sfizz/benchmarks/BM_looping.cpp

79 lines
2.8 KiB
C++
Raw Normal View History

2020-01-25 10:04:31 +01:00
// SPDX-License-Identifier: BSD-2-Clause
2020-01-25 13:13:07 +01:00
// This code is part of the sfizz library and is licensed under a BSD 2-clause
// license. You should have receive a LICENSE.md file along with the code.
// If not, contact the sfizz maintainers at https://github.com/sfztools/sfizz
2019-08-30 00:49:58 +02:00
2019-08-22 01:54:43 +02:00
#include <benchmark/benchmark.h>
2020-01-04 17:38:51 +01:00
#include "SIMDHelpers.h"
2019-08-22 01:54:43 +02:00
#include <vector>
#include <random>
#include <numeric>
#include <absl/algorithm/container.h>
// In this one we have an array of indices
constexpr int loopStart { 5 };
constexpr int loopEnd { 1076 };
constexpr float maxJump { 4 };
class LoopingFixture : public benchmark::Fixture {
public:
void SetUp(const ::benchmark::State& state) {
std::random_device rd { };
std::mt19937 gen { rd() };
2019-08-29 02:22:35 +02:00
std::uniform_real_distribution<float> dist { 0, maxJump };
2019-08-22 01:54:43 +02:00
indices = std::vector<int>(state.range(0));
leftCoeffs = std::vector<float>(state.range(0));
rightCoeffs = std::vector<float>(state.range(0));
jumps = std::vector<float>(state.range(0));
absl::c_generate(jumps, [&]() { return dist(gen); });
}
void TearDown(const ::benchmark::State& /* state */) {
2019-08-22 01:54:43 +02:00
}
std::vector<int> indices;
std::vector<float> leftCoeffs;
std::vector<float> rightCoeffs;
std::vector<float> jumps;
};
BENCHMARK_DEFINE_F(LoopingFixture, Scalar)(benchmark::State& state) {
for (auto _ : state)
{
sfz::loopingSFZIndex<float, false>(jumps, absl::MakeSpan(leftCoeffs), absl::MakeSpan(rightCoeffs), absl::MakeSpan(indices), 2.5f, loopEnd, loopStart);
2019-08-22 01:54:43 +02:00
}
}
BENCHMARK_DEFINE_F(LoopingFixture, SIMD)(benchmark::State& state) {
for (auto _ : state)
{
sfz::loopingSFZIndex<float, true>(jumps, absl::MakeSpan(leftCoeffs), absl::MakeSpan(rightCoeffs), absl::MakeSpan(indices), 2.5f, loopEnd, loopStart);
2019-08-22 01:54:43 +02:00
}
}
BENCHMARK_DEFINE_F(LoopingFixture, Scalar_Unaligned)(benchmark::State& state) {
for (auto _ : state)
{
sfz::loopingSFZIndex<float, false>(absl::MakeSpan(jumps).subspan(1), absl::MakeSpan(leftCoeffs).subspan(2), absl::MakeSpan(rightCoeffs).subspan(1), absl::MakeSpan(indices).subspan(3), 2.5f, loopEnd, loopStart);
2019-08-22 01:54:43 +02:00
}
}
BENCHMARK_DEFINE_F(LoopingFixture, SIMD_Unaligned)(benchmark::State& state) {
for (auto _ : state)
{
sfz::loopingSFZIndex<float, true>(absl::MakeSpan(jumps).subspan(1), absl::MakeSpan(leftCoeffs).subspan(2), absl::MakeSpan(rightCoeffs).subspan(1), absl::MakeSpan(indices).subspan(3), 2.5f, loopEnd, loopStart);
2019-08-22 01:54:43 +02:00
}
}
// Register the function as a benchmark
BENCHMARK_REGISTER_F(LoopingFixture, Scalar)->RangeMultiplier(2)->Range((2<<6), (2<<12));
BENCHMARK_REGISTER_F(LoopingFixture, SIMD)->RangeMultiplier(2)->Range((2<<6), (2<<12));
BENCHMARK_REGISTER_F(LoopingFixture, Scalar_Unaligned)->RangeMultiplier(2)->Range((2<<6), (2<<12));
BENCHMARK_REGISTER_F(LoopingFixture, SIMD_Unaligned)->RangeMultiplier(2)->Range((2<<6), (2<<12));
2020-01-04 17:38:51 +01:00
BENCHMARK_MAIN();