openssl speed is quite useful for testing hardware support (among other
[openssl.git] / apps / speed.c
1 /* apps/speed.c */
2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
3  * All rights reserved.
4  *
5  * This package is an SSL implementation written
6  * by Eric Young (eay@cryptsoft.com).
7  * The implementation was written so as to conform with Netscapes SSL.
8  * 
9  * This library is free for commercial and non-commercial use as long as
10  * the following conditions are aheared to.  The following conditions
11  * apply to all code found in this distribution, be it the RC4, RSA,
12  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
13  * included with this distribution is covered by the same copyright terms
14  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
15  * 
16  * Copyright remains Eric Young's, and as such any Copyright notices in
17  * the code are not to be removed.
18  * If this package is used in a product, Eric Young should be given attribution
19  * as the author of the parts of the library used.
20  * This can be in the form of a textual message at program startup or
21  * in documentation (online or textual) provided with the package.
22  * 
23  * Redistribution and use in source and binary forms, with or without
24  * modification, are permitted provided that the following conditions
25  * are met:
26  * 1. Redistributions of source code must retain the copyright
27  *    notice, this list of conditions and the following disclaimer.
28  * 2. Redistributions in binary form must reproduce the above copyright
29  *    notice, this list of conditions and the following disclaimer in the
30  *    documentation and/or other materials provided with the distribution.
31  * 3. All advertising materials mentioning features or use of this software
32  *    must display the following acknowledgement:
33  *    "This product includes cryptographic software written by
34  *     Eric Young (eay@cryptsoft.com)"
35  *    The word 'cryptographic' can be left out if the rouines from the library
36  *    being used are not cryptographic related :-).
37  * 4. If you include any Windows specific code (or a derivative thereof) from 
38  *    the apps directory (application code) you must include an acknowledgement:
39  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
40  * 
41  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
42  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
44  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
45  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
46  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
47  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
49  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
50  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
51  * SUCH DAMAGE.
52  * 
53  * The licence and distribution terms for any publically available version or
54  * derivative of this code cannot be changed.  i.e. this code cannot simply be
55  * copied and put under another distribution licence
56  * [including the GNU Public Licence.]
57  */
58
59 /* most of this code has been pilfered from my libdes speed.c program */
60
61 #undef SECONDS
62 #define SECONDS         3       
63 #define RSA_SECONDS     10
64 #define DSA_SECONDS     10
65
66 /* 11-Sep-92 Andrew Daviel   Support for Silicon Graphics IRIX added */
67 /* 06-Apr-92 Luke Brennan    Support for VMS and add extra signal calls */
68
69 #undef PROG
70 #define PROG speed_main
71
72 #include <stdio.h>
73 #include <stdlib.h>
74 #include <signal.h>
75 #include <string.h>
76 #include <math.h>
77 #include "apps.h"
78 #ifdef OPENSSL_NO_STDIO
79 #define APPS_WIN16
80 #endif
81 #include <openssl/crypto.h>
82 #include <openssl/rand.h>
83 #include <openssl/err.h>
84 #include <openssl/engine.h>
85 #include <openssl/evp.h>
86 #include <openssl/objects.h>
87
88 #if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__) || defined(OPENSSL_SYS_MACOSX)
89 # define USE_TOD
90 #elif !defined(OPENSSL_SYS_MSDOS) && (!defined(OPENSSL_SYS_VMS) || defined(__DECC))
91 # define TIMES
92 #endif
93 #if !defined(_UNICOS) && !defined(__OpenBSD__) && !defined(sgi) && !defined(__FreeBSD__) && !(defined(__bsdi) || defined(__bsdi__)) && !defined(_AIX) && !defined(OPENSSL_SYS_MPE) && !defined(__NetBSD__) /* FIXME */
94 # define TIMEB
95 #endif
96
97 #ifndef _IRIX
98 # include <time.h>
99 #endif
100 #ifdef TIMES
101 # include <sys/types.h>
102 # include <sys/times.h>
103 #endif
104 #ifdef USE_TOD
105 # include <sys/time.h>
106 # include <sys/resource.h>
107 #endif
108
109 /* Depending on the VMS version, the tms structure is perhaps defined.
110    The __TMS macro will show if it was.  If it wasn't defined, we should
111    undefine TIMES, since that tells the rest of the program how things
112    should be handled.                           -- Richard Levitte */
113 #if defined(OPENSSL_SYS_VMS_DECC) && !defined(__TMS)
114 #undef TIMES
115 #endif
116
117 #ifdef TIMEB
118 #include <sys/timeb.h>
119 #endif
120
121 #if !defined(TIMES) && !defined(TIMEB) && !defined(USE_TOD)
122 #error "It seems neither struct tms nor struct timeb is supported in this platform!"
123 #endif
124
125 #if defined(sun) || defined(__ultrix)
126 #define _POSIX_SOURCE
127 #include <limits.h>
128 #include <sys/param.h>
129 #endif
130
131 #ifndef OPENSSL_NO_DES
132 #include <openssl/des.h>
133 #endif
134 #ifndef OPENSSL_NO_MD2
135 #include <openssl/md2.h>
136 #endif
137 #ifndef OPENSSL_NO_MDC2
138 #include <openssl/mdc2.h>
139 #endif
140 #ifndef OPENSSL_NO_MD4
141 #include <openssl/md4.h>
142 #endif
143 #ifndef OPENSSL_NO_MD5
144 #include <openssl/md5.h>
145 #endif
146 #ifndef OPENSSL_NO_HMAC
147 #include <openssl/hmac.h>
148 #endif
149 #include <openssl/evp.h>
150 #ifndef OPENSSL_NO_SHA
151 #include <openssl/sha.h>
152 #endif
153 #ifndef OPENSSL_NO_RIPEMD
154 #include <openssl/ripemd.h>
155 #endif
156 #ifndef OPENSSL_NO_RC4
157 #include <openssl/rc4.h>
158 #endif
159 #ifndef OPENSSL_NO_RC5
160 #include <openssl/rc5.h>
161 #endif
162 #ifndef OPENSSL_NO_RC2
163 #include <openssl/rc2.h>
164 #endif
165 #ifndef OPENSSL_NO_IDEA
166 #include <openssl/idea.h>
167 #endif
168 #ifndef OPENSSL_NO_BF
169 #include <openssl/blowfish.h>
170 #endif
171 #ifndef OPENSSL_NO_CAST
172 #include <openssl/cast.h>
173 #endif
174 #ifndef OPENSSL_NO_RSA
175 #include <openssl/rsa.h>
176 #include "./testrsa.h"
177 #endif
178 #include <openssl/x509.h>
179 #ifndef OPENSSL_NO_DSA
180 #include "./testdsa.h"
181 #endif
182
183 /* The following if from times(3) man page.  It may need to be changed */
184 #ifndef HZ
185 # ifndef CLK_TCK
186 #  ifndef _BSD_CLK_TCK_ /* FreeBSD hack */
187 #   define HZ   100.0
188 #  else /* _BSD_CLK_TCK_ */
189 #   define HZ ((double)_BSD_CLK_TCK_)
190 #  endif
191 # else /* CLK_TCK */
192 #  define HZ ((double)CLK_TCK)
193 # endif
194 #endif
195
196 #undef BUFSIZE
197 #define BUFSIZE ((long)1024*8+1)
198 int run=0;
199
200 static double Time_F(int s, int usertime);
201 static void print_message(const char *s,long num,int length);
202 static void pkey_print_message(char *str,char *str2,long num,int bits,int sec);
203 #ifdef SIGALRM
204 #if defined(__STDC__) || defined(sgi) || defined(_AIX)
205 #define SIGRETTYPE void
206 #else
207 #define SIGRETTYPE int
208 #endif 
209
210 static SIGRETTYPE sig_done(int sig);
211 static SIGRETTYPE sig_done(int sig)
212         {
213         signal(SIGALRM,sig_done);
214         run=0;
215 #ifdef LINT
216         sig=sig;
217 #endif
218         }
219 #endif
220
221 #define START   0
222 #define STOP    1
223
224 static double Time_F(int s, int usertime)
225         {
226         double ret;
227
228 #ifdef USE_TOD
229         if(usertime)
230             {
231                 static struct rusage tstart,tend;
232
233                 if (s == START)
234                         {
235                         getrusage(RUSAGE_SELF,&tstart);
236                         return(0);
237                         }
238                 else
239                         {
240                         long i;
241
242                         getrusage(RUSAGE_SELF,&tend);
243                         i=(long)tend.ru_utime.tv_usec-(long)tstart.ru_utime.tv_usec;
244                         ret=((double)(tend.ru_utime.tv_sec-tstart.ru_utime.tv_sec))
245                           +((double)i)/1000000.0;
246                         return((ret < 0.001)?0.001:ret);
247                         }
248                 }
249         else
250                 {
251                 static struct timeval tstart,tend;
252                 long i;
253
254                 if (s == START)
255                         {
256                         gettimeofday(&tstart,NULL);
257                         return(0);
258                         }
259                 else
260                         {
261                         gettimeofday(&tend,NULL);
262                         i=(long)tend.tv_usec-(long)tstart.tv_usec;
263                         ret=((double)(tend.tv_sec-tstart.tv_sec))+((double)i)/1000000.0;
264                         return((ret < 0.001)?0.001:ret);
265                         }
266                 }
267 #else  /* ndef USE_TOD */
268                 
269 # ifdef TIMES
270         if (usertime)
271                 {
272                 static struct tms tstart,tend;
273
274                 if (s == START)
275                         {
276                         times(&tstart);
277                         return(0);
278                         }
279                 else
280                         {
281                         times(&tend);
282                         ret=((double)(tend.tms_utime-tstart.tms_utime))/HZ;
283                         return((ret < 1e-3)?1e-3:ret);
284                         }
285                 }
286 # endif /* times() */
287 # if defined(TIMES) && defined(TIMEB)
288         else
289 # endif
290 # ifdef TIMEB
291                 {
292                 static struct timeb tstart,tend;
293                 long i;
294
295                 if (s == START)
296                         {
297                         ftime(&tstart);
298                         return(0);
299                         }
300                 else
301                         {
302                         ftime(&tend);
303                         i=(long)tend.millitm-(long)tstart.millitm;
304                         ret=((double)(tend.time-tstart.time))+((double)i)/1000.0;
305                         return((ret < 0.001)?0.001:ret);
306                         }
307                 }
308 # endif
309 #endif
310         }
311
312 int MAIN(int, char **);
313
314 int MAIN(int argc, char **argv)
315         {
316         ENGINE *e;
317         unsigned char *buf=NULL,*buf2=NULL;
318         int mret=1;
319 #define ALGOR_NUM       16
320 #define SIZE_NUM        5
321 #define RSA_NUM         4
322 #define DSA_NUM         3
323         long count,rsa_count,save_count=0;
324         int i,j,k;
325 #ifndef OPENSSL_NO_RSA
326         unsigned rsa_num;
327 #endif
328 #ifndef OPENSSL_NO_MD2
329         unsigned char md2[MD2_DIGEST_LENGTH];
330 #endif
331 #ifndef OPENSSL_NO_MDC2
332         unsigned char mdc2[MDC2_DIGEST_LENGTH];
333 #endif
334 #ifndef OPENSSL_NO_MD4
335         unsigned char md4[MD4_DIGEST_LENGTH];
336 #endif
337 #ifndef OPENSSL_NO_MD5
338         unsigned char md5[MD5_DIGEST_LENGTH];
339         unsigned char hmac[MD5_DIGEST_LENGTH];
340 #endif
341 #ifndef OPENSSL_NO_SHA
342         unsigned char sha[SHA_DIGEST_LENGTH];
343 #endif
344 #ifndef OPENSSL_NO_RIPEMD
345         unsigned char rmd160[RIPEMD160_DIGEST_LENGTH];
346 #endif
347 #ifndef OPENSSL_NO_RC4
348         RC4_KEY rc4_ks;
349 #endif
350 #ifndef OPENSSL_NO_RC5
351         RC5_32_KEY rc5_ks;
352 #endif
353 #ifndef OPENSSL_NO_RC2
354         RC2_KEY rc2_ks;
355 #endif
356 #ifndef OPENSSL_NO_IDEA
357         IDEA_KEY_SCHEDULE idea_ks;
358 #endif
359 #ifndef OPENSSL_NO_BF
360         BF_KEY bf_ks;
361 #endif
362 #ifndef OPENSSL_NO_CAST
363         CAST_KEY cast_ks;
364 #endif
365         static unsigned char key16[16]=
366                 {0x12,0x34,0x56,0x78,0x9a,0xbc,0xde,0xf0,
367                  0x34,0x56,0x78,0x9a,0xbc,0xde,0xf0,0x12};
368         unsigned char iv[8];
369 #ifndef OPENSSL_NO_DES
370         des_cblock *buf_as_des_cblock = NULL;
371         static des_cblock key ={0x12,0x34,0x56,0x78,0x9a,0xbc,0xde,0xf0};
372         static des_cblock key2={0x34,0x56,0x78,0x9a,0xbc,0xde,0xf0,0x12};
373         static des_cblock key3={0x56,0x78,0x9a,0xbc,0xde,0xf0,0x12,0x34};
374         des_key_schedule sch,sch2,sch3;
375 #endif
376 #define D_MD2           0
377 #define D_MDC2          1
378 #define D_MD4           2
379 #define D_MD5           3
380 #define D_HMAC          4
381 #define D_SHA1          5
382 #define D_RMD160        6
383 #define D_RC4           7
384 #define D_CBC_DES       8
385 #define D_EDE3_DES      9
386 #define D_CBC_IDEA      10
387 #define D_CBC_RC2       11
388 #define D_CBC_RC5       12
389 #define D_CBC_BF        13
390 #define D_CBC_CAST      14
391 #define D_EVP           15
392         double d,results[ALGOR_NUM][SIZE_NUM];
393         static int lengths[SIZE_NUM]={8,64,256,1024,8*1024};
394         long c[ALGOR_NUM][SIZE_NUM];
395         static const char *names[ALGOR_NUM]={
396                 "md2","mdc2","md4","md5","hmac(md5)","sha1","rmd160","rc4",
397                 "des cbc","des ede3","idea cbc",
398                 "rc2 cbc","rc5-32/12 cbc","blowfish cbc","cast cbc"};
399 #define R_DSA_512       0
400 #define R_DSA_1024      1
401 #define R_DSA_2048      2
402 #define R_RSA_512       0
403 #define R_RSA_1024      1
404 #define R_RSA_2048      2
405 #define R_RSA_4096      3
406 #ifndef OPENSSL_NO_RSA
407         RSA *rsa_key[RSA_NUM];
408         long rsa_c[RSA_NUM][2];
409         double rsa_results[RSA_NUM][2];
410         static unsigned int rsa_bits[RSA_NUM]={512,1024,2048,4096};
411         static unsigned char *rsa_data[RSA_NUM]=
412                 {test512,test1024,test2048,test4096};
413         static int rsa_data_length[RSA_NUM]={
414                 sizeof(test512),sizeof(test1024),
415                 sizeof(test2048),sizeof(test4096)};
416 #endif
417 #ifndef OPENSSL_NO_DSA
418         DSA *dsa_key[DSA_NUM];
419         long dsa_c[DSA_NUM][2];
420         double dsa_results[DSA_NUM][2];
421         static unsigned int dsa_bits[DSA_NUM]={512,1024,2048};
422 #endif
423         int rsa_doit[RSA_NUM];
424         int dsa_doit[DSA_NUM];
425         int doit[ALGOR_NUM];
426         int pr_header=0;
427         int usertime=1;
428         const EVP_CIPHER *evp=NULL;
429         int decrypt=0;
430
431 #ifndef TIMES
432         usertime=-1;
433 #endif
434
435         apps_startup();
436         memset(results, 0, sizeof(results));
437 #ifndef OPENSSL_NO_DSA
438         memset(dsa_key,0,sizeof(dsa_key));
439 #endif
440
441         if (bio_err == NULL)
442                 if ((bio_err=BIO_new(BIO_s_file())) != NULL)
443                         BIO_set_fp(bio_err,stderr,BIO_NOCLOSE|BIO_FP_TEXT);
444
445 #ifndef OPENSSL_NO_RSA
446         memset(rsa_key,0,sizeof(rsa_key));
447         for (i=0; i<RSA_NUM; i++)
448                 rsa_key[i]=NULL;
449 #endif
450
451         if ((buf=(unsigned char *)OPENSSL_malloc((int)BUFSIZE)) == NULL)
452                 {
453                 BIO_printf(bio_err,"out of memory\n");
454                 goto end;
455                 }
456 #ifndef OPENSSL_NO_DES
457         buf_as_des_cblock = (des_cblock *)buf;
458 #endif
459         if ((buf2=(unsigned char *)OPENSSL_malloc((int)BUFSIZE)) == NULL)
460                 {
461                 BIO_printf(bio_err,"out of memory\n");
462                 goto end;
463                 }
464
465         memset(c,0,sizeof(c));
466         memset(iv,0,sizeof(iv));
467
468         for (i=0; i<ALGOR_NUM; i++)
469                 doit[i]=0;
470         for (i=0; i<RSA_NUM; i++)
471                 rsa_doit[i]=0;
472         for (i=0; i<DSA_NUM; i++)
473                 dsa_doit[i]=0;
474         
475         j=0;
476         argc--;
477         argv++;
478         while (argc)
479                 {
480                 if      ((argc > 0) && (strcmp(*argv,"-elapsed") == 0))
481                         usertime = 0;
482                 else if ((argc > 0) && (strcmp(*argv,"-evp") == 0))
483                         {
484                         argc--;
485                         argv++;
486                         if(argc == 0)
487                                 {
488                                 BIO_printf(bio_err,"no EVP given\n");
489                                 goto end;
490                                 }
491                         evp=EVP_get_cipherbyname(*argv);
492                         if(!evp)
493                                 {
494                                 BIO_printf(bio_err,"%s is an unknown cipher\n",*argv);
495                                 goto end;
496                                 }
497                         doit[D_EVP]=1;
498                         }
499                 else if(argc > 0 && !strcmp(*argv,"-decrypt"))
500                         decrypt=1;
501                 else
502                 if      ((argc > 0) && (strcmp(*argv,"-engine") == 0))
503                         {
504                         argc--;
505                         argv++;
506                         if(argc == 0)
507                                 {
508                                 BIO_printf(bio_err,"no engine given\n");
509                                 goto end;
510                                 }
511                         e = setup_engine(bio_err, *argv, 0);
512                         /* j will be increased again further down.  We just
513                            don't want speed to confuse an engine with an
514                            algorithm, especially when none is given (which
515                            means all of them should be run) */
516                         j--;
517                         }
518                 else
519 #ifndef OPENSSL_NO_MD2
520                 if      (strcmp(*argv,"md2") == 0) doit[D_MD2]=1;
521                 else
522 #endif
523 #ifndef OPENSSL_NO_MDC2
524                         if (strcmp(*argv,"mdc2") == 0) doit[D_MDC2]=1;
525                 else
526 #endif
527 #ifndef OPENSSL_NO_MD4
528                         if (strcmp(*argv,"md4") == 0) doit[D_MD4]=1;
529                 else
530 #endif
531 #ifndef OPENSSL_NO_MD5
532                         if (strcmp(*argv,"md5") == 0) doit[D_MD5]=1;
533                 else
534 #endif
535 #ifndef OPENSSL_NO_MD5
536                         if (strcmp(*argv,"hmac") == 0) doit[D_HMAC]=1;
537                 else
538 #endif
539 #ifndef OPENSSL_NO_SHA
540                         if (strcmp(*argv,"sha1") == 0) doit[D_SHA1]=1;
541                 else
542                         if (strcmp(*argv,"sha") == 0) doit[D_SHA1]=1;
543                 else
544 #endif
545 #ifndef OPENSSL_NO_RIPEMD
546                         if (strcmp(*argv,"ripemd") == 0) doit[D_RMD160]=1;
547                 else
548                         if (strcmp(*argv,"rmd160") == 0) doit[D_RMD160]=1;
549                 else
550                         if (strcmp(*argv,"ripemd160") == 0) doit[D_RMD160]=1;
551                 else
552 #endif
553 #ifndef OPENSSL_NO_RC4
554                         if (strcmp(*argv,"rc4") == 0) doit[D_RC4]=1;
555                 else 
556 #endif
557 #ifndef OPENSSL_NO_DES
558                         if (strcmp(*argv,"des-cbc") == 0) doit[D_CBC_DES]=1;
559                 else    if (strcmp(*argv,"des-ede3") == 0) doit[D_EDE3_DES]=1;
560                 else
561 #endif
562 #ifndef OPENSSL_NO_RSA
563 #if 0 /* was: #ifdef RSAref */
564                         if (strcmp(*argv,"rsaref") == 0) 
565                         {
566                         RSA_set_default_openssl_method(RSA_PKCS1_RSAref());
567                         j--;
568                         }
569                 else
570 #endif
571 #ifndef RSA_NULL
572                         if (strcmp(*argv,"openssl") == 0) 
573                         {
574                         RSA_set_default_openssl_method(RSA_PKCS1_SSLeay());
575                         j--;
576                         }
577                 else
578 #endif
579 #endif /* !OPENSSL_NO_RSA */
580                      if (strcmp(*argv,"dsa512") == 0) dsa_doit[R_DSA_512]=2;
581                 else if (strcmp(*argv,"dsa1024") == 0) dsa_doit[R_DSA_1024]=2;
582                 else if (strcmp(*argv,"dsa2048") == 0) dsa_doit[R_DSA_2048]=2;
583                 else if (strcmp(*argv,"rsa512") == 0) rsa_doit[R_RSA_512]=2;
584                 else if (strcmp(*argv,"rsa1024") == 0) rsa_doit[R_RSA_1024]=2;
585                 else if (strcmp(*argv,"rsa2048") == 0) rsa_doit[R_RSA_2048]=2;
586                 else if (strcmp(*argv,"rsa4096") == 0) rsa_doit[R_RSA_4096]=2;
587                 else
588 #ifndef OPENSSL_NO_RC2
589                      if (strcmp(*argv,"rc2-cbc") == 0) doit[D_CBC_RC2]=1;
590                 else if (strcmp(*argv,"rc2") == 0) doit[D_CBC_RC2]=1;
591                 else
592 #endif
593 #ifndef OPENSSL_NO_RC5
594                      if (strcmp(*argv,"rc5-cbc") == 0) doit[D_CBC_RC5]=1;
595                 else if (strcmp(*argv,"rc5") == 0) doit[D_CBC_RC5]=1;
596                 else
597 #endif
598 #ifndef OPENSSL_NO_IDEA
599                      if (strcmp(*argv,"idea-cbc") == 0) doit[D_CBC_IDEA]=1;
600                 else if (strcmp(*argv,"idea") == 0) doit[D_CBC_IDEA]=1;
601                 else
602 #endif
603 #ifndef OPENSSL_NO_BF
604                      if (strcmp(*argv,"bf-cbc") == 0) doit[D_CBC_BF]=1;
605                 else if (strcmp(*argv,"blowfish") == 0) doit[D_CBC_BF]=1;
606                 else if (strcmp(*argv,"bf") == 0) doit[D_CBC_BF]=1;
607                 else
608 #endif
609 #ifndef OPENSSL_NO_CAST
610                      if (strcmp(*argv,"cast-cbc") == 0) doit[D_CBC_CAST]=1;
611                 else if (strcmp(*argv,"cast") == 0) doit[D_CBC_CAST]=1;
612                 else if (strcmp(*argv,"cast5") == 0) doit[D_CBC_CAST]=1;
613                 else
614 #endif
615 #ifndef OPENSSL_NO_DES
616                         if (strcmp(*argv,"des") == 0)
617                         {
618                         doit[D_CBC_DES]=1;
619                         doit[D_EDE3_DES]=1;
620                         }
621                 else
622 #endif
623 #ifndef OPENSSL_NO_RSA
624                         if (strcmp(*argv,"rsa") == 0)
625                         {
626                         rsa_doit[R_RSA_512]=1;
627                         rsa_doit[R_RSA_1024]=1;
628                         rsa_doit[R_RSA_2048]=1;
629                         rsa_doit[R_RSA_4096]=1;
630                         }
631                 else
632 #endif
633 #ifndef OPENSSL_NO_DSA
634                         if (strcmp(*argv,"dsa") == 0)
635                         {
636                         dsa_doit[R_DSA_512]=1;
637                         dsa_doit[R_DSA_1024]=1;
638                         }
639                 else
640 #endif
641                         {
642                         BIO_printf(bio_err,"Error: bad option or value\n");
643                         BIO_printf(bio_err,"\n");
644                         BIO_printf(bio_err,"Available values:\n");
645 #ifndef OPENSSL_NO_MD2
646                         BIO_printf(bio_err,"md2      ");
647 #endif
648 #ifndef OPENSSL_NO_MDC2
649                         BIO_printf(bio_err,"mdc2     ");
650 #endif
651 #ifndef OPENSSL_NO_MD4
652                         BIO_printf(bio_err,"md4      ");
653 #endif
654 #ifndef OPENSSL_NO_MD5
655                         BIO_printf(bio_err,"md5      ");
656 #ifndef OPENSSL_NO_HMAC
657                         BIO_printf(bio_err,"hmac     ");
658 #endif
659 #endif
660 #ifndef OPENSSL_NO_SHA1
661                         BIO_printf(bio_err,"sha1     ");
662 #endif
663 #ifndef OPENSSL_NO_RIPEMD160
664                         BIO_printf(bio_err,"rmd160");
665 #endif
666 #if !defined(OPENSSL_NO_MD2) || !defined(OPENSSL_NO_MDC2) || \
667     !defined(OPENSSL_NO_MD4) || !defined(OPENSSL_NO_MD5) || \
668     !defined(OPENSSL_NO_SHA1) || !defined(OPENSSL_NO_RIPEMD160)
669                         BIO_printf(bio_err,"\n");
670 #endif
671
672 #ifndef OPENSSL_NO_IDEA
673                         BIO_printf(bio_err,"idea-cbc ");
674 #endif
675 #ifndef OPENSSL_NO_RC2
676                         BIO_printf(bio_err,"rc2-cbc  ");
677 #endif
678 #ifndef OPENSSL_NO_RC5
679                         BIO_printf(bio_err,"rc5-cbc  ");
680 #endif
681 #ifndef OPENSSL_NO_BF
682                         BIO_printf(bio_err,"bf-cbc");
683 #endif
684 #if !defined(OPENSSL_NO_IDEA) || !defined(OPENSSL_NO_RC2) || \
685     !defined(OPENSSL_NO_BF) || !defined(OPENSSL_NO_RC5)
686                         BIO_printf(bio_err,"\n");
687 #endif
688
689                         BIO_printf(bio_err,"des-cbc  des-ede3 ");
690 #ifndef OPENSSL_NO_RC4
691                         BIO_printf(bio_err,"rc4");
692 #endif
693                         BIO_printf(bio_err,"\n");
694
695 #ifndef OPENSSL_NO_RSA
696                         BIO_printf(bio_err,"rsa512   rsa1024  rsa2048  rsa4096\n");
697 #endif
698
699 #ifndef OPENSSL_NO_DSA
700                         BIO_printf(bio_err,"dsa512   dsa1024  dsa2048\n");
701 #endif
702
703 #ifndef OPENSSL_NO_IDEA
704                         BIO_printf(bio_err,"idea     ");
705 #endif
706 #ifndef OPENSSL_NO_RC2
707                         BIO_printf(bio_err,"rc2      ");
708 #endif
709 #ifndef OPENSSL_NO_DES
710                         BIO_printf(bio_err,"des      ");
711 #endif
712 #ifndef OPENSSL_NO_RSA
713                         BIO_printf(bio_err,"rsa      ");
714 #endif
715 #ifndef OPENSSL_NO_BF
716                         BIO_printf(bio_err,"blowfish");
717 #endif
718 #if !defined(OPENSSL_NO_IDEA) || !defined(OPENSSL_NO_RC2) || \
719     !defined(OPENSSL_NO_DES) || !defined(OPENSSL_NO_RSA) || \
720     !defined(OPENSSL_NO_BF)
721                         BIO_printf(bio_err,"\n");
722 #endif
723
724                         BIO_printf(bio_err,"\n");
725                         BIO_printf(bio_err,"Available options:\n");
726 #ifdef TIMES
727                         BIO_printf(bio_err,"-elapsed        measure time in real time instead of CPU user time.\n");
728 #endif
729                         BIO_printf(bio_err,"-engine e       use engine e, possibly a hardware device.\n");
730                         goto end;
731                         }
732                 argc--;
733                 argv++;
734                 j++;
735                 }
736
737         if (j == 0)
738                 {
739                 for (i=0; i<ALGOR_NUM; i++)
740                         {
741                         if (i != D_EVP)
742                                 doit[i]=1;
743                         }
744                 for (i=0; i<RSA_NUM; i++)
745                         rsa_doit[i]=1;
746                 for (i=0; i<DSA_NUM; i++)
747                         dsa_doit[i]=1;
748                 }
749         for (i=0; i<ALGOR_NUM; i++)
750                 if (doit[i]) pr_header++;
751
752         if (usertime == 0)
753                 BIO_printf(bio_err,"You have chosen to measure elapsed time instead of user CPU time.\n");
754         if (usertime <= 0)
755                 {
756                 BIO_printf(bio_err,"To get the most accurate results, try to run this\n");
757                 BIO_printf(bio_err,"program when this computer is idle.\n");
758                 }
759
760 #ifndef OPENSSL_NO_RSA
761         for (i=0; i<RSA_NUM; i++)
762                 {
763                 const unsigned char *p;
764
765                 p=rsa_data[i];
766                 rsa_key[i]=d2i_RSAPrivateKey(NULL,&p,rsa_data_length[i]);
767                 if (rsa_key[i] == NULL)
768                         {
769                         BIO_printf(bio_err,"internal error loading RSA key number %d\n",i);
770                         goto end;
771                         }
772 #if 0
773                 else
774                         {
775                         BIO_printf(bio_err,"Loaded RSA key, %d bit modulus and e= 0x",BN_num_bits(rsa_key[i]->n));
776                         BN_print(bio_err,rsa_key[i]->e);
777                         BIO_printf(bio_err,"\n");
778                         }
779 #endif
780                 }
781 #endif
782
783 #ifndef OPENSSL_NO_DSA
784         dsa_key[0]=get_dsa512();
785         dsa_key[1]=get_dsa1024();
786         dsa_key[2]=get_dsa2048();
787 #endif
788
789 #ifndef OPENSSL_NO_DES
790         des_set_key_unchecked(&key,sch);
791         des_set_key_unchecked(&key2,sch2);
792         des_set_key_unchecked(&key3,sch3);
793 #endif
794 #ifndef OPENSSL_NO_IDEA
795         idea_set_encrypt_key(key16,&idea_ks);
796 #endif
797 #ifndef OPENSSL_NO_RC4
798         RC4_set_key(&rc4_ks,16,key16);
799 #endif
800 #ifndef OPENSSL_NO_RC2
801         RC2_set_key(&rc2_ks,16,key16,128);
802 #endif
803 #ifndef OPENSSL_NO_RC5
804         RC5_32_set_key(&rc5_ks,16,key16,12);
805 #endif
806 #ifndef OPENSSL_NO_BF
807         BF_set_key(&bf_ks,16,key16);
808 #endif
809 #ifndef OPENSSL_NO_CAST
810         CAST_set_key(&cast_ks,16,key16);
811 #endif
812 #ifndef OPENSSL_NO_RSA
813         memset(rsa_c,0,sizeof(rsa_c));
814 #endif
815 #ifndef SIGALRM
816 #ifndef OPENSSL_NO_DES
817         BIO_printf(bio_err,"First we calculate the approximate speed ...\n");
818         count=10;
819         do      {
820                 long i;
821                 count*=2;
822                 Time_F(START,usertime);
823                 for (i=count; i; i--)
824                         des_ecb_encrypt(buf_as_des_cblock,buf_as_des_cblock,
825                                 &(sch[0]),DES_ENCRYPT);
826                 d=Time_F(STOP,usertime);
827                 } while (d <3);
828         save_count=count;
829         c[D_MD2][0]=count/10;
830         c[D_MDC2][0]=count/10;
831         c[D_MD4][0]=count;
832         c[D_MD5][0]=count;
833         c[D_HMAC][0]=count;
834         c[D_SHA1][0]=count;
835         c[D_RMD160][0]=count;
836         c[D_RC4][0]=count*5;
837         c[D_CBC_DES][0]=count;
838         c[D_EDE3_DES][0]=count/3;
839         c[D_CBC_IDEA][0]=count;
840         c[D_CBC_RC2][0]=count;
841         c[D_CBC_RC5][0]=count;
842         c[D_CBC_BF][0]=count;
843         c[D_CBC_CAST][0]=count;
844
845         for (i=1; i<SIZE_NUM; i++)
846                 {
847                 c[D_MD2][i]=c[D_MD2][0]*4*lengths[0]/lengths[i];
848                 c[D_MDC2][i]=c[D_MDC2][0]*4*lengths[0]/lengths[i];
849                 c[D_MD4][i]=c[D_MD4][0]*4*lengths[0]/lengths[i];
850                 c[D_MD5][i]=c[D_MD5][0]*4*lengths[0]/lengths[i];
851                 c[D_HMAC][i]=c[D_HMAC][0]*4*lengths[0]/lengths[i];
852                 c[D_SHA1][i]=c[D_SHA1][0]*4*lengths[0]/lengths[i];
853                 c[D_RMD160][i]=c[D_RMD160][0]*4*lengths[0]/lengths[i];
854                 }
855         for (i=1; i<SIZE_NUM; i++)
856                 {
857                 long l0,l1;
858
859                 l0=(long)lengths[i-1];
860                 l1=(long)lengths[i];
861                 c[D_RC4][i]=c[D_RC4][i-1]*l0/l1;
862                 c[D_CBC_DES][i]=c[D_CBC_DES][i-1]*l0/l1;
863                 c[D_EDE3_DES][i]=c[D_EDE3_DES][i-1]*l0/l1;
864                 c[D_CBC_IDEA][i]=c[D_CBC_IDEA][i-1]*l0/l1;
865                 c[D_CBC_RC2][i]=c[D_CBC_RC2][i-1]*l0/l1;
866                 c[D_CBC_RC5][i]=c[D_CBC_RC5][i-1]*l0/l1;
867                 c[D_CBC_BF][i]=c[D_CBC_BF][i-1]*l0/l1;
868                 c[D_CBC_CAST][i]=c[D_CBC_CAST][i-1]*l0/l1;
869                 }
870 #ifndef OPENSSL_NO_RSA
871         rsa_c[R_RSA_512][0]=count/2000;
872         rsa_c[R_RSA_512][1]=count/400;
873         for (i=1; i<RSA_NUM; i++)
874                 {
875                 rsa_c[i][0]=rsa_c[i-1][0]/8;
876                 rsa_c[i][1]=rsa_c[i-1][1]/4;
877                 if ((rsa_doit[i] <= 1) && (rsa_c[i][0] == 0))
878                         rsa_doit[i]=0;
879                 else
880                         {
881                         if (rsa_c[i][0] == 0)
882                                 {
883                                 rsa_c[i][0]=1;
884                                 rsa_c[i][1]=20;
885                                 }
886                         }                               
887                 }
888 #endif
889
890 #ifndef OPENSSL_NO_DSA
891         dsa_c[R_DSA_512][0]=count/1000;
892         dsa_c[R_DSA_512][1]=count/1000/2;
893         for (i=1; i<DSA_NUM; i++)
894                 {
895                 dsa_c[i][0]=dsa_c[i-1][0]/4;
896                 dsa_c[i][1]=dsa_c[i-1][1]/4;
897                 if ((dsa_doit[i] <= 1) && (dsa_c[i][0] == 0))
898                         dsa_doit[i]=0;
899                 else
900                         {
901                         if (dsa_c[i] == 0)
902                                 {
903                                 dsa_c[i][0]=1;
904                                 dsa_c[i][1]=1;
905                                 }
906                         }                               
907                 }
908 #endif
909
910 #define COND(d) (count < (d))
911 #define COUNT(d) (d)
912 #else
913 /* not worth fixing */
914 # error "You cannot disable DES on systems without SIGALRM."
915 #endif /* OPENSSL_NO_DES */
916 #else
917 #define COND(c) (run)
918 #define COUNT(d) (count)
919         signal(SIGALRM,sig_done);
920 #endif /* SIGALRM */
921
922 #ifndef OPENSSL_NO_MD2
923         if (doit[D_MD2])
924                 {
925                 for (j=0; j<SIZE_NUM; j++)
926                         {
927                         print_message(names[D_MD2],c[D_MD2][j],lengths[j]);
928                         Time_F(START,usertime);
929                         for (count=0,run=1; COND(c[D_MD2][j]); count++)
930                                 EVP_Digest(buf,(unsigned long)lengths[j],&(md2[0]),NULL,EVP_md2());
931                         d=Time_F(STOP,usertime);
932                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
933                                 count,names[D_MD2],d);
934                         results[D_MD2][j]=((double)count)/d*lengths[j];
935                         }
936                 }
937 #endif
938 #ifndef OPENSSL_NO_MDC2
939         if (doit[D_MDC2])
940                 {
941                 for (j=0; j<SIZE_NUM; j++)
942                         {
943                         print_message(names[D_MDC2],c[D_MDC2][j],lengths[j]);
944                         Time_F(START,usertime);
945                         for (count=0,run=1; COND(c[D_MDC2][j]); count++)
946                                 EVP_Digest(buf,(unsigned long)lengths[j],&(mdc2[0]),NULL,EVP_mdc2());
947                         d=Time_F(STOP,usertime);
948                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
949                                 count,names[D_MDC2],d);
950                         results[D_MDC2][j]=((double)count)/d*lengths[j];
951                         }
952                 }
953 #endif
954
955 #ifndef OPENSSL_NO_MD4
956         if (doit[D_MD4])
957                 {
958                 for (j=0; j<SIZE_NUM; j++)
959                         {
960                         print_message(names[D_MD4],c[D_MD4][j],lengths[j]);
961                         Time_F(START,usertime);
962                         for (count=0,run=1; COND(c[D_MD4][j]); count++)
963                                 EVP_Digest(&(buf[0]),(unsigned long)lengths[j],&(md4[0]),NULL,EVP_md4());
964                         d=Time_F(STOP,usertime);
965                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
966                                 count,names[D_MD4],d);
967                         results[D_MD4][j]=((double)count)/d*lengths[j];
968                         }
969                 }
970 #endif
971
972 #ifndef OPENSSL_NO_MD5
973         if (doit[D_MD5])
974                 {
975                 for (j=0; j<SIZE_NUM; j++)
976                         {
977                         print_message(names[D_MD5],c[D_MD5][j],lengths[j]);
978                         Time_F(START,usertime);
979                         for (count=0,run=1; COND(c[D_MD5][j]); count++)
980                                 EVP_Digest(&(buf[0]),(unsigned long)lengths[j],&(md5[0]),NULL,EVP_md5());
981                         d=Time_F(STOP,usertime);
982                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
983                                 count,names[D_MD5],d);
984                         results[D_MD5][j]=((double)count)/d*lengths[j];
985                         }
986                 }
987 #endif
988
989 #if !defined(OPENSSL_NO_MD5) && !defined(OPENSSL_NO_HMAC)
990         if (doit[D_HMAC])
991                 {
992                 HMAC_CTX hctx;
993                 HMAC_Init(&hctx,(unsigned char *)"This is a key...",
994                         16,EVP_md5());
995
996                 for (j=0; j<SIZE_NUM; j++)
997                         {
998                         print_message(names[D_HMAC],c[D_HMAC][j],lengths[j]);
999                         Time_F(START,usertime);
1000                         for (count=0,run=1; COND(c[D_HMAC][j]); count++)
1001                                 {
1002                                 HMAC_Init(&hctx,NULL,0,NULL);
1003                                 HMAC_Update(&hctx,buf,lengths[j]);
1004                                 HMAC_Final(&hctx,&(hmac[0]),NULL);
1005                                 }
1006                         d=Time_F(STOP,usertime);
1007                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1008                                 count,names[D_HMAC],d);
1009                         results[D_HMAC][j]=((double)count)/d*lengths[j];
1010                         }
1011                 HMAC_cleanup(&hctx);
1012                 }
1013 #endif
1014 #ifndef OPENSSL_NO_SHA
1015         if (doit[D_SHA1])
1016                 {
1017                 for (j=0; j<SIZE_NUM; j++)
1018                         {
1019                         print_message(names[D_SHA1],c[D_SHA1][j],lengths[j]);
1020                         Time_F(START,usertime);
1021                         for (count=0,run=1; COND(c[D_SHA1][j]); count++)
1022                                 EVP_Digest(buf,(unsigned long)lengths[j],&(sha[0]),NULL,EVP_sha1());
1023                         d=Time_F(STOP,usertime);
1024                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1025                                 count,names[D_SHA1],d);
1026                         results[D_SHA1][j]=((double)count)/d*lengths[j];
1027                         }
1028                 }
1029 #endif
1030 #ifndef OPENSSL_NO_RIPEMD
1031         if (doit[D_RMD160])
1032                 {
1033                 for (j=0; j<SIZE_NUM; j++)
1034                         {
1035                         print_message(names[D_RMD160],c[D_RMD160][j],lengths[j]);
1036                         Time_F(START,usertime);
1037                         for (count=0,run=1; COND(c[D_RMD160][j]); count++)
1038                                 EVP_Digest(buf,(unsigned long)lengths[j],&(rmd160[0]),NULL,EVP_ripemd160());
1039                         d=Time_F(STOP,usertime);
1040                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1041                                 count,names[D_RMD160],d);
1042                         results[D_RMD160][j]=((double)count)/d*lengths[j];
1043                         }
1044                 }
1045 #endif
1046 #ifndef OPENSSL_NO_RC4
1047         if (doit[D_RC4])
1048                 {
1049                 for (j=0; j<SIZE_NUM; j++)
1050                         {
1051                         print_message(names[D_RC4],c[D_RC4][j],lengths[j]);
1052                         Time_F(START,usertime);
1053                         for (count=0,run=1; COND(c[D_RC4][j]); count++)
1054                                 RC4(&rc4_ks,(unsigned int)lengths[j],
1055                                         buf,buf);
1056                         d=Time_F(STOP,usertime);
1057                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1058                                 count,names[D_RC4],d);
1059                         results[D_RC4][j]=((double)count)/d*lengths[j];
1060                         }
1061                 }
1062 #endif
1063 #ifndef OPENSSL_NO_DES
1064         if (doit[D_CBC_DES])
1065                 {
1066                 for (j=0; j<SIZE_NUM; j++)
1067                         {
1068                         print_message(names[D_CBC_DES],c[D_CBC_DES][j],lengths[j]);
1069                         Time_F(START,usertime);
1070                         for (count=0,run=1; COND(c[D_CBC_DES][j]); count++)
1071                                 des_ncbc_encrypt(buf,buf,lengths[j],sch,
1072                                                  &iv,DES_ENCRYPT);
1073                         d=Time_F(STOP,usertime);
1074                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1075                                 count,names[D_CBC_DES],d);
1076                         results[D_CBC_DES][j]=((double)count)/d*lengths[j];
1077                         }
1078                 }
1079
1080         if (doit[D_EDE3_DES])
1081                 {
1082                 for (j=0; j<SIZE_NUM; j++)
1083                         {
1084                         print_message(names[D_EDE3_DES],c[D_EDE3_DES][j],lengths[j]);
1085                         Time_F(START,usertime);
1086                         for (count=0,run=1; COND(c[D_EDE3_DES][j]); count++)
1087                                 des_ede3_cbc_encrypt(buf,buf,lengths[j],
1088                                                      sch,sch2,sch3,
1089                                                      &iv,DES_ENCRYPT);
1090                         d=Time_F(STOP,usertime);
1091                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1092                                 count,names[D_EDE3_DES],d);
1093                         results[D_EDE3_DES][j]=((double)count)/d*lengths[j];
1094                         }
1095                 }
1096 #endif
1097 #ifndef OPENSSL_NO_IDEA
1098         if (doit[D_CBC_IDEA])
1099                 {
1100                 for (j=0; j<SIZE_NUM; j++)
1101                         {
1102                         print_message(names[D_CBC_IDEA],c[D_CBC_IDEA][j],lengths[j]);
1103                         Time_F(START,usertime);
1104                         for (count=0,run=1; COND(c[D_CBC_IDEA][j]); count++)
1105                                 idea_cbc_encrypt(buf,buf,
1106                                         (unsigned long)lengths[j],&idea_ks,
1107                                         iv,IDEA_ENCRYPT);
1108                         d=Time_F(STOP,usertime);
1109                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1110                                 count,names[D_CBC_IDEA],d);
1111                         results[D_CBC_IDEA][j]=((double)count)/d*lengths[j];
1112                         }
1113                 }
1114 #endif
1115 #ifndef OPENSSL_NO_RC2
1116         if (doit[D_CBC_RC2])
1117                 {
1118                 for (j=0; j<SIZE_NUM; j++)
1119                         {
1120                         print_message(names[D_CBC_RC2],c[D_CBC_RC2][j],lengths[j]);
1121                         Time_F(START,usertime);
1122                         for (count=0,run=1; COND(c[D_CBC_RC2][j]); count++)
1123                                 RC2_cbc_encrypt(buf,buf,
1124                                         (unsigned long)lengths[j],&rc2_ks,
1125                                         iv,RC2_ENCRYPT);
1126                         d=Time_F(STOP,usertime);
1127                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1128                                 count,names[D_CBC_RC2],d);
1129                         results[D_CBC_RC2][j]=((double)count)/d*lengths[j];
1130                         }
1131                 }
1132 #endif
1133 #ifndef OPENSSL_NO_RC5
1134         if (doit[D_CBC_RC5])
1135                 {
1136                 for (j=0; j<SIZE_NUM; j++)
1137                         {
1138                         print_message(names[D_CBC_RC5],c[D_CBC_RC5][j],lengths[j]);
1139                         Time_F(START,usertime);
1140                         for (count=0,run=1; COND(c[D_CBC_RC5][j]); count++)
1141                                 RC5_32_cbc_encrypt(buf,buf,
1142                                         (unsigned long)lengths[j],&rc5_ks,
1143                                         iv,RC5_ENCRYPT);
1144                         d=Time_F(STOP,usertime);
1145                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1146                                 count,names[D_CBC_RC5],d);
1147                         results[D_CBC_RC5][j]=((double)count)/d*lengths[j];
1148                         }
1149                 }
1150 #endif
1151 #ifndef OPENSSL_NO_BF
1152         if (doit[D_CBC_BF])
1153                 {
1154                 for (j=0; j<SIZE_NUM; j++)
1155                         {
1156                         print_message(names[D_CBC_BF],c[D_CBC_BF][j],lengths[j]);
1157                         Time_F(START,usertime);
1158                         for (count=0,run=1; COND(c[D_CBC_BF][j]); count++)
1159                                 BF_cbc_encrypt(buf,buf,
1160                                         (unsigned long)lengths[j],&bf_ks,
1161                                         iv,BF_ENCRYPT);
1162                         d=Time_F(STOP,usertime);
1163                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1164                                 count,names[D_CBC_BF],d);
1165                         results[D_CBC_BF][j]=((double)count)/d*lengths[j];
1166                         }
1167                 }
1168 #endif
1169 #ifndef OPENSSL_NO_CAST
1170         if (doit[D_CBC_CAST])
1171                 {
1172                 for (j=0; j<SIZE_NUM; j++)
1173                         {
1174                         print_message(names[D_CBC_CAST],c[D_CBC_CAST][j],lengths[j]);
1175                         Time_F(START,usertime);
1176                         for (count=0,run=1; COND(c[D_CBC_CAST][j]); count++)
1177                                 CAST_cbc_encrypt(buf,buf,
1178                                         (unsigned long)lengths[j],&cast_ks,
1179                                         iv,CAST_ENCRYPT);
1180                         d=Time_F(STOP,usertime);
1181                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1182                                 count,names[D_CBC_CAST],d);
1183                         results[D_CBC_CAST][j]=((double)count)/d*lengths[j];
1184                         }
1185                 }
1186 #endif
1187
1188         if (doit[D_EVP])
1189                 {
1190                 for (j=0; j<SIZE_NUM; j++)
1191                         {
1192                         EVP_CIPHER_CTX ctx;
1193                         int outl;
1194
1195                         names[D_EVP]=OBJ_nid2ln(evp->nid);
1196                         print_message(names[D_EVP],save_count,
1197                                                   lengths[j]);
1198                         if(decrypt)
1199                                 EVP_DecryptInit(&ctx,evp,key16,iv);
1200                         else
1201                                 EVP_EncryptInit(&ctx,evp,key16,iv);
1202                                 
1203                         Time_F(START,usertime);
1204                         if(decrypt)
1205                                 for (count=0,run=1; COND(save_count*4*lengths[0]/lengths[j]); count++)
1206                                         EVP_DecryptUpdate(&ctx,buf,&outl,buf,lengths[j]);
1207                         else
1208                                 for (count=0,run=1; COND(save_count*4*lengths[0]/lengths[j]); count++)
1209                                         EVP_EncryptUpdate(&ctx,buf,&outl,buf,lengths[j]);
1210                         if(decrypt)
1211                                 EVP_DecryptFinal(&ctx,buf,&outl);
1212                         else
1213                                 EVP_EncryptFinal(&ctx,buf,&outl);
1214                         d=Time_F(STOP,usertime);
1215                         BIO_printf(bio_err,"%ld %s's in %.2fs\n",
1216                                            count,names[D_EVP],d);
1217                         results[D_EVP][j]=((double)count)/d*lengths[j];
1218                         }
1219                 }
1220
1221         RAND_pseudo_bytes(buf,36);
1222 #ifndef OPENSSL_NO_RSA
1223         for (j=0; j<RSA_NUM; j++)
1224                 {
1225                 int ret;
1226                 if (!rsa_doit[j]) continue;
1227                 ret=RSA_sign(NID_md5_sha1, buf,36, buf2, &rsa_num, rsa_key[j]);
1228                 if (ret == 0)
1229                         {
1230                         BIO_printf(bio_err,"RSA sign failure.  No RSA sign will be done.\n");
1231                         ERR_print_errors(bio_err);
1232                         rsa_count=1;
1233                         }
1234                 else
1235                         {
1236                         pkey_print_message("private","rsa",
1237                                 rsa_c[j][0],rsa_bits[j],
1238                                 RSA_SECONDS);
1239 /*                      RSA_blinding_on(rsa_key[j],NULL); */
1240                         Time_F(START,usertime);
1241                         for (count=0,run=1; COND(rsa_c[j][0]); count++)
1242                                 {
1243                                 ret=RSA_sign(NID_md5_sha1, buf,36, buf2,
1244                                         &rsa_num, rsa_key[j]);
1245                                 if (ret == 0)
1246                                         {
1247                                         BIO_printf(bio_err,
1248                                                 "RSA sign failure\n");
1249                                         ERR_print_errors(bio_err);
1250                                         count=1;
1251                                         break;
1252                                         }
1253                                 }
1254                         d=Time_F(STOP,usertime);
1255                         BIO_printf(bio_err,
1256                                 "%ld %d bit private RSA's in %.2fs\n",
1257                                 count,rsa_bits[j],d);
1258                         rsa_results[j][0]=d/(double)count;
1259                         rsa_count=count;
1260                         }
1261
1262 #if 1
1263                 ret=RSA_verify(NID_md5_sha1, buf,36, buf2, rsa_num, rsa_key[j]);
1264                 if (ret <= 0)
1265                         {
1266                         BIO_printf(bio_err,"RSA verify failure.  No RSA verify will be done.\n");
1267                         ERR_print_errors(bio_err);
1268                         rsa_doit[j] = 0;
1269                         }
1270                 else
1271                         {
1272                         pkey_print_message("public","rsa",
1273                                 rsa_c[j][1],rsa_bits[j],
1274                                 RSA_SECONDS);
1275                         Time_F(START,usertime);
1276                         for (count=0,run=1; COND(rsa_c[j][1]); count++)
1277                                 {
1278                                 ret=RSA_verify(NID_md5_sha1, buf,36, buf2,
1279                                         rsa_num, rsa_key[j]);
1280                                 if (ret == 0)
1281                                         {
1282                                         BIO_printf(bio_err,
1283                                                 "RSA verify failure\n");
1284                                         ERR_print_errors(bio_err);
1285                                         count=1;
1286                                         break;
1287                                         }
1288                                 }
1289                         d=Time_F(STOP,usertime);
1290                         BIO_printf(bio_err,
1291                                 "%ld %d bit public RSA's in %.2fs\n",
1292                                 count,rsa_bits[j],d);
1293                         rsa_results[j][1]=d/(double)count;
1294                         }
1295 #endif
1296
1297                 if (rsa_count <= 1)
1298                         {
1299                         /* if longer than 10s, don't do any more */
1300                         for (j++; j<RSA_NUM; j++)
1301                                 rsa_doit[j]=0;
1302                         }
1303                 }
1304 #endif
1305
1306         RAND_pseudo_bytes(buf,20);
1307 #ifndef OPENSSL_NO_DSA
1308         if (RAND_status() != 1)
1309                 {
1310                 RAND_seed(rnd_seed, sizeof rnd_seed);
1311                 rnd_fake = 1;
1312                 }
1313         for (j=0; j<DSA_NUM; j++)
1314                 {
1315                 unsigned int kk;
1316                 int ret;
1317
1318                 if (!dsa_doit[j]) continue;
1319 /*              DSA_generate_key(dsa_key[j]); */
1320 /*              DSA_sign_setup(dsa_key[j],NULL); */
1321                 ret=DSA_sign(EVP_PKEY_DSA,buf,20,buf2,
1322                         &kk,dsa_key[j]);
1323                 if (ret == 0)
1324                         {
1325                         BIO_printf(bio_err,"DSA sign failure.  No DSA sign will be done.\n");
1326                         ERR_print_errors(bio_err);
1327                         rsa_count=1;
1328                         }
1329                 else
1330                         {
1331                         pkey_print_message("sign","dsa",
1332                                 dsa_c[j][0],dsa_bits[j],
1333                                 DSA_SECONDS);
1334                         Time_F(START,usertime);
1335                         for (count=0,run=1; COND(dsa_c[j][0]); count++)
1336                                 {
1337                                 ret=DSA_sign(EVP_PKEY_DSA,buf,20,buf2,
1338                                         &kk,dsa_key[j]);
1339                                 if (ret == 0)
1340                                         {
1341                                         BIO_printf(bio_err,
1342                                                 "DSA sign failure\n");
1343                                         ERR_print_errors(bio_err);
1344                                         count=1;
1345                                         break;
1346                                         }
1347                                 }
1348                         d=Time_F(STOP,usertime);
1349                         BIO_printf(bio_err,"%ld %d bit DSA signs in %.2fs\n",
1350                                 count,dsa_bits[j],d);
1351                         dsa_results[j][0]=d/(double)count;
1352                         rsa_count=count;
1353                         }
1354
1355                 ret=DSA_verify(EVP_PKEY_DSA,buf,20,buf2,
1356                         kk,dsa_key[j]);
1357                 if (ret <= 0)
1358                         {
1359                         BIO_printf(bio_err,"DSA verify failure.  No DSA verify will be done.\n");
1360                         ERR_print_errors(bio_err);
1361                         dsa_doit[j] = 0;
1362                         }
1363                 else
1364                         {
1365                         pkey_print_message("verify","dsa",
1366                                 dsa_c[j][1],dsa_bits[j],
1367                                 DSA_SECONDS);
1368                         Time_F(START,usertime);
1369                         for (count=0,run=1; COND(dsa_c[j][1]); count++)
1370                                 {
1371                                 ret=DSA_verify(EVP_PKEY_DSA,buf,20,buf2,
1372                                         kk,dsa_key[j]);
1373                                 if (ret <= 0)
1374                                         {
1375                                         BIO_printf(bio_err,
1376                                                 "DSA verify failure\n");
1377                                         ERR_print_errors(bio_err);
1378                                         count=1;
1379                                         break;
1380                                         }
1381                                 }
1382                         d=Time_F(STOP,usertime);
1383                         BIO_printf(bio_err,"%ld %d bit DSA verify in %.2fs\n",
1384                                 count,dsa_bits[j],d);
1385                         dsa_results[j][1]=d/(double)count;
1386                         }
1387
1388                 if (rsa_count <= 1)
1389                         {
1390                         /* if longer than 10s, don't do any more */
1391                         for (j++; j<DSA_NUM; j++)
1392                                 dsa_doit[j]=0;
1393                         }
1394                 }
1395         if (rnd_fake) RAND_cleanup();
1396 #endif
1397
1398         fprintf(stdout,"%s\n",SSLeay_version(SSLEAY_VERSION));
1399         fprintf(stdout,"%s\n",SSLeay_version(SSLEAY_BUILT_ON));
1400         printf("options:");
1401         printf("%s ",BN_options());
1402 #ifndef OPENSSL_NO_MD2
1403         printf("%s ",MD2_options());
1404 #endif
1405 #ifndef OPENSSL_NO_RC4
1406         printf("%s ",RC4_options());
1407 #endif
1408 #ifndef OPENSSL_NO_DES
1409         printf("%s ",des_options());
1410 #endif
1411 #ifndef OPENSSL_NO_IDEA
1412         printf("%s ",idea_options());
1413 #endif
1414 #ifndef OPENSSL_NO_BF
1415         printf("%s ",BF_options());
1416 #endif
1417         fprintf(stdout,"\n%s\n",SSLeay_version(SSLEAY_CFLAGS));
1418
1419         if (pr_header)
1420                 {
1421                 fprintf(stdout,"The 'numbers' are in 1000s of bytes per second processed.\n"); 
1422                 fprintf(stdout,"type        ");
1423                 for (j=0;  j<SIZE_NUM; j++)
1424                         fprintf(stdout,"%7d bytes",lengths[j]);
1425                 fprintf(stdout,"\n");
1426                 }
1427
1428         for (k=0; k<ALGOR_NUM; k++)
1429                 {
1430                 if (!doit[k]) continue;
1431                 fprintf(stdout,"%-13s",names[k]);
1432                 for (j=0; j<SIZE_NUM; j++)
1433                         {
1434                         if (results[k][j] > 10000)
1435                                 fprintf(stdout," %11.2fk",results[k][j]/1e3);
1436                         else
1437                                 fprintf(stdout," %11.2f ",results[k][j]);
1438                         }
1439                 fprintf(stdout,"\n");
1440                 }
1441 #ifndef OPENSSL_NO_RSA
1442         j=1;
1443         for (k=0; k<RSA_NUM; k++)
1444                 {
1445                 if (!rsa_doit[k]) continue;
1446                 if (j)
1447                         {
1448                         printf("%18ssign    verify    sign/s verify/s\n"," ");
1449                         j=0;
1450                         }
1451                 fprintf(stdout,"rsa %4u bits %8.4fs %8.4fs %8.1f %8.1f",
1452                         rsa_bits[k],rsa_results[k][0],rsa_results[k][1],
1453                         1.0/rsa_results[k][0],1.0/rsa_results[k][1]);
1454                 fprintf(stdout,"\n");
1455                 }
1456 #endif
1457 #ifndef OPENSSL_NO_DSA
1458         j=1;
1459         for (k=0; k<DSA_NUM; k++)
1460                 {
1461                 if (!dsa_doit[k]) continue;
1462                 if (j)  {
1463                         printf("%18ssign    verify    sign/s verify/s\n"," ");
1464                         j=0;
1465                         }
1466                 fprintf(stdout,"dsa %4u bits %8.4fs %8.4fs %8.1f %8.1f",
1467                         dsa_bits[k],dsa_results[k][0],dsa_results[k][1],
1468                         1.0/dsa_results[k][0],1.0/dsa_results[k][1]);
1469                 fprintf(stdout,"\n");
1470                 }
1471 #endif
1472         mret=0;
1473 end:
1474         ERR_print_errors(bio_err);
1475         if (buf != NULL) OPENSSL_free(buf);
1476         if (buf2 != NULL) OPENSSL_free(buf2);
1477 #ifndef OPENSSL_NO_RSA
1478         for (i=0; i<RSA_NUM; i++)
1479                 if (rsa_key[i] != NULL)
1480                         RSA_free(rsa_key[i]);
1481 #endif
1482 #ifndef OPENSSL_NO_DSA
1483         for (i=0; i<DSA_NUM; i++)
1484                 if (dsa_key[i] != NULL)
1485                         DSA_free(dsa_key[i]);
1486 #endif
1487         apps_shutdown();
1488         EXIT(mret);
1489         }
1490
1491 static void print_message(const char *s, long num, int length)
1492         {
1493 #ifdef SIGALRM
1494         BIO_printf(bio_err,"Doing %s for %ds on %d size blocks: ",s,SECONDS,length);
1495         (void)BIO_flush(bio_err);
1496         alarm(SECONDS);
1497 #else
1498         BIO_printf(bio_err,"Doing %s %ld times on %d size blocks: ",s,num,length);
1499         (void)BIO_flush(bio_err);
1500 #endif
1501 #ifdef LINT
1502         num=num;
1503 #endif
1504         }
1505
1506 static void pkey_print_message(char *str, char *str2, long num, int bits,
1507              int tm)
1508         {
1509 #ifdef SIGALRM
1510         BIO_printf(bio_err,"Doing %d bit %s %s's for %ds: ",bits,str,str2,tm);
1511         (void)BIO_flush(bio_err);
1512         alarm(RSA_SECONDS);
1513 #else
1514         BIO_printf(bio_err,"Doing %ld %d bit %s %s's: ",num,bits,str,str2);
1515         (void)BIO_flush(bio_err);
1516 #endif
1517 #ifdef LINT
1518         num=num;
1519 #endif
1520         }
1521