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https://git.wownero.com/wownero/RandomWOW.git
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Memory-bound dataset initialization
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4fb168e249
commit
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@ -34,8 +34,8 @@ namespace RandomX {
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constexpr int SeedSize = 32;
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constexpr int ResultSize = 32;
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constexpr int ArgonIterations = 6;
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constexpr uint32_t ArgonMemorySize = 131072; //KiB
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constexpr int ArgonIterations = 3;
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constexpr uint32_t ArgonMemorySize = 262144; //KiB
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constexpr int ArgonLanes = 1;
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const char ArgonSalt[] = "Monero\x1A$";
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constexpr int ArgonSaltSize = sizeof(ArgonSalt) - 1;
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@ -46,7 +46,7 @@ namespace RandomX {
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constexpr int CacheBlockCount = CacheSize / CacheLineSize;
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constexpr int BlockExpansionRatio = DatasetSize / CacheSize;
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constexpr int DatasetBlockCount = BlockExpansionRatio * CacheBlockCount;
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constexpr int DatasetIterations = 32;
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constexpr int DatasetIterations = 10;
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#ifdef TRACE
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@ -62,42 +62,43 @@ namespace RandomX {
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x3 = aesenc<soft>(x3, keys[i])
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template<bool soft>
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void initBlock(const uint8_t* in, uint8_t* out, uint32_t blockNumber, const KeysContainer& keys) {
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__m128i x0, x1, x2, x3, iv;
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//block number 0..67108863
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//Initialization vector = block number extended to 128 bits
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iv = _mm_cvtsi32_si128(blockNumber);
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uint32_t cacheBlockNumber = blockNumber / BlockExpansionRatio; //0..2097151
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__m128i* cacheCacheLine = (__m128i*)(in + cacheBlockNumber * CacheLineSize);
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__m128i* datasetCacheLine = (__m128i*)out;
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void initBlock(const uint8_t* intermediate, uint8_t* out, uint32_t blockNumber, const KeysContainer& keys) {
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__m128i x0, x1, x2, x3;
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x0 = _mm_load_si128(cacheCacheLine + 0);
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x1 = _mm_load_si128(cacheCacheLine + 1);
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x2 = _mm_load_si128(cacheCacheLine + 2);
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x3 = _mm_load_si128(cacheCacheLine + 3);
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__m128i* xit = (__m128i*)intermediate;
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__m128i* xout = (__m128i*)out;
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x0 = _mm_xor_si128(x0, iv);
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x1 = _mm_xor_si128(x1, iv);
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x2 = _mm_xor_si128(x2, iv);
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x3 = _mm_xor_si128(x3, iv);
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x0 = _mm_cvtsi32_si128(blockNumber);
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constexpr int mask = (CacheSize / CacheLineSize) - 1;
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for (auto i = 0; i < DatasetIterations; ++i) {
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AES_ROUND(0);
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AES_ROUND(1);
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AES_ROUND(2);
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AES_ROUND(3);
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AES_ROUND(4);
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AES_ROUND(5);
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AES_ROUND(6);
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AES_ROUND(7);
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AES_ROUND(8);
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AES_ROUND(9);
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x0 = aesenc<soft>(x0, keys[0]);
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x0 = aesenc<soft>(x0, keys[1]);
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x1 = aesenc<soft>(x0, keys[2]);
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x1 = aesenc<soft>(x1, keys[3]);
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x2 = aesenc<soft>(x1, keys[4]);
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x2 = aesenc<soft>(x2, keys[5]);
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x3 = aesenc<soft>(x2, keys[6]);
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x3 = aesenc<soft>(x3, keys[7]);
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int index = _mm_cvtsi128_si32(x3);
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index &= mask;
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__m128i t0 = _mm_load_si128(xit + 4 * index + 0);
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__m128i t1 = _mm_load_si128(xit + 4 * index + 1);
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__m128i t2 = _mm_load_si128(xit + 4 * index + 2);
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__m128i t3 = _mm_load_si128(xit + 4 * index + 3);
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x0 = _mm_xor_si128(x0, t0);
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x1 = _mm_xor_si128(x1, t1);
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x2 = _mm_xor_si128(x2, t2);
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x3 = _mm_xor_si128(x3, t3);
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}
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_mm_store_si128(datasetCacheLine + 0, x0);
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_mm_store_si128(datasetCacheLine + 1, x1);
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_mm_store_si128(datasetCacheLine + 2, x2);
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_mm_store_si128(datasetCacheLine + 3, x3);
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_mm_store_si128(xout + 0, x0);
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_mm_store_si128(xout + 1, x1);
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_mm_store_si128(xout + 2, x2);
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_mm_store_si128(xout + 3, x3);
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}
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template
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