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Add a missing function to calculate a batch of hashes
Add a test for batch calculation
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@ -380,4 +380,14 @@ extern "C" {
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blake2b(machine->tempHash, sizeof(machine->tempHash), nextInput, nextInputSize, nullptr, 0);
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blake2b(machine->tempHash, sizeof(machine->tempHash), nextInput, nextInputSize, nullptr, 0);
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machine->hashAndFill(output, RANDOMX_HASH_SIZE, machine->tempHash);
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machine->hashAndFill(output, RANDOMX_HASH_SIZE, machine->tempHash);
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}
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}
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void randomx_calculate_hash_last(randomx_vm* machine, void* output) {
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machine->resetRoundingMode();
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for (int chain = 0; chain < RANDOMX_PROGRAM_COUNT - 1; ++chain) {
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machine->run(machine->tempHash);
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blake2b(machine->tempHash, sizeof(machine->tempHash), machine->getRegisterFile(), sizeof(randomx::RegisterFile), nullptr, 0);
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}
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machine->run(machine->tempHash);
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machine->getFinalResult(output, RANDOMX_HASH_SIZE);
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}
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}
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}
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@ -240,9 +240,11 @@ RANDOMX_EXPORT void randomx_destroy_vm(randomx_vm *machine);
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RANDOMX_EXPORT void randomx_calculate_hash(randomx_vm *machine, const void *input, size_t inputSize, void *output);
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RANDOMX_EXPORT void randomx_calculate_hash(randomx_vm *machine, const void *input, size_t inputSize, void *output);
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/**
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/**
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* Paired functions used to calculate multiple RandomX hashes more efficiently.
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* Set of functions used to calculate multiple RandomX hashes more efficiently.
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* randomx_calculate_hash_first is called for the first input value.
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* randomx_calculate_hash_first will begin a hash calculation.
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* randomx_calculate_hash_next will output the hash value of the previous input.
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* randomx_calculate_hash_next will output the hash value of the previous input
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* and begin the calculation of the next hash.
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* randomx_calculate_hash_last will output the hash value of the previous input.
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*
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*
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* @param machine is a pointer to a randomx_vm structure. Must not be NULL.
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* @param machine is a pointer to a randomx_vm structure. Must not be NULL.
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* @param input is a pointer to memory to be hashed. Must not be NULL.
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* @param input is a pointer to memory to be hashed. Must not be NULL.
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@ -254,6 +256,7 @@ RANDOMX_EXPORT void randomx_calculate_hash(randomx_vm *machine, const void *inpu
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*/
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*/
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RANDOMX_EXPORT void randomx_calculate_hash_first(randomx_vm* machine, const void* input, size_t inputSize);
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RANDOMX_EXPORT void randomx_calculate_hash_first(randomx_vm* machine, const void* input, size_t inputSize);
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RANDOMX_EXPORT void randomx_calculate_hash_next(randomx_vm* machine, const void* nextInput, size_t nextInputSize, void* output);
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RANDOMX_EXPORT void randomx_calculate_hash_next(randomx_vm* machine, const void* nextInput, size_t nextInputSize, void* output);
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RANDOMX_EXPORT void randomx_calculate_hash_last(randomx_vm* machine, void* output);
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#if defined(__cplusplus)
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#if defined(__cplusplus)
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}
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}
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@ -1026,9 +1026,6 @@ int main() {
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runTest("Hash test 2e (compiler)", RANDOMX_HAVE_COMPILER && stringsEqual(RANDOMX_ARGON_SALT, "RandomX\x03"), test_e);
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runTest("Hash test 2e (compiler)", RANDOMX_HAVE_COMPILER && stringsEqual(RANDOMX_ARGON_SALT, "RandomX\x03"), test_e);
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randomx_destroy_vm(vm);
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vm = nullptr;
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auto flags = randomx_get_flags();
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auto flags = randomx_get_flags();
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randomx_release_cache(cache);
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randomx_release_cache(cache);
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@ -1054,6 +1051,28 @@ int main() {
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assert(cacheMemory[33554431] == 0x1f47f056d05cd99b);
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assert(cacheMemory[33554431] == 0x1f47f056d05cd99b);
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});
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});
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runTest("Hash batch test", RANDOMX_HAVE_COMPILER && stringsEqual(RANDOMX_ARGON_SALT, "RandomX\x03"), []() {
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char hash1[RANDOMX_HASH_SIZE];
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char hash2[RANDOMX_HASH_SIZE];
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char hash3[RANDOMX_HASH_SIZE];
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initCache("test key 000");
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char input1[] = "This is a test";
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char input2[] = "Lorem ipsum dolor sit amet";
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char input3[] = "sed do eiusmod tempor incididunt ut labore et dolore magna aliqua";
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randomx_calculate_hash_first(vm, input1, sizeof(input1) - 1);
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randomx_calculate_hash_next(vm, input2, sizeof(input2) - 1, &hash1);
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randomx_calculate_hash_next(vm, input3, sizeof(input3) - 1, &hash2);
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randomx_calculate_hash_last(vm, &hash3);
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assert(equalsHex(hash1, "639183aae1bf4c9a35884cb46b09cad9175f04efd7684e7262a0ac1c2f0b4e3f"));
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assert(equalsHex(hash2, "300a0adb47603dedb42228ccb2b211104f4da45af709cd7547cd049e9489c969"));
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assert(equalsHex(hash3, "c36d4ed4191e617309867ed66a443be4075014e2b061bcdaf9ce7b721d2b77a8"));
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});
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randomx_destroy_vm(vm);
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vm = nullptr;
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if (cache != nullptr)
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if (cache != nullptr)
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randomx_release_cache(cache);
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randomx_release_cache(cache);
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