speed.c 97.2 KB
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/*
 * Copyright 1995-2016 The OpenSSL Project Authors. All Rights Reserved.
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 *
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 * Licensed under the OpenSSL license (the "License").  You may not use
 * this file except in compliance with the License.  You can obtain a copy
 * in the file LICENSE in the source distribution or at
 * https://www.openssl.org/source/license.html
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 */
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/* ====================================================================
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 * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
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 *
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 * Portions of the attached software ("Contribution") are developed by
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 * SUN MICROSYSTEMS, INC., and are contributed to the OpenSSL project.
 *
 * The Contribution is licensed pursuant to the OpenSSL open source
 * license provided above.
 *
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 * The ECDH and ECDSA speed test software is originally written by
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 * Sumit Gupta of Sun Microsystems Laboratories.
 *
 */
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#undef SECONDS
#define SECONDS                 3
#define PRIME_SECONDS   10
#define RSA_SECONDS             10
#define DSA_SECONDS             10
#define ECDSA_SECONDS   10
#define ECDH_SECONDS    10

#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <math.h>
#include "apps.h"
#include <openssl/crypto.h>
#include <openssl/rand.h>
#include <openssl/err.h>
#include <openssl/evp.h>
#include <openssl/objects.h>
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#include <openssl/async.h>
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#if !defined(OPENSSL_SYS_MSDOS)
# include OPENSSL_UNISTD
#endif
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#if defined(_WIN32)
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# include <windows.h>
#endif
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#include <openssl/bn.h>
#ifndef OPENSSL_NO_DES
# include <openssl/des.h>
#endif
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#include <openssl/aes.h>
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#ifndef OPENSSL_NO_CAMELLIA
# include <openssl/camellia.h>
#endif
#ifndef OPENSSL_NO_MD2
# include <openssl/md2.h>
#endif
#ifndef OPENSSL_NO_MDC2
# include <openssl/mdc2.h>
#endif
#ifndef OPENSSL_NO_MD4
# include <openssl/md4.h>
#endif
#ifndef OPENSSL_NO_MD5
# include <openssl/md5.h>
#endif
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#include <openssl/hmac.h>
#include <openssl/sha.h>
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#ifndef OPENSSL_NO_RMD160
# include <openssl/ripemd.h>
#endif
#ifndef OPENSSL_NO_WHIRLPOOL
# include <openssl/whrlpool.h>
#endif
#ifndef OPENSSL_NO_RC4
# include <openssl/rc4.h>
#endif
#ifndef OPENSSL_NO_RC5
# include <openssl/rc5.h>
#endif
#ifndef OPENSSL_NO_RC2
# include <openssl/rc2.h>
#endif
#ifndef OPENSSL_NO_IDEA
# include <openssl/idea.h>
#endif
#ifndef OPENSSL_NO_SEED
# include <openssl/seed.h>
#endif
#ifndef OPENSSL_NO_BF
# include <openssl/blowfish.h>
#endif
#ifndef OPENSSL_NO_CAST
# include <openssl/cast.h>
#endif
#ifndef OPENSSL_NO_RSA
# include <openssl/rsa.h>
# include "./testrsa.h"
#endif
#include <openssl/x509.h>
#ifndef OPENSSL_NO_DSA
# include <openssl/dsa.h>
# include "./testdsa.h"
#endif
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#ifndef OPENSSL_NO_EC
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# include <openssl/ec.h>
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#endif
#include <openssl/modes.h>
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#ifndef HAVE_FORK
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# if defined(OPENSSL_SYS_VMS) || defined(OPENSSL_SYS_WINDOWS)
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#  define HAVE_FORK 0
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# else
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#  define HAVE_FORK 1
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# endif
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#endif
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#if HAVE_FORK
# undef NO_FORK
#else
# define NO_FORK
#endif

#undef BUFSIZE
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#define BUFSIZE (1024*16+1)
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#define MAX_MISALIGNMENT 63
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#define ALGOR_NUM       30
#define SIZE_NUM        6
#define PRIME_NUM       3
#define RSA_NUM         7
#define DSA_NUM         3

#define EC_NUM          17
#define MAX_ECDH_SIZE   256
#define MISALIGN        64

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static volatile int run = 0;
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static int mr = 0;
static int usertime = 1;
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typedef void *(*kdf_fn) (
        const void *in, size_t inlen, void *out, size_t *xoutlen);

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typedef struct loopargs_st {
    ASYNC_JOB *inprogress_job;
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    ASYNC_WAIT_CTX *wait_ctx;
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    unsigned char *buf;
    unsigned char *buf2;
    unsigned char *buf_malloc;
    unsigned char *buf2_malloc;
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    unsigned int siglen;
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#ifndef OPENSSL_NO_RSA
    RSA *rsa_key[RSA_NUM];
#endif
#ifndef OPENSSL_NO_DSA
    DSA *dsa_key[DSA_NUM];
#endif
#ifndef OPENSSL_NO_EC
    EC_KEY *ecdsa[EC_NUM];
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    EVP_PKEY_CTX *ecdh_ctx[EC_NUM];
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    unsigned char *secret_a;
    unsigned char *secret_b;
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    size_t      outlen;
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    kdf_fn      kdf;
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#endif
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    EVP_CIPHER_CTX *ctx;
    HMAC_CTX *hctx;
    GCM128_CONTEXT *gcm_ctx;
} loopargs_t;

#ifndef OPENSSL_NO_MD2
static int EVP_Digest_MD2_loop(void *args);
#endif

#ifndef OPENSSL_NO_MDC2
static int EVP_Digest_MDC2_loop(void *args);
#endif
#ifndef OPENSSL_NO_MD4
static int EVP_Digest_MD4_loop(void *args);
#endif
#ifndef OPENSSL_NO_MD5
static int MD5_loop(void *args);
static int HMAC_loop(void *args);
#endif
static int SHA1_loop(void *args);
static int SHA256_loop(void *args);
static int SHA512_loop(void *args);
#ifndef OPENSSL_NO_WHIRLPOOL
static int WHIRLPOOL_loop(void *args);
#endif
#ifndef OPENSSL_NO_RMD160
static int EVP_Digest_RMD160_loop(void *args);
#endif
#ifndef OPENSSL_NO_RC4
static int RC4_loop(void *args);
#endif
#ifndef OPENSSL_NO_DES
static int DES_ncbc_encrypt_loop(void *args);
static int DES_ede3_cbc_encrypt_loop(void *args);
#endif
static int AES_cbc_128_encrypt_loop(void *args);
static int AES_cbc_192_encrypt_loop(void *args);
static int AES_ige_128_encrypt_loop(void *args);
static int AES_cbc_256_encrypt_loop(void *args);
static int AES_ige_192_encrypt_loop(void *args);
static int AES_ige_256_encrypt_loop(void *args);
static int CRYPTO_gcm128_aad_loop(void *args);
static int EVP_Update_loop(void *args);
static int EVP_Digest_loop(void *args);
#ifndef OPENSSL_NO_RSA
static int RSA_sign_loop(void *args);
static int RSA_verify_loop(void *args);
#endif
#ifndef OPENSSL_NO_DSA
static int DSA_sign_loop(void *args);
static int DSA_verify_loop(void *args);
#endif
#ifndef OPENSSL_NO_EC
static int ECDSA_sign_loop(void *args);
static int ECDSA_verify_loop(void *args);
#endif
static int run_benchmark(int async_jobs, int (*loop_function)(void *), loopargs_t *loopargs);

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static double Time_F(int s);
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static void print_message(const char *s, long num, int length);
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static void pkey_print_message(const char *str, const char *str2,
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                               long num, int bits, int sec);
static void print_result(int alg, int run_no, int count, double time_used);
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#ifndef NO_FORK
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static int do_multi(int multi);
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#endif
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static const char *names[ALGOR_NUM] = {
    "md2", "mdc2", "md4", "md5", "hmac(md5)", "sha1", "rmd160", "rc4",
    "des cbc", "des ede3", "idea cbc", "seed cbc",
    "rc2 cbc", "rc5-32/12 cbc", "blowfish cbc", "cast cbc",
    "aes-128 cbc", "aes-192 cbc", "aes-256 cbc",
    "camellia-128 cbc", "camellia-192 cbc", "camellia-256 cbc",
    "evp", "sha256", "sha512", "whirlpool",
    "aes-128 ige", "aes-192 ige", "aes-256 ige", "ghash"
};
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static double results[ALGOR_NUM][SIZE_NUM];
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static const int lengths[SIZE_NUM] = {
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    16, 64, 256, 1024, 8 * 1024, 16 * 1024
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};
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#ifndef OPENSSL_NO_RSA
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static double rsa_results[RSA_NUM][2];
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#endif
#ifndef OPENSSL_NO_DSA
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static double dsa_results[DSA_NUM][2];
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#endif
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#ifndef OPENSSL_NO_EC
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static double ecdsa_results[EC_NUM][2];
static double ecdh_results[EC_NUM][1];
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#endif
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#if !defined(OPENSSL_NO_DSA) || !defined(OPENSSL_NO_EC)
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static const char rnd_seed[] =
    "string to make the random number generator think it has entropy";
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#endif
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#ifdef SIGALRM
# if defined(__STDC__) || defined(sgi) || defined(_AIX)
#  define SIGRETTYPE void
# else
#  define SIGRETTYPE int
# endif
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static SIGRETTYPE sig_done(int sig);
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static SIGRETTYPE sig_done(int sig)
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{
    signal(SIGALRM, sig_done);
    run = 0;
}
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#endif
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#define START   0
#define STOP    1
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#if defined(_WIN32)
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# if !defined(SIGALRM)
#  define SIGALRM
# endif
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static unsigned int lapse, schlock;
static void alarm_win32(unsigned int secs)
{
    lapse = secs * 1000;
}
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# define alarm alarm_win32
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static DWORD WINAPI sleepy(VOID * arg)
{
    schlock = 1;
    Sleep(lapse);
    run = 0;
    return 0;
}
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static double Time_F(int s)
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{
    double ret;
    static HANDLE thr;

    if (s == START) {
        schlock = 0;
        thr = CreateThread(NULL, 4096, sleepy, NULL, 0, NULL);
        if (thr == NULL) {
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            DWORD err = GetLastError();
            BIO_printf(bio_err, "unable to CreateThread (%lu)", err);
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            ExitProcess(err);
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        }
        while (!schlock)
            Sleep(0);           /* scheduler spinlock */
        ret = app_tminterval(s, usertime);
    } else {
        ret = app_tminterval(s, usertime);
        if (run)
            TerminateThread(thr, 0);
        CloseHandle(thr);
    }

    return ret;
}
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#else
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static double Time_F(int s)
{
    double ret = app_tminterval(s, usertime);
    if (s == STOP)
        alarm(0);
    return ret;
}
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#endif
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static void multiblock_speed(const EVP_CIPHER *evp_cipher);
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static int found(const char *name, const OPT_PAIR *pairs, int *result)
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{
    for (; pairs->name; pairs++)
        if (strcmp(name, pairs->name) == 0) {
            *result = pairs->retval;
            return 1;
        }
    return 0;
}

typedef enum OPTION_choice {
    OPT_ERR = -1, OPT_EOF = 0, OPT_HELP,
    OPT_ELAPSED, OPT_EVP, OPT_DECRYPT, OPT_ENGINE, OPT_MULTI,
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    OPT_MR, OPT_MB, OPT_MISALIGN, OPT_ASYNCJOBS
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} OPTION_CHOICE;

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const OPTIONS speed_options[] = {
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    {OPT_HELP_STR, 1, '-', "Usage: %s [options] ciphers...\n"},
    {OPT_HELP_STR, 1, '-', "Valid options are:\n"},
    {"help", OPT_HELP, '-', "Display this summary"},
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    {"evp", OPT_EVP, 's', "Use specified EVP cipher"},
    {"decrypt", OPT_DECRYPT, '-',
     "Time decryption instead of encryption (only EVP)"},
    {"mr", OPT_MR, '-', "Produce machine readable output"},
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    {"mb", OPT_MB, '-',
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     "Enable (tls1.1) multi-block mode on evp_cipher requested with -evp"},
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    {"misalign", OPT_MISALIGN, 'n', "Amount to mis-align buffers"},
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    {"elapsed", OPT_ELAPSED, '-',
     "Measure time in real time instead of CPU user time"},
#ifndef NO_FORK
    {"multi", OPT_MULTI, 'p', "Run benchmarks in parallel"},
#endif
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#ifndef OPENSSL_NO_ASYNC
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    {"async_jobs", OPT_ASYNCJOBS, 'p',
     "Enable async mode and start pnum jobs"},
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#endif
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#ifndef OPENSSL_NO_ENGINE
    {"engine", OPT_ENGINE, 's', "Use engine, possibly a hardware device"},
#endif
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    {NULL},
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};

#define D_MD2           0
#define D_MDC2          1
#define D_MD4           2
#define D_MD5           3
#define D_HMAC          4
#define D_SHA1          5
#define D_RMD160        6
#define D_RC4           7
#define D_CBC_DES       8
#define D_EDE3_DES      9
#define D_CBC_IDEA      10
#define D_CBC_SEED      11
#define D_CBC_RC2       12
#define D_CBC_RC5       13
#define D_CBC_BF        14
#define D_CBC_CAST      15
#define D_CBC_128_AES   16
#define D_CBC_192_AES   17
#define D_CBC_256_AES   18
#define D_CBC_128_CML   19
#define D_CBC_192_CML   20
#define D_CBC_256_CML   21
#define D_EVP           22
#define D_SHA256        23
#define D_SHA512        24
#define D_WHIRLPOOL     25
#define D_IGE_128_AES   26
#define D_IGE_192_AES   27
#define D_IGE_256_AES   28
#define D_GHASH         29
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static OPT_PAIR doit_choices[] = {
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#ifndef OPENSSL_NO_MD2
    {"md2", D_MD2},
#endif
#ifndef OPENSSL_NO_MDC2
    {"mdc2", D_MDC2},
#endif
#ifndef OPENSSL_NO_MD4
    {"md4", D_MD4},
#endif
#ifndef OPENSSL_NO_MD5
    {"md5", D_MD5},
    {"hmac", D_HMAC},
#endif
    {"sha1", D_SHA1},
    {"sha256", D_SHA256},
    {"sha512", D_SHA512},
#ifndef OPENSSL_NO_WHIRLPOOL
    {"whirlpool", D_WHIRLPOOL},
#endif
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#ifndef OPENSSL_NO_RMD160
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    {"ripemd", D_RMD160},
    {"rmd160", D_RMD160},
    {"ripemd160", D_RMD160},
#endif
#ifndef OPENSSL_NO_RC4
    {"rc4", D_RC4},
#endif
#ifndef OPENSSL_NO_DES
    {"des-cbc", D_CBC_DES},
    {"des-ede3", D_EDE3_DES},
#endif
    {"aes-128-cbc", D_CBC_128_AES},
    {"aes-192-cbc", D_CBC_192_AES},
    {"aes-256-cbc", D_CBC_256_AES},
    {"aes-128-ige", D_IGE_128_AES},
    {"aes-192-ige", D_IGE_192_AES},
    {"aes-256-ige", D_IGE_256_AES},
#ifndef OPENSSL_NO_RC2
    {"rc2-cbc", D_CBC_RC2},
    {"rc2", D_CBC_RC2},
#endif
#ifndef OPENSSL_NO_RC5
    {"rc5-cbc", D_CBC_RC5},
    {"rc5", D_CBC_RC5},
#endif
#ifndef OPENSSL_NO_IDEA
    {"idea-cbc", D_CBC_IDEA},
    {"idea", D_CBC_IDEA},
#endif
#ifndef OPENSSL_NO_SEED
    {"seed-cbc", D_CBC_SEED},
    {"seed", D_CBC_SEED},
#endif
#ifndef OPENSSL_NO_BF
    {"bf-cbc", D_CBC_BF},
    {"blowfish", D_CBC_BF},
    {"bf", D_CBC_BF},
#endif
#ifndef OPENSSL_NO_CAST
    {"cast-cbc", D_CBC_CAST},
    {"cast", D_CBC_CAST},
    {"cast5", D_CBC_CAST},
#endif
    {"ghash", D_GHASH},
    {NULL}
};

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#ifndef OPENSSL_NO_DSA
# define R_DSA_512       0
# define R_DSA_1024      1
# define R_DSA_2048      2
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static OPT_PAIR dsa_choices[] = {
    {"dsa512", R_DSA_512},
    {"dsa1024", R_DSA_1024},
    {"dsa2048", R_DSA_2048},
    {NULL},
};
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#endif
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#define R_RSA_512       0
#define R_RSA_1024      1
#define R_RSA_2048      2
#define R_RSA_3072      3
#define R_RSA_4096      4
#define R_RSA_7680      5
#define R_RSA_15360     6
static OPT_PAIR rsa_choices[] = {
    {"rsa512", R_RSA_512},
    {"rsa1024", R_RSA_1024},
    {"rsa2048", R_RSA_2048},
    {"rsa3072", R_RSA_3072},
    {"rsa4096", R_RSA_4096},
    {"rsa7680", R_RSA_7680},
    {"rsa15360", R_RSA_15360},
    {NULL}
};

#define R_EC_P160    0
#define R_EC_P192    1
#define R_EC_P224    2
#define R_EC_P256    3
#define R_EC_P384    4
#define R_EC_P521    5
#define R_EC_K163    6
#define R_EC_K233    7
#define R_EC_K283    8
#define R_EC_K409    9
#define R_EC_K571    10
#define R_EC_B163    11
#define R_EC_B233    12
#define R_EC_B283    13
#define R_EC_B409    14
#define R_EC_B571    15
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#define R_EC_X25519  16
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#ifndef OPENSSL_NO_EC
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static OPT_PAIR ecdsa_choices[] = {
    {"ecdsap160", R_EC_P160},
    {"ecdsap192", R_EC_P192},
    {"ecdsap224", R_EC_P224},
    {"ecdsap256", R_EC_P256},
    {"ecdsap384", R_EC_P384},
    {"ecdsap521", R_EC_P521},
    {"ecdsak163", R_EC_K163},
    {"ecdsak233", R_EC_K233},
    {"ecdsak283", R_EC_K283},
    {"ecdsak409", R_EC_K409},
    {"ecdsak571", R_EC_K571},
    {"ecdsab163", R_EC_B163},
    {"ecdsab233", R_EC_B233},
    {"ecdsab283", R_EC_B283},
    {"ecdsab409", R_EC_B409},
    {"ecdsab571", R_EC_B571},
    {NULL}
};
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static OPT_PAIR ecdh_choices[] = {
    {"ecdhp160", R_EC_P160},
    {"ecdhp192", R_EC_P192},
    {"ecdhp224", R_EC_P224},
    {"ecdhp256", R_EC_P256},
    {"ecdhp384", R_EC_P384},
    {"ecdhp521", R_EC_P521},
    {"ecdhk163", R_EC_K163},
    {"ecdhk233", R_EC_K233},
    {"ecdhk283", R_EC_K283},
    {"ecdhk409", R_EC_K409},
    {"ecdhk571", R_EC_K571},
    {"ecdhb163", R_EC_B163},
    {"ecdhb233", R_EC_B233},
    {"ecdhb283", R_EC_B283},
    {"ecdhb409", R_EC_B409},
    {"ecdhb571", R_EC_B571},
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    {"ecdhx25519", R_EC_X25519},
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    {NULL}
};
#endif

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#ifndef SIGALRM
# define COND(d) (count < (d))
# define COUNT(d) (d)
#else
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# define COND(unused_cond) (run && count<0x7fffffff)
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# define COUNT(d) (count)
#endif                         /* SIGALRM */

static int testnum;

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/* Nb of iterations to do per algorithm and key-size */
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static long c[ALGOR_NUM][SIZE_NUM];
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#ifndef OPENSSL_NO_MD2
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static int EVP_Digest_MD2_loop(void *args)
{
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    loopargs_t *tempargs = *(loopargs_t **)args;
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    unsigned char *buf = tempargs->buf;
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    unsigned char md2[MD2_DIGEST_LENGTH];
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    int count;
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    for (count = 0; COND(c[D_MD2][testnum]); count++) {
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        if (!EVP_Digest(buf, (size_t)lengths[testnum], md2, NULL, EVP_md2(),
                NULL))
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            return -1;
    }
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    return count;
}
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#endif
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#ifndef OPENSSL_NO_MDC2
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static int EVP_Digest_MDC2_loop(void *args)
{
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    loopargs_t *tempargs = *(loopargs_t **)args;
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    unsigned char *buf = tempargs->buf;
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    unsigned char mdc2[MDC2_DIGEST_LENGTH];
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    int count;
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    for (count = 0; COND(c[D_MDC2][testnum]); count++) {
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        if (!EVP_Digest(buf, (size_t)lengths[testnum], mdc2, NULL, EVP_mdc2(),
                NULL))
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            return -1;
    }
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    return count;
}
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#endif
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#ifndef OPENSSL_NO_MD4
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static int EVP_Digest_MD4_loop(void *args)
{
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    loopargs_t *tempargs = *(loopargs_t **)args;
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    unsigned char *buf = tempargs->buf;
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    unsigned char md4[MD4_DIGEST_LENGTH];
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    int count;
632

633
    for (count = 0; COND(c[D_MD4][testnum]); count++) {
634 635
        if (!EVP_Digest(buf, (size_t)lengths[testnum], md4, NULL, EVP_md4(),
                NULL))
636 637
            return -1;
    }
638 639
    return count;
}
640
#endif
641

642
#ifndef OPENSSL_NO_MD5
643 644
static int MD5_loop(void *args)
{
645
    loopargs_t *tempargs = *(loopargs_t **)args;
646
    unsigned char *buf = tempargs->buf;
647
    unsigned char md5[MD5_DIGEST_LENGTH];
648 649 650 651 652 653 654 655
    int count;
    for (count = 0; COND(c[D_MD5][testnum]); count++)
        MD5(buf, lengths[testnum], md5);
    return count;
}

static int HMAC_loop(void *args)
{
656
    loopargs_t *tempargs = *(loopargs_t **)args;
657 658
    unsigned char *buf = tempargs->buf;
    HMAC_CTX *hctx = tempargs->hctx;
659
    unsigned char hmac[MD5_DIGEST_LENGTH];
660
    int count;
661

662 663 664
    for (count = 0; COND(c[D_HMAC][testnum]); count++) {
        HMAC_Init_ex(hctx, NULL, 0, NULL, NULL);
        HMAC_Update(hctx, buf, lengths[testnum]);
665
        HMAC_Final(hctx, hmac, NULL);
666 667 668
    }
    return count;
}
669
#endif
670 671 672

static int SHA1_loop(void *args)
{
673
    loopargs_t *tempargs = *(loopargs_t **)args;
674
    unsigned char *buf = tempargs->buf;
675
    unsigned char sha[SHA_DIGEST_LENGTH];
676 677 678 679 680 681 682 683
    int count;
    for (count = 0; COND(c[D_SHA1][testnum]); count++)
        SHA1(buf, lengths[testnum], sha);
    return count;
}

static int SHA256_loop(void *args)
{
684
    loopargs_t *tempargs = *(loopargs_t **)args;
685
    unsigned char *buf = tempargs->buf;
686
    unsigned char sha256[SHA256_DIGEST_LENGTH];
687 688 689 690 691 692 693 694
    int count;
    for (count = 0; COND(c[D_SHA256][testnum]); count++)
        SHA256(buf, lengths[testnum], sha256);
    return count;
}

static int SHA512_loop(void *args)
{
695
    loopargs_t *tempargs = *(loopargs_t **)args;
696
    unsigned char *buf = tempargs->buf;
697
    unsigned char sha512[SHA512_DIGEST_LENGTH];
698 699 700 701 702 703
    int count;
    for (count = 0; COND(c[D_SHA512][testnum]); count++)
        SHA512(buf, lengths[testnum], sha512);
    return count;
}

704
#ifndef OPENSSL_NO_WHIRLPOOL
705 706
static int WHIRLPOOL_loop(void *args)
{
707
    loopargs_t *tempargs = *(loopargs_t **)args;
708
    unsigned char *buf = tempargs->buf;
709
    unsigned char whirlpool[WHIRLPOOL_DIGEST_LENGTH];
710 711 712 713 714
    int count;
    for (count = 0; COND(c[D_WHIRLPOOL][testnum]); count++)
        WHIRLPOOL(buf, lengths[testnum], whirlpool);
    return count;
}
715
#endif
716

R
Rich Salz 已提交
717
#ifndef OPENSSL_NO_RMD160
718 719
static int EVP_Digest_RMD160_loop(void *args)
{
720
    loopargs_t *tempargs = *(loopargs_t **)args;
721
    unsigned char *buf = tempargs->buf;
722
    unsigned char rmd160[RIPEMD160_DIGEST_LENGTH];
723
    int count;
724
    for (count = 0; COND(c[D_RMD160][testnum]); count++) {
725
        if (!EVP_Digest(buf, (size_t)lengths[testnum], &(rmd160[0]),
726 727 728
                NULL, EVP_ripemd160(), NULL))
            return -1;
    }
729 730
    return count;
}
731
#endif
732

733
#ifndef OPENSSL_NO_RC4
734 735 736
static RC4_KEY rc4_ks;
static int RC4_loop(void *args)
{
737
    loopargs_t *tempargs = *(loopargs_t **)args;
738 739 740
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_RC4][testnum]); count++)
741
        RC4(&rc4_ks, (size_t)lengths[testnum], buf, buf);
742 743 744 745 746 747 748 749 750 751 752
    return count;
}
#endif

#ifndef OPENSSL_NO_DES
static unsigned char DES_iv[8];
static DES_key_schedule sch;
static DES_key_schedule sch2;
static DES_key_schedule sch3;
static int DES_ncbc_encrypt_loop(void *args)
{
753
    loopargs_t *tempargs = *(loopargs_t **)args;
754 755 756 757 758 759 760 761 762 763
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_DES][testnum]); count++)
        DES_ncbc_encrypt(buf, buf, lengths[testnum], &sch,
                &DES_iv, DES_ENCRYPT);
    return count;
}

static int DES_ede3_cbc_encrypt_loop(void *args)
{
764
    loopargs_t *tempargs = *(loopargs_t **)args;
765 766 767 768 769 770 771 772 773 774
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_EDE3_DES][testnum]); count++)
        DES_ede3_cbc_encrypt(buf, buf, lengths[testnum],
                &sch, &sch2, &sch3,
                &DES_iv, DES_ENCRYPT);
    return count;
}
#endif

M
Matt Caswell 已提交
775
#define MAX_BLOCK_SIZE 128
776 777 778 779 780

static unsigned char iv[2 * MAX_BLOCK_SIZE / 8];
static AES_KEY aes_ks1, aes_ks2, aes_ks3;
static int AES_cbc_128_encrypt_loop(void *args)
{
781
    loopargs_t *tempargs = *(loopargs_t **)args;
782 783 784 785
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_128_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
786
                (size_t)lengths[testnum], &aes_ks1,
787 788 789 790 791 792
                iv, AES_ENCRYPT);
    return count;
}

static int AES_cbc_192_encrypt_loop(void *args)
{
793
    loopargs_t *tempargs = *(loopargs_t **)args;
794 795 796 797
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_192_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
798
                (size_t)lengths[testnum], &aes_ks2,
799 800 801 802 803 804
                iv, AES_ENCRYPT);
    return count;
}

static int AES_cbc_256_encrypt_loop(void *args)
{
805
    loopargs_t *tempargs = *(loopargs_t **)args;
806 807 808 809
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_256_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
810
                (size_t)lengths[testnum], &aes_ks3,
811 812 813 814 815 816
                iv, AES_ENCRYPT);
    return count;
}

static int AES_ige_128_encrypt_loop(void *args)
{
817
    loopargs_t *tempargs = *(loopargs_t **)args;
818 819 820 821 822
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
    int count;
    for (count = 0; COND(c[D_IGE_128_AES][testnum]); count++)
        AES_ige_encrypt(buf, buf2,
823
                (size_t)lengths[testnum], &aes_ks1,
824 825 826 827 828 829
                iv, AES_ENCRYPT);
    return count;
}

static int AES_ige_192_encrypt_loop(void *args)
{
830
    loopargs_t *tempargs = *(loopargs_t **)args;
831 832 833 834 835
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
    int count;
    for (count = 0; COND(c[D_IGE_192_AES][testnum]); count++)
        AES_ige_encrypt(buf, buf2,
836
                (size_t)lengths[testnum], &aes_ks2,
837 838 839 840 841 842
                iv, AES_ENCRYPT);
    return count;
}

static int AES_ige_256_encrypt_loop(void *args)
{
843
    loopargs_t *tempargs = *(loopargs_t **)args;
844 845 846 847 848
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
    int count;
    for (count = 0; COND(c[D_IGE_256_AES][testnum]); count++)
        AES_ige_encrypt(buf, buf2,
849
                (size_t)lengths[testnum], &aes_ks3,
850 851 852 853 854 855
                iv, AES_ENCRYPT);
    return count;
}

static int CRYPTO_gcm128_aad_loop(void *args)
{
856
    loopargs_t *tempargs = *(loopargs_t **)args;
857 858 859 860 861 862 863 864
    unsigned char *buf = tempargs->buf;
    GCM128_CONTEXT *gcm_ctx = tempargs->gcm_ctx;
    int count;
    for (count = 0; COND(c[D_GHASH][testnum]); count++)
        CRYPTO_gcm128_aad(gcm_ctx, buf, lengths[testnum]);
    return count;
}

865
static long save_count = 0;
866 867 868
static int decrypt = 0;
static int EVP_Update_loop(void *args)
{
869
    loopargs_t *tempargs = *(loopargs_t **)args;
870 871 872
    unsigned char *buf = tempargs->buf;
    EVP_CIPHER_CTX *ctx = tempargs->ctx;
    int outl, count;
873 874 875
#ifndef SIGALRM
    int nb_iter = save_count * 4 * lengths[0] / lengths[testnum];
#endif
876
    if (decrypt)
877
        for (count = 0; COND(nb_iter); count++)
878 879
            EVP_DecryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
    else
880
        for (count = 0; COND(nb_iter); count++)
881 882 883 884 885 886 887 888 889 890 891
            EVP_EncryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
    if (decrypt)
        EVP_DecryptFinal_ex(ctx, buf, &outl);
    else
        EVP_EncryptFinal_ex(ctx, buf, &outl);
    return count;
}

static const EVP_MD *evp_md = NULL;
static int EVP_Digest_loop(void *args)
{
892
    loopargs_t *tempargs = *(loopargs_t **)args;
893 894 895
    unsigned char *buf = tempargs->buf;
    unsigned char md[EVP_MAX_MD_SIZE];
    int count;
896 897 898 899 900 901
#ifndef SIGALRM
    int nb_iter = save_count * 4 * lengths[0] / lengths[testnum];
#endif

    for (count = 0; COND(nb_iter); count++) {
        if (!EVP_Digest(buf, lengths[testnum], md, NULL, evp_md, NULL))
902 903
            return -1;
    }
904 905 906 907
    return count;
}

#ifndef OPENSSL_NO_RSA
F
FdaSilvaYY 已提交
908
static long rsa_c[RSA_NUM][2];  /* # RSA iteration test */
909 910 911

static int RSA_sign_loop(void *args)
{
912
    loopargs_t *tempargs = *(loopargs_t **)args;
913 914
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
F
FdaSilvaYY 已提交
915
    unsigned int *rsa_num = &tempargs->siglen;
916
    RSA **rsa_key = tempargs->rsa_key;
917 918
    int ret, count;
    for (count = 0; COND(rsa_c[testnum][0]); count++) {
919
        ret = RSA_sign(NID_md5_sha1, buf, 36, buf2, rsa_num, rsa_key[testnum]);
920 921 922 923 924 925 926 927 928 929 930 931
        if (ret == 0) {
            BIO_printf(bio_err, "RSA sign failure\n");
            ERR_print_errors(bio_err);
            count = -1;
            break;
        }
    }
    return count;
}

static int RSA_verify_loop(void *args)
{
932
    loopargs_t *tempargs = *(loopargs_t **)args;
933 934
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
F
FdaSilvaYY 已提交
935
    unsigned int rsa_num = tempargs->siglen;
936
    RSA **rsa_key = tempargs->rsa_key;
937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954
    int ret, count;
    for (count = 0; COND(rsa_c[testnum][1]); count++) {
        ret = RSA_verify(NID_md5_sha1, buf, 36, buf2, rsa_num, rsa_key[testnum]);
        if (ret <= 0) {
            BIO_printf(bio_err, "RSA verify failure\n");
            ERR_print_errors(bio_err);
            count = -1;
            break;
        }
    }
    return count;
}
#endif

#ifndef OPENSSL_NO_DSA
static long dsa_c[DSA_NUM][2];
static int DSA_sign_loop(void *args)
{
955
    loopargs_t *tempargs = *(loopargs_t **)args;
956 957
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
958
    DSA **dsa_key = tempargs->dsa_key;
F
FdaSilvaYY 已提交
959
    unsigned int *siglen = &tempargs->siglen;
960 961 962 963 964 965
    int ret, count;
    for (count = 0; COND(dsa_c[testnum][0]); count++) {
        ret = DSA_sign(0, buf, 20, buf2, siglen, dsa_key[testnum]);
        if (ret == 0) {
            BIO_printf(bio_err, "DSA sign failure\n");
            ERR_print_errors(bio_err);
966
            count = -1;
967 968 969 970 971 972 973 974
            break;
        }
    }
    return count;
}

static int DSA_verify_loop(void *args)
{
975
    loopargs_t *tempargs = *(loopargs_t **)args;
976 977
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
978
    DSA **dsa_key = tempargs->dsa_key;
F
FdaSilvaYY 已提交
979
    unsigned int siglen = tempargs->siglen;
980 981 982 983 984 985
    int ret, count;
    for (count = 0; COND(dsa_c[testnum][1]); count++) {
        ret = DSA_verify(0, buf, 20, buf2, siglen, dsa_key[testnum]);
        if (ret <= 0) {
            BIO_printf(bio_err, "DSA verify failure\n");
            ERR_print_errors(bio_err);
986
            count = -1;
987 988 989 990 991 992 993 994 995 996 997
            break;
        }
    }
    return count;
}
#endif

#ifndef OPENSSL_NO_EC
static long ecdsa_c[EC_NUM][2];
static int ECDSA_sign_loop(void *args)
{
998
    loopargs_t *tempargs = *(loopargs_t **)args;
999
    unsigned char *buf = tempargs->buf;
1000 1001
    EC_KEY **ecdsa = tempargs->ecdsa;
    unsigned char *ecdsasig = tempargs->buf2;
F
FdaSilvaYY 已提交
1002
    unsigned int *ecdsasiglen = &tempargs->siglen;
1003 1004 1005 1006 1007 1008 1009
    int ret, count;
    for (count = 0; COND(ecdsa_c[testnum][0]); count++) {
        ret = ECDSA_sign(0, buf, 20,
                ecdsasig, ecdsasiglen, ecdsa[testnum]);
        if (ret == 0) {
            BIO_printf(bio_err, "ECDSA sign failure\n");
            ERR_print_errors(bio_err);
1010
            count = -1;
1011 1012 1013 1014 1015 1016 1017 1018
            break;
        }
    }
    return count;
}

static int ECDSA_verify_loop(void *args)
{
1019
    loopargs_t *tempargs = *(loopargs_t **)args;
1020
    unsigned char *buf = tempargs->buf;
1021 1022
    EC_KEY **ecdsa = tempargs->ecdsa;
    unsigned char *ecdsasig = tempargs->buf2;
F
FdaSilvaYY 已提交
1023
    unsigned int ecdsasiglen = tempargs->siglen;
1024 1025 1026 1027 1028 1029 1030
    int ret, count;
    for (count = 0; COND(ecdsa_c[testnum][1]); count++) {
        ret = ECDSA_verify(0, buf, 20, ecdsasig, ecdsasiglen,
                ecdsa[testnum]);
        if (ret != 1) {
            BIO_printf(bio_err, "ECDSA verify failure\n");
            ERR_print_errors(bio_err);
1031
            count = -1;
1032 1033 1034 1035 1036 1037
            break;
        }
    }
    return count;
}

1038
/* ******************************************************************** */
1039 1040
static long ecdh_c[EC_NUM][1];

1041
static int ECDH_EVP_derive_key(unsigned char *derived_secret,
1042 1043
                            size_t *outlen,
                            EVP_PKEY_CTX *ctx)
1044
{
1045 1046 1047 1048 1049
    int rt=1;
    if ( (rt=EVP_PKEY_derive(ctx, derived_secret, outlen)) <= 0 ) {
        BIO_printf(bio_err, "ECDH EVP_PKEY_derive failure: returned %d\n", rt);
        ERR_print_errors(bio_err);
        return rt;
1050
    }
1051
    return rt;
1052 1053 1054 1055 1056 1057 1058
}

static int ECDH_EVP_derive_key_loop(void *args)
{
    loopargs_t *tempargs = *(loopargs_t **) args;
    EVP_PKEY_CTX *ctx = tempargs->ecdh_ctx[testnum];
    unsigned char *derived_secret = tempargs->secret_a;
1059
    int count;
1060
    size_t *outlen = &(tempargs->outlen);
F
FdaSilvaYY 已提交
1061

1062
    for (count = 0; COND(ecdh_c[testnum][0]); count++) {
1063 1064
        if ( !ECDH_EVP_derive_key(derived_secret, outlen, ctx) )
            break;
1065 1066 1067
    }
    return count;
}
1068

F
FdaSilvaYY 已提交
1069
#endif                          /* OPENSSL_NO_EC */
1070

F
FdaSilvaYY 已提交
1071 1072
static int run_benchmark(int async_jobs,
                         int (*loop_function)(void *), loopargs_t *loopargs)
1073 1074 1075 1076
{
    int job_op_count = 0;
    int total_op_count = 0;
    int num_inprogress = 0;
F
FdaSilvaYY 已提交
1077
    int error = 0, i = 0, ret = 0;
1078 1079
    OSSL_ASYNC_FD job_fd = 0;
    size_t num_job_fds = 0;
1080 1081 1082

    run = 1;

1083
    if (async_jobs == 0) {
1084
        return loop_function((void *)&loopargs);
1085 1086 1087
    }

    for (i = 0; i < async_jobs && !error; i++) {
1088 1089 1090
        loopargs_t *looparg_item = loopargs + i;

        /* Copy pointer content (looparg_t item address) into async context */
F
FdaSilvaYY 已提交
1091 1092
        ret = ASYNC_start_job(&loopargs[i].inprogress_job, loopargs[i].wait_ctx,
                              &job_op_count, loop_function,
1093
                              (void *)&looparg_item, sizeof(looparg_item));
F
FdaSilvaYY 已提交
1094
        switch (ret) {
F
FdaSilvaYY 已提交
1095 1096 1097 1098 1099
        case ASYNC_PAUSE:
            ++num_inprogress;
            break;
        case ASYNC_FINISH:
            if (job_op_count == -1) {
1100
                error = 1;
F
FdaSilvaYY 已提交
1101 1102 1103 1104 1105 1106 1107 1108 1109 1110
            } else {
                total_op_count += job_op_count;
            }
            break;
        case ASYNC_NO_JOBS:
        case ASYNC_ERR:
            BIO_printf(bio_err, "Failure in the job\n");
            ERR_print_errors(bio_err);
            error = 1;
            break;
1111 1112 1113 1114
        }
    }

    while (num_inprogress > 0) {
1115
#if defined(OPENSSL_SYS_WINDOWS)
1116
        DWORD avail = 0;
1117
#elif defined(OPENSSL_SYS_UNIX)
1118
        int select_result = 0;
1119 1120
        OSSL_ASYNC_FD max_fd = 0;
        fd_set waitfdset;
1121

1122
        FD_ZERO(&waitfdset);
1123

1124 1125 1126
        for (i = 0; i < async_jobs && num_inprogress > 0; i++) {
            if (loopargs[i].inprogress_job == NULL)
                continue;
1127

1128 1129 1130 1131 1132 1133
            if (!ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, NULL, &num_job_fds)
                    || num_job_fds > 1) {
                BIO_printf(bio_err, "Too many fds in ASYNC_WAIT_CTX\n");
                ERR_print_errors(bio_err);
                error = 1;
                break;
1134
            }
1135 1136 1137 1138
            ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, &job_fd, &num_job_fds);
            FD_SET(job_fd, &waitfdset);
            if (job_fd > max_fd)
                max_fd = job_fd;
1139 1140
        }

B
Ben Laurie 已提交
1141
        if (max_fd >= (OSSL_ASYNC_FD)FD_SETSIZE) {
1142 1143 1144 1145 1146 1147 1148 1149 1150
            BIO_printf(bio_err,
                    "Error: max_fd (%d) must be smaller than FD_SETSIZE (%d). "
                    "Decrease the value of async_jobs\n",
                    max_fd, FD_SETSIZE);
            ERR_print_errors(bio_err);
            error = 1;
            break;
        }

1151
        select_result = select(max_fd + 1, &waitfdset, NULL, NULL, NULL);
1152 1153 1154 1155
        if (select_result == -1 && errno == EINTR)
            continue;

        if (select_result == -1) {
1156 1157 1158 1159
            BIO_printf(bio_err, "Failure in the select\n");
            ERR_print_errors(bio_err);
            error = 1;
            break;
1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
        }

        if (select_result == 0)
            continue;
#endif

        for (i = 0; i < async_jobs; i++) {
            if (loopargs[i].inprogress_job == NULL)
                continue;

1170 1171 1172 1173 1174 1175 1176 1177
            if (!ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, NULL, &num_job_fds)
                    || num_job_fds > 1) {
                BIO_printf(bio_err, "Too many fds in ASYNC_WAIT_CTX\n");
                ERR_print_errors(bio_err);
                error = 1;
                break;
            }
            ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, &job_fd, &num_job_fds);
1178

1179
#if defined(OPENSSL_SYS_UNIX)
1180
            if (num_job_fds == 1 && !FD_ISSET(job_fd, &waitfdset))
1181
                continue;
1182
#elif defined(OPENSSL_SYS_WINDOWS)
F
FdaSilvaYY 已提交
1183
            if (num_job_fds == 1
F
FdaSilvaYY 已提交
1184
                && !PeekNamedPipe(job_fd, NULL, 0, NULL, &avail, NULL)
F
FdaSilvaYY 已提交
1185
                && avail > 0)
1186 1187 1188
                continue;
#endif

1189 1190
            ret = ASYNC_start_job(&loopargs[i].inprogress_job,
                    loopargs[i].wait_ctx, &job_op_count, loop_function,
F
FdaSilvaYY 已提交
1191 1192
                    (void *)(loopargs + i), sizeof(loopargs_t));
            switch (ret) {
F
FdaSilvaYY 已提交
1193 1194 1195 1196
            case ASYNC_PAUSE:
                break;
            case ASYNC_FINISH:
                if (job_op_count == -1) {
1197
                    error = 1;
F
FdaSilvaYY 已提交
1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211
                } else {
                    total_op_count += job_op_count;
                }
                --num_inprogress;
                loopargs[i].inprogress_job = NULL;
                break;
            case ASYNC_NO_JOBS:
            case ASYNC_ERR:
                --num_inprogress;
                loopargs[i].inprogress_job = NULL;
                BIO_printf(bio_err, "Failure in the job\n");
                ERR_print_errors(bio_err);
                error = 1;
                break;
1212 1213 1214 1215 1216 1217 1218 1219 1220
            }
        }
    }

    return error ? -1 : total_op_count;
}

int speed_main(int argc, char **argv)
{
1221
    ENGINE *e = NULL;
1222
    loopargs_t *loopargs = NULL;
1223
    int async_init = 0;
1224 1225
    int loopargs_len = 0;
    char *prog;
1226
    const char *engine_id = NULL;
1227 1228 1229
    const EVP_CIPHER *evp_cipher = NULL;
    double d = 0.0;
    OPTION_CHOICE o;
1230 1231
    int multiblock = 0, pr_header = 0;
    int doit[ALGOR_NUM] = { 0 };
1232
    int ret = 1, i, k, misalign = 0;
1233
    long count = 0;
1234 1235 1236 1237
#ifndef NO_FORK
    int multi = 0;
#endif
    int async_jobs = 0;
1238 1239
#if !defined(OPENSSL_NO_RSA) || !defined(OPENSSL_NO_DSA) \
    || !defined(OPENSSL_NO_EC)
1240
    long rsa_count = 1;
1241
#endif
1242 1243

    /* What follows are the buffers and key material. */
1244
#ifndef OPENSSL_NO_RC5
1245
    RC5_32_KEY rc5_ks;
1246 1247
#endif
#ifndef OPENSSL_NO_RC2
1248
    RC2_KEY rc2_ks;
1249 1250
#endif
#ifndef OPENSSL_NO_IDEA
1251
    IDEA_KEY_SCHEDULE idea_ks;
1252 1253
#endif
#ifndef OPENSSL_NO_SEED
1254
    SEED_KEY_SCHEDULE seed_ks;
1255 1256
#endif
#ifndef OPENSSL_NO_BF
1257
    BF_KEY bf_ks;
1258 1259
#endif
#ifndef OPENSSL_NO_CAST
1260
    CAST_KEY cast_ks;
1261
#endif
1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276
    static const unsigned char key16[16] = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12
    };
    static const unsigned char key24[24] = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12,
        0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34
    };
    static const unsigned char key32[32] = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12,
        0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34,
        0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34, 0x56
    };
1277
#ifndef OPENSSL_NO_CAMELLIA
1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288
    static const unsigned char ckey24[24] = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12,
        0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34
    };
    static const unsigned char ckey32[32] = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0,
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12,
        0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34,
        0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34, 0x56
    };
1289
    CAMELLIA_KEY camellia_ks1, camellia_ks2, camellia_ks3;
1290 1291
#endif
#ifndef OPENSSL_NO_DES
1292 1293 1294 1295 1296 1297 1298 1299 1300
    static DES_cblock key = {
        0x12, 0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0
    };
    static DES_cblock key2 = {
        0x34, 0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12
    };
    static DES_cblock key3 = {
        0x56, 0x78, 0x9a, 0xbc, 0xde, 0xf0, 0x12, 0x34
    };
1301 1302
#endif
#ifndef OPENSSL_NO_RSA
1303
    static const unsigned int rsa_bits[RSA_NUM] = {
1304 1305
        512, 1024, 2048, 3072, 4096, 7680, 15360
    };
1306
    static const unsigned char *rsa_data[RSA_NUM] = {
1307 1308
        test512, test1024, test2048, test3072, test4096, test7680, test15360
    };
1309
    static const int rsa_data_length[RSA_NUM] = {
1310 1311 1312 1313 1314
        sizeof(test512), sizeof(test1024),
        sizeof(test2048), sizeof(test3072),
        sizeof(test4096), sizeof(test7680),
        sizeof(test15360)
    };
1315
    int rsa_doit[RSA_NUM] = { 0 };
1316 1317
#endif
#ifndef OPENSSL_NO_DSA
1318
    static const unsigned int dsa_bits[DSA_NUM] = { 512, 1024, 2048 };
1319
    int dsa_doit[DSA_NUM] = { 0 };
1320 1321
#endif
#ifndef OPENSSL_NO_EC
1322 1323 1324 1325 1326
    /*
     * We only test over the following curves as they are representative, To
     * add tests over more curves, simply add the curve NID and curve name to
     * the following arrays and increase the EC_NUM value accordingly.
     */
1327
    static const unsigned int test_curves[EC_NUM] = {
1328
        /* Prime Curves */
1329 1330
        NID_secp160r1, NID_X9_62_prime192v1, NID_secp224r1,
        NID_X9_62_prime256v1, NID_secp384r1, NID_secp521r1,
1331
        /* Binary Curves */
1332 1333 1334
        NID_sect163k1, NID_sect233k1, NID_sect283k1,
        NID_sect409k1, NID_sect571k1, NID_sect163r2,
        NID_sect233r1, NID_sect283r1, NID_sect409r1,
1335 1336 1337
        NID_sect571r1,
        /* Other */
        NID_X25519
1338 1339 1340
    };
    static const char *test_curves_names[EC_NUM] = {
        /* Prime Curves */
1341 1342
        "secp160r1", "nistp192", "nistp224",
        "nistp256", "nistp384", "nistp521",
1343
        /* Binary Curves */
1344 1345 1346
        "nistk163", "nistk233", "nistk283",
        "nistk409", "nistk571", "nistb163",
        "nistb233", "nistb283", "nistb409",
1347 1348 1349
        "nistb571",
        /* Other */
        "X25519"
1350
    };
1351
    static const int test_curves_bits[EC_NUM] = {
1352 1353 1354 1355 1356
        160, 192, 224,
        256, 384, 521,
        163, 233, 283,
        409, 571, 163,
        233, 283, 409,
1357
        571, 253 /* X25519 */
1358
    };
1359

1360 1361
    int ecdsa_doit[EC_NUM] = { 0 };
    int ecdh_doit[EC_NUM] = { 0 };
F
FdaSilvaYY 已提交
1362
#endif                          /* ndef OPENSSL_NO_EC */
1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376

    prog = opt_init(argc, argv, speed_options);
    while ((o = opt_next()) != OPT_EOF) {
        switch (o) {
        case OPT_EOF:
        case OPT_ERR:
 opterr:
            BIO_printf(bio_err, "%s: Use -help for summary.\n", prog);
            goto end;
        case OPT_HELP:
            opt_help(speed_options);
            ret = 0;
            goto end;
        case OPT_ELAPSED:
1377
            usertime = 0;
1378 1379 1380 1381 1382 1383 1384
            break;
        case OPT_EVP:
            evp_cipher = EVP_get_cipherbyname(opt_arg());
            if (evp_cipher == NULL)
                evp_md = EVP_get_digestbyname(opt_arg());
            if (evp_cipher == NULL && evp_md == NULL) {
                BIO_printf(bio_err,
F
FdaSilvaYY 已提交
1385
                           "%s: %s is an unknown cipher or digest\n",
1386
                           prog, opt_arg());
1387 1388 1389
                goto end;
            }
            doit[D_EVP] = 1;
1390 1391
            break;
        case OPT_DECRYPT:
1392
            decrypt = 1;
1393 1394
            break;
        case OPT_ENGINE:
1395 1396 1397 1398 1399 1400
            /*
             * In a forked execution, an engine might need to be
             * initialised by each child process, not by the parent.
             * So store the name here and run setup_engine() later on.
             */
            engine_id = opt_arg();
1401 1402
            break;
        case OPT_MULTI:
1403
#ifndef NO_FORK
1404
            multi = atoi(opt_arg());
1405 1406 1407
#endif
            break;
        case OPT_ASYNCJOBS:
1408
#ifndef OPENSSL_NO_ASYNC
1409
            async_jobs = atoi(opt_arg());
1410 1411 1412 1413 1414 1415
            if (!ASYNC_is_capable()) {
                BIO_printf(bio_err,
                           "%s: async_jobs specified but async not supported\n",
                           prog);
                goto opterr;
            }
1416
#endif
1417
            break;
1418 1419
        case OPT_MISALIGN:
            if (!opt_int(opt_arg(), &misalign))
1420
                goto end;
1421
            if (misalign > MISALIGN) {
1422
                BIO_printf(bio_err,
1423 1424
                           "%s: Maximum offset is %d\n", prog, MISALIGN);
                goto opterr;
1425
            }
1426 1427 1428 1429 1430 1431
            break;
        case OPT_MR:
            mr = 1;
            break;
        case OPT_MB:
            multiblock = 1;
F
FdaSilvaYY 已提交
1432 1433 1434 1435 1436 1437
#ifdef OPENSSL_NO_MULTIBLOCK
            BIO_printf(bio_err,
                       "%s: -mb specified but multi-block support is disabled\n",
                       prog);
            goto end;
#endif
1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449
            break;
        }
    }
    argc = opt_num_rest();
    argv = opt_rest();

    /* Remaining arguments are algorithms. */
    for ( ; *argv; argv++) {
        if (found(*argv, doit_choices, &i)) {
            doit[i] = 1;
            continue;
        }
1450
#ifndef OPENSSL_NO_DES
1451 1452 1453 1454
        if (strcmp(*argv, "des") == 0) {
            doit[D_CBC_DES] = doit[D_EDE3_DES] = 1;
            continue;
        }
1455
#endif
1456 1457 1458 1459
        if (strcmp(*argv, "sha") == 0) {
            doit[D_SHA1] = doit[D_SHA256] = doit[D_SHA512] = 1;
            continue;
        }
1460 1461
#ifndef OPENSSL_NO_RSA
# ifndef RSA_NULL
1462
        if (strcmp(*argv, "openssl") == 0) {
R
Rich Salz 已提交
1463
            RSA_set_default_method(RSA_PKCS1_OpenSSL());
1464 1465
            continue;
        }
1466
# endif
1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477
        if (strcmp(*argv, "rsa") == 0) {
            rsa_doit[R_RSA_512] = rsa_doit[R_RSA_1024] =
                rsa_doit[R_RSA_2048] = rsa_doit[R_RSA_3072] =
                rsa_doit[R_RSA_4096] = rsa_doit[R_RSA_7680] =
                rsa_doit[R_RSA_15360] = 1;
            continue;
        }
        if (found(*argv, rsa_choices, &i)) {
            rsa_doit[i] = 1;
            continue;
        }
1478
#endif
1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
#ifndef OPENSSL_NO_DSA
        if (strcmp(*argv, "dsa") == 0) {
            dsa_doit[R_DSA_512] = dsa_doit[R_DSA_1024] =
                dsa_doit[R_DSA_2048] = 1;
            continue;
        }
        if (found(*argv, dsa_choices, &i)) {
            dsa_doit[i] = 2;
            continue;
        }
1489
#endif
1490
        if (strcmp(*argv, "aes") == 0) {
1491 1492 1493 1494
            doit[D_CBC_128_AES] = doit[D_CBC_192_AES] =
                doit[D_CBC_256_AES] = 1;
            continue;
        }
1495
#ifndef OPENSSL_NO_CAMELLIA
1496
        if (strcmp(*argv, "camellia") == 0) {
1497 1498 1499 1500
            doit[D_CBC_128_CML] = doit[D_CBC_192_CML] =
                doit[D_CBC_256_CML] = 1;
            continue;
        }
1501
#endif
1502
#ifndef OPENSSL_NO_EC
1503
        if (strcmp(*argv, "ecdsa") == 0) {
1504 1505
            for (i = 0; i < EC_NUM; i++)
                ecdsa_doit[i] = 1;
1506 1507 1508 1509 1510 1511 1512
            continue;
        }
        if (found(*argv, ecdsa_choices, &i)) {
            ecdsa_doit[i] = 2;
            continue;
        }
        if (strcmp(*argv, "ecdh") == 0) {
1513 1514
            for (i = 0; i < EC_NUM; i++)
                ecdh_doit[i] = 1;
1515 1516 1517 1518 1519
            continue;
        }
        if (found(*argv, ecdh_choices, &i)) {
            ecdh_doit[i] = 2;
            continue;
1520
        }
1521 1522 1523
#endif
        BIO_printf(bio_err, "%s: Unknown algorithm %s\n", prog, *argv);
        goto end;
1524
    }
1525

1526 1527
    /* Initialize the job pool if async mode is enabled */
    if (async_jobs > 0) {
1528 1529
        async_init = ASYNC_init_thread(async_jobs, async_jobs);
        if (!async_init) {
1530 1531 1532 1533 1534 1535 1536 1537 1538
            BIO_printf(bio_err, "Error creating the ASYNC job pool\n");
            goto end;
        }
    }

    loopargs_len = (async_jobs == 0 ? 1 : async_jobs);
    loopargs = app_malloc(loopargs_len * sizeof(loopargs_t), "array of loopargs");
    memset(loopargs, 0, loopargs_len * sizeof(loopargs_t));

1539
    for (i = 0; i < loopargs_len; i++) {
1540 1541 1542 1543 1544 1545 1546 1547
        if (async_jobs > 0) {
            loopargs[i].wait_ctx = ASYNC_WAIT_CTX_new();
            if (loopargs[i].wait_ctx == NULL) {
                BIO_printf(bio_err, "Error creating the ASYNC_WAIT_CTX\n");
                goto end;
            }
        }

1548 1549 1550 1551 1552
        loopargs[i].buf_malloc = app_malloc((int)BUFSIZE + MAX_MISALIGNMENT + 1, "input buffer");
        loopargs[i].buf2_malloc = app_malloc((int)BUFSIZE + MAX_MISALIGNMENT + 1, "input buffer");
        /* Align the start of buffers on a 64 byte boundary */
        loopargs[i].buf = loopargs[i].buf_malloc + misalign;
        loopargs[i].buf2 = loopargs[i].buf2_malloc + misalign;
1553 1554 1555 1556
#ifndef OPENSSL_NO_EC
        loopargs[i].secret_a = app_malloc(MAX_ECDH_SIZE, "ECDH secret a");
        loopargs[i].secret_b = app_malloc(MAX_ECDH_SIZE, "ECDH secret b");
#endif
1557 1558
    }

1559
#ifndef NO_FORK
1560 1561
    if (multi && do_multi(multi))
        goto show_res;
1562
#endif
1563

1564
    /* Initialize the engine after the fork */
1565
    e = setup_engine(engine_id, 0);
1566

1567
    /* No parameters; turn on everything. */
1568
    if ((argc == 0) && !doit[D_EVP]) {
1569
        for (i = 0; i < ALGOR_NUM; i++)
1570 1571
            if (i != D_EVP)
                doit[i] = 1;
F
FdaSilvaYY 已提交
1572
#ifndef OPENSSL_NO_RSA
1573 1574
        for (i = 0; i < RSA_NUM; i++)
            rsa_doit[i] = 1;
F
FdaSilvaYY 已提交
1575
#endif
M
Matt Caswell 已提交
1576
#ifndef OPENSSL_NO_DSA
1577 1578
        for (i = 0; i < DSA_NUM; i++)
            dsa_doit[i] = 1;
M
Matt Caswell 已提交
1579
#endif
1580
#ifndef OPENSSL_NO_EC
1581 1582 1583 1584
        for (i = 0; i < EC_NUM; i++)
            ecdsa_doit[i] = 1;
        for (i = 0; i < EC_NUM; i++)
            ecdh_doit[i] = 1;
1585
#endif
1586 1587 1588 1589 1590 1591 1592 1593 1594 1595
    }
    for (i = 0; i < ALGOR_NUM; i++)
        if (doit[i])
            pr_header++;

    if (usertime == 0 && !mr)
        BIO_printf(bio_err,
                   "You have chosen to measure elapsed time "
                   "instead of user CPU time.\n");

1596
#ifndef OPENSSL_NO_RSA
1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607
    for (i = 0; i < loopargs_len; i++) {
        for (k = 0; k < RSA_NUM; k++) {
            const unsigned char *p;

            p = rsa_data[k];
            loopargs[i].rsa_key[k] = d2i_RSAPrivateKey(NULL, &p, rsa_data_length[k]);
            if (loopargs[i].rsa_key[k] == NULL) {
                BIO_printf(bio_err, "internal error loading RSA key number %d\n",
                        k);
                goto end;
            }
1608
        }
1609 1610 1611
    }
#endif
#ifndef OPENSSL_NO_DSA
1612 1613 1614 1615 1616
    for (i = 0; i < loopargs_len; i++) {
        loopargs[i].dsa_key[0] = get_dsa512();
        loopargs[i].dsa_key[1] = get_dsa1024();
        loopargs[i].dsa_key[2] = get_dsa2048();
    }
1617 1618
#endif
#ifndef OPENSSL_NO_DES
1619 1620 1621
    DES_set_key_unchecked(&key, &sch);
    DES_set_key_unchecked(&key2, &sch2);
    DES_set_key_unchecked(&key3, &sch3);
1622
#endif
1623 1624 1625
    AES_set_encrypt_key(key16, 128, &aes_ks1);
    AES_set_encrypt_key(key24, 192, &aes_ks2);
    AES_set_encrypt_key(key32, 256, &aes_ks3);
1626
#ifndef OPENSSL_NO_CAMELLIA
1627 1628 1629
    Camellia_set_key(key16, 128, &camellia_ks1);
    Camellia_set_key(ckey24, 192, &camellia_ks2);
    Camellia_set_key(ckey32, 256, &camellia_ks3);
1630 1631
#endif
#ifndef OPENSSL_NO_IDEA
R
Rich Salz 已提交
1632
    IDEA_set_encrypt_key(key16, &idea_ks);
1633 1634
#endif
#ifndef OPENSSL_NO_SEED
1635
    SEED_set_key(key16, &seed_ks);
1636 1637
#endif
#ifndef OPENSSL_NO_RC4
1638
    RC4_set_key(&rc4_ks, 16, key16);
1639 1640
#endif
#ifndef OPENSSL_NO_RC2
1641
    RC2_set_key(&rc2_ks, 16, key16, 128);
1642 1643
#endif
#ifndef OPENSSL_NO_RC5
1644
    RC5_32_set_key(&rc5_ks, 16, key16, 12);
1645 1646
#endif
#ifndef OPENSSL_NO_BF
1647
    BF_set_key(&bf_ks, 16, key16);
1648 1649
#endif
#ifndef OPENSSL_NO_CAST
1650
    CAST_set_key(&cast_ks, 16, key16);
1651 1652 1653
#endif
#ifndef SIGALRM
# ifndef OPENSSL_NO_DES
1654 1655 1656 1657 1658 1659 1660
    BIO_printf(bio_err, "First we calculate the approximate speed ...\n");
    count = 10;
    do {
        long it;
        count *= 2;
        Time_F(START);
        for (it = count; it; it--)
1661 1662
            DES_ecb_encrypt((DES_cblock *)loopargs[0].buf,
                            (DES_cblock *)loopargs[0].buf, &sch, DES_ENCRYPT);
1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711
        d = Time_F(STOP);
    } while (d < 3);
    save_count = count;
    c[D_MD2][0] = count / 10;
    c[D_MDC2][0] = count / 10;
    c[D_MD4][0] = count;
    c[D_MD5][0] = count;
    c[D_HMAC][0] = count;
    c[D_SHA1][0] = count;
    c[D_RMD160][0] = count;
    c[D_RC4][0] = count * 5;
    c[D_CBC_DES][0] = count;
    c[D_EDE3_DES][0] = count / 3;
    c[D_CBC_IDEA][0] = count;
    c[D_CBC_SEED][0] = count;
    c[D_CBC_RC2][0] = count;
    c[D_CBC_RC5][0] = count;
    c[D_CBC_BF][0] = count;
    c[D_CBC_CAST][0] = count;
    c[D_CBC_128_AES][0] = count;
    c[D_CBC_192_AES][0] = count;
    c[D_CBC_256_AES][0] = count;
    c[D_CBC_128_CML][0] = count;
    c[D_CBC_192_CML][0] = count;
    c[D_CBC_256_CML][0] = count;
    c[D_SHA256][0] = count;
    c[D_SHA512][0] = count;
    c[D_WHIRLPOOL][0] = count;
    c[D_IGE_128_AES][0] = count;
    c[D_IGE_192_AES][0] = count;
    c[D_IGE_256_AES][0] = count;
    c[D_GHASH][0] = count;

    for (i = 1; i < SIZE_NUM; i++) {
        long l0, l1;

        l0 = (long)lengths[0];
        l1 = (long)lengths[i];

        c[D_MD2][i] = c[D_MD2][0] * 4 * l0 / l1;
        c[D_MDC2][i] = c[D_MDC2][0] * 4 * l0 / l1;
        c[D_MD4][i] = c[D_MD4][0] * 4 * l0 / l1;
        c[D_MD5][i] = c[D_MD5][0] * 4 * l0 / l1;
        c[D_HMAC][i] = c[D_HMAC][0] * 4 * l0 / l1;
        c[D_SHA1][i] = c[D_SHA1][0] * 4 * l0 / l1;
        c[D_RMD160][i] = c[D_RMD160][0] * 4 * l0 / l1;
        c[D_SHA256][i] = c[D_SHA256][0] * 4 * l0 / l1;
        c[D_SHA512][i] = c[D_SHA512][0] * 4 * l0 / l1;
        c[D_WHIRLPOOL][i] = c[D_WHIRLPOOL][0] * 4 * l0 / l1;
1712
        c[D_GHASH][i] = c[D_GHASH][0] * 4 * l0 / l1;
1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734

        l0 = (long)lengths[i - 1];

        c[D_RC4][i] = c[D_RC4][i - 1] * l0 / l1;
        c[D_CBC_DES][i] = c[D_CBC_DES][i - 1] * l0 / l1;
        c[D_EDE3_DES][i] = c[D_EDE3_DES][i - 1] * l0 / l1;
        c[D_CBC_IDEA][i] = c[D_CBC_IDEA][i - 1] * l0 / l1;
        c[D_CBC_SEED][i] = c[D_CBC_SEED][i - 1] * l0 / l1;
        c[D_CBC_RC2][i] = c[D_CBC_RC2][i - 1] * l0 / l1;
        c[D_CBC_RC5][i] = c[D_CBC_RC5][i - 1] * l0 / l1;
        c[D_CBC_BF][i] = c[D_CBC_BF][i - 1] * l0 / l1;
        c[D_CBC_CAST][i] = c[D_CBC_CAST][i - 1] * l0 / l1;
        c[D_CBC_128_AES][i] = c[D_CBC_128_AES][i - 1] * l0 / l1;
        c[D_CBC_192_AES][i] = c[D_CBC_192_AES][i - 1] * l0 / l1;
        c[D_CBC_256_AES][i] = c[D_CBC_256_AES][i - 1] * l0 / l1;
        c[D_CBC_128_CML][i] = c[D_CBC_128_CML][i - 1] * l0 / l1;
        c[D_CBC_192_CML][i] = c[D_CBC_192_CML][i - 1] * l0 / l1;
        c[D_CBC_256_CML][i] = c[D_CBC_256_CML][i - 1] * l0 / l1;
        c[D_IGE_128_AES][i] = c[D_IGE_128_AES][i - 1] * l0 / l1;
        c[D_IGE_192_AES][i] = c[D_IGE_192_AES][i - 1] * l0 / l1;
        c[D_IGE_256_AES][i] = c[D_IGE_256_AES][i - 1] * l0 / l1;
    }
B
Bodo Möller 已提交
1735

1736
#  ifndef OPENSSL_NO_RSA
1737 1738 1739 1740 1741
    rsa_c[R_RSA_512][0] = count / 2000;
    rsa_c[R_RSA_512][1] = count / 400;
    for (i = 1; i < RSA_NUM; i++) {
        rsa_c[i][0] = rsa_c[i - 1][0] / 8;
        rsa_c[i][1] = rsa_c[i - 1][1] / 4;
F
FdaSilvaYY 已提交
1742
        if (rsa_doit[i] <= 1 && rsa_c[i][0] == 0)
1743 1744 1745
            rsa_doit[i] = 0;
        else {
            if (rsa_c[i][0] == 0) {
F
FdaSilvaYY 已提交
1746
                rsa_c[i][0] = 1;            /* Set minimum iteration Nb to 1. */
1747 1748 1749 1750
                rsa_c[i][1] = 20;
            }
        }
    }
1751
#  endif
1752

1753
#  ifndef OPENSSL_NO_DSA
1754 1755 1756 1757 1758
    dsa_c[R_DSA_512][0] = count / 1000;
    dsa_c[R_DSA_512][1] = count / 1000 / 2;
    for (i = 1; i < DSA_NUM; i++) {
        dsa_c[i][0] = dsa_c[i - 1][0] / 4;
        dsa_c[i][1] = dsa_c[i - 1][1] / 4;
F
FdaSilvaYY 已提交
1759
        if (dsa_doit[i] <= 1 && dsa_c[i][0] == 0)
1760 1761
            dsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1762 1763
            if (dsa_c[i][0] == 0) {
                dsa_c[i][0] = 1;            /* Set minimum iteration Nb to 1. */
1764 1765 1766 1767
                dsa_c[i][1] = 1;
            }
        }
    }
1768
#  endif
1769

1770
#  ifndef OPENSSL_NO_EC
1771 1772 1773 1774 1775
    ecdsa_c[R_EC_P160][0] = count / 1000;
    ecdsa_c[R_EC_P160][1] = count / 1000 / 2;
    for (i = R_EC_P192; i <= R_EC_P521; i++) {
        ecdsa_c[i][0] = ecdsa_c[i - 1][0] / 2;
        ecdsa_c[i][1] = ecdsa_c[i - 1][1] / 2;
F
FdaSilvaYY 已提交
1776
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1777 1778
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1779
            if (ecdsa_c[i][0] == 0) {
1780 1781 1782 1783 1784 1785 1786 1787 1788 1789
                ecdsa_c[i][0] = 1;
                ecdsa_c[i][1] = 1;
            }
        }
    }
    ecdsa_c[R_EC_K163][0] = count / 1000;
    ecdsa_c[R_EC_K163][1] = count / 1000 / 2;
    for (i = R_EC_K233; i <= R_EC_K571; i++) {
        ecdsa_c[i][0] = ecdsa_c[i - 1][0] / 2;
        ecdsa_c[i][1] = ecdsa_c[i - 1][1] / 2;
F
FdaSilvaYY 已提交
1790
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1791 1792
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1793
            if (ecdsa_c[i][0] == 0) {
1794 1795 1796 1797 1798 1799 1800 1801 1802 1803
                ecdsa_c[i][0] = 1;
                ecdsa_c[i][1] = 1;
            }
        }
    }
    ecdsa_c[R_EC_B163][0] = count / 1000;
    ecdsa_c[R_EC_B163][1] = count / 1000 / 2;
    for (i = R_EC_B233; i <= R_EC_B571; i++) {
        ecdsa_c[i][0] = ecdsa_c[i - 1][0] / 2;
        ecdsa_c[i][1] = ecdsa_c[i - 1][1] / 2;
F
FdaSilvaYY 已提交
1804
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1805 1806
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1807
            if (ecdsa_c[i][0] == 0) {
1808 1809 1810 1811 1812
                ecdsa_c[i][0] = 1;
                ecdsa_c[i][1] = 1;
            }
        }
    }
1813

1814 1815 1816
    ecdh_c[R_EC_P160][0] = count / 1000;
    for (i = R_EC_P192; i <= R_EC_P521; i++) {
        ecdh_c[i][0] = ecdh_c[i - 1][0] / 2;
F
FdaSilvaYY 已提交
1817
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1818 1819
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1820
            if (ecdh_c[i][0] == 0) {
1821 1822 1823 1824 1825 1826 1827
                ecdh_c[i][0] = 1;
            }
        }
    }
    ecdh_c[R_EC_K163][0] = count / 1000;
    for (i = R_EC_K233; i <= R_EC_K571; i++) {
        ecdh_c[i][0] = ecdh_c[i - 1][0] / 2;
F
FdaSilvaYY 已提交
1828
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1829 1830
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1831
            if (ecdh_c[i][0] == 0) {
1832 1833 1834 1835 1836 1837 1838
                ecdh_c[i][0] = 1;
            }
        }
    }
    ecdh_c[R_EC_B163][0] = count / 1000;
    for (i = R_EC_B233; i <= R_EC_B571; i++) {
        ecdh_c[i][0] = ecdh_c[i - 1][0] / 2;
F
FdaSilvaYY 已提交
1839
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1840 1841
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1842
            if (ecdh_c[i][0] == 0) {
1843 1844 1845 1846
                ecdh_c[i][0] = 1;
            }
        }
    }
1847
#  endif
B
Bodo Möller 已提交
1848

1849
# else
1850 1851 1852 1853 1854
/* not worth fixing */
#  error "You cannot disable DES on systems without SIGALRM."
# endif                        /* OPENSSL_NO_DES */
#else
# ifndef _WIN32
1855
    signal(SIGALRM, sig_done);
1856 1857
# endif
#endif                         /* SIGALRM */
1858

1859
#ifndef OPENSSL_NO_MD2
1860
    if (doit[D_MD2]) {
1861 1862
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_MD2], c[D_MD2][testnum], lengths[testnum]);
1863
            Time_F(START);
1864
            count = run_benchmark(async_jobs, EVP_Digest_MD2_loop, loopargs);
1865
            d = Time_F(STOP);
1866
            print_result(D_MD2, testnum, count, d);
1867 1868
        }
    }
1869 1870
#endif
#ifndef OPENSSL_NO_MDC2
1871
    if (doit[D_MDC2]) {
1872 1873
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_MDC2], c[D_MDC2][testnum], lengths[testnum]);
1874
            Time_F(START);
1875
            count = run_benchmark(async_jobs, EVP_Digest_MDC2_loop, loopargs);
1876
            d = Time_F(STOP);
1877
            print_result(D_MDC2, testnum, count, d);
1878 1879
        }
    }
1880
#endif
1881

1882
#ifndef OPENSSL_NO_MD4
1883
    if (doit[D_MD4]) {
1884 1885
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_MD4], c[D_MD4][testnum], lengths[testnum]);
1886
            Time_F(START);
1887
            count = run_benchmark(async_jobs, EVP_Digest_MD4_loop, loopargs);
1888
            d = Time_F(STOP);
1889
            print_result(D_MD4, testnum, count, d);
1890 1891
        }
    }
1892
#endif
1893

1894
#ifndef OPENSSL_NO_MD5
1895
    if (doit[D_MD5]) {
1896 1897
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_MD5], c[D_MD5][testnum], lengths[testnum]);
1898
            Time_F(START);
1899
            count = run_benchmark(async_jobs, MD5_loop, loopargs);
1900
            d = Time_F(STOP);
1901
            print_result(D_MD5, testnum, count, d);
1902 1903
        }
    }
1904

1905
    if (doit[D_HMAC]) {
F
FdaSilvaYY 已提交
1906
        static const char hmac_key[] = "This is a key...";
1907 1908
        int len = strlen(hmac_key);

1909
        for (i = 0; i < loopargs_len; i++) {
1910 1911 1912 1913 1914
            loopargs[i].hctx = HMAC_CTX_new();
            if (loopargs[i].hctx == NULL) {
                BIO_printf(bio_err, "HMAC malloc failure, exiting...");
                exit(1);
            }
1915

1916
            HMAC_Init_ex(loopargs[i].hctx, hmac_key, len, EVP_md5(), NULL);
1917
        }
1918 1919
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_HMAC], c[D_HMAC][testnum], lengths[testnum]);
1920
            Time_F(START);
1921
            count = run_benchmark(async_jobs, HMAC_loop, loopargs);
1922
            d = Time_F(STOP);
1923 1924
            print_result(D_HMAC, testnum, count, d);
        }
1925
        for (i = 0; i < loopargs_len; i++) {
1926
            HMAC_CTX_free(loopargs[i].hctx);
1927 1928
        }
    }
1929
#endif
1930
    if (doit[D_SHA1]) {
1931 1932
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_SHA1], c[D_SHA1][testnum], lengths[testnum]);
1933
            Time_F(START);
1934
            count = run_benchmark(async_jobs, SHA1_loop, loopargs);
1935
            d = Time_F(STOP);
1936
            print_result(D_SHA1, testnum, count, d);
1937 1938 1939
        }
    }
    if (doit[D_SHA256]) {
1940 1941
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_SHA256], c[D_SHA256][testnum], lengths[testnum]);
1942
            Time_F(START);
1943
            count = run_benchmark(async_jobs, SHA256_loop, loopargs);
1944
            d = Time_F(STOP);
1945
            print_result(D_SHA256, testnum, count, d);
1946 1947 1948
        }
    }
    if (doit[D_SHA512]) {
1949 1950
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_SHA512], c[D_SHA512][testnum], lengths[testnum]);
1951
            Time_F(START);
1952
            count = run_benchmark(async_jobs, SHA512_loop, loopargs);
1953
            d = Time_F(STOP);
1954
            print_result(D_SHA512, testnum, count, d);
1955 1956
        }
    }
A
Andy Polyakov 已提交
1957

1958
#ifndef OPENSSL_NO_WHIRLPOOL
1959
    if (doit[D_WHIRLPOOL]) {
1960 1961
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_WHIRLPOOL], c[D_WHIRLPOOL][testnum], lengths[testnum]);
1962
            Time_F(START);
1963
            count = run_benchmark(async_jobs, WHIRLPOOL_loop, loopargs);
1964
            d = Time_F(STOP);
1965
            print_result(D_WHIRLPOOL, testnum, count, d);
1966 1967
        }
    }
1968
#endif
1969

1970
#ifndef OPENSSL_NO_RMD160
1971
    if (doit[D_RMD160]) {
1972 1973
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_RMD160], c[D_RMD160][testnum], lengths[testnum]);
1974
            Time_F(START);
1975
            count = run_benchmark(async_jobs, EVP_Digest_RMD160_loop, loopargs);
1976
            d = Time_F(STOP);
1977
            print_result(D_RMD160, testnum, count, d);
1978 1979
        }
    }
1980 1981
#endif
#ifndef OPENSSL_NO_RC4
1982
    if (doit[D_RC4]) {
1983 1984
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_RC4], c[D_RC4][testnum], lengths[testnum]);
1985
            Time_F(START);
1986
            count = run_benchmark(async_jobs, RC4_loop, loopargs);
1987
            d = Time_F(STOP);
1988
            print_result(D_RC4, testnum, count, d);
1989 1990
        }
    }
1991 1992
#endif
#ifndef OPENSSL_NO_DES
1993
    if (doit[D_CBC_DES]) {
1994 1995
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_CBC_DES], c[D_CBC_DES][testnum], lengths[testnum]);
1996
            Time_F(START);
1997
            count = run_benchmark(async_jobs, DES_ncbc_encrypt_loop, loopargs);
1998
            d = Time_F(STOP);
1999
            print_result(D_CBC_DES, testnum, count, d);
2000 2001
        }
    }
2002

2003
    if (doit[D_EDE3_DES]) {
2004 2005
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_EDE3_DES], c[D_EDE3_DES][testnum], lengths[testnum]);
2006
            Time_F(START);
2007
            count = run_benchmark(async_jobs, DES_ede3_cbc_encrypt_loop, loopargs);
2008
            d = Time_F(STOP);
2009
            print_result(D_EDE3_DES, testnum, count, d);
2010 2011
        }
    }
2012
#endif
M
Matt Caswell 已提交
2013

2014
    if (doit[D_CBC_128_AES]) {
2015 2016 2017
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_CBC_128_AES], c[D_CBC_128_AES][testnum],
                          lengths[testnum]);
2018
            Time_F(START);
2019
            count = run_benchmark(async_jobs, AES_cbc_128_encrypt_loop, loopargs);
2020
            d = Time_F(STOP);
2021
            print_result(D_CBC_128_AES, testnum, count, d);
2022 2023 2024
        }
    }
    if (doit[D_CBC_192_AES]) {
2025 2026 2027
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_CBC_192_AES], c[D_CBC_192_AES][testnum],
                          lengths[testnum]);
2028
            Time_F(START);
2029
            count = run_benchmark(async_jobs, AES_cbc_192_encrypt_loop, loopargs);
2030
            d = Time_F(STOP);
2031
            print_result(D_CBC_192_AES, testnum, count, d);
2032 2033 2034
        }
    }
    if (doit[D_CBC_256_AES]) {
2035 2036 2037
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_CBC_256_AES], c[D_CBC_256_AES][testnum],
                          lengths[testnum]);
2038
            Time_F(START);
2039
            count = run_benchmark(async_jobs, AES_cbc_256_encrypt_loop, loopargs);
2040
            d = Time_F(STOP);
2041
            print_result(D_CBC_256_AES, testnum, count, d);
2042 2043
        }
    }
B
Ben Laurie 已提交
2044

2045
    if (doit[D_IGE_128_AES]) {
2046 2047 2048
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_IGE_128_AES], c[D_IGE_128_AES][testnum],
                          lengths[testnum]);
2049
            Time_F(START);
2050
            count = run_benchmark(async_jobs, AES_ige_128_encrypt_loop, loopargs);
2051
            d = Time_F(STOP);
2052
            print_result(D_IGE_128_AES, testnum, count, d);
2053 2054 2055
        }
    }
    if (doit[D_IGE_192_AES]) {
2056 2057 2058
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_IGE_192_AES], c[D_IGE_192_AES][testnum],
                          lengths[testnum]);
2059
            Time_F(START);
2060
            count = run_benchmark(async_jobs, AES_ige_192_encrypt_loop, loopargs);
2061
            d = Time_F(STOP);
2062
            print_result(D_IGE_192_AES, testnum, count, d);
2063 2064 2065
        }
    }
    if (doit[D_IGE_256_AES]) {
2066 2067 2068
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_IGE_256_AES], c[D_IGE_256_AES][testnum],
                          lengths[testnum]);
2069
            Time_F(START);
2070
            count = run_benchmark(async_jobs, AES_ige_256_encrypt_loop, loopargs);
2071
            d = Time_F(STOP);
2072
            print_result(D_IGE_256_AES, testnum, count, d);
2073 2074 2075
        }
    }
    if (doit[D_GHASH]) {
2076
        for (i = 0; i < loopargs_len; i++) {
2077 2078 2079
            loopargs[i].gcm_ctx = CRYPTO_gcm128_new(&aes_ks1, (block128_f) AES_encrypt);
            CRYPTO_gcm128_setiv(loopargs[i].gcm_ctx, (unsigned char *)"0123456789ab", 12);
        }
2080

2081 2082
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            print_message(names[D_GHASH], c[D_GHASH][testnum], lengths[testnum]);
2083
            Time_F(START);
2084
            count = run_benchmark(async_jobs, CRYPTO_gcm128_aad_loop, loopargs);
2085
            d = Time_F(STOP);
2086
            print_result(D_GHASH, testnum, count, d);
2087
        }
2088
        for (i = 0; i < loopargs_len; i++)
2089
            CRYPTO_gcm128_release(loopargs[i].gcm_ctx);
2090
    }
M
Matt Caswell 已提交
2091

2092
#ifndef OPENSSL_NO_CAMELLIA
2093
    if (doit[D_CBC_128_CML]) {
2094 2095 2096 2097 2098 2099
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_128_CML]);
            doit[D_CBC_128_CML] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2100 2101
            print_message(names[D_CBC_128_CML], c[D_CBC_128_CML][testnum],
                          lengths[testnum]);
2102
            Time_F(START);
2103 2104
            for (count = 0, run = 1; COND(c[D_CBC_128_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2105
                                     (size_t)lengths[testnum], &camellia_ks1,
2106 2107
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2108
            print_result(D_CBC_128_CML, testnum, count, d);
2109 2110 2111
        }
    }
    if (doit[D_CBC_192_CML]) {
2112 2113 2114 2115 2116 2117
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_192_CML]);
            doit[D_CBC_192_CML] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2118 2119 2120 2121 2122 2123
            print_message(names[D_CBC_192_CML], c[D_CBC_192_CML][testnum],
                          lengths[testnum]);
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2124
            Time_F(START);
2125 2126
            for (count = 0, run = 1; COND(c[D_CBC_192_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2127
                                     (size_t)lengths[testnum], &camellia_ks2,
2128 2129
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2130
            print_result(D_CBC_192_CML, testnum, count, d);
2131 2132 2133
        }
    }
    if (doit[D_CBC_256_CML]) {
2134 2135 2136 2137 2138 2139
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_256_CML]);
            doit[D_CBC_256_CML] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2140 2141
            print_message(names[D_CBC_256_CML], c[D_CBC_256_CML][testnum],
                          lengths[testnum]);
2142
            Time_F(START);
2143 2144
            for (count = 0, run = 1; COND(c[D_CBC_256_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2145
                                     (size_t)lengths[testnum], &camellia_ks3,
2146 2147
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2148
            print_result(D_CBC_256_CML, testnum, count, d);
2149 2150
        }
    }
2151 2152
#endif
#ifndef OPENSSL_NO_IDEA
2153
    if (doit[D_CBC_IDEA]) {
2154 2155 2156 2157 2158 2159
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_IDEA]);
            doit[D_CBC_IDEA] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2160
            print_message(names[D_CBC_IDEA], c[D_CBC_IDEA][testnum], lengths[testnum]);
2161
            Time_F(START);
2162
            for (count = 0, run = 1; COND(c[D_CBC_IDEA][testnum]); count++)
R
Rich Salz 已提交
2163
                IDEA_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2164
                                 (size_t)lengths[testnum], &idea_ks,
2165 2166
                                 iv, IDEA_ENCRYPT);
            d = Time_F(STOP);
2167
            print_result(D_CBC_IDEA, testnum, count, d);
2168 2169
        }
    }
2170 2171
#endif
#ifndef OPENSSL_NO_SEED
2172
    if (doit[D_CBC_SEED]) {
2173 2174 2175 2176 2177 2178
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_SEED]);
            doit[D_CBC_SEED] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2179
            print_message(names[D_CBC_SEED], c[D_CBC_SEED][testnum], lengths[testnum]);
2180
            Time_F(START);
2181 2182
            for (count = 0, run = 1; COND(c[D_CBC_SEED][testnum]); count++)
                SEED_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2183
                                 (size_t)lengths[testnum], &seed_ks, iv, 1);
2184
            d = Time_F(STOP);
2185
            print_result(D_CBC_SEED, testnum, count, d);
2186 2187
        }
    }
2188 2189
#endif
#ifndef OPENSSL_NO_RC2
2190
    if (doit[D_CBC_RC2]) {
2191 2192 2193 2194 2195 2196
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_RC2]);
            doit[D_CBC_RC2] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2197 2198 2199 2200 2201
            print_message(names[D_CBC_RC2], c[D_CBC_RC2][testnum], lengths[testnum]);
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2202
            Time_F(START);
2203 2204
            for (count = 0, run = 1; COND(c[D_CBC_RC2][testnum]); count++)
                RC2_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2205
                                (size_t)lengths[testnum], &rc2_ks,
2206 2207
                                iv, RC2_ENCRYPT);
            d = Time_F(STOP);
2208
            print_result(D_CBC_RC2, testnum, count, d);
2209 2210
        }
    }
2211 2212
#endif
#ifndef OPENSSL_NO_RC5
2213
    if (doit[D_CBC_RC5]) {
2214 2215 2216 2217 2218 2219
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_RC5]);
            doit[D_CBC_RC5] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2220 2221 2222 2223 2224
            print_message(names[D_CBC_RC5], c[D_CBC_RC5][testnum], lengths[testnum]);
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2225
            Time_F(START);
2226 2227
            for (count = 0, run = 1; COND(c[D_CBC_RC5][testnum]); count++)
                RC5_32_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2228
                                   (size_t)lengths[testnum], &rc5_ks,
2229 2230
                                   iv, RC5_ENCRYPT);
            d = Time_F(STOP);
2231
            print_result(D_CBC_RC5, testnum, count, d);
2232 2233
        }
    }
2234 2235
#endif
#ifndef OPENSSL_NO_BF
2236
    if (doit[D_CBC_BF]) {
2237 2238 2239 2240 2241 2242
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_BF]);
            doit[D_CBC_BF] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2243
            print_message(names[D_CBC_BF], c[D_CBC_BF][testnum], lengths[testnum]);
2244
            Time_F(START);
2245 2246
            for (count = 0, run = 1; COND(c[D_CBC_BF][testnum]); count++)
                BF_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2247
                               (size_t)lengths[testnum], &bf_ks,
2248 2249
                               iv, BF_ENCRYPT);
            d = Time_F(STOP);
2250
            print_result(D_CBC_BF, testnum, count, d);
2251 2252
        }
    }
2253 2254
#endif
#ifndef OPENSSL_NO_CAST
2255
    if (doit[D_CBC_CAST]) {
2256 2257 2258 2259 2260 2261
        if (async_jobs > 0) {
            BIO_printf(bio_err, "Async mode is not supported with %s\n",
                       names[D_CBC_CAST]);
            doit[D_CBC_CAST] = 0;
        }
        for (testnum = 0; testnum < SIZE_NUM && async_init == 0; testnum++) {
2262
            print_message(names[D_CBC_CAST], c[D_CBC_CAST][testnum], lengths[testnum]);
2263
            Time_F(START);
2264 2265
            for (count = 0, run = 1; COND(c[D_CBC_CAST][testnum]); count++)
                CAST_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2266
                                 (size_t)lengths[testnum], &cast_ks,
2267 2268
                                 iv, CAST_ENCRYPT);
            d = Time_F(STOP);
2269
            print_result(D_CBC_CAST, testnum, count, d);
2270 2271
        }
    }
2272
#endif
2273

2274
    if (doit[D_EVP]) {
2275
#ifdef EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK
2276 2277 2278 2279
        if (multiblock && evp_cipher) {
            if (!
                (EVP_CIPHER_flags(evp_cipher) &
                 EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK)) {
R
Rich Salz 已提交
2280
                BIO_printf(bio_err, "%s is not multi-block capable\n",
2281
                           OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher)));
2282 2283
                goto end;
            }
2284 2285 2286 2287
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2288
            multiblock_speed(evp_cipher);
2289
            ret = 0;
2290 2291
            goto end;
        }
2292
#endif
2293
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
2294 2295
            if (evp_cipher) {

2296
                names[D_EVP] = OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher));
2297 2298 2299 2300
                /*
                 * -O3 -fschedule-insns messes up an optimization here!
                 * names[D_EVP] somehow becomes NULL
                 */
2301 2302 2303 2304 2305 2306 2307 2308 2309 2310
                print_message(names[D_EVP], save_count, lengths[testnum]);

                for (k = 0; k < loopargs_len; k++) {
                    loopargs[k].ctx = EVP_CIPHER_CTX_new();
                    if (decrypt)
                        EVP_DecryptInit_ex(loopargs[k].ctx, evp_cipher, NULL, key16, iv);
                    else
                        EVP_EncryptInit_ex(loopargs[k].ctx, evp_cipher, NULL, key16, iv);
                    EVP_CIPHER_CTX_set_padding(loopargs[k].ctx, 0);
                }
2311 2312

                Time_F(START);
2313
                count = run_benchmark(async_jobs, EVP_Update_loop, loopargs);
2314
                d = Time_F(STOP);
2315 2316 2317
                for (k = 0; k < loopargs_len; k++) {
                    EVP_CIPHER_CTX_free(loopargs[k].ctx);
                }
2318 2319
            }
            if (evp_md) {
2320
                names[D_EVP] = OBJ_nid2ln(EVP_MD_type(evp_md));
2321
                print_message(names[D_EVP], save_count, lengths[testnum]);
2322
                Time_F(START);
2323
                count = run_benchmark(async_jobs, EVP_Digest_loop, loopargs);
2324 2325
                d = Time_F(STOP);
            }
2326
            print_result(D_EVP, testnum, count, d);
2327 2328
        }
    }
2329

2330
    for (i = 0; i < loopargs_len; i++)
2331 2332
        RAND_bytes(loopargs[i].buf, 36);

2333
#ifndef OPENSSL_NO_RSA
2334 2335 2336
    for (testnum = 0; testnum < RSA_NUM; testnum++) {
        int st = 0;
        if (!rsa_doit[testnum])
2337
            continue;
2338 2339
        for (i = 0; i < loopargs_len; i++) {
            st = RSA_sign(NID_md5_sha1, loopargs[i].buf, 36, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2340
                          &loopargs[i].siglen, loopargs[i].rsa_key[testnum]);
2341 2342 2343
            if (st == 0)
                break;
        }
2344
        if (st == 0) {
2345 2346 2347 2348 2349 2350
            BIO_printf(bio_err,
                       "RSA sign failure.  No RSA sign will be done.\n");
            ERR_print_errors(bio_err);
            rsa_count = 1;
        } else {
            pkey_print_message("private", "rsa",
2351 2352
                               rsa_c[testnum][0], rsa_bits[testnum], RSA_SECONDS);
            /* RSA_blinding_on(rsa_key[testnum],NULL); */
2353
            Time_F(START);
2354
            count = run_benchmark(async_jobs, RSA_sign_loop, loopargs);
2355 2356 2357 2358
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R1:%ld:%d:%.2f\n"
                       : "%ld %d bit private RSA's in %.2fs\n",
2359 2360
                       count, rsa_bits[testnum], d);
            rsa_results[testnum][0] = d / (double)count;
2361 2362
            rsa_count = count;
        }
2363

2364 2365
        for (i = 0; i < loopargs_len; i++) {
            st = RSA_verify(NID_md5_sha1, loopargs[i].buf, 36, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2366
                            loopargs[i].siglen, loopargs[i].rsa_key[testnum]);
2367 2368 2369
            if (st <= 0)
                break;
        }
2370
        if (st <= 0) {
2371 2372 2373
            BIO_printf(bio_err,
                       "RSA verify failure.  No RSA verify will be done.\n");
            ERR_print_errors(bio_err);
2374
            rsa_doit[testnum] = 0;
2375 2376
        } else {
            pkey_print_message("public", "rsa",
2377
                               rsa_c[testnum][1], rsa_bits[testnum], RSA_SECONDS);
2378
            Time_F(START);
2379
            count = run_benchmark(async_jobs, RSA_verify_loop, loopargs);
2380 2381 2382 2383
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R2:%ld:%d:%.2f\n"
                       : "%ld %d bit public RSA's in %.2fs\n",
2384 2385
                       count, rsa_bits[testnum], d);
            rsa_results[testnum][1] = d / (double)count;
2386
        }
2387

2388 2389
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2390 2391
            for (testnum++; testnum < RSA_NUM; testnum++)
                rsa_doit[testnum] = 0;
2392 2393
        }
    }
F
FdaSilvaYY 已提交
2394
#endif                          /* OPENSSL_NO_RSA */
2395

2396
    for (i = 0; i < loopargs_len; i++)
2397 2398
        RAND_bytes(loopargs[i].buf, 36);

2399
#ifndef OPENSSL_NO_DSA
2400 2401 2402
    if (RAND_status() != 1) {
        RAND_seed(rnd_seed, sizeof rnd_seed);
    }
2403 2404 2405
    for (testnum = 0; testnum < DSA_NUM; testnum++) {
        int st = 0;
        if (!dsa_doit[testnum])
2406 2407
            continue;

2408 2409
        /* DSA_generate_key(dsa_key[testnum]); */
        /* DSA_sign_setup(dsa_key[testnum],NULL); */
2410 2411
        for (i = 0; i < loopargs_len; i++) {
            st = DSA_sign(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2412
                          &loopargs[i].siglen, loopargs[i].dsa_key[testnum]);
2413 2414 2415
            if (st == 0)
                break;
        }
2416
        if (st == 0) {
2417 2418 2419 2420 2421 2422
            BIO_printf(bio_err,
                       "DSA sign failure.  No DSA sign will be done.\n");
            ERR_print_errors(bio_err);
            rsa_count = 1;
        } else {
            pkey_print_message("sign", "dsa",
2423
                               dsa_c[testnum][0], dsa_bits[testnum], DSA_SECONDS);
2424
            Time_F(START);
2425
            count = run_benchmark(async_jobs, DSA_sign_loop, loopargs);
2426 2427 2428 2429
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R3:%ld:%d:%.2f\n"
                       : "%ld %d bit DSA signs in %.2fs\n",
2430 2431
                       count, dsa_bits[testnum], d);
            dsa_results[testnum][0] = d / (double)count;
2432 2433
            rsa_count = count;
        }
B
Bodo Möller 已提交
2434

2435 2436
        for (i = 0; i < loopargs_len; i++) {
            st = DSA_verify(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2437
                            loopargs[i].siglen, loopargs[i].dsa_key[testnum]);
2438 2439 2440
            if (st <= 0)
                break;
        }
2441
        if (st <= 0) {
2442 2443 2444
            BIO_printf(bio_err,
                       "DSA verify failure.  No DSA verify will be done.\n");
            ERR_print_errors(bio_err);
2445
            dsa_doit[testnum] = 0;
2446 2447
        } else {
            pkey_print_message("verify", "dsa",
2448
                               dsa_c[testnum][1], dsa_bits[testnum], DSA_SECONDS);
2449
            Time_F(START);
2450
            count = run_benchmark(async_jobs, DSA_verify_loop, loopargs);
2451 2452 2453 2454
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R4:%ld:%d:%.2f\n"
                       : "%ld %d bit DSA verify in %.2fs\n",
2455 2456
                       count, dsa_bits[testnum], d);
            dsa_results[testnum][1] = d / (double)count;
2457
        }
B
Bodo Möller 已提交
2458

2459 2460
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2461 2462
            for (testnum++; testnum < DSA_NUM; testnum++)
                dsa_doit[testnum] = 0;
2463 2464
        }
    }
F
FdaSilvaYY 已提交
2465
#endif                          /* OPENSSL_NO_DSA */
B
Bodo Möller 已提交
2466

2467
#ifndef OPENSSL_NO_EC
2468 2469 2470
    if (RAND_status() != 1) {
        RAND_seed(rnd_seed, sizeof rnd_seed);
    }
2471
    for (testnum = 0; testnum < EC_NUM; testnum++) {
2472
        int st = 1;
2473

2474
        if (!ecdsa_doit[testnum])
2475
            continue;           /* Ignore Curve */
2476 2477 2478 2479 2480 2481 2482 2483
        for (i = 0; i < loopargs_len; i++) {
            loopargs[i].ecdsa[testnum] = EC_KEY_new_by_curve_name(test_curves[testnum]);
            if (loopargs[i].ecdsa[testnum] == NULL) {
                st = 0;
                break;
            }
        }
        if (st == 0) {
2484 2485 2486 2487
            BIO_printf(bio_err, "ECDSA failure.\n");
            ERR_print_errors(bio_err);
            rsa_count = 1;
        } else {
2488 2489 2490 2491 2492
            for (i = 0; i < loopargs_len; i++) {
                EC_KEY_precompute_mult(loopargs[i].ecdsa[testnum], NULL);
                /* Perform ECDSA signature test */
                EC_KEY_generate_key(loopargs[i].ecdsa[testnum]);
                st = ECDSA_sign(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2493
                                &loopargs[i].siglen, loopargs[i].ecdsa[testnum]);
2494 2495 2496
                if (st == 0)
                    break;
            }
2497
            if (st == 0) {
2498 2499 2500 2501 2502 2503
                BIO_printf(bio_err,
                           "ECDSA sign failure.  No ECDSA sign will be done.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
            } else {
                pkey_print_message("sign", "ecdsa",
2504 2505
                                   ecdsa_c[testnum][0],
                                   test_curves_bits[testnum], ECDSA_SECONDS);
2506
                Time_F(START);
2507
                count = run_benchmark(async_jobs, ECDSA_sign_loop, loopargs);
2508 2509 2510 2511 2512
                d = Time_F(STOP);

                BIO_printf(bio_err,
                           mr ? "+R5:%ld:%d:%.2f\n" :
                           "%ld %d bit ECDSA signs in %.2fs \n",
2513 2514
                           count, test_curves_bits[testnum], d);
                ecdsa_results[testnum][0] = d / (double)count;
2515 2516 2517 2518
                rsa_count = count;
            }

            /* Perform ECDSA verification test */
2519 2520
            for (i = 0; i < loopargs_len; i++) {
                st = ECDSA_verify(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2521
                                  loopargs[i].siglen, loopargs[i].ecdsa[testnum]);
2522 2523 2524
                if (st != 1)
                    break;
            }
2525
            if (st != 1) {
2526 2527 2528
                BIO_printf(bio_err,
                           "ECDSA verify failure.  No ECDSA verify will be done.\n");
                ERR_print_errors(bio_err);
2529
                ecdsa_doit[testnum] = 0;
2530 2531
            } else {
                pkey_print_message("verify", "ecdsa",
2532 2533
                                   ecdsa_c[testnum][1],
                                   test_curves_bits[testnum], ECDSA_SECONDS);
2534
                Time_F(START);
2535
                count = run_benchmark(async_jobs, ECDSA_verify_loop, loopargs);
2536 2537 2538 2539
                d = Time_F(STOP);
                BIO_printf(bio_err,
                           mr ? "+R6:%ld:%d:%.2f\n"
                           : "%ld %d bit ECDSA verify in %.2fs\n",
2540 2541
                           count, test_curves_bits[testnum], d);
                ecdsa_results[testnum][1] = d / (double)count;
2542 2543 2544 2545
            }

            if (rsa_count <= 1) {
                /* if longer than 10s, don't do any more */
2546 2547
                for (testnum++; testnum < EC_NUM; testnum++)
                    ecdsa_doit[testnum] = 0;
2548 2549 2550
            }
        }
    }
2551

2552 2553 2554
    if (RAND_status() != 1) {
        RAND_seed(rnd_seed, sizeof rnd_seed);
    }
2555
    for (testnum = 0; testnum < EC_NUM; testnum++) {
2556 2557
        int ecdh_checks = 1;

2558
        if (!ecdh_doit[testnum])
2559
            continue;
2560

2561
        for (i = 0; i < loopargs_len; i++) {
2562 2563 2564 2565
            EVP_PKEY_CTX *kctx = NULL, *ctx = NULL;
            EVP_PKEY *key_A = NULL, *key_B = NULL;

            if (testnum == R_EC_X25519) {
2566
                kctx = EVP_PKEY_CTX_new_id(test_curves[testnum], NULL); /* keygen ctx from NID */
2567 2568 2569 2570
            } else {
                EVP_PKEY_CTX *pctx = NULL;
                EVP_PKEY *params = NULL;

2571
                if (    /* Create the context for parameter generation */
2572 2573 2574 2575 2576 2577 2578 2579
                        !(pctx = EVP_PKEY_CTX_new_id(EVP_PKEY_EC, NULL)) ||
                        /* Initialise the parameter generation */
                        !EVP_PKEY_paramgen_init(pctx) ||
                        /* Set the curve by NID */
                        !EVP_PKEY_CTX_set_ec_paramgen_curve_nid(pctx, test_curves[testnum]) ||
                        /* Create the parameter object params */
                        !EVP_PKEY_paramgen(pctx, &params) ||
                        0) {
2580
                    ecdh_checks = 0;
2581 2582
                    BIO_printf(bio_err, "ECDH init failure.\n");
                    ERR_print_errors(bio_err);
2583
                    rsa_count = 1;
2584
                    break;
2585
                }
2586 2587 2588 2589 2590
                /* Create the context for the key generation */
                kctx = EVP_PKEY_CTX_new(params, NULL);

                EVP_PKEY_free(params); params = NULL;
                EVP_PKEY_CTX_free(pctx); pctx = NULL;
A
Andrea Grandi 已提交
2591
            }
2592 2593
            if (    !kctx || /* keygen ctx is not null */
                    !EVP_PKEY_keygen_init(kctx) || /* init keygen ctx */
2594 2595 2596 2597 2598 2599
                    0) {
                ecdh_checks = 0;
                BIO_printf(bio_err, "ECDH keygen failure.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
2600
            }
2601

2602 2603 2604 2605 2606
            if (    !EVP_PKEY_keygen(kctx, &key_A) || /* generate secret key A */
                    !EVP_PKEY_keygen(kctx, &key_B) || /* generate secret key B */
                    !(ctx = EVP_PKEY_CTX_new(key_A, NULL)) || /* derivation ctx from skeyA */
                    !EVP_PKEY_derive_init(ctx) || /* init derivation ctx */
                    !EVP_PKEY_derive_set_peer(ctx, key_B) || /* set peer pubkey in ctx */
2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631
                    0) {
                ecdh_checks = 0;
                BIO_printf(bio_err, "ECDH key generation failure.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
            }

            loopargs[i].ecdh_ctx[testnum] = ctx;

            EVP_PKEY_CTX_free(kctx); kctx = NULL;
        }
        if (ecdh_checks != 0) {
            pkey_print_message("", "ecdh",
                    ecdh_c[testnum][0],
                    test_curves_bits[testnum], ECDH_SECONDS);
            Time_F(START);
            count = run_benchmark(async_jobs, ECDH_EVP_derive_key_loop, loopargs);
            d = Time_F(STOP);
            BIO_printf(bio_err,
                    mr ? "+R7:%ld:%d:%.2f\n" :
                    "%ld %d-bit ECDH ops in %.2fs\n", count,
                    test_curves_bits[testnum], d);
            ecdh_results[testnum][0] = d / (double)count;
            rsa_count = count;
2632
        }
B
Bodo Möller 已提交
2633

2634 2635
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2636 2637
            for (testnum++; testnum < EC_NUM; testnum++)
                ecdh_doit[testnum] = 0;
2638 2639
        }
    }
F
FdaSilvaYY 已提交
2640
#endif                          /* OPENSSL_NO_EC */
2641
#ifndef NO_FORK
2642
 show_res:
2643
#endif
2644
    if (!mr) {
R
Rich Salz 已提交
2645 2646
        printf("%s\n", OpenSSL_version(OPENSSL_VERSION));
        printf("%s\n", OpenSSL_version(OPENSSL_BUILT_ON));
2647 2648
        printf("options:");
        printf("%s ", BN_options());
2649
#ifndef OPENSSL_NO_MD2
2650
        printf("%s ", MD2_options());
2651 2652
#endif
#ifndef OPENSSL_NO_RC4
2653
        printf("%s ", RC4_options());
2654 2655
#endif
#ifndef OPENSSL_NO_DES
2656
        printf("%s ", DES_options());
2657
#endif
2658
        printf("%s ", AES_options());
2659
#ifndef OPENSSL_NO_IDEA
R
Rich Salz 已提交
2660
        printf("%s ", IDEA_options());
2661 2662
#endif
#ifndef OPENSSL_NO_BF
2663
        printf("%s ", BF_options());
2664
#endif
R
Rich Salz 已提交
2665
        printf("\n%s\n", OpenSSL_version(OPENSSL_CFLAGS));
2666
    }
B
Bodo Möller 已提交
2667

2668 2669
    if (pr_header) {
        if (mr)
2670
            printf("+H");
2671
        else {
2672 2673 2674
            printf
                ("The 'numbers' are in 1000s of bytes per second processed.\n");
            printf("type        ");
2675
        }
2676 2677
        for (testnum = 0; testnum < SIZE_NUM; testnum++)
            printf(mr ? ":%d" : "%7d bytes", lengths[testnum]);
2678
        printf("\n");
2679
    }
B
Bodo Möller 已提交
2680

2681 2682 2683 2684
    for (k = 0; k < ALGOR_NUM; k++) {
        if (!doit[k])
            continue;
        if (mr)
2685
            printf("+F:%d:%s", k, names[k]);
2686
        else
2687
            printf("%-13s", names[k]);
2688 2689 2690
        for (testnum = 0; testnum < SIZE_NUM; testnum++) {
            if (results[k][testnum] > 10000 && !mr)
                printf(" %11.2fk", results[k][testnum] / 1e3);
2691
            else
2692
                printf(mr ? ":%.2f" : " %11.2f ", results[k][testnum]);
2693
        }
2694
        printf("\n");
2695
    }
2696
#ifndef OPENSSL_NO_RSA
2697
    testnum = 1;
2698 2699 2700
    for (k = 0; k < RSA_NUM; k++) {
        if (!rsa_doit[k])
            continue;
2701
        if (testnum && !mr) {
2702
            printf("%18ssign    verify    sign/s verify/s\n", " ");
2703
            testnum = 0;
2704 2705
        }
        if (mr)
2706 2707
            printf("+F2:%u:%u:%f:%f\n",
                   k, rsa_bits[k], rsa_results[k][0], rsa_results[k][1]);
2708
        else
2709 2710 2711
            printf("rsa %4u bits %8.6fs %8.6fs %8.1f %8.1f\n",
                   rsa_bits[k], rsa_results[k][0], rsa_results[k][1],
                   1.0 / rsa_results[k][0], 1.0 / rsa_results[k][1]);
2712
    }
2713 2714
#endif
#ifndef OPENSSL_NO_DSA
2715
    testnum = 1;
2716 2717 2718
    for (k = 0; k < DSA_NUM; k++) {
        if (!dsa_doit[k])
            continue;
2719
        if (testnum && !mr) {
2720
            printf("%18ssign    verify    sign/s verify/s\n", " ");
2721
            testnum = 0;
2722 2723
        }
        if (mr)
2724 2725
            printf("+F3:%u:%u:%f:%f\n",
                   k, dsa_bits[k], dsa_results[k][0], dsa_results[k][1]);
2726
        else
2727 2728 2729
            printf("dsa %4u bits %8.6fs %8.6fs %8.1f %8.1f\n",
                   dsa_bits[k], dsa_results[k][0], dsa_results[k][1],
                   1.0 / dsa_results[k][0], 1.0 / dsa_results[k][1]);
2730
    }
2731
#endif
2732
#ifndef OPENSSL_NO_EC
2733
    testnum = 1;
2734 2735 2736
    for (k = 0; k < EC_NUM; k++) {
        if (!ecdsa_doit[k])
            continue;
2737
        if (testnum && !mr) {
2738
            printf("%30ssign    verify    sign/s verify/s\n", " ");
2739
            testnum = 0;
2740 2741 2742
        }

        if (mr)
2743 2744 2745
            printf("+F4:%u:%u:%f:%f\n",
                   k, test_curves_bits[k],
                   ecdsa_results[k][0], ecdsa_results[k][1]);
2746
        else
2747 2748 2749 2750 2751
            printf("%4u bit ecdsa (%s) %8.4fs %8.4fs %8.1f %8.1f\n",
                   test_curves_bits[k],
                   test_curves_names[k],
                   ecdsa_results[k][0], ecdsa_results[k][1],
                   1.0 / ecdsa_results[k][0], 1.0 / ecdsa_results[k][1]);
2752
    }
2753

2754
    testnum = 1;
2755 2756 2757
    for (k = 0; k < EC_NUM; k++) {
        if (!ecdh_doit[k])
            continue;
2758
        if (testnum && !mr) {
2759
            printf("%30sop      op/s\n", " ");
2760
            testnum = 0;
2761 2762
        }
        if (mr)
2763 2764 2765
            printf("+F5:%u:%u:%f:%f\n",
                   k, test_curves_bits[k],
                   ecdh_results[k][0], 1.0 / ecdh_results[k][0]);
2766 2767

        else
2768 2769 2770 2771
            printf("%4u bit ecdh (%s) %8.4fs %8.1f\n",
                   test_curves_bits[k],
                   test_curves_names[k],
                   ecdh_results[k][0], 1.0 / ecdh_results[k][0]);
2772
    }
2773
#endif
2774

2775
    ret = 0;
2776 2777 2778

 end:
    ERR_print_errors(bio_err);
2779
    for (i = 0; i < loopargs_len; i++) {
2780 2781
        OPENSSL_free(loopargs[i].buf_malloc);
        OPENSSL_free(loopargs[i].buf2_malloc);
2782

2783
#ifndef OPENSSL_NO_RSA
2784 2785
        for (k = 0; k < RSA_NUM; k++)
            RSA_free(loopargs[i].rsa_key[k]);
2786 2787
#endif
#ifndef OPENSSL_NO_DSA
2788 2789
        for (k = 0; k < DSA_NUM; k++)
            DSA_free(loopargs[i].dsa_key[k]);
2790
#endif
2791
#ifndef OPENSSL_NO_EC
2792 2793
        for (k = 0; k < EC_NUM; k++) {
            EC_KEY_free(loopargs[i].ecdsa[k]);
2794
            EVP_PKEY_CTX_free(loopargs[i].ecdh_ctx[k]);
2795
        }
2796 2797
        OPENSSL_free(loopargs[i].secret_a);
        OPENSSL_free(loopargs[i].secret_b);
2798
#endif
2799 2800
    }

2801 2802 2803
    if (async_jobs > 0) {
        for (i = 0; i < loopargs_len; i++)
            ASYNC_WAIT_CTX_free(loopargs[i].wait_ctx);
2804
    }
2805

2806
    if (async_init) {
2807
        ASYNC_cleanup_thread();
2808 2809
    }
    OPENSSL_free(loopargs);
2810
    release_engine(e);
2811
    return (ret);
2812
}
2813

2814
static void print_message(const char *s, long num, int length)
2815
{
2816
#ifdef SIGALRM
2817 2818 2819 2820 2821
    BIO_printf(bio_err,
               mr ? "+DT:%s:%d:%d\n"
               : "Doing %s for %ds on %d size blocks: ", s, SECONDS, length);
    (void)BIO_flush(bio_err);
    alarm(SECONDS);
2822
#else
2823 2824 2825 2826
    BIO_printf(bio_err,
               mr ? "+DN:%s:%ld:%d\n"
               : "Doing %s %ld times on %d size blocks: ", s, num, length);
    (void)BIO_flush(bio_err);
2827
#endif
2828
}
2829

2830
static void pkey_print_message(const char *str, const char *str2, long num,
2831 2832
                               int bits, int tm)
{
2833
#ifdef SIGALRM
2834 2835 2836 2837 2838
    BIO_printf(bio_err,
               mr ? "+DTP:%d:%s:%s:%d\n"
               : "Doing %d bit %s %s's for %ds: ", bits, str, str2, tm);
    (void)BIO_flush(bio_err);
    alarm(tm);
2839
#else
2840 2841 2842 2843
    BIO_printf(bio_err,
               mr ? "+DNP:%ld:%d:%s:%s\n"
               : "Doing %ld %d bit %s %s's: ", num, bits, str, str2);
    (void)BIO_flush(bio_err);
2844
#endif
2845
}
2846

2847 2848
static void print_result(int alg, int run_no, int count, double time_used)
{
2849 2850 2851 2852
    if (count == -1) {
        BIO_puts(bio_err, "EVP error!\n");
        exit(1);
    }
2853 2854 2855 2856 2857
    BIO_printf(bio_err,
               mr ? "+R:%d:%s:%f\n"
               : "%d %s's in %.2fs\n", count, names[alg], time_used);
    results[alg][run_no] = ((double)count) / time_used * lengths[run_no];
}
2858

2859
#ifndef NO_FORK
2860
static char *sstrsep(char **string, const char *delim)
2861
{
2862 2863 2864 2865 2866 2867
    char isdelim[256];
    char *token = *string;

    if (**string == 0)
        return NULL;

2868
    memset(isdelim, 0, sizeof isdelim);
2869 2870
    isdelim[0] = 1;

2871
    while (*delim) {
2872 2873
        isdelim[(unsigned char)(*delim)] = 1;
        delim++;
2874
    }
2875

2876
    while (!isdelim[(unsigned char)(**string)]) {
2877
        (*string)++;
2878
    }
2879

2880
    if (**string) {
2881 2882
        **string = 0;
        (*string)++;
2883
    }
2884 2885

    return token;
2886
}
2887 2888

static int do_multi(int multi)
2889 2890 2891 2892 2893 2894
{
    int n;
    int fd[2];
    int *fds;
    static char sep[] = ":";

R
Rich Salz 已提交
2895
    fds = malloc(sizeof(*fds) * multi);
2896 2897
    for (n = 0; n < multi; ++n) {
        if (pipe(fd) == -1) {
R
Rich Salz 已提交
2898
            BIO_printf(bio_err, "pipe failure\n");
2899 2900 2901
            exit(1);
        }
        fflush(stdout);
R
Rich Salz 已提交
2902
        (void)BIO_flush(bio_err);
2903 2904 2905 2906 2907 2908 2909
        if (fork()) {
            close(fd[1]);
            fds[n] = fd[0];
        } else {
            close(fd[0]);
            close(1);
            if (dup(fd[1]) == -1) {
R
Rich Salz 已提交
2910
                BIO_printf(bio_err, "dup failed\n");
2911 2912 2913 2914 2915 2916 2917 2918 2919 2920
                exit(1);
            }
            close(fd[1]);
            mr = 1;
            usertime = 0;
            free(fds);
            return 0;
        }
        printf("Forked child %d\n", n);
    }
B
Bodo Möller 已提交
2921

2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933
    /* for now, assume the pipe is long enough to take all the output */
    for (n = 0; n < multi; ++n) {
        FILE *f;
        char buf[1024];
        char *p;

        f = fdopen(fds[n], "r");
        while (fgets(buf, sizeof buf, f)) {
            p = strchr(buf, '\n');
            if (p)
                *p = '\0';
            if (buf[0] != '+') {
R
Rich Salz 已提交
2934
                BIO_printf(bio_err, "Don't understand line '%s' from child %d\n",
2935 2936 2937 2938
                        buf, n);
                continue;
            }
            printf("Got: %s from %d\n", buf, n);
R
Rich Salz 已提交
2939
            if (strncmp(buf, "+F:", 3) == 0) {
2940 2941 2942 2943 2944 2945 2946 2947
                int alg;
                int j;

                p = buf + 3;
                alg = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);
                for (j = 0; j < SIZE_NUM; ++j)
                    results[alg][j] += atof(sstrsep(&p, sep));
R
Rich Salz 已提交
2948
            } else if (strncmp(buf, "+F2:", 4) == 0) {
2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967
                int k;
                double d;

                p = buf + 4;
                k = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);

                d = atof(sstrsep(&p, sep));
                if (n)
                    rsa_results[k][0] = 1 / (1 / rsa_results[k][0] + 1 / d);
                else
                    rsa_results[k][0] = d;

                d = atof(sstrsep(&p, sep));
                if (n)
                    rsa_results[k][1] = 1 / (1 / rsa_results[k][1] + 1 / d);
                else
                    rsa_results[k][1] = d;
            }
2968
# ifndef OPENSSL_NO_DSA
R
Rich Salz 已提交
2969
            else if (strncmp(buf, "+F3:", 4) == 0) {
2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988
                int k;
                double d;

                p = buf + 4;
                k = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);

                d = atof(sstrsep(&p, sep));
                if (n)
                    dsa_results[k][0] = 1 / (1 / dsa_results[k][0] + 1 / d);
                else
                    dsa_results[k][0] = d;

                d = atof(sstrsep(&p, sep));
                if (n)
                    dsa_results[k][1] = 1 / (1 / dsa_results[k][1] + 1 / d);
                else
                    dsa_results[k][1] = d;
            }
2989
# endif
2990
# ifndef OPENSSL_NO_EC
R
Rich Salz 已提交
2991
            else if (strncmp(buf, "+F4:", 4) == 0) {
2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011
                int k;
                double d;

                p = buf + 4;
                k = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);

                d = atof(sstrsep(&p, sep));
                if (n)
                    ecdsa_results[k][0] =
                        1 / (1 / ecdsa_results[k][0] + 1 / d);
                else
                    ecdsa_results[k][0] = d;

                d = atof(sstrsep(&p, sep));
                if (n)
                    ecdsa_results[k][1] =
                        1 / (1 / ecdsa_results[k][1] + 1 / d);
                else
                    ecdsa_results[k][1] = d;
F
FdaSilvaYY 已提交
3012
            } else if (strncmp(buf, "+F5:", 4) == 0) {
3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026
                int k;
                double d;

                p = buf + 4;
                k = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);

                d = atof(sstrsep(&p, sep));
                if (n)
                    ecdh_results[k][0] = 1 / (1 / ecdh_results[k][0] + 1 / d);
                else
                    ecdh_results[k][0] = d;

            }
3027
# endif
3028

R
Rich Salz 已提交
3029
            else if (strncmp(buf, "+H:", 3) == 0) {
3030
                ;
3031
            } else
R
Rich Salz 已提交
3032
                BIO_printf(bio_err, "Unknown type '%s' from child %d\n", buf, n);
3033 3034 3035 3036 3037 3038 3039
        }

        fclose(f);
    }
    free(fds);
    return 1;
}
3040
#endif
3041 3042

static void multiblock_speed(const EVP_CIPHER *evp_cipher)
3043 3044 3045
{
    static int mblengths[] =
        { 8 * 1024, 2 * 8 * 1024, 4 * 8 * 1024, 8 * 8 * 1024, 8 * 16 * 1024 };
3046
    int j, count, num = OSSL_NELEM(mblengths);
3047 3048
    const char *alg_name;
    unsigned char *inp, *out, no_key[32], no_iv[16];
3049
    EVP_CIPHER_CTX *ctx;
3050 3051
    double d = 0.0;

R
Rich Salz 已提交
3052 3053
    inp = app_malloc(mblengths[num - 1], "multiblock input buffer");
    out = app_malloc(mblengths[num - 1] + 1024, "multiblock output buffer");
3054 3055 3056
    ctx = EVP_CIPHER_CTX_new();
    EVP_EncryptInit_ex(ctx, evp_cipher, NULL, no_key, no_iv);
    EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_AEAD_SET_MAC_KEY, sizeof(no_key),
3057
                        no_key);
3058
    alg_name = OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher));
3059 3060 3061 3062 3063

    for (j = 0; j < num; j++) {
        print_message(alg_name, 0, mblengths[j]);
        Time_F(START);
        for (count = 0, run = 1; run && count < 0x7fffffff; count++) {
3064
            unsigned char aad[EVP_AEAD_TLS1_AAD_LEN];
3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079
            EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM mb_param;
            size_t len = mblengths[j];
            int packlen;

            memset(aad, 0, 8);  /* avoid uninitialized values */
            aad[8] = 23;        /* SSL3_RT_APPLICATION_DATA */
            aad[9] = 3;         /* version */
            aad[10] = 2;
            aad[11] = 0;        /* length */
            aad[12] = 0;
            mb_param.out = NULL;
            mb_param.inp = aad;
            mb_param.len = len;
            mb_param.interleave = 8;

3080
            packlen = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_TLS1_1_MULTIBLOCK_AAD,
3081 3082 3083 3084 3085 3086
                                          sizeof(mb_param), &mb_param);

            if (packlen > 0) {
                mb_param.out = out;
                mb_param.inp = inp;
                mb_param.len = len;
3087
                EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_TLS1_1_MULTIBLOCK_ENCRYPT,
3088 3089 3090 3091 3092 3093 3094 3095
                                    sizeof(mb_param), &mb_param);
            } else {
                int pad;

                RAND_bytes(out, 16);
                len += 16;
                aad[11] = len >> 8;
                aad[12] = len;
3096
                pad = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_AEAD_TLS1_AAD,
3097
                                          EVP_AEAD_TLS1_AAD_LEN, aad);
3098
                EVP_Cipher(ctx, out, inp, len + pad);
3099 3100 3101
            }
        }
        d = Time_F(STOP);
3102
        BIO_printf(bio_err, mr ? "+R:%d:%s:%f\n"
3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133
                   : "%d %s's in %.2fs\n", count, "evp", d);
        results[D_EVP][j] = ((double)count) / d * mblengths[j];
    }

    if (mr) {
        fprintf(stdout, "+H");
        for (j = 0; j < num; j++)
            fprintf(stdout, ":%d", mblengths[j]);
        fprintf(stdout, "\n");
        fprintf(stdout, "+F:%d:%s", D_EVP, alg_name);
        for (j = 0; j < num; j++)
            fprintf(stdout, ":%.2f", results[D_EVP][j]);
        fprintf(stdout, "\n");
    } else {
        fprintf(stdout,
                "The 'numbers' are in 1000s of bytes per second processed.\n");
        fprintf(stdout, "type                    ");
        for (j = 0; j < num; j++)
            fprintf(stdout, "%7d bytes", mblengths[j]);
        fprintf(stdout, "\n");
        fprintf(stdout, "%-24s", alg_name);

        for (j = 0; j < num; j++) {
            if (results[D_EVP][j] > 10000)
                fprintf(stdout, " %11.2fk", results[D_EVP][j] / 1e3);
            else
                fprintf(stdout, " %11.2f ", results[D_EVP][j]);
        }
        fprintf(stdout, "\n");
    }

R
Rich Salz 已提交
3134 3135
    OPENSSL_free(inp);
    OPENSSL_free(out);
3136
    EVP_CIPHER_CTX_free(ctx);
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}