mirror of
https://github.com/xmrig/xmrig.git
synced 2025-12-06 23:52:38 -05:00
245 lines
7.2 KiB
C++
245 lines
7.2 KiB
C++
/* XMRig
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* Copyright (c) 2021 Spudz76 <https://github.com/Spudz76>
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* Copyright (c) 2018-2024 SChernykh <https://github.com/SChernykh>
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* Copyright (c) 2016-2024 XMRig <https://github.com/xmrig>, <support@xmrig.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "backend/opencl/wrappers/OclDevice.h"
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#include "3rdparty/fmt/core.h"
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#include "3rdparty/rapidjson/document.h"
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#include "backend/opencl/OclGenerator.h"
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#include "backend/opencl/OclThreads.h"
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#include "backend/opencl/wrappers/OclLib.h"
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#include "base/io/log/Log.h"
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#ifdef XMRIG_FEATURE_ADL
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# include "backend/opencl/wrappers/AdlLib.h"
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#endif
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#include <algorithm>
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#include <map>
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namespace xmrig {
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struct topology_amd {
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cl_uint type;
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cl_char unused[17];
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cl_char bus;
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cl_char device;
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cl_char function;
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};
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#ifdef XMRIG_ALGO_RANDOMX
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extern bool ocl_generic_rx_generator(const OclDevice &device, const Algorithm &algorithm, OclThreads &threads);
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#endif
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#ifdef XMRIG_ALGO_KAWPOW
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extern bool ocl_generic_kawpow_generator(const OclDevice& device, const Algorithm& algorithm, OclThreads& threads);
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#endif
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extern bool ocl_vega_cn_generator(const OclDevice &device, const Algorithm &algorithm, OclThreads &threads);
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extern bool ocl_generic_cn_generator(const OclDevice &device, const Algorithm &algorithm, OclThreads &threads);
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static ocl_gen_config_fun generators[] = {
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# ifdef XMRIG_ALGO_RANDOMX
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ocl_generic_rx_generator,
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# endif
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# ifdef XMRIG_ALGO_KAWPOW
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ocl_generic_kawpow_generator,
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# endif
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ocl_vega_cn_generator,
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ocl_generic_cn_generator
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};
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static OclVendor getPlatformVendorId(const String &vendor, const String &extensions)
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{
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if (extensions.contains("cl_amd_") || vendor.contains("Advanced Micro Devices") || vendor.contains("AMD")) {
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return OCL_VENDOR_AMD;
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}
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if (extensions.contains("cl_nv_") || vendor.contains("NVIDIA")) {
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return OCL_VENDOR_NVIDIA;
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}
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if (extensions.contains("cl_intel_") || vendor.contains("Intel")) {
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return OCL_VENDOR_INTEL;
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}
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# ifdef XMRIG_OS_APPLE
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if (extensions.contains("cl_APPLE_") || vendor.contains("Apple")) {
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return OCL_VENDOR_APPLE;
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}
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# endif
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return OCL_VENDOR_UNKNOWN;
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}
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static OclVendor getVendorId(const String &vendor)
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{
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if (vendor.contains("Advanced Micro Devices") || vendor.contains("AMD")) {
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return OCL_VENDOR_AMD;
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}
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if (vendor.contains("NVIDIA")) {
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return OCL_VENDOR_NVIDIA;
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}
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if (vendor.contains("Intel")) {
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return OCL_VENDOR_INTEL;
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}
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# ifdef XMRIG_OS_APPLE
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if (vendor.contains("Apple")) {
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return OCL_VENDOR_APPLE;
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}
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# endif
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return OCL_VENDOR_UNKNOWN;
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}
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} // namespace xmrig
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xmrig::OclDevice::OclDevice(uint32_t index, cl_device_id id, cl_platform_id platform) :
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m_id(id),
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m_platform(platform),
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m_platformVendor(OclLib::getString(platform, CL_PLATFORM_VENDOR)),
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m_name(OclLib::getString(id, CL_DEVICE_NAME)),
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m_vendor(OclLib::getString(id, CL_DEVICE_VENDOR)),
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m_extensions(OclLib::getString(id, CL_DEVICE_EXTENSIONS)),
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m_maxMemoryAlloc(OclLib::getUlong(id, CL_DEVICE_MAX_MEM_ALLOC_SIZE)),
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m_globalMemory(OclLib::getUlong(id, CL_DEVICE_GLOBAL_MEM_SIZE)),
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m_computeUnits(OclLib::getUint(id, CL_DEVICE_MAX_COMPUTE_UNITS, 1)),
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m_index(index)
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{
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m_vendorId = getVendorId(m_vendor);
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m_platformVendorId = getPlatformVendorId(m_platformVendor, m_extensions);
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m_type = getType(m_name);
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if (m_extensions.contains("cl_amd_device_attribute_query")) {
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topology_amd topology{};
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if (OclLib::getDeviceInfo(id, CL_DEVICE_TOPOLOGY_AMD, sizeof(topology), &topology) == CL_SUCCESS && topology.type == CL_DEVICE_TOPOLOGY_TYPE_PCIE_AMD) {
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m_topology = { topology.bus, topology.device, topology.function };
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}
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m_board = OclLib::getString(id, CL_DEVICE_BOARD_NAME_AMD);
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}
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else if (m_extensions.contains("cl_nv_device_attribute_query")) {
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cl_uint bus = 0;
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if (OclLib::getDeviceInfo(id, CL_DEVICE_PCI_BUS_ID_NV, sizeof(bus), &bus) == CL_SUCCESS) {
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cl_uint slot = OclLib::getUint(id, CL_DEVICE_PCI_SLOT_ID_NV);
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m_topology = { bus, (slot >> 3) & 0xff, slot & 7 };
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}
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}
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}
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xmrig::String xmrig::OclDevice::printableName() const
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{
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if (m_board.isNull()) {
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return fmt::format(GREEN_BOLD("{}"), m_name).c_str();
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}
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return fmt::format(GREEN_BOLD("{}") " (" CYAN_BOLD("{}") ")", m_board, m_name).c_str();
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}
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uint32_t xmrig::OclDevice::clock() const
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{
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return OclLib::getUint(id(), CL_DEVICE_MAX_CLOCK_FREQUENCY);
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}
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void xmrig::OclDevice::generate(const Algorithm &algorithm, OclThreads &threads) const
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{
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for (auto fn : generators) {
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if (fn(*this, algorithm, threads)) {
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return;
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}
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}
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}
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#ifdef XMRIG_FEATURE_API
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void xmrig::OclDevice::toJSON(rapidjson::Value &out, rapidjson::Document &doc) const
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{
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using namespace rapidjson;
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auto &allocator = doc.GetAllocator();
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out.AddMember("board", board().toJSON(doc), allocator);
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out.AddMember("name", name().toJSON(doc), allocator);
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out.AddMember("bus_id", topology().toString().toJSON(doc), allocator);
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out.AddMember("cu", computeUnits(), allocator);
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out.AddMember("global_mem", static_cast<uint64_t>(globalMemSize()), allocator);
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# ifdef XMRIG_FEATURE_ADL
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if (AdlLib::isReady()) {
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auto data = AdlLib::health(*this);
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Value health(kObjectType);
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health.AddMember("temperature", data.temperature, allocator);
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health.AddMember("power", data.power, allocator);
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health.AddMember("clock", data.clock, allocator);
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health.AddMember("mem_clock", data.memClock, allocator);
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health.AddMember("rpm", data.rpm, allocator);
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out.AddMember("health", health, allocator);
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}
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# endif
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}
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#endif
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#ifndef XMRIG_OS_APPLE
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xmrig::OclDevice::Type xmrig::OclDevice::getType(const String &name)
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{
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static std::map<const char *, OclDevice::Type> types = {
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{ "gfx900", Vega_10 },
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{ "gfx901", Vega_10 },
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{ "gfx902", Raven },
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{ "gfx903", Raven },
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{ "gfx906", Vega_20 },
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{ "gfx907", Vega_20 },
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{ "gfx1010", Navi_10 },
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{ "gfx1011", Navi_12 },
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{ "gfx1012", Navi_14 },
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{ "gfx1030", Navi_21 },
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{ "gfx804", Lexa },
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{ "Baffin", Baffin },
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{ "Ellesmere", Ellesmere },
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{ "gfx803", Polaris },
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{ "polaris", Polaris },
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};
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for (auto &kv : types) {
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if (name.contains(kv.first)) {
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return kv.second;
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}
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}
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return OclDevice::Unknown;
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}
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#endif
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