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[openssl.git] / apps / apps.c
1 /* apps/apps.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  * Copyright (c) 1998-2001 The OpenSSL Project.  All rights reserved.
60  *
61  * Redistribution and use in source and binary forms, with or without
62  * modification, are permitted provided that the following conditions
63  * are met:
64  *
65  * 1. Redistributions of source code must retain the above copyright
66  *    notice, this list of conditions and the following disclaimer. 
67  *
68  * 2. Redistributions in binary form must reproduce the above copyright
69  *    notice, this list of conditions and the following disclaimer in
70  *    the documentation and/or other materials provided with the
71  *    distribution.
72  *
73  * 3. All advertising materials mentioning features or use of this
74  *    software must display the following acknowledgment:
75  *    "This product includes software developed by the OpenSSL Project
76  *    for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
77  *
78  * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
79  *    endorse or promote products derived from this software without
80  *    prior written permission. For written permission, please contact
81  *    openssl-core@openssl.org.
82  *
83  * 5. Products derived from this software may not be called "OpenSSL"
84  *    nor may "OpenSSL" appear in their names without prior written
85  *    permission of the OpenSSL Project.
86  *
87  * 6. Redistributions of any form whatsoever must retain the following
88  *    acknowledgment:
89  *    "This product includes software developed by the OpenSSL Project
90  *    for use in the OpenSSL Toolkit (http://www.openssl.org/)"
91  *
92  * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
93  * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
94  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
95  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE OpenSSL PROJECT OR
96  * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
97  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
98  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
99  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
100  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
101  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
102  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
103  * OF THE POSSIBILITY OF SUCH DAMAGE.
104  * ====================================================================
105  *
106  * This product includes cryptographic software written by Eric Young
107  * (eay@cryptsoft.com).  This product includes software written by Tim
108  * Hudson (tjh@cryptsoft.com).
109  *
110  */
111
112 #ifndef _POSIX_C_SOURCE
113 #define _POSIX_C_SOURCE 2       /* On VMS, you need to define this to get
114                                    the declaration of fileno().  The value
115                                    2 is to make sure no function defined
116                                    in POSIX-2 is left undefined. */
117 #endif
118 #include <stdio.h>
119 #include <stdlib.h>
120 #include <string.h>
121 #if !defined(OPENSSL_SYSNAME_WIN32) && !defined(NETWARE_CLIB)
122 #include <strings.h>
123 #endif
124 #include <sys/types.h>
125 #include <ctype.h>
126 #include <errno.h>
127 #include <assert.h>
128 #include <openssl/err.h>
129 #include <openssl/x509.h>
130 #include <openssl/x509v3.h>
131 #include <openssl/pem.h>
132 #include <openssl/pkcs12.h>
133 #include <openssl/ui.h>
134 #include <openssl/safestack.h>
135 #ifndef OPENSSL_NO_ENGINE
136 #include <openssl/engine.h>
137 #endif
138 #ifndef OPENSSL_NO_RSA
139 #include <openssl/rsa.h>
140 #endif
141 #include <openssl/bn.h>
142 #ifndef OPENSSL_NO_JPAKE
143 #include <openssl/jpake.h>
144 #endif
145
146 #define NON_MAIN
147 #include "apps.h"
148 #undef NON_MAIN
149
150 #ifdef _WIN32
151 static int WIN32_rename(const char *from, const char *to);
152 #define rename(from,to) WIN32_rename((from),(to))
153 #endif
154
155 typedef struct {
156         const char *name;
157         unsigned long flag;
158         unsigned long mask;
159 } NAME_EX_TBL;
160
161 static UI_METHOD *ui_method = NULL;
162
163 static int set_table_opts(unsigned long *flags, const char *arg, const NAME_EX_TBL *in_tbl);
164 static int set_multi_opts(unsigned long *flags, const char *arg, const NAME_EX_TBL *in_tbl);
165
166 #if !defined(OPENSSL_NO_RC4) && !defined(OPENSSL_NO_RSA)
167 /* Looks like this stuff is worth moving into separate function */
168 static EVP_PKEY *
169 load_netscape_key(BIO *err, BIO *key, const char *file,
170                 const char *key_descrip, int format);
171 #endif
172
173 int app_init(long mesgwin);
174 #ifdef undef /* never finished - probably never will be :-) */
175 int args_from_file(char *file, int *argc, char **argv[])
176         {
177         FILE *fp;
178         int num,i;
179         unsigned int len;
180         static char *buf=NULL;
181         static char **arg=NULL;
182         char *p;
183
184         fp=fopen(file,"r");
185         if (fp == NULL)
186                 return(0);
187
188         if (fseek(fp,0,SEEK_END)==0)
189                 len=ftell(fp), rewind(fp);
190         else    len=-1;
191         if (len<=0)
192                 {
193                 fclose(fp);
194                 return(0);
195                 }
196
197         *argc=0;
198         *argv=NULL;
199
200         if (buf != NULL) OPENSSL_free(buf);
201         buf=(char *)OPENSSL_malloc(len+1);
202         if (buf == NULL) return(0);
203
204         len=fread(buf,1,len,fp);
205         if (len <= 1) return(0);
206         buf[len]='\0';
207
208         i=0;
209         for (p=buf; *p; p++)
210                 if (*p == '\n') i++;
211         if (arg != NULL) OPENSSL_free(arg);
212         arg=(char **)OPENSSL_malloc(sizeof(char *)*(i*2));
213
214         *argv=arg;
215         num=0;
216         p=buf;
217         for (;;)
218                 {
219                 if (!*p) break;
220                 if (*p == '#') /* comment line */
221                         {
222                         while (*p && (*p != '\n')) p++;
223                         continue;
224                         }
225                 /* else we have a line */
226                 *(arg++)=p;
227                 num++;
228                 while (*p && ((*p != ' ') && (*p != '\t') && (*p != '\n')))
229                         p++;
230                 if (!*p) break;
231                 if (*p == '\n')
232                         {
233                         *(p++)='\0';
234                         continue;
235                         }
236                 /* else it is a tab or space */
237                 p++;
238                 while (*p && ((*p == ' ') || (*p == '\t') || (*p == '\n')))
239                         p++;
240                 if (!*p) break;
241                 if (*p == '\n')
242                         {
243                         p++;
244                         continue;
245                         }
246                 *(arg++)=p++;
247                 num++;
248                 while (*p && (*p != '\n')) p++;
249                 if (!*p) break;
250                 /* else *p == '\n' */
251                 *(p++)='\0';
252                 }
253         *argc=num;
254         return(1);
255         }
256 #endif
257
258 int str2fmt(char *s)
259         {
260         if      ((*s == 'D') || (*s == 'd'))
261                 return(FORMAT_ASN1);
262         else if ((*s == 'T') || (*s == 't'))
263                 return(FORMAT_TEXT);
264         else if ((*s == 'N') || (*s == 'n'))
265                 return(FORMAT_NETSCAPE);
266         else if ((*s == 'S') || (*s == 's'))
267                 return(FORMAT_SMIME);
268         else if ((*s == 'M') || (*s == 'm'))
269                 return(FORMAT_MSBLOB);
270         else if ((*s == '1')
271                 || (strcmp(s,"PKCS12") == 0) || (strcmp(s,"pkcs12") == 0)
272                 || (strcmp(s,"P12") == 0) || (strcmp(s,"p12") == 0))
273                 return(FORMAT_PKCS12);
274         else if ((*s == 'E') || (*s == 'e'))
275                 return(FORMAT_ENGINE);
276         else if ((*s == 'P') || (*s == 'p'))
277                 {
278                 if (s[1] == 'V' || s[1] == 'v')
279                         return FORMAT_PVK;
280                 else
281                         return(FORMAT_PEM);
282                 }
283         else
284                 return(FORMAT_UNDEF);
285         }
286
287 #if defined(OPENSSL_SYS_MSDOS) || defined(OPENSSL_SYS_WIN32) || defined(OPENSSL_SYS_WIN16) || defined(OPENSSL_SYS_NETWARE)
288 void program_name(char *in, char *out, int size)
289         {
290         int i,n;
291         char *p=NULL;
292
293         n=strlen(in);
294         /* find the last '/', '\' or ':' */
295         for (i=n-1; i>0; i--)
296                 {
297                 if ((in[i] == '/') || (in[i] == '\\') || (in[i] == ':'))
298                         {
299                         p= &(in[i+1]);
300                         break;
301                         }
302                 }
303         if (p == NULL)
304                 p=in;
305         n=strlen(p);
306
307 #if defined(OPENSSL_SYS_NETWARE)
308    /* strip off trailing .nlm if present. */
309    if ((n > 4) && (p[n-4] == '.') &&
310       ((p[n-3] == 'n') || (p[n-3] == 'N')) &&
311       ((p[n-2] == 'l') || (p[n-2] == 'L')) &&
312       ((p[n-1] == 'm') || (p[n-1] == 'M')))
313       n-=4;
314 #else
315         /* strip off trailing .exe if present. */
316         if ((n > 4) && (p[n-4] == '.') &&
317                 ((p[n-3] == 'e') || (p[n-3] == 'E')) &&
318                 ((p[n-2] == 'x') || (p[n-2] == 'X')) &&
319                 ((p[n-1] == 'e') || (p[n-1] == 'E')))
320                 n-=4;
321 #endif
322
323         if (n > size-1)
324                 n=size-1;
325
326         for (i=0; i<n; i++)
327                 {
328                 if ((p[i] >= 'A') && (p[i] <= 'Z'))
329                         out[i]=p[i]-'A'+'a';
330                 else
331                         out[i]=p[i];
332                 }
333         out[n]='\0';
334         }
335 #else
336 #ifdef OPENSSL_SYS_VMS
337 void program_name(char *in, char *out, int size)
338         {
339         char *p=in, *q;
340         char *chars=":]>";
341
342         while(*chars != '\0')
343                 {
344                 q=strrchr(p,*chars);
345                 if (q > p)
346                         p = q + 1;
347                 chars++;
348                 }
349
350         q=strrchr(p,'.');
351         if (q == NULL)
352                 q = p + strlen(p);
353         strncpy(out,p,size-1);
354         if (q-p >= size)
355                 {
356                 out[size-1]='\0';
357                 }
358         else
359                 {
360                 out[q-p]='\0';
361                 }
362         }
363 #else
364 void program_name(char *in, char *out, int size)
365         {
366         char *p;
367
368         p=strrchr(in,'/');
369         if (p != NULL)
370                 p++;
371         else
372                 p=in;
373         BUF_strlcpy(out,p,size);
374         }
375 #endif
376 #endif
377
378 int chopup_args(ARGS *arg, char *buf, int *argc, char **argv[])
379         {
380         int num,i;
381         char *p;
382
383         *argc=0;
384         *argv=NULL;
385
386         i=0;
387         if (arg->count == 0)
388                 {
389                 arg->count=20;
390                 arg->data=(char **)OPENSSL_malloc(sizeof(char *)*arg->count);
391                 }
392         for (i=0; i<arg->count; i++)
393                 arg->data[i]=NULL;
394
395         num=0;
396         p=buf;
397         for (;;)
398                 {
399                 /* first scan over white space */
400                 if (!*p) break;
401                 while (*p && ((*p == ' ') || (*p == '\t') || (*p == '\n')))
402                         p++;
403                 if (!*p) break;
404
405                 /* The start of something good :-) */
406                 if (num >= arg->count)
407                         {
408                         char **tmp_p;
409                         int tlen = arg->count + 20;
410                         tmp_p = (char **)OPENSSL_realloc(arg->data,
411                                 sizeof(char *)*tlen);
412                         if (tmp_p == NULL)
413                                 return 0;
414                         arg->data  = tmp_p;
415                         arg->count = tlen;
416                         /* initialize newly allocated data */
417                         for (i = num; i < arg->count; i++)
418                                 arg->data[i] = NULL;
419                         }
420                 arg->data[num++]=p;
421
422                 /* now look for the end of this */
423                 if ((*p == '\'') || (*p == '\"')) /* scan for closing quote */
424                         {
425                         i= *(p++);
426                         arg->data[num-1]++; /* jump over quote */
427                         while (*p && (*p != i))
428                                 p++;
429                         *p='\0';
430                         }
431                 else
432                         {
433                         while (*p && ((*p != ' ') &&
434                                 (*p != '\t') && (*p != '\n')))
435                                 p++;
436
437                         if (*p == '\0')
438                                 p--;
439                         else
440                                 *p='\0';
441                         }
442                 p++;
443                 }
444         *argc=num;
445         *argv=arg->data;
446         return(1);
447         }
448
449 #ifndef APP_INIT
450 int app_init(long mesgwin)
451         {
452         return(1);
453         }
454 #endif
455
456
457 int dump_cert_text (BIO *out, X509 *x)
458 {
459         char *p;
460
461         p=X509_NAME_oneline(X509_get_subject_name(x),NULL,0);
462         BIO_puts(out,"subject=");
463         BIO_puts(out,p);
464         OPENSSL_free(p);
465
466         p=X509_NAME_oneline(X509_get_issuer_name(x),NULL,0);
467         BIO_puts(out,"\nissuer=");
468         BIO_puts(out,p);
469         BIO_puts(out,"\n");
470         OPENSSL_free(p);
471
472         return 0;
473 }
474
475 static int ui_open(UI *ui)
476         {
477         return UI_method_get_opener(UI_OpenSSL())(ui);
478         }
479 static int ui_read(UI *ui, UI_STRING *uis)
480         {
481         if (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD
482                 && UI_get0_user_data(ui))
483                 {
484                 switch(UI_get_string_type(uis))
485                         {
486                 case UIT_PROMPT:
487                 case UIT_VERIFY:
488                         {
489                         const char *password =
490                                 ((PW_CB_DATA *)UI_get0_user_data(ui))->password;
491                         if (password && password[0] != '\0')
492                                 {
493                                 UI_set_result(ui, uis, password);
494                                 return 1;
495                                 }
496                         }
497                 default:
498                         break;
499                         }
500                 }
501         return UI_method_get_reader(UI_OpenSSL())(ui, uis);
502         }
503 static int ui_write(UI *ui, UI_STRING *uis)
504         {
505         if (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD
506                 && UI_get0_user_data(ui))
507                 {
508                 switch(UI_get_string_type(uis))
509                         {
510                 case UIT_PROMPT:
511                 case UIT_VERIFY:
512                         {
513                         const char *password =
514                                 ((PW_CB_DATA *)UI_get0_user_data(ui))->password;
515                         if (password && password[0] != '\0')
516                                 return 1;
517                         }
518                 default:
519                         break;
520                         }
521                 }
522         return UI_method_get_writer(UI_OpenSSL())(ui, uis);
523         }
524 static int ui_close(UI *ui)
525         {
526         return UI_method_get_closer(UI_OpenSSL())(ui);
527         }
528 int setup_ui_method(void)
529         {
530         ui_method = UI_create_method("OpenSSL application user interface");
531         UI_method_set_opener(ui_method, ui_open);
532         UI_method_set_reader(ui_method, ui_read);
533         UI_method_set_writer(ui_method, ui_write);
534         UI_method_set_closer(ui_method, ui_close);
535         return 0;
536         }
537 void destroy_ui_method(void)
538         {
539         if(ui_method)
540                 {
541                 UI_destroy_method(ui_method);
542                 ui_method = NULL;
543                 }
544         }
545 int password_callback(char *buf, int bufsiz, int verify,
546         PW_CB_DATA *cb_tmp)
547         {
548         UI *ui = NULL;
549         int res = 0;
550         const char *prompt_info = NULL;
551         const char *password = NULL;
552         PW_CB_DATA *cb_data = (PW_CB_DATA *)cb_tmp;
553
554         if (cb_data)
555                 {
556                 if (cb_data->password)
557                         password = cb_data->password;
558                 if (cb_data->prompt_info)
559                         prompt_info = cb_data->prompt_info;
560                 }
561
562         if (password)
563                 {
564                 res = strlen(password);
565                 if (res > bufsiz)
566                         res = bufsiz;
567                 memcpy(buf, password, res);
568                 return res;
569                 }
570
571         ui = UI_new_method(ui_method);
572         if (ui)
573                 {
574                 int ok = 0;
575                 char *buff = NULL;
576                 int ui_flags = 0;
577                 char *prompt = NULL;
578
579                 prompt = UI_construct_prompt(ui, "pass phrase",
580                         prompt_info);
581
582                 ui_flags |= UI_INPUT_FLAG_DEFAULT_PWD;
583                 UI_ctrl(ui, UI_CTRL_PRINT_ERRORS, 1, 0, 0);
584
585                 if (ok >= 0)
586                         ok = UI_add_input_string(ui,prompt,ui_flags,buf,
587                                 PW_MIN_LENGTH,BUFSIZ-1);
588                 if (ok >= 0 && verify)
589                         {
590                         buff = (char *)OPENSSL_malloc(bufsiz);
591                         ok = UI_add_verify_string(ui,prompt,ui_flags,buff,
592                                 PW_MIN_LENGTH,BUFSIZ-1, buf);
593                         }
594                 if (ok >= 0)
595                         do
596                                 {
597                                 ok = UI_process(ui);
598                                 }
599                         while (ok < 0 && UI_ctrl(ui, UI_CTRL_IS_REDOABLE, 0, 0, 0));
600
601                 if (buff)
602                         {
603                         OPENSSL_cleanse(buff,(unsigned int)bufsiz);
604                         OPENSSL_free(buff);
605                         }
606
607                 if (ok >= 0)
608                         res = strlen(buf);
609                 if (ok == -1)
610                         {
611                         BIO_printf(bio_err, "User interface error\n");
612                         ERR_print_errors(bio_err);
613                         OPENSSL_cleanse(buf,(unsigned int)bufsiz);
614                         res = 0;
615                         }
616                 if (ok == -2)
617                         {
618                         BIO_printf(bio_err,"aborted!\n");
619                         OPENSSL_cleanse(buf,(unsigned int)bufsiz);
620                         res = 0;
621                         }
622                 UI_free(ui);
623                 OPENSSL_free(prompt);
624                 }
625         return res;
626         }
627
628 static char *app_get_pass(BIO *err, char *arg, int keepbio);
629
630 int app_passwd(BIO *err, char *arg1, char *arg2, char **pass1, char **pass2)
631 {
632         int same;
633         if(!arg2 || !arg1 || strcmp(arg1, arg2)) same = 0;
634         else same = 1;
635         if(arg1) {
636                 *pass1 = app_get_pass(err, arg1, same);
637                 if(!*pass1) return 0;
638         } else if(pass1) *pass1 = NULL;
639         if(arg2) {
640                 *pass2 = app_get_pass(err, arg2, same ? 2 : 0);
641                 if(!*pass2) return 0;
642         } else if(pass2) *pass2 = NULL;
643         return 1;
644 }
645
646 static char *app_get_pass(BIO *err, char *arg, int keepbio)
647 {
648         char *tmp, tpass[APP_PASS_LEN];
649         static BIO *pwdbio = NULL;
650         int i;
651         if(!strncmp(arg, "pass:", 5)) return BUF_strdup(arg + 5);
652         if(!strncmp(arg, "env:", 4)) {
653                 tmp = getenv(arg + 4);
654                 if(!tmp) {
655                         BIO_printf(err, "Can't read environment variable %s\n", arg + 4);
656                         return NULL;
657                 }
658                 return BUF_strdup(tmp);
659         }
660         if(!keepbio || !pwdbio) {
661                 if(!strncmp(arg, "file:", 5)) {
662                         pwdbio = BIO_new_file(arg + 5, "r");
663                         if(!pwdbio) {
664                                 BIO_printf(err, "Can't open file %s\n", arg + 5);
665                                 return NULL;
666                         }
667 #if !defined(_WIN32)
668                 /*
669                  * Under _WIN32, which covers even Win64 and CE, file
670                  * descriptors referenced by BIO_s_fd are not inherited
671                  * by child process and therefore below is not an option.
672                  * It could have been an option if bss_fd.c was operating
673                  * on real Windows descriptors, such as those obtained
674                  * with CreateFile.
675                  */
676                 } else if(!strncmp(arg, "fd:", 3)) {
677                         BIO *btmp;
678                         i = atoi(arg + 3);
679                         if(i >= 0) pwdbio = BIO_new_fd(i, BIO_NOCLOSE);
680                         if((i < 0) || !pwdbio) {
681                                 BIO_printf(err, "Can't access file descriptor %s\n", arg + 3);
682                                 return NULL;
683                         }
684                         /* Can't do BIO_gets on an fd BIO so add a buffering BIO */
685                         btmp = BIO_new(BIO_f_buffer());
686                         pwdbio = BIO_push(btmp, pwdbio);
687 #endif
688                 } else if(!strcmp(arg, "stdin")) {
689                         pwdbio = BIO_new_fp(stdin, BIO_NOCLOSE);
690                         if(!pwdbio) {
691                                 BIO_printf(err, "Can't open BIO for stdin\n");
692                                 return NULL;
693                         }
694                 } else {
695                         BIO_printf(err, "Invalid password argument \"%s\"\n", arg);
696                         return NULL;
697                 }
698         }
699         i = BIO_gets(pwdbio, tpass, APP_PASS_LEN);
700         if(keepbio != 1) {
701                 BIO_free_all(pwdbio);
702                 pwdbio = NULL;
703         }
704         if(i <= 0) {
705                 BIO_printf(err, "Error reading password from BIO\n");
706                 return NULL;
707         }
708         tmp = strchr(tpass, '\n');
709         if(tmp) *tmp = 0;
710         return BUF_strdup(tpass);
711 }
712
713 int add_oid_section(BIO *err, CONF *conf)
714 {       
715         char *p;
716         STACK_OF(CONF_VALUE) *sktmp;
717         CONF_VALUE *cnf;
718         int i;
719         if(!(p=NCONF_get_string(conf,NULL,"oid_section")))
720                 {
721                 ERR_clear_error();
722                 return 1;
723                 }
724         if(!(sktmp = NCONF_get_section(conf, p))) {
725                 BIO_printf(err, "problem loading oid section %s\n", p);
726                 return 0;
727         }
728         for(i = 0; i < sk_CONF_VALUE_num(sktmp); i++) {
729                 cnf = sk_CONF_VALUE_value(sktmp, i);
730                 if(OBJ_create(cnf->value, cnf->name, cnf->name) == NID_undef) {
731                         BIO_printf(err, "problem creating object %s=%s\n",
732                                                          cnf->name, cnf->value);
733                         return 0;
734                 }
735         }
736         return 1;
737 }
738
739 static int load_pkcs12(BIO *err, BIO *in, const char *desc,
740                 pem_password_cb *pem_cb,  void *cb_data,
741                 EVP_PKEY **pkey, X509 **cert, STACK_OF(X509) **ca)
742         {
743         const char *pass;
744         char tpass[PEM_BUFSIZE];
745         int len, ret = 0;
746         PKCS12 *p12;
747         p12 = d2i_PKCS12_bio(in, NULL);
748         if (p12 == NULL)
749                 {
750                 BIO_printf(err, "Error loading PKCS12 file for %s\n", desc);    
751                 goto die;
752                 }
753         /* See if an empty password will do */
754         if (PKCS12_verify_mac(p12, "", 0) || PKCS12_verify_mac(p12, NULL, 0))
755                 pass = "";
756         else
757                 {
758                 if (!pem_cb)
759                         pem_cb = (pem_password_cb *)password_callback;
760                 len = pem_cb(tpass, PEM_BUFSIZE, 0, cb_data);
761                 if (len < 0) 
762                         {
763                         BIO_printf(err, "Passpharse callback error for %s\n",
764                                         desc);
765                         goto die;
766                         }
767                 if (len < PEM_BUFSIZE)
768                         tpass[len] = 0;
769                 if (!PKCS12_verify_mac(p12, tpass, len))
770                         {
771                         BIO_printf(err,
772         "Mac verify error (wrong password?) in PKCS12 file for %s\n", desc);    
773                         goto die;
774                         }
775                 pass = tpass;
776                 }
777         ret = PKCS12_parse(p12, pass, pkey, cert, ca);
778         die:
779         if (p12)
780                 PKCS12_free(p12);
781         return ret;
782         }
783
784 X509 *load_cert(BIO *err, const char *file, int format,
785         const char *pass, ENGINE *e, const char *cert_descrip)
786         {
787         X509 *x=NULL;
788         BIO *cert;
789
790         if ((cert=BIO_new(BIO_s_file())) == NULL)
791                 {
792                 ERR_print_errors(err);
793                 goto end;
794                 }
795
796         if (file == NULL)
797                 {
798 #ifdef _IONBF
799                 setvbuf(stdin, NULL, _IONBF, 0);
800 #endif
801                 BIO_set_fp(cert,stdin,BIO_NOCLOSE);
802                 }
803         else
804                 {
805                 if (BIO_read_filename(cert,file) <= 0)
806                         {
807                         BIO_printf(err, "Error opening %s %s\n",
808                                 cert_descrip, file);
809                         ERR_print_errors(err);
810                         goto end;
811                         }
812                 }
813
814         if      (format == FORMAT_ASN1)
815                 x=d2i_X509_bio(cert,NULL);
816         else if (format == FORMAT_NETSCAPE)
817                 {
818                 NETSCAPE_X509 *nx;
819                 nx=ASN1_item_d2i_bio(ASN1_ITEM_rptr(NETSCAPE_X509),cert,NULL);
820                 if (nx == NULL)
821                                 goto end;
822
823                 if ((strncmp(NETSCAPE_CERT_HDR,(char *)nx->header->data,
824                         nx->header->length) != 0))
825                         {
826                         NETSCAPE_X509_free(nx);
827                         BIO_printf(err,"Error reading header on certificate\n");
828                         goto end;
829                         }
830                 x=nx->cert;
831                 nx->cert = NULL;
832                 NETSCAPE_X509_free(nx);
833                 }
834         else if (format == FORMAT_PEM)
835                 x=PEM_read_bio_X509_AUX(cert,NULL,
836                         (pem_password_cb *)password_callback, NULL);
837         else if (format == FORMAT_PKCS12)
838                 {
839                 if (!load_pkcs12(err, cert,cert_descrip, NULL, NULL,
840                                         NULL, &x, NULL))
841                         goto end;
842                 }
843         else    {
844                 BIO_printf(err,"bad input format specified for %s\n",
845                         cert_descrip);
846                 goto end;
847                 }
848 end:
849         if (x == NULL)
850                 {
851                 BIO_printf(err,"unable to load certificate\n");
852                 ERR_print_errors(err);
853                 }
854         if (cert != NULL) BIO_free(cert);
855         return(x);
856         }
857
858 EVP_PKEY *load_key(BIO *err, const char *file, int format, int maybe_stdin,
859         const char *pass, ENGINE *e, const char *key_descrip)
860         {
861         BIO *key=NULL;
862         EVP_PKEY *pkey=NULL;
863         PW_CB_DATA cb_data;
864
865         cb_data.password = pass;
866         cb_data.prompt_info = file;
867
868         if (file == NULL && (!maybe_stdin || format == FORMAT_ENGINE))
869                 {
870                 BIO_printf(err,"no keyfile specified\n");
871                 goto end;
872                 }
873 #ifndef OPENSSL_NO_ENGINE
874         if (format == FORMAT_ENGINE)
875                 {
876                 if (!e)
877                         BIO_printf(err,"no engine specified\n");
878                 else
879                         {
880                         pkey = ENGINE_load_private_key(e, file,
881                                 ui_method, &cb_data);
882                         if (!pkey) 
883                                 {
884                                 BIO_printf(err,"cannot load %s from engine\n",key_descrip);
885                                 ERR_print_errors(err);
886                                 }       
887                         }
888                 goto end;
889                 }
890 #endif
891         key=BIO_new(BIO_s_file());
892         if (key == NULL)
893                 {
894                 ERR_print_errors(err);
895                 goto end;
896                 }
897         if (file == NULL && maybe_stdin)
898                 {
899 #ifdef _IONBF
900                 setvbuf(stdin, NULL, _IONBF, 0);
901 #endif
902                 BIO_set_fp(key,stdin,BIO_NOCLOSE);
903                 }
904         else
905                 if (BIO_read_filename(key,file) <= 0)
906                         {
907                         BIO_printf(err, "Error opening %s %s\n",
908                                 key_descrip, file);
909                         ERR_print_errors(err);
910                         goto end;
911                         }
912         if (format == FORMAT_ASN1)
913                 {
914                 pkey=d2i_PrivateKey_bio(key, NULL);
915                 }
916         else if (format == FORMAT_PEM)
917                 {
918                 pkey=PEM_read_bio_PrivateKey(key,NULL,
919                         (pem_password_cb *)password_callback, &cb_data);
920                 }
921 #if !defined(OPENSSL_NO_RC4) && !defined(OPENSSL_NO_RSA)
922         else if (format == FORMAT_NETSCAPE || format == FORMAT_IISSGC)
923                 pkey = load_netscape_key(err, key, file, key_descrip, format);
924 #endif
925         else if (format == FORMAT_PKCS12)
926                 {
927                 if (!load_pkcs12(err, key, key_descrip,
928                                 (pem_password_cb *)password_callback, &cb_data,
929                                 &pkey, NULL, NULL))
930                         goto end;
931                 }
932 #if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_NO_DSA) && !defined (OPENSSL_NO_RC4)
933         else if (format == FORMAT_MSBLOB)
934                 pkey = b2i_PrivateKey_bio(key);
935         else if (format == FORMAT_PVK)
936                 pkey = b2i_PVK_bio(key, (pem_password_cb *)password_callback,
937                                                                 &cb_data);
938 #endif
939         else
940                 {
941                 BIO_printf(err,"bad input format specified for key file\n");
942                 goto end;
943                 }
944  end:
945         if (key != NULL) BIO_free(key);
946         if (pkey == NULL) 
947                 {
948                 BIO_printf(err,"unable to load %s\n", key_descrip);
949                 ERR_print_errors(err);
950                 }       
951         return(pkey);
952         }
953
954 EVP_PKEY *load_pubkey(BIO *err, const char *file, int format, int maybe_stdin,
955         const char *pass, ENGINE *e, const char *key_descrip)
956         {
957         BIO *key=NULL;
958         EVP_PKEY *pkey=NULL;
959         PW_CB_DATA cb_data;
960
961         cb_data.password = pass;
962         cb_data.prompt_info = file;
963
964         if (file == NULL && (!maybe_stdin || format == FORMAT_ENGINE))
965                 {
966                 BIO_printf(err,"no keyfile specified\n");
967                 goto end;
968                 }
969 #ifndef OPENSSL_NO_ENGINE
970         if (format == FORMAT_ENGINE)
971                 {
972                 if (!e)
973                         BIO_printf(bio_err,"no engine specified\n");
974                 else
975                         pkey = ENGINE_load_public_key(e, file,
976                                 ui_method, &cb_data);
977                 goto end;
978                 }
979 #endif
980         key=BIO_new(BIO_s_file());
981         if (key == NULL)
982                 {
983                 ERR_print_errors(err);
984                 goto end;
985                 }
986         if (file == NULL && maybe_stdin)
987                 {
988 #ifdef _IONBF
989                 setvbuf(stdin, NULL, _IONBF, 0);
990 #endif
991                 BIO_set_fp(key,stdin,BIO_NOCLOSE);
992                 }
993         else
994                 if (BIO_read_filename(key,file) <= 0)
995                         {
996                         BIO_printf(err, "Error opening %s %s\n",
997                                 key_descrip, file);
998                         ERR_print_errors(err);
999                         goto end;
1000                 }
1001         if (format == FORMAT_ASN1)
1002                 {
1003                 pkey=d2i_PUBKEY_bio(key, NULL);
1004                 }
1005 #ifndef OPENSSL_NO_RSA
1006         else if (format == FORMAT_ASN1RSA)
1007                 {
1008                 RSA *rsa;
1009                 rsa = d2i_RSAPublicKey_bio(key, NULL);
1010                 if (rsa)
1011                         {
1012                         pkey = EVP_PKEY_new();
1013                         if (pkey)
1014                                 EVP_PKEY_set1_RSA(pkey, rsa);
1015                         RSA_free(rsa);
1016                         }
1017                 else
1018                         pkey = NULL;
1019                 }
1020         else if (format == FORMAT_PEMRSA)
1021                 {
1022                 RSA *rsa;
1023                 rsa = PEM_read_bio_RSAPublicKey(key, NULL, 
1024                         (pem_password_cb *)password_callback, &cb_data);
1025                 if (rsa)
1026                         {
1027                         pkey = EVP_PKEY_new();
1028                         if (pkey)
1029                                 EVP_PKEY_set1_RSA(pkey, rsa);
1030                         RSA_free(rsa);
1031                         }
1032                 else
1033                         pkey = NULL;
1034                 }
1035 #endif
1036         else if (format == FORMAT_PEM)
1037                 {
1038                 pkey=PEM_read_bio_PUBKEY(key,NULL,
1039                         (pem_password_cb *)password_callback, &cb_data);
1040                 }
1041 #if !defined(OPENSSL_NO_RC4) && !defined(OPENSSL_NO_RSA)
1042         else if (format == FORMAT_NETSCAPE || format == FORMAT_IISSGC)
1043                 pkey = load_netscape_key(err, key, file, key_descrip, format);
1044 #endif
1045 #if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_NO_DSA)
1046         else if (format == FORMAT_MSBLOB)
1047                 pkey = b2i_PublicKey_bio(key);
1048 #endif
1049         else
1050                 {
1051                 BIO_printf(err,"bad input format specified for key file\n");
1052                 goto end;
1053                 }
1054  end:
1055         if (key != NULL) BIO_free(key);
1056         if (pkey == NULL)
1057                 BIO_printf(err,"unable to load %s\n", key_descrip);
1058         return(pkey);
1059         }
1060
1061 #if !defined(OPENSSL_NO_RC4) && !defined(OPENSSL_NO_RSA)
1062 static EVP_PKEY *
1063 load_netscape_key(BIO *err, BIO *key, const char *file,
1064                 const char *key_descrip, int format)
1065         {
1066         EVP_PKEY *pkey;
1067         BUF_MEM *buf;
1068         RSA     *rsa;
1069         const unsigned char *p;
1070         int size, i;
1071
1072         buf=BUF_MEM_new();
1073         pkey = EVP_PKEY_new();
1074         size = 0;
1075         if (buf == NULL || pkey == NULL)
1076                 goto error;
1077         for (;;)
1078                 {
1079                 if (!BUF_MEM_grow_clean(buf,size+1024*10))
1080                         goto error;
1081                 i = BIO_read(key, &(buf->data[size]), 1024*10);
1082                 size += i;
1083                 if (i == 0)
1084                         break;
1085                 if (i < 0)
1086                         {
1087                                 BIO_printf(err, "Error reading %s %s",
1088                                         key_descrip, file);
1089                                 goto error;
1090                         }
1091                 }
1092         p=(unsigned char *)buf->data;
1093         rsa = d2i_RSA_NET(NULL,&p,(long)size,NULL,
1094                 (format == FORMAT_IISSGC ? 1 : 0));
1095         if (rsa == NULL)
1096                 goto error;
1097         BUF_MEM_free(buf);
1098         EVP_PKEY_set1_RSA(pkey, rsa);
1099         return pkey;
1100 error:
1101         BUF_MEM_free(buf);
1102         EVP_PKEY_free(pkey);
1103         return NULL;
1104         }
1105 #endif /* ndef OPENSSL_NO_RC4 */
1106
1107 static int load_certs_crls(BIO *err, const char *file, int format,
1108         const char *pass, ENGINE *e, const char *desc,
1109         STACK_OF(X509) **pcerts, STACK_OF(X509_CRL) **pcrls)
1110         {
1111         int i;
1112         BIO *bio;
1113         STACK_OF(X509_INFO) *xis = NULL;
1114         X509_INFO *xi;
1115         PW_CB_DATA cb_data;
1116         int rv = 0;
1117
1118         cb_data.password = pass;
1119         cb_data.prompt_info = file;
1120
1121         if (format != FORMAT_PEM)
1122                 {
1123                 BIO_printf(err,"bad input format specified for %s\n", desc);
1124                 return 0;
1125                 }
1126
1127         if (file == NULL)
1128                 bio = BIO_new_fp(stdin,BIO_NOCLOSE);
1129         else
1130                 bio = BIO_new_file(file, "r");
1131
1132         if (bio == NULL)
1133                 {
1134                 BIO_printf(err, "Error opening %s %s\n",
1135                                 desc, file ? file : "stdin");
1136                 ERR_print_errors(err);
1137                 return 0;
1138                 }
1139
1140         xis = PEM_X509_INFO_read_bio(bio, NULL,
1141                                 (pem_password_cb *)password_callback, &cb_data);
1142
1143         BIO_free(bio);
1144
1145         if (pcerts)
1146                 {
1147                 *pcerts = sk_X509_new_null();
1148                 if (!*pcerts)
1149                         goto end;
1150                 }
1151
1152         if (pcrls)
1153                 {
1154                 *pcrls = sk_X509_CRL_new_null();
1155                 if (!*pcrls)
1156                         goto end;
1157                 }
1158
1159         for(i = 0; i < sk_X509_INFO_num(xis); i++)
1160                 {
1161                 xi = sk_X509_INFO_value (xis, i);
1162                 if (xi->x509 && pcerts)
1163                         {
1164                         if (!sk_X509_push(*pcerts, xi->x509))
1165                                 goto end;
1166                         xi->x509 = NULL;
1167                         }
1168                 if (xi->crl && pcrls)
1169                         {
1170                         if (!sk_X509_CRL_push(*pcrls, xi->crl))
1171                                 goto end;
1172                         xi->crl = NULL;
1173                         }
1174                 }
1175
1176         if (pcerts && sk_X509_num(*pcerts) > 0)
1177                 rv = 1;
1178
1179         if (pcrls && sk_X509_CRL_num(*pcrls) > 0)
1180                 rv = 1;
1181
1182         end:
1183
1184         if (xis)
1185                 sk_X509_INFO_pop_free(xis, X509_INFO_free);
1186
1187         if (rv == 0)
1188                 {
1189                 if (pcerts)
1190                         {
1191                         sk_X509_pop_free(*pcerts, X509_free);
1192                         *pcerts = NULL;
1193                         }
1194                 if (pcrls)
1195                         {
1196                         sk_X509_CRL_pop_free(*pcrls, X509_CRL_free);
1197                         *pcrls = NULL;
1198                         }
1199                 BIO_printf(err,"unable to load %s\n",
1200                                 pcerts ? "certificates" : "CRLs");
1201                 ERR_print_errors(err);
1202                 }
1203         return rv;
1204         }
1205
1206 STACK_OF(X509) *load_certs(BIO *err, const char *file, int format,
1207         const char *pass, ENGINE *e, const char *desc)
1208         {
1209         STACK_OF(X509) *certs;
1210         load_certs_crls(err, file, format, pass, e, desc, &certs, NULL);
1211         return certs;
1212         }       
1213
1214 STACK_OF(X509_CRL) *load_crls(BIO *err, const char *file, int format,
1215         const char *pass, ENGINE *e, const char *desc)
1216         {
1217         STACK_OF(X509_CRL) *crls;
1218         load_certs_crls(err, file, format, pass, e, desc, NULL, &crls);
1219         return crls;
1220         }       
1221
1222 #define X509V3_EXT_UNKNOWN_MASK         (0xfL << 16)
1223 /* Return error for unknown extensions */
1224 #define X509V3_EXT_DEFAULT              0
1225 /* Print error for unknown extensions */
1226 #define X509V3_EXT_ERROR_UNKNOWN        (1L << 16)
1227 /* ASN1 parse unknown extensions */
1228 #define X509V3_EXT_PARSE_UNKNOWN        (2L << 16)
1229 /* BIO_dump unknown extensions */
1230 #define X509V3_EXT_DUMP_UNKNOWN         (3L << 16)
1231
1232 #define X509_FLAG_CA (X509_FLAG_NO_ISSUER | X509_FLAG_NO_PUBKEY | \
1233                          X509_FLAG_NO_HEADER | X509_FLAG_NO_VERSION)
1234
1235 int set_cert_ex(unsigned long *flags, const char *arg)
1236 {
1237         static const NAME_EX_TBL cert_tbl[] = {
1238                 { "compatible", X509_FLAG_COMPAT, 0xffffffffl},
1239                 { "ca_default", X509_FLAG_CA, 0xffffffffl},
1240                 { "no_header", X509_FLAG_NO_HEADER, 0},
1241                 { "no_version", X509_FLAG_NO_VERSION, 0},
1242                 { "no_serial", X509_FLAG_NO_SERIAL, 0},
1243                 { "no_signame", X509_FLAG_NO_SIGNAME, 0},
1244                 { "no_validity", X509_FLAG_NO_VALIDITY, 0},
1245                 { "no_subject", X509_FLAG_NO_SUBJECT, 0},
1246                 { "no_issuer", X509_FLAG_NO_ISSUER, 0},
1247                 { "no_pubkey", X509_FLAG_NO_PUBKEY, 0},
1248                 { "no_extensions", X509_FLAG_NO_EXTENSIONS, 0},
1249                 { "no_sigdump", X509_FLAG_NO_SIGDUMP, 0},
1250                 { "no_aux", X509_FLAG_NO_AUX, 0},
1251                 { "no_attributes", X509_FLAG_NO_ATTRIBUTES, 0},
1252                 { "ext_default", X509V3_EXT_DEFAULT, X509V3_EXT_UNKNOWN_MASK},
1253                 { "ext_error", X509V3_EXT_ERROR_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1254                 { "ext_parse", X509V3_EXT_PARSE_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1255                 { "ext_dump", X509V3_EXT_DUMP_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1256                 { NULL, 0, 0}
1257         };
1258         return set_multi_opts(flags, arg, cert_tbl);
1259 }
1260
1261 int set_name_ex(unsigned long *flags, const char *arg)
1262 {
1263         static const NAME_EX_TBL ex_tbl[] = {
1264                 { "esc_2253", ASN1_STRFLGS_ESC_2253, 0},
1265                 { "esc_ctrl", ASN1_STRFLGS_ESC_CTRL, 0},
1266                 { "esc_msb", ASN1_STRFLGS_ESC_MSB, 0},
1267                 { "use_quote", ASN1_STRFLGS_ESC_QUOTE, 0},
1268                 { "utf8", ASN1_STRFLGS_UTF8_CONVERT, 0},
1269                 { "ignore_type", ASN1_STRFLGS_IGNORE_TYPE, 0},
1270                 { "show_type", ASN1_STRFLGS_SHOW_TYPE, 0},
1271                 { "dump_all", ASN1_STRFLGS_DUMP_ALL, 0},
1272                 { "dump_nostr", ASN1_STRFLGS_DUMP_UNKNOWN, 0},
1273                 { "dump_der", ASN1_STRFLGS_DUMP_DER, 0},
1274                 { "compat", XN_FLAG_COMPAT, 0xffffffffL},
1275                 { "sep_comma_plus", XN_FLAG_SEP_COMMA_PLUS, XN_FLAG_SEP_MASK},
1276                 { "sep_comma_plus_space", XN_FLAG_SEP_CPLUS_SPC, XN_FLAG_SEP_MASK},
1277                 { "sep_semi_plus_space", XN_FLAG_SEP_SPLUS_SPC, XN_FLAG_SEP_MASK},
1278                 { "sep_multiline", XN_FLAG_SEP_MULTILINE, XN_FLAG_SEP_MASK},
1279                 { "dn_rev", XN_FLAG_DN_REV, 0},
1280                 { "nofname", XN_FLAG_FN_NONE, XN_FLAG_FN_MASK},
1281                 { "sname", XN_FLAG_FN_SN, XN_FLAG_FN_MASK},
1282                 { "lname", XN_FLAG_FN_LN, XN_FLAG_FN_MASK},
1283                 { "align", XN_FLAG_FN_ALIGN, 0},
1284                 { "oid", XN_FLAG_FN_OID, XN_FLAG_FN_MASK},
1285                 { "space_eq", XN_FLAG_SPC_EQ, 0},
1286                 { "dump_unknown", XN_FLAG_DUMP_UNKNOWN_FIELDS, 0},
1287                 { "RFC2253", XN_FLAG_RFC2253, 0xffffffffL},
1288                 { "oneline", XN_FLAG_ONELINE, 0xffffffffL},
1289                 { "multiline", XN_FLAG_MULTILINE, 0xffffffffL},
1290                 { "ca_default", XN_FLAG_MULTILINE, 0xffffffffL},
1291                 { NULL, 0, 0}
1292         };
1293         return set_multi_opts(flags, arg, ex_tbl);
1294 }
1295
1296 int set_ext_copy(int *copy_type, const char *arg)
1297 {
1298         if (!strcasecmp(arg, "none"))
1299                 *copy_type = EXT_COPY_NONE;
1300         else if (!strcasecmp(arg, "copy"))
1301                 *copy_type = EXT_COPY_ADD;
1302         else if (!strcasecmp(arg, "copyall"))
1303                 *copy_type = EXT_COPY_ALL;
1304         else
1305                 return 0;
1306         return 1;
1307 }
1308
1309 int copy_extensions(X509 *x, X509_REQ *req, int copy_type)
1310 {
1311         STACK_OF(X509_EXTENSION) *exts = NULL;
1312         X509_EXTENSION *ext, *tmpext;
1313         ASN1_OBJECT *obj;
1314         int i, idx, ret = 0;
1315         if (!x || !req || (copy_type == EXT_COPY_NONE))
1316                 return 1;
1317         exts = X509_REQ_get_extensions(req);
1318
1319         for(i = 0; i < sk_X509_EXTENSION_num(exts); i++) {
1320                 ext = sk_X509_EXTENSION_value(exts, i);
1321                 obj = X509_EXTENSION_get_object(ext);
1322                 idx = X509_get_ext_by_OBJ(x, obj, -1);
1323                 /* Does extension exist? */
1324                 if (idx != -1) {
1325                         /* If normal copy don't override existing extension */
1326                         if (copy_type == EXT_COPY_ADD)
1327                                 continue;
1328                         /* Delete all extensions of same type */
1329                         do {
1330                                 tmpext = X509_get_ext(x, idx);
1331                                 X509_delete_ext(x, idx);
1332                                 X509_EXTENSION_free(tmpext);
1333                                 idx = X509_get_ext_by_OBJ(x, obj, -1);
1334                         } while (idx != -1);
1335                 }
1336                 if (!X509_add_ext(x, ext, -1))
1337                         goto end;
1338         }
1339
1340         ret = 1;
1341
1342         end:
1343
1344         sk_X509_EXTENSION_pop_free(exts, X509_EXTENSION_free);
1345
1346         return ret;
1347 }
1348                 
1349                 
1350                         
1351
1352 static int set_multi_opts(unsigned long *flags, const char *arg, const NAME_EX_TBL *in_tbl)
1353 {
1354         STACK_OF(CONF_VALUE) *vals;
1355         CONF_VALUE *val;
1356         int i, ret = 1;
1357         if(!arg) return 0;
1358         vals = X509V3_parse_list(arg);
1359         for (i = 0; i < sk_CONF_VALUE_num(vals); i++) {
1360                 val = sk_CONF_VALUE_value(vals, i);
1361                 if (!set_table_opts(flags, val->name, in_tbl))
1362                         ret = 0;
1363         }
1364         sk_CONF_VALUE_pop_free(vals, X509V3_conf_free);
1365         return ret;
1366 }
1367
1368 static int set_table_opts(unsigned long *flags, const char *arg, const NAME_EX_TBL *in_tbl)
1369 {
1370         char c;
1371         const NAME_EX_TBL *ptbl;
1372         c = arg[0];
1373
1374         if(c == '-') {
1375                 c = 0;
1376                 arg++;
1377         } else if (c == '+') {
1378                 c = 1;
1379                 arg++;
1380         } else c = 1;
1381
1382         for(ptbl = in_tbl; ptbl->name; ptbl++) {
1383                 if(!strcasecmp(arg, ptbl->name)) {
1384                         *flags &= ~ptbl->mask;
1385                         if(c) *flags |= ptbl->flag;
1386                         else *flags &= ~ptbl->flag;
1387                         return 1;
1388                 }
1389         }
1390         return 0;
1391 }
1392
1393 void print_name(BIO *out, const char *title, X509_NAME *nm, unsigned long lflags)
1394 {
1395         char *buf;
1396         char mline = 0;
1397         int indent = 0;
1398
1399         if(title) BIO_puts(out, title);
1400         if((lflags & XN_FLAG_SEP_MASK) == XN_FLAG_SEP_MULTILINE) {
1401                 mline = 1;
1402                 indent = 4;
1403         }
1404         if(lflags == XN_FLAG_COMPAT) {
1405                 buf = X509_NAME_oneline(nm, 0, 0);
1406                 BIO_puts(out, buf);
1407                 BIO_puts(out, "\n");
1408                 OPENSSL_free(buf);
1409         } else {
1410                 if(mline) BIO_puts(out, "\n");
1411                 X509_NAME_print_ex(out, nm, indent, lflags);
1412                 BIO_puts(out, "\n");
1413         }
1414 }
1415
1416 X509_STORE *setup_verify(BIO *bp, char *CAfile, char *CApath)
1417 {
1418         X509_STORE *store;
1419         X509_LOOKUP *lookup;
1420         if(!(store = X509_STORE_new())) goto end;
1421         lookup=X509_STORE_add_lookup(store,X509_LOOKUP_file());
1422         if (lookup == NULL) goto end;
1423         if (CAfile) {
1424                 if(!X509_LOOKUP_load_file(lookup,CAfile,X509_FILETYPE_PEM)) {
1425                         BIO_printf(bp, "Error loading file %s\n", CAfile);
1426                         goto end;
1427                 }
1428         } else X509_LOOKUP_load_file(lookup,NULL,X509_FILETYPE_DEFAULT);
1429                 
1430         lookup=X509_STORE_add_lookup(store,X509_LOOKUP_hash_dir());
1431         if (lookup == NULL) goto end;
1432         if (CApath) {
1433                 if(!X509_LOOKUP_add_dir(lookup,CApath,X509_FILETYPE_PEM)) {
1434                         BIO_printf(bp, "Error loading directory %s\n", CApath);
1435                         goto end;
1436                 }
1437         } else X509_LOOKUP_add_dir(lookup,NULL,X509_FILETYPE_DEFAULT);
1438
1439         ERR_clear_error();
1440         return store;
1441         end:
1442         X509_STORE_free(store);
1443         return NULL;
1444 }
1445
1446 #ifndef OPENSSL_NO_ENGINE
1447 /* Try to load an engine in a shareable library */
1448 static ENGINE *try_load_engine(BIO *err, const char *engine, int debug)
1449         {
1450         ENGINE *e = ENGINE_by_id("dynamic");
1451         if (e)
1452                 {
1453                 if (!ENGINE_ctrl_cmd_string(e, "SO_PATH", engine, 0)
1454                         || !ENGINE_ctrl_cmd_string(e, "LOAD", NULL, 0))
1455                         {
1456                         ENGINE_free(e);
1457                         e = NULL;
1458                         }
1459                 }
1460         return e;
1461         }
1462
1463 ENGINE *setup_engine(BIO *err, const char *engine, int debug)
1464         {
1465         ENGINE *e = NULL;
1466
1467         if (engine)
1468                 {
1469                 if(strcmp(engine, "auto") == 0)
1470                         {
1471                         BIO_printf(err,"enabling auto ENGINE support\n");
1472                         ENGINE_register_all_complete();
1473                         return NULL;
1474                         }
1475                 if((e = ENGINE_by_id(engine)) == NULL
1476                         && (e = try_load_engine(err, engine, debug)) == NULL)
1477                         {
1478                         BIO_printf(err,"invalid engine \"%s\"\n", engine);
1479                         ERR_print_errors(err);
1480                         return NULL;
1481                         }
1482                 if (debug)
1483                         {
1484                         ENGINE_ctrl(e, ENGINE_CTRL_SET_LOGSTREAM,
1485                                 0, err, 0);
1486                         }
1487                 ENGINE_ctrl_cmd(e, "SET_USER_INTERFACE", 0, ui_method, 0, 1);
1488                 if(!ENGINE_set_default(e, ENGINE_METHOD_ALL))
1489                         {
1490                         BIO_printf(err,"can't use that engine\n");
1491                         ERR_print_errors(err);
1492                         ENGINE_free(e);
1493                         return NULL;
1494                         }
1495
1496                 BIO_printf(err,"engine \"%s\" set.\n", ENGINE_get_id(e));
1497
1498                 /* Free our "structural" reference. */
1499                 ENGINE_free(e);
1500                 }
1501         return e;
1502         }
1503 #endif
1504
1505 int load_config(BIO *err, CONF *cnf)
1506         {
1507         static int load_config_called = 0;
1508         if (load_config_called)
1509                 return 1;
1510         load_config_called = 1;
1511         if (!cnf)
1512                 cnf = config;
1513         if (!cnf)
1514                 return 1;
1515
1516         OPENSSL_load_builtin_modules();
1517
1518         if (CONF_modules_load(cnf, NULL, 0) <= 0)
1519                 {
1520                 BIO_printf(err, "Error configuring OpenSSL\n");
1521                 ERR_print_errors(err);
1522                 return 0;
1523                 }
1524         return 1;
1525         }
1526
1527 char *make_config_name()
1528         {
1529         const char *t=X509_get_default_cert_area();
1530         size_t len;
1531         char *p;
1532
1533         len=strlen(t)+strlen(OPENSSL_CONF)+2;
1534         p=OPENSSL_malloc(len);
1535         BUF_strlcpy(p,t,len);
1536 #ifndef OPENSSL_SYS_VMS
1537         BUF_strlcat(p,"/",len);
1538 #endif
1539         BUF_strlcat(p,OPENSSL_CONF,len);
1540
1541         return p;
1542         }
1543
1544 static unsigned long index_serial_hash(const OPENSSL_CSTRING *a)
1545         {
1546         const char *n;
1547
1548         n=a[DB_serial];
1549         while (*n == '0') n++;
1550         return(lh_strhash(n));
1551         }
1552
1553 static int index_serial_cmp(const OPENSSL_CSTRING *a, const OPENSSL_CSTRING *b)
1554         {
1555         const char *aa,*bb;
1556
1557         for (aa=a[DB_serial]; *aa == '0'; aa++);
1558         for (bb=b[DB_serial]; *bb == '0'; bb++);
1559         return(strcmp(aa,bb));
1560         }
1561
1562 static int index_name_qual(char **a)
1563         { return(a[0][0] == 'V'); }
1564
1565 static unsigned long index_name_hash(const OPENSSL_CSTRING *a)
1566         { return(lh_strhash(a[DB_name])); }
1567
1568 int index_name_cmp(const OPENSSL_CSTRING *a, const OPENSSL_CSTRING *b)
1569         { return(strcmp(a[DB_name], b[DB_name])); }
1570
1571 static IMPLEMENT_LHASH_HASH_FN(index_serial, OPENSSL_CSTRING)
1572 static IMPLEMENT_LHASH_COMP_FN(index_serial, OPENSSL_CSTRING)
1573 static IMPLEMENT_LHASH_HASH_FN(index_name, OPENSSL_CSTRING)
1574 static IMPLEMENT_LHASH_COMP_FN(index_name, OPENSSL_CSTRING)
1575
1576 #undef BSIZE
1577 #define BSIZE 256
1578
1579 BIGNUM *load_serial(char *serialfile, int create, ASN1_INTEGER **retai)
1580         {
1581         BIO *in=NULL;
1582         BIGNUM *ret=NULL;
1583         MS_STATIC char buf[1024];
1584         ASN1_INTEGER *ai=NULL;
1585
1586         ai=ASN1_INTEGER_new();
1587         if (ai == NULL) goto err;
1588
1589         if ((in=BIO_new(BIO_s_file())) == NULL)
1590                 {
1591                 ERR_print_errors(bio_err);
1592                 goto err;
1593                 }
1594
1595         if (BIO_read_filename(in,serialfile) <= 0)
1596                 {
1597                 if (!create)
1598                         {
1599                         perror(serialfile);
1600                         goto err;
1601                         }
1602                 else
1603                         {
1604                         ret=BN_new();
1605                         if (ret == NULL || !rand_serial(ret, ai))
1606                                 BIO_printf(bio_err, "Out of memory\n");
1607                         }
1608                 }
1609         else
1610                 {
1611                 if (!a2i_ASN1_INTEGER(in,ai,buf,1024))
1612                         {
1613                         BIO_printf(bio_err,"unable to load number from %s\n",
1614                                 serialfile);
1615                         goto err;
1616                         }
1617                 ret=ASN1_INTEGER_to_BN(ai,NULL);
1618                 if (ret == NULL)
1619                         {
1620                         BIO_printf(bio_err,"error converting number from bin to BIGNUM\n");
1621                         goto err;
1622                         }
1623                 }
1624
1625         if (ret && retai)
1626                 {
1627                 *retai = ai;
1628                 ai = NULL;
1629                 }
1630  err:
1631         if (in != NULL) BIO_free(in);
1632         if (ai != NULL) ASN1_INTEGER_free(ai);
1633         return(ret);
1634         }
1635
1636 int save_serial(char *serialfile, char *suffix, BIGNUM *serial, ASN1_INTEGER **retai)
1637         {
1638         char buf[1][BSIZE];
1639         BIO *out = NULL;
1640         int ret=0;
1641         ASN1_INTEGER *ai=NULL;
1642         int j;
1643
1644         if (suffix == NULL)
1645                 j = strlen(serialfile);
1646         else
1647                 j = strlen(serialfile) + strlen(suffix) + 1;
1648         if (j >= BSIZE)
1649                 {
1650                 BIO_printf(bio_err,"file name too long\n");
1651                 goto err;
1652                 }
1653
1654         if (suffix == NULL)
1655                 BUF_strlcpy(buf[0], serialfile, BSIZE);
1656         else
1657                 {
1658 #ifndef OPENSSL_SYS_VMS
1659                 j = BIO_snprintf(buf[0], sizeof buf[0], "%s.%s", serialfile, suffix);
1660 #else
1661                 j = BIO_snprintf(buf[0], sizeof buf[0], "%s-%s", serialfile, suffix);
1662 #endif
1663                 }
1664 #ifdef RL_DEBUG
1665         BIO_printf(bio_err, "DEBUG: writing \"%s\"\n", buf[0]);
1666 #endif
1667         out=BIO_new(BIO_s_file());
1668         if (out == NULL)
1669                 {
1670                 ERR_print_errors(bio_err);
1671                 goto err;
1672                 }
1673         if (BIO_write_filename(out,buf[0]) <= 0)
1674                 {
1675                 perror(serialfile);
1676                 goto err;
1677                 }
1678
1679         if ((ai=BN_to_ASN1_INTEGER(serial,NULL)) == NULL)
1680                 {
1681                 BIO_printf(bio_err,"error converting serial to ASN.1 format\n");
1682                 goto err;
1683                 }
1684         i2a_ASN1_INTEGER(out,ai);
1685         BIO_puts(out,"\n");
1686         ret=1;
1687         if (retai)
1688                 {
1689                 *retai = ai;
1690                 ai = NULL;
1691                 }
1692 err:
1693         if (out != NULL) BIO_free_all(out);
1694         if (ai != NULL) ASN1_INTEGER_free(ai);
1695         return(ret);
1696         }
1697
1698 int rotate_serial(char *serialfile, char *new_suffix, char *old_suffix)
1699         {
1700         char buf[5][BSIZE];
1701         int i,j;
1702
1703         i = strlen(serialfile) + strlen(old_suffix);
1704         j = strlen(serialfile) + strlen(new_suffix);
1705         if (i > j) j = i;
1706         if (j + 1 >= BSIZE)
1707                 {
1708                 BIO_printf(bio_err,"file name too long\n");
1709                 goto err;
1710                 }
1711
1712 #ifndef OPENSSL_SYS_VMS
1713         j = BIO_snprintf(buf[0], sizeof buf[0], "%s.%s",
1714                 serialfile, new_suffix);
1715 #else
1716         j = BIO_snprintf(buf[0], sizeof buf[0], "%s-%s",
1717                 serialfile, new_suffix);
1718 #endif
1719 #ifndef OPENSSL_SYS_VMS
1720         j = BIO_snprintf(buf[1], sizeof buf[1], "%s.%s",
1721                 serialfile, old_suffix);
1722 #else
1723         j = BIO_snprintf(buf[1], sizeof buf[1], "%s-%s",
1724                 serialfile, old_suffix);
1725 #endif
1726 #ifdef RL_DEBUG
1727         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
1728                 serialfile, buf[1]);
1729 #endif
1730         if (rename(serialfile,buf[1]) < 0 && errno != ENOENT
1731 #ifdef ENOTDIR
1732                         && errno != ENOTDIR
1733 #endif
1734            )            {
1735                         BIO_printf(bio_err,
1736                                 "unable to rename %s to %s\n",
1737                                 serialfile, buf[1]);
1738                         perror("reason");
1739                         goto err;
1740                         }
1741 #ifdef RL_DEBUG
1742         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
1743                 buf[0],serialfile);
1744 #endif
1745         if (rename(buf[0],serialfile) < 0)
1746                 {
1747                 BIO_printf(bio_err,
1748                         "unable to rename %s to %s\n",
1749                         buf[0],serialfile);
1750                 perror("reason");
1751                 rename(buf[1],serialfile);
1752                 goto err;
1753                 }
1754         return 1;
1755  err:
1756         return 0;
1757         }
1758
1759 int rand_serial(BIGNUM *b, ASN1_INTEGER *ai)
1760         {
1761         BIGNUM *btmp;
1762         int ret = 0;
1763         if (b)
1764                 btmp = b;
1765         else
1766                 btmp = BN_new();
1767
1768         if (!btmp)
1769                 return 0;
1770
1771         if (!BN_pseudo_rand(btmp, SERIAL_RAND_BITS, 0, 0))
1772                 goto error;
1773         if (ai && !BN_to_ASN1_INTEGER(btmp, ai))
1774                 goto error;
1775
1776         ret = 1;
1777         
1778         error:
1779
1780         if (!b)
1781                 BN_free(btmp);
1782         
1783         return ret;
1784         }
1785
1786 CA_DB *load_index(char *dbfile, DB_ATTR *db_attr)
1787         {
1788         CA_DB *retdb = NULL;
1789         TXT_DB *tmpdb = NULL;
1790         BIO *in = BIO_new(BIO_s_file());
1791         CONF *dbattr_conf = NULL;
1792         char buf[1][BSIZE];
1793         long errorline= -1;
1794
1795         if (in == NULL)
1796                 {
1797                 ERR_print_errors(bio_err);
1798                 goto err;
1799                 }
1800         if (BIO_read_filename(in,dbfile) <= 0)
1801                 {
1802                 perror(dbfile);
1803                 BIO_printf(bio_err,"unable to open '%s'\n",dbfile);
1804                 goto err;
1805                 }
1806         if ((tmpdb = TXT_DB_read(in,DB_NUMBER)) == NULL)
1807                 goto err;
1808
1809 #ifndef OPENSSL_SYS_VMS
1810         BIO_snprintf(buf[0], sizeof buf[0], "%s.attr", dbfile);
1811 #else
1812         BIO_snprintf(buf[0], sizeof buf[0], "%s-attr", dbfile);
1813 #endif
1814         dbattr_conf = NCONF_new(NULL);
1815         if (NCONF_load(dbattr_conf,buf[0],&errorline) <= 0)
1816                 {
1817                 if (errorline > 0)
1818                         {
1819                         BIO_printf(bio_err,
1820                                 "error on line %ld of db attribute file '%s'\n"
1821                                 ,errorline,buf[0]);
1822                         goto err;
1823                         }
1824                 else
1825                         {
1826                         NCONF_free(dbattr_conf);
1827                         dbattr_conf = NULL;
1828                         }
1829                 }
1830
1831         if ((retdb = OPENSSL_malloc(sizeof(CA_DB))) == NULL)
1832                 {
1833                 fprintf(stderr, "Out of memory\n");
1834                 goto err;
1835                 }
1836
1837         retdb->db = tmpdb;
1838         tmpdb = NULL;
1839         if (db_attr)
1840                 retdb->attributes = *db_attr;
1841         else
1842                 {
1843                 retdb->attributes.unique_subject = 1;
1844                 }
1845
1846         if (dbattr_conf)
1847                 {
1848                 char *p = NCONF_get_string(dbattr_conf,NULL,"unique_subject");
1849                 if (p)
1850                         {
1851 #ifdef RL_DEBUG
1852                         BIO_printf(bio_err, "DEBUG[load_index]: unique_subject = \"%s\"\n", p);
1853 #endif
1854                         retdb->attributes.unique_subject = parse_yesno(p,1);
1855                         }
1856                 }
1857
1858  err:
1859         if (dbattr_conf) NCONF_free(dbattr_conf);
1860         if (tmpdb) TXT_DB_free(tmpdb);
1861         if (in) BIO_free_all(in);
1862         return retdb;
1863         }
1864
1865 int index_index(CA_DB *db)
1866         {
1867         if (!TXT_DB_create_index(db->db, DB_serial, NULL,
1868                                 LHASH_HASH_FN(index_serial),
1869                                 LHASH_COMP_FN(index_serial)))
1870                 {
1871                 BIO_printf(bio_err,
1872                   "error creating serial number index:(%ld,%ld,%ld)\n",
1873                                         db->db->error,db->db->arg1,db->db->arg2);
1874                         return 0;
1875                 }
1876
1877         if (db->attributes.unique_subject
1878                 && !TXT_DB_create_index(db->db, DB_name, index_name_qual,
1879                         LHASH_HASH_FN(index_name),
1880                         LHASH_COMP_FN(index_name)))
1881                 {
1882                 BIO_printf(bio_err,"error creating name index:(%ld,%ld,%ld)\n",
1883                         db->db->error,db->db->arg1,db->db->arg2);
1884                 return 0;
1885                 }
1886         return 1;
1887         }
1888
1889 int save_index(const char *dbfile, const char *suffix, CA_DB *db)
1890         {
1891         char buf[3][BSIZE];
1892         BIO *out = BIO_new(BIO_s_file());
1893         int j;
1894
1895         if (out == NULL)
1896                 {
1897                 ERR_print_errors(bio_err);
1898                 goto err;
1899                 }
1900
1901         j = strlen(dbfile) + strlen(suffix);
1902         if (j + 6 >= BSIZE)
1903                 {
1904                 BIO_printf(bio_err,"file name too long\n");
1905                 goto err;
1906                 }
1907
1908 #ifndef OPENSSL_SYS_VMS
1909         j = BIO_snprintf(buf[2], sizeof buf[2], "%s.attr", dbfile);
1910 #else
1911         j = BIO_snprintf(buf[2], sizeof buf[2], "%s-attr", dbfile);
1912 #endif
1913 #ifndef OPENSSL_SYS_VMS
1914         j = BIO_snprintf(buf[1], sizeof buf[1], "%s.attr.%s", dbfile, suffix);
1915 #else
1916         j = BIO_snprintf(buf[1], sizeof buf[1], "%s-attr-%s", dbfile, suffix);
1917 #endif
1918 #ifndef OPENSSL_SYS_VMS
1919         j = BIO_snprintf(buf[0], sizeof buf[0], "%s.%s", dbfile, suffix);
1920 #else
1921         j = BIO_snprintf(buf[0], sizeof buf[0], "%s-%s", dbfile, suffix);
1922 #endif
1923 #ifdef RL_DEBUG
1924         BIO_printf(bio_err, "DEBUG: writing \"%s\"\n", buf[0]);
1925 #endif
1926         if (BIO_write_filename(out,buf[0]) <= 0)
1927                 {
1928                 perror(dbfile);
1929                 BIO_printf(bio_err,"unable to open '%s'\n", dbfile);
1930                 goto err;
1931                 }
1932         j=TXT_DB_write(out,db->db);
1933         if (j <= 0) goto err;
1934                         
1935         BIO_free(out);
1936
1937         out = BIO_new(BIO_s_file());
1938 #ifdef RL_DEBUG
1939         BIO_printf(bio_err, "DEBUG: writing \"%s\"\n", buf[1]);
1940 #endif
1941         if (BIO_write_filename(out,buf[1]) <= 0)
1942                 {
1943                 perror(buf[2]);
1944                 BIO_printf(bio_err,"unable to open '%s'\n", buf[2]);
1945                 goto err;
1946                 }
1947         BIO_printf(out,"unique_subject = %s\n",
1948                 db->attributes.unique_subject ? "yes" : "no");
1949         BIO_free(out);
1950
1951         return 1;
1952  err:
1953         return 0;
1954         }
1955
1956 int rotate_index(const char *dbfile, const char *new_suffix, const char *old_suffix)
1957         {
1958         char buf[5][BSIZE];
1959         int i,j;
1960
1961         i = strlen(dbfile) + strlen(old_suffix);
1962         j = strlen(dbfile) + strlen(new_suffix);
1963         if (i > j) j = i;
1964         if (j + 6 >= BSIZE)
1965                 {
1966                 BIO_printf(bio_err,"file name too long\n");
1967                 goto err;
1968                 }
1969
1970 #ifndef OPENSSL_SYS_VMS
1971         j = BIO_snprintf(buf[4], sizeof buf[4], "%s.attr", dbfile);
1972 #else
1973         j = BIO_snprintf(buf[4], sizeof buf[4], "%s-attr", dbfile);
1974 #endif
1975 #ifndef OPENSSL_SYS_VMS
1976         j = BIO_snprintf(buf[2], sizeof buf[2], "%s.attr.%s",
1977                 dbfile, new_suffix);
1978 #else
1979         j = BIO_snprintf(buf[2], sizeof buf[2], "%s-attr-%s",
1980                 dbfile, new_suffix);
1981 #endif
1982 #ifndef OPENSSL_SYS_VMS
1983         j = BIO_snprintf(buf[0], sizeof buf[0], "%s.%s",
1984                 dbfile, new_suffix);
1985 #else
1986         j = BIO_snprintf(buf[0], sizeof buf[0], "%s-%s",
1987                 dbfile, new_suffix);
1988 #endif
1989 #ifndef OPENSSL_SYS_VMS
1990         j = BIO_snprintf(buf[1], sizeof buf[1], "%s.%s",
1991                 dbfile, old_suffix);
1992 #else
1993         j = BIO_snprintf(buf[1], sizeof buf[1], "%s-%s",
1994                 dbfile, old_suffix);
1995 #endif
1996 #ifndef OPENSSL_SYS_VMS
1997         j = BIO_snprintf(buf[3], sizeof buf[3], "%s.attr.%s",
1998                 dbfile, old_suffix);
1999 #else
2000         j = BIO_snprintf(buf[3], sizeof buf[3], "%s-attr-%s",
2001                 dbfile, old_suffix);
2002 #endif
2003 #ifdef RL_DEBUG
2004         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
2005                 dbfile, buf[1]);
2006 #endif
2007         if (rename(dbfile,buf[1]) < 0 && errno != ENOENT
2008 #ifdef ENOTDIR
2009                 && errno != ENOTDIR
2010 #endif
2011            )            {
2012                         BIO_printf(bio_err,
2013                                 "unable to rename %s to %s\n",
2014                                 dbfile, buf[1]);
2015                         perror("reason");
2016                         goto err;
2017                         }
2018 #ifdef RL_DEBUG
2019         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
2020                 buf[0],dbfile);
2021 #endif
2022         if (rename(buf[0],dbfile) < 0)
2023                 {
2024                 BIO_printf(bio_err,
2025                         "unable to rename %s to %s\n",
2026                         buf[0],dbfile);
2027                 perror("reason");
2028                 rename(buf[1],dbfile);
2029                 goto err;
2030                 }
2031 #ifdef RL_DEBUG
2032         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
2033                 buf[4],buf[3]);
2034 #endif
2035         if (rename(buf[4],buf[3]) < 0 && errno != ENOENT
2036 #ifdef ENOTDIR
2037                 && errno != ENOTDIR
2038 #endif
2039            )            {
2040                         BIO_printf(bio_err,
2041                                 "unable to rename %s to %s\n",
2042                                 buf[4], buf[3]);
2043                         perror("reason");
2044                         rename(dbfile,buf[0]);
2045                         rename(buf[1],dbfile);
2046                         goto err;
2047                         }
2048 #ifdef RL_DEBUG
2049         BIO_printf(bio_err, "DEBUG: renaming \"%s\" to \"%s\"\n",
2050                 buf[2],buf[4]);
2051 #endif
2052         if (rename(buf[2],buf[4]) < 0)
2053                 {
2054                 BIO_printf(bio_err,
2055                         "unable to rename %s to %s\n",
2056                         buf[2],buf[4]);
2057                 perror("reason");
2058                 rename(buf[3],buf[4]);
2059                 rename(dbfile,buf[0]);
2060                 rename(buf[1],dbfile);
2061                 goto err;
2062                 }
2063         return 1;
2064  err:
2065         return 0;
2066         }
2067
2068 void free_index(CA_DB *db)
2069         {
2070         if (db)
2071                 {
2072                 if (db->db) TXT_DB_free(db->db);
2073                 OPENSSL_free(db);
2074                 }
2075         }
2076
2077 int parse_yesno(const char *str, int def)
2078         {
2079         int ret = def;
2080         if (str)
2081                 {
2082                 switch (*str)
2083                         {
2084                 case 'f': /* false */
2085                 case 'F': /* FALSE */
2086                 case 'n': /* no */
2087                 case 'N': /* NO */
2088                 case '0': /* 0 */
2089                         ret = 0;
2090                         break;
2091                 case 't': /* true */
2092                 case 'T': /* TRUE */
2093                 case 'y': /* yes */
2094                 case 'Y': /* YES */
2095                 case '1': /* 1 */
2096                         ret = 1;
2097                         break;
2098                 default:
2099                         ret = def;
2100                         break;
2101                         }
2102                 }
2103         return ret;
2104         }
2105
2106 /*
2107  * subject is expected to be in the format /type0=value0/type1=value1/type2=...
2108  * where characters may be escaped by \
2109  */
2110 X509_NAME *parse_name(char *subject, long chtype, int multirdn)
2111         {
2112         size_t buflen = strlen(subject)+1; /* to copy the types and values into. due to escaping, the copy can only become shorter */
2113         char *buf = OPENSSL_malloc(buflen);
2114         size_t max_ne = buflen / 2 + 1; /* maximum number of name elements */
2115         char **ne_types = OPENSSL_malloc(max_ne * sizeof (char *));
2116         char **ne_values = OPENSSL_malloc(max_ne * sizeof (char *));
2117         int *mval = OPENSSL_malloc (max_ne * sizeof (int));
2118
2119         char *sp = subject, *bp = buf;
2120         int i, ne_num = 0;
2121
2122         X509_NAME *n = NULL;
2123         int nid;
2124
2125         if (!buf || !ne_types || !ne_values)
2126                 {
2127                 BIO_printf(bio_err, "malloc error\n");
2128                 goto error;
2129                 }       
2130
2131         if (*subject != '/')
2132                 {
2133                 BIO_printf(bio_err, "Subject does not start with '/'.\n");
2134                 goto error;
2135                 }
2136         sp++; /* skip leading / */
2137
2138         /* no multivalued RDN by default */
2139         mval[ne_num] = 0;
2140
2141         while (*sp)
2142                 {
2143                 /* collect type */
2144                 ne_types[ne_num] = bp;
2145                 while (*sp)
2146                         {
2147                         if (*sp == '\\') /* is there anything to escape in the type...? */
2148                                 {
2149                                 if (*++sp)
2150                                         *bp++ = *sp++;
2151                                 else    
2152                                         {
2153                                         BIO_printf(bio_err, "escape character at end of string\n");
2154                                         goto error;
2155                                         }
2156                                 }       
2157                         else if (*sp == '=')
2158                                 {
2159                                 sp++;
2160                                 *bp++ = '\0';
2161                                 break;
2162                                 }
2163                         else
2164                                 *bp++ = *sp++;
2165                         }
2166                 if (!*sp)
2167                         {
2168                         BIO_printf(bio_err, "end of string encountered while processing type of subject name element #%d\n", ne_num);
2169                         goto error;
2170                         }
2171                 ne_values[ne_num] = bp;
2172                 while (*sp)
2173                         {
2174                         if (*sp == '\\')
2175                                 {
2176                                 if (*++sp)
2177                                         *bp++ = *sp++;
2178                                 else
2179                                         {
2180                                         BIO_printf(bio_err, "escape character at end of string\n");
2181                                         goto error;
2182                                         }
2183                                 }
2184                         else if (*sp == '/')
2185                                 {
2186                                 sp++;
2187                                 /* no multivalued RDN by default */
2188                                 mval[ne_num+1] = 0;
2189                                 break;
2190                                 }
2191                         else if (*sp == '+' && multirdn)
2192                                 {
2193                                 /* a not escaped + signals a mutlivalued RDN */
2194                                 sp++;
2195                                 mval[ne_num+1] = -1;
2196                                 break;
2197                                 }
2198                         else
2199                                 *bp++ = *sp++;
2200                         }
2201                 *bp++ = '\0';
2202                 ne_num++;
2203                 }       
2204
2205         if (!(n = X509_NAME_new()))
2206                 goto error;
2207
2208         for (i = 0; i < ne_num; i++)
2209                 {
2210                 if ((nid=OBJ_txt2nid(ne_types[i])) == NID_undef)
2211                         {
2212                         BIO_printf(bio_err, "Subject Attribute %s has no known NID, skipped\n", ne_types[i]);
2213                         continue;
2214                         }
2215
2216                 if (!*ne_values[i])
2217                         {
2218                         BIO_printf(bio_err, "No value provided for Subject Attribute %s, skipped\n", ne_types[i]);
2219                         continue;
2220                         }
2221
2222                 if (!X509_NAME_add_entry_by_NID(n, nid, chtype, (unsigned char*)ne_values[i], -1,-1,mval[i]))
2223                         goto error;
2224                 }
2225
2226         OPENSSL_free(ne_values);
2227         OPENSSL_free(ne_types);
2228         OPENSSL_free(buf);
2229         return n;
2230
2231 error:
2232         X509_NAME_free(n);
2233         if (ne_values)
2234                 OPENSSL_free(ne_values);
2235         if (ne_types)
2236                 OPENSSL_free(ne_types);
2237         if (buf)
2238                 OPENSSL_free(buf);
2239         return NULL;
2240 }
2241
2242 int args_verify(char ***pargs, int *pargc,
2243                         int *badarg, BIO *err, X509_VERIFY_PARAM **pm)
2244         {
2245         ASN1_OBJECT *otmp = NULL;
2246         unsigned long flags = 0;
2247         int i;
2248         int purpose = 0, depth = -1;
2249         char **oldargs = *pargs;
2250         char *arg = **pargs, *argn = (*pargs)[1];
2251         if (!strcmp(arg, "-policy"))
2252                 {
2253                 if (!argn)
2254                         *badarg = 1;
2255                 else
2256                         {
2257                         otmp = OBJ_txt2obj(argn, 0);
2258                         if (!otmp)
2259                                 {
2260                                 BIO_printf(err, "Invalid Policy \"%s\"\n",
2261                                                                         argn);
2262                                 *badarg = 1;
2263                                 }
2264                         }
2265                 (*pargs)++;
2266                 }
2267         else if (strcmp(arg,"-purpose") == 0)
2268                 {
2269                 X509_PURPOSE *xptmp;
2270                 if (!argn)
2271                         *badarg = 1;
2272                 else
2273                         {
2274                         i = X509_PURPOSE_get_by_sname(argn);
2275                         if(i < 0)
2276                                 {
2277                                 BIO_printf(err, "unrecognized purpose\n");
2278                                 *badarg = 1;
2279                                 }
2280                         else
2281                                 {
2282                                 xptmp = X509_PURPOSE_get0(i);
2283                                 purpose = X509_PURPOSE_get_id(xptmp);
2284                                 }
2285                         }
2286                 (*pargs)++;
2287                 }
2288         else if (strcmp(arg,"-verify_depth") == 0)
2289                 {
2290                 if (!argn)
2291                         *badarg = 1;
2292                 else
2293                         {
2294                         depth = atoi(argn);
2295                         if(depth < 0)
2296                                 {
2297                                 BIO_printf(err, "invalid depth\n");
2298                                 *badarg = 1;
2299                                 }
2300                         }
2301                 (*pargs)++;
2302                 }
2303         else if (!strcmp(arg, "-ignore_critical"))
2304                 flags |= X509_V_FLAG_IGNORE_CRITICAL;
2305         else if (!strcmp(arg, "-issuer_checks"))
2306                 flags |= X509_V_FLAG_CB_ISSUER_CHECK;
2307         else if (!strcmp(arg, "-crl_check"))
2308                 flags |=  X509_V_FLAG_CRL_CHECK;
2309         else if (!strcmp(arg, "-crl_check_all"))
2310                 flags |= X509_V_FLAG_CRL_CHECK|X509_V_FLAG_CRL_CHECK_ALL;
2311         else if (!strcmp(arg, "-policy_check"))
2312                 flags |= X509_V_FLAG_POLICY_CHECK;
2313         else if (!strcmp(arg, "-explicit_policy"))
2314                 flags |= X509_V_FLAG_EXPLICIT_POLICY;
2315         else if (!strcmp(arg, "-inhibit_any"))
2316                 flags |= X509_V_FLAG_INHIBIT_ANY;
2317         else if (!strcmp(arg, "-inhibit_map"))
2318                 flags |= X509_V_FLAG_INHIBIT_MAP;
2319         else if (!strcmp(arg, "-x509_strict"))
2320                 flags |= X509_V_FLAG_X509_STRICT;
2321         else if (!strcmp(arg, "-extended_crl"))
2322                 flags |= X509_V_FLAG_EXTENDED_CRL_SUPPORT;
2323         else if (!strcmp(arg, "-use_deltas"))
2324                 flags |= X509_V_FLAG_USE_DELTAS;
2325         else if (!strcmp(arg, "-policy_print"))
2326                 flags |= X509_V_FLAG_NOTIFY_POLICY;
2327         else if (!strcmp(arg, "-check_ss_sig"))
2328                 flags |= X509_V_FLAG_CHECK_SS_SIGNATURE;
2329         else
2330                 return 0;
2331
2332         if (*badarg)
2333                 {
2334                 if (*pm)
2335                         X509_VERIFY_PARAM_free(*pm);
2336                 *pm = NULL;
2337                 goto end;
2338                 }
2339
2340         if (!*pm && !(*pm = X509_VERIFY_PARAM_new()))
2341                 {
2342                 *badarg = 1;
2343                 goto end;
2344                 }
2345
2346         if (otmp)
2347                 X509_VERIFY_PARAM_add0_policy(*pm, otmp);
2348         if (flags)
2349                 X509_VERIFY_PARAM_set_flags(*pm, flags);
2350
2351         if (purpose)
2352                 X509_VERIFY_PARAM_set_purpose(*pm, purpose);
2353
2354         if (depth >= 0)
2355                 X509_VERIFY_PARAM_set_depth(*pm, depth);
2356
2357         end:
2358
2359         (*pargs)++;
2360
2361         if (pargc)
2362                 *pargc -= *pargs - oldargs;
2363
2364         return 1;
2365
2366         }
2367
2368 /* Read whole contents of a BIO into an allocated memory buffer and
2369  * return it.
2370  */
2371
2372 int bio_to_mem(unsigned char **out, int maxlen, BIO *in)
2373         {
2374         BIO *mem;
2375         int len, ret;
2376         unsigned char tbuf[1024];
2377         mem = BIO_new(BIO_s_mem());
2378         if (!mem)
2379                 return -1;
2380         for(;;)
2381                 {
2382                 if ((maxlen != -1) && maxlen < 1024)
2383                         len = maxlen;
2384                 else
2385                         len = 1024;
2386                 len = BIO_read(in, tbuf, len);
2387                 if (len <= 0)
2388                         break;
2389                 if (BIO_write(mem, tbuf, len) != len)
2390                         {
2391                         BIO_free(mem);
2392                         return -1;
2393                         }
2394                 maxlen -= len;
2395
2396                 if (maxlen == 0)
2397                         break;
2398                 }
2399         ret = BIO_get_mem_data(mem, (char **)out);
2400         BIO_set_flags(mem, BIO_FLAGS_MEM_RDONLY);
2401         BIO_free(mem);
2402         return ret;
2403         }
2404
2405 int pkey_ctrl_string(EVP_PKEY_CTX *ctx, char *value)
2406         {
2407         int rv;
2408         char *stmp, *vtmp = NULL;
2409         stmp = BUF_strdup(value);
2410         if (!stmp)
2411                 return -1;
2412         vtmp = strchr(stmp, ':');
2413         if (vtmp)
2414                 {
2415                 *vtmp = 0;
2416                 vtmp++;
2417                 }
2418         rv = EVP_PKEY_CTX_ctrl_str(ctx, stmp, vtmp);
2419         OPENSSL_free(stmp);
2420         return rv;
2421         }
2422
2423 static void nodes_print(BIO *out, const char *name,
2424         STACK_OF(X509_POLICY_NODE) *nodes)
2425         {
2426         X509_POLICY_NODE *node;
2427         int i;
2428         BIO_printf(out, "%s Policies:", name);
2429         if (nodes)
2430                 {
2431                 BIO_puts(out, "\n");
2432                 for (i = 0; i < sk_X509_POLICY_NODE_num(nodes); i++)
2433                         {
2434                         node = sk_X509_POLICY_NODE_value(nodes, i);
2435                         X509_POLICY_NODE_print(out, node, 2);
2436                         }
2437                 }
2438         else
2439                 BIO_puts(out, " <empty>\n");
2440         }
2441
2442 void policies_print(BIO *out, X509_STORE_CTX *ctx)
2443         {
2444         X509_POLICY_TREE *tree;
2445         int explicit_policy;
2446         int free_out = 0;
2447         if (out == NULL)
2448                 {
2449                 out = BIO_new_fp(stderr, BIO_NOCLOSE);
2450                 free_out = 1;
2451                 }
2452         tree = X509_STORE_CTX_get0_policy_tree(ctx);
2453         explicit_policy = X509_STORE_CTX_get_explicit_policy(ctx);
2454
2455         BIO_printf(out, "Require explicit Policy: %s\n",
2456                                 explicit_policy ? "True" : "False");
2457
2458         nodes_print(out, "Authority", X509_policy_tree_get0_policies(tree));
2459         nodes_print(out, "User", X509_policy_tree_get0_user_policies(tree));
2460         if (free_out)
2461                 BIO_free(out);
2462         }
2463
2464 #if !defined(OPENSSL_NO_JPAKE) && !defined(OPENSSL_NO_PSK)
2465
2466 static JPAKE_CTX *jpake_init(const char *us, const char *them,
2467                                                          const char *secret)
2468         {
2469         BIGNUM *p = NULL;
2470         BIGNUM *g = NULL;
2471         BIGNUM *q = NULL;
2472         BIGNUM *bnsecret = BN_new();
2473         JPAKE_CTX *ctx;
2474
2475         /* Use a safe prime for p (that we found earlier) */
2476         BN_hex2bn(&p, "F9E5B365665EA7A05A9C534502780FEE6F1AB5BD4F49947FD036DBD7E905269AF46EF28B0FC07487EE4F5D20FB3C0AF8E700F3A2FA3414970CBED44FEDFF80CE78D800F184BB82435D137AADA2C6C16523247930A63B85661D1FC817A51ACD96168E95898A1F83A79FFB529368AA7833ABD1B0C3AEDDB14D2E1A2F71D99F763F");
2477         g = BN_new();
2478         BN_set_word(g, 2);
2479         q = BN_new();
2480         BN_rshift1(q, p);
2481
2482         BN_bin2bn((const unsigned char *)secret, strlen(secret), bnsecret);
2483
2484         ctx = JPAKE_CTX_new(us, them, p, g, q, bnsecret);
2485         BN_free(bnsecret);
2486         BN_free(q);
2487         BN_free(g);
2488         BN_free(p);
2489
2490         return ctx;
2491         }
2492
2493 static void jpake_send_part(BIO *conn, const JPAKE_STEP_PART *p)
2494         {
2495         BN_print(conn, p->gx);
2496         BIO_puts(conn, "\n");
2497         BN_print(conn, p->zkpx.gr);
2498         BIO_puts(conn, "\n");
2499         BN_print(conn, p->zkpx.b);
2500         BIO_puts(conn, "\n");
2501         }
2502
2503 static void jpake_send_step1(BIO *bconn, JPAKE_CTX *ctx)
2504         {
2505         JPAKE_STEP1 s1;
2506
2507         JPAKE_STEP1_init(&s1);
2508         JPAKE_STEP1_generate(&s1, ctx);
2509         jpake_send_part(bconn, &s1.p1);
2510         jpake_send_part(bconn, &s1.p2);
2511         (void)BIO_flush(bconn);
2512         JPAKE_STEP1_release(&s1);
2513         }
2514
2515 static void jpake_send_step2(BIO *bconn, JPAKE_CTX *ctx)
2516         {
2517         JPAKE_STEP2 s2;
2518
2519         JPAKE_STEP2_init(&s2);
2520         JPAKE_STEP2_generate(&s2, ctx);
2521         jpake_send_part(bconn, &s2);
2522         (void)BIO_flush(bconn);
2523         JPAKE_STEP2_release(&s2);
2524         }
2525
2526 static void jpake_send_step3a(BIO *bconn, JPAKE_CTX *ctx)
2527         {
2528         JPAKE_STEP3A s3a;
2529
2530         JPAKE_STEP3A_init(&s3a);
2531         JPAKE_STEP3A_generate(&s3a, ctx);
2532         BIO_write(bconn, s3a.hhk, sizeof s3a.hhk);
2533         (void)BIO_flush(bconn);
2534         JPAKE_STEP3A_release(&s3a);
2535         }
2536
2537 static void jpake_send_step3b(BIO *bconn, JPAKE_CTX *ctx)
2538         {
2539         JPAKE_STEP3B s3b;
2540
2541         JPAKE_STEP3B_init(&s3b);
2542         JPAKE_STEP3B_generate(&s3b, ctx);
2543         BIO_write(bconn, s3b.hk, sizeof s3b.hk);
2544         (void)BIO_flush(bconn);
2545         JPAKE_STEP3B_release(&s3b);
2546         }
2547
2548 static void readbn(BIGNUM **bn, BIO *bconn)
2549         {
2550         char buf[10240];
2551         int l;
2552
2553         l = BIO_gets(bconn, buf, sizeof buf);
2554         assert(l > 0);
2555         assert(buf[l-1] == '\n');
2556         buf[l-1] = '\0';
2557         BN_hex2bn(bn, buf);
2558         }
2559
2560 static void jpake_receive_part(JPAKE_STEP_PART *p, BIO *bconn)
2561         {
2562         readbn(&p->gx, bconn);
2563         readbn(&p->zkpx.gr, bconn);
2564         readbn(&p->zkpx.b, bconn);
2565         }
2566
2567 static void jpake_receive_step1(JPAKE_CTX *ctx, BIO *bconn)
2568         {
2569         JPAKE_STEP1 s1;
2570
2571         JPAKE_STEP1_init(&s1);
2572         jpake_receive_part(&s1.p1, bconn);
2573         jpake_receive_part(&s1.p2, bconn);
2574         if(!JPAKE_STEP1_process(ctx, &s1))
2575                 {
2576                 ERR_print_errors(bio_err);
2577                 exit(1);
2578                 }
2579         JPAKE_STEP1_release(&s1);
2580         }
2581
2582 static void jpake_receive_step2(JPAKE_CTX *ctx, BIO *bconn)
2583         {
2584         JPAKE_STEP2 s2;
2585
2586         JPAKE_STEP2_init(&s2);
2587         jpake_receive_part(&s2, bconn);
2588         if(!JPAKE_STEP2_process(ctx, &s2))
2589                 {
2590                 ERR_print_errors(bio_err);
2591                 exit(1);
2592                 }
2593         JPAKE_STEP2_release(&s2);
2594         }
2595
2596 static void jpake_receive_step3a(JPAKE_CTX *ctx, BIO *bconn)
2597         {
2598         JPAKE_STEP3A s3a;
2599         int l;
2600
2601         JPAKE_STEP3A_init(&s3a);
2602         l = BIO_read(bconn, s3a.hhk, sizeof s3a.hhk);
2603         assert(l == sizeof s3a.hhk);
2604         if(!JPAKE_STEP3A_process(ctx, &s3a))
2605                 {
2606                 ERR_print_errors(bio_err);
2607                 exit(1);
2608                 }
2609         JPAKE_STEP3A_release(&s3a);
2610         }
2611
2612 static void jpake_receive_step3b(JPAKE_CTX *ctx, BIO *bconn)
2613         {
2614         JPAKE_STEP3B s3b;
2615         int l;
2616
2617         JPAKE_STEP3B_init(&s3b);
2618         l = BIO_read(bconn, s3b.hk, sizeof s3b.hk);
2619         assert(l == sizeof s3b.hk);
2620         if(!JPAKE_STEP3B_process(ctx, &s3b))
2621                 {
2622                 ERR_print_errors(bio_err);
2623                 exit(1);
2624                 }
2625         JPAKE_STEP3B_release(&s3b);
2626         }
2627
2628 void jpake_client_auth(BIO *out, BIO *conn, const char *secret)
2629         {
2630         JPAKE_CTX *ctx;
2631         BIO *bconn;
2632
2633         BIO_puts(out, "Authenticating with JPAKE\n");
2634
2635         ctx = jpake_init("client", "server", secret);
2636
2637         bconn = BIO_new(BIO_f_buffer());
2638         BIO_push(bconn, conn);
2639
2640         jpake_send_step1(bconn, ctx);
2641         jpake_receive_step1(ctx, bconn);
2642         jpake_send_step2(bconn, ctx);
2643         jpake_receive_step2(ctx, bconn);
2644         jpake_send_step3a(bconn, ctx);
2645         jpake_receive_step3b(ctx, bconn);
2646
2647         BIO_puts(out, "JPAKE authentication succeeded, setting PSK\n");
2648
2649         psk_key = BN_bn2hex(JPAKE_get_shared_key(ctx));
2650
2651         BIO_pop(bconn);
2652         BIO_free(bconn);
2653
2654         JPAKE_CTX_free(ctx);
2655         }
2656
2657 void jpake_server_auth(BIO *out, BIO *conn, const char *secret)
2658         {
2659         JPAKE_CTX *ctx;
2660         BIO *bconn;
2661
2662         BIO_puts(out, "Authenticating with JPAKE\n");
2663
2664         ctx = jpake_init("server", "client", secret);
2665
2666         bconn = BIO_new(BIO_f_buffer());
2667         BIO_push(bconn, conn);
2668
2669         jpake_receive_step1(ctx, bconn);
2670         jpake_send_step1(bconn, ctx);
2671         jpake_receive_step2(ctx, bconn);
2672         jpake_send_step2(bconn, ctx);
2673         jpake_receive_step3a(ctx, bconn);
2674         jpake_send_step3b(bconn, ctx);
2675
2676         BIO_puts(out, "JPAKE authentication succeeded, setting PSK\n");
2677
2678         psk_key = BN_bn2hex(JPAKE_get_shared_key(ctx));
2679
2680         BIO_pop(bconn);
2681         BIO_free(bconn);
2682
2683         JPAKE_CTX_free(ctx);
2684         }
2685
2686 #endif
2687
2688 /*
2689  * Platform-specific sections
2690  */
2691 #if defined(_WIN32)
2692 # ifdef fileno
2693 #  undef fileno
2694 #  define fileno(a) (int)_fileno(a)
2695 # endif
2696
2697 # include <windows.h>
2698 # include <tchar.h>
2699
2700 static int WIN32_rename(const char *from, const char *to)
2701         {
2702         TCHAR  *tfrom=NULL,*tto;
2703         DWORD   err;
2704         int     ret=0;
2705
2706         if (sizeof(TCHAR) == 1)
2707                 {
2708                 tfrom = (TCHAR *)from;
2709                 tto   = (TCHAR *)to;
2710                 }
2711         else    /* UNICODE path */
2712                 {
2713                 size_t i,flen=strlen(from)+1,tlen=strlen(to)+1;
2714                 tfrom = (TCHAR *)malloc(sizeof(TCHAR)*(flen+tlen));
2715                 if (tfrom==NULL) goto err;
2716                 tto=tfrom+flen;
2717 #if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2718                 if (!MultiByteToWideChar(CP_ACP,0,from,flen,(WCHAR *)tfrom,flen))
2719 #endif
2720                         for (i=0;i<flen;i++)    tfrom[i]=(TCHAR)from[i];
2721 #if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2722                 if (!MultiByteToWideChar(CP_ACP,0,to,  tlen,(WCHAR *)tto,  tlen))
2723 #endif
2724                         for (i=0;i<tlen;i++)    tto[i]  =(TCHAR)to[i];
2725                 }
2726
2727         if (MoveFile(tfrom,tto))        goto ok;
2728         err=GetLastError();
2729         if (err==ERROR_ALREADY_EXISTS || err==ERROR_FILE_EXISTS)
2730                 {
2731                 if (DeleteFile(tto) && MoveFile(tfrom,tto))
2732                         goto ok;
2733                 err=GetLastError();
2734                 }
2735         if (err==ERROR_FILE_NOT_FOUND || err==ERROR_PATH_NOT_FOUND)
2736                 errno = ENOENT;
2737         else if (err==ERROR_ACCESS_DENIED)
2738                 errno = EACCES;
2739         else
2740                 errno = EINVAL; /* we could map more codes... */
2741 err:
2742         ret=-1;
2743 ok:
2744         if (tfrom!=NULL && tfrom!=(TCHAR *)from)        free(tfrom);
2745         return ret;
2746         }
2747 #endif
2748
2749 /* app_tminterval section */
2750 #if defined(_WIN32)
2751 double app_tminterval(int stop,int usertime)
2752         {
2753         FILETIME                now;
2754         double                  ret=0;
2755         static ULARGE_INTEGER   tmstart;
2756         static int              warning=1;
2757 #ifdef _WIN32_WINNT
2758         static HANDLE           proc=NULL;
2759
2760         if (proc==NULL)
2761                 {
2762                 if (GetVersion() < 0x80000000)
2763                         proc = OpenProcess(PROCESS_QUERY_INFORMATION,FALSE,
2764                                                 GetCurrentProcessId());
2765                 if (proc==NULL) proc = (HANDLE)-1;
2766                 }
2767
2768         if (usertime && proc!=(HANDLE)-1)
2769                 {
2770                 FILETIME junk;
2771                 GetProcessTimes(proc,&junk,&junk,&junk,&now);
2772                 }
2773         else
2774 #endif
2775                 {
2776                 SYSTEMTIME systime;
2777
2778                 if (usertime && warning)
2779                         {
2780                         BIO_printf(bio_err,"To get meaningful results, run "
2781                                            "this program on idle system.\n");
2782                         warning=0;
2783                         }
2784                 GetSystemTime(&systime);
2785                 SystemTimeToFileTime(&systime,&now);
2786                 }
2787
2788         if (stop==TM_START)
2789                 {
2790                 tmstart.u.LowPart  = now.dwLowDateTime;
2791                 tmstart.u.HighPart = now.dwHighDateTime;
2792                 }
2793         else    {
2794                 ULARGE_INTEGER tmstop;
2795
2796                 tmstop.u.LowPart   = now.dwLowDateTime;
2797                 tmstop.u.HighPart  = now.dwHighDateTime;
2798
2799                 ret = (__int64)(tmstop.QuadPart - tmstart.QuadPart)*1e-7;
2800                 }
2801
2802         return (ret);
2803         }
2804
2805 #elif defined(OPENSSL_SYS_NETWARE)
2806 #include <time.h>
2807
2808 double app_tminterval(int stop,int usertime)
2809         {
2810         double          ret=0;
2811         static clock_t  tmstart;
2812         static int      warning=1;
2813
2814         if (usertime && warning)
2815                 {
2816                 BIO_printf(bio_err,"To get meaningful results, run "
2817                                    "this program on idle system.\n");
2818                 warning=0;
2819                 }
2820
2821         if (stop==TM_START)     tmstart = clock();
2822         else                    ret     = (clock()-tmstart)/(double)CLOCKS_PER_SEC;
2823
2824         return (ret);
2825         }
2826
2827 #elif defined(OPENSSL_SYSTEM_VXWORKS)
2828 #include <time.h>
2829
2830 double app_tminterval(int stop,int usertime)
2831         {
2832         double ret=0;
2833 #ifdef CLOCK_REALTIME
2834         static struct timespec  tmstart;
2835         struct timespec         now;
2836 #else
2837         static unsigned long    tmstart;
2838         unsigned long           now;
2839 #endif
2840         static int warning=1;
2841
2842         if (usertime && warning)
2843                 {
2844                 BIO_printf(bio_err,"To get meaningful results, run "
2845                                    "this program on idle system.\n");
2846                 warning=0;
2847                 }
2848
2849 #ifdef CLOCK_REALTIME
2850         clock_gettime(CLOCK_REALTIME,&now);
2851         if (stop==TM_START)     tmstart = now;
2852         else    ret = ( (now.tv_sec+now.tv_nsec*1e-9)
2853                         - (tmstart.tv_sec+tmstart.tv_nsec*1e-9) );
2854 #else
2855         now = tickGet();
2856         if (stop==TM_START)     tmstart = now;
2857         else                    ret = (now - tmstart)/(double)sysClkRateGet();
2858 #endif
2859         return (ret);
2860         }
2861
2862 #elif defined(OPENSSL_SYSTEM_VMS)
2863 #include <time.h>
2864 #include <times.h>
2865
2866 double app_tminterval(int stop,int usertime)
2867         {
2868         static clock_t  tmstart;
2869         double          ret = 0;
2870         clock_t         now;
2871 #ifdef __TMS
2872         struct tms      rus;
2873
2874         now = times(&rus);
2875         if (usertime)   now = rus.tms_utime;
2876 #else
2877         if (usertime)
2878                 now = clock(); /* sum of user and kernel times */
2879         else    {
2880                 struct timeval tv;
2881                 gettimeofday(&tv,NULL);
2882                 now = (clock_t)(
2883                         (unsigned long long)tv.tv_sec*CLK_TCK +
2884                         (unsigned long long)tv.tv_usec*(1000000/CLK_TCK)
2885                         );
2886                 }
2887 #endif
2888         if (stop==TM_START)     tmstart = now;
2889         else                    ret = (now - tmstart)/(double)(CLK_TCK);
2890
2891         return (ret);
2892         }
2893
2894 #elif defined(_SC_CLK_TCK)      /* by means of unistd.h */
2895 #include <sys/times.h>
2896
2897 double app_tminterval(int stop,int usertime)
2898         {
2899         double          ret = 0;
2900         struct tms      rus;
2901         clock_t         now = times(&rus);
2902         static clock_t  tmstart;
2903
2904         if (usertime)           now = rus.tms_utime;
2905
2906         if (stop==TM_START)     tmstart = now;
2907         else
2908                 {
2909                 long int tck = sysconf(_SC_CLK_TCK);
2910                 ret = (now - tmstart)/(double)tck;
2911                 }
2912
2913         return (ret);
2914         }
2915
2916 #else
2917 #include <sys/time.h>
2918 #include <sys/resource.h>
2919
2920 double app_tminterval(int stop,int usertime)
2921         {
2922         double          ret = 0;
2923         struct rusage   rus;
2924         struct timeval  now;
2925         static struct timeval tmstart;
2926
2927         if (usertime)           getrusage(RUSAGE_SELF,&rus), now = rus.ru_utime;
2928         else                    gettimeofday(&now,NULL);
2929
2930         if (stop==TM_START)     tmstart = now;
2931         else                    ret = ( (now.tv_sec+now.tv_usec*1e-6)
2932                                         - (tmstart.tv_sec+tmstart.tv_usec*1e-6) );
2933
2934         return ret;
2935         }
2936 #endif
2937
2938 /* app_isdir section */
2939 #ifdef _WIN32
2940 int app_isdir(const char *name)
2941         {
2942         HANDLE          hList;
2943         WIN32_FIND_DATA FileData;
2944 #if defined(UNICODE) || defined(_UNICODE)
2945         size_t i, len_0 = strlen(name)+1;
2946
2947         if (len_0 > sizeof(FileData.cFileName)/sizeof(FileData.cFileName[0]))
2948                 return -1;
2949
2950 #if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2951         if (!MultiByteToWideChar(CP_ACP,0,name,len_0,FileData.cFileName,len_0))
2952 #endif
2953                 for (i=0;i<len_0;i++)
2954                         FileData.cFileName[i] = (WCHAR)name[i];
2955
2956         hList = FindFirstFile(FileData.cFileName,&FileData);
2957 #else
2958         hList = FindFirstFile(name,&FileData);
2959 #endif
2960         if (hList == INVALID_HANDLE_VALUE)      return -1;
2961         FindClose(hList);
2962         return ((FileData.dwFileAttributes&FILE_ATTRIBUTE_DIRECTORY)!=0);
2963         }
2964 #else
2965 #include <sys/stat.h>
2966 #ifndef S_ISDIR
2967 # if defined(_S_IFMT) && defined(_S_IFDIR)
2968 #  define S_ISDIR(a)   (((a) & _S_IFMT) == _S_IFDIR)
2969 # else 
2970 #  define S_ISDIR(a)   (((a) & S_IFMT) == S_IFDIR)
2971 # endif 
2972 #endif 
2973
2974 int app_isdir(const char *name)
2975         {
2976 #if defined(S_ISDIR)
2977         struct stat st;
2978
2979         if (stat(name,&st)==0)  return S_ISDIR(st.st_mode);
2980         else                    return -1;
2981 #else
2982         return -1;
2983 #endif
2984         }
2985 #endif
2986
2987 /* raw_read|write section */
2988 #if defined(_WIN32) && defined(STD_INPUT_HANDLE)
2989 int raw_read_stdin(void *buf,int siz)
2990         {
2991         DWORD n;
2992         if (ReadFile(GetStdHandle(STD_INPUT_HANDLE),buf,siz,&n,NULL))
2993                 return (n);
2994         else    return (-1);
2995         }
2996 #else
2997 int raw_read_stdin(void *buf,int siz)
2998         {       return read(fileno(stdin),buf,siz);     }
2999 #endif
3000
3001 #if defined(_WIN32) && defined(STD_OUTPUT_HANDLE)
3002 int raw_write_stdout(const void *buf,int siz)
3003         {
3004         DWORD n;
3005         if (WriteFile(GetStdHandle(STD_OUTPUT_HANDLE),buf,siz,&n,NULL))
3006                 return (n);
3007         else    return (-1);
3008         }
3009 #else
3010 int raw_write_stdout(const void *buf,int siz)
3011         {       return write(fileno(stdout),buf,siz);   }
3012 #endif