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d64b7229cd
* chore: bump copyright in configure.ac * chore: bump copyright via copyright_header.py ran command `python3 contrib/devtools/copyright_header.py update .`
329 lines
8.1 KiB
C++
329 lines
8.1 KiB
C++
// Copyright (c) 2016-2020 The Bitcoin Core developers
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// Copyright (c) 2018-2022 The Dash Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <bench/bench.h>
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#include <crypto/muhash.h>
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#include <crypto/ripemd160.h>
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#include <crypto/sha1.h>
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#include <crypto/sha256.h>
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#include <crypto/sha3.h>
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#include <crypto/sha512.h>
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#include <crypto/siphash.h>
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#include <hash.h>
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#include <random.h>
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#include <uint256.h>
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/* Number of bytes to hash per iteration */
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static const uint64_t BUFFER_SIZE = 1000*1000;
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/* Hash BUFFER_SIZE bytes via different algos */
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static void HASH_1MB_RIPEMD160(benchmark::Bench& bench)
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{
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uint8_t hash[CRIPEMD160::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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CRIPEMD160().Write(in.data(), in.size()).Finalize(hash);
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});
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}
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static void HASH_1MB_SHA1(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA1::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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CSHA1().Write(in.data(), in.size()).Finalize(hash);
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});
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}
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static void HASH_1MB_SHA256(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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CSHA256().Write(in.data(), in.size()).Finalize(hash);
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});
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}
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static void HASH_1MB_DSHA256(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_1MB_SHA512(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA512::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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CSHA512().Write(in.data(), in.size()).Finalize(hash);
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});
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}
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static void HASH_1MB_SHA3_256(benchmark::Bench& bench)
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{
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uint8_t hash[SHA3_256::OUTPUT_SIZE];
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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SHA3_256().Write(in).Finalize(hash);
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});
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}
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static void HASH_1MB_X11(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(BUFFER_SIZE,0);
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bench.batch(in.size()).unit("byte").minEpochIterations(10).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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/* Hash different number of bytes via DSHA256 */
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static void HASH_DSHA256_0032b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(32,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_DSHA256_0080b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(80,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_DSHA256_0128b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(128,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_DSHA256_0512b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(512,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_DSHA256_1024b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(1024,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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static void HASH_DSHA256_2048b_single(benchmark::Bench& bench)
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{
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uint8_t hash[CSHA256::OUTPUT_SIZE];
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std::vector<uint8_t> in(2048,0);
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bench.minEpochIterations(100000).run([&] {
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CHash256().Write(in).Finalize(hash);
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});
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}
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/* Hash different number of bytes via X11 */
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static void HASH_X11_0032b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(32,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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static void HASH_X11_0080b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(80,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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static void HASH_X11_0128b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(128,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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static void HASH_X11_0512b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(512,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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static void HASH_X11_1024b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(1024,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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static void HASH_X11_2048b_single(benchmark::Bench& bench)
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{
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uint256 hash;
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std::vector<uint8_t> in(2048,0);
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bench.minEpochIterations(10000).run([&] {
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hash = HashX11(in.begin(), in.end());
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});
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}
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/* Hash 32 bytes via SHA and SipHash */
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static void HASH_SHA256_32b(benchmark::Bench& bench)
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{
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std::vector<uint8_t> in(32,0);
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bench.run([&] {
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CSHA256()
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.Write(in.data(), in.size())
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.Finalize(in.data());
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});
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}
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static void HASH_SipHash_32b(benchmark::Bench& bench)
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{
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uint256 x;
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uint64_t k1 = 0;
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bench.run([&] {
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*((uint64_t*)x.begin()) = SipHashUint256(0, ++k1, x);
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});
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}
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/* Hash 1024 blobs 64 bytes each via DSHA256 */
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static void HASH_SHA256D64_1024(benchmark::Bench& bench)
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{
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std::vector<uint8_t> in(64 * 1024, 0);
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bench.minEpochIterations(1000).run([&] {
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SHA256D64(in.data(), in.data(), 1024);
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});
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}
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/* FastRandom for uint32_t and bool */
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static void FastRandom_32bit(benchmark::Bench& bench)
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{
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FastRandomContext rng(true);
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bench.run([&] {
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rng.rand32();
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});
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}
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static void FastRandom_1bit(benchmark::Bench& bench)
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{
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FastRandomContext rng(true);
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bench.run([&] {
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rng.randbool();
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});
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}
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static void MuHash(benchmark::Bench& bench)
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{
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MuHash3072 acc;
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unsigned char key[32] = {0};
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int i = 0;
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bench.run([&] {
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key[0] = ++i;
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acc *= MuHash3072(key);
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});
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}
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static void MuHashMul(benchmark::Bench& bench)
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{
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MuHash3072 acc;
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FastRandomContext rng(true);
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MuHash3072 muhash{rng.randbytes(32)};
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bench.run([&] {
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acc *= muhash;
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});
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}
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static void MuHashDiv(benchmark::Bench& bench)
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{
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MuHash3072 acc;
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FastRandomContext rng(true);
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MuHash3072 muhash{rng.randbytes(32)};
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for (size_t i = 0; i < bench.epochIterations(); ++i) {
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acc *= muhash;
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}
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bench.run([&] {
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acc /= muhash;
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});
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}
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static void MuHashPrecompute(benchmark::Bench& bench)
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{
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MuHash3072 acc;
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FastRandomContext rng(true);
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std::vector<unsigned char> key{rng.randbytes(32)};
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bench.run([&] {
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MuHash3072{key};
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});
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}
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BENCHMARK(HASH_1MB_DSHA256);
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BENCHMARK(HASH_1MB_RIPEMD160);
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BENCHMARK(HASH_1MB_SHA1);
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BENCHMARK(HASH_1MB_SHA256);
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BENCHMARK(HASH_1MB_SHA512);
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BENCHMARK(HASH_1MB_SHA3_256);
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BENCHMARK(HASH_1MB_X11);
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BENCHMARK(HASH_DSHA256_0032b_single);
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BENCHMARK(HASH_DSHA256_0080b_single);
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BENCHMARK(HASH_DSHA256_0128b_single);
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BENCHMARK(HASH_DSHA256_0512b_single);
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BENCHMARK(HASH_DSHA256_1024b_single);
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BENCHMARK(HASH_DSHA256_2048b_single);
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BENCHMARK(HASH_X11_0032b_single);
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BENCHMARK(HASH_X11_0080b_single);
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BENCHMARK(HASH_X11_0128b_single);
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BENCHMARK(HASH_X11_0512b_single);
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BENCHMARK(HASH_X11_1024b_single);
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BENCHMARK(HASH_X11_2048b_single);
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BENCHMARK(HASH_SHA256_32b);
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BENCHMARK(HASH_SipHash_32b);
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BENCHMARK(HASH_SHA256D64_1024);
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BENCHMARK(FastRandom_32bit);
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BENCHMARK(FastRandom_1bit);
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BENCHMARK(MuHash);
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BENCHMARK(MuHashMul);
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BENCHMARK(MuHashDiv);
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BENCHMARK(MuHashPrecompute);
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