08a253684b
Change-Id: I96d8c2898795240288517bdcbc2b48ff2cc04f66
323 γραμμές
9.3 KiB
C++
Εκτελέσιμο Αρχείο
323 γραμμές
9.3 KiB
C++
Εκτελέσιμο Αρχείο
/*
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* =============================================================================
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* ROC Runtime Conformance Release License
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* =============================================================================
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* The University of Illinois/NCSA
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* Open Source License (NCSA)
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*
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* Copyright (c) 2017, Advanced Micro Devices, Inc.
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* All rights reserved.
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*
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* Developed by:
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*
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* AMD Research and AMD ROC Software Development
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*
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* Advanced Micro Devices, Inc.
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*
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* www.amd.com
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to
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* deal with the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* - Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimers.
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* - Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimers in
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* the documentation and/or other materials provided with the distribution.
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* - Neither the names of <Name of Development Group, Name of Institution>,
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* nor the names of its contributors may be used to endorse or promote
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* products derived from this Software without specific prior written
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* permission.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE CONTRIBUTORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
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* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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* DEALINGS WITH THE SOFTWARE.
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*
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*/
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#include <string>
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#include <vector>
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#include <memory>
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#include "gtest/gtest.h"
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#include "suites/functional/debug_basic.h"
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#include "suites/functional/memory_basic.h"
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#include "suites/functional/memory_access.h"
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#include "suites/functional/ipc.h"
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#include "suites/functional/memory_alignment.h"
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#include "suites/performance/dispatch_time.h"
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#include "suites/performance/memory_async_copy.h"
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#include "suites/performance/memory_async_copy_numa.h"
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#include "suites/performance/enqueueLatency.h"
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#include "suites/negative/memory_allocate_negative_tests.h"
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#include "suites/negative/queue_validation.h"
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#include "suites/stress/memory_concurrent_tests.h"
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#include "suites/test_common/test_case_template.h"
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#include "suites/test_common/main.h"
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#include "suites/test_common/test_common.h"
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#include "suites/functional/concurrent_init.h"
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#include "suites/functional/concurrent_init_shutdown.h"
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#include "suites/functional/concurrent_shutdown.h"
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#include "suites/functional/reference_count.h"
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#include "rocm_smi/rocm_smi.h"
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static RocrTstGlobals *sRocrtstGlvalues = nullptr;
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static void SetFlags(TestBase *test) {
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assert(sRocrtstGlvalues != nullptr);
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test->set_num_iteration(sRocrtstGlvalues->num_iterations);
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test->set_verbosity(sRocrtstGlvalues->verbosity);
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test->set_monitor_verbosity(sRocrtstGlvalues->monitor_verbosity);
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}
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static void RunCustomTestProlog(TestBase *test) {
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SetFlags(test);
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test->DisplayTestInfo();
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test->SetUp();
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test->Run();
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return;
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}
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static void RunCustomTestEpilog(TestBase *test) {
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test->DisplayResults();
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test->Close();
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return;
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}
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// If the test case one big test, you should use RunGenericTest()
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// to run the test case. OTOH, if the test case consists of multiple
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// functions to be run as separate tests, follow this pattern:
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// * RunCustomTestProlog(test) // Run() should contain minimal code
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// * <insert call to actual test function within test case>
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// * RunCustomTestEpilog(test)
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static void RunGenericTest(TestBase *test) {
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RunCustomTestProlog(test);
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RunCustomTestEpilog(test);
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return;
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}
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// TEST ENTRY TEMPLATE:
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// TEST(rocrtst, Perf_<test name>) {
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// <Test Implementation class> <test_obj>;
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//
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// // Copy and modify implementation of RunGenericTest() if you need to deviate
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// // from the standard pattern implemented there.
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// RunGenericTest(&<test_obj>);
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// }
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TEST(rocrtst, Test_Example) {
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TestExample tst;
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RunGenericTest(&tst);
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}
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TEST(rocrtstFunc, IPC) {
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IPCTest ipc;
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RunGenericTest(&ipc);
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}
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TEST(rocrtstFunc, MemoryAccessTests) {
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MemoryAccessTest mt;
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RunCustomTestProlog(&mt);
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mt.CPUAccessToGPUMemoryTest();
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mt.GPUAccessToCPUMemoryTest();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstFunc, Concurrent_Init_Test) {
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ConcurrentInitTest ci;
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RunCustomTestProlog(&ci);
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ci.TestConcurrentInit();
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RunCustomTestEpilog(&ci);
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}
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TEST(rocrtstFunc, Concurrent_Init_Shutdown_Test) {
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ConcurrentInitShutdownTest ci;
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RunCustomTestProlog(&ci);
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ci.TestConcurrentInitShutdown();
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RunCustomTestEpilog(&ci);
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}
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TEST(rocrtstFunc, Concurrent_Shutdown) {
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ConcurrentShutdownTest cs;
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RunCustomTestProlog(&cs);
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cs.TestConcurrentShutdown();
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RunCustomTestEpilog(&cs);
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}
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TEST(rocrtstFunc, Reference_Count) {
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ReferenceCountTest rc(true, false);
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RunCustomTestProlog(&rc);
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rc.TestReferenceCount();
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RunCustomTestEpilog(&rc);
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}
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TEST(rocrtstFunc, Max_Reference_Count) {
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ReferenceCountTest rc(false, true);
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RunCustomTestProlog(&rc);
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rc.TestMaxReferenceCount();
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RunCustomTestEpilog(&rc);
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}
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TEST(rocrtstFunc, Memory_Max_Mem) {
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MemoryTest mt;
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RunCustomTestProlog(&mt);
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mt.MaxSingleAllocationTest();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstFunc, DebugBasicTests) {
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DebugBasicTest mt;
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RunCustomTestProlog(&mt);
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mt.VectorAddDebugTrapTest();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstFunc, Memory_Alignment_Test) {
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MemoryAlignmentTest ma;
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RunCustomTestProlog(&ma);
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ma.MemoryPoolAlignment();
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RunCustomTestEpilog(&ma);
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}
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TEST(rocrtstNeg, Memory_Negative_Tests) {
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MemoryAllocateNegativeTest mt;
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RunCustomTestProlog(&mt);
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mt.ZeroMemoryAllocateTest();
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mt.MaxMemoryAllocateTest();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstNeg, Queue_Validation_InvalidDimension) {
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QueueValidation qv(true, false, false, false, false);
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RunCustomTestProlog(&qv);
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qv.QueueValidationForInvalidDimension();
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RunCustomTestEpilog(&qv);
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}
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TEST(rocrtstNeg, Queue_Validation_InvalidGroupMemory) {
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QueueValidation qv(false, true, false, false, false);
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RunCustomTestProlog(&qv);
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qv.QueueValidationInvalidGroupMemory();
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RunCustomTestEpilog(&qv);
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}
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TEST(rocrtstNeg, Queue_Validation_InvalidKernelObject) {
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QueueValidation qv(false, false, true, false, false);
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RunCustomTestProlog(&qv);
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qv.QueueValidationForInvalidKernelObject();
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RunCustomTestEpilog(&qv);
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}
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TEST(rocrtstNeg, Queue_Validation_InvalidPacket) {
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QueueValidation qv(false, false, false, true, false);
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RunCustomTestProlog(&qv);
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qv.QueueValidationForInvalidPacket();
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RunCustomTestEpilog(&qv);
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}
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TEST(rocrtstNeg, Queue_Validation_InvalidWorkGroupSize) {
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QueueValidation qv(false, false, false, false, true);
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RunCustomTestProlog(&qv);
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qv.QueueValidationForInvalidWorkGroupSize();
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RunCustomTestEpilog(&qv);
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}
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TEST(rocrtstStress, Memory_Concurrent_Allocate_Test) {
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MemoryConcurrentTest mt(true, false, false);
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RunCustomTestProlog(&mt);
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mt.MemoryConcurrentAllocate();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstStress, Memory_Concurrent_Free_Test) {
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MemoryConcurrentTest mt(false, true, false);
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RunCustomTestProlog(&mt);
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mt.MemoryConcurrentFree();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstStress, DISABLED_Memory_Concurrent_Pool_Info_Test) {
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MemoryConcurrentTest mt(false, false, true);
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RunCustomTestProlog(&mt);
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mt.MemoryConcurrentPoolGetInfo();
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RunCustomTestEpilog(&mt);
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}
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TEST(rocrtstPerf, ENQUEUE_LATENCY) {
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EnqueueLatency singlePacketequeue(true);
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EnqueueLatency multiPacketequeue(false);
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RunGenericTest(&singlePacketequeue);
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RunGenericTest(&multiPacketequeue);
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}
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TEST(rocrtstPerf, Memory_Async_Copy) {
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MemoryAsyncCopy mac;
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// To do full test, uncomment this:
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// mac.set_full_test(true);
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// To test only 1 path, add lines like this:
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// mac.set_src_pool(<src pool id>);
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// mac.set_dst_pool(<dst pool id>);
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// The default is to and from the cpu to 1 gpu, and to/from a gpu to
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// another gpu
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RunGenericTest(&mac);
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}
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TEST(rocrtstPerf, Memory_Async_Copy_NUMA) {
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MemoryAsyncCopyNUMA numa;
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RunGenericTest(&numa);
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}
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TEST(rocrtstPerf, AQL_Dispatch_Time_Single_SpinWait) {
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DispatchTime dt(true, true);
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RunGenericTest(&dt);
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}
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TEST(rocrtstPerf, AQL_Dispatch_Time_Single_Interrupt) {
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DispatchTime dt(false, true);
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RunGenericTest(&dt);
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}
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TEST(rocrtstPerf, AQL_Dispatch_Time_Multi_SpinWait) {
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DispatchTime dt(true, false);
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RunGenericTest(&dt);
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}
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TEST(rocrtstPerf, AQL_Dispatch_Time_Multi_Interrupt) {
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DispatchTime dt(false, false);
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RunGenericTest(&dt);
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}
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int main(int argc, char** argv) {
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::testing::InitGoogleTest(&argc, argv);
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RocrTstGlobals settings;
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// Set some default values
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settings.verbosity = 1;
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settings.monitor_verbosity = 1;
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settings.num_iterations = 5;
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if (ProcessCmdline(&settings, argc, argv)) {
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return 1;
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}
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sRocrtstGlvalues = &settings;
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rsmi_status_t rsmi_ret = rsmi_init(0);
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if (rsmi_ret != RSMI_STATUS_SUCCESS) {
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std::cout << "Failed to initialize ROCm smi" << std::endl;
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return 1;
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}
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DumpMonitorInfo();
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return RUN_ALL_TESTS();
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}
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