Files
o3de/Gems/GradientSignal/Code/Tests/GradientSignalBenchmarks.cpp
T
Mike Balfour 7123ed18be Naive GetValues() implementation. (#6741)
* Naive GetValues() implementation.
Added the method itself, and the benchmarks which show that even the naive version is currently 10-50% faster than calling GetValue() for multiple values.

Signed-off-by: Mike Balfour <82224783+mbalfour-amzn@users.noreply.github.com>

* Added comments documenting why the const_cast is there.

Signed-off-by: Mike Balfour <82224783+mbalfour-amzn@users.noreply.github.com>

* Fixed link errors by creating new Shared.Tests lib.

Signed-off-by: Mike Balfour <82224783+mbalfour-amzn@users.noreply.github.com>

* Addressed PR feedback.

Signed-off-by: Mike Balfour <82224783+mbalfour-amzn@users.noreply.github.com>

* Fixed incorrect comparison.

Signed-off-by: Mike Balfour <82224783+mbalfour-amzn@users.noreply.github.com>
2022-01-07 12:12:09 -06:00

178 lines
6.0 KiB
C++

/*
* Copyright (c) Contributors to the Open 3D Engine Project.
* For complete copyright and license terms please see the LICENSE at the root of this distribution.
*
* SPDX-License-Identifier: Apache-2.0 OR MIT
*
*/
#ifdef HAVE_BENCHMARK
#include <Tests/GradientSignalTestFixtures.h>
#include <AzTest/AzTest.h>
#include <AzCore/Memory/PoolAllocator.h>
#include <AzCore/Math/Vector2.h>
#include <AzCore/UnitTest/TestTypes.h>
#include <AzFramework/Asset/AssetCatalogBus.h>
#include <GradientSignal/Components/ImageGradientComponent.h>
#include <GradientSignal/Components/PerlinGradientComponent.h>
#include <GradientSignal/Components/RandomGradientComponent.h>
#include <GradientSignal/Components/GradientTransformComponent.h>
namespace UnitTest
{
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_ImageGradientEBusGetValue)(benchmark::State& state)
{
CreateTestImageGradient(m_testEntity.get());
RunEBusGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_ImageGradientEBusGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_ImageGradientEBusGetValues)(benchmark::State& state)
{
CreateTestImageGradient(m_testEntity.get());
RunEBusGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_ImageGradientEBusGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_ImageGradientSamplerGetValue)(benchmark::State& state)
{
CreateTestImageGradient(m_testEntity.get());
RunSamplerGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_ImageGradientSamplerGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_ImageGradientSamplerGetValues)(benchmark::State& state)
{
CreateTestImageGradient(m_testEntity.get());
RunSamplerGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_ImageGradientSamplerGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_PerlinGradientEBusGetValue)(benchmark::State& state)
{
CreateTestPerlinGradient(m_testEntity.get());
RunEBusGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_PerlinGradientEBusGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_PerlinGradientEBusGetValues)(benchmark::State& state)
{
CreateTestPerlinGradient(m_testEntity.get());
RunEBusGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_PerlinGradientEBusGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_PerlinGradientSamplerGetValue)(benchmark::State& state)
{
CreateTestPerlinGradient(m_testEntity.get());
RunSamplerGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_PerlinGradientSamplerGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_PerlinGradientSamplerGetValues)(benchmark::State& state)
{
CreateTestPerlinGradient(m_testEntity.get());
RunSamplerGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_PerlinGradientSamplerGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_RandomGradientEBusGetValue)(benchmark::State& state)
{
CreateTestRandomGradient(m_testEntity.get());
RunEBusGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_RandomGradientEBusGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_RandomGradientEBusGetValues)(benchmark::State& state)
{
CreateTestRandomGradient(m_testEntity.get());
RunEBusGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_RandomGradientEBusGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_RandomGradientSamplerGetValue)(benchmark::State& state)
{
CreateTestRandomGradient(m_testEntity.get());
RunSamplerGetValueBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_RandomGradientSamplerGetValue)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
BENCHMARK_DEFINE_F(GradientSignalBenchmarkFixture, BM_RandomGradientSamplerGetValues)(benchmark::State& state)
{
CreateTestRandomGradient(m_testEntity.get());
RunSamplerGetValuesBenchmark(state);
}
BENCHMARK_REGISTER_F(GradientSignalBenchmarkFixture, BM_RandomGradientSamplerGetValues)
->Args({ 1024, 1024 })
->Args({ 2048, 2048 })
->Args({ 4096, 4096 })
->Unit(::benchmark::kMillisecond);
#endif
}