xref: /freebsd-13.1/crypto/openssl/apps/apps.c (revision 2e121bd7)
1 /*
2  * Copyright 1995-2022 The OpenSSL Project Authors. All Rights Reserved.
3  *
4  * Licensed under the OpenSSL license (the "License").  You may not use
5  * this file except in compliance with the License.  You can obtain a copy
6  * in the file LICENSE in the source distribution or at
7  * https://www.openssl.org/source/license.html
8  */
9 
10 #if !defined(_POSIX_C_SOURCE) && defined(OPENSSL_SYS_VMS)
11 /*
12  * On VMS, you need to define this to get the declaration of fileno().  The
13  * value 2 is to make sure no function defined in POSIX-2 is left undefined.
14  */
15 # define _POSIX_C_SOURCE 2
16 #endif
17 
18 #include <stdio.h>
19 #include <stdlib.h>
20 #include <string.h>
21 #include <sys/types.h>
22 #ifndef OPENSSL_NO_POSIX_IO
23 # include <sys/stat.h>
24 # include <fcntl.h>
25 #endif
26 #include <ctype.h>
27 #include <errno.h>
28 #include <openssl/err.h>
29 #include <openssl/x509.h>
30 #include <openssl/x509v3.h>
31 #include <openssl/pem.h>
32 #include <openssl/pkcs12.h>
33 #include <openssl/ui.h>
34 #include <openssl/safestack.h>
35 #ifndef OPENSSL_NO_ENGINE
36 # include <openssl/engine.h>
37 #endif
38 #ifndef OPENSSL_NO_RSA
39 # include <openssl/rsa.h>
40 #endif
41 #include <openssl/bn.h>
42 #include <openssl/ssl.h>
43 #include "apps.h"
44 
45 #ifdef _WIN32
46 static int WIN32_rename(const char *from, const char *to);
47 # define rename(from,to) WIN32_rename((from),(to))
48 #endif
49 
50 #if defined(OPENSSL_SYS_WINDOWS) || defined(OPENSSL_SYS_MSDOS)
51 # include <conio.h>
52 #endif
53 
54 #if defined(OPENSSL_SYS_MSDOS) && !defined(_WIN32)
55 # define _kbhit kbhit
56 #endif
57 
58 typedef struct {
59     const char *name;
60     unsigned long flag;
61     unsigned long mask;
62 } NAME_EX_TBL;
63 
64 static UI_METHOD *ui_method = NULL;
65 static const UI_METHOD *ui_fallback_method = NULL;
66 
67 static int set_table_opts(unsigned long *flags, const char *arg,
68                           const NAME_EX_TBL * in_tbl);
69 static int set_multi_opts(unsigned long *flags, const char *arg,
70                           const NAME_EX_TBL * in_tbl);
71 
72 int app_init(long mesgwin);
73 
chopup_args(ARGS * arg,char * buf)74 int chopup_args(ARGS *arg, char *buf)
75 {
76     int quoted;
77     char c = '\0', *p = NULL;
78 
79     arg->argc = 0;
80     if (arg->size == 0) {
81         arg->size = 20;
82         arg->argv = app_malloc(sizeof(*arg->argv) * arg->size, "argv space");
83     }
84 
85     for (p = buf;;) {
86         /* Skip whitespace. */
87         while (*p && isspace(_UC(*p)))
88             p++;
89         if (!*p)
90             break;
91 
92         /* The start of something good :-) */
93         if (arg->argc >= arg->size) {
94             char **tmp;
95             arg->size += 20;
96             tmp = OPENSSL_realloc(arg->argv, sizeof(*arg->argv) * arg->size);
97             if (tmp == NULL)
98                 return 0;
99             arg->argv = tmp;
100         }
101         quoted = *p == '\'' || *p == '"';
102         if (quoted)
103             c = *p++;
104         arg->argv[arg->argc++] = p;
105 
106         /* now look for the end of this */
107         if (quoted) {
108             while (*p && *p != c)
109                 p++;
110             *p++ = '\0';
111         } else {
112             while (*p && !isspace(_UC(*p)))
113                 p++;
114             if (*p)
115                 *p++ = '\0';
116         }
117     }
118     arg->argv[arg->argc] = NULL;
119     return 1;
120 }
121 
122 #ifndef APP_INIT
app_init(long mesgwin)123 int app_init(long mesgwin)
124 {
125     return 1;
126 }
127 #endif
128 
ctx_set_verify_locations(SSL_CTX * ctx,const char * CAfile,const char * CApath,int noCAfile,int noCApath)129 int ctx_set_verify_locations(SSL_CTX *ctx, const char *CAfile,
130                              const char *CApath, int noCAfile, int noCApath)
131 {
132     if (CAfile == NULL && CApath == NULL) {
133         if (!noCAfile && SSL_CTX_set_default_verify_file(ctx) <= 0)
134             return 0;
135         if (!noCApath && SSL_CTX_set_default_verify_dir(ctx) <= 0)
136             return 0;
137 
138         return 1;
139     }
140     return SSL_CTX_load_verify_locations(ctx, CAfile, CApath);
141 }
142 
143 #ifndef OPENSSL_NO_CT
144 
ctx_set_ctlog_list_file(SSL_CTX * ctx,const char * path)145 int ctx_set_ctlog_list_file(SSL_CTX *ctx, const char *path)
146 {
147     if (path == NULL)
148         return SSL_CTX_set_default_ctlog_list_file(ctx);
149 
150     return SSL_CTX_set_ctlog_list_file(ctx, path);
151 }
152 
153 #endif
154 
155 static unsigned long nmflag = 0;
156 static char nmflag_set = 0;
157 
set_nameopt(const char * arg)158 int set_nameopt(const char *arg)
159 {
160     int ret = set_name_ex(&nmflag, arg);
161 
162     if (ret)
163         nmflag_set = 1;
164 
165     return ret;
166 }
167 
get_nameopt(void)168 unsigned long get_nameopt(void)
169 {
170     return (nmflag_set) ? nmflag : XN_FLAG_ONELINE;
171 }
172 
dump_cert_text(BIO * out,X509 * x)173 int dump_cert_text(BIO *out, X509 *x)
174 {
175     print_name(out, "subject=", X509_get_subject_name(x), get_nameopt());
176     BIO_puts(out, "\n");
177     print_name(out, "issuer=", X509_get_issuer_name(x), get_nameopt());
178     BIO_puts(out, "\n");
179 
180     return 0;
181 }
182 
ui_open(UI * ui)183 static int ui_open(UI *ui)
184 {
185     int (*opener)(UI *ui) = UI_method_get_opener(ui_fallback_method);
186 
187     if (opener)
188         return opener(ui);
189     return 1;
190 }
191 
ui_read(UI * ui,UI_STRING * uis)192 static int ui_read(UI *ui, UI_STRING *uis)
193 {
194     int (*reader)(UI *ui, UI_STRING *uis) = NULL;
195 
196     if (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD
197         && UI_get0_user_data(ui)) {
198         switch (UI_get_string_type(uis)) {
199         case UIT_PROMPT:
200         case UIT_VERIFY:
201             {
202                 const char *password =
203                     ((PW_CB_DATA *)UI_get0_user_data(ui))->password;
204                 if (password && password[0] != '\0') {
205                     UI_set_result(ui, uis, password);
206                     return 1;
207                 }
208             }
209             break;
210         case UIT_NONE:
211         case UIT_BOOLEAN:
212         case UIT_INFO:
213         case UIT_ERROR:
214             break;
215         }
216     }
217 
218     reader = UI_method_get_reader(ui_fallback_method);
219     if (reader)
220         return reader(ui, uis);
221     return 1;
222 }
223 
ui_write(UI * ui,UI_STRING * uis)224 static int ui_write(UI *ui, UI_STRING *uis)
225 {
226     int (*writer)(UI *ui, UI_STRING *uis) = NULL;
227 
228     if (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD
229         && UI_get0_user_data(ui)) {
230         switch (UI_get_string_type(uis)) {
231         case UIT_PROMPT:
232         case UIT_VERIFY:
233             {
234                 const char *password =
235                     ((PW_CB_DATA *)UI_get0_user_data(ui))->password;
236                 if (password && password[0] != '\0')
237                     return 1;
238             }
239             break;
240         case UIT_NONE:
241         case UIT_BOOLEAN:
242         case UIT_INFO:
243         case UIT_ERROR:
244             break;
245         }
246     }
247 
248     writer = UI_method_get_writer(ui_fallback_method);
249     if (writer)
250         return writer(ui, uis);
251     return 1;
252 }
253 
ui_close(UI * ui)254 static int ui_close(UI *ui)
255 {
256     int (*closer)(UI *ui) = UI_method_get_closer(ui_fallback_method);
257 
258     if (closer)
259         return closer(ui);
260     return 1;
261 }
262 
setup_ui_method(void)263 int setup_ui_method(void)
264 {
265     ui_fallback_method = UI_null();
266 #ifndef OPENSSL_NO_UI_CONSOLE
267     ui_fallback_method = UI_OpenSSL();
268 #endif
269     ui_method = UI_create_method("OpenSSL application user interface");
270     UI_method_set_opener(ui_method, ui_open);
271     UI_method_set_reader(ui_method, ui_read);
272     UI_method_set_writer(ui_method, ui_write);
273     UI_method_set_closer(ui_method, ui_close);
274     return 0;
275 }
276 
destroy_ui_method(void)277 void destroy_ui_method(void)
278 {
279     if (ui_method) {
280         UI_destroy_method(ui_method);
281         ui_method = NULL;
282     }
283 }
284 
get_ui_method(void)285 const UI_METHOD *get_ui_method(void)
286 {
287     return ui_method;
288 }
289 
password_callback(char * buf,int bufsiz,int verify,PW_CB_DATA * cb_tmp)290 int password_callback(char *buf, int bufsiz, int verify, PW_CB_DATA *cb_tmp)
291 {
292     int res = 0;
293     UI *ui = NULL;
294     PW_CB_DATA *cb_data = (PW_CB_DATA *)cb_tmp;
295 
296     ui = UI_new_method(ui_method);
297     if (ui) {
298         int ok = 0;
299         char *buff = NULL;
300         int ui_flags = 0;
301         const char *prompt_info = NULL;
302         char *prompt;
303         int pw_min_len = PW_MIN_LENGTH;
304 
305         if (cb_data != NULL && cb_data->prompt_info != NULL)
306             prompt_info = cb_data->prompt_info;
307         if (cb_data != NULL && cb_data->password != NULL
308                 && *(const char*)cb_data->password != '\0')
309             pw_min_len = 1;
310         else if (!verify)
311             pw_min_len = 0;
312         prompt = UI_construct_prompt(ui, "pass phrase", prompt_info);
313         if (!prompt) {
314             BIO_printf(bio_err, "Out of memory\n");
315             UI_free(ui);
316             return 0;
317         }
318 
319         ui_flags |= UI_INPUT_FLAG_DEFAULT_PWD;
320         UI_ctrl(ui, UI_CTRL_PRINT_ERRORS, 1, 0, 0);
321 
322         /* We know that there is no previous user data to return to us */
323         (void)UI_add_user_data(ui, cb_data);
324 
325         ok = UI_add_input_string(ui, prompt, ui_flags, buf,
326                                  pw_min_len, bufsiz - 1);
327 
328         if (ok >= 0 && verify) {
329             buff = app_malloc(bufsiz, "password buffer");
330             ok = UI_add_verify_string(ui, prompt, ui_flags, buff,
331                                       pw_min_len, bufsiz - 1, buf);
332         }
333         if (ok >= 0)
334             do {
335                 ok = UI_process(ui);
336             } while (ok < 0 && UI_ctrl(ui, UI_CTRL_IS_REDOABLE, 0, 0, 0));
337 
338         OPENSSL_clear_free(buff, (unsigned int)bufsiz);
339 
340         if (ok >= 0)
341             res = strlen(buf);
342         if (ok == -1) {
343             BIO_printf(bio_err, "User interface error\n");
344             ERR_print_errors(bio_err);
345             OPENSSL_cleanse(buf, (unsigned int)bufsiz);
346             res = 0;
347         }
348         if (ok == -2) {
349             BIO_printf(bio_err, "aborted!\n");
350             OPENSSL_cleanse(buf, (unsigned int)bufsiz);
351             res = 0;
352         }
353         UI_free(ui);
354         OPENSSL_free(prompt);
355     }
356     return res;
357 }
358 
359 static char *app_get_pass(const char *arg, int keepbio);
360 
app_passwd(const char * arg1,const char * arg2,char ** pass1,char ** pass2)361 int app_passwd(const char *arg1, const char *arg2, char **pass1, char **pass2)
362 {
363     int same;
364     if (arg2 == NULL || arg1 == NULL || strcmp(arg1, arg2))
365         same = 0;
366     else
367         same = 1;
368     if (arg1 != NULL) {
369         *pass1 = app_get_pass(arg1, same);
370         if (*pass1 == NULL)
371             return 0;
372     } else if (pass1 != NULL) {
373         *pass1 = NULL;
374     }
375     if (arg2 != NULL) {
376         *pass2 = app_get_pass(arg2, same ? 2 : 0);
377         if (*pass2 == NULL)
378             return 0;
379     } else if (pass2 != NULL) {
380         *pass2 = NULL;
381     }
382     return 1;
383 }
384 
app_get_pass(const char * arg,int keepbio)385 static char *app_get_pass(const char *arg, int keepbio)
386 {
387     char *tmp, tpass[APP_PASS_LEN];
388     static BIO *pwdbio = NULL;
389     int i;
390 
391     if (strncmp(arg, "pass:", 5) == 0)
392         return OPENSSL_strdup(arg + 5);
393     if (strncmp(arg, "env:", 4) == 0) {
394         tmp = getenv(arg + 4);
395         if (tmp == NULL) {
396             BIO_printf(bio_err, "Can't read environment variable %s\n", arg + 4);
397             return NULL;
398         }
399         return OPENSSL_strdup(tmp);
400     }
401     if (!keepbio || pwdbio == NULL) {
402         if (strncmp(arg, "file:", 5) == 0) {
403             pwdbio = BIO_new_file(arg + 5, "r");
404             if (pwdbio == NULL) {
405                 BIO_printf(bio_err, "Can't open file %s\n", arg + 5);
406                 return NULL;
407             }
408 #if !defined(_WIN32)
409             /*
410              * Under _WIN32, which covers even Win64 and CE, file
411              * descriptors referenced by BIO_s_fd are not inherited
412              * by child process and therefore below is not an option.
413              * It could have been an option if bss_fd.c was operating
414              * on real Windows descriptors, such as those obtained
415              * with CreateFile.
416              */
417         } else if (strncmp(arg, "fd:", 3) == 0) {
418             BIO *btmp;
419             i = atoi(arg + 3);
420             if (i >= 0)
421                 pwdbio = BIO_new_fd(i, BIO_NOCLOSE);
422             if ((i < 0) || !pwdbio) {
423                 BIO_printf(bio_err, "Can't access file descriptor %s\n", arg + 3);
424                 return NULL;
425             }
426             /*
427              * Can't do BIO_gets on an fd BIO so add a buffering BIO
428              */
429             btmp = BIO_new(BIO_f_buffer());
430             pwdbio = BIO_push(btmp, pwdbio);
431 #endif
432         } else if (strcmp(arg, "stdin") == 0) {
433             pwdbio = dup_bio_in(FORMAT_TEXT);
434             if (!pwdbio) {
435                 BIO_printf(bio_err, "Can't open BIO for stdin\n");
436                 return NULL;
437             }
438         } else {
439             BIO_printf(bio_err, "Invalid password argument \"%s\"\n", arg);
440             return NULL;
441         }
442     }
443     i = BIO_gets(pwdbio, tpass, APP_PASS_LEN);
444     if (keepbio != 1) {
445         BIO_free_all(pwdbio);
446         pwdbio = NULL;
447     }
448     if (i <= 0) {
449         BIO_printf(bio_err, "Error reading password from BIO\n");
450         return NULL;
451     }
452     tmp = strchr(tpass, '\n');
453     if (tmp != NULL)
454         *tmp = 0;
455     return OPENSSL_strdup(tpass);
456 }
457 
app_load_config_bio(BIO * in,const char * filename)458 CONF *app_load_config_bio(BIO *in, const char *filename)
459 {
460     long errorline = -1;
461     CONF *conf;
462     int i;
463 
464     conf = NCONF_new(NULL);
465     i = NCONF_load_bio(conf, in, &errorline);
466     if (i > 0)
467         return conf;
468 
469     if (errorline <= 0) {
470         BIO_printf(bio_err, "%s: Can't load ", opt_getprog());
471     } else {
472         BIO_printf(bio_err, "%s: Error on line %ld of ", opt_getprog(),
473                    errorline);
474     }
475     if (filename != NULL)
476         BIO_printf(bio_err, "config file \"%s\"\n", filename);
477     else
478         BIO_printf(bio_err, "config input");
479 
480     NCONF_free(conf);
481     return NULL;
482 }
483 
app_load_config(const char * filename)484 CONF *app_load_config(const char *filename)
485 {
486     BIO *in;
487     CONF *conf;
488 
489     in = bio_open_default(filename, 'r', FORMAT_TEXT);
490     if (in == NULL)
491         return NULL;
492 
493     conf = app_load_config_bio(in, filename);
494     BIO_free(in);
495     return conf;
496 }
497 
app_load_config_quiet(const char * filename)498 CONF *app_load_config_quiet(const char *filename)
499 {
500     BIO *in;
501     CONF *conf;
502 
503     in = bio_open_default_quiet(filename, 'r', FORMAT_TEXT);
504     if (in == NULL)
505         return NULL;
506 
507     conf = app_load_config_bio(in, filename);
508     BIO_free(in);
509     return conf;
510 }
511 
app_load_modules(const CONF * config)512 int app_load_modules(const CONF *config)
513 {
514     CONF *to_free = NULL;
515 
516     if (config == NULL)
517         config = to_free = app_load_config_quiet(default_config_file);
518     if (config == NULL)
519         return 1;
520 
521     if (CONF_modules_load(config, NULL, 0) <= 0) {
522         BIO_printf(bio_err, "Error configuring OpenSSL modules\n");
523         ERR_print_errors(bio_err);
524         NCONF_free(to_free);
525         return 0;
526     }
527     NCONF_free(to_free);
528     return 1;
529 }
530 
add_oid_section(CONF * conf)531 int add_oid_section(CONF *conf)
532 {
533     char *p;
534     STACK_OF(CONF_VALUE) *sktmp;
535     CONF_VALUE *cnf;
536     int i;
537 
538     if ((p = NCONF_get_string(conf, NULL, "oid_section")) == NULL) {
539         ERR_clear_error();
540         return 1;
541     }
542     if ((sktmp = NCONF_get_section(conf, p)) == NULL) {
543         BIO_printf(bio_err, "problem loading oid section %s\n", p);
544         return 0;
545     }
546     for (i = 0; i < sk_CONF_VALUE_num(sktmp); i++) {
547         cnf = sk_CONF_VALUE_value(sktmp, i);
548         if (OBJ_create(cnf->value, cnf->name, cnf->name) == NID_undef) {
549             BIO_printf(bio_err, "problem creating object %s=%s\n",
550                        cnf->name, cnf->value);
551             return 0;
552         }
553     }
554     return 1;
555 }
556 
load_pkcs12(BIO * in,const char * desc,pem_password_cb * pem_cb,void * cb_data,EVP_PKEY ** pkey,X509 ** cert,STACK_OF (X509)** ca)557 static int load_pkcs12(BIO *in, const char *desc,
558                        pem_password_cb *pem_cb, void *cb_data,
559                        EVP_PKEY **pkey, X509 **cert, STACK_OF(X509) **ca)
560 {
561     const char *pass;
562     char tpass[PEM_BUFSIZE];
563     int len, ret = 0;
564     PKCS12 *p12;
565     p12 = d2i_PKCS12_bio(in, NULL);
566     if (p12 == NULL) {
567         BIO_printf(bio_err, "Error loading PKCS12 file for %s\n", desc);
568         goto die;
569     }
570     /* See if an empty password will do */
571     if (PKCS12_verify_mac(p12, "", 0) || PKCS12_verify_mac(p12, NULL, 0)) {
572         pass = "";
573     } else {
574         if (!pem_cb)
575             pem_cb = (pem_password_cb *)password_callback;
576         len = pem_cb(tpass, PEM_BUFSIZE, 0, cb_data);
577         if (len < 0) {
578             BIO_printf(bio_err, "Passphrase callback error for %s\n", desc);
579             goto die;
580         }
581         if (len < PEM_BUFSIZE)
582             tpass[len] = 0;
583         if (!PKCS12_verify_mac(p12, tpass, len)) {
584             BIO_printf(bio_err,
585                        "Mac verify error (wrong password?) in PKCS12 file for %s\n",
586                        desc);
587             goto die;
588         }
589         pass = tpass;
590     }
591     ret = PKCS12_parse(p12, pass, pkey, cert, ca);
592  die:
593     PKCS12_free(p12);
594     return ret;
595 }
596 
597 #if !defined(OPENSSL_NO_OCSP) && !defined(OPENSSL_NO_SOCK)
load_cert_crl_http(const char * url,X509 ** pcert,X509_CRL ** pcrl)598 static int load_cert_crl_http(const char *url, X509 **pcert, X509_CRL **pcrl)
599 {
600     char *host = NULL, *port = NULL, *path = NULL;
601     BIO *bio = NULL;
602     OCSP_REQ_CTX *rctx = NULL;
603     int use_ssl, rv = 0;
604     if (!OCSP_parse_url(url, &host, &port, &path, &use_ssl))
605         goto err;
606     if (use_ssl) {
607         BIO_puts(bio_err, "https not supported\n");
608         goto err;
609     }
610     bio = BIO_new_connect(host);
611     if (!bio || !BIO_set_conn_port(bio, port))
612         goto err;
613     rctx = OCSP_REQ_CTX_new(bio, 1024);
614     if (rctx == NULL)
615         goto err;
616     if (!OCSP_REQ_CTX_http(rctx, "GET", path))
617         goto err;
618     if (!OCSP_REQ_CTX_add1_header(rctx, "Host", host))
619         goto err;
620     if (pcert) {
621         do {
622             rv = X509_http_nbio(rctx, pcert);
623         } while (rv == -1);
624     } else {
625         do {
626             rv = X509_CRL_http_nbio(rctx, pcrl);
627         } while (rv == -1);
628     }
629 
630  err:
631     OPENSSL_free(host);
632     OPENSSL_free(path);
633     OPENSSL_free(port);
634     BIO_free_all(bio);
635     OCSP_REQ_CTX_free(rctx);
636     if (rv != 1) {
637         BIO_printf(bio_err, "Error loading %s from %s\n",
638                    pcert ? "certificate" : "CRL", url);
639         ERR_print_errors(bio_err);
640     }
641     return rv;
642 }
643 #endif
644 
load_cert(const char * file,int format,const char * cert_descrip)645 X509 *load_cert(const char *file, int format, const char *cert_descrip)
646 {
647     X509 *x = NULL;
648     BIO *cert;
649 
650     if (format == FORMAT_HTTP) {
651 #if !defined(OPENSSL_NO_OCSP) && !defined(OPENSSL_NO_SOCK)
652         load_cert_crl_http(file, &x, NULL);
653 #endif
654         return x;
655     }
656 
657     if (file == NULL) {
658         unbuffer(stdin);
659         cert = dup_bio_in(format);
660     } else {
661         cert = bio_open_default(file, 'r', format);
662     }
663     if (cert == NULL)
664         goto end;
665 
666     if (format == FORMAT_ASN1) {
667         x = d2i_X509_bio(cert, NULL);
668     } else if (format == FORMAT_PEM) {
669         x = PEM_read_bio_X509_AUX(cert, NULL,
670                                   (pem_password_cb *)password_callback, NULL);
671     } else if (format == FORMAT_PKCS12) {
672         if (!load_pkcs12(cert, cert_descrip, NULL, NULL, NULL, &x, NULL))
673             goto end;
674     } else {
675         BIO_printf(bio_err, "bad input format specified for %s\n", cert_descrip);
676         goto end;
677     }
678  end:
679     if (x == NULL) {
680         BIO_printf(bio_err, "unable to load certificate\n");
681         ERR_print_errors(bio_err);
682     }
683     BIO_free(cert);
684     return x;
685 }
686 
load_crl(const char * infile,int format)687 X509_CRL *load_crl(const char *infile, int format)
688 {
689     X509_CRL *x = NULL;
690     BIO *in = NULL;
691 
692     if (format == FORMAT_HTTP) {
693 #if !defined(OPENSSL_NO_OCSP) && !defined(OPENSSL_NO_SOCK)
694         load_cert_crl_http(infile, NULL, &x);
695 #endif
696         return x;
697     }
698 
699     in = bio_open_default(infile, 'r', format);
700     if (in == NULL)
701         goto end;
702     if (format == FORMAT_ASN1) {
703         x = d2i_X509_CRL_bio(in, NULL);
704     } else if (format == FORMAT_PEM) {
705         x = PEM_read_bio_X509_CRL(in, NULL, NULL, NULL);
706     } else {
707         BIO_printf(bio_err, "bad input format specified for input crl\n");
708         goto end;
709     }
710     if (x == NULL) {
711         BIO_printf(bio_err, "unable to load CRL\n");
712         ERR_print_errors(bio_err);
713         goto end;
714     }
715 
716  end:
717     BIO_free(in);
718     return x;
719 }
720 
load_key(const char * file,int format,int maybe_stdin,const char * pass,ENGINE * e,const char * key_descrip)721 EVP_PKEY *load_key(const char *file, int format, int maybe_stdin,
722                    const char *pass, ENGINE *e, const char *key_descrip)
723 {
724     BIO *key = NULL;
725     EVP_PKEY *pkey = NULL;
726     PW_CB_DATA cb_data;
727 
728     cb_data.password = pass;
729     cb_data.prompt_info = file;
730 
731     if (file == NULL && (!maybe_stdin || format == FORMAT_ENGINE)) {
732         BIO_printf(bio_err, "no keyfile specified\n");
733         goto end;
734     }
735     if (format == FORMAT_ENGINE) {
736         if (e == NULL) {
737             BIO_printf(bio_err, "no engine specified\n");
738         } else {
739 #ifndef OPENSSL_NO_ENGINE
740             if (ENGINE_init(e)) {
741                 pkey = ENGINE_load_private_key(e, file, ui_method, &cb_data);
742                 ENGINE_finish(e);
743             }
744             if (pkey == NULL) {
745                 BIO_printf(bio_err, "cannot load %s from engine\n", key_descrip);
746                 ERR_print_errors(bio_err);
747             }
748 #else
749             BIO_printf(bio_err, "engines not supported\n");
750 #endif
751         }
752         goto end;
753     }
754     if (file == NULL && maybe_stdin) {
755         unbuffer(stdin);
756         key = dup_bio_in(format);
757     } else {
758         key = bio_open_default(file, 'r', format);
759     }
760     if (key == NULL)
761         goto end;
762     if (format == FORMAT_ASN1) {
763         pkey = d2i_PrivateKey_bio(key, NULL);
764     } else if (format == FORMAT_PEM) {
765         pkey = PEM_read_bio_PrivateKey(key, NULL,
766                                        (pem_password_cb *)password_callback,
767                                        &cb_data);
768     } else if (format == FORMAT_PKCS12) {
769         if (!load_pkcs12(key, key_descrip,
770                          (pem_password_cb *)password_callback, &cb_data,
771                          &pkey, NULL, NULL))
772             goto end;
773 #if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_NO_DSA) && !defined (OPENSSL_NO_RC4)
774     } else if (format == FORMAT_MSBLOB) {
775         pkey = b2i_PrivateKey_bio(key);
776     } else if (format == FORMAT_PVK) {
777         pkey = b2i_PVK_bio(key, (pem_password_cb *)password_callback,
778                            &cb_data);
779 #endif
780     } else {
781         BIO_printf(bio_err, "bad input format specified for key file\n");
782         goto end;
783     }
784  end:
785     BIO_free(key);
786     if (pkey == NULL) {
787         BIO_printf(bio_err, "unable to load %s\n", key_descrip);
788         ERR_print_errors(bio_err);
789     }
790     return pkey;
791 }
792 
load_pubkey(const char * file,int format,int maybe_stdin,const char * pass,ENGINE * e,const char * key_descrip)793 EVP_PKEY *load_pubkey(const char *file, int format, int maybe_stdin,
794                       const char *pass, ENGINE *e, const char *key_descrip)
795 {
796     BIO *key = NULL;
797     EVP_PKEY *pkey = NULL;
798     PW_CB_DATA cb_data;
799 
800     cb_data.password = pass;
801     cb_data.prompt_info = file;
802 
803     if (file == NULL && (!maybe_stdin || format == FORMAT_ENGINE)) {
804         BIO_printf(bio_err, "no keyfile specified\n");
805         goto end;
806     }
807     if (format == FORMAT_ENGINE) {
808         if (e == NULL) {
809             BIO_printf(bio_err, "no engine specified\n");
810         } else {
811 #ifndef OPENSSL_NO_ENGINE
812             pkey = ENGINE_load_public_key(e, file, ui_method, &cb_data);
813             if (pkey == NULL) {
814                 BIO_printf(bio_err, "cannot load %s from engine\n", key_descrip);
815                 ERR_print_errors(bio_err);
816             }
817 #else
818             BIO_printf(bio_err, "engines not supported\n");
819 #endif
820         }
821         goto end;
822     }
823     if (file == NULL && maybe_stdin) {
824         unbuffer(stdin);
825         key = dup_bio_in(format);
826     } else {
827         key = bio_open_default(file, 'r', format);
828     }
829     if (key == NULL)
830         goto end;
831     if (format == FORMAT_ASN1) {
832         pkey = d2i_PUBKEY_bio(key, NULL);
833     } else if (format == FORMAT_ASN1RSA) {
834 #ifndef OPENSSL_NO_RSA
835         RSA *rsa;
836         rsa = d2i_RSAPublicKey_bio(key, NULL);
837         if (rsa) {
838             pkey = EVP_PKEY_new();
839             if (pkey != NULL)
840                 EVP_PKEY_set1_RSA(pkey, rsa);
841             RSA_free(rsa);
842         } else
843 #else
844         BIO_printf(bio_err, "RSA keys not supported\n");
845 #endif
846             pkey = NULL;
847     } else if (format == FORMAT_PEMRSA) {
848 #ifndef OPENSSL_NO_RSA
849         RSA *rsa;
850         rsa = PEM_read_bio_RSAPublicKey(key, NULL,
851                                         (pem_password_cb *)password_callback,
852                                         &cb_data);
853         if (rsa != NULL) {
854             pkey = EVP_PKEY_new();
855             if (pkey != NULL)
856                 EVP_PKEY_set1_RSA(pkey, rsa);
857             RSA_free(rsa);
858         } else
859 #else
860         BIO_printf(bio_err, "RSA keys not supported\n");
861 #endif
862             pkey = NULL;
863     } else if (format == FORMAT_PEM) {
864         pkey = PEM_read_bio_PUBKEY(key, NULL,
865                                    (pem_password_cb *)password_callback,
866                                    &cb_data);
867 #if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_NO_DSA)
868     } else if (format == FORMAT_MSBLOB) {
869         pkey = b2i_PublicKey_bio(key);
870 #endif
871     }
872  end:
873     BIO_free(key);
874     if (pkey == NULL)
875         BIO_printf(bio_err, "unable to load %s\n", key_descrip);
876     return pkey;
877 }
878 
load_certs_crls(const char * file,int format,const char * pass,const char * desc,STACK_OF (X509)** pcerts,STACK_OF (X509_CRL)** pcrls)879 static int load_certs_crls(const char *file, int format,
880                            const char *pass, const char *desc,
881                            STACK_OF(X509) **pcerts,
882                            STACK_OF(X509_CRL) **pcrls)
883 {
884     int i;
885     BIO *bio;
886     STACK_OF(X509_INFO) *xis = NULL;
887     X509_INFO *xi;
888     PW_CB_DATA cb_data;
889     int rv = 0;
890 
891     cb_data.password = pass;
892     cb_data.prompt_info = file;
893 
894     if (format != FORMAT_PEM) {
895         BIO_printf(bio_err, "bad input format specified for %s\n", desc);
896         return 0;
897     }
898 
899     bio = bio_open_default(file, 'r', FORMAT_PEM);
900     if (bio == NULL)
901         return 0;
902 
903     xis = PEM_X509_INFO_read_bio(bio, NULL,
904                                  (pem_password_cb *)password_callback,
905                                  &cb_data);
906 
907     BIO_free(bio);
908 
909     if (pcerts != NULL && *pcerts == NULL) {
910         *pcerts = sk_X509_new_null();
911         if (*pcerts == NULL)
912             goto end;
913     }
914 
915     if (pcrls != NULL && *pcrls == NULL) {
916         *pcrls = sk_X509_CRL_new_null();
917         if (*pcrls == NULL)
918             goto end;
919     }
920 
921     for (i = 0; i < sk_X509_INFO_num(xis); i++) {
922         xi = sk_X509_INFO_value(xis, i);
923         if (xi->x509 != NULL && pcerts != NULL) {
924             if (!sk_X509_push(*pcerts, xi->x509))
925                 goto end;
926             xi->x509 = NULL;
927         }
928         if (xi->crl != NULL && pcrls != NULL) {
929             if (!sk_X509_CRL_push(*pcrls, xi->crl))
930                 goto end;
931             xi->crl = NULL;
932         }
933     }
934 
935     if (pcerts != NULL && sk_X509_num(*pcerts) > 0)
936         rv = 1;
937 
938     if (pcrls != NULL && sk_X509_CRL_num(*pcrls) > 0)
939         rv = 1;
940 
941  end:
942 
943     sk_X509_INFO_pop_free(xis, X509_INFO_free);
944 
945     if (rv == 0) {
946         if (pcerts != NULL) {
947             sk_X509_pop_free(*pcerts, X509_free);
948             *pcerts = NULL;
949         }
950         if (pcrls != NULL) {
951             sk_X509_CRL_pop_free(*pcrls, X509_CRL_free);
952             *pcrls = NULL;
953         }
954         BIO_printf(bio_err, "unable to load %s\n",
955                    pcerts ? "certificates" : "CRLs");
956         ERR_print_errors(bio_err);
957     }
958     return rv;
959 }
960 
app_malloc(int sz,const char * what)961 void* app_malloc(int sz, const char *what)
962 {
963     void *vp = OPENSSL_malloc(sz);
964 
965     if (vp == NULL) {
966         BIO_printf(bio_err, "%s: Could not allocate %d bytes for %s\n",
967                 opt_getprog(), sz, what);
968         ERR_print_errors(bio_err);
969         exit(1);
970     }
971     return vp;
972 }
973 
974 /*
975  * Initialize or extend, if *certs != NULL, a certificate stack.
976  */
load_certs(const char * file,STACK_OF (X509)** certs,int format,const char * pass,const char * desc)977 int load_certs(const char *file, STACK_OF(X509) **certs, int format,
978                const char *pass, const char *desc)
979 {
980     return load_certs_crls(file, format, pass, desc, certs, NULL);
981 }
982 
983 /*
984  * Initialize or extend, if *crls != NULL, a certificate stack.
985  */
load_crls(const char * file,STACK_OF (X509_CRL)** crls,int format,const char * pass,const char * desc)986 int load_crls(const char *file, STACK_OF(X509_CRL) **crls, int format,
987               const char *pass, const char *desc)
988 {
989     return load_certs_crls(file, format, pass, desc, NULL, crls);
990 }
991 
992 #define X509V3_EXT_UNKNOWN_MASK         (0xfL << 16)
993 /* Return error for unknown extensions */
994 #define X509V3_EXT_DEFAULT              0
995 /* Print error for unknown extensions */
996 #define X509V3_EXT_ERROR_UNKNOWN        (1L << 16)
997 /* ASN1 parse unknown extensions */
998 #define X509V3_EXT_PARSE_UNKNOWN        (2L << 16)
999 /* BIO_dump unknown extensions */
1000 #define X509V3_EXT_DUMP_UNKNOWN         (3L << 16)
1001 
1002 #define X509_FLAG_CA (X509_FLAG_NO_ISSUER | X509_FLAG_NO_PUBKEY | \
1003                          X509_FLAG_NO_HEADER | X509_FLAG_NO_VERSION)
1004 
set_cert_ex(unsigned long * flags,const char * arg)1005 int set_cert_ex(unsigned long *flags, const char *arg)
1006 {
1007     static const NAME_EX_TBL cert_tbl[] = {
1008         {"compatible", X509_FLAG_COMPAT, 0xffffffffl},
1009         {"ca_default", X509_FLAG_CA, 0xffffffffl},
1010         {"no_header", X509_FLAG_NO_HEADER, 0},
1011         {"no_version", X509_FLAG_NO_VERSION, 0},
1012         {"no_serial", X509_FLAG_NO_SERIAL, 0},
1013         {"no_signame", X509_FLAG_NO_SIGNAME, 0},
1014         {"no_validity", X509_FLAG_NO_VALIDITY, 0},
1015         {"no_subject", X509_FLAG_NO_SUBJECT, 0},
1016         {"no_issuer", X509_FLAG_NO_ISSUER, 0},
1017         {"no_pubkey", X509_FLAG_NO_PUBKEY, 0},
1018         {"no_extensions", X509_FLAG_NO_EXTENSIONS, 0},
1019         {"no_sigdump", X509_FLAG_NO_SIGDUMP, 0},
1020         {"no_aux", X509_FLAG_NO_AUX, 0},
1021         {"no_attributes", X509_FLAG_NO_ATTRIBUTES, 0},
1022         {"ext_default", X509V3_EXT_DEFAULT, X509V3_EXT_UNKNOWN_MASK},
1023         {"ext_error", X509V3_EXT_ERROR_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1024         {"ext_parse", X509V3_EXT_PARSE_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1025         {"ext_dump", X509V3_EXT_DUMP_UNKNOWN, X509V3_EXT_UNKNOWN_MASK},
1026         {NULL, 0, 0}
1027     };
1028     return set_multi_opts(flags, arg, cert_tbl);
1029 }
1030 
set_name_ex(unsigned long * flags,const char * arg)1031 int set_name_ex(unsigned long *flags, const char *arg)
1032 {
1033     static const NAME_EX_TBL ex_tbl[] = {
1034         {"esc_2253", ASN1_STRFLGS_ESC_2253, 0},
1035         {"esc_2254", ASN1_STRFLGS_ESC_2254, 0},
1036         {"esc_ctrl", ASN1_STRFLGS_ESC_CTRL, 0},
1037         {"esc_msb", ASN1_STRFLGS_ESC_MSB, 0},
1038         {"use_quote", ASN1_STRFLGS_ESC_QUOTE, 0},
1039         {"utf8", ASN1_STRFLGS_UTF8_CONVERT, 0},
1040         {"ignore_type", ASN1_STRFLGS_IGNORE_TYPE, 0},
1041         {"show_type", ASN1_STRFLGS_SHOW_TYPE, 0},
1042         {"dump_all", ASN1_STRFLGS_DUMP_ALL, 0},
1043         {"dump_nostr", ASN1_STRFLGS_DUMP_UNKNOWN, 0},
1044         {"dump_der", ASN1_STRFLGS_DUMP_DER, 0},
1045         {"compat", XN_FLAG_COMPAT, 0xffffffffL},
1046         {"sep_comma_plus", XN_FLAG_SEP_COMMA_PLUS, XN_FLAG_SEP_MASK},
1047         {"sep_comma_plus_space", XN_FLAG_SEP_CPLUS_SPC, XN_FLAG_SEP_MASK},
1048         {"sep_semi_plus_space", XN_FLAG_SEP_SPLUS_SPC, XN_FLAG_SEP_MASK},
1049         {"sep_multiline", XN_FLAG_SEP_MULTILINE, XN_FLAG_SEP_MASK},
1050         {"dn_rev", XN_FLAG_DN_REV, 0},
1051         {"nofname", XN_FLAG_FN_NONE, XN_FLAG_FN_MASK},
1052         {"sname", XN_FLAG_FN_SN, XN_FLAG_FN_MASK},
1053         {"lname", XN_FLAG_FN_LN, XN_FLAG_FN_MASK},
1054         {"align", XN_FLAG_FN_ALIGN, 0},
1055         {"oid", XN_FLAG_FN_OID, XN_FLAG_FN_MASK},
1056         {"space_eq", XN_FLAG_SPC_EQ, 0},
1057         {"dump_unknown", XN_FLAG_DUMP_UNKNOWN_FIELDS, 0},
1058         {"RFC2253", XN_FLAG_RFC2253, 0xffffffffL},
1059         {"oneline", XN_FLAG_ONELINE, 0xffffffffL},
1060         {"multiline", XN_FLAG_MULTILINE, 0xffffffffL},
1061         {"ca_default", XN_FLAG_MULTILINE, 0xffffffffL},
1062         {NULL, 0, 0}
1063     };
1064     if (set_multi_opts(flags, arg, ex_tbl) == 0)
1065         return 0;
1066     if (*flags != XN_FLAG_COMPAT
1067         && (*flags & XN_FLAG_SEP_MASK) == 0)
1068         *flags |= XN_FLAG_SEP_CPLUS_SPC;
1069     return 1;
1070 }
1071 
set_ext_copy(int * copy_type,const char * arg)1072 int set_ext_copy(int *copy_type, const char *arg)
1073 {
1074     if (strcasecmp(arg, "none") == 0)
1075         *copy_type = EXT_COPY_NONE;
1076     else if (strcasecmp(arg, "copy") == 0)
1077         *copy_type = EXT_COPY_ADD;
1078     else if (strcasecmp(arg, "copyall") == 0)
1079         *copy_type = EXT_COPY_ALL;
1080     else
1081         return 0;
1082     return 1;
1083 }
1084 
copy_extensions(X509 * x,X509_REQ * req,int copy_type)1085 int copy_extensions(X509 *x, X509_REQ *req, int copy_type)
1086 {
1087     STACK_OF(X509_EXTENSION) *exts = NULL;
1088     X509_EXTENSION *ext, *tmpext;
1089     ASN1_OBJECT *obj;
1090     int i, idx, ret = 0;
1091     if (!x || !req || (copy_type == EXT_COPY_NONE))
1092         return 1;
1093     exts = X509_REQ_get_extensions(req);
1094 
1095     for (i = 0; i < sk_X509_EXTENSION_num(exts); i++) {
1096         ext = sk_X509_EXTENSION_value(exts, i);
1097         obj = X509_EXTENSION_get_object(ext);
1098         idx = X509_get_ext_by_OBJ(x, obj, -1);
1099         /* Does extension exist? */
1100         if (idx != -1) {
1101             /* If normal copy don't override existing extension */
1102             if (copy_type == EXT_COPY_ADD)
1103                 continue;
1104             /* Delete all extensions of same type */
1105             do {
1106                 tmpext = X509_get_ext(x, idx);
1107                 X509_delete_ext(x, idx);
1108                 X509_EXTENSION_free(tmpext);
1109                 idx = X509_get_ext_by_OBJ(x, obj, -1);
1110             } while (idx != -1);
1111         }
1112         if (!X509_add_ext(x, ext, -1))
1113             goto end;
1114     }
1115 
1116     ret = 1;
1117 
1118  end:
1119 
1120     sk_X509_EXTENSION_pop_free(exts, X509_EXTENSION_free);
1121 
1122     return ret;
1123 }
1124 
set_multi_opts(unsigned long * flags,const char * arg,const NAME_EX_TBL * in_tbl)1125 static int set_multi_opts(unsigned long *flags, const char *arg,
1126                           const NAME_EX_TBL * in_tbl)
1127 {
1128     STACK_OF(CONF_VALUE) *vals;
1129     CONF_VALUE *val;
1130     int i, ret = 1;
1131     if (!arg)
1132         return 0;
1133     vals = X509V3_parse_list(arg);
1134     for (i = 0; i < sk_CONF_VALUE_num(vals); i++) {
1135         val = sk_CONF_VALUE_value(vals, i);
1136         if (!set_table_opts(flags, val->name, in_tbl))
1137             ret = 0;
1138     }
1139     sk_CONF_VALUE_pop_free(vals, X509V3_conf_free);
1140     return ret;
1141 }
1142 
set_table_opts(unsigned long * flags,const char * arg,const NAME_EX_TBL * in_tbl)1143 static int set_table_opts(unsigned long *flags, const char *arg,
1144                           const NAME_EX_TBL * in_tbl)
1145 {
1146     char c;
1147     const NAME_EX_TBL *ptbl;
1148     c = arg[0];
1149 
1150     if (c == '-') {
1151         c = 0;
1152         arg++;
1153     } else if (c == '+') {
1154         c = 1;
1155         arg++;
1156     } else {
1157         c = 1;
1158     }
1159 
1160     for (ptbl = in_tbl; ptbl->name; ptbl++) {
1161         if (strcasecmp(arg, ptbl->name) == 0) {
1162             *flags &= ~ptbl->mask;
1163             if (c)
1164                 *flags |= ptbl->flag;
1165             else
1166                 *flags &= ~ptbl->flag;
1167             return 1;
1168         }
1169     }
1170     return 0;
1171 }
1172 
print_name(BIO * out,const char * title,X509_NAME * nm,unsigned long lflags)1173 void print_name(BIO *out, const char *title, X509_NAME *nm,
1174                 unsigned long lflags)
1175 {
1176     char *buf;
1177     char mline = 0;
1178     int indent = 0;
1179 
1180     if (title)
1181         BIO_puts(out, title);
1182     if ((lflags & XN_FLAG_SEP_MASK) == XN_FLAG_SEP_MULTILINE) {
1183         mline = 1;
1184         indent = 4;
1185     }
1186     if (lflags == XN_FLAG_COMPAT) {
1187         buf = X509_NAME_oneline(nm, 0, 0);
1188         BIO_puts(out, buf);
1189         BIO_puts(out, "\n");
1190         OPENSSL_free(buf);
1191     } else {
1192         if (mline)
1193             BIO_puts(out, "\n");
1194         X509_NAME_print_ex(out, nm, indent, lflags);
1195         BIO_puts(out, "\n");
1196     }
1197 }
1198 
print_bignum_var(BIO * out,const BIGNUM * in,const char * var,int len,unsigned char * buffer)1199 void print_bignum_var(BIO *out, const BIGNUM *in, const char *var,
1200                       int len, unsigned char *buffer)
1201 {
1202     BIO_printf(out, "    static unsigned char %s_%d[] = {", var, len);
1203     if (BN_is_zero(in)) {
1204         BIO_printf(out, "\n        0x00");
1205     } else {
1206         int i, l;
1207 
1208         l = BN_bn2bin(in, buffer);
1209         for (i = 0; i < l; i++) {
1210             BIO_printf(out, (i % 10) == 0 ? "\n        " : " ");
1211             if (i < l - 1)
1212                 BIO_printf(out, "0x%02X,", buffer[i]);
1213             else
1214                 BIO_printf(out, "0x%02X", buffer[i]);
1215         }
1216     }
1217     BIO_printf(out, "\n    };\n");
1218 }
1219 
print_array(BIO * out,const char * title,int len,const unsigned char * d)1220 void print_array(BIO *out, const char* title, int len, const unsigned char* d)
1221 {
1222     int i;
1223 
1224     BIO_printf(out, "unsigned char %s[%d] = {", title, len);
1225     for (i = 0; i < len; i++) {
1226         if ((i % 10) == 0)
1227             BIO_printf(out, "\n    ");
1228         if (i < len - 1)
1229             BIO_printf(out, "0x%02X, ", d[i]);
1230         else
1231             BIO_printf(out, "0x%02X", d[i]);
1232     }
1233     BIO_printf(out, "\n};\n");
1234 }
1235 
setup_verify(const char * CAfile,const char * CApath,int noCAfile,int noCApath)1236 X509_STORE *setup_verify(const char *CAfile, const char *CApath, int noCAfile, int noCApath)
1237 {
1238     X509_STORE *store = X509_STORE_new();
1239     X509_LOOKUP *lookup;
1240 
1241     if (store == NULL)
1242         goto end;
1243 
1244     if (CAfile != NULL || !noCAfile) {
1245         lookup = X509_STORE_add_lookup(store, X509_LOOKUP_file());
1246         if (lookup == NULL)
1247             goto end;
1248         if (CAfile) {
1249             if (!X509_LOOKUP_load_file(lookup, CAfile, X509_FILETYPE_PEM)) {
1250                 BIO_printf(bio_err, "Error loading file %s\n", CAfile);
1251                 goto end;
1252             }
1253         } else {
1254             X509_LOOKUP_load_file(lookup, NULL, X509_FILETYPE_DEFAULT);
1255         }
1256     }
1257 
1258     if (CApath != NULL || !noCApath) {
1259         lookup = X509_STORE_add_lookup(store, X509_LOOKUP_hash_dir());
1260         if (lookup == NULL)
1261             goto end;
1262         if (CApath) {
1263             if (!X509_LOOKUP_add_dir(lookup, CApath, X509_FILETYPE_PEM)) {
1264                 BIO_printf(bio_err, "Error loading directory %s\n", CApath);
1265                 goto end;
1266             }
1267         } else {
1268             X509_LOOKUP_add_dir(lookup, NULL, X509_FILETYPE_DEFAULT);
1269         }
1270     }
1271 
1272     ERR_clear_error();
1273     return store;
1274  end:
1275     X509_STORE_free(store);
1276     return NULL;
1277 }
1278 
1279 #ifndef OPENSSL_NO_ENGINE
1280 /* Try to load an engine in a shareable library */
try_load_engine(const char * engine)1281 static ENGINE *try_load_engine(const char *engine)
1282 {
1283     ENGINE *e = ENGINE_by_id("dynamic");
1284     if (e) {
1285         if (!ENGINE_ctrl_cmd_string(e, "SO_PATH", engine, 0)
1286             || !ENGINE_ctrl_cmd_string(e, "LOAD", NULL, 0)) {
1287             ENGINE_free(e);
1288             e = NULL;
1289         }
1290     }
1291     return e;
1292 }
1293 #endif
1294 
setup_engine(const char * engine,int debug)1295 ENGINE *setup_engine(const char *engine, int debug)
1296 {
1297     ENGINE *e = NULL;
1298 
1299 #ifndef OPENSSL_NO_ENGINE
1300     if (engine != NULL) {
1301         if (strcmp(engine, "auto") == 0) {
1302             BIO_printf(bio_err, "enabling auto ENGINE support\n");
1303             ENGINE_register_all_complete();
1304             return NULL;
1305         }
1306         if ((e = ENGINE_by_id(engine)) == NULL
1307             && (e = try_load_engine(engine)) == NULL) {
1308             BIO_printf(bio_err, "invalid engine \"%s\"\n", engine);
1309             ERR_print_errors(bio_err);
1310             return NULL;
1311         }
1312         if (debug) {
1313             ENGINE_ctrl(e, ENGINE_CTRL_SET_LOGSTREAM, 0, bio_err, 0);
1314         }
1315         ENGINE_ctrl_cmd(e, "SET_USER_INTERFACE", 0, ui_method, 0, 1);
1316         if (!ENGINE_set_default(e, ENGINE_METHOD_ALL)) {
1317             BIO_printf(bio_err, "can't use that engine\n");
1318             ERR_print_errors(bio_err);
1319             ENGINE_free(e);
1320             return NULL;
1321         }
1322 
1323         BIO_printf(bio_err, "engine \"%s\" set.\n", ENGINE_get_id(e));
1324     }
1325 #endif
1326     return e;
1327 }
1328 
release_engine(ENGINE * e)1329 void release_engine(ENGINE *e)
1330 {
1331 #ifndef OPENSSL_NO_ENGINE
1332     if (e != NULL)
1333         /* Free our "structural" reference. */
1334         ENGINE_free(e);
1335 #endif
1336 }
1337 
index_serial_hash(const OPENSSL_CSTRING * a)1338 static unsigned long index_serial_hash(const OPENSSL_CSTRING *a)
1339 {
1340     const char *n;
1341 
1342     n = a[DB_serial];
1343     while (*n == '0')
1344         n++;
1345     return OPENSSL_LH_strhash(n);
1346 }
1347 
index_serial_cmp(const OPENSSL_CSTRING * a,const OPENSSL_CSTRING * b)1348 static int index_serial_cmp(const OPENSSL_CSTRING *a,
1349                             const OPENSSL_CSTRING *b)
1350 {
1351     const char *aa, *bb;
1352 
1353     for (aa = a[DB_serial]; *aa == '0'; aa++) ;
1354     for (bb = b[DB_serial]; *bb == '0'; bb++) ;
1355     return strcmp(aa, bb);
1356 }
1357 
index_name_qual(char ** a)1358 static int index_name_qual(char **a)
1359 {
1360     return (a[0][0] == 'V');
1361 }
1362 
index_name_hash(const OPENSSL_CSTRING * a)1363 static unsigned long index_name_hash(const OPENSSL_CSTRING *a)
1364 {
1365     return OPENSSL_LH_strhash(a[DB_name]);
1366 }
1367 
index_name_cmp(const OPENSSL_CSTRING * a,const OPENSSL_CSTRING * b)1368 int index_name_cmp(const OPENSSL_CSTRING *a, const OPENSSL_CSTRING *b)
1369 {
1370     return strcmp(a[DB_name], b[DB_name]);
1371 }
1372 
IMPLEMENT_LHASH_HASH_FN(index_serial,OPENSSL_CSTRING)1373 static IMPLEMENT_LHASH_HASH_FN(index_serial, OPENSSL_CSTRING)
1374 static IMPLEMENT_LHASH_COMP_FN(index_serial, OPENSSL_CSTRING)
1375 static IMPLEMENT_LHASH_HASH_FN(index_name, OPENSSL_CSTRING)
1376 static IMPLEMENT_LHASH_COMP_FN(index_name, OPENSSL_CSTRING)
1377 #undef BSIZE
1378 #define BSIZE 256
1379 BIGNUM *load_serial(const char *serialfile, int create, ASN1_INTEGER **retai)
1380 {
1381     BIO *in = NULL;
1382     BIGNUM *ret = NULL;
1383     char buf[1024];
1384     ASN1_INTEGER *ai = NULL;
1385 
1386     ai = ASN1_INTEGER_new();
1387     if (ai == NULL)
1388         goto err;
1389 
1390     in = BIO_new_file(serialfile, "r");
1391     if (in == NULL) {
1392         if (!create) {
1393             perror(serialfile);
1394             goto err;
1395         }
1396         ERR_clear_error();
1397         ret = BN_new();
1398         if (ret == NULL || !rand_serial(ret, ai))
1399             BIO_printf(bio_err, "Out of memory\n");
1400     } else {
1401         if (!a2i_ASN1_INTEGER(in, ai, buf, 1024)) {
1402             BIO_printf(bio_err, "unable to load number from %s\n",
1403                        serialfile);
1404             goto err;
1405         }
1406         ret = ASN1_INTEGER_to_BN(ai, NULL);
1407         if (ret == NULL) {
1408             BIO_printf(bio_err,
1409                        "error converting number from bin to BIGNUM\n");
1410             goto err;
1411         }
1412     }
1413 
1414     if (ret && retai) {
1415         *retai = ai;
1416         ai = NULL;
1417     }
1418  err:
1419     BIO_free(in);
1420     ASN1_INTEGER_free(ai);
1421     return ret;
1422 }
1423 
save_serial(const char * serialfile,const char * suffix,const BIGNUM * serial,ASN1_INTEGER ** retai)1424 int save_serial(const char *serialfile, const char *suffix, const BIGNUM *serial,
1425                 ASN1_INTEGER **retai)
1426 {
1427     char buf[1][BSIZE];
1428     BIO *out = NULL;
1429     int ret = 0;
1430     ASN1_INTEGER *ai = NULL;
1431     int j;
1432 
1433     if (suffix == NULL)
1434         j = strlen(serialfile);
1435     else
1436         j = strlen(serialfile) + strlen(suffix) + 1;
1437     if (j >= BSIZE) {
1438         BIO_printf(bio_err, "file name too long\n");
1439         goto err;
1440     }
1441 
1442     if (suffix == NULL)
1443         OPENSSL_strlcpy(buf[0], serialfile, BSIZE);
1444     else {
1445 #ifndef OPENSSL_SYS_VMS
1446         j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s.%s", serialfile, suffix);
1447 #else
1448         j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s-%s", serialfile, suffix);
1449 #endif
1450     }
1451     out = BIO_new_file(buf[0], "w");
1452     if (out == NULL) {
1453         ERR_print_errors(bio_err);
1454         goto err;
1455     }
1456 
1457     if ((ai = BN_to_ASN1_INTEGER(serial, NULL)) == NULL) {
1458         BIO_printf(bio_err, "error converting serial to ASN.1 format\n");
1459         goto err;
1460     }
1461     i2a_ASN1_INTEGER(out, ai);
1462     BIO_puts(out, "\n");
1463     ret = 1;
1464     if (retai) {
1465         *retai = ai;
1466         ai = NULL;
1467     }
1468  err:
1469     BIO_free_all(out);
1470     ASN1_INTEGER_free(ai);
1471     return ret;
1472 }
1473 
rotate_serial(const char * serialfile,const char * new_suffix,const char * old_suffix)1474 int rotate_serial(const char *serialfile, const char *new_suffix,
1475                   const char *old_suffix)
1476 {
1477     char buf[2][BSIZE];
1478     int i, j;
1479 
1480     i = strlen(serialfile) + strlen(old_suffix);
1481     j = strlen(serialfile) + strlen(new_suffix);
1482     if (i > j)
1483         j = i;
1484     if (j + 1 >= BSIZE) {
1485         BIO_printf(bio_err, "file name too long\n");
1486         goto err;
1487     }
1488 #ifndef OPENSSL_SYS_VMS
1489     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s.%s", serialfile, new_suffix);
1490     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s.%s", serialfile, old_suffix);
1491 #else
1492     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s-%s", serialfile, new_suffix);
1493     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s-%s", serialfile, old_suffix);
1494 #endif
1495     if (rename(serialfile, buf[1]) < 0 && errno != ENOENT
1496 #ifdef ENOTDIR
1497         && errno != ENOTDIR
1498 #endif
1499         ) {
1500         BIO_printf(bio_err,
1501                    "unable to rename %s to %s\n", serialfile, buf[1]);
1502         perror("reason");
1503         goto err;
1504     }
1505     if (rename(buf[0], serialfile) < 0) {
1506         BIO_printf(bio_err,
1507                    "unable to rename %s to %s\n", buf[0], serialfile);
1508         perror("reason");
1509         rename(buf[1], serialfile);
1510         goto err;
1511     }
1512     return 1;
1513  err:
1514     return 0;
1515 }
1516 
rand_serial(BIGNUM * b,ASN1_INTEGER * ai)1517 int rand_serial(BIGNUM *b, ASN1_INTEGER *ai)
1518 {
1519     BIGNUM *btmp;
1520     int ret = 0;
1521 
1522     btmp = b == NULL ? BN_new() : b;
1523     if (btmp == NULL)
1524         return 0;
1525 
1526     if (!BN_rand(btmp, SERIAL_RAND_BITS, BN_RAND_TOP_ANY, BN_RAND_BOTTOM_ANY))
1527         goto error;
1528     if (ai && !BN_to_ASN1_INTEGER(btmp, ai))
1529         goto error;
1530 
1531     ret = 1;
1532 
1533  error:
1534 
1535     if (btmp != b)
1536         BN_free(btmp);
1537 
1538     return ret;
1539 }
1540 
load_index(const char * dbfile,DB_ATTR * db_attr)1541 CA_DB *load_index(const char *dbfile, DB_ATTR *db_attr)
1542 {
1543     CA_DB *retdb = NULL;
1544     TXT_DB *tmpdb = NULL;
1545     BIO *in;
1546     CONF *dbattr_conf = NULL;
1547     char buf[BSIZE];
1548 #ifndef OPENSSL_NO_POSIX_IO
1549     FILE *dbfp;
1550     struct stat dbst;
1551 #endif
1552 
1553     in = BIO_new_file(dbfile, "r");
1554     if (in == NULL) {
1555         ERR_print_errors(bio_err);
1556         goto err;
1557     }
1558 
1559 #ifndef OPENSSL_NO_POSIX_IO
1560     BIO_get_fp(in, &dbfp);
1561     if (fstat(fileno(dbfp), &dbst) == -1) {
1562         SYSerr(SYS_F_FSTAT, errno);
1563         ERR_add_error_data(3, "fstat('", dbfile, "')");
1564         ERR_print_errors(bio_err);
1565         goto err;
1566     }
1567 #endif
1568 
1569     if ((tmpdb = TXT_DB_read(in, DB_NUMBER)) == NULL)
1570         goto err;
1571 
1572 #ifndef OPENSSL_SYS_VMS
1573     BIO_snprintf(buf, sizeof(buf), "%s.attr", dbfile);
1574 #else
1575     BIO_snprintf(buf, sizeof(buf), "%s-attr", dbfile);
1576 #endif
1577     dbattr_conf = app_load_config_quiet(buf);
1578 
1579     retdb = app_malloc(sizeof(*retdb), "new DB");
1580     retdb->db = tmpdb;
1581     tmpdb = NULL;
1582     if (db_attr)
1583         retdb->attributes = *db_attr;
1584     else {
1585         retdb->attributes.unique_subject = 1;
1586     }
1587 
1588     if (dbattr_conf) {
1589         char *p = NCONF_get_string(dbattr_conf, NULL, "unique_subject");
1590         if (p) {
1591             retdb->attributes.unique_subject = parse_yesno(p, 1);
1592         }
1593     }
1594 
1595     retdb->dbfname = OPENSSL_strdup(dbfile);
1596 #ifndef OPENSSL_NO_POSIX_IO
1597     retdb->dbst = dbst;
1598 #endif
1599 
1600  err:
1601     NCONF_free(dbattr_conf);
1602     TXT_DB_free(tmpdb);
1603     BIO_free_all(in);
1604     return retdb;
1605 }
1606 
1607 /*
1608  * Returns > 0 on success, <= 0 on error
1609  */
index_index(CA_DB * db)1610 int index_index(CA_DB *db)
1611 {
1612     if (!TXT_DB_create_index(db->db, DB_serial, NULL,
1613                              LHASH_HASH_FN(index_serial),
1614                              LHASH_COMP_FN(index_serial))) {
1615         BIO_printf(bio_err,
1616                    "error creating serial number index:(%ld,%ld,%ld)\n",
1617                    db->db->error, db->db->arg1, db->db->arg2);
1618         return 0;
1619     }
1620 
1621     if (db->attributes.unique_subject
1622         && !TXT_DB_create_index(db->db, DB_name, index_name_qual,
1623                                 LHASH_HASH_FN(index_name),
1624                                 LHASH_COMP_FN(index_name))) {
1625         BIO_printf(bio_err, "error creating name index:(%ld,%ld,%ld)\n",
1626                    db->db->error, db->db->arg1, db->db->arg2);
1627         return 0;
1628     }
1629     return 1;
1630 }
1631 
save_index(const char * dbfile,const char * suffix,CA_DB * db)1632 int save_index(const char *dbfile, const char *suffix, CA_DB *db)
1633 {
1634     char buf[3][BSIZE];
1635     BIO *out;
1636     int j;
1637 
1638     j = strlen(dbfile) + strlen(suffix);
1639     if (j + 6 >= BSIZE) {
1640         BIO_printf(bio_err, "file name too long\n");
1641         goto err;
1642     }
1643 #ifndef OPENSSL_SYS_VMS
1644     j = BIO_snprintf(buf[2], sizeof(buf[2]), "%s.attr", dbfile);
1645     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s.attr.%s", dbfile, suffix);
1646     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s.%s", dbfile, suffix);
1647 #else
1648     j = BIO_snprintf(buf[2], sizeof(buf[2]), "%s-attr", dbfile);
1649     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s-attr-%s", dbfile, suffix);
1650     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s-%s", dbfile, suffix);
1651 #endif
1652     out = BIO_new_file(buf[0], "w");
1653     if (out == NULL) {
1654         perror(dbfile);
1655         BIO_printf(bio_err, "unable to open '%s'\n", dbfile);
1656         goto err;
1657     }
1658     j = TXT_DB_write(out, db->db);
1659     BIO_free(out);
1660     if (j <= 0)
1661         goto err;
1662 
1663     out = BIO_new_file(buf[1], "w");
1664     if (out == NULL) {
1665         perror(buf[2]);
1666         BIO_printf(bio_err, "unable to open '%s'\n", buf[2]);
1667         goto err;
1668     }
1669     BIO_printf(out, "unique_subject = %s\n",
1670                db->attributes.unique_subject ? "yes" : "no");
1671     BIO_free(out);
1672 
1673     return 1;
1674  err:
1675     return 0;
1676 }
1677 
rotate_index(const char * dbfile,const char * new_suffix,const char * old_suffix)1678 int rotate_index(const char *dbfile, const char *new_suffix,
1679                  const char *old_suffix)
1680 {
1681     char buf[5][BSIZE];
1682     int i, j;
1683 
1684     i = strlen(dbfile) + strlen(old_suffix);
1685     j = strlen(dbfile) + strlen(new_suffix);
1686     if (i > j)
1687         j = i;
1688     if (j + 6 >= BSIZE) {
1689         BIO_printf(bio_err, "file name too long\n");
1690         goto err;
1691     }
1692 #ifndef OPENSSL_SYS_VMS
1693     j = BIO_snprintf(buf[4], sizeof(buf[4]), "%s.attr", dbfile);
1694     j = BIO_snprintf(buf[3], sizeof(buf[3]), "%s.attr.%s", dbfile, old_suffix);
1695     j = BIO_snprintf(buf[2], sizeof(buf[2]), "%s.attr.%s", dbfile, new_suffix);
1696     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s.%s", dbfile, old_suffix);
1697     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s.%s", dbfile, new_suffix);
1698 #else
1699     j = BIO_snprintf(buf[4], sizeof(buf[4]), "%s-attr", dbfile);
1700     j = BIO_snprintf(buf[3], sizeof(buf[3]), "%s-attr-%s", dbfile, old_suffix);
1701     j = BIO_snprintf(buf[2], sizeof(buf[2]), "%s-attr-%s", dbfile, new_suffix);
1702     j = BIO_snprintf(buf[1], sizeof(buf[1]), "%s-%s", dbfile, old_suffix);
1703     j = BIO_snprintf(buf[0], sizeof(buf[0]), "%s-%s", dbfile, new_suffix);
1704 #endif
1705     if (rename(dbfile, buf[1]) < 0 && errno != ENOENT
1706 #ifdef ENOTDIR
1707         && errno != ENOTDIR
1708 #endif
1709         ) {
1710         BIO_printf(bio_err, "unable to rename %s to %s\n", dbfile, buf[1]);
1711         perror("reason");
1712         goto err;
1713     }
1714     if (rename(buf[0], dbfile) < 0) {
1715         BIO_printf(bio_err, "unable to rename %s to %s\n", buf[0], dbfile);
1716         perror("reason");
1717         rename(buf[1], dbfile);
1718         goto err;
1719     }
1720     if (rename(buf[4], buf[3]) < 0 && errno != ENOENT
1721 #ifdef ENOTDIR
1722         && errno != ENOTDIR
1723 #endif
1724         ) {
1725         BIO_printf(bio_err, "unable to rename %s to %s\n", buf[4], buf[3]);
1726         perror("reason");
1727         rename(dbfile, buf[0]);
1728         rename(buf[1], dbfile);
1729         goto err;
1730     }
1731     if (rename(buf[2], buf[4]) < 0) {
1732         BIO_printf(bio_err, "unable to rename %s to %s\n", buf[2], buf[4]);
1733         perror("reason");
1734         rename(buf[3], buf[4]);
1735         rename(dbfile, buf[0]);
1736         rename(buf[1], dbfile);
1737         goto err;
1738     }
1739     return 1;
1740  err:
1741     return 0;
1742 }
1743 
free_index(CA_DB * db)1744 void free_index(CA_DB *db)
1745 {
1746     if (db) {
1747         TXT_DB_free(db->db);
1748         OPENSSL_free(db->dbfname);
1749         OPENSSL_free(db);
1750     }
1751 }
1752 
parse_yesno(const char * str,int def)1753 int parse_yesno(const char *str, int def)
1754 {
1755     if (str) {
1756         switch (*str) {
1757         case 'f':              /* false */
1758         case 'F':              /* FALSE */
1759         case 'n':              /* no */
1760         case 'N':              /* NO */
1761         case '0':              /* 0 */
1762             return 0;
1763         case 't':              /* true */
1764         case 'T':              /* TRUE */
1765         case 'y':              /* yes */
1766         case 'Y':              /* YES */
1767         case '1':              /* 1 */
1768             return 1;
1769         }
1770     }
1771     return def;
1772 }
1773 
1774 /*
1775  * name is expected to be in the format /type0=value0/type1=value1/type2=...
1776  * where characters may be escaped by \
1777  */
parse_name(const char * cp,long chtype,int canmulti)1778 X509_NAME *parse_name(const char *cp, long chtype, int canmulti)
1779 {
1780     int nextismulti = 0;
1781     char *work;
1782     X509_NAME *n;
1783 
1784     if (*cp++ != '/') {
1785         BIO_printf(bio_err,
1786                    "name is expected to be in the format "
1787                    "/type0=value0/type1=value1/type2=... where characters may "
1788                    "be escaped by \\. This name is not in that format: '%s'\n",
1789                    --cp);
1790         return NULL;
1791     }
1792 
1793     n = X509_NAME_new();
1794     if (n == NULL)
1795         return NULL;
1796     work = OPENSSL_strdup(cp);
1797     if (work == NULL)
1798         goto err;
1799 
1800     while (*cp) {
1801         char *bp = work;
1802         char *typestr = bp;
1803         unsigned char *valstr;
1804         int nid;
1805         int ismulti = nextismulti;
1806         nextismulti = 0;
1807 
1808         /* Collect the type */
1809         while (*cp && *cp != '=')
1810             *bp++ = *cp++;
1811         if (*cp == '\0') {
1812             BIO_printf(bio_err,
1813                     "%s: Hit end of string before finding the equals.\n",
1814                     opt_getprog());
1815             goto err;
1816         }
1817         *bp++ = '\0';
1818         ++cp;
1819 
1820         /* Collect the value. */
1821         valstr = (unsigned char *)bp;
1822         for (; *cp && *cp != '/'; *bp++ = *cp++) {
1823             if (canmulti && *cp == '+') {
1824                 nextismulti = 1;
1825                 break;
1826             }
1827             if (*cp == '\\' && *++cp == '\0') {
1828                 BIO_printf(bio_err,
1829                         "%s: escape character at end of string\n",
1830                         opt_getprog());
1831                 goto err;
1832             }
1833         }
1834         *bp++ = '\0';
1835 
1836         /* If not at EOS (must be + or /), move forward. */
1837         if (*cp)
1838             ++cp;
1839 
1840         /* Parse */
1841         nid = OBJ_txt2nid(typestr);
1842         if (nid == NID_undef) {
1843             BIO_printf(bio_err, "%s: Skipping unknown attribute \"%s\"\n",
1844                       opt_getprog(), typestr);
1845             continue;
1846         }
1847         if (*valstr == '\0') {
1848             BIO_printf(bio_err,
1849                        "%s: No value provided for Subject Attribute %s, skipped\n",
1850                        opt_getprog(), typestr);
1851             continue;
1852         }
1853         if (!X509_NAME_add_entry_by_NID(n, nid, chtype,
1854                                         valstr, strlen((char *)valstr),
1855                                         -1, ismulti ? -1 : 0))
1856             goto err;
1857     }
1858 
1859     OPENSSL_free(work);
1860     return n;
1861 
1862  err:
1863     X509_NAME_free(n);
1864     OPENSSL_free(work);
1865     return NULL;
1866 }
1867 
1868 /*
1869  * Read whole contents of a BIO into an allocated memory buffer and return
1870  * it.
1871  */
1872 
bio_to_mem(unsigned char ** out,int maxlen,BIO * in)1873 int bio_to_mem(unsigned char **out, int maxlen, BIO *in)
1874 {
1875     BIO *mem;
1876     int len, ret;
1877     unsigned char tbuf[1024];
1878 
1879     mem = BIO_new(BIO_s_mem());
1880     if (mem == NULL)
1881         return -1;
1882     for (;;) {
1883         if ((maxlen != -1) && maxlen < 1024)
1884             len = maxlen;
1885         else
1886             len = 1024;
1887         len = BIO_read(in, tbuf, len);
1888         if (len < 0) {
1889             BIO_free(mem);
1890             return -1;
1891         }
1892         if (len == 0)
1893             break;
1894         if (BIO_write(mem, tbuf, len) != len) {
1895             BIO_free(mem);
1896             return -1;
1897         }
1898         maxlen -= len;
1899 
1900         if (maxlen == 0)
1901             break;
1902     }
1903     ret = BIO_get_mem_data(mem, (char **)out);
1904     BIO_set_flags(mem, BIO_FLAGS_MEM_RDONLY);
1905     BIO_free(mem);
1906     return ret;
1907 }
1908 
pkey_ctrl_string(EVP_PKEY_CTX * ctx,const char * value)1909 int pkey_ctrl_string(EVP_PKEY_CTX *ctx, const char *value)
1910 {
1911     int rv;
1912     char *stmp, *vtmp = NULL;
1913     stmp = OPENSSL_strdup(value);
1914     if (!stmp)
1915         return -1;
1916     vtmp = strchr(stmp, ':');
1917     if (vtmp) {
1918         *vtmp = 0;
1919         vtmp++;
1920     }
1921     rv = EVP_PKEY_CTX_ctrl_str(ctx, stmp, vtmp);
1922     OPENSSL_free(stmp);
1923     return rv;
1924 }
1925 
nodes_print(const char * name,STACK_OF (X509_POLICY_NODE)* nodes)1926 static void nodes_print(const char *name, STACK_OF(X509_POLICY_NODE) *nodes)
1927 {
1928     X509_POLICY_NODE *node;
1929     int i;
1930 
1931     BIO_printf(bio_err, "%s Policies:", name);
1932     if (nodes) {
1933         BIO_puts(bio_err, "\n");
1934         for (i = 0; i < sk_X509_POLICY_NODE_num(nodes); i++) {
1935             node = sk_X509_POLICY_NODE_value(nodes, i);
1936             X509_POLICY_NODE_print(bio_err, node, 2);
1937         }
1938     } else {
1939         BIO_puts(bio_err, " <empty>\n");
1940     }
1941 }
1942 
policies_print(X509_STORE_CTX * ctx)1943 void policies_print(X509_STORE_CTX *ctx)
1944 {
1945     X509_POLICY_TREE *tree;
1946     int explicit_policy;
1947     tree = X509_STORE_CTX_get0_policy_tree(ctx);
1948     explicit_policy = X509_STORE_CTX_get_explicit_policy(ctx);
1949 
1950     BIO_printf(bio_err, "Require explicit Policy: %s\n",
1951                explicit_policy ? "True" : "False");
1952 
1953     nodes_print("Authority", X509_policy_tree_get0_policies(tree));
1954     nodes_print("User", X509_policy_tree_get0_user_policies(tree));
1955 }
1956 
1957 /*-
1958  * next_protos_parse parses a comma separated list of strings into a string
1959  * in a format suitable for passing to SSL_CTX_set_next_protos_advertised.
1960  *   outlen: (output) set to the length of the resulting buffer on success.
1961  *   err: (maybe NULL) on failure, an error message line is written to this BIO.
1962  *   in: a NUL terminated string like "abc,def,ghi"
1963  *
1964  *   returns: a malloc'd buffer or NULL on failure.
1965  */
next_protos_parse(size_t * outlen,const char * in)1966 unsigned char *next_protos_parse(size_t *outlen, const char *in)
1967 {
1968     size_t len;
1969     unsigned char *out;
1970     size_t i, start = 0;
1971     size_t skipped = 0;
1972 
1973     len = strlen(in);
1974     if (len == 0 || len >= 65535)
1975         return NULL;
1976 
1977     out = app_malloc(len + 1, "NPN buffer");
1978     for (i = 0; i <= len; ++i) {
1979         if (i == len || in[i] == ',') {
1980             /*
1981              * Zero-length ALPN elements are invalid on the wire, we could be
1982              * strict and reject the entire string, but just ignoring extra
1983              * commas seems harmless and more friendly.
1984              *
1985              * Every comma we skip in this way puts the input buffer another
1986              * byte ahead of the output buffer, so all stores into the output
1987              * buffer need to be decremented by the number commas skipped.
1988              */
1989             if (i == start) {
1990                 ++start;
1991                 ++skipped;
1992                 continue;
1993             }
1994             if (i - start > 255) {
1995                 OPENSSL_free(out);
1996                 return NULL;
1997             }
1998             out[start-skipped] = (unsigned char)(i - start);
1999             start = i + 1;
2000         } else {
2001             out[i + 1 - skipped] = in[i];
2002         }
2003     }
2004 
2005     if (len <= skipped) {
2006         OPENSSL_free(out);
2007         return NULL;
2008     }
2009 
2010     *outlen = len + 1 - skipped;
2011     return out;
2012 }
2013 
print_cert_checks(BIO * bio,X509 * x,const char * checkhost,const char * checkemail,const char * checkip)2014 void print_cert_checks(BIO *bio, X509 *x,
2015                        const char *checkhost,
2016                        const char *checkemail, const char *checkip)
2017 {
2018     if (x == NULL)
2019         return;
2020     if (checkhost) {
2021         BIO_printf(bio, "Hostname %s does%s match certificate\n",
2022                    checkhost,
2023                    X509_check_host(x, checkhost, 0, 0, NULL) == 1
2024                        ? "" : " NOT");
2025     }
2026 
2027     if (checkemail) {
2028         BIO_printf(bio, "Email %s does%s match certificate\n",
2029                    checkemail, X509_check_email(x, checkemail, 0, 0)
2030                    ? "" : " NOT");
2031     }
2032 
2033     if (checkip) {
2034         BIO_printf(bio, "IP %s does%s match certificate\n",
2035                    checkip, X509_check_ip_asc(x, checkip, 0) ? "" : " NOT");
2036     }
2037 }
2038 
2039 /* Get first http URL from a DIST_POINT structure */
2040 
get_dp_url(DIST_POINT * dp)2041 static const char *get_dp_url(DIST_POINT *dp)
2042 {
2043     GENERAL_NAMES *gens;
2044     GENERAL_NAME *gen;
2045     int i, gtype;
2046     ASN1_STRING *uri;
2047     if (!dp->distpoint || dp->distpoint->type != 0)
2048         return NULL;
2049     gens = dp->distpoint->name.fullname;
2050     for (i = 0; i < sk_GENERAL_NAME_num(gens); i++) {
2051         gen = sk_GENERAL_NAME_value(gens, i);
2052         uri = GENERAL_NAME_get0_value(gen, &gtype);
2053         if (gtype == GEN_URI && ASN1_STRING_length(uri) > 6) {
2054             const char *uptr = (const char *)ASN1_STRING_get0_data(uri);
2055             if (strncmp(uptr, "http://", 7) == 0)
2056                 return uptr;
2057         }
2058     }
2059     return NULL;
2060 }
2061 
2062 /*
2063  * Look through a CRLDP structure and attempt to find an http URL to
2064  * downloads a CRL from.
2065  */
2066 
load_crl_crldp(STACK_OF (DIST_POINT)* crldp)2067 static X509_CRL *load_crl_crldp(STACK_OF(DIST_POINT) *crldp)
2068 {
2069     int i;
2070     const char *urlptr = NULL;
2071     for (i = 0; i < sk_DIST_POINT_num(crldp); i++) {
2072         DIST_POINT *dp = sk_DIST_POINT_value(crldp, i);
2073         urlptr = get_dp_url(dp);
2074         if (urlptr)
2075             return load_crl(urlptr, FORMAT_HTTP);
2076     }
2077     return NULL;
2078 }
2079 
2080 /*
2081  * Example of downloading CRLs from CRLDP: not usable for real world as it
2082  * always downloads, doesn't support non-blocking I/O and doesn't cache
2083  * anything.
2084  */
2085 
STACK_OF(X509_CRL)2086 static STACK_OF(X509_CRL) *crls_http_cb(X509_STORE_CTX *ctx, X509_NAME *nm)
2087 {
2088     X509 *x;
2089     STACK_OF(X509_CRL) *crls = NULL;
2090     X509_CRL *crl;
2091     STACK_OF(DIST_POINT) *crldp;
2092 
2093     crls = sk_X509_CRL_new_null();
2094     if (!crls)
2095         return NULL;
2096     x = X509_STORE_CTX_get_current_cert(ctx);
2097     crldp = X509_get_ext_d2i(x, NID_crl_distribution_points, NULL, NULL);
2098     crl = load_crl_crldp(crldp);
2099     sk_DIST_POINT_pop_free(crldp, DIST_POINT_free);
2100     if (!crl) {
2101         sk_X509_CRL_free(crls);
2102         return NULL;
2103     }
2104     sk_X509_CRL_push(crls, crl);
2105     /* Try to download delta CRL */
2106     crldp = X509_get_ext_d2i(x, NID_freshest_crl, NULL, NULL);
2107     crl = load_crl_crldp(crldp);
2108     sk_DIST_POINT_pop_free(crldp, DIST_POINT_free);
2109     if (crl)
2110         sk_X509_CRL_push(crls, crl);
2111     return crls;
2112 }
2113 
store_setup_crl_download(X509_STORE * st)2114 void store_setup_crl_download(X509_STORE *st)
2115 {
2116     X509_STORE_set_lookup_crls_cb(st, crls_http_cb);
2117 }
2118 
2119 /*
2120  * Platform-specific sections
2121  */
2122 #if defined(_WIN32)
2123 # ifdef fileno
2124 #  undef fileno
2125 #  define fileno(a) (int)_fileno(a)
2126 # endif
2127 
2128 # include <windows.h>
2129 # include <tchar.h>
2130 
WIN32_rename(const char * from,const char * to)2131 static int WIN32_rename(const char *from, const char *to)
2132 {
2133     TCHAR *tfrom = NULL, *tto;
2134     DWORD err;
2135     int ret = 0;
2136 
2137     if (sizeof(TCHAR) == 1) {
2138         tfrom = (TCHAR *)from;
2139         tto = (TCHAR *)to;
2140     } else {                    /* UNICODE path */
2141 
2142         size_t i, flen = strlen(from) + 1, tlen = strlen(to) + 1;
2143         tfrom = malloc(sizeof(*tfrom) * (flen + tlen));
2144         if (tfrom == NULL)
2145             goto err;
2146         tto = tfrom + flen;
2147 # if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2148         if (!MultiByteToWideChar(CP_ACP, 0, from, flen, (WCHAR *)tfrom, flen))
2149 # endif
2150             for (i = 0; i < flen; i++)
2151                 tfrom[i] = (TCHAR)from[i];
2152 # if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2153         if (!MultiByteToWideChar(CP_ACP, 0, to, tlen, (WCHAR *)tto, tlen))
2154 # endif
2155             for (i = 0; i < tlen; i++)
2156                 tto[i] = (TCHAR)to[i];
2157     }
2158 
2159     if (MoveFile(tfrom, tto))
2160         goto ok;
2161     err = GetLastError();
2162     if (err == ERROR_ALREADY_EXISTS || err == ERROR_FILE_EXISTS) {
2163         if (DeleteFile(tto) && MoveFile(tfrom, tto))
2164             goto ok;
2165         err = GetLastError();
2166     }
2167     if (err == ERROR_FILE_NOT_FOUND || err == ERROR_PATH_NOT_FOUND)
2168         errno = ENOENT;
2169     else if (err == ERROR_ACCESS_DENIED)
2170         errno = EACCES;
2171     else
2172         errno = EINVAL;         /* we could map more codes... */
2173  err:
2174     ret = -1;
2175  ok:
2176     if (tfrom != NULL && tfrom != (TCHAR *)from)
2177         free(tfrom);
2178     return ret;
2179 }
2180 #endif
2181 
2182 /* app_tminterval section */
2183 #if defined(_WIN32)
app_tminterval(int stop,int usertime)2184 double app_tminterval(int stop, int usertime)
2185 {
2186     FILETIME now;
2187     double ret = 0;
2188     static ULARGE_INTEGER tmstart;
2189     static int warning = 1;
2190 # ifdef _WIN32_WINNT
2191     static HANDLE proc = NULL;
2192 
2193     if (proc == NULL) {
2194         if (check_winnt())
2195             proc = OpenProcess(PROCESS_QUERY_INFORMATION, FALSE,
2196                                GetCurrentProcessId());
2197         if (proc == NULL)
2198             proc = (HANDLE) - 1;
2199     }
2200 
2201     if (usertime && proc != (HANDLE) - 1) {
2202         FILETIME junk;
2203         GetProcessTimes(proc, &junk, &junk, &junk, &now);
2204     } else
2205 # endif
2206     {
2207         SYSTEMTIME systime;
2208 
2209         if (usertime && warning) {
2210             BIO_printf(bio_err, "To get meaningful results, run "
2211                        "this program on idle system.\n");
2212             warning = 0;
2213         }
2214         GetSystemTime(&systime);
2215         SystemTimeToFileTime(&systime, &now);
2216     }
2217 
2218     if (stop == TM_START) {
2219         tmstart.u.LowPart = now.dwLowDateTime;
2220         tmstart.u.HighPart = now.dwHighDateTime;
2221     } else {
2222         ULARGE_INTEGER tmstop;
2223 
2224         tmstop.u.LowPart = now.dwLowDateTime;
2225         tmstop.u.HighPart = now.dwHighDateTime;
2226 
2227         ret = (__int64)(tmstop.QuadPart - tmstart.QuadPart) * 1e-7;
2228     }
2229 
2230     return ret;
2231 }
2232 #elif defined(OPENSSL_SYS_VXWORKS)
2233 # include <time.h>
2234 
app_tminterval(int stop,int usertime)2235 double app_tminterval(int stop, int usertime)
2236 {
2237     double ret = 0;
2238 # ifdef CLOCK_REALTIME
2239     static struct timespec tmstart;
2240     struct timespec now;
2241 # else
2242     static unsigned long tmstart;
2243     unsigned long now;
2244 # endif
2245     static int warning = 1;
2246 
2247     if (usertime && warning) {
2248         BIO_printf(bio_err, "To get meaningful results, run "
2249                    "this program on idle system.\n");
2250         warning = 0;
2251     }
2252 # ifdef CLOCK_REALTIME
2253     clock_gettime(CLOCK_REALTIME, &now);
2254     if (stop == TM_START)
2255         tmstart = now;
2256     else
2257         ret = ((now.tv_sec + now.tv_nsec * 1e-9)
2258                - (tmstart.tv_sec + tmstart.tv_nsec * 1e-9));
2259 # else
2260     now = tickGet();
2261     if (stop == TM_START)
2262         tmstart = now;
2263     else
2264         ret = (now - tmstart) / (double)sysClkRateGet();
2265 # endif
2266     return ret;
2267 }
2268 
2269 #elif defined(OPENSSL_SYSTEM_VMS)
2270 # include <time.h>
2271 # include <times.h>
2272 
app_tminterval(int stop,int usertime)2273 double app_tminterval(int stop, int usertime)
2274 {
2275     static clock_t tmstart;
2276     double ret = 0;
2277     clock_t now;
2278 # ifdef __TMS
2279     struct tms rus;
2280 
2281     now = times(&rus);
2282     if (usertime)
2283         now = rus.tms_utime;
2284 # else
2285     if (usertime)
2286         now = clock();          /* sum of user and kernel times */
2287     else {
2288         struct timeval tv;
2289         gettimeofday(&tv, NULL);
2290         now = (clock_t)((unsigned long long)tv.tv_sec * CLK_TCK +
2291                         (unsigned long long)tv.tv_usec * (1000000 / CLK_TCK)
2292             );
2293     }
2294 # endif
2295     if (stop == TM_START)
2296         tmstart = now;
2297     else
2298         ret = (now - tmstart) / (double)(CLK_TCK);
2299 
2300     return ret;
2301 }
2302 
2303 #elif defined(_SC_CLK_TCK)      /* by means of unistd.h */
2304 # include <sys/times.h>
2305 
app_tminterval(int stop,int usertime)2306 double app_tminterval(int stop, int usertime)
2307 {
2308     double ret = 0;
2309     struct tms rus;
2310     clock_t now = times(&rus);
2311     static clock_t tmstart;
2312 
2313     if (usertime)
2314         now = rus.tms_utime;
2315 
2316     if (stop == TM_START) {
2317         tmstart = now;
2318     } else {
2319         long int tck = sysconf(_SC_CLK_TCK);
2320         ret = (now - tmstart) / (double)tck;
2321     }
2322 
2323     return ret;
2324 }
2325 
2326 #else
2327 # include <sys/time.h>
2328 # include <sys/resource.h>
2329 
app_tminterval(int stop,int usertime)2330 double app_tminterval(int stop, int usertime)
2331 {
2332     double ret = 0;
2333     struct rusage rus;
2334     struct timeval now;
2335     static struct timeval tmstart;
2336 
2337     if (usertime)
2338         getrusage(RUSAGE_SELF, &rus), now = rus.ru_utime;
2339     else
2340         gettimeofday(&now, NULL);
2341 
2342     if (stop == TM_START)
2343         tmstart = now;
2344     else
2345         ret = ((now.tv_sec + now.tv_usec * 1e-6)
2346                - (tmstart.tv_sec + tmstart.tv_usec * 1e-6));
2347 
2348     return ret;
2349 }
2350 #endif
2351 
app_access(const char * name,int flag)2352 int app_access(const char* name, int flag)
2353 {
2354 #ifdef _WIN32
2355     return _access(name, flag);
2356 #else
2357     return access(name, flag);
2358 #endif
2359 }
2360 
2361 /* app_isdir section */
2362 #ifdef _WIN32
app_isdir(const char * name)2363 int app_isdir(const char *name)
2364 {
2365     DWORD attr;
2366 # if defined(UNICODE) || defined(_UNICODE)
2367     size_t i, len_0 = strlen(name) + 1;
2368     WCHAR tempname[MAX_PATH];
2369 
2370     if (len_0 > MAX_PATH)
2371         return -1;
2372 
2373 #  if !defined(_WIN32_WCE) || _WIN32_WCE>=101
2374     if (!MultiByteToWideChar(CP_ACP, 0, name, len_0, tempname, MAX_PATH))
2375 #  endif
2376         for (i = 0; i < len_0; i++)
2377             tempname[i] = (WCHAR)name[i];
2378 
2379     attr = GetFileAttributes(tempname);
2380 # else
2381     attr = GetFileAttributes(name);
2382 # endif
2383     if (attr == INVALID_FILE_ATTRIBUTES)
2384         return -1;
2385     return ((attr & FILE_ATTRIBUTE_DIRECTORY) != 0);
2386 }
2387 #else
2388 # include <sys/stat.h>
2389 # ifndef S_ISDIR
2390 #  if defined(_S_IFMT) && defined(_S_IFDIR)
2391 #   define S_ISDIR(a)   (((a) & _S_IFMT) == _S_IFDIR)
2392 #  else
2393 #   define S_ISDIR(a)   (((a) & S_IFMT) == S_IFDIR)
2394 #  endif
2395 # endif
2396 
app_isdir(const char * name)2397 int app_isdir(const char *name)
2398 {
2399 # if defined(S_ISDIR)
2400     struct stat st;
2401 
2402     if (stat(name, &st) == 0)
2403         return S_ISDIR(st.st_mode);
2404     else
2405         return -1;
2406 # else
2407     return -1;
2408 # endif
2409 }
2410 #endif
2411 
2412 /* raw_read|write section */
2413 #if defined(__VMS)
2414 # include "vms_term_sock.h"
2415 static int stdin_sock = -1;
2416 
close_stdin_sock(void)2417 static void close_stdin_sock(void)
2418 {
2419     TerminalSocket (TERM_SOCK_DELETE, &stdin_sock);
2420 }
2421 
fileno_stdin(void)2422 int fileno_stdin(void)
2423 {
2424     if (stdin_sock == -1) {
2425         TerminalSocket(TERM_SOCK_CREATE, &stdin_sock);
2426         atexit(close_stdin_sock);
2427     }
2428 
2429     return stdin_sock;
2430 }
2431 #else
fileno_stdin(void)2432 int fileno_stdin(void)
2433 {
2434     return fileno(stdin);
2435 }
2436 #endif
2437 
fileno_stdout(void)2438 int fileno_stdout(void)
2439 {
2440     return fileno(stdout);
2441 }
2442 
2443 #if defined(_WIN32) && defined(STD_INPUT_HANDLE)
raw_read_stdin(void * buf,int siz)2444 int raw_read_stdin(void *buf, int siz)
2445 {
2446     DWORD n;
2447     if (ReadFile(GetStdHandle(STD_INPUT_HANDLE), buf, siz, &n, NULL))
2448         return n;
2449     else
2450         return -1;
2451 }
2452 #elif defined(__VMS)
2453 # include <sys/socket.h>
2454 
raw_read_stdin(void * buf,int siz)2455 int raw_read_stdin(void *buf, int siz)
2456 {
2457     return recv(fileno_stdin(), buf, siz, 0);
2458 }
2459 #else
raw_read_stdin(void * buf,int siz)2460 int raw_read_stdin(void *buf, int siz)
2461 {
2462     return read(fileno_stdin(), buf, siz);
2463 }
2464 #endif
2465 
2466 #if defined(_WIN32) && defined(STD_OUTPUT_HANDLE)
raw_write_stdout(const void * buf,int siz)2467 int raw_write_stdout(const void *buf, int siz)
2468 {
2469     DWORD n;
2470     if (WriteFile(GetStdHandle(STD_OUTPUT_HANDLE), buf, siz, &n, NULL))
2471         return n;
2472     else
2473         return -1;
2474 }
2475 #else
raw_write_stdout(const void * buf,int siz)2476 int raw_write_stdout(const void *buf, int siz)
2477 {
2478     return write(fileno_stdout(), buf, siz);
2479 }
2480 #endif
2481 
2482 /*
2483  * Centralized handling if input and output files with format specification
2484  * The format is meant to show what the input and output is supposed to be,
2485  * and is therefore a show of intent more than anything else.  However, it
2486  * does impact behavior on some platform, such as differentiating between
2487  * text and binary input/output on non-Unix platforms
2488  */
istext(int format)2489 static int istext(int format)
2490 {
2491     return (format & B_FORMAT_TEXT) == B_FORMAT_TEXT;
2492 }
2493 
dup_bio_in(int format)2494 BIO *dup_bio_in(int format)
2495 {
2496     return BIO_new_fp(stdin,
2497                       BIO_NOCLOSE | (istext(format) ? BIO_FP_TEXT : 0));
2498 }
2499 
2500 static BIO_METHOD *prefix_method = NULL;
2501 
dup_bio_out(int format)2502 BIO *dup_bio_out(int format)
2503 {
2504     BIO *b = BIO_new_fp(stdout,
2505                         BIO_NOCLOSE | (istext(format) ? BIO_FP_TEXT : 0));
2506     void *prefix = NULL;
2507 
2508 #ifdef OPENSSL_SYS_VMS
2509     if (istext(format))
2510         b = BIO_push(BIO_new(BIO_f_linebuffer()), b);
2511 #endif
2512 
2513     if (istext(format) && (prefix = getenv("HARNESS_OSSL_PREFIX")) != NULL) {
2514         if (prefix_method == NULL)
2515             prefix_method = apps_bf_prefix();
2516         b = BIO_push(BIO_new(prefix_method), b);
2517         BIO_ctrl(b, PREFIX_CTRL_SET_PREFIX, 0, prefix);
2518     }
2519 
2520     return b;
2521 }
2522 
dup_bio_err(int format)2523 BIO *dup_bio_err(int format)
2524 {
2525     BIO *b = BIO_new_fp(stderr,
2526                         BIO_NOCLOSE | (istext(format) ? BIO_FP_TEXT : 0));
2527 #ifdef OPENSSL_SYS_VMS
2528     if (istext(format))
2529         b = BIO_push(BIO_new(BIO_f_linebuffer()), b);
2530 #endif
2531     return b;
2532 }
2533 
destroy_prefix_method(void)2534 void destroy_prefix_method(void)
2535 {
2536     BIO_meth_free(prefix_method);
2537     prefix_method = NULL;
2538 }
2539 
unbuffer(FILE * fp)2540 void unbuffer(FILE *fp)
2541 {
2542 /*
2543  * On VMS, setbuf() will only take 32-bit pointers, and a compilation
2544  * with /POINTER_SIZE=64 will give off a MAYLOSEDATA2 warning here.
2545  * However, we trust that the C RTL will never give us a FILE pointer
2546  * above the first 4 GB of memory, so we simply turn off the warning
2547  * temporarily.
2548  */
2549 #if defined(OPENSSL_SYS_VMS) && defined(__DECC)
2550 # pragma environment save
2551 # pragma message disable maylosedata2
2552 #endif
2553     setbuf(fp, NULL);
2554 #if defined(OPENSSL_SYS_VMS) && defined(__DECC)
2555 # pragma environment restore
2556 #endif
2557 }
2558 
modestr(char mode,int format)2559 static const char *modestr(char mode, int format)
2560 {
2561     OPENSSL_assert(mode == 'a' || mode == 'r' || mode == 'w');
2562 
2563     switch (mode) {
2564     case 'a':
2565         return istext(format) ? "a" : "ab";
2566     case 'r':
2567         return istext(format) ? "r" : "rb";
2568     case 'w':
2569         return istext(format) ? "w" : "wb";
2570     }
2571     /* The assert above should make sure we never reach this point */
2572     return NULL;
2573 }
2574 
modeverb(char mode)2575 static const char *modeverb(char mode)
2576 {
2577     switch (mode) {
2578     case 'a':
2579         return "appending";
2580     case 'r':
2581         return "reading";
2582     case 'w':
2583         return "writing";
2584     }
2585     return "(doing something)";
2586 }
2587 
2588 /*
2589  * Open a file for writing, owner-read-only.
2590  */
bio_open_owner(const char * filename,int format,int private)2591 BIO *bio_open_owner(const char *filename, int format, int private)
2592 {
2593     FILE *fp = NULL;
2594     BIO *b = NULL;
2595     int fd = -1, bflags, mode, textmode;
2596 
2597     if (!private || filename == NULL || strcmp(filename, "-") == 0)
2598         return bio_open_default(filename, 'w', format);
2599 
2600     mode = O_WRONLY;
2601 #ifdef O_CREAT
2602     mode |= O_CREAT;
2603 #endif
2604 #ifdef O_TRUNC
2605     mode |= O_TRUNC;
2606 #endif
2607     textmode = istext(format);
2608     if (!textmode) {
2609 #ifdef O_BINARY
2610         mode |= O_BINARY;
2611 #elif defined(_O_BINARY)
2612         mode |= _O_BINARY;
2613 #endif
2614     }
2615 
2616 #ifdef OPENSSL_SYS_VMS
2617     /* VMS doesn't have O_BINARY, it just doesn't make sense.  But,
2618      * it still needs to know that we're going binary, or fdopen()
2619      * will fail with "invalid argument"...  so we tell VMS what the
2620      * context is.
2621      */
2622     if (!textmode)
2623         fd = open(filename, mode, 0600, "ctx=bin");
2624     else
2625 #endif
2626         fd = open(filename, mode, 0600);
2627     if (fd < 0)
2628         goto err;
2629     fp = fdopen(fd, modestr('w', format));
2630     if (fp == NULL)
2631         goto err;
2632     bflags = BIO_CLOSE;
2633     if (textmode)
2634         bflags |= BIO_FP_TEXT;
2635     b = BIO_new_fp(fp, bflags);
2636     if (b)
2637         return b;
2638 
2639  err:
2640     BIO_printf(bio_err, "%s: Can't open \"%s\" for writing, %s\n",
2641                opt_getprog(), filename, strerror(errno));
2642     ERR_print_errors(bio_err);
2643     /* If we have fp, then fdopen took over fd, so don't close both. */
2644     if (fp)
2645         fclose(fp);
2646     else if (fd >= 0)
2647         close(fd);
2648     return NULL;
2649 }
2650 
bio_open_default_(const char * filename,char mode,int format,int quiet)2651 static BIO *bio_open_default_(const char *filename, char mode, int format,
2652                               int quiet)
2653 {
2654     BIO *ret;
2655 
2656     if (filename == NULL || strcmp(filename, "-") == 0) {
2657         ret = mode == 'r' ? dup_bio_in(format) : dup_bio_out(format);
2658         if (quiet) {
2659             ERR_clear_error();
2660             return ret;
2661         }
2662         if (ret != NULL)
2663             return ret;
2664         BIO_printf(bio_err,
2665                    "Can't open %s, %s\n",
2666                    mode == 'r' ? "stdin" : "stdout", strerror(errno));
2667     } else {
2668         ret = BIO_new_file(filename, modestr(mode, format));
2669         if (quiet) {
2670             ERR_clear_error();
2671             return ret;
2672         }
2673         if (ret != NULL)
2674             return ret;
2675         BIO_printf(bio_err,
2676                    "Can't open %s for %s, %s\n",
2677                    filename, modeverb(mode), strerror(errno));
2678     }
2679     ERR_print_errors(bio_err);
2680     return NULL;
2681 }
2682 
bio_open_default(const char * filename,char mode,int format)2683 BIO *bio_open_default(const char *filename, char mode, int format)
2684 {
2685     return bio_open_default_(filename, mode, format, 0);
2686 }
2687 
bio_open_default_quiet(const char * filename,char mode,int format)2688 BIO *bio_open_default_quiet(const char *filename, char mode, int format)
2689 {
2690     return bio_open_default_(filename, mode, format, 1);
2691 }
2692 
wait_for_async(SSL * s)2693 void wait_for_async(SSL *s)
2694 {
2695     /* On Windows select only works for sockets, so we simply don't wait  */
2696 #ifndef OPENSSL_SYS_WINDOWS
2697     int width = 0;
2698     fd_set asyncfds;
2699     OSSL_ASYNC_FD *fds;
2700     size_t numfds;
2701     size_t i;
2702 
2703     if (!SSL_get_all_async_fds(s, NULL, &numfds))
2704         return;
2705     if (numfds == 0)
2706         return;
2707     fds = app_malloc(sizeof(OSSL_ASYNC_FD) * numfds, "allocate async fds");
2708     if (!SSL_get_all_async_fds(s, fds, &numfds)) {
2709         OPENSSL_free(fds);
2710         return;
2711     }
2712 
2713     FD_ZERO(&asyncfds);
2714     for (i = 0; i < numfds; i++) {
2715         if (width <= (int)fds[i])
2716             width = (int)fds[i] + 1;
2717         openssl_fdset((int)fds[i], &asyncfds);
2718     }
2719     select(width, (void *)&asyncfds, NULL, NULL, NULL);
2720     OPENSSL_free(fds);
2721 #endif
2722 }
2723 
2724 /* if OPENSSL_SYS_WINDOWS is defined then so is OPENSSL_SYS_MSDOS */
2725 #if defined(OPENSSL_SYS_MSDOS)
has_stdin_waiting(void)2726 int has_stdin_waiting(void)
2727 {
2728 # if defined(OPENSSL_SYS_WINDOWS)
2729     HANDLE inhand = GetStdHandle(STD_INPUT_HANDLE);
2730     DWORD events = 0;
2731     INPUT_RECORD inputrec;
2732     DWORD insize = 1;
2733     BOOL peeked;
2734 
2735     if (inhand == INVALID_HANDLE_VALUE) {
2736         return 0;
2737     }
2738 
2739     peeked = PeekConsoleInput(inhand, &inputrec, insize, &events);
2740     if (!peeked) {
2741         /* Probably redirected input? _kbhit() does not work in this case */
2742         if (!feof(stdin)) {
2743             return 1;
2744         }
2745         return 0;
2746     }
2747 # endif
2748     return _kbhit();
2749 }
2750 #endif
2751 
2752 /* Corrupt a signature by modifying final byte */
corrupt_signature(const ASN1_STRING * signature)2753 void corrupt_signature(const ASN1_STRING *signature)
2754 {
2755         unsigned char *s = signature->data;
2756         s[signature->length - 1] ^= 0x1;
2757 }
2758 
set_cert_times(X509 * x,const char * startdate,const char * enddate,int days)2759 int set_cert_times(X509 *x, const char *startdate, const char *enddate,
2760                    int days)
2761 {
2762     if (startdate == NULL || strcmp(startdate, "today") == 0) {
2763         if (X509_gmtime_adj(X509_getm_notBefore(x), 0) == NULL)
2764             return 0;
2765     } else {
2766         if (!ASN1_TIME_set_string_X509(X509_getm_notBefore(x), startdate))
2767             return 0;
2768     }
2769     if (enddate == NULL) {
2770         if (X509_time_adj_ex(X509_getm_notAfter(x), days, 0, NULL)
2771             == NULL)
2772             return 0;
2773     } else if (!ASN1_TIME_set_string_X509(X509_getm_notAfter(x), enddate)) {
2774         return 0;
2775     }
2776     return 1;
2777 }
2778 
make_uppercase(char * string)2779 void make_uppercase(char *string)
2780 {
2781     int i;
2782 
2783     for (i = 0; string[i] != '\0'; i++)
2784         string[i] = toupper((unsigned char)string[i]);
2785 }
2786