2016-07-11 18:19:03 +01:00
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/* Copyright (c) 2016, Google Inc.
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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* SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */
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#include <openssl/ssl.h>
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#include <assert.h>
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#include <string.h>
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#include <openssl/aead.h>
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#include <openssl/bytestring.h>
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#include <openssl/digest.h>
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#include <openssl/hmac.h>
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#include <openssl/hkdf.h>
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#include <openssl/mem.h>
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#include "internal.h"
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int tls13_init_key_schedule(SSL *ssl, const uint8_t *resumption_ctx,
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size_t resumption_ctx_len) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
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hs->hash_len = EVP_MD_size(digest);
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/* Save the hash of the resumption context. */
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unsigned resumption_hash_len;
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if (!EVP_Digest(resumption_ctx, resumption_ctx_len, hs->resumption_hash,
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&resumption_hash_len, digest, NULL)) {
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return 0;
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}
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/* Initialize the secret to the zero key. */
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memset(hs->secret, 0, hs->hash_len);
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/* Initialize the rolling hashes and release the handshake buffer. */
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if (!ssl3_init_handshake_hash(ssl)) {
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return 0;
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}
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ssl3_free_handshake_buffer(ssl);
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return 1;
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}
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int tls13_advance_key_schedule(SSL *ssl, const uint8_t *in, size_t len) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
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return HKDF_extract(hs->secret, &hs->hash_len, digest, in, len, hs->secret,
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hs->hash_len);
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}
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static int hkdf_expand_label(uint8_t *out, const EVP_MD *digest,
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const uint8_t *secret, size_t secret_len,
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const uint8_t *label, size_t label_len,
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const uint8_t *hash, size_t hash_len, size_t len) {
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static const char kTLS13LabelVersion[] = "TLS 1.3, ";
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CBB cbb, child;
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uint8_t *hkdf_label;
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size_t hkdf_label_len;
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if (!CBB_init(&cbb, 2 + 1 + strlen(kTLS13LabelVersion) + label_len + 1 +
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hash_len) ||
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!CBB_add_u16(&cbb, len) ||
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!CBB_add_u8_length_prefixed(&cbb, &child) ||
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!CBB_add_bytes(&child, (const uint8_t *)kTLS13LabelVersion,
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strlen(kTLS13LabelVersion)) ||
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!CBB_add_bytes(&child, label, label_len) ||
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!CBB_add_u8_length_prefixed(&cbb, &child) ||
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!CBB_add_bytes(&child, hash, hash_len) ||
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!CBB_finish(&cbb, &hkdf_label, &hkdf_label_len)) {
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CBB_cleanup(&cbb);
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return 0;
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}
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int ret = HKDF_expand(out, len, digest, secret, secret_len, hkdf_label,
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hkdf_label_len);
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OPENSSL_free(hkdf_label);
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return ret;
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}
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int tls13_get_context_hashes(SSL *ssl, uint8_t *out, size_t *out_len) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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EVP_MD_CTX ctx;
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EVP_MD_CTX_init(&ctx);
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unsigned handshake_len = 0;
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int ok = EVP_MD_CTX_copy_ex(&ctx, &ssl->s3->handshake_hash) &&
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EVP_DigestFinal_ex(&ctx, out, &handshake_len);
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EVP_MD_CTX_cleanup(&ctx);
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if (!ok) {
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return 0;
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}
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memcpy(out + handshake_len, hs->resumption_hash, hs->hash_len);
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*out_len = handshake_len + hs->hash_len;
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return 1;
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}
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/* derive_secret derives a secret of length |len| and writes the result in |out|
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* with the given label and the current base secret and most recently-saved
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* handshake context. It returns one on success and zero on error. */
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static int derive_secret(SSL *ssl, uint8_t *out, size_t len,
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const uint8_t *label, size_t label_len) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
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uint8_t context_hashes[2 * EVP_MAX_MD_SIZE];
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size_t context_hashes_len;
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if (!tls13_get_context_hashes(ssl, context_hashes, &context_hashes_len)) {
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return 0;
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}
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return hkdf_expand_label(out, digest, hs->secret, hs->hash_len, label,
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label_len, context_hashes, context_hashes_len, len);
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}
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int tls13_set_traffic_key(SSL *ssl, enum tls_record_type_t type,
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enum evp_aead_direction_t direction,
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const uint8_t *traffic_secret,
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size_t traffic_secret_len) {
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if (traffic_secret_len > 0xff) {
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OPENSSL_PUT_ERROR(SSL, ERR_R_OVERFLOW);
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return 0;
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}
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2016-10-03 17:25:56 +01:00
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const char *key_label, *iv_label;
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2016-07-11 18:19:03 +01:00
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switch (type) {
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case type_early_handshake:
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2016-10-03 17:25:56 +01:00
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key_label = "early handshake key expansion, key";
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iv_label = "early handshake key expansion, iv";
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2016-07-11 18:19:03 +01:00
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break;
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case type_early_data:
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2016-10-03 17:25:56 +01:00
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key_label = "early application data key expansion, key";
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iv_label = "early application data key expansion, iv";
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2016-07-11 18:19:03 +01:00
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break;
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case type_handshake:
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2016-10-03 17:25:56 +01:00
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key_label = "handshake key expansion, key";
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iv_label = "handshake key expansion, iv";
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2016-07-11 18:19:03 +01:00
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break;
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case type_data:
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2016-10-03 17:25:56 +01:00
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key_label = "application data key expansion, key";
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iv_label = "application data key expansion, iv";
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2016-07-11 18:19:03 +01:00
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break;
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default:
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return 0;
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}
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/* Look up cipher suite properties. */
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const EVP_AEAD *aead;
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const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
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2016-10-28 22:17:14 +01:00
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size_t discard;
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if (!ssl_cipher_get_evp_aead(&aead, &discard, &discard,
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2016-07-26 17:27:38 +01:00
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SSL_get_session(ssl)->cipher,
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2016-07-11 18:19:03 +01:00
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ssl3_protocol_version(ssl))) {
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return 0;
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}
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/* Derive the key. */
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size_t key_len = EVP_AEAD_key_length(aead);
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uint8_t key[EVP_AEAD_MAX_KEY_LENGTH];
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2016-10-03 17:25:56 +01:00
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if (!hkdf_expand_label(key, digest, traffic_secret, traffic_secret_len,
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(const uint8_t *)key_label, strlen(key_label), NULL, 0,
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key_len)) {
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2016-07-11 18:19:03 +01:00
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return 0;
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}
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/* Derive the IV. */
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size_t iv_len = EVP_AEAD_nonce_length(aead);
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uint8_t iv[EVP_AEAD_MAX_NONCE_LENGTH];
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2016-10-03 17:25:56 +01:00
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if (!hkdf_expand_label(iv, digest, traffic_secret, traffic_secret_len,
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(const uint8_t *)iv_label, strlen(iv_label), NULL, 0,
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iv_len)) {
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2016-07-11 18:19:03 +01:00
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return 0;
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}
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2016-06-27 21:34:59 +01:00
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SSL_AEAD_CTX *traffic_aead = SSL_AEAD_CTX_new(
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2016-07-26 17:27:38 +01:00
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direction, ssl3_protocol_version(ssl), SSL_get_session(ssl)->cipher, key,
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2016-06-27 21:34:59 +01:00
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key_len, NULL, 0, iv, iv_len);
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2016-07-11 18:19:03 +01:00
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if (traffic_aead == NULL) {
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return 0;
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}
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if (direction == evp_aead_open) {
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if (!ssl->method->set_read_state(ssl, traffic_aead)) {
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return 0;
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}
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} else {
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if (!ssl->method->set_write_state(ssl, traffic_aead)) {
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return 0;
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}
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}
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/* Save the traffic secret. */
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if (direction == evp_aead_open) {
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2016-07-26 17:27:38 +01:00
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memmove(ssl->s3->read_traffic_secret, traffic_secret, traffic_secret_len);
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2016-07-11 18:19:03 +01:00
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ssl->s3->read_traffic_secret_len = traffic_secret_len;
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} else {
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2016-07-26 17:27:38 +01:00
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memmove(ssl->s3->write_traffic_secret, traffic_secret, traffic_secret_len);
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2016-07-11 18:19:03 +01:00
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ssl->s3->write_traffic_secret_len = traffic_secret_len;
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}
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return 1;
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}
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2016-10-03 17:25:56 +01:00
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static const char kTLS13LabelClientHandshakeTraffic[] =
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"client handshake traffic secret";
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static const char kTLS13LabelServerHandshakeTraffic[] =
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"server handshake traffic secret";
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static const char kTLS13LabelClientApplicationTraffic[] =
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"client application traffic secret";
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static const char kTLS13LabelServerApplicationTraffic[] =
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"server application traffic secret";
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2016-07-11 18:19:03 +01:00
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int tls13_set_handshake_traffic(SSL *ssl) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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2016-10-03 17:25:56 +01:00
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uint8_t client_traffic_secret[EVP_MAX_MD_SIZE];
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uint8_t server_traffic_secret[EVP_MAX_MD_SIZE];
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if (!derive_secret(ssl, client_traffic_secret, hs->hash_len,
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(const uint8_t *)kTLS13LabelClientHandshakeTraffic,
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strlen(kTLS13LabelClientHandshakeTraffic)) ||
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!ssl_log_secret(ssl, "CLIENT_HANDSHAKE_TRAFFIC_SECRET",
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client_traffic_secret, hs->hash_len) ||
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!derive_secret(ssl, server_traffic_secret, hs->hash_len,
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(const uint8_t *)kTLS13LabelServerHandshakeTraffic,
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strlen(kTLS13LabelServerHandshakeTraffic)) ||
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!ssl_log_secret(ssl, "SERVER_HANDSHAKE_TRAFFIC_SECRET",
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server_traffic_secret, hs->hash_len)) {
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2016-07-11 18:19:03 +01:00
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return 0;
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}
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2016-10-03 17:25:56 +01:00
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if (ssl->server) {
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if (!tls13_set_traffic_key(ssl, type_handshake, evp_aead_open,
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client_traffic_secret, hs->hash_len) ||
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!tls13_set_traffic_key(ssl, type_handshake, evp_aead_seal,
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server_traffic_secret, hs->hash_len)) {
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return 0;
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}
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} else {
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if (!tls13_set_traffic_key(ssl, type_handshake, evp_aead_open,
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server_traffic_secret, hs->hash_len) ||
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!tls13_set_traffic_key(ssl, type_handshake, evp_aead_seal,
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client_traffic_secret, hs->hash_len)) {
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return 0;
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}
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}
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2016-07-11 18:19:03 +01:00
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return 1;
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}
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int tls13_derive_traffic_secret_0(SSL *ssl) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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2016-10-03 17:25:56 +01:00
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return derive_secret(ssl, hs->client_traffic_secret_0, hs->hash_len,
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(const uint8_t *)kTLS13LabelClientApplicationTraffic,
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strlen(kTLS13LabelClientApplicationTraffic)) &&
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ssl_log_secret(ssl, "CLIENT_TRAFFIC_SECRET_0",
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hs->client_traffic_secret_0, hs->hash_len) &&
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derive_secret(ssl, hs->server_traffic_secret_0, hs->hash_len,
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(const uint8_t *)kTLS13LabelServerApplicationTraffic,
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strlen(kTLS13LabelServerApplicationTraffic)) &&
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ssl_log_secret(ssl, "SERVER_TRAFFIC_SECRET_0",
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hs->server_traffic_secret_0, hs->hash_len);
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2016-07-11 18:19:03 +01:00
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}
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2016-10-03 17:25:56 +01:00
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static const char kTLS13LabelApplicationTraffic[] =
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"application traffic secret";
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2016-07-26 17:27:38 +01:00
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int tls13_rotate_traffic_key(SSL *ssl, enum evp_aead_direction_t direction) {
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const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
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uint8_t *secret;
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size_t secret_len;
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if (direction == evp_aead_open) {
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secret = ssl->s3->read_traffic_secret;
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secret_len = ssl->s3->read_traffic_secret_len;
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} else {
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secret = ssl->s3->write_traffic_secret;
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secret_len = ssl->s3->write_traffic_secret_len;
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}
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if (!hkdf_expand_label(secret, digest, secret, secret_len,
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(const uint8_t *)kTLS13LabelApplicationTraffic,
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strlen(kTLS13LabelApplicationTraffic), NULL, 0,
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secret_len)) {
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return 0;
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}
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return tls13_set_traffic_key(ssl, type_data, direction, secret, secret_len);
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}
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2016-07-11 18:19:03 +01:00
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static const char kTLS13LabelExporter[] = "exporter master secret";
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static const char kTLS13LabelResumption[] = "resumption master secret";
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int tls13_finalize_keys(SSL *ssl) {
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SSL_HANDSHAKE *hs = ssl->s3->hs;
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ssl->s3->exporter_secret_len = hs->hash_len;
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2016-06-27 21:34:59 +01:00
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ssl->s3->new_session->master_key_length = hs->hash_len;
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2016-07-11 18:19:03 +01:00
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if (!derive_secret(
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|
ssl, ssl->s3->exporter_secret, ssl->s3->exporter_secret_len,
|
|
|
|
(const uint8_t *)kTLS13LabelExporter, strlen(kTLS13LabelExporter)) ||
|
2016-06-27 21:34:59 +01:00
|
|
|
!derive_secret(ssl, ssl->s3->new_session->master_key,
|
|
|
|
ssl->s3->new_session->master_key_length,
|
2016-07-11 18:19:03 +01:00
|
|
|
(const uint8_t *)kTLS13LabelResumption,
|
|
|
|
strlen(kTLS13LabelResumption))) {
|
|
|
|
return 0;
|
|
|
|
}
|
|
|
|
|
|
|
|
return 1;
|
|
|
|
}
|
|
|
|
|
|
|
|
int tls13_finished_mac(SSL *ssl, uint8_t *out, size_t *out_len, int is_server) {
|
|
|
|
SSL_HANDSHAKE *hs = ssl->s3->hs;
|
|
|
|
const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
|
|
|
|
|
|
|
|
uint8_t key[EVP_MAX_MD_SIZE];
|
|
|
|
size_t key_len = EVP_MD_size(digest);
|
|
|
|
|
2016-08-31 21:58:36 +01:00
|
|
|
const uint8_t *traffic_secret;
|
2016-10-03 17:25:56 +01:00
|
|
|
const char *label = "finished";
|
|
|
|
if (is_server == ssl->server) {
|
|
|
|
traffic_secret = ssl->s3->write_traffic_secret;
|
2016-07-11 18:19:03 +01:00
|
|
|
} else {
|
2016-10-03 17:25:56 +01:00
|
|
|
traffic_secret = ssl->s3->read_traffic_secret;
|
2016-07-11 18:19:03 +01:00
|
|
|
}
|
|
|
|
|
|
|
|
uint8_t context_hashes[2 * EVP_MAX_MD_SIZE];
|
|
|
|
size_t context_hashes_len;
|
|
|
|
unsigned len;
|
|
|
|
if (!hkdf_expand_label(key, digest, traffic_secret, hs->hash_len,
|
|
|
|
(const uint8_t *)label, strlen(label), NULL, 0,
|
|
|
|
hs->hash_len) ||
|
|
|
|
!tls13_get_context_hashes(ssl, context_hashes, &context_hashes_len) ||
|
|
|
|
HMAC(digest, key, key_len, context_hashes, context_hashes_len, out,
|
|
|
|
&len) == NULL) {
|
|
|
|
return 0;
|
|
|
|
}
|
|
|
|
*out_len = len;
|
|
|
|
return 1;
|
|
|
|
}
|
|
|
|
|
2016-07-29 19:32:55 +01:00
|
|
|
static const char kTLS13LabelResumptionPSK[] = "resumption psk";
|
|
|
|
static const char kTLS13LabelResumptionContext[] = "resumption context";
|
|
|
|
|
|
|
|
int tls13_resumption_psk(SSL *ssl, uint8_t *out, size_t out_len,
|
|
|
|
const SSL_SESSION *session) {
|
|
|
|
const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
|
|
|
|
return hkdf_expand_label(out, digest, session->master_key,
|
|
|
|
session->master_key_length,
|
|
|
|
(const uint8_t *)kTLS13LabelResumptionPSK,
|
|
|
|
strlen(kTLS13LabelResumptionPSK), NULL, 0, out_len);
|
|
|
|
}
|
|
|
|
|
|
|
|
int tls13_resumption_context(SSL *ssl, uint8_t *out, size_t out_len,
|
|
|
|
const SSL_SESSION *session) {
|
|
|
|
const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
|
|
|
|
return hkdf_expand_label(out, digest, session->master_key,
|
|
|
|
session->master_key_length,
|
|
|
|
(const uint8_t *)kTLS13LabelResumptionContext,
|
|
|
|
strlen(kTLS13LabelResumptionContext), NULL, 0,
|
|
|
|
out_len);
|
|
|
|
}
|
|
|
|
|
2016-07-11 18:19:03 +01:00
|
|
|
int tls13_export_keying_material(SSL *ssl, uint8_t *out, size_t out_len,
|
|
|
|
const char *label, size_t label_len,
|
|
|
|
const uint8_t *context, size_t context_len,
|
|
|
|
int use_context) {
|
|
|
|
const EVP_MD *digest = ssl_get_handshake_digest(ssl_get_algorithm_prf(ssl));
|
|
|
|
|
|
|
|
const uint8_t *hash = NULL;
|
|
|
|
size_t hash_len = 0;
|
|
|
|
if (use_context) {
|
|
|
|
hash = context;
|
|
|
|
hash_len = context_len;
|
|
|
|
}
|
|
|
|
return hkdf_expand_label(out, digest, ssl->s3->exporter_secret,
|
|
|
|
ssl->s3->exporter_secret_len, (const uint8_t *)label,
|
|
|
|
label_len, hash, hash_len, out_len);
|
|
|
|
}
|