329 lines
7.9 KiB
C++
329 lines
7.9 KiB
C++
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// Copyright (c) 2015-16 Tom Deakin, Simon McIntosh-Smith,
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// University of Bristol HPC
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//
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// For full license terms please see the LICENSE file distributed with this
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// source code
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#include "SYCLStream.h"
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#include <iostream>
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using namespace cl::sycl;
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// Cache list of devices
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bool cached = false;
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std::vector<device> devices;
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void getDeviceList(void);
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program * p;
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template <class T>
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SYCLStream<T>::SYCLStream(const unsigned int ARRAY_SIZE, const int device_index)
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{
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if (!cached)
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getDeviceList();
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array_size = ARRAY_SIZE;
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if (device_index >= devices.size())
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throw std::runtime_error("Invalid device index");
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device dev = devices[device_index];
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// Determine sensible dot kernel NDRange configuration
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if (dev.is_cpu())
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{
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dot_num_groups = dev.get_info<info::device::max_compute_units>();
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dot_wgsize = dev.get_info<info::device::native_vector_width_double>() * 2;
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}
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else
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{
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dot_num_groups = dev.get_info<info::device::max_compute_units>() * 4;
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dot_wgsize = dev.get_info<info::device::max_work_group_size>();
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}
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// Print out device information
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std::cout << "Using SYCL device " << getDeviceName(device_index) << std::endl;
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std::cout << "Driver: " << getDeviceDriver(device_index) << std::endl;
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std::cout << "Reduction kernel config: " << dot_num_groups << " groups of size " << dot_wgsize << std::endl;
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queue = new cl::sycl::queue(dev, [&](cl::sycl::exception_list l)
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{
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bool error = false;
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for(auto e: l)
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{
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try
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{
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std::rethrow_exception(e);
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}
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catch (cl::sycl::exception e)
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{
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std::cout << e.what();
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error = true;
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}
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}
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if(error)
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{
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throw std::runtime_error("SYCL errors detected");
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}
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});
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/* Pre-build the kernels */
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p = new program(queue->get_context());
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p->build_with_kernel_type<init_kernel>();
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p->build_with_kernel_type<copy_kernel>();
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p->build_with_kernel_type<mul_kernel>();
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p->build_with_kernel_type<add_kernel>();
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p->build_with_kernel_type<triad_kernel>();
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p->build_with_kernel_type<dot_kernel>();
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// Create buffers
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d_a = new buffer<T>(array_size);
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d_b = new buffer<T>(array_size);
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d_c = new buffer<T>(array_size);
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d_sum = new buffer<T>(dot_num_groups);
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}
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template <class T>
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SYCLStream<T>::~SYCLStream()
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{
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delete d_a;
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delete d_b;
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delete d_c;
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delete d_sum;
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delete p;
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delete queue;
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}
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template <class T>
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void SYCLStream<T>::copy()
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{
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queue->submit([&](handler &cgh)
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{
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auto ka = d_a->template get_access<access::mode::read>(cgh);
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auto kc = d_c->template get_access<access::mode::write>(cgh);
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cgh.parallel_for<copy_kernel>(p->get_kernel<copy_kernel>(),
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range<1>{array_size}, [=](item<1> item)
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{
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auto id = item.get_id(0);
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kc[id] = ka[id];
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});
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});
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queue->wait();
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}
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template <class T>
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void SYCLStream<T>::mul()
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{
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const T scalar = startScalar;
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queue->submit([&](handler &cgh)
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{
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auto kb = d_b->template get_access<access::mode::write>(cgh);
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auto kc = d_c->template get_access<access::mode::read>(cgh);
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cgh.parallel_for<mul_kernel>(p->get_kernel<mul_kernel>(),
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range<1>{array_size}, [=](item<1> item)
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{
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auto id = item.get_id(0);
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kb[id] = scalar * kc[id];
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});
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});
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queue->wait();
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}
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template <class T>
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void SYCLStream<T>::add()
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{
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queue->submit([&](handler &cgh)
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{
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auto ka = d_a->template get_access<access::mode::read>(cgh);
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auto kb = d_b->template get_access<access::mode::read>(cgh);
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auto kc = d_c->template get_access<access::mode::write>(cgh);
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cgh.parallel_for<add_kernel>(p->get_kernel<add_kernel>(),
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range<1>{array_size}, [=](item<1> item)
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{
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auto id = item.get_id(0);
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kc[id] = ka[id] + kb[id];
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});
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});
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queue->wait();
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}
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template <class T>
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void SYCLStream<T>::triad()
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{
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const T scalar = startScalar;
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queue->submit([&](handler &cgh)
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{
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auto ka = d_a->template get_access<access::mode::write>(cgh);
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auto kb = d_b->template get_access<access::mode::read>(cgh);
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auto kc = d_c->template get_access<access::mode::read>(cgh);
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cgh.parallel_for<triad_kernel>(p->get_kernel<triad_kernel>(),
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range<1>{array_size}, [=](item<1> item)
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{
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auto id = item.get_id(0);
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ka[id] = kb[id] + scalar * kc[id];
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});
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});
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queue->wait();
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}
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template <class T>
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T SYCLStream<T>::dot()
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{
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queue->submit([&](handler &cgh)
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{
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auto ka = d_a->template get_access<access::mode::read>(cgh);
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auto kb = d_b->template get_access<access::mode::read>(cgh);
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auto ksum = d_sum->template get_access<access::mode::write>(cgh);
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auto wg_sum = accessor<T, 1, access::mode::read_write, access::target::local>(range<1>(dot_wgsize), cgh);
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size_t N = array_size;
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cgh.parallel_for<dot_kernel>(p->get_kernel<dot_kernel>(),
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nd_range<1>(dot_num_groups*dot_wgsize, dot_wgsize), [=](nd_item<1> item)
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{
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size_t i = item.get_global(0);
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size_t li = item.get_local(0);
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size_t global_size = item.get_global_range()[0];
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wg_sum[li] = 0.0;
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for (; i < N; i += global_size)
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wg_sum[li] += ka[i] * kb[i];
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size_t local_size = item.get_local_range()[0];
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for (int offset = local_size / 2; offset > 0; offset /= 2)
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{
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item.barrier(cl::sycl::access::fence_space::local_space);
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if (li < offset)
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wg_sum[li] += wg_sum[li + offset];
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}
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if (li == 0)
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ksum[item.get_group(0)] = wg_sum[0];
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});
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});
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T sum = 0.0;
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auto h_sum = d_sum->template get_access<access::mode::read>();
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for (int i = 0; i < dot_num_groups; i++)
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{
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sum += h_sum[i];
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}
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return sum;
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}
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template <class T>
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void SYCLStream<T>::init_arrays(T initA, T initB, T initC)
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{
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queue->submit([&](handler &cgh)
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{
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auto ka = d_a->template get_access<access::mode::write>(cgh);
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auto kb = d_b->template get_access<access::mode::write>(cgh);
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auto kc = d_c->template get_access<access::mode::write>(cgh);
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cgh.parallel_for<init_kernel>(p->get_kernel<init_kernel>(),
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range<1>{array_size}, [=](item<1> item)
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{
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auto id = item.get_id(0);
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ka[id] = initA;
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kb[id] = initB;
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kc[id] = initC;
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});
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});
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queue->wait();
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}
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template <class T>
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void SYCLStream<T>::read_arrays(std::vector<T>& a, std::vector<T>& b, std::vector<T>& c)
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{
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auto _a = d_a->template get_access<access::mode::read>();
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auto _b = d_b->template get_access<access::mode::read>();
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auto _c = d_c->template get_access<access::mode::read>();
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for (int i = 0; i < array_size; i++)
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{
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a[i] = _a[i];
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b[i] = _b[i];
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c[i] = _c[i];
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}
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}
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void getDeviceList(void)
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{
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// Get list of platforms
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std::vector<platform> platforms = platform::get_platforms();
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// Enumerate devices
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for (unsigned i = 0; i < platforms.size(); i++)
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{
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std::vector<device> plat_devices = platforms[i].get_devices();
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devices.insert(devices.end(), plat_devices.begin(), plat_devices.end());
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}
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cached = true;
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}
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void listDevices(void)
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{
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getDeviceList();
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// Print device names
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if (devices.size() == 0)
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{
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std::cerr << "No devices found." << std::endl;
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}
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else
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{
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std::cout << std::endl;
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std::cout << "Devices:" << std::endl;
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for (int i = 0; i < devices.size(); i++)
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{
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std::cout << i << ": " << getDeviceName(i) << std::endl;
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}
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std::cout << std::endl;
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}
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}
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std::string getDeviceName(const int device)
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{
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if (!cached)
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getDeviceList();
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std::string name;
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if (device < devices.size())
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{
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name = devices[device].get_info<info::device::name>();
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}
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else
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{
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throw std::runtime_error("Error asking for name for non-existant device");
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}
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return name;
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}
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std::string getDeviceDriver(const int device)
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{
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if (!cached)
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getDeviceList();
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std::string driver;
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if (device < devices.size())
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{
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driver = devices[device].get_info<info::device::driver_version>();
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}
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else
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{
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throw std::runtime_error("Error asking for driver for non-existant device");
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}
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return driver;
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}
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// TODO: Fix kernel names to allow multiple template specializations
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template class SYCLStream<float>;
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template class SYCLStream<double>;
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