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62867571 1/*
3c2bdd7d 2 * Copyright 1995-2021 The OpenSSL Project Authors. All Rights Reserved.
d02b48c6 3 *
16742672 4 * Licensed under the Apache License 2.0 (the "License"). You may not use
62867571
RS
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
d02b48c6
RE
8 */
9
e4468e6d
P
10/* We need to use some engine deprecated APIs */
11#define OPENSSL_SUPPRESS_DEPRECATED
12
d02b48c6 13#include <stdio.h>
25f2138b 14#include "crypto/ctype.h"
67787844 15#include <string.h>
b39fc560 16#include "internal/cryptlib.h"
ec577822
BM
17#include <openssl/buffer.h>
18#include <openssl/objects.h>
19#include <openssl/evp.h>
20#include <openssl/rand.h>
21#include <openssl/x509.h>
22#include <openssl/pem.h>
095ce353 23#include <openssl/pkcs12.h>
25f2138b 24#include "crypto/asn1.h"
3c27208f
RS
25#include <openssl/des.h>
26#include <openssl/engine.h>
d02b48c6 27
0f113f3e 28#define MIN_LENGTH 4
d02b48c6 29
0f113f3e 30static int load_iv(char **fromp, unsigned char *to, int num);
ce1b4fe1 31static int check_pem(const char *nm, const char *name);
b78c0166 32int ossl_pem_check_suffix(const char *pem_str, const char *suffix);
1241126a 33
d6d94d33 34int PEM_def_callback(char *buf, int num, int rwflag, void *userdata)
0f113f3e 35{
4977b4e9 36 int i, min_len;
0f113f3e 37 const char *prompt;
af9895cb 38
d6d94d33
RL
39 /* We assume that the user passes a default password as userdata */
40 if (userdata) {
41 i = strlen(userdata);
0f113f3e 42 i = (i > num) ? num : i;
d6d94d33 43 memcpy(buf, userdata, i);
af9895cb 44 return i;
0f113f3e
MC
45 }
46
47 prompt = EVP_get_pw_prompt();
48 if (prompt == NULL)
49 prompt = "Enter PEM pass phrase:";
50
4977b4e9 51 /*
d6d94d33
RL
52 * rwflag == 0 means decryption
53 * rwflag == 1 means encryption
54 *
55 * We assume that for encryption, we want a minimum length, while for
56 * decryption, we cannot know any minimum length, so we assume zero.
4977b4e9 57 */
d6d94d33 58 min_len = rwflag ? MIN_LENGTH : 0;
b160f282 59
d6d94d33 60 i = EVP_read_pw_string_min(buf, min_len, num, prompt, rwflag);
4977b4e9 61 if (i != 0) {
9311d0c4 62 ERR_raise(ERR_LIB_PEM, PEM_R_PROBLEMS_GETTING_PASSWORD);
4977b4e9
RL
63 memset(buf, 0, (unsigned int)num);
64 return -1;
0f113f3e 65 }
4977b4e9 66 return strlen(buf);
0f113f3e 67}
d02b48c6 68
6b691a5c 69void PEM_proc_type(char *buf, int type)
0f113f3e
MC
70{
71 const char *str;
86ba26c8 72 char *p = buf + strlen(buf);
0f113f3e
MC
73
74 if (type == PEM_TYPE_ENCRYPTED)
75 str = "ENCRYPTED";
76 else if (type == PEM_TYPE_MIC_CLEAR)
77 str = "MIC-CLEAR";
78 else if (type == PEM_TYPE_MIC_ONLY)
79 str = "MIC-ONLY";
80 else
81 str = "BAD-TYPE";
82
86ba26c8 83 BIO_snprintf(p, PEM_BUFSIZE - (size_t)(p - buf), "Proc-Type: 4,%s\n", str);
0f113f3e 84}
d02b48c6 85
de0799b0 86void PEM_dek_info(char *buf, const char *type, int len, const char *str)
0f113f3e 87{
0f113f3e 88 long i;
86ba26c8
P
89 char *p = buf + strlen(buf);
90 int j = PEM_BUFSIZE - (size_t)(p - buf), n;
91
92 n = BIO_snprintf(p, j, "DEK-Info: %s,", type);
93 if (n > 0) {
94 j -= n;
95 p += n;
96 for (i = 0; i < len; i++) {
97 n = BIO_snprintf(p, j, "%02X", 0xff & str[i]);
98 if (n <= 0)
99 return;
100 j -= n;
101 p += n;
102 }
103 if (j > 1)
104 strcpy(p, "\n");
0f113f3e 105 }
0f113f3e 106}
d02b48c6 107
4b618848 108#ifndef OPENSSL_NO_STDIO
8bb826ee 109void *PEM_ASN1_read(d2i_of_void *d2i, const char *name, FILE *fp, void **x,
0f113f3e
MC
110 pem_password_cb *cb, void *u)
111{
112 BIO *b;
113 void *ret;
114
115 if ((b = BIO_new(BIO_s_file())) == NULL) {
9311d0c4 116 ERR_raise(ERR_LIB_PEM, ERR_R_BUF_LIB);
b4df712a 117 return 0;
0f113f3e
MC
118 }
119 BIO_set_fp(b, fp, BIO_NOCLOSE);
120 ret = PEM_ASN1_read_bio(d2i, name, b, x, cb, u);
121 BIO_free(b);
b4df712a 122 return ret;
0f113f3e 123}
d02b48c6
RE
124#endif
125
ce1b4fe1
DSH
126static int check_pem(const char *nm, const char *name)
127{
0f113f3e 128 /* Normal matching nm and name */
86885c28 129 if (strcmp(nm, name) == 0)
0f113f3e
MC
130 return 1;
131
132 /* Make PEM_STRING_EVP_PKEY match any private key */
133
86885c28 134 if (strcmp(name, PEM_STRING_EVP_PKEY) == 0) {
0f113f3e
MC
135 int slen;
136 const EVP_PKEY_ASN1_METHOD *ameth;
86885c28 137 if (strcmp(nm, PEM_STRING_PKCS8) == 0)
0f113f3e 138 return 1;
86885c28 139 if (strcmp(nm, PEM_STRING_PKCS8INF) == 0)
0f113f3e 140 return 1;
b78c0166 141 slen = ossl_pem_check_suffix(nm, "PRIVATE KEY");
0f113f3e
MC
142 if (slen > 0) {
143 /*
60250017 144 * NB: ENGINE implementations won't contain a deprecated old
0f113f3e
MC
145 * private key decode function so don't look for them.
146 */
147 ameth = EVP_PKEY_asn1_find_str(NULL, nm, slen);
148 if (ameth && ameth->old_priv_decode)
149 return 1;
150 }
151 return 0;
152 }
153
86885c28 154 if (strcmp(name, PEM_STRING_PARAMETERS) == 0) {
0f113f3e
MC
155 int slen;
156 const EVP_PKEY_ASN1_METHOD *ameth;
b78c0166 157 slen = ossl_pem_check_suffix(nm, "PARAMETERS");
0f113f3e
MC
158 if (slen > 0) {
159 ENGINE *e;
160 ameth = EVP_PKEY_asn1_find_str(&e, nm, slen);
161 if (ameth) {
162 int r;
163 if (ameth->param_decode)
164 r = 1;
165 else
166 r = 0;
01b8b3c7 167#ifndef OPENSSL_NO_ENGINE
7c96dbcd 168 ENGINE_finish(e);
01b8b3c7 169#endif
0f113f3e
MC
170 return r;
171 }
172 }
173 return 0;
174 }
175 /* If reading DH parameters handle X9.42 DH format too */
86885c28
RS
176 if (strcmp(nm, PEM_STRING_DHXPARAMS) == 0
177 && strcmp(name, PEM_STRING_DHPARAMS) == 0)
0f113f3e 178 return 1;
3e4585c8 179
0f113f3e 180 /* Permit older strings */
ce1b4fe1 181
86885c28
RS
182 if (strcmp(nm, PEM_STRING_X509_OLD) == 0
183 && strcmp(name, PEM_STRING_X509) == 0)
0f113f3e 184 return 1;
ce1b4fe1 185
86885c28
RS
186 if (strcmp(nm, PEM_STRING_X509_REQ_OLD) == 0
187 && strcmp(name, PEM_STRING_X509_REQ) == 0)
0f113f3e 188 return 1;
ce1b4fe1 189
0f113f3e 190 /* Allow normal certs to be read as trusted certs */
86885c28
RS
191 if (strcmp(nm, PEM_STRING_X509) == 0
192 && strcmp(name, PEM_STRING_X509_TRUSTED) == 0)
0f113f3e 193 return 1;
ce1b4fe1 194
86885c28
RS
195 if (strcmp(nm, PEM_STRING_X509_OLD) == 0
196 && strcmp(name, PEM_STRING_X509_TRUSTED) == 0)
0f113f3e 197 return 1;
ce1b4fe1 198
0f113f3e 199 /* Some CAs use PKCS#7 with CERTIFICATE headers */
86885c28
RS
200 if (strcmp(nm, PEM_STRING_X509) == 0
201 && strcmp(name, PEM_STRING_PKCS7) == 0)
0f113f3e 202 return 1;
3142c86d 203
86885c28
RS
204 if (strcmp(nm, PEM_STRING_PKCS7_SIGNED) == 0
205 && strcmp(name, PEM_STRING_PKCS7) == 0)
0f113f3e 206 return 1;
2401debe 207
8931b30d 208#ifndef OPENSSL_NO_CMS
86885c28
RS
209 if (strcmp(nm, PEM_STRING_X509) == 0
210 && strcmp(name, PEM_STRING_CMS) == 0)
0f113f3e
MC
211 return 1;
212 /* Allow CMS to be read from PKCS#7 headers */
86885c28
RS
213 if (strcmp(nm, PEM_STRING_PKCS7) == 0
214 && strcmp(name, PEM_STRING_CMS) == 0)
0f113f3e 215 return 1;
8931b30d
DSH
216#endif
217
0f113f3e 218 return 0;
ce1b4fe1
DSH
219}
220
2ca8bbe5 221static void pem_free(void *p, unsigned int flags, size_t num)
204afd81
BK
222{
223 if (flags & PEM_FLAG_SECURE)
2ca8bbe5 224 OPENSSL_secure_clear_free(p, num);
204afd81
BK
225 else
226 OPENSSL_free(p);
227}
228
229static void *pem_malloc(int num, unsigned int flags)
230{
231 return (flags & PEM_FLAG_SECURE) ? OPENSSL_secure_malloc(num)
232 : OPENSSL_malloc(num);
233}
234
7671342e
BK
235static int pem_bytes_read_bio_flags(unsigned char **pdata, long *plen,
236 char **pnm, const char *name, BIO *bp,
237 pem_password_cb *cb, void *u,
238 unsigned int flags)
0f113f3e
MC
239{
240 EVP_CIPHER_INFO cipher;
241 char *nm = NULL, *header = NULL;
242 unsigned char *data = NULL;
2ca8bbe5 243 long len = 0;
0f113f3e
MC
244 int ret = 0;
245
7671342e 246 do {
2ca8bbe5
BE
247 pem_free(nm, flags, 0);
248 pem_free(header, flags, 0);
249 pem_free(data, flags, len);
7671342e 250 if (!PEM_read_bio_ex(bp, &nm, &header, &data, &len, flags)) {
0f113f3e
MC
251 if (ERR_GET_REASON(ERR_peek_error()) == PEM_R_NO_START_LINE)
252 ERR_add_error_data(2, "Expecting: ", name);
253 return 0;
254 }
7671342e 255 } while (!check_pem(nm, name));
0f113f3e
MC
256 if (!PEM_get_EVP_CIPHER_INFO(header, &cipher))
257 goto err;
258 if (!PEM_do_header(&cipher, data, &len, cb, u))
259 goto err;
260
261 *pdata = data;
262 *plen = len;
263
7671342e 264 if (pnm != NULL)
0f113f3e
MC
265 *pnm = nm;
266
267 ret = 1;
268
269 err:
7671342e 270 if (!ret || pnm == NULL)
2ca8bbe5
BE
271 pem_free(nm, flags, 0);
272 pem_free(header, flags, 0);
0f113f3e 273 if (!ret)
2ca8bbe5 274 pem_free(data, flags, len);
0f113f3e
MC
275 return ret;
276}
d02b48c6 277
7671342e
BK
278int PEM_bytes_read_bio(unsigned char **pdata, long *plen, char **pnm,
279 const char *name, BIO *bp, pem_password_cb *cb,
280 void *u) {
281 return pem_bytes_read_bio_flags(pdata, plen, pnm, name, bp, cb, u,
282 PEM_FLAG_EAY_COMPATIBLE);
283}
284
285int PEM_bytes_read_bio_secmem(unsigned char **pdata, long *plen, char **pnm,
286 const char *name, BIO *bp, pem_password_cb *cb,
287 void *u) {
288 return pem_bytes_read_bio_flags(pdata, plen, pnm, name, bp, cb, u,
289 PEM_FLAG_SECURE | PEM_FLAG_EAY_COMPATIBLE);
290}
291
4b618848 292#ifndef OPENSSL_NO_STDIO
8bb826ee 293int PEM_ASN1_write(i2d_of_void *i2d, const char *name, FILE *fp,
de0799b0
RL
294 const void *x, const EVP_CIPHER *enc,
295 const unsigned char *kstr, int klen,
296 pem_password_cb *callback, void *u)
0f113f3e
MC
297{
298 BIO *b;
299 int ret;
300
301 if ((b = BIO_new(BIO_s_file())) == NULL) {
9311d0c4 302 ERR_raise(ERR_LIB_PEM, ERR_R_BUF_LIB);
b4df712a 303 return 0;
0f113f3e
MC
304 }
305 BIO_set_fp(b, fp, BIO_NOCLOSE);
306 ret = PEM_ASN1_write_bio(i2d, name, b, x, enc, kstr, klen, callback, u);
307 BIO_free(b);
b4df712a 308 return ret;
0f113f3e 309}
d02b48c6
RE
310#endif
311
8bb826ee 312int PEM_ASN1_write_bio(i2d_of_void *i2d, const char *name, BIO *bp,
de0799b0
RL
313 const void *x, const EVP_CIPHER *enc,
314 const unsigned char *kstr, int klen,
315 pem_password_cb *callback, void *u)
0f113f3e 316{
846ec07d 317 EVP_CIPHER_CTX *ctx = NULL;
4c9b0a03 318 int dsize = 0, i = 0, j = 0, ret = 0;
0f113f3e
MC
319 unsigned char *p, *data = NULL;
320 const char *objstr = NULL;
321 char buf[PEM_BUFSIZE];
322 unsigned char key[EVP_MAX_KEY_LENGTH];
323 unsigned char iv[EVP_MAX_IV_LENGTH];
324
325 if (enc != NULL) {
5050fd5b 326 objstr = EVP_CIPHER_name(enc);
e40ada04
MC
327 if (objstr == NULL || EVP_CIPHER_iv_length(enc) == 0
328 || EVP_CIPHER_iv_length(enc) > (int)sizeof(iv)
329 /*
330 * Check "Proc-Type: 4,Encrypted\nDEK-Info: objstr,hex-iv\n"
331 * fits into buf
332 */
333 || (strlen(objstr) + 23 + 2 * EVP_CIPHER_iv_length(enc) + 13)
334 > sizeof(buf)) {
9311d0c4 335 ERR_raise(ERR_LIB_PEM, PEM_R_UNSUPPORTED_CIPHER);
0f113f3e
MC
336 goto err;
337 }
338 }
339
e0137ca9 340 if ((dsize = i2d(x, NULL)) <= 0) {
9311d0c4 341 ERR_raise(ERR_LIB_PEM, ERR_R_ASN1_LIB);
0f113f3e
MC
342 dsize = 0;
343 goto err;
344 }
69687aa8 345 /* dsize + 8 bytes are needed */
0f113f3e 346 /* actually it needs the cipher block size extra... */
b196e7d9 347 data = OPENSSL_malloc((unsigned int)dsize + 20);
0f113f3e 348 if (data == NULL) {
9311d0c4 349 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
0f113f3e
MC
350 goto err;
351 }
352 p = data;
353 i = i2d(x, &p);
354
355 if (enc != NULL) {
356 if (kstr == NULL) {
357 if (callback == NULL)
358 klen = PEM_def_callback(buf, PEM_BUFSIZE, 1, u);
359 else
360 klen = (*callback) (buf, PEM_BUFSIZE, 1, u);
361 if (klen <= 0) {
9311d0c4 362 ERR_raise(ERR_LIB_PEM, PEM_R_READ_KEY);
0f113f3e
MC
363 goto err;
364 }
a53955d8 365#ifdef CHARSET_EBCDIC
0f113f3e
MC
366 /* Convert the pass phrase from EBCDIC */
367 ebcdic2ascii(buf, buf, klen);
a53955d8 368#endif
0f113f3e
MC
369 kstr = (unsigned char *)buf;
370 }
6c2ff56e 371 if (RAND_bytes(iv, EVP_CIPHER_iv_length(enc)) <= 0) /* Generate a salt */
0f113f3e
MC
372 goto err;
373 /*
374 * The 'iv' is used as the iv and as a salt. It is NOT taken from
375 * the BytesToKey function
376 */
377 if (!EVP_BytesToKey(enc, EVP_md5(), iv, kstr, klen, 1, key, NULL))
378 goto err;
379
380 if (kstr == (unsigned char *)buf)
381 OPENSSL_cleanse(buf, PEM_BUFSIZE);
382
0f113f3e
MC
383 buf[0] = '\0';
384 PEM_proc_type(buf, PEM_TYPE_ENCRYPTED);
6c2ff56e 385 PEM_dek_info(buf, objstr, EVP_CIPHER_iv_length(enc), (char *)iv);
0f113f3e
MC
386 /* k=strlen(buf); */
387
0f113f3e 388 ret = 1;
846ec07d
RL
389 if ((ctx = EVP_CIPHER_CTX_new()) == NULL
390 || !EVP_EncryptInit_ex(ctx, enc, NULL, key, iv)
391 || !EVP_EncryptUpdate(ctx, data, &j, data, i)
392 || !EVP_EncryptFinal_ex(ctx, &(data[j]), &i))
0f113f3e 393 ret = 0;
0f113f3e
MC
394 if (ret == 0)
395 goto err;
396 i += j;
397 } else {
398 ret = 1;
399 buf[0] = '\0';
400 }
401 i = PEM_write_bio(bp, name, buf, data, i);
402 if (i <= 0)
403 ret = 0;
404 err:
405 OPENSSL_cleanse(key, sizeof(key));
406 OPENSSL_cleanse(iv, sizeof(iv));
846ec07d 407 EVP_CIPHER_CTX_free(ctx);
0f113f3e 408 OPENSSL_cleanse(buf, PEM_BUFSIZE);
4b45c6e5 409 OPENSSL_clear_free(data, (unsigned int)dsize);
b4df712a 410 return ret;
0f113f3e 411}
d02b48c6 412
6b691a5c 413int PEM_do_header(EVP_CIPHER_INFO *cipher, unsigned char *data, long *plen,
0f113f3e
MC
414 pem_password_cb *callback, void *u)
415{
67787844
VD
416 int ok;
417 int keylen;
418 long len = *plen;
419 int ilen = (int) len; /* EVP_DecryptUpdate etc. take int lengths */
846ec07d 420 EVP_CIPHER_CTX *ctx;
0f113f3e
MC
421 unsigned char key[EVP_MAX_KEY_LENGTH];
422 char buf[PEM_BUFSIZE];
423
67787844
VD
424#if LONG_MAX > INT_MAX
425 /* Check that we did not truncate the length */
426 if (len > INT_MAX) {
9311d0c4 427 ERR_raise(ERR_LIB_PEM, PEM_R_HEADER_TOO_LONG);
67787844
VD
428 return 0;
429 }
430#endif
0f113f3e
MC
431
432 if (cipher->cipher == NULL)
67787844 433 return 1;
0f113f3e 434 if (callback == NULL)
67787844 435 keylen = PEM_def_callback(buf, PEM_BUFSIZE, 0, u);
0f113f3e 436 else
67787844 437 keylen = callback(buf, PEM_BUFSIZE, 0, u);
c82c3462 438 if (keylen < 0) {
9311d0c4 439 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_PASSWORD_READ);
67787844 440 return 0;
0f113f3e 441 }
a53955d8 442#ifdef CHARSET_EBCDIC
0f113f3e 443 /* Convert the pass phrase from EBCDIC */
67787844 444 ebcdic2ascii(buf, buf, keylen);
a53955d8
UM
445#endif
446
0f113f3e 447 if (!EVP_BytesToKey(cipher->cipher, EVP_md5(), &(cipher->iv[0]),
67787844 448 (unsigned char *)buf, keylen, 1, key, NULL))
0f113f3e
MC
449 return 0;
450
846ec07d
RL
451 ctx = EVP_CIPHER_CTX_new();
452 if (ctx == NULL)
453 return 0;
67787844
VD
454
455 ok = EVP_DecryptInit_ex(ctx, cipher->cipher, NULL, key, &(cipher->iv[0]));
456 if (ok)
457 ok = EVP_DecryptUpdate(ctx, data, &ilen, data, ilen);
458 if (ok) {
459 /* Squirrel away the length of data decrypted so far. */
460 *plen = ilen;
461 ok = EVP_DecryptFinal_ex(ctx, &(data[ilen]), &ilen);
462 }
463 if (ok)
464 *plen += ilen;
465 else
9311d0c4 466 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_DECRYPT);
67787844 467
846ec07d 468 EVP_CIPHER_CTX_free(ctx);
0f113f3e
MC
469 OPENSSL_cleanse((char *)buf, sizeof(buf));
470 OPENSSL_cleanse((char *)key, sizeof(key));
67787844 471 return ok;
0f113f3e 472}
d02b48c6 473
67787844
VD
474/*
475 * This implements a very limited PEM header parser that does not support the
476 * full grammar of rfc1421. In particular, folded headers are not supported,
477 * nor is additional whitespace.
478 *
479 * A robust implementation would make use of a library that turns the headers
480 * into a BIO from which one folded line is read at a time, and is then split
481 * into a header label and content. We would then parse the content of the
482 * headers we care about. This is overkill for just this limited use-case, but
483 * presumably we also parse rfc822-style headers for S/MIME, so a common
484 * abstraction might well be more generally useful.
485 */
6b691a5c 486int PEM_get_EVP_CIPHER_INFO(char *header, EVP_CIPHER_INFO *cipher)
0f113f3e 487{
67787844
VD
488 static const char ProcType[] = "Proc-Type:";
489 static const char ENCRYPTED[] = "ENCRYPTED";
490 static const char DEKInfo[] = "DEK-Info:";
0f113f3e 491 const EVP_CIPHER *enc = NULL;
67787844 492 int ivlen;
33a6d5a0 493 char *dekinfostart, c;
0f113f3e
MC
494
495 cipher->cipher = NULL;
10c3c1c1 496 memset(cipher->iv, 0, sizeof(cipher->iv));
0f113f3e 497 if ((header == NULL) || (*header == '\0') || (*header == '\n'))
67787844
VD
498 return 1;
499
500 if (strncmp(header, ProcType, sizeof(ProcType)-1) != 0) {
9311d0c4 501 ERR_raise(ERR_LIB_PEM, PEM_R_NOT_PROC_TYPE);
67787844 502 return 0;
0f113f3e 503 }
67787844
VD
504 header += sizeof(ProcType)-1;
505 header += strspn(header, " \t");
506
507 if (*header++ != '4' || *header++ != ',')
508 return 0;
509 header += strspn(header, " \t");
510
511 /* We expect "ENCRYPTED" followed by optional white-space + line break */
512 if (strncmp(header, ENCRYPTED, sizeof(ENCRYPTED)-1) != 0 ||
513 strspn(header+sizeof(ENCRYPTED)-1, " \t\r\n") == 0) {
9311d0c4 514 ERR_raise(ERR_LIB_PEM, PEM_R_NOT_ENCRYPTED);
67787844 515 return 0;
0f113f3e 516 }
67787844
VD
517 header += sizeof(ENCRYPTED)-1;
518 header += strspn(header, " \t\r");
519 if (*header++ != '\n') {
9311d0c4 520 ERR_raise(ERR_LIB_PEM, PEM_R_SHORT_HEADER);
67787844 521 return 0;
0f113f3e 522 }
67787844
VD
523
524 /*-
525 * https://tools.ietf.org/html/rfc1421#section-4.6.1.3
526 * We expect "DEK-Info: algo[,hex-parameters]"
527 */
528 if (strncmp(header, DEKInfo, sizeof(DEKInfo)-1) != 0) {
9311d0c4 529 ERR_raise(ERR_LIB_PEM, PEM_R_NOT_DEK_INFO);
67787844 530 return 0;
0f113f3e 531 }
67787844
VD
532 header += sizeof(DEKInfo)-1;
533 header += strspn(header, " \t");
0f113f3e 534
67787844
VD
535 /*
536 * DEK-INFO is a comma-separated combination of algorithm name and optional
537 * parameters.
538 */
33a6d5a0 539 dekinfostart = header;
67787844
VD
540 header += strcspn(header, " \t,");
541 c = *header;
0f113f3e 542 *header = '\0';
33a6d5a0 543 cipher->cipher = enc = EVP_get_cipherbyname(dekinfostart);
67787844
VD
544 *header = c;
545 header += strspn(header, " \t");
0f113f3e
MC
546
547 if (enc == NULL) {
9311d0c4 548 ERR_raise(ERR_LIB_PEM, PEM_R_UNSUPPORTED_ENCRYPTION);
67787844 549 return 0;
0f113f3e 550 }
67787844
VD
551 ivlen = EVP_CIPHER_iv_length(enc);
552 if (ivlen > 0 && *header++ != ',') {
9311d0c4 553 ERR_raise(ERR_LIB_PEM, PEM_R_MISSING_DEK_IV);
67787844
VD
554 return 0;
555 } else if (ivlen == 0 && *header == ',') {
9311d0c4 556 ERR_raise(ERR_LIB_PEM, PEM_R_UNEXPECTED_DEK_IV);
67787844
VD
557 return 0;
558 }
559
985c3146 560 if (!load_iv(&header, cipher->iv, EVP_CIPHER_iv_length(enc)))
67787844 561 return 0;
0f113f3e 562
67787844 563 return 1;
0f113f3e 564}
d02b48c6 565
8c3c5701 566static int load_iv(char **fromp, unsigned char *to, int num)
0f113f3e
MC
567{
568 int v, i;
569 char *from;
570
571 from = *fromp;
572 for (i = 0; i < num; i++)
573 to[i] = 0;
574 num *= 2;
575 for (i = 0; i < num; i++) {
49445f21
RS
576 v = OPENSSL_hexchar2int(*from);
577 if (v < 0) {
9311d0c4 578 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_IV_CHARS);
b4df712a 579 return 0;
0f113f3e
MC
580 }
581 from++;
582 to[i / 2] |= v << (long)((!(i & 1)) * 4);
583 }
584
585 *fromp = from;
b4df712a 586 return 1;
0f113f3e 587}
d02b48c6 588
4b618848 589#ifndef OPENSSL_NO_STDIO
edf92f1c 590int PEM_write(FILE *fp, const char *name, const char *header,
0f113f3e
MC
591 const unsigned char *data, long len)
592{
593 BIO *b;
594 int ret;
595
596 if ((b = BIO_new(BIO_s_file())) == NULL) {
9311d0c4 597 ERR_raise(ERR_LIB_PEM, ERR_R_BUF_LIB);
b4df712a 598 return 0;
0f113f3e
MC
599 }
600 BIO_set_fp(b, fp, BIO_NOCLOSE);
601 ret = PEM_write_bio(b, name, header, data, len);
602 BIO_free(b);
b4df712a 603 return ret;
0f113f3e 604}
d02b48c6
RE
605#endif
606
edf92f1c 607int PEM_write_bio(BIO *bp, const char *name, const char *header,
0f113f3e
MC
608 const unsigned char *data, long len)
609{
610 int nlen, n, i, j, outl;
611 unsigned char *buf = NULL;
601ab315 612 EVP_ENCODE_CTX *ctx = EVP_ENCODE_CTX_new();
0f113f3e 613 int reason = ERR_R_BUF_LIB;
6714cb14 614 int retval = 0;
0f113f3e 615
601ab315
RL
616 if (ctx == NULL) {
617 reason = ERR_R_MALLOC_FAILURE;
618 goto err;
619 }
620
621 EVP_EncodeInit(ctx);
0f113f3e
MC
622 nlen = strlen(name);
623
624 if ((BIO_write(bp, "-----BEGIN ", 11) != 11) ||
625 (BIO_write(bp, name, nlen) != nlen) ||
626 (BIO_write(bp, "-----\n", 6) != 6))
627 goto err;
628
629 i = strlen(header);
630 if (i > 0) {
631 if ((BIO_write(bp, header, i) != i) || (BIO_write(bp, "\n", 1) != 1))
632 goto err;
633 }
634
635 buf = OPENSSL_malloc(PEM_BUFSIZE * 8);
636 if (buf == NULL) {
637 reason = ERR_R_MALLOC_FAILURE;
638 goto err;
639 }
640
641 i = j = 0;
642 while (len > 0) {
643 n = (int)((len > (PEM_BUFSIZE * 5)) ? (PEM_BUFSIZE * 5) : len);
cf3404fc
MC
644 if (!EVP_EncodeUpdate(ctx, buf, &outl, &(data[j]), n))
645 goto err;
0f113f3e
MC
646 if ((outl) && (BIO_write(bp, (char *)buf, outl) != outl))
647 goto err;
648 i += outl;
649 len -= n;
650 j += n;
651 }
601ab315 652 EVP_EncodeFinal(ctx, buf, &outl);
0f113f3e
MC
653 if ((outl > 0) && (BIO_write(bp, (char *)buf, outl) != outl))
654 goto err;
0f113f3e
MC
655 if ((BIO_write(bp, "-----END ", 9) != 9) ||
656 (BIO_write(bp, name, nlen) != nlen) ||
657 (BIO_write(bp, "-----\n", 6) != 6))
658 goto err;
6714cb14
RS
659 retval = i + outl;
660
0f113f3e 661 err:
6714cb14 662 if (retval == 0)
9311d0c4 663 ERR_raise(ERR_LIB_PEM, reason);
601ab315 664 EVP_ENCODE_CTX_free(ctx);
c9c56ee5 665 OPENSSL_clear_free(buf, PEM_BUFSIZE * 8);
6714cb14 666 return retval;
0f113f3e 667}
d02b48c6 668
4b618848 669#ifndef OPENSSL_NO_STDIO
6b691a5c 670int PEM_read(FILE *fp, char **name, char **header, unsigned char **data,
0f113f3e
MC
671 long *len)
672{
673 BIO *b;
674 int ret;
675
676 if ((b = BIO_new(BIO_s_file())) == NULL) {
9311d0c4 677 ERR_raise(ERR_LIB_PEM, ERR_R_BUF_LIB);
b4df712a 678 return 0;
0f113f3e
MC
679 }
680 BIO_set_fp(b, fp, BIO_NOCLOSE);
681 ret = PEM_read_bio(b, name, header, data, len);
682 BIO_free(b);
b4df712a 683 return ret;
0f113f3e 684}
d02b48c6
RE
685#endif
686
204afd81 687/* Some helpers for PEM_read_bio_ex(). */
7c43eb5d 688static int sanitize_line(char *linebuf, int len, unsigned int flags, int first_call)
0f113f3e 689{
204afd81 690 int i;
7c43eb5d
DB
691 if (first_call) {
692 /* Other BOMs imply unsupported multibyte encoding,
693 * so don't strip them and let the error raise */
694 const unsigned char utf8_bom[3] = {0xEF, 0xBB, 0xBF};
695
696 if (len > 3 && memcmp(linebuf, utf8_bom, 3) == 0) {
697 memmove(linebuf, linebuf + 3, len - 3);
698 linebuf[len - 3] = 0;
699 len -= 3;
700 }
701 }
0f113f3e 702
204afd81
BK
703 if (flags & PEM_FLAG_EAY_COMPATIBLE) {
704 /* Strip trailing whitespace */
705 while ((len >= 0) && (linebuf[len] <= ' '))
706 len--;
707 /* Go back to whitespace before applying uniform line ending. */
708 len++;
709 } else if (flags & PEM_FLAG_ONLY_B64) {
710 for (i = 0; i < len; ++i) {
a1df06b3
P
711 if (!ossl_isbase64(linebuf[i]) || linebuf[i] == '\n'
712 || linebuf[i] == '\r')
204afd81
BK
713 break;
714 }
715 len = i;
716 } else {
717 /* EVP_DecodeBlock strips leading and trailing whitespace, so just strip
718 * control characters in-place and let everything through. */
719 for (i = 0; i < len; ++i) {
720 if (linebuf[i] == '\n' || linebuf[i] == '\r')
721 break;
a1df06b3 722 if (ossl_iscntrl(linebuf[i]))
204afd81
BK
723 linebuf[i] = ' ';
724 }
725 len = i;
601ab315 726 }
204afd81
BK
727 /* The caller allocated LINESIZE+1, so this is safe. */
728 linebuf[len++] = '\n';
729 linebuf[len] = '\0';
730 return len;
731}
601ab315 732
204afd81
BK
733#define LINESIZE 255
734/* Note trailing spaces for begin and end. */
735static const char beginstr[] = "-----BEGIN ";
736static const char endstr[] = "-----END ";
737static const char tailstr[] = "-----\n";
b0143b97
BK
738#define BEGINLEN ((int)(sizeof(beginstr) - 1))
739#define ENDLEN ((int)(sizeof(endstr) - 1))
740#define TAILLEN ((int)(sizeof(tailstr) - 1))
204afd81
BK
741static int get_name(BIO *bp, char **name, unsigned int flags)
742{
743 char *linebuf;
744 int ret = 0;
b0143b97 745 int len;
7c43eb5d 746 int first_call = 1;
204afd81
BK
747
748 /*
749 * Need to hold trailing NUL (accounted for by BIO_gets() and the newline
750 * that will be added by sanitize_line() (the extra '1').
751 */
752 linebuf = pem_malloc(LINESIZE + 1, flags);
753 if (linebuf == NULL) {
9311d0c4 754 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
204afd81 755 return 0;
0f113f3e
MC
756 }
757
204afd81
BK
758 do {
759 len = BIO_gets(bp, linebuf, LINESIZE);
0f113f3e 760
204afd81 761 if (len <= 0) {
9311d0c4 762 ERR_raise(ERR_LIB_PEM, PEM_R_NO_START_LINE);
0f113f3e
MC
763 goto err;
764 }
765
204afd81 766 /* Strip trailing garbage and standardize ending. */
7c43eb5d
DB
767 len = sanitize_line(linebuf, len, flags & ~PEM_FLAG_ONLY_B64, first_call);
768 first_call = 0;
204afd81
BK
769
770 /* Allow leading empty or non-matching lines. */
771 } while (strncmp(linebuf, beginstr, BEGINLEN) != 0
772 || len < TAILLEN
773 || strncmp(linebuf + len - TAILLEN, tailstr, TAILLEN) != 0);
774 linebuf[len - TAILLEN] = '\0';
775 len = len - BEGINLEN - TAILLEN + 1;
776 *name = pem_malloc(len, flags);
777 if (*name == NULL) {
9311d0c4 778 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
204afd81
BK
779 goto err;
780 }
781 memcpy(*name, linebuf + BEGINLEN, len);
782 ret = 1;
783
784err:
2ca8bbe5 785 pem_free(linebuf, flags, LINESIZE + 1);
204afd81
BK
786 return ret;
787}
788
789/* Keep track of how much of a header we've seen. */
790enum header_status {
791 MAYBE_HEADER,
792 IN_HEADER,
793 POST_HEADER
794};
795
796/**
797 * Extract the optional PEM header, with details on the type of content and
798 * any encryption used on the contents, and the bulk of the data from the bio.
799 * The end of the header is marked by a blank line; if the end-of-input marker
800 * is reached prior to a blank line, there is no header.
801 *
802 * The header and data arguments are BIO** since we may have to swap them
803 * if there is no header, for efficiency.
804 *
805 * We need the name of the PEM-encoded type to verify the end string.
806 */
807static int get_header_and_data(BIO *bp, BIO **header, BIO **data, char *name,
808 unsigned int flags)
809{
810 BIO *tmp = *header;
811 char *linebuf, *p;
0324ffc5 812 int len, line, ret = 0, end = 0, prev_partial_line_read = 0, partial_line_read = 0;
204afd81
BK
813 /* 0 if not seen (yet), 1 if reading header, 2 if finished header */
814 enum header_status got_header = MAYBE_HEADER;
815 unsigned int flags_mask;
816 size_t namelen;
817
818 /* Need to hold trailing NUL (accounted for by BIO_gets() and the newline
819 * that will be added by sanitize_line() (the extra '1'). */
820 linebuf = pem_malloc(LINESIZE + 1, flags);
821 if (linebuf == NULL) {
9311d0c4 822 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
204afd81
BK
823 return 0;
824 }
0f113f3e 825
204afd81
BK
826 for (line = 0; ; line++) {
827 flags_mask = ~0u;
828 len = BIO_gets(bp, linebuf, LINESIZE);
829 if (len <= 0) {
9311d0c4 830 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_END_LINE);
204afd81
BK
831 goto err;
832 }
0f113f3e 833
0324ffc5
MB
834 /*
835 * Check if line has been read completely or if only part of the line
836 * has been read. Keep the previous value to ignore newlines that
837 * appear due to reading a line up until the char before the newline.
838 */
839 prev_partial_line_read = partial_line_read;
840 partial_line_read = len == LINESIZE-1 && linebuf[LINESIZE-2] != '\n';
841
204afd81
BK
842 if (got_header == MAYBE_HEADER) {
843 if (memchr(linebuf, ':', len) != NULL)
844 got_header = IN_HEADER;
845 }
846 if (!strncmp(linebuf, endstr, ENDLEN) || got_header == IN_HEADER)
847 flags_mask &= ~PEM_FLAG_ONLY_B64;
7c43eb5d 848 len = sanitize_line(linebuf, len, flags & flags_mask, 0);
204afd81
BK
849
850 /* Check for end of header. */
851 if (linebuf[0] == '\n') {
0324ffc5
MB
852 /*
853 * If previous line has been read only partially this newline is a
854 * regular newline at the end of a line and not an empty line.
855 */
856 if (!prev_partial_line_read) {
857 if (got_header == POST_HEADER) {
858 /* Another blank line is an error. */
9311d0c4 859 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_END_LINE);
0324ffc5
MB
860 goto err;
861 }
862 got_header = POST_HEADER;
863 tmp = *data;
0f113f3e 864 }
204afd81 865 continue;
0f113f3e 866 }
0f113f3e 867
204afd81
BK
868 /* Check for end of stream (which means there is no header). */
869 if (strncmp(linebuf, endstr, ENDLEN) == 0) {
870 p = linebuf + ENDLEN;
871 namelen = strlen(name);
872 if (strncmp(p, name, namelen) != 0 ||
873 strncmp(p + namelen, tailstr, TAILLEN) != 0) {
9311d0c4 874 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_END_LINE);
204afd81
BK
875 goto err;
876 }
877 if (got_header == MAYBE_HEADER) {
878 *header = *data;
879 *data = tmp;
880 }
0f113f3e 881 break;
204afd81
BK
882 } else if (end) {
883 /* Malformed input; short line not at end of data. */
9311d0c4 884 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_END_LINE);
0f113f3e
MC
885 goto err;
886 }
204afd81
BK
887 /*
888 * Else, a line of text -- could be header or data; we don't
889 * know yet. Just pass it through.
890 */
aa8dfbc4
BE
891 if (BIO_puts(tmp, linebuf) < 0)
892 goto err;
204afd81
BK
893 /*
894 * Only encrypted files need the line length check applied.
895 */
896 if (got_header == POST_HEADER) {
897 /* 65 includes the trailing newline */
898 if (len > 65)
899 goto err;
900 if (len < 65)
901 end = 1;
0f113f3e 902 }
0f113f3e 903 }
0f113f3e 904
204afd81
BK
905 ret = 1;
906err:
2ca8bbe5 907 pem_free(linebuf, flags, LINESIZE + 1);
204afd81
BK
908 return ret;
909}
0f113f3e 910
204afd81
BK
911/**
912 * Read in PEM-formatted data from the given BIO.
913 *
914 * By nature of the PEM format, all content must be printable ASCII (except
a7eeefea 915 * for line endings). Other characters are malformed input and will be rejected.
204afd81
BK
916 */
917int PEM_read_bio_ex(BIO *bp, char **name_out, char **header,
918 unsigned char **data, long *len_out, unsigned int flags)
919{
a07dc816 920 EVP_ENCODE_CTX *ctx = NULL;
204afd81
BK
921 const BIO_METHOD *bmeth;
922 BIO *headerB = NULL, *dataB = NULL;
923 char *name = NULL;
924 int len, taillen, headerlen, ret = 0;
925 BUF_MEM * buf_mem;
0f113f3e 926
204afd81
BK
927 *len_out = 0;
928 *name_out = *header = NULL;
929 *data = NULL;
930 if ((flags & PEM_FLAG_EAY_COMPATIBLE) && (flags & PEM_FLAG_ONLY_B64)) {
931 /* These two are mutually incompatible; bail out. */
9311d0c4 932 ERR_raise(ERR_LIB_PEM, ERR_R_PASSED_INVALID_ARGUMENT);
204afd81 933 goto end;
0f113f3e 934 }
204afd81
BK
935 bmeth = (flags & PEM_FLAG_SECURE) ? BIO_s_secmem() : BIO_s_mem();
936
937 headerB = BIO_new(bmeth);
938 dataB = BIO_new(bmeth);
939 if (headerB == NULL || dataB == NULL) {
9311d0c4 940 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
204afd81 941 goto end;
0f113f3e 942 }
0f113f3e 943
204afd81
BK
944 if (!get_name(bp, &name, flags))
945 goto end;
946 if (!get_header_and_data(bp, &headerB, &dataB, name, flags))
947 goto end;
948
204afd81
BK
949 BIO_get_mem_ptr(dataB, &buf_mem);
950 len = buf_mem->length;
a07dc816
MC
951
952 /* There was no data in the PEM file */
953 if (len == 0)
954 goto end;
955
956 ctx = EVP_ENCODE_CTX_new();
957 if (ctx == NULL) {
958 ERR_raise(ERR_LIB_PEM, ERR_R_MALLOC_FAILURE);
959 goto end;
960 }
961
962 EVP_DecodeInit(ctx);
204afd81
BK
963 if (EVP_DecodeUpdate(ctx, (unsigned char*)buf_mem->data, &len,
964 (unsigned char*)buf_mem->data, len) < 0
965 || EVP_DecodeFinal(ctx, (unsigned char*)&(buf_mem->data[len]),
966 &taillen) < 0) {
9311d0c4 967 ERR_raise(ERR_LIB_PEM, PEM_R_BAD_BASE64_DECODE);
204afd81
BK
968 goto end;
969 }
970 len += taillen;
971 buf_mem->length = len;
972
204afd81
BK
973 headerlen = BIO_get_mem_data(headerB, NULL);
974 *header = pem_malloc(headerlen + 1, flags);
975 *data = pem_malloc(len, flags);
976 if (*header == NULL || *data == NULL) {
2ca8bbe5
BE
977 pem_free(*header, flags, 0);
978 pem_free(*data, flags, 0);
204afd81
BK
979 goto end;
980 }
981 BIO_read(headerB, *header, headerlen);
982 (*header)[headerlen] = '\0';
983 BIO_read(dataB, *data, len);
984 *len_out = len;
985 *name_out = name;
986 name = NULL;
987 ret = 1;
988
989end:
601ab315 990 EVP_ENCODE_CTX_free(ctx);
2ca8bbe5 991 pem_free(name, flags, 0);
204afd81
BK
992 BIO_free(headerB);
993 BIO_free(dataB);
994 return ret;
995}
996
997int PEM_read_bio(BIO *bp, char **name, char **header, unsigned char **data,
998 long *len)
999{
1000 return PEM_read_bio_ex(bp, name, header, data, len, PEM_FLAG_EAY_COMPATIBLE);
0f113f3e
MC
1001}
1002
1003/*
1004 * Check pem string and return prefix length. If for example the pem_str ==
1005 * "RSA PRIVATE KEY" and suffix = "PRIVATE KEY" the return value is 3 for the
1006 * string "RSA".
d82e2718
DSH
1007 */
1008
b78c0166 1009int ossl_pem_check_suffix(const char *pem_str, const char *suffix)
0f113f3e
MC
1010{
1011 int pem_len = strlen(pem_str);
1012 int suffix_len = strlen(suffix);
1013 const char *p;
1014 if (suffix_len + 1 >= pem_len)
1015 return 0;
1016 p = pem_str + pem_len - suffix_len;
1017 if (strcmp(p, suffix))
1018 return 0;
1019 p--;
1020 if (*p != ' ')
1021 return 0;
1022 return p - pem_str;
1023}