2049a3c874
This makes the implementation less likely to provide useful timing information to potential attackers from comparisons of information received from a remote device and private material known only by the authorized devices. Signed-off-by: Jouni Malinen <j@w1.fi>
320 lines
7.3 KiB
C
320 lines
7.3 KiB
C
/*
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* PKCS #1 (RSA Encryption)
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* Copyright (c) 2006-2014, 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 "rsa.h"
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#include "asn1.h"
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#include "pkcs1.h"
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static int pkcs1_generate_encryption_block(u8 block_type, size_t modlen,
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const u8 *in, size_t inlen,
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u8 *out, size_t *outlen)
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{
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size_t ps_len;
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u8 *pos;
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/*
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* PKCS #1 v1.5, 8.1:
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*
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* EB = 00 || BT || PS || 00 || D
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* BT = 00 or 01 for private-key operation; 02 for public-key operation
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* PS = k-3-||D||; at least eight octets
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* (BT=0: PS=0x00, BT=1: PS=0xff, BT=2: PS=pseudorandom non-zero)
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* k = length of modulus in octets (modlen)
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*/
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if (modlen < 12 || modlen > *outlen || inlen > modlen - 11) {
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wpa_printf(MSG_DEBUG, "PKCS #1: %s - Invalid buffer "
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"lengths (modlen=%lu outlen=%lu inlen=%lu)",
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__func__, (unsigned long) modlen,
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(unsigned long) *outlen,
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(unsigned long) inlen);
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return -1;
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}
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pos = out;
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*pos++ = 0x00;
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*pos++ = block_type; /* BT */
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ps_len = modlen - inlen - 3;
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switch (block_type) {
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case 0:
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os_memset(pos, 0x00, ps_len);
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pos += ps_len;
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break;
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case 1:
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os_memset(pos, 0xff, ps_len);
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pos += ps_len;
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break;
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case 2:
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if (os_get_random(pos, ps_len) < 0) {
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wpa_printf(MSG_DEBUG, "PKCS #1: %s - Failed to get "
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"random data for PS", __func__);
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return -1;
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}
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while (ps_len--) {
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if (*pos == 0x00)
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*pos = 0x01;
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pos++;
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}
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break;
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default:
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wpa_printf(MSG_DEBUG, "PKCS #1: %s - Unsupported block type "
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"%d", __func__, block_type);
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return -1;
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}
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*pos++ = 0x00;
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os_memcpy(pos, in, inlen); /* D */
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return 0;
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}
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int pkcs1_encrypt(int block_type, struct crypto_rsa_key *key,
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int use_private, const u8 *in, size_t inlen,
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u8 *out, size_t *outlen)
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{
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size_t modlen;
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modlen = crypto_rsa_get_modulus_len(key);
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if (pkcs1_generate_encryption_block(block_type, modlen, in, inlen,
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out, outlen) < 0)
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return -1;
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return crypto_rsa_exptmod(out, modlen, out, outlen, key, use_private);
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}
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int pkcs1_v15_private_key_decrypt(struct crypto_rsa_key *key,
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const u8 *in, size_t inlen,
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u8 *out, size_t *outlen)
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{
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int res;
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u8 *pos, *end;
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res = crypto_rsa_exptmod(in, inlen, out, outlen, key, 1);
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if (res)
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return res;
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if (*outlen < 2 || out[0] != 0 || out[1] != 2)
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return -1;
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/* Skip PS (pseudorandom non-zero octets) */
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pos = out + 2;
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end = out + *outlen;
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while (*pos && pos < end)
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pos++;
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if (pos == end)
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return -1;
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if (pos - out - 2 < 8) {
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/* PKCS #1 v1.5, 8.1: At least eight octets long PS */
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wpa_printf(MSG_INFO, "LibTomCrypt: Too short padding");
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return -1;
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}
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pos++;
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*outlen -= pos - out;
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/* Strip PKCS #1 header */
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os_memmove(out, pos, *outlen);
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return 0;
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}
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int pkcs1_decrypt_public_key(struct crypto_rsa_key *key,
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const u8 *crypt, size_t crypt_len,
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u8 *plain, size_t *plain_len)
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{
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size_t len;
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u8 *pos;
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len = *plain_len;
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if (crypto_rsa_exptmod(crypt, crypt_len, plain, &len, key, 0) < 0)
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return -1;
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/*
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* PKCS #1 v1.5, 8.1:
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*
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* EB = 00 || BT || PS || 00 || D
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* BT = 00 or 01
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* PS = k-3-||D|| times (00 if BT=00) or (FF if BT=01)
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* k = length of modulus in octets
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*
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* Based on 10.1.3, "The block type shall be 01" for a signature.
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*/
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if (len < 3 + 8 + 16 /* min hash len */ ||
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plain[0] != 0x00 || plain[1] != 0x01) {
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wpa_printf(MSG_INFO, "LibTomCrypt: Invalid signature EB "
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"structure");
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return -1;
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}
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pos = plain + 3;
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/* BT = 01 */
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if (plain[2] != 0xff) {
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wpa_printf(MSG_INFO, "LibTomCrypt: Invalid signature "
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"PS (BT=01)");
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return -1;
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}
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while (pos < plain + len && *pos == 0xff)
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pos++;
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if (pos - plain - 2 < 8) {
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/* PKCS #1 v1.5, 8.1: At least eight octets long PS */
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wpa_printf(MSG_INFO, "LibTomCrypt: Too short signature "
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"padding");
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return -1;
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}
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if (pos + 16 /* min hash len */ >= plain + len || *pos != 0x00) {
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wpa_printf(MSG_INFO, "LibTomCrypt: Invalid signature EB "
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"structure (2)");
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return -1;
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}
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pos++;
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len -= pos - plain;
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/* Strip PKCS #1 header */
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os_memmove(plain, pos, len);
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*plain_len = len;
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return 0;
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}
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int pkcs1_v15_sig_ver(struct crypto_public_key *pk,
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const u8 *s, size_t s_len,
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const struct asn1_oid *hash_alg,
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const u8 *hash, size_t hash_len)
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{
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int res;
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u8 *decrypted;
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size_t decrypted_len;
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const u8 *pos, *end, *next, *da_end;
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struct asn1_hdr hdr;
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struct asn1_oid oid;
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decrypted = os_malloc(s_len);
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if (decrypted == NULL)
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return -1;
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decrypted_len = s_len;
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res = crypto_public_key_decrypt_pkcs1(pk, s, s_len, decrypted,
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&decrypted_len);
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if (res < 0) {
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wpa_printf(MSG_INFO, "PKCS #1: RSA decrypt failed");
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os_free(decrypted);
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return -1;
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}
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wpa_hexdump(MSG_DEBUG, "Decrypted(S)", decrypted, decrypted_len);
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/*
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* PKCS #1 v1.5, 10.1.2:
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*
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* DigestInfo ::= SEQUENCE {
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* digestAlgorithm DigestAlgorithmIdentifier,
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* digest Digest
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* }
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*
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* DigestAlgorithmIdentifier ::= AlgorithmIdentifier
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*
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* Digest ::= OCTET STRING
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*
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*/
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if (asn1_get_next(decrypted, decrypted_len, &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 #1: Expected SEQUENCE (DigestInfo) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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os_free(decrypted);
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return -1;
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}
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pos = hdr.payload;
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end = pos + hdr.length;
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/*
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* X.509:
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* AlgorithmIdentifier ::= SEQUENCE {
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* algorithm OBJECT IDENTIFIER,
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* parameters ANY DEFINED BY algorithm OPTIONAL
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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 #1: Expected SEQUENCE (AlgorithmIdentifier) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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os_free(decrypted);
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return -1;
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}
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da_end = hdr.payload + hdr.length;
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if (asn1_get_oid(hdr.payload, hdr.length, &oid, &next)) {
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wpa_printf(MSG_DEBUG,
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"PKCS #1: Failed to parse digestAlgorithm");
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os_free(decrypted);
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return -1;
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}
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if (!asn1_oid_equal(&oid, hash_alg)) {
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char txt[100], txt2[100];
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asn1_oid_to_str(&oid, txt, sizeof(txt));
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asn1_oid_to_str(hash_alg, txt2, sizeof(txt2));
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wpa_printf(MSG_DEBUG,
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"PKCS #1: Hash alg OID mismatch: was %s, expected %s",
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txt, txt2);
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os_free(decrypted);
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return -1;
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}
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/* Digest ::= OCTET STRING */
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pos = da_end;
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end = decrypted + decrypted_len;
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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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wpa_printf(MSG_DEBUG,
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"PKCS #1: Expected OCTETSTRING (Digest) - found class %d tag 0x%x",
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hdr.class, hdr.tag);
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os_free(decrypted);
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return -1;
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}
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wpa_hexdump(MSG_MSGDUMP, "PKCS #1: Decrypted Digest",
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hdr.payload, hdr.length);
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if (hdr.length != hash_len ||
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os_memcmp_const(hdr.payload, hash, hdr.length) != 0) {
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wpa_printf(MSG_INFO, "PKCS #1: Digest value does not match calculated hash");
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os_free(decrypted);
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return -1;
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}
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os_free(decrypted);
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if (hdr.payload + hdr.length != end) {
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wpa_printf(MSG_INFO,
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"PKCS #1: Extra data after signature - reject");
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wpa_hexdump(MSG_DEBUG, "PKCS #1: Extra data",
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hdr.payload + hdr.length,
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end - hdr.payload - hdr.length);
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return -1;
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}
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return 0;
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}
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