2022-05-25 12:01:16 +03:00
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/*
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* QEMU Crypto akcipher speed benchmark
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*
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* Copyright (c) 2022 Bytedance
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*
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* Authors:
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* lei he <helei.sig11@bytedance.com>
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*
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* This work is licensed under the terms of the GNU GPL, version 2 or
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* (at your option) any later version. See the COPYING file in the
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* top-level directory.
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*/
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#include "qemu/osdep.h"
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#include "crypto/init.h"
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#include "crypto/akcipher.h"
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#include "standard-headers/linux/virtio_crypto.h"
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#include "test_akcipher_keys.inc"
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static QCryptoAkCipher *create_rsa_akcipher(const uint8_t *priv_key,
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size_t keylen,
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QCryptoRSAPaddingAlgorithm padding,
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QCryptoHashAlgorithm hash)
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{
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QCryptoAkCipherOptions opt;
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opt.alg = QCRYPTO_AKCIPHER_ALG_RSA;
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opt.u.rsa.padding_alg = padding;
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opt.u.rsa.hash_alg = hash;
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2022-11-22 16:49:16 +03:00
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return qcrypto_akcipher_new(&opt, QCRYPTO_AKCIPHER_KEY_TYPE_PRIVATE,
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priv_key, keylen, &error_abort);
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2022-05-25 12:01:16 +03:00
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}
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static void test_rsa_speed(const uint8_t *priv_key, size_t keylen,
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size_t key_size)
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{
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#define BYTE 8
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#define SHA1_DGST_LEN 20
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#define SIGN_TIMES 10000
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#define VERIFY_TIMES 100000
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#define PADDING QCRYPTO_RSA_PADDING_ALG_PKCS1
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#define HASH QCRYPTO_HASH_ALG_SHA1
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g_autoptr(QCryptoAkCipher) rsa =
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create_rsa_akcipher(priv_key, keylen, PADDING, HASH);
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g_autofree uint8_t *dgst = NULL;
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g_autofree uint8_t *signature = NULL;
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size_t count;
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dgst = g_new0(uint8_t, SHA1_DGST_LEN);
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memset(dgst, g_test_rand_int(), SHA1_DGST_LEN);
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signature = g_new0(uint8_t, key_size / BYTE);
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g_test_message("benchmark rsa%zu (%s-%s) sign...", key_size,
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QCryptoRSAPaddingAlgorithm_str(PADDING),
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QCryptoHashAlgorithm_str(HASH));
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g_test_timer_start();
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for (count = 0; count < SIGN_TIMES; ++count) {
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g_assert(qcrypto_akcipher_sign(rsa, dgst, SHA1_DGST_LEN,
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signature, key_size / BYTE,
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&error_abort) > 0);
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}
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g_test_timer_elapsed();
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g_test_message("rsa%zu (%s-%s) sign %zu times in %.2f seconds,"
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" %.2f times/sec ",
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key_size, QCryptoRSAPaddingAlgorithm_str(PADDING),
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QCryptoHashAlgorithm_str(HASH),
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count, g_test_timer_last(),
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(double)count / g_test_timer_last());
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g_test_message("benchmark rsa%zu (%s-%s) verification...", key_size,
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QCryptoRSAPaddingAlgorithm_str(PADDING),
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QCryptoHashAlgorithm_str(HASH));
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g_test_timer_start();
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for (count = 0; count < VERIFY_TIMES; ++count) {
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g_assert(qcrypto_akcipher_verify(rsa, signature, key_size / BYTE,
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dgst, SHA1_DGST_LEN,
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&error_abort) == 0);
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}
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g_test_timer_elapsed();
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g_test_message("rsa%zu (%s-%s) verify %zu times in %.2f seconds,"
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" %.2f times/sec ",
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key_size, QCryptoRSAPaddingAlgorithm_str(PADDING),
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QCryptoHashAlgorithm_str(HASH),
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count, g_test_timer_last(),
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(double)count / g_test_timer_last());
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}
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static void test_rsa_1024_speed(const void *opaque)
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{
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size_t key_size = (size_t)opaque;
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test_rsa_speed(rsa1024_priv_key, sizeof(rsa1024_priv_key), key_size);
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}
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static void test_rsa_2048_speed(const void *opaque)
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{
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size_t key_size = (size_t)opaque;
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test_rsa_speed(rsa2048_priv_key, sizeof(rsa2048_priv_key), key_size);
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}
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static void test_rsa_4096_speed(const void *opaque)
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{
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size_t key_size = (size_t)opaque;
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test_rsa_speed(rsa4096_priv_key, sizeof(rsa4096_priv_key), key_size);
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}
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int main(int argc, char **argv)
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{
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char *alg = NULL;
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char *size = NULL;
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g_test_init(&argc, &argv, NULL);
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g_assert(qcrypto_init(NULL) == 0);
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#define ADD_TEST(asym_alg, keysize) \
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if ((!alg || g_str_equal(alg, #asym_alg)) && \
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(!size || g_str_equal(size, #keysize))) \
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g_test_add_data_func( \
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"/crypto/akcipher/" #asym_alg "-" #keysize, \
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(void *)keysize, \
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test_ ## asym_alg ## _ ## keysize ## _speed)
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if (argc >= 2) {
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alg = argv[1];
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}
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if (argc >= 3) {
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size = argv[2];
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}
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ADD_TEST(rsa, 1024);
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ADD_TEST(rsa, 2048);
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ADD_TEST(rsa, 4096);
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return g_test_run();
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}
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