mirror of
https://github.com/vanhoefm/fragattacks.git
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5ce2941bfe
This adds support for decrypting private keys protected with the old PKCS #12 mechanism using OID pbeWithSHAAnd3-KeyTripleDES-CBC. Signed-off-by: Jouni Malinen <j@w1.fi>
651 lines
16 KiB
C
651 lines
16 KiB
C
/*
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* PKCS #5 (Password-based Encryption)
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* Copyright (c) 2009-2015, Jouni Malinen <j@w1.fi>
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*
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* This software may be distributed under the terms of the BSD license.
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* See README for more details.
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*/
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#include "includes.h"
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#include "common.h"
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#include "crypto/crypto.h"
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#include "crypto/md5.h"
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#include "crypto/sha1.h"
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#include "asn1.h"
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#include "pkcs5.h"
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struct pkcs5_params {
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enum pkcs5_alg {
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PKCS5_ALG_UNKNOWN,
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PKCS5_ALG_MD5_DES_CBC,
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PKCS5_ALG_PBES2,
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PKCS5_ALG_SHA1_3DES_CBC,
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} alg;
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u8 salt[64];
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size_t salt_len;
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unsigned int iter_count;
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enum pbes2_enc_alg {
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PBES2_ENC_ALG_UNKNOWN,
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PBES2_ENC_ALG_DES_EDE3_CBC,
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} enc_alg;
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u8 iv[8];
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size_t iv_len;
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};
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static int oid_is_rsadsi(struct asn1_oid *oid)
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{
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return oid->len >= 4 &&
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oid->oid[0] == 1 /* iso */ &&
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oid->oid[1] == 2 /* member-body */ &&
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oid->oid[2] == 840 /* us */ &&
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oid->oid[3] == 113549 /* rsadsi */;
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}
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static int pkcs5_is_oid(struct asn1_oid *oid, unsigned long alg)
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{
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return oid->len == 7 &&
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oid_is_rsadsi(oid) &&
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oid->oid[4] == 1 /* pkcs */ &&
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oid->oid[5] == 5 /* pkcs-5 */ &&
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oid->oid[6] == alg;
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}
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static int enc_alg_is_oid(struct asn1_oid *oid, unsigned long alg)
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{
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return oid->len == 6 &&
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oid_is_rsadsi(oid) &&
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oid->oid[4] == 3 /* encryptionAlgorithm */ &&
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oid->oid[5] == alg;
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}
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static int pkcs12_is_pbe_oid(struct asn1_oid *oid, unsigned long alg)
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{
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return oid->len == 8 &&
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oid_is_rsadsi(oid) &&
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oid->oid[4] == 1 /* pkcs */ &&
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oid->oid[5] == 12 /* pkcs-12 */ &&
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oid->oid[6] == 1 /* pkcs-12PbeIds */ &&
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oid->oid[7] == alg;
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}
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static enum pkcs5_alg pkcs5_get_alg(struct asn1_oid *oid)
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{
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if (pkcs5_is_oid(oid, 3)) /* pbeWithMD5AndDES-CBC (PBES1) */
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return PKCS5_ALG_MD5_DES_CBC;
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if (pkcs12_is_pbe_oid(oid, 3)) /* pbeWithSHAAnd3-KeyTripleDES-CBC */
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return PKCS5_ALG_SHA1_3DES_CBC;
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if (pkcs5_is_oid(oid, 13)) /* id-PBES2 (PBES2) */
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return PKCS5_ALG_PBES2;
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return PKCS5_ALG_UNKNOWN;
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}
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static int pkcs5_get_params_pbes2(struct pkcs5_params *params, const u8 *pos,
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const u8 *enc_alg_end)
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{
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struct asn1_hdr hdr;
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const u8 *end, *kdf_end;
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struct asn1_oid oid;
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char obuf[80];
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/*
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* RFC 2898, Ch. A.4
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*
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* PBES2-params ::= SEQUENCE {
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* keyDerivationFunc AlgorithmIdentifier {{PBES2-KDFs}},
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* encryptionScheme AlgorithmIdentifier {{PBES2-Encs}} }
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*
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* PBES2-KDFs ALGORITHM-IDENTIFIER ::=
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* { {PBKDF2-params IDENTIFIED BY id-PBKDF2}, ... }
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*/
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if (asn1_get_next(pos, enc_alg_end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_SEQUENCE) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected SEQUENCE (PBES2-params) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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pos = hdr.payload;
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end = hdr.payload + hdr.length;
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_SEQUENCE) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected SEQUENCE (keyDerivationFunc) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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pos = hdr.payload;
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kdf_end = end = hdr.payload + hdr.length;
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if (asn1_get_oid(pos, end - pos, &oid, &pos)) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Failed to parse OID (keyDerivationFunc algorithm)");
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return -1;
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}
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asn1_oid_to_str(&oid, obuf, sizeof(obuf));
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wpa_printf(MSG_DEBUG, "PKCS #5: PBES2 keyDerivationFunc algorithm %s",
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obuf);
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if (!pkcs5_is_oid(&oid, 12)) /* id-PBKDF2 */ {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Unsupported PBES2 keyDerivationFunc algorithm %s",
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obuf);
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return -1;
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}
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/*
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* RFC 2898, C.
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*
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* PBKDF2-params ::= SEQUENCE {
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* salt CHOICE {
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* specified OCTET STRING,
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* otherSource AlgorithmIdentifier {{PBKDF2-SaltSources}}
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* },
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* iterationCount INTEGER (1..MAX),
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* keyLength INTEGER (1..MAX) OPTIONAL,
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* prf AlgorithmIdentifier {{PBKDF2-PRFs}} DEFAULT
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* algid-hmacWithSHA1
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* }
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*/
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_SEQUENCE) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected SEQUENCE (PBKDF2-params) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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pos = hdr.payload;
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end = hdr.payload + hdr.length;
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/* For now, only support the salt CHOICE specified (OCTET STRING) */
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_OCTETSTRING ||
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hdr.length > sizeof(params->salt)) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected OCTET STRING (salt.specified) - found class %d tag 0x%x size %d",
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hdr.class, hdr.tag, hdr.length);
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return -1;
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}
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pos = hdr.payload + hdr.length;
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os_memcpy(params->salt, hdr.payload, hdr.length);
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params->salt_len = hdr.length;
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wpa_hexdump(MSG_DEBUG, "PKCS #5: salt", params->salt, params->salt_len);
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/* iterationCount INTEGER */
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL || hdr.tag != ASN1_TAG_INTEGER) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected INTEGER - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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if (hdr.length == 1) {
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params->iter_count = *hdr.payload;
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} else if (hdr.length == 2) {
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params->iter_count = WPA_GET_BE16(hdr.payload);
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} else if (hdr.length == 4) {
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params->iter_count = WPA_GET_BE32(hdr.payload);
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} else {
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wpa_hexdump(MSG_DEBUG,
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"PKCS #5: Unsupported INTEGER value (iterationCount)",
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hdr.payload, hdr.length);
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return -1;
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}
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wpa_printf(MSG_DEBUG, "PKCS #5: iterationCount=0x%x",
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params->iter_count);
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if (params->iter_count == 0 || params->iter_count > 0xffff) {
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wpa_printf(MSG_INFO, "PKCS #5: Unsupported iterationCount=0x%x",
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params->iter_count);
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return -1;
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}
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/* For now, ignore optional keyLength and prf */
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pos = kdf_end;
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/* encryptionScheme AlgorithmIdentifier {{PBES2-Encs}} */
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if (asn1_get_next(pos, enc_alg_end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_SEQUENCE) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected SEQUENCE (encryptionScheme) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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pos = hdr.payload;
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end = hdr.payload + hdr.length;
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if (asn1_get_oid(pos, end - pos, &oid, &pos)) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Failed to parse OID (encryptionScheme algorithm)");
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return -1;
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}
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asn1_oid_to_str(&oid, obuf, sizeof(obuf));
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wpa_printf(MSG_DEBUG, "PKCS #5: PBES2 encryptionScheme algorithm %s",
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obuf);
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if (enc_alg_is_oid(&oid, 7)) {
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params->enc_alg = PBES2_ENC_ALG_DES_EDE3_CBC;
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} else {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Unsupported PBES2 encryptionScheme algorithm %s",
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obuf);
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return -1;
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}
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/*
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* RFC 2898, B.2.2:
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* The parameters field associated with this OID in an
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* AlgorithmIdentifier shall have type OCTET STRING (SIZE(8)),
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* specifying the initialization vector for CBC mode.
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*/
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_OCTETSTRING ||
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hdr.length != 8) {
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wpa_printf(MSG_DEBUG,
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"PKCS #5: Expected OCTET STRING (SIZE(8)) (IV) - found class %d tag 0x%x size %d",
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hdr.class, hdr.tag, hdr.length);
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return -1;
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}
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os_memcpy(params->iv, hdr.payload, hdr.length);
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params->iv_len = hdr.length;
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wpa_hexdump(MSG_DEBUG, "PKCS #5: IV", params->iv, params->iv_len);
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return 0;
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}
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static int pkcs5_get_params(const u8 *enc_alg, size_t enc_alg_len,
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struct pkcs5_params *params)
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{
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struct asn1_hdr hdr;
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const u8 *enc_alg_end, *pos, *end;
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struct asn1_oid oid;
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char obuf[80];
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/* AlgorithmIdentifier */
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enc_alg_end = enc_alg + enc_alg_len;
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os_memset(params, 0, sizeof(*params));
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if (asn1_get_oid(enc_alg, enc_alg_end - enc_alg, &oid, &pos)) {
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wpa_printf(MSG_DEBUG, "PKCS #5: Failed to parse OID "
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"(algorithm)");
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return -1;
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}
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asn1_oid_to_str(&oid, obuf, sizeof(obuf));
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wpa_printf(MSG_DEBUG, "PKCS #5: encryption algorithm %s", obuf);
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params->alg = pkcs5_get_alg(&oid);
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if (params->alg == PKCS5_ALG_UNKNOWN) {
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wpa_printf(MSG_INFO, "PKCS #5: unsupported encryption "
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"algorithm %s", obuf);
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return -1;
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}
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if (params->alg == PKCS5_ALG_PBES2)
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return pkcs5_get_params_pbes2(params, pos, enc_alg_end);
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/* PBES1 */
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/*
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* PKCS#5, Section 8
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* PBEParameter ::= SEQUENCE {
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* salt OCTET STRING SIZE(8),
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* iterationCount INTEGER }
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*
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* Note: The same implementation can be used to parse the PKCS #12
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* version described in RFC 7292, C:
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* pkcs-12PbeParams ::= SEQUENCE {
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* salt OCTET STRING,
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* iterations INTEGER
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* }
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*/
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if (asn1_get_next(pos, enc_alg_end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_SEQUENCE) {
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wpa_printf(MSG_DEBUG, "PKCS #5: Expected SEQUENCE "
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"(PBEParameter) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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return -1;
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}
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pos = hdr.payload;
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end = hdr.payload + hdr.length;
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/* salt OCTET STRING SIZE(8) (PKCS #5) or OCTET STRING (PKCS #12) */
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL ||
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hdr.tag != ASN1_TAG_OCTETSTRING ||
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hdr.length > sizeof(params->salt)) {
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wpa_printf(MSG_DEBUG, "PKCS #5: Expected OCTETSTRING SIZE(8) "
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"(salt) - found class %d tag 0x%x size %d",
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hdr.class, hdr.tag, hdr.length);
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return -1;
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}
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pos = hdr.payload + hdr.length;
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os_memcpy(params->salt, hdr.payload, hdr.length);
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params->salt_len = hdr.length;
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wpa_hexdump(MSG_DEBUG, "PKCS #5: salt",
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params->salt, params->salt_len);
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/* iterationCount INTEGER */
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if (asn1_get_next(pos, end - pos, &hdr) < 0 ||
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hdr.class != ASN1_CLASS_UNIVERSAL || hdr.tag != ASN1_TAG_INTEGER) {
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wpa_printf(MSG_DEBUG, "PKCS #5: Expected INTEGER - found "
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"class %d tag 0x%x", hdr.class, hdr.tag);
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return -1;
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}
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if (hdr.length == 1)
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params->iter_count = *hdr.payload;
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else if (hdr.length == 2)
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params->iter_count = WPA_GET_BE16(hdr.payload);
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else if (hdr.length == 4)
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params->iter_count = WPA_GET_BE32(hdr.payload);
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else {
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wpa_hexdump(MSG_DEBUG, "PKCS #5: Unsupported INTEGER value "
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" (iterationCount)",
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hdr.payload, hdr.length);
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return -1;
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}
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wpa_printf(MSG_DEBUG, "PKCS #5: iterationCount=0x%x",
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params->iter_count);
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if (params->iter_count == 0 || params->iter_count > 0xffff) {
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wpa_printf(MSG_INFO, "PKCS #5: Unsupported "
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"iterationCount=0x%x", params->iter_count);
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return -1;
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}
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return 0;
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}
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static struct crypto_cipher *
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pkcs5_crypto_init_pbes2(struct pkcs5_params *params, const char *passwd)
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{
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u8 key[24];
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if (params->enc_alg != PBES2_ENC_ALG_DES_EDE3_CBC ||
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params->iv_len != 8)
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return NULL;
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wpa_hexdump_ascii_key(MSG_DEBUG, "PKCS #5: PBES2 password for PBKDF2",
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passwd, os_strlen(passwd));
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wpa_hexdump(MSG_DEBUG, "PKCS #5: PBES2 salt for PBKDF2",
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params->salt, params->salt_len);
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wpa_printf(MSG_DEBUG, "PKCS #5: PBES2 PBKDF2 iterations: %u",
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params->iter_count);
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if (pbkdf2_sha1(passwd, params->salt, params->salt_len,
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params->iter_count, key, sizeof(key)) < 0)
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return NULL;
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wpa_hexdump_key(MSG_DEBUG, "PKCS #5: DES EDE3 key", key, sizeof(key));
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wpa_hexdump(MSG_DEBUG, "PKCS #5: DES IV", params->iv, params->iv_len);
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return crypto_cipher_init(CRYPTO_CIPHER_ALG_3DES, params->iv,
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key, sizeof(key));
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}
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static void add_byte_array_mod(u8 *a, const u8 *b, size_t len)
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{
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size_t i;
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unsigned int carry = 0;
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for (i = len - 1; i < len; i--) {
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carry = carry + a[i] + b[i];
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a[i] = carry & 0xff;
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carry >>= 8;
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}
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}
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static int pkcs12_key_gen(const u8 *pw, size_t pw_len, const u8 *salt,
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size_t salt_len, u8 id, unsigned int iter,
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size_t out_len, u8 *out)
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{
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unsigned int u, v, S_len, P_len, i;
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u8 *D = NULL, *I = NULL, *B = NULL, *pos;
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int res = -1;
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/* RFC 7292, B.2 */
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u = SHA1_MAC_LEN;
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v = 64;
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/* D = copies of ID */
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D = os_malloc(v);
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if (!D)
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goto done;
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os_memset(D, id, v);
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/* S = copies of salt; P = copies of password, I = S || P */
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S_len = v * ((salt_len + v - 1) / v);
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P_len = v * ((pw_len + v - 1) / v);
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I = os_malloc(S_len + P_len);
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if (!I)
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goto done;
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pos = I;
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if (salt_len) {
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for (i = 0; i < S_len; i++)
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*pos++ = salt[i % salt_len];
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}
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if (pw_len) {
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for (i = 0; i < P_len; i++)
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*pos++ = pw[i % pw_len];
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}
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B = os_malloc(v);
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if (!B)
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goto done;
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for (;;) {
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u8 hash[SHA1_MAC_LEN];
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const u8 *addr[2];
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size_t len[2];
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|
|
addr[0] = D;
|
|
len[0] = v;
|
|
addr[1] = I;
|
|
len[1] = S_len + P_len;
|
|
if (sha1_vector(2, addr, len, hash) < 0)
|
|
goto done;
|
|
|
|
addr[0] = hash;
|
|
len[0] = SHA1_MAC_LEN;
|
|
for (i = 1; i < iter; i++) {
|
|
if (sha1_vector(1, addr, len, hash) < 0)
|
|
goto done;
|
|
}
|
|
|
|
if (out_len <= u) {
|
|
os_memcpy(out, hash, out_len);
|
|
res = 0;
|
|
goto done;
|
|
}
|
|
|
|
os_memcpy(out, hash, u);
|
|
out += u;
|
|
out_len -= u;
|
|
|
|
/* I_j = (I_j + B + 1) mod 2^(v*8) */
|
|
/* B = copies of Ai (final hash value) */
|
|
for (i = 0; i < v; i++)
|
|
B[i] = hash[i % u];
|
|
inc_byte_array(B, v);
|
|
for (i = 0; i < S_len + P_len; i += v)
|
|
add_byte_array_mod(&I[i], B, v);
|
|
}
|
|
|
|
done:
|
|
os_free(B);
|
|
os_free(I);
|
|
os_free(D);
|
|
return res;
|
|
}
|
|
|
|
|
|
#define PKCS12_ID_ENC 1
|
|
#define PKCS12_ID_IV 2
|
|
#define PKCS12_ID_MAC 3
|
|
|
|
static struct crypto_cipher *
|
|
pkcs12_crypto_init_sha1(struct pkcs5_params *params, const char *passwd)
|
|
{
|
|
unsigned int i;
|
|
u8 *pw;
|
|
size_t pw_len;
|
|
u8 key[24];
|
|
u8 iv[8];
|
|
|
|
if (params->alg != PKCS5_ALG_SHA1_3DES_CBC)
|
|
return NULL;
|
|
|
|
pw_len = passwd ? os_strlen(passwd) : 0;
|
|
pw = os_malloc(2 * (pw_len + 1));
|
|
if (!pw)
|
|
return NULL;
|
|
if (pw_len) {
|
|
for (i = 0; i <= pw_len; i++)
|
|
WPA_PUT_BE16(&pw[2 * i], passwd[i]);
|
|
pw_len = 2 * (pw_len + 1);
|
|
}
|
|
|
|
if (pkcs12_key_gen(pw, pw_len, params->salt, params->salt_len,
|
|
PKCS12_ID_ENC, params->iter_count,
|
|
sizeof(key), key) < 0 ||
|
|
pkcs12_key_gen(pw, pw_len, params->salt, params->salt_len,
|
|
PKCS12_ID_IV, params->iter_count,
|
|
sizeof(iv), iv) < 0) {
|
|
os_free(pw);
|
|
return NULL;
|
|
}
|
|
|
|
os_free(pw);
|
|
|
|
wpa_hexdump_key(MSG_DEBUG, "PKCS #12: DES key", key, sizeof(key));
|
|
wpa_hexdump_key(MSG_DEBUG, "PKCS #12: DES IV", iv, sizeof(iv));
|
|
|
|
return crypto_cipher_init(CRYPTO_CIPHER_ALG_3DES, iv, key, sizeof(key));
|
|
}
|
|
|
|
|
|
static struct crypto_cipher * pkcs5_crypto_init(struct pkcs5_params *params,
|
|
const char *passwd)
|
|
{
|
|
unsigned int i;
|
|
u8 hash[MD5_MAC_LEN];
|
|
const u8 *addr[2];
|
|
size_t len[2];
|
|
|
|
if (params->alg == PKCS5_ALG_PBES2)
|
|
return pkcs5_crypto_init_pbes2(params, passwd);
|
|
|
|
if (params->alg == PKCS5_ALG_SHA1_3DES_CBC)
|
|
return pkcs12_crypto_init_sha1(params, passwd);
|
|
|
|
if (params->alg != PKCS5_ALG_MD5_DES_CBC)
|
|
return NULL;
|
|
|
|
addr[0] = (const u8 *) passwd;
|
|
len[0] = os_strlen(passwd);
|
|
addr[1] = params->salt;
|
|
len[1] = params->salt_len;
|
|
if (md5_vector(2, addr, len, hash) < 0)
|
|
return NULL;
|
|
addr[0] = hash;
|
|
len[0] = MD5_MAC_LEN;
|
|
for (i = 1; i < params->iter_count; i++) {
|
|
if (md5_vector(1, addr, len, hash) < 0)
|
|
return NULL;
|
|
}
|
|
/* TODO: DES key parity bits(?) */
|
|
wpa_hexdump_key(MSG_DEBUG, "PKCS #5: DES key", hash, 8);
|
|
wpa_hexdump_key(MSG_DEBUG, "PKCS #5: DES IV", hash + 8, 8);
|
|
|
|
return crypto_cipher_init(CRYPTO_CIPHER_ALG_DES, hash + 8, hash, 8);
|
|
}
|
|
|
|
|
|
u8 * pkcs5_decrypt(const u8 *enc_alg, size_t enc_alg_len,
|
|
const u8 *enc_data, size_t enc_data_len,
|
|
const char *passwd, size_t *data_len)
|
|
{
|
|
struct crypto_cipher *ctx;
|
|
u8 *eb, pad;
|
|
struct pkcs5_params params;
|
|
unsigned int i;
|
|
|
|
if (pkcs5_get_params(enc_alg, enc_alg_len, ¶ms) < 0) {
|
|
wpa_printf(MSG_DEBUG, "PKCS #5: Unsupported parameters");
|
|
return NULL;
|
|
}
|
|
|
|
ctx = pkcs5_crypto_init(¶ms, passwd);
|
|
if (ctx == NULL) {
|
|
wpa_printf(MSG_DEBUG, "PKCS #5: Failed to initialize crypto");
|
|
return NULL;
|
|
}
|
|
|
|
/* PKCS #5, Section 7 - Decryption process */
|
|
if (enc_data_len < 16 || enc_data_len % 8) {
|
|
wpa_printf(MSG_INFO, "PKCS #5: invalid length of ciphertext "
|
|
"%d", (int) enc_data_len);
|
|
crypto_cipher_deinit(ctx);
|
|
return NULL;
|
|
}
|
|
|
|
eb = os_malloc(enc_data_len);
|
|
if (eb == NULL) {
|
|
crypto_cipher_deinit(ctx);
|
|
return NULL;
|
|
}
|
|
|
|
if (crypto_cipher_decrypt(ctx, enc_data, eb, enc_data_len) < 0) {
|
|
wpa_printf(MSG_DEBUG, "PKCS #5: Failed to decrypt EB");
|
|
crypto_cipher_deinit(ctx);
|
|
os_free(eb);
|
|
return NULL;
|
|
}
|
|
crypto_cipher_deinit(ctx);
|
|
|
|
pad = eb[enc_data_len - 1];
|
|
if (pad > 8) {
|
|
wpa_printf(MSG_INFO, "PKCS #5: Invalid PS octet 0x%x", pad);
|
|
os_free(eb);
|
|
return NULL;
|
|
}
|
|
for (i = enc_data_len - pad; i < enc_data_len; i++) {
|
|
if (eb[i] != pad) {
|
|
wpa_hexdump(MSG_INFO, "PKCS #5: Invalid PS",
|
|
eb + enc_data_len - pad, pad);
|
|
os_free(eb);
|
|
return NULL;
|
|
}
|
|
}
|
|
|
|
wpa_hexdump_key(MSG_MSGDUMP, "PKCS #5: message M (encrypted key)",
|
|
eb, enc_data_len - pad);
|
|
|
|
*data_len = enc_data_len - pad;
|
|
return eb;
|
|
}
|