compute-runtime/unit_tests/gen8/test_preamble_gen8.cpp

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/*
* Copyright (C) 2018-2019 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "runtime/command_stream/thread_arbitration_policy.h"
#include "runtime/gen8/reg_configs.h"
#include "runtime/helpers/options.h"
#include "runtime/helpers/preamble.h"
#include "unit_tests/fixtures/platform_fixture.h"
#include "unit_tests/preamble/preamble_fixture.h"
using namespace OCLRT;
typedef PreambleFixture BdwSlm;
BDWTEST_F(BdwSlm, shouldBeEnabledOnGen8) {
typedef BDWFamily::MI_LOAD_REGISTER_IMM MI_LOAD_REGISTER_IMM;
LinearStream &cs = linearStream;
uint32_t l3Config = PreambleHelper<BDWFamily>::getL3Config(**platformDevices, true);
PreambleHelper<BDWFamily>::programL3(&cs, l3Config);
parseCommands<BDWFamily>(cs);
auto itorLRI = find<MI_LOAD_REGISTER_IMM *>(cmdList.begin(), cmdList.end());
ASSERT_NE(cmdList.end(), itorLRI);
const auto &lri = *reinterpret_cast<MI_LOAD_REGISTER_IMM *>(*itorLRI);
auto RegisterOffset = L3CNTLRegisterOffset<BDWFamily>::registerOffset;
EXPECT_EQ(RegisterOffset, lri.getRegisterOffset());
EXPECT_EQ(1u, lri.getDataDword() & 1);
}
typedef PreambleFixture Gen8L3Config;
BDWTEST_F(Gen8L3Config, checkNoSLM) {
bool slmUsed = false;
uint32_t l3Config = 0;
l3Config = getL3ConfigHelper<IGFX_BROADWELL>(slmUsed);
EXPECT_EQ(0x80000340u, l3Config);
uint32_t errorDetectionBehaviorControlBit = 1 << 9;
EXPECT_TRUE((l3Config & errorDetectionBehaviorControlBit) != 0);
}
BDWTEST_F(Gen8L3Config, checkSLM) {
bool slmUsed = true;
uint32_t l3Config = 0;
l3Config = getL3ConfigHelper<IGFX_BROADWELL>(slmUsed);
EXPECT_EQ(0x60000321u, l3Config);
uint32_t errorDetectionBehaviorControlBit = 1 << 9;
EXPECT_TRUE((l3Config & errorDetectionBehaviorControlBit) != 0);
}
typedef PreambleFixture ThreadArbitrationGen8;
BDWTEST_F(ThreadArbitrationGen8, givenPolicyWhenThreadArbitrationProgrammedThenDoNothing) {
typedef BDWFamily::MI_LOAD_REGISTER_IMM MI_LOAD_REGISTER_IMM;
LinearStream &cs = linearStream;
PreambleHelper<BDWFamily>::programThreadArbitration(&cs, ThreadArbitrationPolicy::RoundRobin);
EXPECT_EQ(0u, cs.getUsed());
EXPECT_EQ(0u, PreambleHelper<BDWFamily>::getAdditionalCommandsSize(MockDevice(**platformDevices)));
EXPECT_EQ(0u, PreambleHelper<BDWFamily>::getThreadArbitrationCommandsSize());
EXPECT_EQ(0u, PreambleHelper<BDWFamily>::getDefaultThreadArbitrationPolicy());
}
typedef PreambleFixture Gen8UrbEntryAllocationSize;
BDWTEST_F(Gen8UrbEntryAllocationSize, getUrbEntryAllocationSize) {
uint32_t actualVal = PreambleHelper<FamilyType>::getUrbEntryAllocationSize();
EXPECT_EQ(0x782u, actualVal);
}
BDWTEST_F(PreambleVfeState, basic) {
typedef BDWFamily::PIPE_CONTROL PIPE_CONTROL;
LinearStream &cs = linearStream;
PreambleHelper<BDWFamily>::programVFEState(&linearStream, **platformDevices, 0, 0);
parseCommands<BDWFamily>(cs);
auto itorPC = find<PIPE_CONTROL *>(cmdList.begin(), cmdList.end());
ASSERT_NE(cmdList.end(), itorPC);
const auto &pc = *reinterpret_cast<PIPE_CONTROL *>(*itorPC);
EXPECT_TRUE(pc.getDcFlushEnable());
EXPECT_EQ(1u, pc.getCommandStreamerStallEnable());
}