X-Git-Url: https://git.openssl.org/?p=openssl.git;a=blobdiff_plain;f=apps%2Fspeed.c;h=451a92ecd6caecc854c2b60769c09911e52a4981;hp=1d62c8b87a993f1e5cb22d5a62de16adac09f72a;hb=69740c2b3f3bce9791d1a597c558c9829b9e7b69;hpb=1199e2d8cfb5e2a82e6b7e659aae63edb4ffd325 diff --git a/apps/speed.c b/apps/speed.c index 1d62c8b87a..451a92ecd6 100644 --- a/apps/speed.c +++ b/apps/speed.c @@ -55,13 +55,30 @@ * copied and put under another distribution licence * [including the GNU Public Licence.] */ +/* ==================================================================== + * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED. + * + * Portions of the attached software ("Contribution") are developed by + * SUN MICROSYSTEMS, INC., and are contributed to the OpenSSL project. + * + * The Contribution is licensed pursuant to the OpenSSL open source + * license provided above. + * + * The ECDH and ECDSA speed test software is originally written by + * Sumit Gupta of Sun Microsystems Laboratories. + * + */ /* most of this code has been pilfered from my libdes speed.c program */ +#ifndef OPENSSL_NO_SPEED + #undef SECONDS #define SECONDS 3 #define RSA_SECONDS 10 #define DSA_SECONDS 10 +#define ECDSA_SECONDS 10 +#define ECDH_SECONDS 10 /* 11-Sep-92 Andrew Daviel Support for Silicon Graphics IRIX added */ /* 06-Apr-92 Luke Brennan Support for VMS and add extra signal calls */ @@ -71,7 +88,7 @@ #include #include -#include + #include #include #include "apps.h" @@ -87,15 +104,25 @@ #include OPENSSL_UNISTD #endif +#ifndef OPENSSL_SYS_NETWARE +#include +#endif + #if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__) || defined(OPENSSL_SYS_MACOSX) # define USE_TOD -#elif !defined(OPENSSL_SYS_MSDOS) && (!defined(OPENSSL_SYS_VMS) || defined(__DECC)) +#elif !defined(OPENSSL_SYS_MSDOS) && !defined(OPENSSL_SYS_VXWORKS) && (!defined(OPENSSL_SYS_VMS) || defined(__DECC)) # define TIMES #endif -#if !defined(_UNICOS) && !defined(__OpenBSD__) && !defined(sgi) && !defined(__FreeBSD__) && !(defined(__bsdi) || defined(__bsdi__)) && !defined(_AIX) && !defined(OPENSSL_SYS_MPE) && !defined(__NetBSD__) /* FIXME */ +#if !defined(_UNICOS) && !defined(__OpenBSD__) && !defined(sgi) && !defined(__FreeBSD__) && !(defined(__bsdi) || defined(__bsdi__)) && !defined(_AIX) && !defined(OPENSSL_SYS_MPE) && !defined(__NetBSD__) && !defined(OPENSSL_SYS_VXWORKS) /* FIXME */ # define TIMEB #endif +#if defined(OPENSSL_SYS_NETWARE) +#undef TIMES +#undef TIMEB +#include +#endif + #ifndef _IRIX # include #endif @@ -120,7 +147,7 @@ #include #endif -#if !defined(TIMES) && !defined(TIMEB) && !defined(USE_TOD) +#if !defined(TIMES) && !defined(TIMEB) && !defined(USE_TOD) && !defined(OPENSSL_SYS_VXWORKS) && !defined(OPENSSL_SYS_NETWARE) #error "It seems neither struct tms nor struct timeb is supported in this platform!" #endif @@ -130,8 +157,9 @@ #include #endif +#include #ifndef OPENSSL_NO_DES -#include +#include #endif #ifndef OPENSSL_NO_AES #include @@ -182,13 +210,31 @@ #endif #include #ifndef OPENSSL_NO_DSA +#include #include "./testdsa.h" #endif +#ifndef OPENSSL_NO_ECDSA +#include +#endif +#ifndef OPENSSL_NO_ECDH +#include +#endif + +/* + * The following "HZ" timing stuff should be sync'd up with the code in + * crypto/tmdiff.[ch]. That appears to try to do the same job, though I think + * this code is more up to date than libcrypto's so there may be features to + * migrate over first. This is used in two places further down AFAICS. + * The point is that nothing in openssl actually *uses* that tmdiff stuff, so + * either speed.c should be using it or it should go because it's obviously not + * useful enough. Anyone want to do a janitorial job on this? + */ /* The following if from times(3) man page. It may need to be changed */ #ifndef HZ -# ifdef _SC_CLK_TCK -# define HZ ((double)sysconf(_SC_CLK_TCK)) +# if defined(_SC_CLK_TCK) \ + && (!defined(OPENSSL_SYS_VMS) || __CTRL_VER >= 70000000) +# define HZ sysconf(_SC_CLK_TCK) # else # ifndef CLK_TCK # ifndef _BSD_CLK_TCK_ /* FreeBSD hack */ @@ -202,7 +248,7 @@ # endif #endif -#if !defined(OPENSSL_SYS_VMS) && !defined(OPENSSL_SYS_WINDOWS) && !defined(OPENSSL_SYS_MACINTOSH_CLASSIC) && !defined(OPENSSL_SYS_OS2) +#if !defined(OPENSSL_SYS_VMS) && !defined(OPENSSL_SYS_WINDOWS) && !defined(OPENSSL_SYS_MACINTOSH_CLASSIC) && !defined(OPENSSL_SYS_OS2) && !defined(OPENSSL_SYS_NETWARE) # define HAVE_FORK 1 #endif @@ -216,25 +262,33 @@ static int usertime=1; static double Time_F(int s); static void print_message(const char *s,long num,int length); -static void pkey_print_message(char *str,char *str2,long num,int bits,int sec); +static void pkey_print_message(const char *str, const char *str2, + long num, int bits, int sec); static void print_result(int alg,int run_no,int count,double time_used); #ifdef HAVE_FORK static int do_multi(int multi); #endif -#define ALGOR_NUM 19 +#define ALGOR_NUM 21 #define SIZE_NUM 5 #define RSA_NUM 4 #define DSA_NUM 3 + +#define EC_NUM 16 +#define MAX_ECDH_SIZE 256 + static const char *names[ALGOR_NUM]={ "md2","mdc2","md4","md5","hmac(md5)","sha1","rmd160","rc4", "des cbc","des ede3","idea cbc", "rc2 cbc","rc5-32/12 cbc","blowfish cbc","cast cbc", - "aes-128 cbc","aes-192 cbc","aes-256 cbc"}; + "aes-128 cbc","aes-192 cbc","aes-256 cbc","evp","sha256","sha512"}; static double results[ALGOR_NUM][SIZE_NUM]; static int lengths[SIZE_NUM]={16,64,256,1024,8*1024}; static double rsa_results[RSA_NUM][2]; static double dsa_results[DSA_NUM][2]; +static double ecdsa_results[EC_NUM][2]; +static double ecdh_results[EC_NUM][1]; + #ifdef SIGALRM #if defined(__STDC__) || defined(sgi) || defined(_AIX) @@ -257,13 +311,39 @@ static SIGRETTYPE sig_done(int sig) #define START 0 #define STOP 1 +#if defined(OPENSSL_SYS_NETWARE) + + /* for NetWare the best we can do is use clock() which returns the + * time, in hundredths of a second, since the NLM began executing + */ +static double Time_F(int s) + { + double ret; + + static clock_t tstart,tend; + + if (s == START) + { + tstart=clock(); + return(0); + } + else + { + tend=clock(); + ret=(double)((double)(tend)-(double)(tstart)); + return((ret < 0.001)?0.001:ret); + } + } + +#else + static double Time_F(int s) { double ret; #ifdef USE_TOD if(usertime) - { + { static struct rusage tstart,tend; getrusage_used = 1; @@ -318,7 +398,8 @@ static double Time_F(int s) else { times(&tend); - ret=((double)(tend.tms_utime-tstart.tms_utime))/HZ; + ret = HZ; + ret=(double)(tend.tms_utime-tstart.tms_utime) / ret; return((ret < 1e-3)?1e-3:ret); } } @@ -326,7 +407,23 @@ static double Time_F(int s) # if defined(TIMES) && defined(TIMEB) else # endif -# ifdef TIMEB +# ifdef OPENSSL_SYS_VXWORKS + { + static unsigned long tick_start, tick_end; + + if( s == START ) + { + tick_start = tickGet(); + return 0; + } + else + { + tick_end = tickGet(); + ret = (double)(tick_end - tick_start) / (double)sysClkRateGet(); + return((ret < 0.001)?0.001:ret); + } + } +# elif defined(TIMEB) { static struct timeb tstart,tend; long i; @@ -348,19 +445,38 @@ static double Time_F(int s) # endif #endif } +#endif /* if defined(OPENSSL_SYS_NETWARE) */ + + +static const int KDF1_SHA1_len = 20; +static void *KDF1_SHA1(void *in, size_t inlen, void *out, size_t outlen) + { +#ifndef OPENSSL_NO_SHA + if (outlen != SHA_DIGEST_LENGTH) + return NULL; + return SHA1(in, inlen, out); +#else + return NULL; +#endif + } + int MAIN(int, char **); int MAIN(int argc, char **argv) { +#ifndef OPENSSL_NO_ENGINE ENGINE *e = NULL; +#endif unsigned char *buf=NULL,*buf2=NULL; int mret=1; long count=0,save_count=0; int i,j,k; +#if !defined(OPENSSL_NO_RSA) || !defined(OPENSSL_NO_DSA) + long rsa_count; +#endif #ifndef OPENSSL_NO_RSA unsigned rsa_num; - long rsa_count; #endif unsigned char md[EVP_MAX_MD_SIZE]; #ifndef OPENSSL_NO_MD2 @@ -378,6 +494,8 @@ int MAIN(int argc, char **argv) #endif #ifndef OPENSSL_NO_SHA unsigned char sha[SHA_DIGEST_LENGTH]; + unsigned char sha256[SHA256_DIGEST_LENGTH]; + unsigned char sha512[SHA512_DIGEST_LENGTH]; #endif #ifndef OPENSSL_NO_RIPEMD unsigned char rmd160[RIPEMD160_DIGEST_LENGTH]; @@ -421,9 +539,9 @@ int MAIN(int argc, char **argv) unsigned char iv[MAX_BLOCK_SIZE/8]; #ifndef OPENSSL_NO_DES DES_cblock *buf_as_des_cblock = NULL; - 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}; + 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}; DES_key_schedule sch; DES_key_schedule sch2; DES_key_schedule sch3; @@ -450,6 +568,8 @@ int MAIN(int argc, char **argv) #define D_CBC_192_AES 16 #define D_CBC_256_AES 17 #define D_EVP 18 +#define D_SHA256 19 +#define D_SHA512 20 double d=0.0; long c[ALGOR_NUM][SIZE_NUM]; #define R_DSA_512 0 @@ -459,6 +579,24 @@ int MAIN(int argc, char **argv) #define R_RSA_1024 1 #define R_RSA_2048 2 #define R_RSA_4096 3 + +#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 + #ifndef OPENSSL_NO_RSA RSA *rsa_key[RSA_NUM]; long rsa_c[RSA_NUM][2]; @@ -474,8 +612,83 @@ int MAIN(int argc, char **argv) long dsa_c[DSA_NUM][2]; static unsigned int dsa_bits[DSA_NUM]={512,1024,2048}; #endif +#ifndef OPENSSL_NO_EC + /* We only test over the following curves as they are representative, + * To add tests over more curves, simply add the curve NID + * and curve name to the following arrays and increase the + * EC_NUM value accordingly. + */ + static unsigned int test_curves[EC_NUM] = + { + /* Prime Curves */ + NID_secp160r1, + NID_X9_62_prime192v1, + NID_secp224r1, + NID_X9_62_prime256v1, + NID_secp384r1, + NID_secp521r1, + /* Binary Curves */ + NID_sect163k1, + NID_sect233k1, + NID_sect283k1, + NID_sect409k1, + NID_sect571k1, + NID_sect163r2, + NID_sect233r1, + NID_sect283r1, + NID_sect409r1, + NID_sect571r1 + }; + static const char * test_curves_names[EC_NUM] = + { + /* Prime Curves */ + "secp160r1", + "nistp192", + "nistp224", + "nistp256", + "nistp384", + "nistp521", + /* Binary Curves */ + "nistk163", + "nistk233", + "nistk283", + "nistk409", + "nistk571", + "nistb163", + "nistb233", + "nistb283", + "nistb409", + "nistb571" + }; + static int test_curves_bits[EC_NUM] = + { + 160, 192, 224, 256, 384, 521, + 163, 233, 283, 409, 571, + 163, 233, 283, 409, 571 + }; + +#endif + +#ifndef OPENSSL_NO_ECDSA + unsigned char ecdsasig[256]; + unsigned int ecdsasiglen; + EC_KEY *ecdsa[EC_NUM]; + long ecdsa_c[EC_NUM][2]; +#endif + +#ifndef OPENSSL_NO_ECDH + EC_KEY *ecdh_a[EC_NUM], *ecdh_b[EC_NUM]; + unsigned char secret_a[MAX_ECDH_SIZE], secret_b[MAX_ECDH_SIZE]; + int secret_size_a, secret_size_b; + int ecdh_checks = 0; + int secret_idx = 0; + long ecdh_c[EC_NUM][2]; +#endif + int rsa_doit[RSA_NUM]; int dsa_doit[DSA_NUM]; + int ecdsa_doit[EC_NUM]; + int ecdh_doit[EC_NUM]; int doit[ALGOR_NUM]; int pr_header=0; const EVP_CIPHER *evp_cipher=NULL; @@ -494,11 +707,25 @@ int MAIN(int argc, char **argv) #ifndef OPENSSL_NO_DSA memset(dsa_key,0,sizeof(dsa_key)); #endif +#ifndef OPENSSL_NO_ECDSA + for (i=0; i 0) && (strcmp(*argv,"-engine") == 0)) { argc--; @@ -584,6 +821,7 @@ int MAIN(int argc, char **argv) means all of them should be run) */ j--; } +#endif #ifdef HAVE_FORK else if ((argc > 0) && (strcmp(*argv,"-multi") == 0)) { @@ -634,7 +872,13 @@ int MAIN(int argc, char **argv) #ifndef OPENSSL_NO_SHA if (strcmp(*argv,"sha1") == 0) doit[D_SHA1]=1; else - if (strcmp(*argv,"sha") == 0) doit[D_SHA1]=1; + if (strcmp(*argv,"sha") == 0) doit[D_SHA1]=1, + doit[D_SHA256]=1, + doit[D_SHA512]=1; + else + if (strcmp(*argv,"sha256") == 0) doit[D_SHA256]=1; + else + if (strcmp(*argv,"sha512") == 0) doit[D_SHA512]=1; else #endif #ifndef OPENSSL_NO_RIPEMD @@ -745,6 +989,53 @@ int MAIN(int argc, char **argv) { dsa_doit[R_DSA_512]=1; dsa_doit[R_DSA_1024]=1; + dsa_doit[R_DSA_2048]=1; + } + else +#endif +#ifndef OPENSSL_NO_ECDSA + if (strcmp(*argv,"ecdsap160") == 0) ecdsa_doit[R_EC_P160]=2; + else if (strcmp(*argv,"ecdsap224") == 0) ecdsa_doit[R_EC_P224]=2; + else if (strcmp(*argv,"ecdsap256") == 0) ecdsa_doit[R_EC_P256]=2; + else if (strcmp(*argv,"ecdsap384") == 0) ecdsa_doit[R_EC_P384]=2; + else if (strcmp(*argv,"ecdsap521") == 0) ecdsa_doit[R_EC_P521]=2; + else if (strcmp(*argv,"ecdsak163") == 0) ecdsa_doit[R_EC_K163]=2; + else if (strcmp(*argv,"ecdsak233") == 0) ecdsa_doit[R_EC_K233]=2; + else if (strcmp(*argv,"ecdsak283") == 0) ecdsa_doit[R_EC_K283]=2; + else if (strcmp(*argv,"ecdsak409") == 0) ecdsa_doit[R_EC_K409]=2; + else if (strcmp(*argv,"ecdsak571") == 0) ecdsa_doit[R_EC_K571]=2; + else if (strcmp(*argv,"ecdsab163") == 0) ecdsa_doit[R_EC_B163]=2; + else if (strcmp(*argv,"ecdsab233") == 0) ecdsa_doit[R_EC_B233]=2; + else if (strcmp(*argv,"ecdsab283") == 0) ecdsa_doit[R_EC_B283]=2; + else if (strcmp(*argv,"ecdsab409") == 0) ecdsa_doit[R_EC_B409]=2; + else if (strcmp(*argv,"ecdsab571") == 0) ecdsa_doit[R_EC_B571]=2; + else if (strcmp(*argv,"ecdsa") == 0) + { + for (i=0; i < EC_NUM; i++) + ecdsa_doit[i]=1; + } + else +#endif +#ifndef OPENSSL_NO_ECDH + if (strcmp(*argv,"ecdhp160") == 0) ecdh_doit[R_EC_P160]=2; + else if (strcmp(*argv,"ecdhp224") == 0) ecdh_doit[R_EC_P224]=2; + else if (strcmp(*argv,"ecdhp256") == 0) ecdh_doit[R_EC_P256]=2; + else if (strcmp(*argv,"ecdhp384") == 0) ecdh_doit[R_EC_P384]=2; + else if (strcmp(*argv,"ecdhp521") == 0) ecdh_doit[R_EC_P521]=2; + else if (strcmp(*argv,"ecdhk163") == 0) ecdh_doit[R_EC_K163]=2; + else if (strcmp(*argv,"ecdhk233") == 0) ecdh_doit[R_EC_K233]=2; + else if (strcmp(*argv,"ecdhk283") == 0) ecdh_doit[R_EC_K283]=2; + else if (strcmp(*argv,"ecdhk409") == 0) ecdh_doit[R_EC_K409]=2; + else if (strcmp(*argv,"ecdhk571") == 0) ecdh_doit[R_EC_K571]=2; + else if (strcmp(*argv,"ecdhb163") == 0) ecdh_doit[R_EC_B163]=2; + else if (strcmp(*argv,"ecdhb233") == 0) ecdh_doit[R_EC_B233]=2; + else if (strcmp(*argv,"ecdhb283") == 0) ecdh_doit[R_EC_B283]=2; + else if (strcmp(*argv,"ecdhb409") == 0) ecdh_doit[R_EC_B409]=2; + else if (strcmp(*argv,"ecdhb571") == 0) ecdh_doit[R_EC_B571]=2; + else if (strcmp(*argv,"ecdh") == 0) + { + for (i=0; i < EC_NUM; i++) + ecdh_doit[i]=1; } else #endif @@ -769,6 +1060,8 @@ int MAIN(int argc, char **argv) #endif #ifndef OPENSSL_NO_SHA1 BIO_printf(bio_err,"sha1 "); + BIO_printf(bio_err,"sha256 "); + BIO_printf(bio_err,"sha512 "); #endif #ifndef OPENSSL_NO_RIPEMD160 BIO_printf(bio_err,"rmd160"); @@ -813,6 +1106,18 @@ int MAIN(int argc, char **argv) #ifndef OPENSSL_NO_DSA BIO_printf(bio_err,"dsa512 dsa1024 dsa2048\n"); #endif +#ifndef OPENSSL_NO_ECDSA + BIO_printf(bio_err,"ecdsap160 ecdsap224 ecdsap256 ecdsap384 ecdsap521\n"); + BIO_printf(bio_err,"ecdsak163 ecdsak233 ecdsak283 ecdsak409 ecdsak571\n"); + BIO_printf(bio_err,"ecdsab163 ecdsab233 ecdsab283 ecdsab409 ecdsab571\n"); + BIO_printf(bio_err,"ecdsa\n"); +#endif +#ifndef OPENSSL_NO_ECDH + BIO_printf(bio_err,"ecdhp160 ecdhp224 ecdhp256 ecdhp384 ecdhp521\n"); + BIO_printf(bio_err,"ecdhk163 ecdhk233 ecdhk283 ecdhk409 ecdhk571\n"); + BIO_printf(bio_err,"ecdhb163 ecdhb233 ecdhb283 ecdhb409 ecdhb571\n"); + BIO_printf(bio_err,"ecdh\n"); +#endif #ifndef OPENSSL_NO_IDEA BIO_printf(bio_err,"idea "); @@ -840,10 +1145,12 @@ int MAIN(int argc, char **argv) BIO_printf(bio_err,"\n"); BIO_printf(bio_err,"Available options:\n"); -#ifdef TIMES +#if defined(TIMES) || defined(USE_TOD) BIO_printf(bio_err,"-elapsed measure time in real time instead of CPU user time.\n"); #endif +#ifndef OPENSSL_NO_ENGINE BIO_printf(bio_err,"-engine e use engine e, possibly a hardware device.\n"); +#endif BIO_printf(bio_err,"-evp e use EVP e.\n"); BIO_printf(bio_err,"-decrypt time decryption instead of encryption (only EVP).\n"); BIO_printf(bio_err,"-mr produce machine readable output.\n"); @@ -952,10 +1259,10 @@ int MAIN(int argc, char **argv) BIO_printf(bio_err,"First we calculate the approximate speed ...\n"); count=10; do { - long i; + long it; count*=2; Time_F(START); - for (i=count; i; i--) + for (it=count; it; it--) DES_ecb_encrypt(buf_as_des_cblock,buf_as_des_cblock, &sch,DES_ENCRYPT); d=Time_F(STOP); @@ -976,6 +1283,11 @@ int MAIN(int argc, char **argv) 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_SHA256][0]=count; + c[D_SHA512][0]=count; for (i=1; igroup = EC_GROUP_new_by_nid(test_curves[j]); + /* Could not obtain group information */ + if (ecdsa[j]->group == NULL) + { + BIO_printf(bio_err,"ECDSA failure.Could not obtain group information\n"); + ERR_print_errors(bio_err); + rsa_count=1; + } + else + { +#if 1 + EC_GROUP_precompute_mult(ecdsa[j]->group, NULL); +#endif + /* Perform ECDSA signature test */ + EC_KEY_generate_key(ecdsa[j]); + ret = ECDSA_sign(0, buf, 20, ecdsasig, + &ecdsasiglen, ecdsa[j]); + if (ret == 0) + { + 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", + ecdsa_c[j][0], + test_curves_bits[j], + ECDSA_SECONDS); + + Time_F(START); + for (count=0,run=1; COND(ecdsa_c[j][0]); + count++) + { + ret=ECDSA_sign(0, buf, 20, + ecdsasig, &ecdsasiglen, + ecdsa[j]); + if (ret == 0) + { + BIO_printf(bio_err, "ECDSA sign failure\n"); + ERR_print_errors(bio_err); + count=1; + break; + } + } + d=Time_F(STOP); + + BIO_printf(bio_err, mr ? "+R5:%ld:%d:%.2f\n" : + "%ld %d bit ECDSA signs in %.2fs \n", + count, test_curves_bits[j], d); + ecdsa_results[j][0]=d/(double)count; + rsa_count=count; + } + + /* Perform ECDSA verification test */ + ret=ECDSA_verify(0, buf, 20, ecdsasig, + ecdsasiglen, ecdsa[j]); + if (ret != 1) + { + BIO_printf(bio_err,"ECDSA verify failure. No ECDSA verify will be done.\n"); + ERR_print_errors(bio_err); + ecdsa_doit[j] = 0; + } + else + { + pkey_print_message("verify","ecdsa", + ecdsa_c[j][1], + test_curves_bits[j], + ECDSA_SECONDS); + Time_F(START); + for (count=0,run=1; COND(ecdsa_c[j][1]); count++) + { + ret=ECDSA_verify(0, buf, 20, ecdsasig, ecdsasiglen, ecdsa[j]); + if (ret != 1) + { + BIO_printf(bio_err, "ECDSA verify failure\n"); + ERR_print_errors(bio_err); + count=1; + break; + } + } + d=Time_F(STOP); + BIO_printf(bio_err, mr? "+R6:%ld:%d:%.2f\n" + : "%ld %d bit ECDSA verify in %.2fs\n", + count, test_curves_bits[j], d); + ecdsa_results[j][1]=d/(double)count; + } + + if (rsa_count <= 1) + { + /* if longer than 10s, don't do any more */ + for (j++; jgroup = EC_GROUP_new_by_nid(test_curves[j]); + if (ecdh_a[j]->group == NULL) + { + BIO_printf(bio_err,"ECDH failure.\n"); + ERR_print_errors(bio_err); + rsa_count=1; + } + else + { + ecdh_b[j]->group = EC_GROUP_dup(ecdh_a[j]->group); + + /* generate two ECDH key pairs */ + if (!EC_KEY_generate_key(ecdh_a[j]) || + !EC_KEY_generate_key(ecdh_b[j])) + { + BIO_printf(bio_err,"ECDH key generation failure.\n"); + ERR_print_errors(bio_err); + rsa_count=1; + } + else + { + /* If field size is not more than 24 octets, then use SHA-1 hash of result; + * otherwise, use result (see section 4.8 of draft-ietf-tls-ecc-03.txt). + */ + int field_size, outlen; + void *(*kdf)(void *in, size_t inlen, void *out, size_t xoutlen); + field_size = EC_GROUP_get_degree(ecdh_a[j]->group); + if (field_size <= 24 * 8) + { + outlen = KDF1_SHA1_len; + kdf = KDF1_SHA1; + } + else + { + outlen = (field_size+7)/8; + kdf = NULL; + } + secret_size_a = ECDH_compute_key(secret_a, outlen, + ecdh_b[j]->pub_key, + ecdh_a[j], kdf); + secret_size_b = ECDH_compute_key(secret_b, outlen, + ecdh_a[j]->pub_key, + ecdh_b[j], kdf); + if (secret_size_a != secret_size_b) + ecdh_checks = 0; + else + ecdh_checks = 1; + + for (secret_idx = 0; + (secret_idx < secret_size_a) + && (ecdh_checks == 1); + secret_idx++) + { + if (secret_a[secret_idx] != secret_b[secret_idx]) + ecdh_checks = 0; + } + + if (ecdh_checks == 0) + { + BIO_printf(bio_err,"ECDH computations don't match.\n"); + ERR_print_errors(bio_err); + rsa_count=1; + } + + pkey_print_message("","ecdh", + ecdh_c[j][0], + test_curves_bits[j], + ECDH_SECONDS); + Time_F(START); + for (count=0,run=1; COND(ecdh_c[j][0]); count++) + { + ECDH_compute_key(secret_a, outlen, + ecdh_b[j]->pub_key, + ecdh_a[j], kdf); + } + d=Time_F(STOP); + BIO_printf(bio_err, mr ? "+R7:%ld:%d:%.2f\n" :"%ld %d-bit ECDH ops in %.2fs\n", + count, test_curves_bits[j], d); + ecdh_results[j][0]=d/(double)count; + rsa_count=count; + } + } + } + + if (rsa_count <= 1) + { + /* if longer than 10s, don't do any more */ + for (j++; j