speed.c 108.8 KB
Newer Older
R
Rich Salz 已提交
1
/*
2
 * Copyright 1995-2018 The OpenSSL Project Authors. All Rights Reserved.
3
 * Copyright (c) 2002, Oracle and/or its affiliates. All rights reserved
4
 *
R
Rich Salz 已提交
5 6 7 8
 * 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
9
 */
R
Rich Salz 已提交
10

11 12 13 14 15 16 17 18 19 20 21 22
#undef SECONDS
#define SECONDS                 3
#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"
23
#include "progs.h"
24 25 26 27 28
#include <openssl/crypto.h>
#include <openssl/rand.h>
#include <openssl/err.h>
#include <openssl/evp.h>
#include <openssl/objects.h>
29
#include <openssl/async.h>
30 31 32
#if !defined(OPENSSL_SYS_MSDOS)
# include OPENSSL_UNISTD
#endif
33

34
#if defined(_WIN32)
35 36
# include <windows.h>
#endif
37

38 39 40 41
#include <openssl/bn.h>
#ifndef OPENSSL_NO_DES
# include <openssl/des.h>
#endif
M
Matt Caswell 已提交
42
#include <openssl/aes.h>
43 44 45 46 47 48 49 50 51 52 53 54 55 56 57
#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
58 59
#include <openssl/hmac.h>
#include <openssl/sha.h>
60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95
#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
96
#ifndef OPENSSL_NO_EC
D
Dr. Stephen Henson 已提交
97
# include <openssl/ec.h>
98 99
#endif
#include <openssl/modes.h>
100

101
#ifndef HAVE_FORK
R
Rich Salz 已提交
102
# if defined(OPENSSL_SYS_VMS) || defined(OPENSSL_SYS_WINDOWS)
103
#  define HAVE_FORK 0
104
# else
105
#  define HAVE_FORK 1
106
# endif
107
#endif
108

109 110 111 112 113 114 115
#if HAVE_FORK
# undef NO_FORK
#else
# define NO_FORK
#endif

#define MAX_MISALIGNMENT 63
116 117 118
#define MAX_ECDH_SIZE   256
#define MISALIGN        64

119
typedef struct openssl_speed_sec_st {
120 121 122 123 124
    int sym;
    int rsa;
    int dsa;
    int ecdsa;
    int ecdh;
125
} openssl_speed_sec_t;
126

127
static volatile int run = 0;
128

129 130
static int mr = 0;
static int usertime = 1;
131

132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168
#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);
169
static int RAND_bytes_loop(void *args);
170
static int EVP_Update_loop(void *args);
171
static int EVP_Update_loop_ccm(void *args);
172 173 174 175 176 177 178 179 180 181 182 183 184 185
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

186
static double Time_F(int s);
187
static void print_message(const char *s, long num, int length, int tm);
188
static void pkey_print_message(const char *str, const char *str2,
189
                               long num, unsigned int bits, int sec);
190
static void print_result(int alg, int run_no, int count, double time_used);
191
#ifndef NO_FORK
192
static int do_multi(int multi, int size_num);
193
#endif
194

195 196 197 198 199
static const int lengths_list[] = {
    16, 64, 256, 1024, 8 * 1024, 16 * 1024
};
static const int *lengths = lengths_list;

200 201 202 203 204 205
#ifdef SIGALRM
# if defined(__STDC__) || defined(sgi) || defined(_AIX)
#  define SIGRETTYPE void
# else
#  define SIGRETTYPE int
# endif
D
Dr. Stephen Henson 已提交
206

207
static SIGRETTYPE sig_done(int sig);
U
Ulf Möller 已提交
208
static SIGRETTYPE sig_done(int sig)
209 210 211 212
{
    signal(SIGALRM, sig_done);
    run = 0;
}
213
#endif
214

215 216
#define START   0
#define STOP    1
217

218
#if defined(_WIN32)
R
Richard Levitte 已提交
219

220 221 222
# if !defined(SIGALRM)
#  define SIGALRM
# endif
223 224
static unsigned int lapse;
static volatile unsigned int schlock;
225 226 227 228
static void alarm_win32(unsigned int secs)
{
    lapse = secs * 1000;
}
R
Richard Levitte 已提交
229

230
# define alarm alarm_win32
231 232 233 234 235 236 237 238

static DWORD WINAPI sleepy(VOID * arg)
{
    schlock = 1;
    Sleep(lapse);
    run = 0;
    return 0;
}
239

240
static double Time_F(int s)
241 242 243 244 245 246 247 248
{
    double ret;
    static HANDLE thr;

    if (s == START) {
        schlock = 0;
        thr = CreateThread(NULL, 4096, sleepy, NULL, 0, NULL);
        if (thr == NULL) {
249 250
            DWORD err = GetLastError();
            BIO_printf(bio_err, "unable to CreateThread (%lu)", err);
251
            ExitProcess(err);
252 253 254 255 256 257 258 259 260 261 262 263 264
        }
        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;
}
265
#else
266

267 268 269 270 271 272 273
static double Time_F(int s)
{
    double ret = app_tminterval(s, usertime);
    if (s == STOP)
        alarm(0);
    return ret;
}
274
#endif
275

276
static void multiblock_speed(const EVP_CIPHER *evp_cipher, int lengths_single,
277
                             const openssl_speed_sec_t *seconds);
278

279 280 281 282
#define found(value, pairs, result)\
    opt_found(value, result, pairs, OSSL_NELEM(pairs))
static int opt_found(const char *name, unsigned int *result,
                     const OPT_PAIR pairs[], unsigned int nbelem)
283
{
284 285 286
    unsigned int idx;

    for (idx = 0; idx < nbelem; ++idx, pairs++)
287 288 289 290 291 292 293 294 295 296
        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,
P
Paul Yang 已提交
297
    OPT_MR, OPT_MB, OPT_MISALIGN, OPT_ASYNCJOBS, OPT_R_ENUM,
298
    OPT_PRIMES, OPT_SECONDS, OPT_BYTES
299 300
} OPTION_CHOICE;

F
FdaSilvaYY 已提交
301
const OPTIONS speed_options[] = {
302 303 304
    {OPT_HELP_STR, 1, '-', "Usage: %s [options] ciphers...\n"},
    {OPT_HELP_STR, 1, '-', "Valid options are:\n"},
    {"help", OPT_HELP, '-', "Display this summary"},
305 306 307 308
    {"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"},
F
FdaSilvaYY 已提交
309
    {"mb", OPT_MB, '-',
F
FdaSilvaYY 已提交
310
     "Enable (tls1.1) multi-block mode on evp_cipher requested with -evp"},
311
    {"misalign", OPT_MISALIGN, 'n', "Amount to mis-align buffers"},
312 313 314 315 316
    {"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
317
#ifndef OPENSSL_NO_ASYNC
F
FdaSilvaYY 已提交
318 319
    {"async_jobs", OPT_ASYNCJOBS, 'p',
     "Enable async mode and start pnum jobs"},
320
#endif
R
Rich Salz 已提交
321
    OPT_R_OPTIONS,
322 323 324
#ifndef OPENSSL_NO_ENGINE
    {"engine", OPT_ENGINE, 's', "Use engine, possibly a hardware device"},
#endif
P
Paul Yang 已提交
325
    {"primes", OPT_PRIMES, 'p', "Specify number of primes (for RSA only)"},
326 327 328 329
    {"seconds", OPT_SECONDS, 'p',
     "Run benchmarks for pnum seconds"},
    {"bytes", OPT_BYTES, 'p',
     "Run cipher, digest and rand benchmarks on pnum bytes"},
330
    {NULL}
331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362
};

#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
363
#define D_RAND          30
364 365 366 367 368 369 370 371 372 373 374 375 376 377 378
/* name of algorithms to test */
static const char *names[] = {
    "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",
    "rand"
};
#define ALGOR_NUM       OSSL_NELEM(names)

/* list of configured algorithm (remaining) */
static const OPT_PAIR doit_choices[] = {
379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397
#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
R
Rich Salz 已提交
398
#ifndef OPENSSL_NO_RMD160
399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442
    {"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},
443
    {"rand", D_RAND}
444 445
};

446 447
static double results[ALGOR_NUM][OSSL_NELEM(lengths_list)];

M
Matt Caswell 已提交
448 449 450 451
#ifndef OPENSSL_NO_DSA
# define R_DSA_512       0
# define R_DSA_1024      1
# define R_DSA_2048      2
452
static const OPT_PAIR dsa_choices[] = {
453 454
    {"dsa512", R_DSA_512},
    {"dsa1024", R_DSA_1024},
455
    {"dsa2048", R_DSA_2048}
456
};
457 458 459 460
# define DSA_NUM         OSSL_NELEM(dsa_choices)

static double dsa_results[DSA_NUM][2];  /* 2 ops: sign then verify */
#endif  /* OPENSSL_NO_DSA */
461

462 463 464 465 466 467 468
#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
469 470
#ifndef OPENSSL_NO_RSA
static const OPT_PAIR rsa_choices[] = {
471 472 473 474 475 476
    {"rsa512", R_RSA_512},
    {"rsa1024", R_RSA_1024},
    {"rsa2048", R_RSA_2048},
    {"rsa3072", R_RSA_3072},
    {"rsa4096", R_RSA_4096},
    {"rsa7680", R_RSA_7680},
477
    {"rsa15360", R_RSA_15360}
478
};
479 480 481 482
# define RSA_NUM OSSL_NELEM(rsa_choices)

static double rsa_results[RSA_NUM][2];  /* 2 ops: sign then verify */
#endif /* OPENSSL_NO_RSA */
483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499

#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
500 501 502 503 504 505 506 507
#define R_EC_BRP256R1  16
#define R_EC_BRP256T1  17
#define R_EC_BRP384R1  18
#define R_EC_BRP384T1  19
#define R_EC_BRP512R1  20
#define R_EC_BRP512T1  21
#define R_EC_X25519  22
#define R_EC_X448    23
R
Richard Levitte 已提交
508
#ifndef OPENSSL_NO_EC
509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524
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},
525 526 527 528 529 530 531
    {"ecdsab571", R_EC_B571},
    {"ecdsabrp256r1", R_EC_BRP256R1},
    {"ecdsabrp256t1", R_EC_BRP256T1},
    {"ecdsabrp384r1", R_EC_BRP384R1},
    {"ecdsabrp384t1", R_EC_BRP384T1},
    {"ecdsabrp512r1", R_EC_BRP512R1},
    {"ecdsabrp512t1", R_EC_BRP512T1}
532
};
533 534 535
# define ECDSA_NUM       OSSL_NELEM(ecdsa_choices)

static double ecdsa_results[ECDSA_NUM][2];    /* 2 ops: sign then verify */
F
FdaSilvaYY 已提交
536

537
static const OPT_PAIR ecdh_choices[] = {
538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553
    {"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},
554 555 556 557 558 559
    {"ecdhbrp256r1", R_EC_BRP256R1},
    {"ecdhbrp256t1", R_EC_BRP256T1},
    {"ecdhbrp384r1", R_EC_BRP384R1},
    {"ecdhbrp384t1", R_EC_BRP384T1},
    {"ecdhbrp512r1", R_EC_BRP512R1},
    {"ecdhbrp512t1", R_EC_BRP512T1},
560
    {"ecdhx25519", R_EC_X25519},
561
    {"ecdhx448", R_EC_X448}
562
};
563 564 565 566
# define EC_NUM       OSSL_NELEM(ecdh_choices)

static double ecdh_results[EC_NUM][1];  /* 1 op: derivation */
#endif /* OPENSSL_NO_EC */
567

568 569 570 571
#ifndef SIGALRM
# define COND(d) (count < (d))
# define COUNT(d) (d)
#else
572
# define COND(unused_cond) (run && count<0x7fffffff)
573
# define COUNT(d) (count)
574
#endif                          /* SIGALRM */
575

576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605
typedef struct loopargs_st {
    ASYNC_JOB *inprogress_job;
    ASYNC_WAIT_CTX *wait_ctx;
    unsigned char *buf;
    unsigned char *buf2;
    unsigned char *buf_malloc;
    unsigned char *buf2_malloc;
    unsigned char *key;
    unsigned int siglen;
#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[ECDSA_NUM];
    EVP_PKEY_CTX *ecdh_ctx[EC_NUM];
    unsigned char *secret_a;
    unsigned char *secret_b;
    size_t outlen[EC_NUM];
#endif
    EVP_CIPHER_CTX *ctx;
    HMAC_CTX *hctx;
    GCM128_CONTEXT *gcm_ctx;
} loopargs_t;
static int run_benchmark(int async_jobs, int (*loop_function) (void *),
                         loopargs_t * loopargs);

static unsigned int testnum;
606

F
FdaSilvaYY 已提交
607
/* Nb of iterations to do per algorithm and key-size */
608
static long c[ALGOR_NUM][OSSL_NELEM(lengths_list)];
609

610
#ifndef OPENSSL_NO_MD2
611 612
static int EVP_Digest_MD2_loop(void *args)
{
613
    loopargs_t *tempargs = *(loopargs_t **) args;
614
    unsigned char *buf = tempargs->buf;
615
    unsigned char md2[MD2_DIGEST_LENGTH];
616
    int count;
617

618
    for (count = 0; COND(c[D_MD2][testnum]); count++) {
619
        if (!EVP_Digest(buf, (size_t)lengths[testnum], md2, NULL, EVP_md2(),
620
                        NULL))
621 622
            return -1;
    }
623 624
    return count;
}
625
#endif
626

627
#ifndef OPENSSL_NO_MDC2
628 629
static int EVP_Digest_MDC2_loop(void *args)
{
630
    loopargs_t *tempargs = *(loopargs_t **) args;
631
    unsigned char *buf = tempargs->buf;
632
    unsigned char mdc2[MDC2_DIGEST_LENGTH];
633
    int count;
634

635
    for (count = 0; COND(c[D_MDC2][testnum]); count++) {
636
        if (!EVP_Digest(buf, (size_t)lengths[testnum], mdc2, NULL, EVP_mdc2(),
637
                        NULL))
638 639
            return -1;
    }
640 641
    return count;
}
642
#endif
643

644
#ifndef OPENSSL_NO_MD4
645 646
static int EVP_Digest_MD4_loop(void *args)
{
647
    loopargs_t *tempargs = *(loopargs_t **) args;
648
    unsigned char *buf = tempargs->buf;
649
    unsigned char md4[MD4_DIGEST_LENGTH];
650
    int count;
651

652
    for (count = 0; COND(c[D_MD4][testnum]); count++) {
653
        if (!EVP_Digest(buf, (size_t)lengths[testnum], md4, NULL, EVP_md4(),
654
                        NULL))
655 656
            return -1;
    }
657 658
    return count;
}
659
#endif
660

661
#ifndef OPENSSL_NO_MD5
662 663
static int MD5_loop(void *args)
{
664
    loopargs_t *tempargs = *(loopargs_t **) args;
665
    unsigned char *buf = tempargs->buf;
666
    unsigned char md5[MD5_DIGEST_LENGTH];
667 668 669 670 671 672 673 674
    int count;
    for (count = 0; COND(c[D_MD5][testnum]); count++)
        MD5(buf, lengths[testnum], md5);
    return count;
}

static int HMAC_loop(void *args)
{
675
    loopargs_t *tempargs = *(loopargs_t **) args;
676 677
    unsigned char *buf = tempargs->buf;
    HMAC_CTX *hctx = tempargs->hctx;
678
    unsigned char hmac[MD5_DIGEST_LENGTH];
679
    int count;
680

681 682 683
    for (count = 0; COND(c[D_HMAC][testnum]); count++) {
        HMAC_Init_ex(hctx, NULL, 0, NULL, NULL);
        HMAC_Update(hctx, buf, lengths[testnum]);
684
        HMAC_Final(hctx, hmac, NULL);
685 686 687
    }
    return count;
}
688
#endif
689 690 691

static int SHA1_loop(void *args)
{
692
    loopargs_t *tempargs = *(loopargs_t **) args;
693
    unsigned char *buf = tempargs->buf;
694
    unsigned char sha[SHA_DIGEST_LENGTH];
695 696 697 698 699 700 701 702
    int count;
    for (count = 0; COND(c[D_SHA1][testnum]); count++)
        SHA1(buf, lengths[testnum], sha);
    return count;
}

static int SHA256_loop(void *args)
{
703
    loopargs_t *tempargs = *(loopargs_t **) args;
704
    unsigned char *buf = tempargs->buf;
705
    unsigned char sha256[SHA256_DIGEST_LENGTH];
706 707 708 709 710 711 712 713
    int count;
    for (count = 0; COND(c[D_SHA256][testnum]); count++)
        SHA256(buf, lengths[testnum], sha256);
    return count;
}

static int SHA512_loop(void *args)
{
714
    loopargs_t *tempargs = *(loopargs_t **) args;
715
    unsigned char *buf = tempargs->buf;
716
    unsigned char sha512[SHA512_DIGEST_LENGTH];
717 718 719 720 721 722
    int count;
    for (count = 0; COND(c[D_SHA512][testnum]); count++)
        SHA512(buf, lengths[testnum], sha512);
    return count;
}

723
#ifndef OPENSSL_NO_WHIRLPOOL
724 725
static int WHIRLPOOL_loop(void *args)
{
726
    loopargs_t *tempargs = *(loopargs_t **) args;
727
    unsigned char *buf = tempargs->buf;
728
    unsigned char whirlpool[WHIRLPOOL_DIGEST_LENGTH];
729 730 731 732 733
    int count;
    for (count = 0; COND(c[D_WHIRLPOOL][testnum]); count++)
        WHIRLPOOL(buf, lengths[testnum], whirlpool);
    return count;
}
734
#endif
735

R
Rich Salz 已提交
736
#ifndef OPENSSL_NO_RMD160
737 738
static int EVP_Digest_RMD160_loop(void *args)
{
739
    loopargs_t *tempargs = *(loopargs_t **) args;
740
    unsigned char *buf = tempargs->buf;
741
    unsigned char rmd160[RIPEMD160_DIGEST_LENGTH];
742
    int count;
743
    for (count = 0; COND(c[D_RMD160][testnum]); count++) {
744
        if (!EVP_Digest(buf, (size_t)lengths[testnum], &(rmd160[0]),
745
                        NULL, EVP_ripemd160(), NULL))
746 747
            return -1;
    }
748 749
    return count;
}
750
#endif
751

752
#ifndef OPENSSL_NO_RC4
753 754 755
static RC4_KEY rc4_ks;
static int RC4_loop(void *args)
{
756
    loopargs_t *tempargs = *(loopargs_t **) args;
757 758 759
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_RC4][testnum]); count++)
760
        RC4(&rc4_ks, (size_t)lengths[testnum], buf, buf);
761 762 763 764 765 766 767 768 769 770 771
    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)
{
772
    loopargs_t *tempargs = *(loopargs_t **) args;
773 774 775 776
    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,
777
                         &DES_iv, DES_ENCRYPT);
778 779 780 781 782
    return count;
}

static int DES_ede3_cbc_encrypt_loop(void *args)
{
783
    loopargs_t *tempargs = *(loopargs_t **) args;
784 785 786 787
    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],
788
                             &sch, &sch2, &sch3, &DES_iv, DES_ENCRYPT);
789 790 791 792
    return count;
}
#endif

M
Matt Caswell 已提交
793
#define MAX_BLOCK_SIZE 128
794 795 796 797 798

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)
{
799
    loopargs_t *tempargs = *(loopargs_t **) args;
800 801 802 803
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_128_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
804
                        (size_t)lengths[testnum], &aes_ks1, iv, AES_ENCRYPT);
805 806 807 808 809
    return count;
}

static int AES_cbc_192_encrypt_loop(void *args)
{
810
    loopargs_t *tempargs = *(loopargs_t **) args;
811 812 813 814
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_192_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
815
                        (size_t)lengths[testnum], &aes_ks2, iv, AES_ENCRYPT);
816 817 818 819 820
    return count;
}

static int AES_cbc_256_encrypt_loop(void *args)
{
821
    loopargs_t *tempargs = *(loopargs_t **) args;
822 823 824 825
    unsigned char *buf = tempargs->buf;
    int count;
    for (count = 0; COND(c[D_CBC_256_AES][testnum]); count++)
        AES_cbc_encrypt(buf, buf,
826
                        (size_t)lengths[testnum], &aes_ks3, iv, AES_ENCRYPT);
827 828 829 830 831
    return count;
}

static int AES_ige_128_encrypt_loop(void *args)
{
832
    loopargs_t *tempargs = *(loopargs_t **) args;
833 834 835 836 837
    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,
838
                        (size_t)lengths[testnum], &aes_ks1, iv, AES_ENCRYPT);
839 840 841 842 843
    return count;
}

static int AES_ige_192_encrypt_loop(void *args)
{
844
    loopargs_t *tempargs = *(loopargs_t **) args;
845 846 847 848 849
    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,
850
                        (size_t)lengths[testnum], &aes_ks2, iv, AES_ENCRYPT);
851 852 853 854 855
    return count;
}

static int AES_ige_256_encrypt_loop(void *args)
{
856
    loopargs_t *tempargs = *(loopargs_t **) args;
857 858 859 860 861
    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,
862
                        (size_t)lengths[testnum], &aes_ks3, iv, AES_ENCRYPT);
863 864 865 866 867
    return count;
}

static int CRYPTO_gcm128_aad_loop(void *args)
{
868
    loopargs_t *tempargs = *(loopargs_t **) args;
869 870 871 872 873 874 875 876
    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;
}

877 878 879 880 881 882 883 884 885 886 887
static int RAND_bytes_loop(void *args)
{
    loopargs_t *tempargs = *(loopargs_t **) args;
    unsigned char *buf = tempargs->buf;
    int count;

    for (count = 0; COND(c[D_RAND][testnum]); count++)
        RAND_bytes(buf, lengths[testnum]);
    return count;
}

888
static long save_count = 0;
889 890 891
static int decrypt = 0;
static int EVP_Update_loop(void *args)
{
892
    loopargs_t *tempargs = *(loopargs_t **) args;
893 894
    unsigned char *buf = tempargs->buf;
    EVP_CIPHER_CTX *ctx = tempargs->ctx;
895
    int outl, count, rc;
896 897 898
#ifndef SIGALRM
    int nb_iter = save_count * 4 * lengths[0] / lengths[testnum];
#endif
899 900 901 902 903 904 905 906 907 908 909 910 911
    if (decrypt) {
        for (count = 0; COND(nb_iter); count++) {
            rc = EVP_DecryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
            if (rc != 1)
                EVP_CipherInit_ex(ctx, NULL, NULL, NULL, iv, -1);
        }
    } else {
        for (count = 0; COND(nb_iter); count++) {
            rc = EVP_EncryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
            if (rc != 1)
                EVP_CipherInit_ex(ctx, NULL, NULL, NULL, iv, -1);
        }
    }
912 913 914 915 916 917
    if (decrypt)
        EVP_DecryptFinal_ex(ctx, buf, &outl);
    else
        EVP_EncryptFinal_ex(ctx, buf, &outl);
    return count;
}
918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950
/*
 * CCM does not support streaming. For the purpose of performance measurement,
 * each message is encrypted using the same (key,iv)-pair. Do not use this
 * code in your application.
 */
static int EVP_Update_loop_ccm(void *args)
{
    loopargs_t *tempargs = *(loopargs_t **) args;
    unsigned char *buf = tempargs->buf;
    EVP_CIPHER_CTX *ctx = tempargs->ctx;
    int outl, count;
    unsigned char tag[12];
#ifndef SIGALRM
    int nb_iter = save_count * 4 * lengths[0] / lengths[testnum];
#endif
    if (decrypt) {
        for (count = 0; COND(nb_iter); count++) {
            EVP_DecryptInit_ex(ctx, NULL, NULL, NULL, iv);
            EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_AEAD_SET_TAG, sizeof(tag), tag);
            EVP_DecryptUpdate(ctx, NULL, &outl, NULL, lengths[testnum]);
            EVP_DecryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
            EVP_DecryptFinal_ex(ctx, buf, &outl);
        }
    } else {
        for (count = 0; COND(nb_iter); count++) {
            EVP_EncryptInit_ex(ctx, NULL, NULL, NULL, iv);
            EVP_EncryptUpdate(ctx, NULL, &outl, NULL, lengths[testnum]);
            EVP_EncryptUpdate(ctx, buf, &outl, buf, lengths[testnum]);
            EVP_EncryptFinal_ex(ctx, buf, &outl);
        }
    }
    return count;
}
951 952 953 954

static const EVP_MD *evp_md = NULL;
static int EVP_Digest_loop(void *args)
{
955
    loopargs_t *tempargs = *(loopargs_t **) args;
956 957 958
    unsigned char *buf = tempargs->buf;
    unsigned char md[EVP_MAX_MD_SIZE];
    int count;
959 960 961 962 963 964
#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))
965 966
            return -1;
    }
967 968 969 970
    return count;
}

#ifndef OPENSSL_NO_RSA
F
FdaSilvaYY 已提交
971
static long rsa_c[RSA_NUM][2];  /* # RSA iteration test */
972 973 974

static int RSA_sign_loop(void *args)
{
975
    loopargs_t *tempargs = *(loopargs_t **) args;
976 977
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
F
FdaSilvaYY 已提交
978
    unsigned int *rsa_num = &tempargs->siglen;
979
    RSA **rsa_key = tempargs->rsa_key;
980 981
    int ret, count;
    for (count = 0; COND(rsa_c[testnum][0]); count++) {
982
        ret = RSA_sign(NID_md5_sha1, buf, 36, buf2, rsa_num, rsa_key[testnum]);
983 984 985 986 987 988 989 990 991 992 993 994
        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)
{
995
    loopargs_t *tempargs = *(loopargs_t **) args;
996 997
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
F
FdaSilvaYY 已提交
998
    unsigned int rsa_num = tempargs->siglen;
999
    RSA **rsa_key = tempargs->rsa_key;
1000 1001
    int ret, count;
    for (count = 0; COND(rsa_c[testnum][1]); count++) {
1002 1003
        ret =
            RSA_verify(NID_md5_sha1, buf, 36, buf2, rsa_num, rsa_key[testnum]);
1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018
        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)
{
1019
    loopargs_t *tempargs = *(loopargs_t **) args;
1020 1021
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
1022
    DSA **dsa_key = tempargs->dsa_key;
F
FdaSilvaYY 已提交
1023
    unsigned int *siglen = &tempargs->siglen;
1024 1025 1026 1027 1028 1029
    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);
1030
            count = -1;
1031 1032 1033 1034 1035 1036 1037 1038
            break;
        }
    }
    return count;
}

static int DSA_verify_loop(void *args)
{
1039
    loopargs_t *tempargs = *(loopargs_t **) args;
1040 1041
    unsigned char *buf = tempargs->buf;
    unsigned char *buf2 = tempargs->buf2;
1042
    DSA **dsa_key = tempargs->dsa_key;
F
FdaSilvaYY 已提交
1043
    unsigned int siglen = tempargs->siglen;
1044 1045 1046 1047 1048 1049
    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);
1050
            count = -1;
1051 1052 1053 1054 1055 1056 1057 1058
            break;
        }
    }
    return count;
}
#endif

#ifndef OPENSSL_NO_EC
1059
static long ecdsa_c[ECDSA_NUM][2];
1060 1061
static int ECDSA_sign_loop(void *args)
{
1062
    loopargs_t *tempargs = *(loopargs_t **) args;
1063
    unsigned char *buf = tempargs->buf;
1064 1065
    EC_KEY **ecdsa = tempargs->ecdsa;
    unsigned char *ecdsasig = tempargs->buf2;
F
FdaSilvaYY 已提交
1066
    unsigned int *ecdsasiglen = &tempargs->siglen;
1067 1068
    int ret, count;
    for (count = 0; COND(ecdsa_c[testnum][0]); count++) {
1069
        ret = ECDSA_sign(0, buf, 20, ecdsasig, ecdsasiglen, ecdsa[testnum]);
1070 1071 1072
        if (ret == 0) {
            BIO_printf(bio_err, "ECDSA sign failure\n");
            ERR_print_errors(bio_err);
1073
            count = -1;
1074 1075 1076 1077 1078 1079 1080 1081
            break;
        }
    }
    return count;
}

static int ECDSA_verify_loop(void *args)
{
1082
    loopargs_t *tempargs = *(loopargs_t **) args;
1083
    unsigned char *buf = tempargs->buf;
1084 1085
    EC_KEY **ecdsa = tempargs->ecdsa;
    unsigned char *ecdsasig = tempargs->buf2;
F
FdaSilvaYY 已提交
1086
    unsigned int ecdsasiglen = tempargs->siglen;
1087 1088
    int ret, count;
    for (count = 0; COND(ecdsa_c[testnum][1]); count++) {
1089
        ret = ECDSA_verify(0, buf, 20, ecdsasig, ecdsasiglen, ecdsa[testnum]);
1090 1091 1092
        if (ret != 1) {
            BIO_printf(bio_err, "ECDSA verify failure\n");
            ERR_print_errors(bio_err);
1093
            count = -1;
1094 1095 1096 1097 1098 1099
            break;
        }
    }
    return count;
}

1100
/* ******************************************************************** */
1101 1102
static long ecdh_c[EC_NUM][1];

1103 1104 1105 1106 1107
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;
1108
    int count;
1109
    size_t *outlen = &(tempargs->outlen[testnum]);
F
FdaSilvaYY 已提交
1110

1111
    for (count = 0; COND(ecdh_c[testnum][0]); count++)
1112 1113
        EVP_PKEY_derive(ctx, derived_secret, outlen);

1114 1115
    return count;
}
1116

F
FdaSilvaYY 已提交
1117
#endif                          /* OPENSSL_NO_EC */
1118

F
FdaSilvaYY 已提交
1119
static int run_benchmark(int async_jobs,
1120
                         int (*loop_function) (void *), loopargs_t * loopargs)
1121 1122 1123 1124
{
    int job_op_count = 0;
    int total_op_count = 0;
    int num_inprogress = 0;
F
FdaSilvaYY 已提交
1125
    int error = 0, i = 0, ret = 0;
1126 1127
    OSSL_ASYNC_FD job_fd = 0;
    size_t num_job_fds = 0;
1128 1129 1130

    run = 1;

1131
    if (async_jobs == 0) {
1132
        return loop_function((void *)&loopargs);
1133 1134 1135
    }

    for (i = 0; i < async_jobs && !error; i++) {
1136 1137 1138
        loopargs_t *looparg_item = loopargs + i;

        /* Copy pointer content (looparg_t item address) into async context */
F
FdaSilvaYY 已提交
1139 1140
        ret = ASYNC_start_job(&loopargs[i].inprogress_job, loopargs[i].wait_ctx,
                              &job_op_count, loop_function,
1141
                              (void *)&looparg_item, sizeof(looparg_item));
F
FdaSilvaYY 已提交
1142
        switch (ret) {
F
FdaSilvaYY 已提交
1143 1144 1145 1146 1147
        case ASYNC_PAUSE:
            ++num_inprogress;
            break;
        case ASYNC_FINISH:
            if (job_op_count == -1) {
1148
                error = 1;
F
FdaSilvaYY 已提交
1149 1150 1151 1152 1153 1154 1155 1156 1157 1158
            } 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;
1159 1160 1161 1162
        }
    }

    while (num_inprogress > 0) {
1163
#if defined(OPENSSL_SYS_WINDOWS)
1164
        DWORD avail = 0;
1165
#elif defined(OPENSSL_SYS_UNIX)
1166
        int select_result = 0;
1167 1168
        OSSL_ASYNC_FD max_fd = 0;
        fd_set waitfdset;
1169

1170
        FD_ZERO(&waitfdset);
1171

1172 1173 1174
        for (i = 0; i < async_jobs && num_inprogress > 0; i++) {
            if (loopargs[i].inprogress_job == NULL)
                continue;
1175

1176 1177 1178
            if (!ASYNC_WAIT_CTX_get_all_fds
                (loopargs[i].wait_ctx, NULL, &num_job_fds)
                || num_job_fds > 1) {
1179 1180 1181 1182
                BIO_printf(bio_err, "Too many fds in ASYNC_WAIT_CTX\n");
                ERR_print_errors(bio_err);
                error = 1;
                break;
1183
            }
1184 1185
            ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, &job_fd,
                                       &num_job_fds);
1186 1187 1188
            FD_SET(job_fd, &waitfdset);
            if (job_fd > max_fd)
                max_fd = job_fd;
1189 1190
        }

B
Ben Laurie 已提交
1191
        if (max_fd >= (OSSL_ASYNC_FD)FD_SETSIZE) {
1192
            BIO_printf(bio_err,
1193 1194 1195
                       "Error: max_fd (%d) must be smaller than FD_SETSIZE (%d). "
                       "Decrease the value of async_jobs\n",
                       max_fd, FD_SETSIZE);
1196 1197 1198 1199 1200
            ERR_print_errors(bio_err);
            error = 1;
            break;
        }

1201
        select_result = select(max_fd + 1, &waitfdset, NULL, NULL, NULL);
1202 1203 1204 1205
        if (select_result == -1 && errno == EINTR)
            continue;

        if (select_result == -1) {
1206 1207 1208 1209
            BIO_printf(bio_err, "Failure in the select\n");
            ERR_print_errors(bio_err);
            error = 1;
            break;
1210 1211 1212 1213 1214 1215 1216 1217 1218 1219
        }

        if (select_result == 0)
            continue;
#endif

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

1220 1221 1222
            if (!ASYNC_WAIT_CTX_get_all_fds
                (loopargs[i].wait_ctx, NULL, &num_job_fds)
                || num_job_fds > 1) {
1223 1224 1225 1226 1227
                BIO_printf(bio_err, "Too many fds in ASYNC_WAIT_CTX\n");
                ERR_print_errors(bio_err);
                error = 1;
                break;
            }
1228 1229
            ASYNC_WAIT_CTX_get_all_fds(loopargs[i].wait_ctx, &job_fd,
                                       &num_job_fds);
1230

1231
#if defined(OPENSSL_SYS_UNIX)
1232
            if (num_job_fds == 1 && !FD_ISSET(job_fd, &waitfdset))
1233
                continue;
1234
#elif defined(OPENSSL_SYS_WINDOWS)
F
FdaSilvaYY 已提交
1235
            if (num_job_fds == 1
F
FdaSilvaYY 已提交
1236
                && !PeekNamedPipe(job_fd, NULL, 0, NULL, &avail, NULL)
F
FdaSilvaYY 已提交
1237
                && avail > 0)
1238 1239 1240
                continue;
#endif

1241
            ret = ASYNC_start_job(&loopargs[i].inprogress_job,
1242 1243 1244
                                  loopargs[i].wait_ctx, &job_op_count,
                                  loop_function, (void *)(loopargs + i),
                                  sizeof(loopargs_t));
F
FdaSilvaYY 已提交
1245
            switch (ret) {
F
FdaSilvaYY 已提交
1246 1247 1248 1249
            case ASYNC_PAUSE:
                break;
            case ASYNC_FINISH:
                if (job_op_count == -1) {
1250
                    error = 1;
F
FdaSilvaYY 已提交
1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264
                } 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;
1265 1266 1267 1268 1269 1270 1271 1272 1273
            }
        }
    }

    return error ? -1 : total_op_count;
}

int speed_main(int argc, char **argv)
{
1274
    ENGINE *e = NULL;
1275
    int (*loopfunc)(void *args);
1276
    loopargs_t *loopargs = NULL;
1277
    const char *prog;
1278
    const char *engine_id = NULL;
1279 1280 1281
    const EVP_CIPHER *evp_cipher = NULL;
    double d = 0.0;
    OPTION_CHOICE o;
1282
    int async_init = 0, multiblock = 0, pr_header = 0;
1283
    int doit[ALGOR_NUM] = { 0 };
1284
    int ret = 1, misalign = 0, lengths_single = 0;
1285
    long count = 0;
1286 1287
    unsigned int size_num = OSSL_NELEM(lengths_list);
    unsigned int i, k, loop, loopargs_len = 0, async_jobs = 0;
1288
    int keylen;
P
Patrick Steuer 已提交
1289
    int buflen;
1290 1291 1292
#ifndef NO_FORK
    int multi = 0;
#endif
1293 1294
#if !defined(OPENSSL_NO_RSA) || !defined(OPENSSL_NO_DSA) \
    || !defined(OPENSSL_NO_EC)
1295
    long rsa_count = 1;
1296
#endif
1297 1298
    openssl_speed_sec_t seconds = { SECONDS, RSA_SECONDS, DSA_SECONDS,
                                    ECDSA_SECONDS, ECDH_SECONDS };
1299 1300

    /* What follows are the buffers and key material. */
1301
#ifndef OPENSSL_NO_RC5
1302
    RC5_32_KEY rc5_ks;
1303 1304
#endif
#ifndef OPENSSL_NO_RC2
1305
    RC2_KEY rc2_ks;
1306 1307
#endif
#ifndef OPENSSL_NO_IDEA
1308
    IDEA_KEY_SCHEDULE idea_ks;
1309 1310
#endif
#ifndef OPENSSL_NO_SEED
1311
    SEED_KEY_SCHEDULE seed_ks;
1312 1313
#endif
#ifndef OPENSSL_NO_BF
1314
    BF_KEY bf_ks;
1315 1316
#endif
#ifndef OPENSSL_NO_CAST
1317
    CAST_KEY cast_ks;
1318
#endif
1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
    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
    };
1334
#ifndef OPENSSL_NO_CAMELLIA
1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345
    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
    };
1346
    CAMELLIA_KEY camellia_ks1, camellia_ks2, camellia_ks3;
1347 1348
#endif
#ifndef OPENSSL_NO_DES
1349 1350 1351 1352 1353 1354 1355 1356 1357
    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
    };
1358 1359
#endif
#ifndef OPENSSL_NO_RSA
1360
    static const unsigned int rsa_bits[RSA_NUM] = {
1361 1362
        512, 1024, 2048, 3072, 4096, 7680, 15360
    };
1363
    static const unsigned char *rsa_data[RSA_NUM] = {
1364 1365
        test512, test1024, test2048, test3072, test4096, test7680, test15360
    };
1366
    static const int rsa_data_length[RSA_NUM] = {
1367 1368 1369 1370 1371
        sizeof(test512), sizeof(test1024),
        sizeof(test2048), sizeof(test3072),
        sizeof(test4096), sizeof(test7680),
        sizeof(test15360)
    };
1372
    int rsa_doit[RSA_NUM] = { 0 };
P
Paul Yang 已提交
1373
    int primes = RSA_DEFAULT_PRIME_NUM;
1374 1375
#endif
#ifndef OPENSSL_NO_DSA
1376
    static const unsigned int dsa_bits[DSA_NUM] = { 512, 1024, 2048 };
1377
    int dsa_doit[DSA_NUM] = { 0 };
1378 1379
#endif
#ifndef OPENSSL_NO_EC
1380 1381 1382
    /*
     * 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
1383
     * the following arrays and increase the |ecdh_choices| list accordingly.
1384
     */
1385 1386 1387 1388 1389
    static const struct {
        const char *name;
        unsigned int nid;
        unsigned int bits;
    } test_curves[] = {
1390
        /* Prime Curves */
1391 1392 1393 1394 1395 1396
        {"secp160r1", NID_secp160r1, 160},
        {"nistp192", NID_X9_62_prime192v1, 192},
        {"nistp224", NID_secp224r1, 224},
        {"nistp256", NID_X9_62_prime256v1, 256},
        {"nistp384", NID_secp384r1, 384}, 
        {"nistp521", NID_secp521r1, 521},
1397
        /* Binary Curves */
1398 1399 1400 1401 1402 1403 1404 1405 1406 1407
        {"nistk163", NID_sect163k1, 163},
        {"nistk233", NID_sect233k1, 233}, 
        {"nistk283", NID_sect283k1, 283},
        {"nistk409", NID_sect409k1, 409},
        {"nistk571", NID_sect571k1, 571},
        {"nistb163", NID_sect163r2, 163},
        {"nistb233", NID_sect233r1, 233},
        {"nistb283", NID_sect283r1, 283},
        {"nistb409", NID_sect409r1, 409},
        {"nistb571", NID_sect571r1, 571},
1408 1409 1410 1411 1412 1413
        {"brainpoolP256r1", NID_brainpoolP256r1, 256},
        {"brainpoolP256t1", NID_brainpoolP256t1, 256},
        {"brainpoolP384r1", NID_brainpoolP384r1, 384},
        {"brainpoolP384t1", NID_brainpoolP384t1, 384},
        {"brainpoolP512r1", NID_brainpoolP512r1, 512},
        {"brainpoolP512t1", NID_brainpoolP512t1, 512},
1414
        /* Other and ECDH only ones */
1415 1416
        {"X25519", NID_X25519, 253},
        {"X448", NID_X448, 448}
1417
    };
1418
    int ecdsa_doit[ECDSA_NUM] = { 0 };
1419
    int ecdh_doit[EC_NUM] = { 0 };
1420
    OPENSSL_assert(OSSL_NELEM(test_curves) >= EC_NUM);
F
FdaSilvaYY 已提交
1421
#endif                          /* ndef OPENSSL_NO_EC */
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435

    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:
1436
            usertime = 0;
1437 1438
            break;
        case OPT_EVP:
1439
            evp_md = NULL;
1440 1441 1442 1443 1444
            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
1445
                           "%s: %s is an unknown cipher or digest\n",
1446
                           prog, opt_arg());
1447 1448 1449
                goto end;
            }
            doit[D_EVP] = 1;
1450 1451
            break;
        case OPT_DECRYPT:
1452
            decrypt = 1;
1453 1454
            break;
        case OPT_ENGINE:
1455 1456 1457 1458 1459 1460
            /*
             * 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();
1461 1462
            break;
        case OPT_MULTI:
1463
#ifndef NO_FORK
1464
            multi = atoi(opt_arg());
1465 1466 1467
#endif
            break;
        case OPT_ASYNCJOBS:
1468
#ifndef OPENSSL_NO_ASYNC
1469
            async_jobs = atoi(opt_arg());
1470 1471 1472 1473 1474 1475
            if (!ASYNC_is_capable()) {
                BIO_printf(bio_err,
                           "%s: async_jobs specified but async not supported\n",
                           prog);
                goto opterr;
            }
1476
            if (async_jobs > 99999) {
1477
                BIO_printf(bio_err, "%s: too many async_jobs\n", prog);
1478 1479
                goto opterr;
            }
1480
#endif
1481
            break;
1482 1483
        case OPT_MISALIGN:
            if (!opt_int(opt_arg(), &misalign))
1484
                goto end;
1485
            if (misalign > MISALIGN) {
1486
                BIO_printf(bio_err,
1487 1488
                           "%s: Maximum offset is %d\n", prog, MISALIGN);
                goto opterr;
1489
            }
1490 1491 1492 1493 1494 1495
            break;
        case OPT_MR:
            mr = 1;
            break;
        case OPT_MB:
            multiblock = 1;
F
FdaSilvaYY 已提交
1496 1497 1498 1499 1500 1501
#ifdef OPENSSL_NO_MULTIBLOCK
            BIO_printf(bio_err,
                       "%s: -mb specified but multi-block support is disabled\n",
                       prog);
            goto end;
#endif
1502
            break;
R
Rich Salz 已提交
1503 1504 1505 1506
        case OPT_R_CASES:
            if (!opt_rand(o))
                goto end;
            break;
P
Paul Yang 已提交
1507 1508 1509 1510
        case OPT_PRIMES:
            if (!opt_int(opt_arg(), &primes))
                goto end;
            break;
1511 1512 1513 1514 1515 1516 1517 1518 1519
        case OPT_SECONDS:
            seconds.sym = seconds.rsa = seconds.dsa = seconds.ecdsa
                        = seconds.ecdh = atoi(opt_arg());
            break;
        case OPT_BYTES:
            lengths_single = atoi(opt_arg());
            lengths = &lengths_single;
            size_num = 1;
            break;
1520 1521 1522 1523 1524 1525
        }
    }
    argc = opt_num_rest();
    argv = opt_rest();

    /* Remaining arguments are algorithms. */
1526
    for (; *argv; argv++) {
1527 1528 1529 1530
        if (found(*argv, doit_choices, &i)) {
            doit[i] = 1;
            continue;
        }
1531
#ifndef OPENSSL_NO_DES
1532 1533 1534 1535
        if (strcmp(*argv, "des") == 0) {
            doit[D_CBC_DES] = doit[D_EDE3_DES] = 1;
            continue;
        }
1536
#endif
1537 1538 1539 1540
        if (strcmp(*argv, "sha") == 0) {
            doit[D_SHA1] = doit[D_SHA256] = doit[D_SHA512] = 1;
            continue;
        }
1541
#ifndef OPENSSL_NO_RSA
1542
        if (strcmp(*argv, "openssl") == 0)
1543 1544
            continue;
        if (strcmp(*argv, "rsa") == 0) {
1545 1546
            for (loop = 0; loop < OSSL_NELEM(rsa_doit); loop++)
                rsa_doit[loop] = 1;
1547 1548 1549 1550 1551 1552
            continue;
        }
        if (found(*argv, rsa_choices, &i)) {
            rsa_doit[i] = 1;
            continue;
        }
1553
#endif
1554 1555 1556 1557 1558 1559 1560 1561 1562 1563
#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;
        }
1564
#endif
1565
        if (strcmp(*argv, "aes") == 0) {
1566
            doit[D_CBC_128_AES] = doit[D_CBC_192_AES] = doit[D_CBC_256_AES] = 1;
1567 1568
            continue;
        }
1569
#ifndef OPENSSL_NO_CAMELLIA
1570
        if (strcmp(*argv, "camellia") == 0) {
1571
            doit[D_CBC_128_CML] = doit[D_CBC_192_CML] = doit[D_CBC_256_CML] = 1;
1572 1573
            continue;
        }
1574
#endif
1575
#ifndef OPENSSL_NO_EC
1576
        if (strcmp(*argv, "ecdsa") == 0) {
1577 1578
            for (loop = 0; loop < OSSL_NELEM(ecdsa_doit); loop++)
                ecdsa_doit[loop] = 1;
1579 1580 1581 1582 1583 1584 1585
            continue;
        }
        if (found(*argv, ecdsa_choices, &i)) {
            ecdsa_doit[i] = 2;
            continue;
        }
        if (strcmp(*argv, "ecdh") == 0) {
1586 1587
            for (loop = 0; loop < OSSL_NELEM(ecdh_doit); loop++)
                ecdh_doit[loop] = 1;
1588 1589 1590 1591 1592
            continue;
        }
        if (found(*argv, ecdh_choices, &i)) {
            ecdh_doit[i] = 2;
            continue;
1593
        }
1594 1595 1596
#endif
        BIO_printf(bio_err, "%s: Unknown algorithm %s\n", prog, *argv);
        goto end;
1597
    }
1598

1599 1600
    /* Initialize the job pool if async mode is enabled */
    if (async_jobs > 0) {
1601 1602
        async_init = ASYNC_init_thread(async_jobs, async_jobs);
        if (!async_init) {
1603 1604 1605 1606 1607 1608
            BIO_printf(bio_err, "Error creating the ASYNC job pool\n");
            goto end;
        }
    }

    loopargs_len = (async_jobs == 0 ? 1 : async_jobs);
1609 1610
    loopargs =
        app_malloc(loopargs_len * sizeof(loopargs_t), "array of loopargs");
1611 1612
    memset(loopargs, 0, loopargs_len * sizeof(loopargs_t));

1613
    for (i = 0; i < loopargs_len; i++) {
1614 1615 1616 1617 1618 1619 1620 1621
        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;
            }
        }

P
Patrick Steuer 已提交
1622 1623 1624 1625 1626 1627
        buflen = lengths[size_num - 1] + MAX_MISALIGNMENT + 1;
        loopargs[i].buf_malloc = app_malloc(buflen, "input buffer");
        loopargs[i].buf2_malloc = app_malloc(buflen, "input buffer");
        memset(loopargs[i].buf_malloc, 0, buflen);
        memset(loopargs[i].buf2_malloc, 0, buflen);

1628 1629 1630
        /* 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;
1631 1632 1633 1634
#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
1635 1636
    }

1637
#ifndef NO_FORK
1638
    if (multi && do_multi(multi, size_num))
1639
        goto show_res;
1640
#endif
1641

1642
    /* Initialize the engine after the fork */
1643
    e = setup_engine(engine_id, 0);
1644

1645
    /* No parameters; turn on everything. */
1646
    if ((argc == 0) && !doit[D_EVP]) {
1647
        for (i = 0; i < ALGOR_NUM; i++)
1648 1649
            if (i != D_EVP)
                doit[i] = 1;
F
FdaSilvaYY 已提交
1650
#ifndef OPENSSL_NO_RSA
1651 1652
        for (i = 0; i < RSA_NUM; i++)
            rsa_doit[i] = 1;
F
FdaSilvaYY 已提交
1653
#endif
M
Matt Caswell 已提交
1654
#ifndef OPENSSL_NO_DSA
1655 1656
        for (i = 0; i < DSA_NUM; i++)
            dsa_doit[i] = 1;
M
Matt Caswell 已提交
1657
#endif
1658
#ifndef OPENSSL_NO_EC
1659 1660 1661 1662
        for (loop = 0; loop < OSSL_NELEM(ecdsa_doit); loop++)
            ecdsa_doit[loop] = 1;
        for (loop = 0; loop < OSSL_NELEM(ecdh_doit); loop++)
            ecdh_doit[loop] = 1;
1663
#endif
1664 1665 1666 1667 1668 1669 1670 1671 1672 1673
    }
    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");

1674
#ifndef OPENSSL_NO_RSA
1675
    for (i = 0; i < loopargs_len; i++) {
P
Paul Yang 已提交
1676 1677 1678 1679
        if (primes > RSA_DEFAULT_PRIME_NUM) {
            /* for multi-prime RSA, skip this */
            break;
        }
1680 1681 1682 1683
        for (k = 0; k < RSA_NUM; k++) {
            const unsigned char *p;

            p = rsa_data[k];
1684 1685
            loopargs[i].rsa_key[k] =
                d2i_RSAPrivateKey(NULL, &p, rsa_data_length[k]);
1686
            if (loopargs[i].rsa_key[k] == NULL) {
1687 1688
                BIO_printf(bio_err,
                           "internal error loading RSA key number %d\n", k);
1689 1690
                goto end;
            }
1691
        }
1692 1693 1694
    }
#endif
#ifndef OPENSSL_NO_DSA
1695
    for (i = 0; i < loopargs_len; i++) {
P
Paul Yang 已提交
1696 1697 1698
        loopargs[i].dsa_key[0] = get_dsa(512);
        loopargs[i].dsa_key[1] = get_dsa(1024);
        loopargs[i].dsa_key[2] = get_dsa(2048);
1699
    }
1700 1701
#endif
#ifndef OPENSSL_NO_DES
1702 1703 1704
    DES_set_key_unchecked(&key, &sch);
    DES_set_key_unchecked(&key2, &sch2);
    DES_set_key_unchecked(&key3, &sch3);
1705
#endif
1706 1707 1708
    AES_set_encrypt_key(key16, 128, &aes_ks1);
    AES_set_encrypt_key(key24, 192, &aes_ks2);
    AES_set_encrypt_key(key32, 256, &aes_ks3);
1709
#ifndef OPENSSL_NO_CAMELLIA
1710 1711 1712
    Camellia_set_key(key16, 128, &camellia_ks1);
    Camellia_set_key(ckey24, 192, &camellia_ks2);
    Camellia_set_key(ckey32, 256, &camellia_ks3);
1713 1714
#endif
#ifndef OPENSSL_NO_IDEA
R
Rich Salz 已提交
1715
    IDEA_set_encrypt_key(key16, &idea_ks);
1716 1717
#endif
#ifndef OPENSSL_NO_SEED
1718
    SEED_set_key(key16, &seed_ks);
1719 1720
#endif
#ifndef OPENSSL_NO_RC4
1721
    RC4_set_key(&rc4_ks, 16, key16);
1722 1723
#endif
#ifndef OPENSSL_NO_RC2
1724
    RC2_set_key(&rc2_ks, 16, key16, 128);
1725 1726
#endif
#ifndef OPENSSL_NO_RC5
1727
    RC5_32_set_key(&rc5_ks, 16, key16, 12);
1728 1729
#endif
#ifndef OPENSSL_NO_BF
1730
    BF_set_key(&bf_ks, 16, key16);
1731 1732
#endif
#ifndef OPENSSL_NO_CAST
1733
    CAST_set_key(&cast_ks, 16, key16);
1734 1735 1736
#endif
#ifndef SIGALRM
# ifndef OPENSSL_NO_DES
1737 1738 1739 1740 1741 1742 1743
    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--)
1744 1745
            DES_ecb_encrypt((DES_cblock *)loopargs[0].buf,
                            (DES_cblock *)loopargs[0].buf, &sch, DES_ENCRYPT);
1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777
        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;
1778
    c[D_RAND][0] = count;
1779

1780
    for (i = 1; i < size_num; i++) {
1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795
        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;
1796
        c[D_GHASH][i] = c[D_GHASH][0] * 4 * l0 / l1;
1797
        c[D_RAND][i] = c[D_RAND][0] * 4 * l0 / l1;
1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819

        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
1820

1821
#  ifndef OPENSSL_NO_RSA
1822 1823 1824 1825 1826
    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
1827
        if (rsa_doit[i] <= 1 && rsa_c[i][0] == 0)
1828 1829 1830
            rsa_doit[i] = 0;
        else {
            if (rsa_c[i][0] == 0) {
1831
                rsa_c[i][0] = 1; /* Set minimum iteration Nb to 1. */
1832 1833 1834 1835
                rsa_c[i][1] = 20;
            }
        }
    }
1836
#  endif
1837

1838
#  ifndef OPENSSL_NO_DSA
1839 1840 1841 1842 1843
    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
1844
        if (dsa_doit[i] <= 1 && dsa_c[i][0] == 0)
1845 1846
            dsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1847
            if (dsa_c[i][0] == 0) {
1848
                dsa_c[i][0] = 1; /* Set minimum iteration Nb to 1. */
1849 1850 1851 1852
                dsa_c[i][1] = 1;
            }
        }
    }
1853
#  endif
1854

1855
#  ifndef OPENSSL_NO_EC
1856 1857 1858 1859 1860
    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
1861
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1862 1863
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1864
            if (ecdsa_c[i][0] == 0) {
1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
                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
1875
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1876 1877
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1878
            if (ecdsa_c[i][0] == 0) {
1879 1880 1881 1882 1883 1884 1885 1886 1887 1888
                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
1889
        if (ecdsa_doit[i] <= 1 && ecdsa_c[i][0] == 0)
1890 1891
            ecdsa_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1892
            if (ecdsa_c[i][0] == 0) {
1893 1894 1895 1896 1897
                ecdsa_c[i][0] = 1;
                ecdsa_c[i][1] = 1;
            }
        }
    }
1898

1899 1900 1901
    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
1902
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1903 1904
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1905
            if (ecdh_c[i][0] == 0) {
1906 1907 1908 1909 1910 1911 1912
                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
1913
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1914 1915
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1916
            if (ecdh_c[i][0] == 0) {
1917 1918 1919 1920 1921 1922 1923
                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
1924
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
1925 1926
            ecdh_doit[i] = 0;
        else {
F
FdaSilvaYY 已提交
1927
            if (ecdh_c[i][0] == 0) {
1928 1929 1930 1931
                ecdh_c[i][0] = 1;
            }
        }
    }
1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957
    /* repeated code good to factorize */
    ecdh_c[R_EC_BRP256R1][0] = count / 1000;
    for (i = R_EC_BRP384R1; i <= R_EC_BRP512R1; i += 2) {
        ecdh_c[i][0] = ecdh_c[i - 2][0] / 2;
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
            ecdh_doit[i] = 0;
        else {
            if (ecdh_c[i][0] == 0) {
                ecdh_c[i][0] = 1;
            }
        }
    }
    ecdh_c[R_EC_BRP256T1][0] = count / 1000;
    for (i = R_EC_BRP384T1; i <= R_EC_BRP512T1; i += 2) {
        ecdh_c[i][0] = ecdh_c[i - 2][0] / 2;
        if (ecdh_doit[i] <= 1 && ecdh_c[i][0] == 0)
            ecdh_doit[i] = 0;
        else {
            if (ecdh_c[i][0] == 0) {
                ecdh_c[i][0] = 1;
            }
        }
    }
    /* default iteration count for the last two EC Curves */
    ecdh_c[R_EC_X25519][0] = count / 1800;
    ecdh_c[R_EC_X448][0] = count / 7200;
1958
#  endif
B
Bodo Möller 已提交
1959

1960
# else
1961 1962
/* not worth fixing */
#  error "You cannot disable DES on systems without SIGALRM."
1963
# endif                         /* OPENSSL_NO_DES */
1964 1965
#else
# ifndef _WIN32
1966
    signal(SIGALRM, sig_done);
1967
# endif
1968
#endif                          /* SIGALRM */
1969

1970
#ifndef OPENSSL_NO_MD2
1971
    if (doit[D_MD2]) {
1972 1973 1974
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_MD2], c[D_MD2][testnum], lengths[testnum],
                          seconds.sym);
1975
            Time_F(START);
1976
            count = run_benchmark(async_jobs, EVP_Digest_MD2_loop, loopargs);
1977
            d = Time_F(STOP);
1978
            print_result(D_MD2, testnum, count, d);
1979 1980
        }
    }
1981 1982
#endif
#ifndef OPENSSL_NO_MDC2
1983
    if (doit[D_MDC2]) {
1984 1985 1986
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_MDC2], c[D_MDC2][testnum], lengths[testnum],
                          seconds.sym);
1987
            Time_F(START);
1988
            count = run_benchmark(async_jobs, EVP_Digest_MDC2_loop, loopargs);
1989
            d = Time_F(STOP);
1990
            print_result(D_MDC2, testnum, count, d);
1991 1992
        }
    }
1993
#endif
1994

1995
#ifndef OPENSSL_NO_MD4
1996
    if (doit[D_MD4]) {
1997 1998 1999
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_MD4], c[D_MD4][testnum], lengths[testnum],
                          seconds.sym);
2000
            Time_F(START);
2001
            count = run_benchmark(async_jobs, EVP_Digest_MD4_loop, loopargs);
2002
            d = Time_F(STOP);
2003
            print_result(D_MD4, testnum, count, d);
2004 2005
        }
    }
2006
#endif
2007

2008
#ifndef OPENSSL_NO_MD5
2009
    if (doit[D_MD5]) {
2010 2011 2012
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_MD5], c[D_MD5][testnum], lengths[testnum],
                          seconds.sym);
2013
            Time_F(START);
2014
            count = run_benchmark(async_jobs, MD5_loop, loopargs);
2015
            d = Time_F(STOP);
2016
            print_result(D_MD5, testnum, count, d);
2017 2018
        }
    }
2019

2020
    if (doit[D_HMAC]) {
F
FdaSilvaYY 已提交
2021
        static const char hmac_key[] = "This is a key...";
2022 2023
        int len = strlen(hmac_key);

2024
        for (i = 0; i < loopargs_len; i++) {
2025 2026 2027 2028 2029
            loopargs[i].hctx = HMAC_CTX_new();
            if (loopargs[i].hctx == NULL) {
                BIO_printf(bio_err, "HMAC malloc failure, exiting...");
                exit(1);
            }
2030

2031
            HMAC_Init_ex(loopargs[i].hctx, hmac_key, len, EVP_md5(), NULL);
2032
        }
2033 2034 2035
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_HMAC], c[D_HMAC][testnum], lengths[testnum],
                          seconds.sym);
2036
            Time_F(START);
2037
            count = run_benchmark(async_jobs, HMAC_loop, loopargs);
2038
            d = Time_F(STOP);
2039 2040
            print_result(D_HMAC, testnum, count, d);
        }
2041
        for (i = 0; i < loopargs_len; i++) {
2042
            HMAC_CTX_free(loopargs[i].hctx);
2043 2044
        }
    }
2045
#endif
2046
    if (doit[D_SHA1]) {
2047 2048 2049
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_SHA1], c[D_SHA1][testnum], lengths[testnum],
                          seconds.sym);
2050
            Time_F(START);
2051
            count = run_benchmark(async_jobs, SHA1_loop, loopargs);
2052
            d = Time_F(STOP);
2053
            print_result(D_SHA1, testnum, count, d);
2054 2055 2056
        }
    }
    if (doit[D_SHA256]) {
2057
        for (testnum = 0; testnum < size_num; testnum++) {
2058
            print_message(names[D_SHA256], c[D_SHA256][testnum],
2059
                          lengths[testnum], seconds.sym);
2060
            Time_F(START);
2061
            count = run_benchmark(async_jobs, SHA256_loop, loopargs);
2062
            d = Time_F(STOP);
2063
            print_result(D_SHA256, testnum, count, d);
2064 2065 2066
        }
    }
    if (doit[D_SHA512]) {
2067
        for (testnum = 0; testnum < size_num; testnum++) {
2068
            print_message(names[D_SHA512], c[D_SHA512][testnum],
2069
                          lengths[testnum], seconds.sym);
2070
            Time_F(START);
2071
            count = run_benchmark(async_jobs, SHA512_loop, loopargs);
2072
            d = Time_F(STOP);
2073
            print_result(D_SHA512, testnum, count, d);
2074 2075
        }
    }
2076
#ifndef OPENSSL_NO_WHIRLPOOL
2077
    if (doit[D_WHIRLPOOL]) {
2078
        for (testnum = 0; testnum < size_num; testnum++) {
2079
            print_message(names[D_WHIRLPOOL], c[D_WHIRLPOOL][testnum],
2080
                          lengths[testnum], seconds.sym);
2081
            Time_F(START);
2082
            count = run_benchmark(async_jobs, WHIRLPOOL_loop, loopargs);
2083
            d = Time_F(STOP);
2084
            print_result(D_WHIRLPOOL, testnum, count, d);
2085 2086
        }
    }
2087
#endif
2088

2089
#ifndef OPENSSL_NO_RMD160
2090
    if (doit[D_RMD160]) {
2091
        for (testnum = 0; testnum < size_num; testnum++) {
2092
            print_message(names[D_RMD160], c[D_RMD160][testnum],
2093
                          lengths[testnum], seconds.sym);
2094
            Time_F(START);
2095
            count = run_benchmark(async_jobs, EVP_Digest_RMD160_loop, loopargs);
2096
            d = Time_F(STOP);
2097
            print_result(D_RMD160, testnum, count, d);
2098 2099
        }
    }
2100 2101
#endif
#ifndef OPENSSL_NO_RC4
2102
    if (doit[D_RC4]) {
2103 2104 2105
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_RC4], c[D_RC4][testnum], lengths[testnum],
                          seconds.sym);
2106
            Time_F(START);
2107
            count = run_benchmark(async_jobs, RC4_loop, loopargs);
2108
            d = Time_F(STOP);
2109
            print_result(D_RC4, testnum, count, d);
2110 2111
        }
    }
2112 2113
#endif
#ifndef OPENSSL_NO_DES
2114
    if (doit[D_CBC_DES]) {
2115
        for (testnum = 0; testnum < size_num; testnum++) {
2116
            print_message(names[D_CBC_DES], c[D_CBC_DES][testnum],
2117
                          lengths[testnum], seconds.sym);
2118
            Time_F(START);
2119
            count = run_benchmark(async_jobs, DES_ncbc_encrypt_loop, loopargs);
2120
            d = Time_F(STOP);
2121
            print_result(D_CBC_DES, testnum, count, d);
2122 2123
        }
    }
2124

2125
    if (doit[D_EDE3_DES]) {
2126
        for (testnum = 0; testnum < size_num; testnum++) {
2127
            print_message(names[D_EDE3_DES], c[D_EDE3_DES][testnum],
2128
                          lengths[testnum], seconds.sym);
2129
            Time_F(START);
2130 2131
            count =
                run_benchmark(async_jobs, DES_ede3_cbc_encrypt_loop, loopargs);
2132
            d = Time_F(STOP);
2133
            print_result(D_EDE3_DES, testnum, count, d);
2134 2135
        }
    }
2136
#endif
M
Matt Caswell 已提交
2137

2138
    if (doit[D_CBC_128_AES]) {
2139
        for (testnum = 0; testnum < size_num; testnum++) {
2140
            print_message(names[D_CBC_128_AES], c[D_CBC_128_AES][testnum],
2141
                          lengths[testnum], seconds.sym);
2142
            Time_F(START);
2143 2144
            count =
                run_benchmark(async_jobs, AES_cbc_128_encrypt_loop, loopargs);
2145
            d = Time_F(STOP);
2146
            print_result(D_CBC_128_AES, testnum, count, d);
2147 2148 2149
        }
    }
    if (doit[D_CBC_192_AES]) {
2150
        for (testnum = 0; testnum < size_num; testnum++) {
2151
            print_message(names[D_CBC_192_AES], c[D_CBC_192_AES][testnum],
2152
                          lengths[testnum], seconds.sym);
2153
            Time_F(START);
2154 2155
            count =
                run_benchmark(async_jobs, AES_cbc_192_encrypt_loop, loopargs);
2156
            d = Time_F(STOP);
2157
            print_result(D_CBC_192_AES, testnum, count, d);
2158 2159 2160
        }
    }
    if (doit[D_CBC_256_AES]) {
2161
        for (testnum = 0; testnum < size_num; testnum++) {
2162
            print_message(names[D_CBC_256_AES], c[D_CBC_256_AES][testnum],
2163
                          lengths[testnum], seconds.sym);
2164
            Time_F(START);
2165 2166
            count =
                run_benchmark(async_jobs, AES_cbc_256_encrypt_loop, loopargs);
2167
            d = Time_F(STOP);
2168
            print_result(D_CBC_256_AES, testnum, count, d);
2169 2170
        }
    }
B
Ben Laurie 已提交
2171

2172
    if (doit[D_IGE_128_AES]) {
2173
        for (testnum = 0; testnum < size_num; testnum++) {
2174
            print_message(names[D_IGE_128_AES], c[D_IGE_128_AES][testnum],
2175
                          lengths[testnum], seconds.sym);
2176
            Time_F(START);
2177 2178
            count =
                run_benchmark(async_jobs, AES_ige_128_encrypt_loop, loopargs);
2179
            d = Time_F(STOP);
2180
            print_result(D_IGE_128_AES, testnum, count, d);
2181 2182 2183
        }
    }
    if (doit[D_IGE_192_AES]) {
2184
        for (testnum = 0; testnum < size_num; testnum++) {
2185
            print_message(names[D_IGE_192_AES], c[D_IGE_192_AES][testnum],
2186
                          lengths[testnum], seconds.sym);
2187
            Time_F(START);
2188 2189
            count =
                run_benchmark(async_jobs, AES_ige_192_encrypt_loop, loopargs);
2190
            d = Time_F(STOP);
2191
            print_result(D_IGE_192_AES, testnum, count, d);
2192 2193 2194
        }
    }
    if (doit[D_IGE_256_AES]) {
2195
        for (testnum = 0; testnum < size_num; testnum++) {
2196
            print_message(names[D_IGE_256_AES], c[D_IGE_256_AES][testnum],
2197
                          lengths[testnum], seconds.sym);
2198
            Time_F(START);
2199 2200
            count =
                run_benchmark(async_jobs, AES_ige_256_encrypt_loop, loopargs);
2201
            d = Time_F(STOP);
2202
            print_result(D_IGE_256_AES, testnum, count, d);
2203 2204 2205
        }
    }
    if (doit[D_GHASH]) {
2206
        for (i = 0; i < loopargs_len; i++) {
2207 2208 2209 2210
            loopargs[i].gcm_ctx =
                CRYPTO_gcm128_new(&aes_ks1, (block128_f) AES_encrypt);
            CRYPTO_gcm128_setiv(loopargs[i].gcm_ctx,
                                (unsigned char *)"0123456789ab", 12);
2211
        }
2212

2213
        for (testnum = 0; testnum < size_num; testnum++) {
2214
            print_message(names[D_GHASH], c[D_GHASH][testnum],
2215
                          lengths[testnum], seconds.sym);
2216
            Time_F(START);
2217
            count = run_benchmark(async_jobs, CRYPTO_gcm128_aad_loop, loopargs);
2218
            d = Time_F(STOP);
2219
            print_result(D_GHASH, testnum, count, d);
2220
        }
2221
        for (i = 0; i < loopargs_len; i++)
2222
            CRYPTO_gcm128_release(loopargs[i].gcm_ctx);
2223
    }
2224
#ifndef OPENSSL_NO_CAMELLIA
2225
    if (doit[D_CBC_128_CML]) {
2226 2227 2228 2229 2230
        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;
        }
2231
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2232
            print_message(names[D_CBC_128_CML], c[D_CBC_128_CML][testnum],
2233
                          lengths[testnum], seconds.sym);
2234
            Time_F(START);
2235 2236
            for (count = 0, run = 1; COND(c[D_CBC_128_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2237
                                     (size_t)lengths[testnum], &camellia_ks1,
2238 2239
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2240
            print_result(D_CBC_128_CML, testnum, count, d);
2241 2242 2243
        }
    }
    if (doit[D_CBC_192_CML]) {
2244 2245 2246 2247 2248
        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;
        }
2249
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2250
            print_message(names[D_CBC_192_CML], c[D_CBC_192_CML][testnum],
2251
                          lengths[testnum], seconds.sym);
2252 2253 2254 2255
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2256
            Time_F(START);
2257 2258
            for (count = 0, run = 1; COND(c[D_CBC_192_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2259
                                     (size_t)lengths[testnum], &camellia_ks2,
2260 2261
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2262
            print_result(D_CBC_192_CML, testnum, count, d);
2263 2264 2265
        }
    }
    if (doit[D_CBC_256_CML]) {
2266 2267 2268 2269 2270
        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;
        }
2271
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2272
            print_message(names[D_CBC_256_CML], c[D_CBC_256_CML][testnum],
2273
                          lengths[testnum], seconds.sym);
2274
            Time_F(START);
2275 2276
            for (count = 0, run = 1; COND(c[D_CBC_256_CML][testnum]); count++)
                Camellia_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2277
                                     (size_t)lengths[testnum], &camellia_ks3,
2278 2279
                                     iv, CAMELLIA_ENCRYPT);
            d = Time_F(STOP);
2280
            print_result(D_CBC_256_CML, testnum, count, d);
2281 2282
        }
    }
2283 2284
#endif
#ifndef OPENSSL_NO_IDEA
2285
    if (doit[D_CBC_IDEA]) {
2286 2287 2288 2289 2290
        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;
        }
2291
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2292
            print_message(names[D_CBC_IDEA], c[D_CBC_IDEA][testnum],
2293
                          lengths[testnum], seconds.sym);
2294
            Time_F(START);
2295
            for (count = 0, run = 1; COND(c[D_CBC_IDEA][testnum]); count++)
R
Rich Salz 已提交
2296
                IDEA_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2297
                                 (size_t)lengths[testnum], &idea_ks,
2298 2299
                                 iv, IDEA_ENCRYPT);
            d = Time_F(STOP);
2300
            print_result(D_CBC_IDEA, testnum, count, d);
2301 2302
        }
    }
2303 2304
#endif
#ifndef OPENSSL_NO_SEED
2305
    if (doit[D_CBC_SEED]) {
2306 2307 2308 2309 2310
        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;
        }
2311
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2312
            print_message(names[D_CBC_SEED], c[D_CBC_SEED][testnum],
2313
                          lengths[testnum], seconds.sym);
2314
            Time_F(START);
2315 2316
            for (count = 0, run = 1; COND(c[D_CBC_SEED][testnum]); count++)
                SEED_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2317
                                 (size_t)lengths[testnum], &seed_ks, iv, 1);
2318
            d = Time_F(STOP);
2319
            print_result(D_CBC_SEED, testnum, count, d);
2320 2321
        }
    }
2322 2323
#endif
#ifndef OPENSSL_NO_RC2
2324
    if (doit[D_CBC_RC2]) {
2325 2326 2327 2328 2329
        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;
        }
2330
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2331
            print_message(names[D_CBC_RC2], c[D_CBC_RC2][testnum],
2332
                          lengths[testnum], seconds.sym);
2333 2334 2335 2336
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2337
            Time_F(START);
2338 2339
            for (count = 0, run = 1; COND(c[D_CBC_RC2][testnum]); count++)
                RC2_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2340
                                (size_t)lengths[testnum], &rc2_ks,
2341 2342
                                iv, RC2_ENCRYPT);
            d = Time_F(STOP);
2343
            print_result(D_CBC_RC2, testnum, count, d);
2344 2345
        }
    }
2346 2347
#endif
#ifndef OPENSSL_NO_RC5
2348
    if (doit[D_CBC_RC5]) {
2349 2350 2351 2352 2353
        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;
        }
2354
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2355
            print_message(names[D_CBC_RC5], c[D_CBC_RC5][testnum],
2356
                          lengths[testnum], seconds.sym);
2357 2358 2359 2360
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2361
            Time_F(START);
2362 2363
            for (count = 0, run = 1; COND(c[D_CBC_RC5][testnum]); count++)
                RC5_32_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2364
                                   (size_t)lengths[testnum], &rc5_ks,
2365 2366
                                   iv, RC5_ENCRYPT);
            d = Time_F(STOP);
2367
            print_result(D_CBC_RC5, testnum, count, d);
2368 2369
        }
    }
2370 2371
#endif
#ifndef OPENSSL_NO_BF
2372
    if (doit[D_CBC_BF]) {
2373 2374 2375 2376 2377
        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;
        }
2378
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2379
            print_message(names[D_CBC_BF], c[D_CBC_BF][testnum],
2380
                          lengths[testnum], seconds.sym);
2381
            Time_F(START);
2382 2383
            for (count = 0, run = 1; COND(c[D_CBC_BF][testnum]); count++)
                BF_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2384
                               (size_t)lengths[testnum], &bf_ks,
2385 2386
                               iv, BF_ENCRYPT);
            d = Time_F(STOP);
2387
            print_result(D_CBC_BF, testnum, count, d);
2388 2389
        }
    }
2390 2391
#endif
#ifndef OPENSSL_NO_CAST
2392
    if (doit[D_CBC_CAST]) {
2393 2394 2395 2396 2397
        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;
        }
2398
        for (testnum = 0; testnum < size_num && async_init == 0; testnum++) {
2399
            print_message(names[D_CBC_CAST], c[D_CBC_CAST][testnum],
2400
                          lengths[testnum], seconds.sym);
2401
            Time_F(START);
2402 2403
            for (count = 0, run = 1; COND(c[D_CBC_CAST][testnum]); count++)
                CAST_cbc_encrypt(loopargs[0].buf, loopargs[0].buf,
2404
                                 (size_t)lengths[testnum], &cast_ks,
2405 2406
                                 iv, CAST_ENCRYPT);
            d = Time_F(STOP);
2407
            print_result(D_CBC_CAST, testnum, count, d);
2408 2409
        }
    }
2410
#endif
2411
    if (doit[D_RAND]) {
2412 2413 2414
        for (testnum = 0; testnum < size_num; testnum++) {
            print_message(names[D_RAND], c[D_RAND][testnum], lengths[testnum],
                          seconds.sym);
2415 2416 2417 2418 2419 2420
            Time_F(START);
            count = run_benchmark(async_jobs, RAND_bytes_loop, loopargs);
            d = Time_F(STOP);
            print_result(D_RAND, testnum, count, d);
        }
    }
2421

2422 2423 2424 2425 2426
    if (doit[D_EVP]) {
        if (multiblock && evp_cipher) {
            if (!
                (EVP_CIPHER_flags(evp_cipher) &
                 EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK)) {
R
Rich Salz 已提交
2427
                BIO_printf(bio_err, "%s is not multi-block capable\n",
2428
                           OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher)));
2429 2430
                goto end;
            }
2431 2432 2433 2434
            if (async_jobs > 0) {
                BIO_printf(bio_err, "Async mode is not supported, exiting...");
                exit(1);
            }
2435
            multiblock_speed(evp_cipher, lengths_single, &seconds);
2436
            ret = 0;
2437 2438
            goto end;
        }
2439
        for (testnum = 0; testnum < size_num; testnum++) {
2440 2441
            if (evp_cipher) {

2442
                names[D_EVP] = OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher));
2443 2444 2445 2446
                /*
                 * -O3 -fschedule-insns messes up an optimization here!
                 * names[D_EVP] somehow becomes NULL
                 */
2447 2448
                print_message(names[D_EVP], save_count, lengths[testnum],
                              seconds.sym);
2449 2450 2451

                for (k = 0; k < loopargs_len; k++) {
                    loopargs[k].ctx = EVP_CIPHER_CTX_new();
2452 2453 2454
                    EVP_CipherInit_ex(loopargs[k].ctx, evp_cipher, NULL, NULL,
                                      iv, decrypt ? 0 : 1);

2455
                    EVP_CIPHER_CTX_set_padding(loopargs[k].ctx, 0);
2456 2457 2458 2459 2460 2461 2462

                    keylen = EVP_CIPHER_CTX_key_length(loopargs[k].ctx);
                    loopargs[k].key = app_malloc(keylen, "evp_cipher key");
                    EVP_CIPHER_CTX_rand_key(loopargs[k].ctx, loopargs[k].key);
                    EVP_CipherInit_ex(loopargs[k].ctx, NULL, NULL,
                                      loopargs[k].key, NULL, -1);
                    OPENSSL_clear_free(loopargs[k].key, keylen);
2463
                }
2464 2465 2466 2467 2468 2469 2470
                switch (EVP_CIPHER_mode(evp_cipher)) {
                case EVP_CIPH_CCM_MODE:
                    loopfunc = EVP_Update_loop_ccm;
                    break;
                default:
                    loopfunc = EVP_Update_loop;
                }
2471 2472

                Time_F(START);
2473
                count = run_benchmark(async_jobs, loopfunc, loopargs);
2474
                d = Time_F(STOP);
2475 2476 2477
                for (k = 0; k < loopargs_len; k++) {
                    EVP_CIPHER_CTX_free(loopargs[k].ctx);
                }
2478 2479
            }
            if (evp_md) {
2480
                names[D_EVP] = OBJ_nid2ln(EVP_MD_type(evp_md));
2481 2482
                print_message(names[D_EVP], save_count, lengths[testnum],
                              seconds.sym);
2483
                Time_F(START);
2484
                count = run_benchmark(async_jobs, EVP_Digest_loop, loopargs);
2485 2486
                d = Time_F(STOP);
            }
2487
            print_result(D_EVP, testnum, count, d);
2488 2489
        }
    }
2490

2491
    for (i = 0; i < loopargs_len; i++)
2492 2493
        RAND_bytes(loopargs[i].buf, 36);

2494
#ifndef OPENSSL_NO_RSA
2495 2496 2497
    for (testnum = 0; testnum < RSA_NUM; testnum++) {
        int st = 0;
        if (!rsa_doit[testnum])
2498
            continue;
2499
        for (i = 0; i < loopargs_len; i++) {
P
Paul Yang 已提交
2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527
            if (primes > 2) {
                /* we haven't set keys yet,  generate multi-prime RSA keys */
                BIGNUM *bn = BN_new();

                if (bn == NULL)
                    goto end;
                if (!BN_set_word(bn, RSA_F4)) {
                    BN_free(bn);
                    goto end;
                }

                BIO_printf(bio_err, "Generate multi-prime RSA key for %s\n",
                           rsa_choices[testnum].name);

                loopargs[i].rsa_key[testnum] = RSA_new();
                if (loopargs[i].rsa_key[testnum] == NULL) {
                    BN_free(bn);
                    goto end;
                }

                if (!RSA_generate_multi_prime_key(loopargs[i].rsa_key[testnum],
                                                  rsa_bits[testnum],
                                                  primes, bn, NULL)) {
                    BN_free(bn);
                    goto end;
                }
                BN_free(bn);
            }
2528
            st = RSA_sign(NID_md5_sha1, loopargs[i].buf, 36, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2529
                          &loopargs[i].siglen, loopargs[i].rsa_key[testnum]);
2530 2531 2532
            if (st == 0)
                break;
        }
2533
        if (st == 0) {
2534 2535 2536 2537 2538 2539
            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",
2540
                               rsa_c[testnum][0], rsa_bits[testnum],
2541
                               seconds.rsa);
2542
            /* RSA_blinding_on(rsa_key[testnum],NULL); */
2543
            Time_F(START);
2544
            count = run_benchmark(async_jobs, RSA_sign_loop, loopargs);
2545 2546 2547
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R1:%ld:%d:%.2f\n"
2548
                       : "%ld %u bits private RSA's in %.2fs\n",
2549
                       count, rsa_bits[testnum], d);
2550
            rsa_results[testnum][0] = (double)count / d;
2551 2552
            rsa_count = count;
        }
2553

2554 2555
        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
2556
                            loopargs[i].siglen, loopargs[i].rsa_key[testnum]);
2557 2558 2559
            if (st <= 0)
                break;
        }
2560
        if (st <= 0) {
2561 2562 2563
            BIO_printf(bio_err,
                       "RSA verify failure.  No RSA verify will be done.\n");
            ERR_print_errors(bio_err);
2564
            rsa_doit[testnum] = 0;
2565 2566
        } else {
            pkey_print_message("public", "rsa",
2567
                               rsa_c[testnum][1], rsa_bits[testnum],
2568
                               seconds.rsa);
2569
            Time_F(START);
2570
            count = run_benchmark(async_jobs, RSA_verify_loop, loopargs);
2571 2572 2573
            d = Time_F(STOP);
            BIO_printf(bio_err,
                       mr ? "+R2:%ld:%d:%.2f\n"
2574
                       : "%ld %u bits public RSA's in %.2fs\n",
2575
                       count, rsa_bits[testnum], d);
2576
            rsa_results[testnum][1] = (double)count / d;
2577
        }
2578

2579 2580
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2581 2582
            for (testnum++; testnum < RSA_NUM; testnum++)
                rsa_doit[testnum] = 0;
2583 2584
        }
    }
F
FdaSilvaYY 已提交
2585
#endif                          /* OPENSSL_NO_RSA */
2586

2587
    for (i = 0; i < loopargs_len; i++)
2588 2589
        RAND_bytes(loopargs[i].buf, 36);

2590
#ifndef OPENSSL_NO_DSA
2591 2592 2593
    for (testnum = 0; testnum < DSA_NUM; testnum++) {
        int st = 0;
        if (!dsa_doit[testnum])
2594 2595
            continue;

2596 2597
        /* DSA_generate_key(dsa_key[testnum]); */
        /* DSA_sign_setup(dsa_key[testnum],NULL); */
2598 2599
        for (i = 0; i < loopargs_len; i++) {
            st = DSA_sign(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2600
                          &loopargs[i].siglen, loopargs[i].dsa_key[testnum]);
2601 2602 2603
            if (st == 0)
                break;
        }
2604
        if (st == 0) {
2605 2606 2607 2608 2609 2610
            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",
2611
                               dsa_c[testnum][0], dsa_bits[testnum],
2612
                               seconds.dsa);
2613
            Time_F(START);
2614
            count = run_benchmark(async_jobs, DSA_sign_loop, loopargs);
2615 2616
            d = Time_F(STOP);
            BIO_printf(bio_err,
2617 2618
                       mr ? "+R3:%ld:%u:%.2f\n"
                       : "%ld %u bits DSA signs in %.2fs\n",
2619
                       count, dsa_bits[testnum], d);
2620
            dsa_results[testnum][0] = (double)count / d;
2621 2622
            rsa_count = count;
        }
B
Bodo Möller 已提交
2623

2624 2625
        for (i = 0; i < loopargs_len; i++) {
            st = DSA_verify(0, loopargs[i].buf, 20, loopargs[i].buf2,
F
FdaSilvaYY 已提交
2626
                            loopargs[i].siglen, loopargs[i].dsa_key[testnum]);
2627 2628 2629
            if (st <= 0)
                break;
        }
2630
        if (st <= 0) {
2631 2632 2633
            BIO_printf(bio_err,
                       "DSA verify failure.  No DSA verify will be done.\n");
            ERR_print_errors(bio_err);
2634
            dsa_doit[testnum] = 0;
2635 2636
        } else {
            pkey_print_message("verify", "dsa",
2637
                               dsa_c[testnum][1], dsa_bits[testnum],
2638
                               seconds.dsa);
2639
            Time_F(START);
2640
            count = run_benchmark(async_jobs, DSA_verify_loop, loopargs);
2641 2642
            d = Time_F(STOP);
            BIO_printf(bio_err,
2643 2644
                       mr ? "+R4:%ld:%u:%.2f\n"
                       : "%ld %u bits DSA verify in %.2fs\n",
2645
                       count, dsa_bits[testnum], d);
2646
            dsa_results[testnum][1] = (double)count / d;
2647
        }
B
Bodo Möller 已提交
2648

2649 2650
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2651 2652
            for (testnum++; testnum < DSA_NUM; testnum++)
                dsa_doit[testnum] = 0;
2653 2654
        }
    }
F
FdaSilvaYY 已提交
2655
#endif                          /* OPENSSL_NO_DSA */
B
Bodo Möller 已提交
2656

2657
#ifndef OPENSSL_NO_EC
2658
    for (testnum = 0; testnum < ECDSA_NUM; testnum++) {
2659
        int st = 1;
2660

2661
        if (!ecdsa_doit[testnum])
2662
            continue;           /* Ignore Curve */
2663
        for (i = 0; i < loopargs_len; i++) {
2664
            loopargs[i].ecdsa[testnum] =
2665
                EC_KEY_new_by_curve_name(test_curves[testnum].nid);
2666 2667 2668 2669 2670 2671
            if (loopargs[i].ecdsa[testnum] == NULL) {
                st = 0;
                break;
            }
        }
        if (st == 0) {
2672 2673 2674 2675
            BIO_printf(bio_err, "ECDSA failure.\n");
            ERR_print_errors(bio_err);
            rsa_count = 1;
        } else {
2676 2677 2678 2679 2680
            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,
2681 2682
                                &loopargs[i].siglen,
                                loopargs[i].ecdsa[testnum]);
2683 2684 2685
                if (st == 0)
                    break;
            }
2686
            if (st == 0) {
2687 2688 2689 2690 2691 2692
                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",
2693
                                   ecdsa_c[testnum][0],
2694
                                   test_curves[testnum].bits, seconds.ecdsa);
2695
                Time_F(START);
2696
                count = run_benchmark(async_jobs, ECDSA_sign_loop, loopargs);
2697 2698 2699
                d = Time_F(STOP);

                BIO_printf(bio_err,
2700 2701 2702
                           mr ? "+R5:%ld:%u:%.2f\n" :
                           "%ld %u bits ECDSA signs in %.2fs \n",
                           count, test_curves[testnum].bits, d);
2703
                ecdsa_results[testnum][0] = (double)count / d;
2704 2705 2706 2707
                rsa_count = count;
            }

            /* Perform ECDSA verification test */
2708 2709
            for (i = 0; i < loopargs_len; i++) {
                st = ECDSA_verify(0, loopargs[i].buf, 20, loopargs[i].buf2,
2710 2711
                                  loopargs[i].siglen,
                                  loopargs[i].ecdsa[testnum]);
2712 2713 2714
                if (st != 1)
                    break;
            }
2715
            if (st != 1) {
2716 2717 2718
                BIO_printf(bio_err,
                           "ECDSA verify failure.  No ECDSA verify will be done.\n");
                ERR_print_errors(bio_err);
2719
                ecdsa_doit[testnum] = 0;
2720 2721
            } else {
                pkey_print_message("verify", "ecdsa",
2722
                                   ecdsa_c[testnum][1],
2723
                                   test_curves[testnum].bits, seconds.ecdsa);
2724
                Time_F(START);
2725
                count = run_benchmark(async_jobs, ECDSA_verify_loop, loopargs);
2726 2727
                d = Time_F(STOP);
                BIO_printf(bio_err,
2728 2729 2730
                           mr ? "+R6:%ld:%u:%.2f\n"
                           : "%ld %u bits ECDSA verify in %.2fs\n",
                           count, test_curves[testnum].bits, d);
2731
                ecdsa_results[testnum][1] = (double)count / d;
2732 2733 2734 2735
            }

            if (rsa_count <= 1) {
                /* if longer than 10s, don't do any more */
2736 2737
                for (testnum++; testnum < EC_NUM; testnum++)
                    ecdsa_doit[testnum] = 0;
2738 2739 2740
            }
        }
    }
2741

2742
    for (testnum = 0; testnum < EC_NUM; testnum++) {
2743 2744
        int ecdh_checks = 1;

2745
        if (!ecdh_doit[testnum])
2746
            continue;
2747

2748
        for (i = 0; i < loopargs_len; i++) {
N
Nicola Tuveri 已提交
2749
            EVP_PKEY_CTX *kctx = NULL;
2750
            EVP_PKEY_CTX *test_ctx = NULL;
N
Nicola Tuveri 已提交
2751 2752 2753
            EVP_PKEY_CTX *ctx = NULL;
            EVP_PKEY *key_A = NULL;
            EVP_PKEY *key_B = NULL;
2754
            size_t outlen;
2755
            size_t test_outlen;
2756

2757 2758 2759 2760 2761 2762 2763
            /* Ensure that the error queue is empty */
            if (ERR_peek_error()) {
                BIO_printf(bio_err,
                           "WARNING: the error queue contains previous unhandled errors.\n");
                ERR_print_errors(bio_err);
            }

2764 2765 2766 2767 2768 2769
            /* Let's try to create a ctx directly from the NID: this works for
             * curves like Curve25519 that are not implemented through the low
             * level EC interface.
             * If this fails we try creating a EVP_PKEY_EC generic param ctx,
             * then we set the curve by NID before deriving the actual keygen
             * ctx for that specific curve. */
2770
            kctx = EVP_PKEY_CTX_new_id(test_curves[testnum].nid, NULL); /* keygen ctx from NID */
2771
            if (!kctx) {
2772 2773 2774
                EVP_PKEY_CTX *pctx = NULL;
                EVP_PKEY *params = NULL;

2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793
                /* If we reach this code EVP_PKEY_CTX_new_id() failed and a
                 * "int_ctx_new:unsupported algorithm" error was added to the
                 * error queue.
                 * We remove it from the error queue as we are handling it. */
                unsigned long error = ERR_peek_error(); /* peek the latest error in the queue */
                if (error == ERR_peek_last_error() && /* oldest and latest errors match */
                    /* check that the error origin matches */
                    ERR_GET_LIB(error) == ERR_LIB_EVP &&
                    ERR_GET_FUNC(error) == EVP_F_INT_CTX_NEW &&
                    ERR_GET_REASON(error) == EVP_R_UNSUPPORTED_ALGORITHM)
                    ERR_get_error(); /* pop error from queue */
                if (ERR_peek_error()) {
                    BIO_printf(bio_err,
                               "Unhandled error in the error queue during ECDH init.\n");
                    ERR_print_errors(bio_err);
                    rsa_count = 1;
                    break;
                }

2794 2795 2796 2797 2798 2799 2800
                if (            /* Create the context for parameter generation */
                       !(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
2801
                                                               [testnum].nid) ||
2802
                       /* Create the parameter object params */
N
Nicola Tuveri 已提交
2803
                       !EVP_PKEY_paramgen(pctx, &params)) {
2804
                    ecdh_checks = 0;
2805
                    BIO_printf(bio_err, "ECDH EC params init failure.\n");
2806
                    ERR_print_errors(bio_err);
2807
                    rsa_count = 1;
2808
                    break;
2809
                }
2810 2811 2812
                /* Create the context for the key generation */
                kctx = EVP_PKEY_CTX_new(params, NULL);

2813 2814 2815 2816
                EVP_PKEY_free(params);
                params = NULL;
                EVP_PKEY_CTX_free(pctx);
                pctx = NULL;
A
Andrea Grandi 已提交
2817
            }
2818
            if (kctx == NULL ||      /* keygen ctx is not null */
N
Nicola Tuveri 已提交
2819
                !EVP_PKEY_keygen_init(kctx) /* init keygen ctx */ ) {
2820 2821 2822 2823 2824
                ecdh_checks = 0;
                BIO_printf(bio_err, "ECDH keygen failure.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
2825
            }
2826

2827 2828 2829 2830 2831 2832
            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 */
                !EVP_PKEY_derive(ctx, NULL, &outlen) || /* determine max length */
2833
                outlen == 0 ||  /* ensure outlen is a valid size */
N
Nicola Tuveri 已提交
2834
                outlen > MAX_ECDH_SIZE /* avoid buffer overflow */ ) {
2835 2836 2837 2838 2839 2840 2841
                ecdh_checks = 0;
                BIO_printf(bio_err, "ECDH key generation failure.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
            }

2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858
            /* Here we perform a test run, comparing the output of a*B and b*A;
             * we try this here and assume that further EVP_PKEY_derive calls
             * never fail, so we can skip checks in the actually benchmarked
             * code, for maximum performance. */
            if (!(test_ctx = EVP_PKEY_CTX_new(key_B, NULL)) || /* test ctx from skeyB */
                !EVP_PKEY_derive_init(test_ctx) || /* init derivation test_ctx */
                !EVP_PKEY_derive_set_peer(test_ctx, key_A) || /* set peer pubkey in test_ctx */
                !EVP_PKEY_derive(test_ctx, NULL, &test_outlen) || /* determine max length */
                !EVP_PKEY_derive(ctx, loopargs[i].secret_a, &outlen) || /* compute a*B */
                !EVP_PKEY_derive(test_ctx, loopargs[i].secret_b, &test_outlen) || /* compute b*A */
                test_outlen != outlen /* compare output length */ ) {
                ecdh_checks = 0;
                BIO_printf(bio_err, "ECDH computation failure.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
            }
2859 2860 2861 2862 2863

            /* Compare the computation results: CRYPTO_memcmp() returns 0 if equal */
            if (CRYPTO_memcmp(loopargs[i].secret_a,
                              loopargs[i].secret_b, outlen)) {
                ecdh_checks = 0;
2864 2865 2866 2867 2868 2869
                BIO_printf(bio_err, "ECDH computations don't match.\n");
                ERR_print_errors(bio_err);
                rsa_count = 1;
                break;
            }

2870
            loopargs[i].ecdh_ctx[testnum] = ctx;
2871
            loopargs[i].outlen[testnum] = outlen;
2872

2873 2874
            EVP_PKEY_free(key_A);
            EVP_PKEY_free(key_B);
2875 2876
            EVP_PKEY_CTX_free(kctx);
            kctx = NULL;
2877 2878
            EVP_PKEY_CTX_free(test_ctx);
            test_ctx = NULL;
2879 2880 2881
        }
        if (ecdh_checks != 0) {
            pkey_print_message("", "ecdh",
2882
                               ecdh_c[testnum][0],
2883
                               test_curves[testnum].bits, seconds.ecdh);
2884
            Time_F(START);
2885 2886
            count =
                run_benchmark(async_jobs, ECDH_EVP_derive_key_loop, loopargs);
2887 2888
            d = Time_F(STOP);
            BIO_printf(bio_err,
2889
                       mr ? "+R7:%ld:%d:%.2f\n" :
2890 2891
                       "%ld %u-bits ECDH ops in %.2fs\n", count,
                       test_curves[testnum].bits, d);
2892
            ecdh_results[testnum][0] = (double)count / d;
2893
            rsa_count = count;
2894
        }
B
Bodo Möller 已提交
2895

2896 2897
        if (rsa_count <= 1) {
            /* if longer than 10s, don't do any more */
2898
            for (testnum++; testnum < OSSL_NELEM(ecdh_doit); testnum++)
2899
                ecdh_doit[testnum] = 0;
2900 2901
        }
    }
F
FdaSilvaYY 已提交
2902
#endif                          /* OPENSSL_NO_EC */
2903
#ifndef NO_FORK
2904
 show_res:
2905
#endif
2906
    if (!mr) {
R
Rich Salz 已提交
2907 2908
        printf("%s\n", OpenSSL_version(OPENSSL_VERSION));
        printf("%s\n", OpenSSL_version(OPENSSL_BUILT_ON));
2909 2910
        printf("options:");
        printf("%s ", BN_options());
2911
#ifndef OPENSSL_NO_MD2
2912
        printf("%s ", MD2_options());
2913 2914
#endif
#ifndef OPENSSL_NO_RC4
2915
        printf("%s ", RC4_options());
2916 2917
#endif
#ifndef OPENSSL_NO_DES
2918
        printf("%s ", DES_options());
2919
#endif
2920
        printf("%s ", AES_options());
2921
#ifndef OPENSSL_NO_IDEA
R
Rich Salz 已提交
2922
        printf("%s ", IDEA_options());
2923 2924
#endif
#ifndef OPENSSL_NO_BF
2925
        printf("%s ", BF_options());
2926
#endif
R
Rich Salz 已提交
2927
        printf("\n%s\n", OpenSSL_version(OPENSSL_CFLAGS));
2928
    }
B
Bodo Möller 已提交
2929

2930 2931
    if (pr_header) {
        if (mr)
2932
            printf("+H");
2933
        else {
2934 2935 2936
            printf
                ("The 'numbers' are in 1000s of bytes per second processed.\n");
            printf("type        ");
2937
        }
2938
        for (testnum = 0; testnum < size_num; testnum++)
2939
            printf(mr ? ":%d" : "%7d bytes", lengths[testnum]);
2940
        printf("\n");
2941
    }
B
Bodo Möller 已提交
2942

2943 2944 2945 2946
    for (k = 0; k < ALGOR_NUM; k++) {
        if (!doit[k])
            continue;
        if (mr)
2947
            printf("+F:%u:%s", k, names[k]);
2948
        else
2949
            printf("%-13s", names[k]);
2950
        for (testnum = 0; testnum < size_num; testnum++) {
2951 2952
            if (results[k][testnum] > 10000 && !mr)
                printf(" %11.2fk", results[k][testnum] / 1e3);
2953
            else
2954
                printf(mr ? ":%.2f" : " %11.2f ", results[k][testnum]);
2955
        }
2956
        printf("\n");
2957
    }
2958
#ifndef OPENSSL_NO_RSA
2959
    testnum = 1;
2960 2961 2962
    for (k = 0; k < RSA_NUM; k++) {
        if (!rsa_doit[k])
            continue;
2963
        if (testnum && !mr) {
2964
            printf("%18ssign    verify    sign/s verify/s\n", " ");
2965
            testnum = 0;
2966 2967
        }
        if (mr)
2968 2969
            printf("+F2:%u:%u:%f:%f\n",
                   k, rsa_bits[k], rsa_results[k][0], rsa_results[k][1]);
2970
        else
2971
            printf("rsa %4u bits %8.6fs %8.6fs %8.1f %8.1f\n",
2972 2973
                   rsa_bits[k], 1.0 / rsa_results[k][0], 1.0 / rsa_results[k][1],
                   rsa_results[k][0], rsa_results[k][1]);
2974
    }
2975 2976
#endif
#ifndef OPENSSL_NO_DSA
2977
    testnum = 1;
2978 2979 2980
    for (k = 0; k < DSA_NUM; k++) {
        if (!dsa_doit[k])
            continue;
2981
        if (testnum && !mr) {
2982
            printf("%18ssign    verify    sign/s verify/s\n", " ");
2983
            testnum = 0;
2984 2985
        }
        if (mr)
2986 2987
            printf("+F3:%u:%u:%f:%f\n",
                   k, dsa_bits[k], dsa_results[k][0], dsa_results[k][1]);
2988
        else
2989
            printf("dsa %4u bits %8.6fs %8.6fs %8.1f %8.1f\n",
2990 2991
                   dsa_bits[k], 1.0 / dsa_results[k][0], 1.0 / dsa_results[k][1],
                   dsa_results[k][0], dsa_results[k][1]);
2992
    }
2993
#endif
2994
#ifndef OPENSSL_NO_EC
2995
    testnum = 1;
2996
    for (k = 0; k < OSSL_NELEM(ecdsa_doit); k++) {
2997 2998
        if (!ecdsa_doit[k])
            continue;
2999
        if (testnum && !mr) {
3000
            printf("%30ssign    verify    sign/s verify/s\n", " ");
3001
            testnum = 0;
3002 3003 3004
        }

        if (mr)
3005
            printf("+F4:%u:%u:%f:%f\n",
3006
                   k, test_curves[k].bits,
3007
                   ecdsa_results[k][0], ecdsa_results[k][1]);
3008
        else
3009 3010
            printf("%4u bits ecdsa (%s) %8.4fs %8.4fs %8.1f %8.1f\n",
                   test_curves[k].bits, test_curves[k].name,
3011 3012
                   1.0 / ecdsa_results[k][0], 1.0 / ecdsa_results[k][1],
                   ecdsa_results[k][0], ecdsa_results[k][1]);
3013
    }
3014

3015
    testnum = 1;
3016 3017 3018
    for (k = 0; k < EC_NUM; k++) {
        if (!ecdh_doit[k])
            continue;
3019
        if (testnum && !mr) {
3020
            printf("%30sop      op/s\n", " ");
3021
            testnum = 0;
3022 3023
        }
        if (mr)
3024
            printf("+F5:%u:%u:%f:%f\n",
3025
                   k, test_curves[k].bits,
3026
                   ecdh_results[k][0], 1.0 / ecdh_results[k][0]);
3027 3028

        else
3029 3030
            printf("%4u bits ecdh (%s) %8.4fs %8.1f\n",
                   test_curves[k].bits, test_curves[k].name,
3031
                   1.0 / ecdh_results[k][0], ecdh_results[k][0]);
3032
    }
3033
#endif
3034

3035
    ret = 0;
3036 3037 3038

 end:
    ERR_print_errors(bio_err);
3039
    for (i = 0; i < loopargs_len; i++) {
3040 3041
        OPENSSL_free(loopargs[i].buf_malloc);
        OPENSSL_free(loopargs[i].buf2_malloc);
3042

3043
#ifndef OPENSSL_NO_RSA
3044 3045
        for (k = 0; k < RSA_NUM; k++)
            RSA_free(loopargs[i].rsa_key[k]);
3046 3047
#endif
#ifndef OPENSSL_NO_DSA
3048 3049
        for (k = 0; k < DSA_NUM; k++)
            DSA_free(loopargs[i].dsa_key[k]);
3050
#endif
3051
#ifndef OPENSSL_NO_EC
3052
        for (k = 0; k < ECDSA_NUM; k++)
3053
            EC_KEY_free(loopargs[i].ecdsa[k]);
3054
        for (k = 0; k < EC_NUM; k++)
3055
            EVP_PKEY_CTX_free(loopargs[i].ecdh_ctx[k]);
3056 3057
        OPENSSL_free(loopargs[i].secret_a);
        OPENSSL_free(loopargs[i].secret_b);
3058
#endif
3059 3060
    }

3061 3062 3063
    if (async_jobs > 0) {
        for (i = 0; i < loopargs_len; i++)
            ASYNC_WAIT_CTX_free(loopargs[i].wait_ctx);
3064
    }
3065

3066
    if (async_init) {
3067
        ASYNC_cleanup_thread();
3068 3069
    }
    OPENSSL_free(loopargs);
3070
    release_engine(e);
K
KaoruToda 已提交
3071
    return ret;
3072
}
3073

3074
static void print_message(const char *s, long num, int length, int tm)
3075
{
3076
#ifdef SIGALRM
3077 3078
    BIO_printf(bio_err,
               mr ? "+DT:%s:%d:%d\n"
3079
               : "Doing %s for %ds on %d size blocks: ", s, tm, length);
3080
    (void)BIO_flush(bio_err);
3081
    alarm(tm);
3082
#else
3083 3084 3085 3086
    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);
3087
#endif
3088
}
3089

3090
static void pkey_print_message(const char *str, const char *str2, long num,
3091
                               unsigned int bits, int tm)
3092
{
3093
#ifdef SIGALRM
3094 3095
    BIO_printf(bio_err,
               mr ? "+DTP:%d:%s:%s:%d\n"
3096
               : "Doing %u bits %s %s's for %ds: ", bits, str, str2, tm);
3097 3098
    (void)BIO_flush(bio_err);
    alarm(tm);
3099
#else
3100 3101
    BIO_printf(bio_err,
               mr ? "+DNP:%ld:%d:%s:%s\n"
3102
               : "Doing %ld %u bits %s %s's: ", num, bits, str, str2);
3103
    (void)BIO_flush(bio_err);
3104
#endif
3105
}
3106

3107 3108
static void print_result(int alg, int run_no, int count, double time_used)
{
3109 3110 3111 3112
    if (count == -1) {
        BIO_puts(bio_err, "EVP error!\n");
        exit(1);
    }
3113 3114 3115 3116 3117
    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];
}
3118

3119
#ifndef NO_FORK
3120
static char *sstrsep(char **string, const char *delim)
3121
{
3122 3123 3124 3125 3126 3127
    char isdelim[256];
    char *token = *string;

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

R
Rich Salz 已提交
3128
    memset(isdelim, 0, sizeof(isdelim));
3129 3130
    isdelim[0] = 1;

3131
    while (*delim) {
3132 3133
        isdelim[(unsigned char)(*delim)] = 1;
        delim++;
3134
    }
3135

3136
    while (!isdelim[(unsigned char)(**string)]) {
3137
        (*string)++;
3138
    }
3139

3140
    if (**string) {
3141 3142
        **string = 0;
        (*string)++;
3143
    }
3144 3145

    return token;
3146
}
3147

3148
static int do_multi(int multi, int size_num)
3149 3150 3151 3152 3153 3154
{
    int n;
    int fd[2];
    int *fds;
    static char sep[] = ":";

R
Rich Salz 已提交
3155
    fds = app_malloc(sizeof(*fds) * multi, "fd buffer for do_multi");
3156 3157
    for (n = 0; n < multi; ++n) {
        if (pipe(fd) == -1) {
R
Rich Salz 已提交
3158
            BIO_printf(bio_err, "pipe failure\n");
3159 3160 3161
            exit(1);
        }
        fflush(stdout);
R
Rich Salz 已提交
3162
        (void)BIO_flush(bio_err);
3163 3164 3165 3166 3167 3168 3169
        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
3170
                BIO_printf(bio_err, "dup failed\n");
3171 3172 3173 3174 3175 3176 3177 3178 3179 3180
                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
3181

3182 3183 3184 3185 3186 3187 3188
    /* 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");
R
Rich Salz 已提交
3189
        while (fgets(buf, sizeof(buf), f)) {
3190 3191 3192 3193
            p = strchr(buf, '\n');
            if (p)
                *p = '\0';
            if (buf[0] != '+') {
3194 3195 3196
                BIO_printf(bio_err,
                           "Don't understand line '%s' from child %d\n", buf,
                           n);
3197 3198 3199
                continue;
            }
            printf("Got: %s from %d\n", buf, n);
R
Rich Salz 已提交
3200
            if (strncmp(buf, "+F:", 3) == 0) {
3201 3202 3203 3204 3205 3206
                int alg;
                int j;

                p = buf + 3;
                alg = atoi(sstrsep(&p, sep));
                sstrsep(&p, sep);
3207
                for (j = 0; j < size_num; ++j)
3208
                    results[alg][j] += atof(sstrsep(&p, sep));
R
Rich Salz 已提交
3209
            } else if (strncmp(buf, "+F2:", 4) == 0) {
3210 3211 3212 3213 3214 3215 3216 3217
                int k;
                double d;

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

                d = atof(sstrsep(&p, sep));
3218
                rsa_results[k][0] += d;
3219 3220

                d = atof(sstrsep(&p, sep));
3221
                rsa_results[k][1] += d;
3222
            }
3223
# ifndef OPENSSL_NO_DSA
R
Rich Salz 已提交
3224
            else if (strncmp(buf, "+F3:", 4) == 0) {
3225 3226 3227 3228 3229 3230 3231 3232
                int k;
                double d;

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

                d = atof(sstrsep(&p, sep));
3233
                dsa_results[k][0] += d;
3234 3235

                d = atof(sstrsep(&p, sep));
3236
                dsa_results[k][1] += d;
3237
            }
3238
# endif
3239
# ifndef OPENSSL_NO_EC
R
Rich Salz 已提交
3240
            else if (strncmp(buf, "+F4:", 4) == 0) {
3241 3242 3243 3244 3245 3246 3247 3248
                int k;
                double d;

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

                d = atof(sstrsep(&p, sep));
3249
                ecdsa_results[k][0] += d;
3250 3251

                d = atof(sstrsep(&p, sep));
3252
                ecdsa_results[k][1] += d;
F
FdaSilvaYY 已提交
3253
            } else if (strncmp(buf, "+F5:", 4) == 0) {
3254 3255 3256 3257 3258 3259 3260 3261
                int k;
                double d;

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

                d = atof(sstrsep(&p, sep));
3262
                ecdh_results[k][0] += d;
3263
            }
3264
# endif
3265

R
Rich Salz 已提交
3266
            else if (strncmp(buf, "+H:", 3) == 0) {
3267
                ;
3268
            } else
3269 3270
                BIO_printf(bio_err, "Unknown type '%s' from child %d\n", buf,
                           n);
3271 3272 3273 3274 3275 3276 3277
        }

        fclose(f);
    }
    free(fds);
    return 1;
}
3278
#endif
3279

3280
static void multiblock_speed(const EVP_CIPHER *evp_cipher, int lengths_single,
3281
                             const openssl_speed_sec_t *seconds)
3282
{
3283
    static const int mblengths_list[] =
3284
        { 8 * 1024, 2 * 8 * 1024, 4 * 8 * 1024, 8 * 8 * 1024, 8 * 16 * 1024 };
3285
    const int *mblengths = mblengths_list;
3286
    int j, count, keylen, num = OSSL_NELEM(mblengths_list);
3287
    const char *alg_name;
3288
    unsigned char *inp, *out, *key, no_key[32], no_iv[16];
3289
    EVP_CIPHER_CTX *ctx;
3290 3291
    double d = 0.0;

3292 3293 3294 3295 3296
    if (lengths_single) {
        mblengths = &lengths_single;
        num = 1;
    }

R
Rich Salz 已提交
3297 3298
    inp = app_malloc(mblengths[num - 1], "multiblock input buffer");
    out = app_malloc(mblengths[num - 1] + 1024, "multiblock output buffer");
3299
    ctx = EVP_CIPHER_CTX_new();
3300 3301 3302 3303 3304 3305 3306 3307
    EVP_EncryptInit_ex(ctx, evp_cipher, NULL, NULL, no_iv);

    keylen = EVP_CIPHER_CTX_key_length(ctx);
    key = app_malloc(keylen, "evp_cipher key");
    EVP_CIPHER_CTX_rand_key(ctx, key);
    EVP_EncryptInit_ex(ctx, NULL, NULL, key, NULL);
    OPENSSL_clear_free(key, keylen);

3308
    EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_AEAD_SET_MAC_KEY, sizeof(no_key), no_key);
3309
    alg_name = OBJ_nid2ln(EVP_CIPHER_nid(evp_cipher));
3310 3311

    for (j = 0; j < num; j++) {
3312
        print_message(alg_name, 0, mblengths[j], seconds->sym);
3313 3314
        Time_F(START);
        for (count = 0, run = 1; run && count < 0x7fffffff; count++) {
3315
            unsigned char aad[EVP_AEAD_TLS1_AAD_LEN];
3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330
            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;

3331
            packlen = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_TLS1_1_MULTIBLOCK_AAD,
3332 3333 3334 3335 3336 3337
                                          sizeof(mb_param), &mb_param);

            if (packlen > 0) {
                mb_param.out = out;
                mb_param.inp = inp;
                mb_param.len = len;
3338
                EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_TLS1_1_MULTIBLOCK_ENCRYPT,
3339 3340 3341 3342 3343 3344
                                    sizeof(mb_param), &mb_param);
            } else {
                int pad;

                RAND_bytes(out, 16);
                len += 16;
3345 3346
                aad[11] = (unsigned char)(len >> 8);
                aad[12] = (unsigned char)(len);
3347
                pad = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_AEAD_TLS1_AAD,
3348
                                          EVP_AEAD_TLS1_AAD_LEN, aad);
3349
                EVP_Cipher(ctx, out, inp, len + pad);
3350 3351 3352
            }
        }
        d = Time_F(STOP);
3353
        BIO_printf(bio_err, mr ? "+R:%d:%s:%f\n"
3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384
                   : "%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
3385 3386
    OPENSSL_free(inp);
    OPENSSL_free(out);
3387
    EVP_CIPHER_CTX_free(ctx);
3388
}