blob: 76d83abf4882e8edae11de4c664be8cbb042c7a7 [file] [log] [blame]
Jaeden Ameroe54e6932018-08-06 16:19:58 +01001/*
2 * Public Key layer for parsing key files and structures
3 *
4 * Copyright (C) 2006-2015, ARM Limited, All Rights Reserved
5 * SPDX-License-Identifier: Apache-2.0
6 *
7 * Licensed under the Apache License, Version 2.0 (the "License"); you may
8 * not use this file except in compliance with the License.
9 * You may obtain a copy of the License at
10 *
11 * http://www.apache.org/licenses/LICENSE-2.0
12 *
13 * Unless required by applicable law or agreed to in writing, software
14 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
15 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16 * See the License for the specific language governing permissions and
17 * limitations under the License.
18 *
19 * This file is part of Mbed Crypto (https://tls.mbed.org)
20 */
21
22#if !defined(MBEDCRYPTO_CONFIG_FILE)
23#include "mbedcrypto/config.h"
24#else
25#include MBEDCRYPTO_CONFIG_FILE
26#endif
27
28#if defined(MBEDCRYPTO_PK_PARSE_C)
29
30#include "mbedcrypto/pk.h"
31#include "mbedcrypto/asn1.h"
32#include "mbedcrypto/oid.h"
33#include "mbedcrypto/platform_util.h"
34
35#include <string.h>
36
37#if defined(MBEDCRYPTO_RSA_C)
38#include "mbedcrypto/rsa.h"
39#endif
40#if defined(MBEDCRYPTO_ECP_C)
41#include "mbedcrypto/ecp.h"
42#endif
43#if defined(MBEDCRYPTO_ECDSA_C)
44#include "mbedcrypto/ecdsa.h"
45#endif
46#if defined(MBEDCRYPTO_PEM_PARSE_C)
47#include "mbedcrypto/pem.h"
48#endif
49#if defined(MBEDCRYPTO_PKCS5_C)
50#include "mbedcrypto/pkcs5.h"
51#endif
52#if defined(MBEDCRYPTO_PKCS12_C)
53#include "mbedcrypto/pkcs12.h"
54#endif
55
56#if defined(MBEDCRYPTO_PLATFORM_C)
57#include "mbedcrypto/platform.h"
58#else
59#include <stdlib.h>
60#define mbedcrypto_calloc calloc
61#define mbedcrypto_free free
62#endif
63
64#if defined(MBEDCRYPTO_FS_IO)
65/*
66 * Load all data from a file into a given buffer.
67 *
68 * The file is expected to contain either PEM or DER encoded data.
69 * A terminating null byte is always appended. It is included in the announced
70 * length only if the data looks like it is PEM encoded.
71 */
72int mbedcrypto_pk_load_file( const char *path, unsigned char **buf, size_t *n )
73{
74 FILE *f;
75 long size;
76
77 if( ( f = fopen( path, "rb" ) ) == NULL )
78 return( MBEDCRYPTO_ERR_PK_FILE_IO_ERROR );
79
80 fseek( f, 0, SEEK_END );
81 if( ( size = ftell( f ) ) == -1 )
82 {
83 fclose( f );
84 return( MBEDCRYPTO_ERR_PK_FILE_IO_ERROR );
85 }
86 fseek( f, 0, SEEK_SET );
87
88 *n = (size_t) size;
89
90 if( *n + 1 == 0 ||
91 ( *buf = mbedcrypto_calloc( 1, *n + 1 ) ) == NULL )
92 {
93 fclose( f );
94 return( MBEDCRYPTO_ERR_PK_ALLOC_FAILED );
95 }
96
97 if( fread( *buf, 1, *n, f ) != *n )
98 {
99 fclose( f );
100
101 mbedcrypto_platform_zeroize( *buf, *n );
102 mbedcrypto_free( *buf );
103
104 return( MBEDCRYPTO_ERR_PK_FILE_IO_ERROR );
105 }
106
107 fclose( f );
108
109 (*buf)[*n] = '\0';
110
111 if( strstr( (const char *) *buf, "-----BEGIN " ) != NULL )
112 ++*n;
113
114 return( 0 );
115}
116
117/*
118 * Load and parse a private key
119 */
120int mbedcrypto_pk_parse_keyfile( mbedcrypto_pk_context *ctx,
121 const char *path, const char *pwd )
122{
123 int ret;
124 size_t n;
125 unsigned char *buf;
126
127 if( ( ret = mbedcrypto_pk_load_file( path, &buf, &n ) ) != 0 )
128 return( ret );
129
130 if( pwd == NULL )
131 ret = mbedcrypto_pk_parse_key( ctx, buf, n, NULL, 0 );
132 else
133 ret = mbedcrypto_pk_parse_key( ctx, buf, n,
134 (const unsigned char *) pwd, strlen( pwd ) );
135
136 mbedcrypto_platform_zeroize( buf, n );
137 mbedcrypto_free( buf );
138
139 return( ret );
140}
141
142/*
143 * Load and parse a public key
144 */
145int mbedcrypto_pk_parse_public_keyfile( mbedcrypto_pk_context *ctx, const char *path )
146{
147 int ret;
148 size_t n;
149 unsigned char *buf;
150
151 if( ( ret = mbedcrypto_pk_load_file( path, &buf, &n ) ) != 0 )
152 return( ret );
153
154 ret = mbedcrypto_pk_parse_public_key( ctx, buf, n );
155
156 mbedcrypto_platform_zeroize( buf, n );
157 mbedcrypto_free( buf );
158
159 return( ret );
160}
161#endif /* MBEDCRYPTO_FS_IO */
162
163#if defined(MBEDCRYPTO_ECP_C)
164/* Minimally parse an ECParameters buffer to and mbedcrypto_asn1_buf
165 *
166 * ECParameters ::= CHOICE {
167 * namedCurve OBJECT IDENTIFIER
168 * specifiedCurve SpecifiedECDomain -- = SEQUENCE { ... }
169 * -- implicitCurve NULL
170 * }
171 */
172static int pk_get_ecparams( unsigned char **p, const unsigned char *end,
173 mbedcrypto_asn1_buf *params )
174{
175 int ret;
176
177 if ( end - *p < 1 )
178 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
179 MBEDCRYPTO_ERR_ASN1_OUT_OF_DATA );
180
181 /* Tag may be either OID or SEQUENCE */
182 params->tag = **p;
183 if( params->tag != MBEDCRYPTO_ASN1_OID
184#if defined(MBEDCRYPTO_PK_PARSE_EC_EXTENDED)
185 && params->tag != ( MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE )
186#endif
187 )
188 {
189 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
190 MBEDCRYPTO_ERR_ASN1_UNEXPECTED_TAG );
191 }
192
193 if( ( ret = mbedcrypto_asn1_get_tag( p, end, &params->len, params->tag ) ) != 0 )
194 {
195 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
196 }
197
198 params->p = *p;
199 *p += params->len;
200
201 if( *p != end )
202 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
203 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
204
205 return( 0 );
206}
207
208#if defined(MBEDCRYPTO_PK_PARSE_EC_EXTENDED)
209/*
210 * Parse a SpecifiedECDomain (SEC 1 C.2) and (mostly) fill the group with it.
211 * WARNING: the resulting group should only be used with
212 * pk_group_id_from_specified(), since its base point may not be set correctly
213 * if it was encoded compressed.
214 *
215 * SpecifiedECDomain ::= SEQUENCE {
216 * version SpecifiedECDomainVersion(ecdpVer1 | ecdpVer2 | ecdpVer3, ...),
217 * fieldID FieldID {{FieldTypes}},
218 * curve Curve,
219 * base ECPoint,
220 * order INTEGER,
221 * cofactor INTEGER OPTIONAL,
222 * hash HashAlgorithm OPTIONAL,
223 * ...
224 * }
225 *
226 * We only support prime-field as field type, and ignore hash and cofactor.
227 */
228static int pk_group_from_specified( const mbedcrypto_asn1_buf *params, mbedcrypto_ecp_group *grp )
229{
230 int ret;
231 unsigned char *p = params->p;
232 const unsigned char * const end = params->p + params->len;
233 const unsigned char *end_field, *end_curve;
234 size_t len;
235 int ver;
236
237 /* SpecifiedECDomainVersion ::= INTEGER { 1, 2, 3 } */
238 if( ( ret = mbedcrypto_asn1_get_int( &p, end, &ver ) ) != 0 )
239 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
240
241 if( ver < 1 || ver > 3 )
242 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
243
244 /*
245 * FieldID { FIELD-ID:IOSet } ::= SEQUENCE { -- Finite field
246 * fieldType FIELD-ID.&id({IOSet}),
247 * parameters FIELD-ID.&Type({IOSet}{@fieldType})
248 * }
249 */
250 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
251 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
252 return( ret );
253
254 end_field = p + len;
255
256 /*
257 * FIELD-ID ::= TYPE-IDENTIFIER
258 * FieldTypes FIELD-ID ::= {
259 * { Prime-p IDENTIFIED BY prime-field } |
260 * { Characteristic-two IDENTIFIED BY characteristic-two-field }
261 * }
262 * prime-field OBJECT IDENTIFIER ::= { id-fieldType 1 }
263 */
264 if( ( ret = mbedcrypto_asn1_get_tag( &p, end_field, &len, MBEDCRYPTO_ASN1_OID ) ) != 0 )
265 return( ret );
266
267 if( len != MBEDCRYPTO_OID_SIZE( MBEDCRYPTO_OID_ANSI_X9_62_PRIME_FIELD ) ||
268 memcmp( p, MBEDCRYPTO_OID_ANSI_X9_62_PRIME_FIELD, len ) != 0 )
269 {
270 return( MBEDCRYPTO_ERR_PK_FEATURE_UNAVAILABLE );
271 }
272
273 p += len;
274
275 /* Prime-p ::= INTEGER -- Field of size p. */
276 if( ( ret = mbedcrypto_asn1_get_mpi( &p, end_field, &grp->P ) ) != 0 )
277 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
278
279 grp->pbits = mbedcrypto_mpi_bitlen( &grp->P );
280
281 if( p != end_field )
282 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
283 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
284
285 /*
286 * Curve ::= SEQUENCE {
287 * a FieldElement,
288 * b FieldElement,
289 * seed BIT STRING OPTIONAL
290 * -- Shall be present if used in SpecifiedECDomain
291 * -- with version equal to ecdpVer2 or ecdpVer3
292 * }
293 */
294 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
295 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
296 return( ret );
297
298 end_curve = p + len;
299
300 /*
301 * FieldElement ::= OCTET STRING
302 * containing an integer in the case of a prime field
303 */
304 if( ( ret = mbedcrypto_asn1_get_tag( &p, end_curve, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 ||
305 ( ret = mbedcrypto_mpi_read_binary( &grp->A, p, len ) ) != 0 )
306 {
307 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
308 }
309
310 p += len;
311
312 if( ( ret = mbedcrypto_asn1_get_tag( &p, end_curve, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 ||
313 ( ret = mbedcrypto_mpi_read_binary( &grp->B, p, len ) ) != 0 )
314 {
315 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
316 }
317
318 p += len;
319
320 /* Ignore seed BIT STRING OPTIONAL */
321 if( ( ret = mbedcrypto_asn1_get_tag( &p, end_curve, &len, MBEDCRYPTO_ASN1_BIT_STRING ) ) == 0 )
322 p += len;
323
324 if( p != end_curve )
325 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
326 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
327
328 /*
329 * ECPoint ::= OCTET STRING
330 */
331 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 )
332 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
333
334 if( ( ret = mbedcrypto_ecp_point_read_binary( grp, &grp->G,
335 ( const unsigned char *) p, len ) ) != 0 )
336 {
337 /*
338 * If we can't read the point because it's compressed, cheat by
339 * reading only the X coordinate and the parity bit of Y.
340 */
341 if( ret != MBEDCRYPTO_ERR_ECP_FEATURE_UNAVAILABLE ||
342 ( p[0] != 0x02 && p[0] != 0x03 ) ||
343 len != mbedcrypto_mpi_size( &grp->P ) + 1 ||
344 mbedcrypto_mpi_read_binary( &grp->G.X, p + 1, len - 1 ) != 0 ||
345 mbedcrypto_mpi_lset( &grp->G.Y, p[0] - 2 ) != 0 ||
346 mbedcrypto_mpi_lset( &grp->G.Z, 1 ) != 0 )
347 {
348 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
349 }
350 }
351
352 p += len;
353
354 /*
355 * order INTEGER
356 */
357 if( ( ret = mbedcrypto_asn1_get_mpi( &p, end, &grp->N ) ) != 0 )
358 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
359
360 grp->nbits = mbedcrypto_mpi_bitlen( &grp->N );
361
362 /*
363 * Allow optional elements by purposefully not enforcing p == end here.
364 */
365
366 return( 0 );
367}
368
369/*
370 * Find the group id associated with an (almost filled) group as generated by
371 * pk_group_from_specified(), or return an error if unknown.
372 */
373static int pk_group_id_from_group( const mbedcrypto_ecp_group *grp, mbedcrypto_ecp_group_id *grp_id )
374{
375 int ret = 0;
376 mbedcrypto_ecp_group ref;
377 const mbedcrypto_ecp_group_id *id;
378
379 mbedcrypto_ecp_group_init( &ref );
380
381 for( id = mbedcrypto_ecp_grp_id_list(); *id != MBEDCRYPTO_ECP_DP_NONE; id++ )
382 {
383 /* Load the group associated to that id */
384 mbedcrypto_ecp_group_free( &ref );
385 MBEDCRYPTO_MPI_CHK( mbedcrypto_ecp_group_load( &ref, *id ) );
386
387 /* Compare to the group we were given, starting with easy tests */
388 if( grp->pbits == ref.pbits && grp->nbits == ref.nbits &&
389 mbedcrypto_mpi_cmp_mpi( &grp->P, &ref.P ) == 0 &&
390 mbedcrypto_mpi_cmp_mpi( &grp->A, &ref.A ) == 0 &&
391 mbedcrypto_mpi_cmp_mpi( &grp->B, &ref.B ) == 0 &&
392 mbedcrypto_mpi_cmp_mpi( &grp->N, &ref.N ) == 0 &&
393 mbedcrypto_mpi_cmp_mpi( &grp->G.X, &ref.G.X ) == 0 &&
394 mbedcrypto_mpi_cmp_mpi( &grp->G.Z, &ref.G.Z ) == 0 &&
395 /* For Y we may only know the parity bit, so compare only that */
396 mbedcrypto_mpi_get_bit( &grp->G.Y, 0 ) == mbedcrypto_mpi_get_bit( &ref.G.Y, 0 ) )
397 {
398 break;
399 }
400
401 }
402
403cleanup:
404 mbedcrypto_ecp_group_free( &ref );
405
406 *grp_id = *id;
407
408 if( ret == 0 && *id == MBEDCRYPTO_ECP_DP_NONE )
409 ret = MBEDCRYPTO_ERR_ECP_FEATURE_UNAVAILABLE;
410
411 return( ret );
412}
413
414/*
415 * Parse a SpecifiedECDomain (SEC 1 C.2) and find the associated group ID
416 */
417static int pk_group_id_from_specified( const mbedcrypto_asn1_buf *params,
418 mbedcrypto_ecp_group_id *grp_id )
419{
420 int ret;
421 mbedcrypto_ecp_group grp;
422
423 mbedcrypto_ecp_group_init( &grp );
424
425 if( ( ret = pk_group_from_specified( params, &grp ) ) != 0 )
426 goto cleanup;
427
428 ret = pk_group_id_from_group( &grp, grp_id );
429
430cleanup:
431 mbedcrypto_ecp_group_free( &grp );
432
433 return( ret );
434}
435#endif /* MBEDCRYPTO_PK_PARSE_EC_EXTENDED */
436
437/*
438 * Use EC parameters to initialise an EC group
439 *
440 * ECParameters ::= CHOICE {
441 * namedCurve OBJECT IDENTIFIER
442 * specifiedCurve SpecifiedECDomain -- = SEQUENCE { ... }
443 * -- implicitCurve NULL
444 */
445static int pk_use_ecparams( const mbedcrypto_asn1_buf *params, mbedcrypto_ecp_group *grp )
446{
447 int ret;
448 mbedcrypto_ecp_group_id grp_id;
449
450 if( params->tag == MBEDCRYPTO_ASN1_OID )
451 {
452 if( mbedcrypto_oid_get_ec_grp( params, &grp_id ) != 0 )
453 return( MBEDCRYPTO_ERR_PK_UNKNOWN_NAMED_CURVE );
454 }
455 else
456 {
457#if defined(MBEDCRYPTO_PK_PARSE_EC_EXTENDED)
458 if( ( ret = pk_group_id_from_specified( params, &grp_id ) ) != 0 )
459 return( ret );
460#else
461 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
462#endif
463 }
464
465 /*
466 * grp may already be initilialized; if so, make sure IDs match
467 */
468 if( grp->id != MBEDCRYPTO_ECP_DP_NONE && grp->id != grp_id )
469 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
470
471 if( ( ret = mbedcrypto_ecp_group_load( grp, grp_id ) ) != 0 )
472 return( ret );
473
474 return( 0 );
475}
476
477/*
478 * EC public key is an EC point
479 *
480 * The caller is responsible for clearing the structure upon failure if
481 * desired. Take care to pass along the possible ECP_FEATURE_UNAVAILABLE
482 * return code of mbedcrypto_ecp_point_read_binary() and leave p in a usable state.
483 */
484static int pk_get_ecpubkey( unsigned char **p, const unsigned char *end,
485 mbedcrypto_ecp_keypair *key )
486{
487 int ret;
488
489 if( ( ret = mbedcrypto_ecp_point_read_binary( &key->grp, &key->Q,
490 (const unsigned char *) *p, end - *p ) ) == 0 )
491 {
492 ret = mbedcrypto_ecp_check_pubkey( &key->grp, &key->Q );
493 }
494
495 /*
496 * We know mbedcrypto_ecp_point_read_binary consumed all bytes or failed
497 */
498 *p = (unsigned char *) end;
499
500 return( ret );
501}
502#endif /* MBEDCRYPTO_ECP_C */
503
504#if defined(MBEDCRYPTO_RSA_C)
505/*
506 * RSAPublicKey ::= SEQUENCE {
507 * modulus INTEGER, -- n
508 * publicExponent INTEGER -- e
509 * }
510 */
511static int pk_get_rsapubkey( unsigned char **p,
512 const unsigned char *end,
513 mbedcrypto_rsa_context *rsa )
514{
515 int ret;
516 size_t len;
517
518 if( ( ret = mbedcrypto_asn1_get_tag( p, end, &len,
519 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
520 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY + ret );
521
522 if( *p + len != end )
523 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY +
524 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
525
526 /* Import N */
527 if( ( ret = mbedcrypto_asn1_get_tag( p, end, &len, MBEDCRYPTO_ASN1_INTEGER ) ) != 0 )
528 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY + ret );
529
530 if( ( ret = mbedcrypto_rsa_import_raw( rsa, *p, len, NULL, 0, NULL, 0,
531 NULL, 0, NULL, 0 ) ) != 0 )
532 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY );
533
534 *p += len;
535
536 /* Import E */
537 if( ( ret = mbedcrypto_asn1_get_tag( p, end, &len, MBEDCRYPTO_ASN1_INTEGER ) ) != 0 )
538 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY + ret );
539
540 if( ( ret = mbedcrypto_rsa_import_raw( rsa, NULL, 0, NULL, 0, NULL, 0,
541 NULL, 0, *p, len ) ) != 0 )
542 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY );
543
544 *p += len;
545
546 if( mbedcrypto_rsa_complete( rsa ) != 0 ||
547 mbedcrypto_rsa_check_pubkey( rsa ) != 0 )
548 {
549 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY );
550 }
551
552 if( *p != end )
553 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY +
554 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
555
556 return( 0 );
557}
558#endif /* MBEDCRYPTO_RSA_C */
559
560/* Get a PK algorithm identifier
561 *
562 * AlgorithmIdentifier ::= SEQUENCE {
563 * algorithm OBJECT IDENTIFIER,
564 * parameters ANY DEFINED BY algorithm OPTIONAL }
565 */
566static int pk_get_pk_alg( unsigned char **p,
567 const unsigned char *end,
568 mbedcrypto_pk_type_t *pk_alg, mbedcrypto_asn1_buf *params )
569{
570 int ret;
571 mbedcrypto_asn1_buf alg_oid;
572
573 memset( params, 0, sizeof(mbedcrypto_asn1_buf) );
574
575 if( ( ret = mbedcrypto_asn1_get_alg( p, end, &alg_oid, params ) ) != 0 )
576 return( MBEDCRYPTO_ERR_PK_INVALID_ALG + ret );
577
578 if( mbedcrypto_oid_get_pk_alg( &alg_oid, pk_alg ) != 0 )
579 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
580
581 /*
582 * No parameters with RSA (only for EC)
583 */
584 if( *pk_alg == MBEDCRYPTO_PK_RSA &&
585 ( ( params->tag != MBEDCRYPTO_ASN1_NULL && params->tag != 0 ) ||
586 params->len != 0 ) )
587 {
588 return( MBEDCRYPTO_ERR_PK_INVALID_ALG );
589 }
590
591 return( 0 );
592}
593
594/*
595 * SubjectPublicKeyInfo ::= SEQUENCE {
596 * algorithm AlgorithmIdentifier,
597 * subjectPublicKey BIT STRING }
598 */
599int mbedcrypto_pk_parse_subpubkey( unsigned char **p, const unsigned char *end,
600 mbedcrypto_pk_context *pk )
601{
602 int ret;
603 size_t len;
604 mbedcrypto_asn1_buf alg_params;
605 mbedcrypto_pk_type_t pk_alg = MBEDCRYPTO_PK_NONE;
606 const mbedcrypto_pk_info_t *pk_info;
607
608 if( ( ret = mbedcrypto_asn1_get_tag( p, end, &len,
609 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
610 {
611 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
612 }
613
614 end = *p + len;
615
616 if( ( ret = pk_get_pk_alg( p, end, &pk_alg, &alg_params ) ) != 0 )
617 return( ret );
618
619 if( ( ret = mbedcrypto_asn1_get_bitstring_null( p, end, &len ) ) != 0 )
620 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY + ret );
621
622 if( *p + len != end )
623 return( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY +
624 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
625
626 if( ( pk_info = mbedcrypto_pk_info_from_type( pk_alg ) ) == NULL )
627 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
628
629 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 )
630 return( ret );
631
632#if defined(MBEDCRYPTO_RSA_C)
633 if( pk_alg == MBEDCRYPTO_PK_RSA )
634 {
635 ret = pk_get_rsapubkey( p, end, mbedcrypto_pk_rsa( *pk ) );
636 } else
637#endif /* MBEDCRYPTO_RSA_C */
638#if defined(MBEDCRYPTO_ECP_C)
639 if( pk_alg == MBEDCRYPTO_PK_ECKEY_DH || pk_alg == MBEDCRYPTO_PK_ECKEY )
640 {
641 ret = pk_use_ecparams( &alg_params, &mbedcrypto_pk_ec( *pk )->grp );
642 if( ret == 0 )
643 ret = pk_get_ecpubkey( p, end, mbedcrypto_pk_ec( *pk ) );
644 } else
645#endif /* MBEDCRYPTO_ECP_C */
646 ret = MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG;
647
648 if( ret == 0 && *p != end )
649 ret = MBEDCRYPTO_ERR_PK_INVALID_PUBKEY
650 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH;
651
652 if( ret != 0 )
653 mbedcrypto_pk_free( pk );
654
655 return( ret );
656}
657
658#if defined(MBEDCRYPTO_RSA_C)
659/*
660 * Parse a PKCS#1 encoded private RSA key
661 */
662static int pk_parse_key_pkcs1_der( mbedcrypto_rsa_context *rsa,
663 const unsigned char *key,
664 size_t keylen )
665{
666 int ret, version;
667 size_t len;
668 unsigned char *p, *end;
669
670 mbedcrypto_mpi T;
671 mbedcrypto_mpi_init( &T );
672
673 p = (unsigned char *) key;
674 end = p + keylen;
675
676 /*
677 * This function parses the RSAPrivateKey (PKCS#1)
678 *
679 * RSAPrivateKey ::= SEQUENCE {
680 * version Version,
681 * modulus INTEGER, -- n
682 * publicExponent INTEGER, -- e
683 * privateExponent INTEGER, -- d
684 * prime1 INTEGER, -- p
685 * prime2 INTEGER, -- q
686 * exponent1 INTEGER, -- d mod (p-1)
687 * exponent2 INTEGER, -- d mod (q-1)
688 * coefficient INTEGER, -- (inverse of q) mod p
689 * otherPrimeInfos OtherPrimeInfos OPTIONAL
690 * }
691 */
692 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
693 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
694 {
695 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
696 }
697
698 end = p + len;
699
700 if( ( ret = mbedcrypto_asn1_get_int( &p, end, &version ) ) != 0 )
701 {
702 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
703 }
704
705 if( version != 0 )
706 {
707 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_VERSION );
708 }
709
710 /* Import N */
711 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
712 MBEDCRYPTO_ASN1_INTEGER ) ) != 0 ||
713 ( ret = mbedcrypto_rsa_import_raw( rsa, p, len, NULL, 0, NULL, 0,
714 NULL, 0, NULL, 0 ) ) != 0 )
715 goto cleanup;
716 p += len;
717
718 /* Import E */
719 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
720 MBEDCRYPTO_ASN1_INTEGER ) ) != 0 ||
721 ( ret = mbedcrypto_rsa_import_raw( rsa, NULL, 0, NULL, 0, NULL, 0,
722 NULL, 0, p, len ) ) != 0 )
723 goto cleanup;
724 p += len;
725
726 /* Import D */
727 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
728 MBEDCRYPTO_ASN1_INTEGER ) ) != 0 ||
729 ( ret = mbedcrypto_rsa_import_raw( rsa, NULL, 0, NULL, 0, NULL, 0,
730 p, len, NULL, 0 ) ) != 0 )
731 goto cleanup;
732 p += len;
733
734 /* Import P */
735 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
736 MBEDCRYPTO_ASN1_INTEGER ) ) != 0 ||
737 ( ret = mbedcrypto_rsa_import_raw( rsa, NULL, 0, p, len, NULL, 0,
738 NULL, 0, NULL, 0 ) ) != 0 )
739 goto cleanup;
740 p += len;
741
742 /* Import Q */
743 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
744 MBEDCRYPTO_ASN1_INTEGER ) ) != 0 ||
745 ( ret = mbedcrypto_rsa_import_raw( rsa, NULL, 0, NULL, 0, p, len,
746 NULL, 0, NULL, 0 ) ) != 0 )
747 goto cleanup;
748 p += len;
749
750 /* Complete the RSA private key */
751 if( ( ret = mbedcrypto_rsa_complete( rsa ) ) != 0 )
752 goto cleanup;
753
754 /* Check optional parameters */
755 if( ( ret = mbedcrypto_asn1_get_mpi( &p, end, &T ) ) != 0 ||
756 ( ret = mbedcrypto_asn1_get_mpi( &p, end, &T ) ) != 0 ||
757 ( ret = mbedcrypto_asn1_get_mpi( &p, end, &T ) ) != 0 )
758 goto cleanup;
759
760 if( p != end )
761 {
762 ret = MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
763 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH ;
764 }
765
766cleanup:
767
768 mbedcrypto_mpi_free( &T );
769
770 if( ret != 0 )
771 {
772 /* Wrap error code if it's coming from a lower level */
773 if( ( ret & 0xff80 ) == 0 )
774 ret = MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret;
775 else
776 ret = MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT;
777
778 mbedcrypto_rsa_free( rsa );
779 }
780
781 return( ret );
782}
783#endif /* MBEDCRYPTO_RSA_C */
784
785#if defined(MBEDCRYPTO_ECP_C)
786/*
787 * Parse a SEC1 encoded private EC key
788 */
789static int pk_parse_key_sec1_der( mbedcrypto_ecp_keypair *eck,
790 const unsigned char *key,
791 size_t keylen )
792{
793 int ret;
794 int version, pubkey_done;
795 size_t len;
796 mbedcrypto_asn1_buf params;
797 unsigned char *p = (unsigned char *) key;
798 unsigned char *end = p + keylen;
799 unsigned char *end2;
800
801 /*
802 * RFC 5915, or SEC1 Appendix C.4
803 *
804 * ECPrivateKey ::= SEQUENCE {
805 * version INTEGER { ecPrivkeyVer1(1) } (ecPrivkeyVer1),
806 * privateKey OCTET STRING,
807 * parameters [0] ECParameters {{ NamedCurve }} OPTIONAL,
808 * publicKey [1] BIT STRING OPTIONAL
809 * }
810 */
811 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
812 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
813 {
814 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
815 }
816
817 end = p + len;
818
819 if( ( ret = mbedcrypto_asn1_get_int( &p, end, &version ) ) != 0 )
820 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
821
822 if( version != 1 )
823 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_VERSION );
824
825 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 )
826 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
827
828 if( ( ret = mbedcrypto_mpi_read_binary( &eck->d, p, len ) ) != 0 )
829 {
830 mbedcrypto_ecp_keypair_free( eck );
831 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
832 }
833
834 p += len;
835
836 pubkey_done = 0;
837 if( p != end )
838 {
839 /*
840 * Is 'parameters' present?
841 */
842 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
843 MBEDCRYPTO_ASN1_CONTEXT_SPECIFIC | MBEDCRYPTO_ASN1_CONSTRUCTED | 0 ) ) == 0 )
844 {
845 if( ( ret = pk_get_ecparams( &p, p + len, &params) ) != 0 ||
846 ( ret = pk_use_ecparams( &params, &eck->grp ) ) != 0 )
847 {
848 mbedcrypto_ecp_keypair_free( eck );
849 return( ret );
850 }
851 }
852 else if( ret != MBEDCRYPTO_ERR_ASN1_UNEXPECTED_TAG )
853 {
854 mbedcrypto_ecp_keypair_free( eck );
855 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
856 }
857 }
858
859 if( p != end )
860 {
861 /*
862 * Is 'publickey' present? If not, or if we can't read it (eg because it
863 * is compressed), create it from the private key.
864 */
865 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
866 MBEDCRYPTO_ASN1_CONTEXT_SPECIFIC | MBEDCRYPTO_ASN1_CONSTRUCTED | 1 ) ) == 0 )
867 {
868 end2 = p + len;
869
870 if( ( ret = mbedcrypto_asn1_get_bitstring_null( &p, end2, &len ) ) != 0 )
871 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
872
873 if( p + len != end2 )
874 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
875 MBEDCRYPTO_ERR_ASN1_LENGTH_MISMATCH );
876
877 if( ( ret = pk_get_ecpubkey( &p, end2, eck ) ) == 0 )
878 pubkey_done = 1;
879 else
880 {
881 /*
882 * The only acceptable failure mode of pk_get_ecpubkey() above
883 * is if the point format is not recognized.
884 */
885 if( ret != MBEDCRYPTO_ERR_ECP_FEATURE_UNAVAILABLE )
886 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
887 }
888 }
889 else if( ret != MBEDCRYPTO_ERR_ASN1_UNEXPECTED_TAG )
890 {
891 mbedcrypto_ecp_keypair_free( eck );
892 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
893 }
894 }
895
896 if( ! pubkey_done &&
897 ( ret = mbedcrypto_ecp_mul( &eck->grp, &eck->Q, &eck->d, &eck->grp.G,
898 NULL, NULL ) ) != 0 )
899 {
900 mbedcrypto_ecp_keypair_free( eck );
901 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
902 }
903
904 if( ( ret = mbedcrypto_ecp_check_privkey( &eck->grp, &eck->d ) ) != 0 )
905 {
906 mbedcrypto_ecp_keypair_free( eck );
907 return( ret );
908 }
909
910 return( 0 );
911}
912#endif /* MBEDCRYPTO_ECP_C */
913
914/*
915 * Parse an unencrypted PKCS#8 encoded private key
916 *
917 * Notes:
918 *
919 * - This function does not own the key buffer. It is the
920 * responsibility of the caller to take care of zeroizing
921 * and freeing it after use.
922 *
923 * - The function is responsible for freeing the provided
924 * PK context on failure.
925 *
926 */
927static int pk_parse_key_pkcs8_unencrypted_der(
928 mbedcrypto_pk_context *pk,
929 const unsigned char* key,
930 size_t keylen )
931{
932 int ret, version;
933 size_t len;
934 mbedcrypto_asn1_buf params;
935 unsigned char *p = (unsigned char *) key;
936 unsigned char *end = p + keylen;
937 mbedcrypto_pk_type_t pk_alg = MBEDCRYPTO_PK_NONE;
938 const mbedcrypto_pk_info_t *pk_info;
939
940 /*
941 * This function parses the PrivateKeyInfo object (PKCS#8 v1.2 = RFC 5208)
942 *
943 * PrivateKeyInfo ::= SEQUENCE {
944 * version Version,
945 * privateKeyAlgorithm PrivateKeyAlgorithmIdentifier,
946 * privateKey PrivateKey,
947 * attributes [0] IMPLICIT Attributes OPTIONAL }
948 *
949 * Version ::= INTEGER
950 * PrivateKeyAlgorithmIdentifier ::= AlgorithmIdentifier
951 * PrivateKey ::= OCTET STRING
952 *
953 * The PrivateKey OCTET STRING is a SEC1 ECPrivateKey
954 */
955
956 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
957 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
958 {
959 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
960 }
961
962 end = p + len;
963
964 if( ( ret = mbedcrypto_asn1_get_int( &p, end, &version ) ) != 0 )
965 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
966
967 if( version != 0 )
968 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_VERSION + ret );
969
970 if( ( ret = pk_get_pk_alg( &p, end, &pk_alg, &params ) ) != 0 )
971 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
972
973 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 )
974 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
975
976 if( len < 1 )
977 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT +
978 MBEDCRYPTO_ERR_ASN1_OUT_OF_DATA );
979
980 if( ( pk_info = mbedcrypto_pk_info_from_type( pk_alg ) ) == NULL )
981 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
982
983 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 )
984 return( ret );
985
986#if defined(MBEDCRYPTO_RSA_C)
987 if( pk_alg == MBEDCRYPTO_PK_RSA )
988 {
989 if( ( ret = pk_parse_key_pkcs1_der( mbedcrypto_pk_rsa( *pk ), p, len ) ) != 0 )
990 {
991 mbedcrypto_pk_free( pk );
992 return( ret );
993 }
994 } else
995#endif /* MBEDCRYPTO_RSA_C */
996#if defined(MBEDCRYPTO_ECP_C)
997 if( pk_alg == MBEDCRYPTO_PK_ECKEY || pk_alg == MBEDCRYPTO_PK_ECKEY_DH )
998 {
999 if( ( ret = pk_use_ecparams( &params, &mbedcrypto_pk_ec( *pk )->grp ) ) != 0 ||
1000 ( ret = pk_parse_key_sec1_der( mbedcrypto_pk_ec( *pk ), p, len ) ) != 0 )
1001 {
1002 mbedcrypto_pk_free( pk );
1003 return( ret );
1004 }
1005 } else
1006#endif /* MBEDCRYPTO_ECP_C */
1007 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
1008
1009 return( 0 );
1010}
1011
1012/*
1013 * Parse an encrypted PKCS#8 encoded private key
1014 *
1015 * To save space, the decryption happens in-place on the given key buffer.
1016 * Also, while this function may modify the keybuffer, it doesn't own it,
1017 * and instead it is the responsibility of the caller to zeroize and properly
1018 * free it after use.
1019 *
1020 */
1021#if defined(MBEDCRYPTO_PKCS12_C) || defined(MBEDCRYPTO_PKCS5_C)
1022static int pk_parse_key_pkcs8_encrypted_der(
1023 mbedcrypto_pk_context *pk,
1024 unsigned char *key, size_t keylen,
1025 const unsigned char *pwd, size_t pwdlen )
1026{
1027 int ret, decrypted = 0;
1028 size_t len;
1029 unsigned char *buf;
1030 unsigned char *p, *end;
1031 mbedcrypto_asn1_buf pbe_alg_oid, pbe_params;
1032#if defined(MBEDCRYPTO_PKCS12_C)
1033 mbedcrypto_cipher_type_t cipher_alg;
1034 mbedcrypto_md_type_t md_alg;
1035#endif
1036
1037 p = key;
1038 end = p + keylen;
1039
1040 if( pwdlen == 0 )
1041 return( MBEDCRYPTO_ERR_PK_PASSWORD_REQUIRED );
1042
1043 /*
1044 * This function parses the EncryptedPrivateKeyInfo object (PKCS#8)
1045 *
1046 * EncryptedPrivateKeyInfo ::= SEQUENCE {
1047 * encryptionAlgorithm EncryptionAlgorithmIdentifier,
1048 * encryptedData EncryptedData
1049 * }
1050 *
1051 * EncryptionAlgorithmIdentifier ::= AlgorithmIdentifier
1052 *
1053 * EncryptedData ::= OCTET STRING
1054 *
1055 * The EncryptedData OCTET STRING is a PKCS#8 PrivateKeyInfo
1056 *
1057 */
1058 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len,
1059 MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) ) != 0 )
1060 {
1061 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
1062 }
1063
1064 end = p + len;
1065
1066 if( ( ret = mbedcrypto_asn1_get_alg( &p, end, &pbe_alg_oid, &pbe_params ) ) != 0 )
1067 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
1068
1069 if( ( ret = mbedcrypto_asn1_get_tag( &p, end, &len, MBEDCRYPTO_ASN1_OCTET_STRING ) ) != 0 )
1070 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT + ret );
1071
1072 buf = p;
1073
1074 /*
1075 * Decrypt EncryptedData with appropriate PBE
1076 */
1077#if defined(MBEDCRYPTO_PKCS12_C)
1078 if( mbedcrypto_oid_get_pkcs12_pbe_alg( &pbe_alg_oid, &md_alg, &cipher_alg ) == 0 )
1079 {
1080 if( ( ret = mbedcrypto_pkcs12_pbe( &pbe_params, MBEDCRYPTO_PKCS12_PBE_DECRYPT,
1081 cipher_alg, md_alg,
1082 pwd, pwdlen, p, len, buf ) ) != 0 )
1083 {
1084 if( ret == MBEDCRYPTO_ERR_PKCS12_PASSWORD_MISMATCH )
1085 return( MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH );
1086
1087 return( ret );
1088 }
1089
1090 decrypted = 1;
1091 }
1092 else if( MBEDCRYPTO_OID_CMP( MBEDCRYPTO_OID_PKCS12_PBE_SHA1_RC4_128, &pbe_alg_oid ) == 0 )
1093 {
1094 if( ( ret = mbedcrypto_pkcs12_pbe_sha1_rc4_128( &pbe_params,
1095 MBEDCRYPTO_PKCS12_PBE_DECRYPT,
1096 pwd, pwdlen,
1097 p, len, buf ) ) != 0 )
1098 {
1099 return( ret );
1100 }
1101
1102 // Best guess for password mismatch when using RC4. If first tag is
1103 // not MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE
1104 //
1105 if( *buf != ( MBEDCRYPTO_ASN1_CONSTRUCTED | MBEDCRYPTO_ASN1_SEQUENCE ) )
1106 return( MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH );
1107
1108 decrypted = 1;
1109 }
1110 else
1111#endif /* MBEDCRYPTO_PKCS12_C */
1112#if defined(MBEDCRYPTO_PKCS5_C)
1113 if( MBEDCRYPTO_OID_CMP( MBEDCRYPTO_OID_PKCS5_PBES2, &pbe_alg_oid ) == 0 )
1114 {
1115 if( ( ret = mbedcrypto_pkcs5_pbes2( &pbe_params, MBEDCRYPTO_PKCS5_DECRYPT, pwd, pwdlen,
1116 p, len, buf ) ) != 0 )
1117 {
1118 if( ret == MBEDCRYPTO_ERR_PKCS5_PASSWORD_MISMATCH )
1119 return( MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH );
1120
1121 return( ret );
1122 }
1123
1124 decrypted = 1;
1125 }
1126 else
1127#endif /* MBEDCRYPTO_PKCS5_C */
1128 {
1129 ((void) pwd);
1130 }
1131
1132 if( decrypted == 0 )
1133 return( MBEDCRYPTO_ERR_PK_FEATURE_UNAVAILABLE );
1134
1135 return( pk_parse_key_pkcs8_unencrypted_der( pk, buf, len ) );
1136}
1137#endif /* MBEDCRYPTO_PKCS12_C || MBEDCRYPTO_PKCS5_C */
1138
1139/*
1140 * Parse a private key
1141 */
1142int mbedcrypto_pk_parse_key( mbedcrypto_pk_context *pk,
1143 const unsigned char *key, size_t keylen,
1144 const unsigned char *pwd, size_t pwdlen )
1145{
1146 int ret;
1147 const mbedcrypto_pk_info_t *pk_info;
1148
1149#if defined(MBEDCRYPTO_PEM_PARSE_C)
1150 size_t len;
1151 mbedcrypto_pem_context pem;
1152
1153 mbedcrypto_pem_init( &pem );
1154
1155#if defined(MBEDCRYPTO_RSA_C)
1156 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1157 if( keylen == 0 || key[keylen - 1] != '\0' )
1158 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1159 else
1160 ret = mbedcrypto_pem_read_buffer( &pem,
1161 "-----BEGIN RSA PRIVATE KEY-----",
1162 "-----END RSA PRIVATE KEY-----",
1163 key, pwd, pwdlen, &len );
1164
1165 if( ret == 0 )
1166 {
1167 pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_RSA );
1168 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 ||
1169 ( ret = pk_parse_key_pkcs1_der( mbedcrypto_pk_rsa( *pk ),
1170 pem.buf, pem.buflen ) ) != 0 )
1171 {
1172 mbedcrypto_pk_free( pk );
1173 }
1174
1175 mbedcrypto_pem_free( &pem );
1176 return( ret );
1177 }
1178 else if( ret == MBEDCRYPTO_ERR_PEM_PASSWORD_MISMATCH )
1179 return( MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH );
1180 else if( ret == MBEDCRYPTO_ERR_PEM_PASSWORD_REQUIRED )
1181 return( MBEDCRYPTO_ERR_PK_PASSWORD_REQUIRED );
1182 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1183 return( ret );
1184#endif /* MBEDCRYPTO_RSA_C */
1185
1186#if defined(MBEDCRYPTO_ECP_C)
1187 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1188 if( keylen == 0 || key[keylen - 1] != '\0' )
1189 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1190 else
1191 ret = mbedcrypto_pem_read_buffer( &pem,
1192 "-----BEGIN EC PRIVATE KEY-----",
1193 "-----END EC PRIVATE KEY-----",
1194 key, pwd, pwdlen, &len );
1195 if( ret == 0 )
1196 {
1197 pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_ECKEY );
1198
1199 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 ||
1200 ( ret = pk_parse_key_sec1_der( mbedcrypto_pk_ec( *pk ),
1201 pem.buf, pem.buflen ) ) != 0 )
1202 {
1203 mbedcrypto_pk_free( pk );
1204 }
1205
1206 mbedcrypto_pem_free( &pem );
1207 return( ret );
1208 }
1209 else if( ret == MBEDCRYPTO_ERR_PEM_PASSWORD_MISMATCH )
1210 return( MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH );
1211 else if( ret == MBEDCRYPTO_ERR_PEM_PASSWORD_REQUIRED )
1212 return( MBEDCRYPTO_ERR_PK_PASSWORD_REQUIRED );
1213 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1214 return( ret );
1215#endif /* MBEDCRYPTO_ECP_C */
1216
1217 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1218 if( keylen == 0 || key[keylen - 1] != '\0' )
1219 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1220 else
1221 ret = mbedcrypto_pem_read_buffer( &pem,
1222 "-----BEGIN PRIVATE KEY-----",
1223 "-----END PRIVATE KEY-----",
1224 key, NULL, 0, &len );
1225 if( ret == 0 )
1226 {
1227 if( ( ret = pk_parse_key_pkcs8_unencrypted_der( pk,
1228 pem.buf, pem.buflen ) ) != 0 )
1229 {
1230 mbedcrypto_pk_free( pk );
1231 }
1232
1233 mbedcrypto_pem_free( &pem );
1234 return( ret );
1235 }
1236 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1237 return( ret );
1238
1239#if defined(MBEDCRYPTO_PKCS12_C) || defined(MBEDCRYPTO_PKCS5_C)
1240 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1241 if( keylen == 0 || key[keylen - 1] != '\0' )
1242 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1243 else
1244 ret = mbedcrypto_pem_read_buffer( &pem,
1245 "-----BEGIN ENCRYPTED PRIVATE KEY-----",
1246 "-----END ENCRYPTED PRIVATE KEY-----",
1247 key, NULL, 0, &len );
1248 if( ret == 0 )
1249 {
1250 if( ( ret = pk_parse_key_pkcs8_encrypted_der( pk,
1251 pem.buf, pem.buflen,
1252 pwd, pwdlen ) ) != 0 )
1253 {
1254 mbedcrypto_pk_free( pk );
1255 }
1256
1257 mbedcrypto_pem_free( &pem );
1258 return( ret );
1259 }
1260 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1261 return( ret );
1262#endif /* MBEDCRYPTO_PKCS12_C || MBEDCRYPTO_PKCS5_C */
1263#else
1264 ((void) ret);
1265 ((void) pwd);
1266 ((void) pwdlen);
1267#endif /* MBEDCRYPTO_PEM_PARSE_C */
1268
1269 /*
1270 * At this point we only know it's not a PEM formatted key. Could be any
1271 * of the known DER encoded private key formats
1272 *
1273 * We try the different DER format parsers to see if one passes without
1274 * error
1275 */
1276#if defined(MBEDCRYPTO_PKCS12_C) || defined(MBEDCRYPTO_PKCS5_C)
1277 {
1278 unsigned char *key_copy;
1279
1280 if( keylen == 0 )
1281 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
1282
1283 if( ( key_copy = mbedcrypto_calloc( 1, keylen ) ) == NULL )
1284 return( MBEDCRYPTO_ERR_PK_ALLOC_FAILED );
1285
1286 memcpy( key_copy, key, keylen );
1287
1288 ret = pk_parse_key_pkcs8_encrypted_der( pk, key_copy, keylen,
1289 pwd, pwdlen );
1290
1291 mbedcrypto_platform_zeroize( key_copy, keylen );
1292 mbedcrypto_free( key_copy );
1293 }
1294
1295 if( ret == 0 )
1296 return( 0 );
1297
1298 mbedcrypto_pk_free( pk );
1299
1300 if( ret == MBEDCRYPTO_ERR_PK_PASSWORD_MISMATCH )
1301 {
1302 return( ret );
1303 }
1304#endif /* MBEDCRYPTO_PKCS12_C || MBEDCRYPTO_PKCS5_C */
1305
1306 if( ( ret = pk_parse_key_pkcs8_unencrypted_der( pk, key, keylen ) ) == 0 )
1307 return( 0 );
1308
1309 mbedcrypto_pk_free( pk );
1310
1311#if defined(MBEDCRYPTO_RSA_C)
1312
1313 pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_RSA );
1314 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 ||
1315 ( ret = pk_parse_key_pkcs1_der( mbedcrypto_pk_rsa( *pk ),
1316 key, keylen ) ) != 0 )
1317 {
1318 mbedcrypto_pk_free( pk );
1319 }
1320 else
1321 {
1322 return( 0 );
1323 }
1324
1325#endif /* MBEDCRYPTO_RSA_C */
1326
1327#if defined(MBEDCRYPTO_ECP_C)
1328
1329 pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_ECKEY );
1330 if( ( ret = mbedcrypto_pk_setup( pk, pk_info ) ) != 0 ||
1331 ( ret = pk_parse_key_sec1_der( mbedcrypto_pk_ec( *pk ),
1332 key, keylen ) ) != 0 )
1333 {
1334 mbedcrypto_pk_free( pk );
1335 }
1336 else
1337 {
1338 return( 0 );
1339 }
1340
1341#endif /* MBEDCRYPTO_ECP_C */
1342
1343 return( MBEDCRYPTO_ERR_PK_KEY_INVALID_FORMAT );
1344}
1345
1346/*
1347 * Parse a public key
1348 */
1349int mbedcrypto_pk_parse_public_key( mbedcrypto_pk_context *ctx,
1350 const unsigned char *key, size_t keylen )
1351{
1352 int ret;
1353 unsigned char *p;
1354#if defined(MBEDCRYPTO_RSA_C)
1355 const mbedcrypto_pk_info_t *pk_info;
1356#endif
1357#if defined(MBEDCRYPTO_PEM_PARSE_C)
1358 size_t len;
1359 mbedcrypto_pem_context pem;
1360
1361 mbedcrypto_pem_init( &pem );
1362#if defined(MBEDCRYPTO_RSA_C)
1363 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1364 if( keylen == 0 || key[keylen - 1] != '\0' )
1365 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1366 else
1367 ret = mbedcrypto_pem_read_buffer( &pem,
1368 "-----BEGIN RSA PUBLIC KEY-----",
1369 "-----END RSA PUBLIC KEY-----",
1370 key, NULL, 0, &len );
1371
1372 if( ret == 0 )
1373 {
1374 p = pem.buf;
1375 if( ( pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_RSA ) ) == NULL )
1376 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
1377
1378 if( ( ret = mbedcrypto_pk_setup( ctx, pk_info ) ) != 0 )
1379 return( ret );
1380
1381 if ( ( ret = pk_get_rsapubkey( &p, p + pem.buflen, mbedcrypto_pk_rsa( *ctx ) ) ) != 0 )
1382 mbedcrypto_pk_free( ctx );
1383
1384 mbedcrypto_pem_free( &pem );
1385 return( ret );
1386 }
1387 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1388 {
1389 mbedcrypto_pem_free( &pem );
1390 return( ret );
1391 }
1392#endif /* MBEDCRYPTO_RSA_C */
1393
1394 /* Avoid calling mbedcrypto_pem_read_buffer() on non-null-terminated string */
1395 if( keylen == 0 || key[keylen - 1] != '\0' )
1396 ret = MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT;
1397 else
1398 ret = mbedcrypto_pem_read_buffer( &pem,
1399 "-----BEGIN PUBLIC KEY-----",
1400 "-----END PUBLIC KEY-----",
1401 key, NULL, 0, &len );
1402
1403 if( ret == 0 )
1404 {
1405 /*
1406 * Was PEM encoded
1407 */
1408 p = pem.buf;
1409
1410 ret = mbedcrypto_pk_parse_subpubkey( &p, p + pem.buflen, ctx );
1411 mbedcrypto_pem_free( &pem );
1412 return( ret );
1413 }
1414 else if( ret != MBEDCRYPTO_ERR_PEM_NO_HEADER_FOOTER_PRESENT )
1415 {
1416 mbedcrypto_pem_free( &pem );
1417 return( ret );
1418 }
1419 mbedcrypto_pem_free( &pem );
1420#endif /* MBEDCRYPTO_PEM_PARSE_C */
1421
1422#if defined(MBEDCRYPTO_RSA_C)
1423 if( ( pk_info = mbedcrypto_pk_info_from_type( MBEDCRYPTO_PK_RSA ) ) == NULL )
1424 return( MBEDCRYPTO_ERR_PK_UNKNOWN_PK_ALG );
1425
1426 if( ( ret = mbedcrypto_pk_setup( ctx, pk_info ) ) != 0 )
1427 return( ret );
1428
1429 p = (unsigned char *)key;
1430 ret = pk_get_rsapubkey( &p, p + keylen, mbedcrypto_pk_rsa( *ctx ) );
1431 if( ret == 0 )
1432 {
1433 return( ret );
1434 }
1435 mbedcrypto_pk_free( ctx );
1436 if( ret != ( MBEDCRYPTO_ERR_PK_INVALID_PUBKEY + MBEDCRYPTO_ERR_ASN1_UNEXPECTED_TAG ) )
1437 {
1438 return( ret );
1439 }
1440#endif /* MBEDCRYPTO_RSA_C */
1441 p = (unsigned char *) key;
1442
1443 ret = mbedcrypto_pk_parse_subpubkey( &p, p + keylen, ctx );
1444
1445 return( ret );
1446}
1447
1448#endif /* MBEDCRYPTO_PK_PARSE_C */