compute-runtime/unit_tests/api/cl_create_sub_devices_tests...

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3.3 KiB
C++

/*
* Copyright (C) 2017-2019 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "core/unit_tests/helpers/debug_manager_state_restore.h"
#include "runtime/api/api.h"
#include "test.h"
#include "unit_tests/helpers/variable_backup.h"
#include <memory>
using namespace NEO;
namespace ULT {
struct clCreateSubDevicesTests : ::testing::Test {
DebugManagerStateRestore restorer;
VariableBackup<bool> mockDeviceCreateSingleDeviceBackup{&MockDevice::createSingleDevice};
std::unique_ptr<MockDevice> device;
cl_device_partition_property properties[3] = {CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_NUMA, 0};
cl_uint outDevicesCount = 2;
cl_device_id outDevices[2];
void setup(int numberOfDevices) {
DebugManager.flags.CreateMultipleSubDevices.set(numberOfDevices);
mockDeviceCreateSingleDeviceBackup = (numberOfDevices == 1);
device.reset(MockDevice::createWithNewExecutionEnvironment<MockDevice>(*platformDevices));
}
};
TEST_F(clCreateSubDevicesTests, GivenInvalidDeviceWhenCreatingSubDevicesThenInvalidDeviceErrorIsReturned) {
auto retVal = clCreateSubDevices(
nullptr,
nullptr,
0,
nullptr,
nullptr);
EXPECT_EQ(retVal, CL_INVALID_DEVICE);
}
TEST_F(clCreateSubDevicesTests, GivenDeviceWithoutSubDevicesWhenCreatingSubDevicesThenInvalidDeviceErrorIsReturned) {
setup(1);
auto retVal = clCreateSubDevices(device.get(), nullptr, 0, nullptr, nullptr);
EXPECT_EQ(CL_INVALID_DEVICE, retVal);
}
TEST_F(clCreateSubDevicesTests, GivenInvalidOrUnsupportedPropertiesWhenCreatingSubDevicesThenInvalidValueErrorIsReturned) {
setup(2);
auto retVal = clCreateSubDevices(device.get(), nullptr, 0, nullptr, nullptr);
EXPECT_EQ(CL_INVALID_VALUE, retVal);
properties[0] = 0;
retVal = clCreateSubDevices(device.get(), properties, 0, nullptr, nullptr);
EXPECT_EQ(CL_INVALID_VALUE, retVal);
properties[0] = CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN;
properties[1] = 0;
retVal = clCreateSubDevices(device.get(), properties, 0, nullptr, nullptr);
EXPECT_EQ(CL_INVALID_VALUE, retVal);
properties[1] = CL_DEVICE_AFFINITY_DOMAIN_NUMA;
properties[2] = CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN;
retVal = clCreateSubDevices(device.get(), properties, 0, nullptr, nullptr);
EXPECT_EQ(CL_INVALID_VALUE, retVal);
}
TEST_F(clCreateSubDevicesTests, GivenOutDevicesNullWhenCreatingSubDevicesThenSuccessIsReturned) {
setup(2);
cl_uint returnedOutDeviceCount = 0;
auto retVal = clCreateSubDevices(device.get(), properties, 0, nullptr, &returnedOutDeviceCount);
EXPECT_EQ(CL_SUCCESS, retVal);
EXPECT_EQ(2u, returnedOutDeviceCount);
}
TEST_F(clCreateSubDevicesTests, GivenOutDevicesTooSmallWhenCreatingSubDevicesThenInvalidValueErrorIsReturned) {
setup(2);
outDevicesCount = 1;
auto retVal = clCreateSubDevices(device.get(), properties, outDevicesCount, outDevices, nullptr);
EXPECT_EQ(CL_INVALID_VALUE, retVal);
}
TEST_F(clCreateSubDevicesTests, GivenValidInputWhenCreatingSubDevicesThenSubDevicesAreReturned) {
setup(2);
auto retVal = clCreateSubDevices(device.get(), properties, outDevicesCount, outDevices, nullptr);
EXPECT_EQ(CL_SUCCESS, retVal);
EXPECT_EQ(device->getDeviceById(0), outDevices[0]);
EXPECT_EQ(device->getDeviceById(1), outDevices[1]);
}
} // namespace ULT