#ifndef LLVM_LIBC_UTILS_BENCHMARK_MEMORY_BENCHMARK_H
#define LLVM_LIBC_UTILS_BENCHMARK_MEMORY_BENCHMARK_H
#include "LibcBenchmark.h"
#include "LibcFunctionPrototypes.h"
#include "MemorySizeDistributions.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/Support/Alignment.h"
#include "llvm/Support/MathExtras.h"
#include <cstdint>
#include <optional>
#include <random>
namespace llvm {
namespace libc_benchmarks {
struct StudyConfiguration {
std::string Function;
uint32_t NumTrials = 1;
bool IsSweepMode = false;
uint32_t SweepModeMaxSize = 0;
std::string SizeDistributionName;
MaybeAlign AccessAlignment = std::nullopt;
uint32_t MemcmpMismatchAt = 0;
};
struct Runtime {
HostState Host;
uint32_t BufferSize = 0;
uint32_t BatchParameterCount = 0;
BenchmarkOptions BenchmarkOptions;
};
struct Study {
std::string StudyName;
Runtime Runtime;
StudyConfiguration Configuration;
std::vector<Duration> Measurements;
};
class AlignedBuffer {
char *const Buffer = nullptr;
size_t Size = 0;
public:
static constexpr size_t Alignment = 512;
explicit AlignedBuffer(size_t Size)
: Buffer(static_cast<char *>(
aligned_alloc(Alignment, alignTo(Size, Alignment)))),
Size(Size) {}
~AlignedBuffer() { free(Buffer); }
inline char *operator+(size_t Index) { return Buffer + Index; }
inline const char *operator+(size_t Index) const { return Buffer + Index; }
inline char &operator[](size_t Index) { return Buffer[Index]; }
inline const char &operator[](size_t Index) const { return Buffer[Index]; }
inline char *begin() { return Buffer; }
inline char *end() { return Buffer + Size; }
};
class OffsetDistribution {
std::uniform_int_distribution<uint32_t> Distribution;
uint32_t Factor;
public:
explicit OffsetDistribution(size_t BufferSize, size_t MaxSizeValue,
MaybeAlign AccessAlignment);
template <class Generator> uint32_t operator()(Generator &G) {
return Distribution(G) * Factor;
}
};
class MismatchOffsetDistribution {
std::uniform_int_distribution<size_t> MismatchIndexSelector;
llvm::SmallVector<uint32_t, 16> MismatchIndices;
const uint32_t MismatchAt;
public:
explicit MismatchOffsetDistribution(size_t BufferSize, size_t MaxSizeValue,
size_t MismatchAt);
explicit operator bool() const { return !MismatchIndices.empty(); }
const llvm::SmallVectorImpl<uint32_t> &getMismatchIndices() const {
return MismatchIndices;
}
template <class Generator> uint32_t operator()(Generator &G, uint32_t Size) {
const uint32_t MismatchIndex = MismatchIndices[MismatchIndexSelector(G)];
if (Size >= MismatchAt)
return MismatchIndex - MismatchAt;
return MismatchIndex - Size - 1;
}
};
struct ParameterBatch {
struct ParameterType {
unsigned OffsetBytes : 16;
unsigned SizeBytes : 16;
};
ParameterBatch(size_t BufferCount);
void checkValid(const ParameterType &) const;
size_t getBatchBytes() const;
const size_t BufferSize;
const size_t BatchSize;
std::vector<ParameterType> Parameters;
};
struct CopySetup : public ParameterBatch {
CopySetup();
inline static const ArrayRef<MemorySizeDistribution> getDistributions() {
return getMemcpySizeDistributions();
}
inline void *Call(ParameterType Parameter, MemcpyFunction Memcpy) {
return Memcpy(DstBuffer + Parameter.OffsetBytes,
SrcBuffer + Parameter.OffsetBytes, Parameter.SizeBytes);
}
private:
AlignedBuffer SrcBuffer;
AlignedBuffer DstBuffer;
};
struct MoveSetup : public ParameterBatch {
MoveSetup();
inline static const ArrayRef<MemorySizeDistribution> getDistributions() {
return getMemmoveSizeDistributions();
}
inline void *Call(ParameterType Parameter, MemmoveFunction Memmove) {
return Memmove(Buffer + ParameterBatch::BufferSize / 3,
Buffer + Parameter.OffsetBytes, Parameter.SizeBytes);
}
private:
AlignedBuffer Buffer;
};
struct SetSetup : public ParameterBatch {
SetSetup();
inline static const ArrayRef<MemorySizeDistribution> getDistributions() {
return getMemsetSizeDistributions();
}
inline void *Call(ParameterType Parameter, MemsetFunction Memset) {
return Memset(DstBuffer + Parameter.OffsetBytes,
Parameter.OffsetBytes % 0xFF, Parameter.SizeBytes);
}
inline void *Call(ParameterType Parameter, BzeroFunction Bzero) {
Bzero(DstBuffer + Parameter.OffsetBytes, Parameter.SizeBytes);
return DstBuffer.begin();
}
private:
AlignedBuffer DstBuffer;
};
struct ComparisonSetup : public ParameterBatch {
ComparisonSetup();
inline static const ArrayRef<MemorySizeDistribution> getDistributions() {
return getMemcmpSizeDistributions();
}
inline int Call(ParameterType Parameter, MemcmpOrBcmpFunction MemcmpOrBcmp) {
return MemcmpOrBcmp(LhsBuffer + Parameter.OffsetBytes,
RhsBuffer + Parameter.OffsetBytes, Parameter.SizeBytes);
}
private:
AlignedBuffer LhsBuffer;
AlignedBuffer RhsBuffer;
};
}
}
#endif