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https://git.wownero.com/wownero/RandomWOW.git
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Separate executeSuperscalar function
Tweaked superscalar hash constants
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parent
2132e5fef5
commit
2e68c89740
@ -453,7 +453,7 @@ namespace RandomX {
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}
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constexpr uint64_t superscalarMul0 = 6364136223846793005ULL;
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constexpr uint64_t superscalarAdd1 = 9298410992540426048ULL;
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constexpr uint64_t superscalarAdd1 = 9298410992540426748ULL;
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constexpr uint64_t superscalarAdd2 = 12065312585734608966ULL;
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constexpr uint64_t superscalarAdd3 = 9306329213124610396ULL;
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constexpr uint64_t superscalarAdd4 = 5281919268842080866ULL;
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@ -474,6 +474,55 @@ namespace RandomX {
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return mixBlock;
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}
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template<bool superscalar>
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void InterpretedVirtualMachine<superscalar>::executeSuperscalar(int_reg_t(&r)[8], LightProgram& prog, std::vector<uint64_t>& reciprocals) {
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for (unsigned j = 0; j < prog.getSize(); ++j) {
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Instruction& instr = prog(j);
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switch (instr.opcode)
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{
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case RandomX::LightInstructionType::ISUB_R:
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r[instr.dst] -= r[instr.src];
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break;
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case RandomX::LightInstructionType::IXOR_R:
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r[instr.dst] ^= r[instr.src];
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break;
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case RandomX::LightInstructionType::IADD_RS:
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r[instr.dst] += r[instr.src] << (instr.mod % 4);
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break;
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case RandomX::LightInstructionType::IMUL_R:
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r[instr.dst] *= r[instr.src];
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break;
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case RandomX::LightInstructionType::IROR_C:
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r[instr.dst] = rotr(r[instr.dst], instr.getImm32());
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break;
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case RandomX::LightInstructionType::IADD_C7:
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case RandomX::LightInstructionType::IADD_C8:
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case RandomX::LightInstructionType::IADD_C9:
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r[instr.dst] += signExtend2sCompl(instr.getImm32());
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break;
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case RandomX::LightInstructionType::IXOR_C7:
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case RandomX::LightInstructionType::IXOR_C8:
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case RandomX::LightInstructionType::IXOR_C9:
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r[instr.dst] ^= signExtend2sCompl(instr.getImm32());
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break;
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case RandomX::LightInstructionType::IMULH_R:
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r[instr.dst] = mulh(r[instr.dst], r[instr.src]);
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break;
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case RandomX::LightInstructionType::ISMULH_R:
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r[instr.dst] = smulh(r[instr.dst], r[instr.src]);
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break;
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case RandomX::LightInstructionType::IMUL_RCP:
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if(superscalar)
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r[instr.dst] *= reciprocals[instr.getImm32()];
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else
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r[instr.dst] *= reciprocal(instr.getImm32());
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break;
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default:
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UNREACHABLE;
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}
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}
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}
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template<bool superscalar>
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void InterpretedVirtualMachine<superscalar>::executeSuperscalar(uint32_t blockNumber, int_reg_t(&r)[8]) {
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int_reg_t rl[8];
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@ -491,49 +540,9 @@ namespace RandomX {
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for (unsigned i = 0; i < RANDOMX_CACHE_ACCESSES; ++i) {
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mixBlock = getMixBlock(registerValue, cache);
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LightProgram& prog = superScalarPrograms[i];
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for (unsigned j = 0; j < prog.getSize(); ++j) {
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Instruction& instr = prog(j);
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switch (instr.opcode)
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{
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case RandomX::LightInstructionType::ISUB_R:
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rl[instr.dst] -= rl[instr.src];
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break;
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case RandomX::LightInstructionType::IXOR_R:
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rl[instr.dst] ^= rl[instr.src];
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break;
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case RandomX::LightInstructionType::IADD_RS:
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rl[instr.dst] += rl[instr.src] << (instr.mod % 4);
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break;
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case RandomX::LightInstructionType::IMUL_R:
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rl[instr.dst] *= rl[instr.src];
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break;
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case RandomX::LightInstructionType::IROR_C:
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rl[instr.dst] = rotr(rl[instr.dst], instr.getImm32());
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break;
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case RandomX::LightInstructionType::IADD_C7:
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case RandomX::LightInstructionType::IADD_C8:
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case RandomX::LightInstructionType::IADD_C9:
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rl[instr.dst] += signExtend2sCompl(instr.getImm32());
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break;
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case RandomX::LightInstructionType::IXOR_C7:
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case RandomX::LightInstructionType::IXOR_C8:
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case RandomX::LightInstructionType::IXOR_C9:
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rl[instr.dst] ^= signExtend2sCompl(instr.getImm32());
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break;
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case RandomX::LightInstructionType::IMULH_R:
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rl[instr.dst] = mulh(rl[instr.dst], rl[instr.src]);
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break;
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case RandomX::LightInstructionType::ISMULH_R:
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rl[instr.dst] = smulh(rl[instr.dst], rl[instr.src]);
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break;
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case RandomX::LightInstructionType::IMUL_RCP:
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rl[instr.dst] *= reciprocals[instr.getImm32()];
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break;
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default:
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UNREACHABLE;
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}
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}
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executeSuperscalar(rl, prog, reciprocals);
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for(unsigned q = 0; q < 8; ++q)
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rl[q] ^= load64(mixBlock + 8 * q);
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@ -73,6 +73,7 @@ namespace RandomX {
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void setDataset(dataset_t ds, uint64_t size, LightProgram(&programs)[RANDOMX_CACHE_ACCESSES]) override;
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void initialize() override;
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void execute() override;
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static void executeSuperscalar(int_reg_t(&r)[8], LightProgram& prog, std::vector<uint64_t>& reciprocals);
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private:
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static InstructionHandler<superscalar> engine[256];
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DatasetReadFunc readDataset;
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@ -2,8 +2,8 @@ r0_mul:
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;#/ 6364136223846793005
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db 45, 127, 149, 76, 45, 244, 81, 88
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r1_add:
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;#/ 9298410992540426048
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db 64, 159, 245, 89, 136, 151, 10, 129
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;#/ 9298410992540426748
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db 252, 161, 245, 89, 136, 151, 10, 129
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r2_add:
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;#/ 12065312585734608966
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db 70, 216, 194, 56, 223, 153, 112, 167
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20
src/main.cpp
20
src/main.cpp
@ -177,7 +177,6 @@ void mine(RandomX::VirtualMachine* vm, std::atomic<uint32_t>& atomicNonce, Atomi
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fillAes1Rx4<softAes>((void*)hash, RANDOMX_SCRATCHPAD_L3, scratchpad);
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vm->resetRoundingMode();
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vm->setScratchpad(scratchpad);
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//dump((char*)scratchpad, RandomX::ScratchpadSize, "spad-before.txt");
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for (int chain = 0; chain < RANDOMX_PROGRAM_COUNT - 1; ++chain) {
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fillAes1Rx4<softAes>((void*)hash, sizeof(RandomX::Program), vm->getProgramBuffer());
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vm->initialize();
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@ -194,6 +193,7 @@ void mine(RandomX::VirtualMachine* vm, std::atomic<uint32_t>& atomicNonce, Atomi
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}
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}*/
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vm->getResult<softAes>(scratchpad, RANDOMX_SCRATCHPAD_L3, hash);
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//dump((char*)scratchpad, RANDOMX_SCRATCHPAD_L3, "spad.txt");
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result.xorWith(hash);
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if (RandomX::trace) {
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std::cout << "Nonce: " << nonce << " ";
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@ -204,8 +204,10 @@ void mine(RandomX::VirtualMachine* vm, std::atomic<uint32_t>& atomicNonce, Atomi
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}
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}
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int main(int argc, char** argv) {
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bool softAes, genAsm, miningMode, verificationMode, help, largePages, async, genNative, jit, genSuperscalar, useSuperscalar;
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bool softAes, genAsm, miningMode, verificationMode, help, largePages, async, genNative, jit, genSuperscalar, legacy;
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int programCount, threadCount, initThreadCount, epoch;
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readOption("--softAes", argc, argv, softAes);
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@ -221,7 +223,7 @@ int main(int argc, char** argv) {
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readOption("--genNative", argc, argv, genNative);
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readOption("--help", argc, argv, help);
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readOption("--genSuperscalar", argc, argv, genSuperscalar);
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readOption("--useSuperscalar", argc, argv, useSuperscalar);
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readOption("--legacy", argc, argv, legacy);
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if (genSuperscalar) {
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RandomX::LightProgram p;
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@ -283,7 +285,7 @@ int main(int argc, char** argv) {
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outputHex(std::cout, (char*)dataset.cache.memory, sizeof(__m128i));
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std::cout << std::endl;
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}
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if (useSuperscalar) {
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if (!legacy) {
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RandomX::Blake2Generator gen(seed, programCount);
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for (int i = 0; i < RANDOMX_CACHE_ACCESSES; ++i) {
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RandomX::generateLightProg2(programs[i], gen);
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@ -297,7 +299,7 @@ int main(int argc, char** argv) {
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dataset.dataset.size = datasetSize;
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RandomX::datasetAlloc(dataset, largePages);
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const uint64_t datasetBlockCount = datasetSize / RandomX::CacheLineSize;
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if (useSuperscalar) {
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if (!legacy) {
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RandomX::JitCompilerX86 jit86;
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jit86.generateSuperScalarHash(programs);
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jit86.getDatasetInitFunc()(cache.memory, dataset.dataset.memory, 0, datasetBlockCount);
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@ -330,11 +332,11 @@ int main(int argc, char** argv) {
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vm = new RandomX::CompiledVirtualMachine();
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}
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else {
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if (jit && useSuperscalar)
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if (jit && !legacy)
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vm = new RandomX::CompiledLightVirtualMachine<true>();
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else if (jit)
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vm = new RandomX::CompiledLightVirtualMachine<false>();
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else if (useSuperscalar)
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else if (!legacy)
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vm = new RandomX::InterpretedVirtualMachine<true>(softAes);
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else
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vm = new RandomX::InterpretedVirtualMachine<false>(softAes);
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@ -373,8 +375,8 @@ int main(int argc, char** argv) {
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double elapsed = sw.getElapsed();
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std::cout << "Calculated result: ";
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result.print(std::cout);
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if(programCount == 1000)
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std::cout << "Reference result: 83875c55fb9ff4a75205a744b82926ebbe23219c6291889c9ee91603c845c597" << std::endl;
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if(!legacy && programCount == 1000)
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std::cout << "Reference result: 4a74a376d490c8b41d42887e86d4addb5a95572e0c663d1e81aec928e4e094e1" << std::endl;
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if (!miningMode) {
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std::cout << "Performance: " << 1000 * elapsed / programCount << " ms per hash" << std::endl;
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}
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