
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&output, 0, nullptr, nullptr);
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test_error(err, "clEnqueueReadBuffer failed.");
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if (std::accumulate(input.begin(), input.end(), 0) != output)
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{
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log_error("%s test failed\n", barrier_str.c_str());
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err = -1;
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}
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else
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{
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log_info("%s test passed\n", barrier_str.c_str());
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}
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return err;
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}
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}
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int test_barrier(cl_device_id device, cl_context context,
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cl_command_queue queue, int num_elements)
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{
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return test_barrier_common(device, context, queue, num_elements, "barrier");
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}
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int test_wg_barrier(cl_device_id device, cl_context context,
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cl_command_queue queue, int num_elements)
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{
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return test_barrier_common(device, context, queue, num_elements,
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"work_group_barrier");
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}
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