mirror of
https://github.com/GOSTSec/ccminer
synced 2025-01-12 07:48:33 +00:00
allium algo
This commit is contained in:
parent
bfcf7a9e52
commit
b97567a451
@ -39,6 +39,7 @@ ccminer_SOURCES = elist.h miner.h compat.h \
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lyra2/lyra2RE.cu lyra2/cuda_lyra2.cu \
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lyra2/lyra2REv2.cu lyra2/cuda_lyra2v2.cu \
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lyra2/Lyra2Z.c lyra2/lyra2Z.cu lyra2/cuda_lyra2Z.cu \
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lyra2/allium.cu \
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Algo256/cuda_bmw256.cu Algo256/cuda_cubehash256.cu \
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Algo256/cuda_blake256.cu Algo256/cuda_groestl256.cu \
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Algo256/cuda_keccak256_sm3.cu Algo256/cuda_keccak256.cu Algo256/cuda_skein256.cu \
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2
algos.h
2
algos.h
@ -8,6 +8,7 @@ enum sha_algos {
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ALGO_BLAKECOIN = 0,
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ALGO_BLAKE,
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ALGO_BLAKE2S,
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ALGO_ALLIUM,
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ALGO_BMW,
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ALGO_BASTION,
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ALGO_C11,
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@ -80,6 +81,7 @@ static const char *algo_names[] = {
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"blakecoin",
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"blake",
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"blake2s",
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"allium",
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"bmw",
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"bastion",
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"c11",
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@ -49,6 +49,7 @@ void bench_free()
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void algo_free_all(int thr_id)
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{
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// only initialized algos will be freed
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free_allium(thr_id);
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free_bastion(thr_id);
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free_bitcore(thr_id);
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free_blake256(thr_id);
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@ -1698,6 +1698,7 @@ static bool stratum_gen_work(struct stratum_ctx *sctx, struct work *work)
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case ALGO_SCRYPT_JANE:
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work_set_target(work, sctx->job.diff / (65536.0 * opt_difficulty));
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break;
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case ALGO_ALLIUM:
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case ALGO_DMD_GR:
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case ALGO_FRESH:
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case ALGO_FUGUE256:
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@ -2234,6 +2235,7 @@ static void *miner_thread(void *userdata)
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case ALGO_TRIBUS:
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minmax = 0x1000000;
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break;
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case ALGO_ALLIUM:
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case ALGO_C11:
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case ALGO_DEEP:
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case ALGO_HEAVY:
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@ -2323,6 +2325,9 @@ static void *miner_thread(void *userdata)
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/* scan nonces for a proof-of-work hash */
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switch (opt_algo) {
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case ALGO_ALLIUM:
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rc = scanhash_allium(thr_id, &work, max_nonce, &hashes_done);
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break;
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case ALGO_BASTION:
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rc = scanhash_bastion(thr_id, &work, max_nonce, &hashes_done);
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break;
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@ -519,6 +519,7 @@
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<CudaCompile Include="qubit\luffa.cu" />
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<CudaCompile Include="qubit\qubit.cu" />
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<CudaCompile Include="qubit\qubit_luffa512.cu" />
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<CudaCompile Include="lyra2\allium.cu" />
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<CudaCompile Include="lyra2\lyra2RE.cu" />
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<CudaCompile Include="lyra2\cuda_lyra2.cu" />
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<CudaCompile Include="lyra2\lyra2REv2.cu" />
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@ -910,6 +910,9 @@
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<CudaCompile Include="Algo256\cuda_bmw.cu">
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<Filter>Source Files\CUDA\Algo256</Filter>
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</CudaCompile>
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<CudaCompile Include="lyra2\allium.cu">
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<Filter>Source Files\CUDA\lyra2</Filter>
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</CudaCompile>
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<CudaCompile Include="lyra2\cuda_lyra2.cu">
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<Filter>Source Files\CUDA\lyra2</Filter>
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</CudaCompile>
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@ -1,4 +1,4 @@
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AC_INIT([ccminer], [2.2.5], [], [ccminer], [http://github.com/tpruvot/ccminer])
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AC_INIT([ccminer], [2.2.6], [], [ccminer], [http://github.com/tpruvot/ccminer])
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AC_PREREQ([2.59c])
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AC_CANONICAL_SYSTEM
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213
lyra2/allium.cu
Normal file
213
lyra2/allium.cu
Normal file
@ -0,0 +1,213 @@
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extern "C" {
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#include "sph/sph_blake.h"
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#include "sph/sph_keccak.h"
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#include "sph/sph_cubehash.h"
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#include "sph/sph_skein.h"
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#include "sph/sph_groestl.h"
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#include "lyra2/Lyra2.h"
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}
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#include <miner.h>
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#include <cuda_helper.h>
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static uint64_t* d_hash[MAX_GPUS];
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static uint64_t* d_matrix[MAX_GPUS];
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extern void blake256_cpu_init(int thr_id, uint32_t threads);
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extern void blake256_cpu_setBlock_80(uint32_t *pdata);
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//extern void blake256_cpu_hash_80(const int thr_id, const uint32_t threads, const uint32_t startNonce, uint64_t *Hash, int order);
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//extern void keccak256_sm3_hash_32(int thr_id, uint32_t threads, uint32_t startNonce, uint64_t *d_outputHash, int order);
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//extern void keccak256_sm3_init(int thr_id, uint32_t threads);
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//extern void keccak256_sm3_free(int thr_id);
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extern void blakeKeccak256_cpu_hash_80(const int thr_id, const uint32_t threads, const uint32_t startNonce, uint64_t *Hash, int order);
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extern void skein256_cpu_hash_32(int thr_id, uint32_t threads, uint32_t startNonce, uint64_t *d_outputHash, int order);
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extern void cubehash256_cpu_hash_32(int thr_id, uint32_t threads, uint32_t startNounce, uint64_t *d_hash, int order);
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extern void skein256_cpu_init(int thr_id, uint32_t threads);
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extern void lyra2_cpu_init(int thr_id, uint32_t threads, uint64_t *d_matrix);
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extern void lyra2_cpu_hash_32(int thr_id, uint32_t threads, uint32_t startNonce, uint64_t *d_outputHash, bool gtx750ti);
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extern void groestl256_cpu_init(int thr_id, uint32_t threads);
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extern void groestl256_cpu_free(int thr_id);
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extern void groestl256_setTarget(const void *ptarget);
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extern uint32_t groestl256_cpu_hash_32(int thr_id, uint32_t threads, uint32_t startNounce, uint64_t *d_outputHash, int order);
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extern uint32_t groestl256_getSecNonce(int thr_id, int num);
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extern "C" void allium_hash(void *state, const void *input)
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{
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uint32_t hashA[8], hashB[8];
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sph_blake256_context ctx_blake;
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sph_keccak256_context ctx_keccak;
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sph_cubehash256_context ctx_cube;
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sph_skein256_context ctx_skein;
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sph_groestl256_context ctx_groestl;
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sph_blake256_set_rounds(14);
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sph_blake256_init(&ctx_blake);
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sph_blake256(&ctx_blake, input, 80);
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sph_blake256_close(&ctx_blake, hashA);
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sph_keccak256_init(&ctx_keccak);
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sph_keccak256(&ctx_keccak, hashA, 32);
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sph_keccak256_close(&ctx_keccak, hashB);
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LYRA2(hashA, 32, hashB, 32, hashB, 32, 1, 8, 8);
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sph_cubehash256_init(&ctx_cube);
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sph_cubehash256(&ctx_cube, hashA, 32);
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sph_cubehash256_close(&ctx_cube, hashB);
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LYRA2(hashA, 32, hashB, 32, hashB, 32, 1, 8, 8);
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sph_skein256_init(&ctx_skein);
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sph_skein256(&ctx_skein, hashA, 32);
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sph_skein256_close(&ctx_skein, hashB);
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sph_groestl256_init(&ctx_groestl);
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sph_groestl256(&ctx_groestl, hashB, 32);
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sph_groestl256_close(&ctx_groestl, hashA);
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memcpy(state, hashA, 32);
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}
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static bool init[MAX_GPUS] = { 0 };
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static __thread uint32_t throughput = 0;
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extern "C" int scanhash_allium(int thr_id, struct work* work, uint32_t max_nonce, unsigned long *hashes_done)
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{
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uint32_t *pdata = work->data;
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uint32_t *ptarget = work->target;
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const uint32_t first_nonce = pdata[19];
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if (opt_benchmark)
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ptarget[7] = 0x00ff;
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static __thread bool gtx750ti;
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if (!init[thr_id])
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{
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int dev_id = device_map[thr_id];
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cudaSetDevice(dev_id);
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CUDA_LOG_ERROR();
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int intensity = (device_sm[dev_id] >= 500 && !is_windows()) ? 17 : 16;
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if (device_sm[device_map[thr_id]] == 500) intensity = 15;
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throughput = cuda_default_throughput(thr_id, 1U << intensity); // 18=256*256*4;
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if (init[thr_id]) throughput = min(throughput, max_nonce - first_nonce);
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cudaDeviceProp props;
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cudaGetDeviceProperties(&props, dev_id);
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if (strstr(props.name, "750 Ti")) gtx750ti = true;
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else gtx750ti = false;
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gpulog(LOG_INFO, thr_id, "Intensity set to %g, %u cuda threads", throughput2intensity(throughput), throughput);
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blake256_cpu_init(thr_id, throughput);
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//keccak256_sm3_init(thr_id, throughput);
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skein256_cpu_init(thr_id, throughput);
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groestl256_cpu_init(thr_id, throughput);
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//cuda_get_arch(thr_id);
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if (device_sm[dev_id] >= 500)
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{
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size_t matrix_sz = device_sm[dev_id] > 500 ? sizeof(uint64_t) * 4 * 4 : sizeof(uint64_t) * 8 * 8 * 3 * 4;
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CUDA_SAFE_CALL(cudaMalloc(&d_matrix[thr_id], matrix_sz * throughput));
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lyra2_cpu_init(thr_id, throughput, d_matrix[thr_id]);
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}
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CUDA_SAFE_CALL(cudaMalloc(&d_hash[thr_id], (size_t)32 * throughput));
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init[thr_id] = true;
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}
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uint32_t _ALIGN(128) endiandata[20];
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for (int k=0; k < 20; k++)
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be32enc(&endiandata[k], pdata[k]);
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blake256_cpu_setBlock_80(pdata);
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groestl256_setTarget(ptarget);
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do {
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int order = 0;
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//blake256_cpu_hash_80(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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//keccak256_sm3_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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blakeKeccak256_cpu_hash_80(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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lyra2_cpu_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], gtx750ti);
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cubehash256_cpu_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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lyra2_cpu_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], gtx750ti);
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skein256_cpu_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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*hashes_done = pdata[19] - first_nonce + throughput;
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work->nonces[0] = groestl256_cpu_hash_32(thr_id, throughput, pdata[19], d_hash[thr_id], order++);
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if (work->nonces[0] != UINT32_MAX)
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{
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const uint32_t Htarg = ptarget[7];
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uint32_t _ALIGN(64) vhash[8];
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be32enc(&endiandata[19], work->nonces[0]);
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allium_hash(vhash, endiandata);
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if (vhash[7] <= Htarg && fulltest(vhash, ptarget)) {
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work->valid_nonces = 1;
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work_set_target_ratio(work, vhash);
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work->nonces[1] = groestl256_getSecNonce(thr_id, 1);
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if (work->nonces[1] != UINT32_MAX) {
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be32enc(&endiandata[19], work->nonces[1]);
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allium_hash(vhash, endiandata);
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bn_set_target_ratio(work, vhash, 1);
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work->valid_nonces++;
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pdata[19] = max(work->nonces[0], work->nonces[1]) + 1;
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} else {
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pdata[19] = work->nonces[0] + 1; // cursor
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}
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return work->valid_nonces;
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}
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else if (vhash[7] > Htarg) {
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gpu_increment_reject(thr_id);
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if (!opt_quiet)
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gpulog(LOG_WARNING, thr_id, "result for %08x does not validate on CPU!", work->nonces[0]);
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pdata[19] = work->nonces[0] + 1;
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continue;
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}
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}
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if ((uint64_t)throughput + pdata[19] >= max_nonce) {
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pdata[19] = max_nonce;
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break;
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}
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pdata[19] += throughput;
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} while (!work_restart[thr_id].restart);
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*hashes_done = pdata[19] - first_nonce;
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return 0;
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}
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// cleanup
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extern "C" void free_allium(int thr_id)
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{
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if (!init[thr_id])
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return;
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cudaThreadSynchronize();
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cudaFree(d_hash[thr_id]);
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cudaFree(d_matrix[thr_id]);
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//keccak256_sm3_free(thr_id);
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groestl256_cpu_free(thr_id);
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init[thr_id] = false;
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cudaDeviceSynchronize();
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}
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3
miner.h
3
miner.h
@ -273,6 +273,7 @@ void sha256d(unsigned char *hash, const unsigned char *data, int len);
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struct work;
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extern int scanhash_allium(int thr_id, struct work* work, uint32_t max_nonce, unsigned long *hashes_done);
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extern int scanhash_bastion(int thr_id, struct work* work, uint32_t max_nonce, unsigned long *hashes_done);
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extern int scanhash_blake256(int thr_id, struct work* work, uint32_t max_nonce, unsigned long *hashes_done, int8_t blakerounds);
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extern int scanhash_blake2s(int thr_id, struct work *work, uint32_t max_nonce, unsigned long *hashes_done);
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@ -339,6 +340,7 @@ extern int scanhash_scrypt_jane(int thr_id, struct work *work, uint32_t max_nonc
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/* free device allocated memory per algo */
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void algo_free_all(int thr_id);
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extern void free_allium(int thr_id);
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extern void free_bastion(int thr_id);
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extern void free_bitcore(int thr_id);
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extern void free_blake256(int thr_id);
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@ -887,6 +889,7 @@ void applog_hash64(void *hash);
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void applog_compare_hash(void *hash, void *hash_ref);
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void print_hash_tests(void);
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void allium_hash(void *state, const void *input);
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void bastionhash(void* output, const unsigned char* input);
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void blake256hash(void *output, const void *input, int8_t rounds);
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void blake2b_hash(void *output, const void *input);
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