@ -2,27 +2,26 @@
@@ -2,27 +2,26 @@
#include <stdint.h>
#include <memory.h>
#ifdef __INTELLISENSE__
/* just for vstudio code colors */
#define __CUDA_ARCH__ 500
#endif
#define TPB52 10
#define TPB50 16
#include "cuda_lyra2v2_sm3.cuh"
#ifdef __INTELLISENSE__
/* just for vstudio code colors */
#define __CUDA_ARCH__ 500
#endif
#if __CUDA_ARCH__ >= 500
#include "cuda_lyra2_vectors.h"
#define Nrow 4
#define Ncol 4
#define u64type uint2
#define vectype uint28
#define uint4x2 uint28
#define memshift 3
__device__ vectype *DMatrix;
__device__ uint4x2 *DMatrix;
__device__ __forceinline__
void Gfunc_v5(uint2 &a, uint2 &b, uint2 &c, uint2 &d)
@ -34,7 +33,7 @@ void Gfunc_v5(uint2 &a, uint2 &b, uint2 &c, uint2 &d)
@@ -34,7 +33,7 @@ void Gfunc_v5(uint2 &a, uint2 &b, uint2 &c, uint2 &d)
}
__device__ __forceinline__
void round_lyra_v5(vectype * s)
void round_lyra_v5(uint4x2 * s)
{
Gfunc_v5(s[0].x, s[1].x, s[2].x, s[3].x);
Gfunc_v5(s[0].y, s[1].y, s[2].y, s[3].y);
@ -48,9 +47,9 @@ void round_lyra_v5(vectype* s)
@@ -48,9 +47,9 @@ void round_lyra_v5(vectype* s)
}
__device__ __forceinline__
void reduceDuplex(vectype state[4], uint32_t thread)
void reduceDuplex(uint4x2 state[4], uint32_t thread)
{
vectype state1[3];
uint4x2 state1[3];
uint32_t ps1 = (Nrow * Ncol * memshift * thread);
uint32_t ps2 = (memshift * (Ncol-1) + memshift * Ncol + Nrow * Ncol * memshift * thread);
@ -81,7 +80,7 @@ void reduceDuplex(vectype state[4], uint32_t thread)
@@ -81,7 +80,7 @@ void reduceDuplex(vectype state[4], uint32_t thread)
}
__device__ __forceinline__
void reduceDuplex50(vectype state[4], uint32_t thread)
void reduceDuplex50(uint4x2 state[4], uint32_t thread)
{
uint32_t ps1 = (Nrow * Ncol * memshift * thread);
uint32_t ps2 = (memshift * (Ncol - 1) + memshift * Ncol + Nrow * Ncol * memshift * thread);
@ -105,9 +104,9 @@ void reduceDuplex50(vectype state[4], uint32_t thread)
@@ -105,9 +104,9 @@ void reduceDuplex50(vectype state[4], uint32_t thread)
}
__device__ __forceinline__
void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOut, vectype state[4], uint32_t thread)
void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOut, uint4x2 state[4], uint32_t thread)
{
vectype state2[3], state1[3];
uint4x2 state2[3], state1[3];
uint32_t ps1 = (memshift * Ncol * rowIn + Nrow * Ncol * memshift * thread);
uint32_t ps2 = (memshift * Ncol * rowInOut + Nrow * Ncol * memshift * thread);
@ -152,7 +151,7 @@ void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOu
@@ -152,7 +151,7 @@ void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOu
#pragma unroll
for (int j = 0; j < 3; j++)
{
vectype tmp = state1[j] + state2[j];
uint4x2 tmp = state1[j] + state2[j];
state[j] ^= tmp;
}
@ -180,9 +179,9 @@ void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOu
@@ -180,9 +179,9 @@ void reduceDuplexRowSetupV2(const int rowIn, const int rowInOut, const int rowOu
__device__ __forceinline__
void reduceDuplexRowtV2(const int rowIn, const int rowInOut, const int rowOut, vectype * state, uint32_t thread)
void reduceDuplexRowtV2(const int rowIn, const int rowInOut, const int rowOut, uint4x2 * state, uint32_t thread)
{
vectype state1[3],state2[3];
uint4x2 state1[3],state2[3];
uint32_t ps1 = (memshift * Ncol * rowIn + Nrow * Ncol * memshift * thread);
uint32_t ps2 = (memshift * Ncol * rowInOut + Nrow * Ncol * memshift * thread);
uint32_t ps3 = (memshift * Ncol * rowOut + Nrow * Ncol * memshift * thread);
@ -260,9 +259,9 @@ void lyra2v2_gpu_hash_32(uint32_t threads, uint32_t startNounce, uint2 *outputHa
@@ -260,9 +259,9 @@ void lyra2v2_gpu_hash_32(uint32_t threads, uint32_t startNounce, uint2 *outputHa
{
const uint32_t thread = (blockDim.x * blockIdx.x + threadIdx.x);
vectype state[4];
uint4x2 state[4];
uint28 blake2b_IV[2];
uint4x 2 blake2b_IV[2];
if (threadIdx.x == 0) {
@ -344,7 +343,9 @@ void lyra2v2_gpu_hash_32(uint32_t threads, uint32_t startNounce, uint2 *outputHa
@@ -344,7 +343,9 @@ void lyra2v2_gpu_hash_32(uint32_t threads, uint32_t startNounce, uint2 *outputHa
}
#else
#include "cuda_helper.h"
#if __CUDA_ARCH__ < 300
__device__ void* DMatrix;
#endif
__global__ void lyra2v2_gpu_hash_32(uint32_t threads, uint32_t startNounce, uint2 *outputHash) {}
#endif