498 lines
15 KiB
C++
498 lines
15 KiB
C++
/* Copyright 2015, 2016 OpenMarket Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "olm/session.hh"
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#include "olm/cipher.h"
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#include "olm/crypto.h"
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#include "olm/account.hh"
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#include "olm/memory.hh"
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#include "olm/message.hh"
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#include "olm/pickle.hh"
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#include <cstring>
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#include <stdio.h>
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namespace {
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static const std::uint8_t PROTOCOL_VERSION = 0x3;
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static const std::uint8_t ROOT_KDF_INFO[] = "OLM_ROOT";
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static const std::uint8_t RATCHET_KDF_INFO[] = "OLM_RATCHET";
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static const std::uint8_t CIPHER_KDF_INFO[] = "OLM_KEYS";
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static const olm::KdfInfo OLM_KDF_INFO = {
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ROOT_KDF_INFO, sizeof(ROOT_KDF_INFO) - 1,
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RATCHET_KDF_INFO, sizeof(RATCHET_KDF_INFO) - 1
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};
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static const struct _olm_cipher_aes_sha_256 OLM_CIPHER =
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OLM_CIPHER_INIT_AES_SHA_256(CIPHER_KDF_INFO);
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} // namespace
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olm::Session::Session(
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) : ratchet(OLM_KDF_INFO, OLM_CIPHER_BASE(&OLM_CIPHER)),
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last_error(OlmErrorCode::OLM_SUCCESS),
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received_message(false) {
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}
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std::size_t olm::Session::new_outbound_session_random_length() {
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return CURVE25519_RANDOM_LENGTH * 2;
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}
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std::size_t olm::Session::new_outbound_session(
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olm::Account const & local_account,
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_olm_curve25519_public_key const & identity_key,
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_olm_curve25519_public_key const & one_time_key,
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std::uint8_t const * random, std::size_t random_length
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) {
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if (random_length < new_outbound_session_random_length()) {
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last_error = OlmErrorCode::OLM_NOT_ENOUGH_RANDOM;
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return std::size_t(-1);
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}
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_olm_curve25519_key_pair base_key;
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_olm_crypto_curve25519_generate_key(random, &base_key);
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_olm_curve25519_key_pair ratchet_key;
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_olm_crypto_curve25519_generate_key(random + CURVE25519_RANDOM_LENGTH, &ratchet_key);
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_olm_curve25519_key_pair const & alice_identity_key_pair = (
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local_account.identity_keys.curve25519_key
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);
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received_message = false;
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alice_identity_key = alice_identity_key_pair.public_key;
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alice_base_key = base_key.public_key;
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bob_one_time_key = one_time_key;
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// Calculate the shared secret S via triple DH
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std::uint8_t secret[3 * CURVE25519_SHARED_SECRET_LENGTH];
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std::uint8_t * pos = secret;
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_olm_crypto_curve25519_shared_secret(&alice_identity_key_pair, &one_time_key, pos);
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pos += CURVE25519_SHARED_SECRET_LENGTH;
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_olm_crypto_curve25519_shared_secret(&base_key, &identity_key, pos);
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pos += CURVE25519_SHARED_SECRET_LENGTH;
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_olm_crypto_curve25519_shared_secret(&base_key, &one_time_key, pos);
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ratchet.initialise_as_alice(secret, sizeof(secret), ratchet_key);
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olm::unset(base_key);
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olm::unset(ratchet_key);
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olm::unset(secret);
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return std::size_t(0);
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}
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namespace {
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static bool check_message_fields(
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olm::PreKeyMessageReader & reader, bool have_their_identity_key
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) {
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bool ok = true;
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ok = ok && (have_their_identity_key || reader.identity_key);
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if (reader.identity_key) {
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ok = ok && reader.identity_key_length == CURVE25519_KEY_LENGTH;
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}
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ok = ok && reader.message;
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ok = ok && reader.base_key;
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ok = ok && reader.base_key_length == CURVE25519_KEY_LENGTH;
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ok = ok && reader.one_time_key;
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ok = ok && reader.one_time_key_length == CURVE25519_KEY_LENGTH;
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return ok;
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}
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} // namespace
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std::size_t olm::Session::new_inbound_session(
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olm::Account & local_account,
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_olm_curve25519_public_key const * their_identity_key,
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std::uint8_t const * one_time_key_message, std::size_t message_length
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) {
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olm::PreKeyMessageReader reader;
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decode_one_time_key_message(reader, one_time_key_message, message_length);
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if (!check_message_fields(reader, their_identity_key)) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_FORMAT;
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return std::size_t(-1);
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}
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if (reader.identity_key && their_identity_key) {
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bool same = 0 == std::memcmp(
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their_identity_key->public_key, reader.identity_key, CURVE25519_KEY_LENGTH
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);
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if (!same) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_KEY_ID;
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return std::size_t(-1);
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}
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}
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olm::load_array(alice_identity_key.public_key, reader.identity_key);
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olm::load_array(alice_base_key.public_key, reader.base_key);
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olm::load_array(bob_one_time_key.public_key, reader.one_time_key);
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olm::MessageReader message_reader;
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decode_message(
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message_reader, reader.message, reader.message_length,
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ratchet.ratchet_cipher->ops->mac_length(ratchet.ratchet_cipher)
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);
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if (!message_reader.ratchet_key
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|| message_reader.ratchet_key_length != CURVE25519_KEY_LENGTH) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_FORMAT;
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return std::size_t(-1);
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}
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_olm_curve25519_public_key ratchet_key;
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olm::load_array(ratchet_key.public_key, message_reader.ratchet_key);
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olm::OneTimeKey const * our_one_time_key = local_account.lookup_key(
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bob_one_time_key
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);
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if (!our_one_time_key) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_KEY_ID;
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return std::size_t(-1);
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}
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_olm_curve25519_key_pair const & bob_identity_key = (
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local_account.identity_keys.curve25519_key
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);
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_olm_curve25519_key_pair const & bob_one_time_key = our_one_time_key->key;
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// Calculate the shared secret S via triple DH
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std::uint8_t secret[CURVE25519_SHARED_SECRET_LENGTH * 3];
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std::uint8_t * pos = secret;
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_olm_crypto_curve25519_shared_secret(&bob_one_time_key, &alice_identity_key, pos);
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pos += CURVE25519_SHARED_SECRET_LENGTH;
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_olm_crypto_curve25519_shared_secret(&bob_identity_key, &alice_base_key, pos);
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pos += CURVE25519_SHARED_SECRET_LENGTH;
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_olm_crypto_curve25519_shared_secret(&bob_one_time_key, &alice_base_key, pos);
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ratchet.initialise_as_bob(secret, sizeof(secret), ratchet_key);
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olm::unset(secret);
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return std::size_t(0);
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}
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std::size_t olm::Session::session_id_length() {
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return SHA256_OUTPUT_LENGTH;
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}
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std::size_t olm::Session::session_id(
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std::uint8_t * id, std::size_t id_length
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) {
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if (id_length < session_id_length()) {
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last_error = OlmErrorCode::OLM_OUTPUT_BUFFER_TOO_SMALL;
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return std::size_t(-1);
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}
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std::uint8_t tmp[CURVE25519_KEY_LENGTH * 3];
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std::uint8_t * pos = tmp;
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pos = olm::store_array(pos, alice_identity_key.public_key);
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pos = olm::store_array(pos, alice_base_key.public_key);
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pos = olm::store_array(pos, bob_one_time_key.public_key);
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_olm_crypto_sha256(tmp, sizeof(tmp), id);
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return session_id_length();
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}
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bool olm::Session::matches_inbound_session(
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_olm_curve25519_public_key const * their_identity_key,
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std::uint8_t const * one_time_key_message, std::size_t message_length
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) {
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olm::PreKeyMessageReader reader;
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decode_one_time_key_message(reader, one_time_key_message, message_length);
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if (!check_message_fields(reader, their_identity_key)) {
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return false;
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}
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bool same = true;
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if (reader.identity_key) {
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same = same && 0 == std::memcmp(
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reader.identity_key, alice_identity_key.public_key, CURVE25519_KEY_LENGTH
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);
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}
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if (their_identity_key) {
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same = same && 0 == std::memcmp(
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their_identity_key->public_key, alice_identity_key.public_key,
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CURVE25519_KEY_LENGTH
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);
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}
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same = same && 0 == std::memcmp(
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reader.base_key, alice_base_key.public_key, CURVE25519_KEY_LENGTH
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);
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same = same && 0 == std::memcmp(
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reader.one_time_key, bob_one_time_key.public_key, CURVE25519_KEY_LENGTH
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);
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return same;
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}
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olm::MessageType olm::Session::encrypt_message_type() {
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if (received_message) {
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return olm::MessageType::MESSAGE;
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} else {
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return olm::MessageType::PRE_KEY;
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}
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}
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std::size_t olm::Session::encrypt_message_length(
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std::size_t plaintext_length
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) {
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std::size_t message_length = ratchet.encrypt_output_length(
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plaintext_length
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);
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if (received_message) {
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return message_length;
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}
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return encode_one_time_key_message_length(
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CURVE25519_KEY_LENGTH,
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CURVE25519_KEY_LENGTH,
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CURVE25519_KEY_LENGTH,
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message_length
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);
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}
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std::size_t olm::Session::encrypt_random_length() {
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return ratchet.encrypt_random_length();
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}
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std::size_t olm::Session::encrypt(
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std::uint8_t const * plaintext, std::size_t plaintext_length,
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std::uint8_t const * random, std::size_t random_length,
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std::uint8_t * message, std::size_t message_length
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) {
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if (message_length < encrypt_message_length(plaintext_length)) {
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last_error = OlmErrorCode::OLM_OUTPUT_BUFFER_TOO_SMALL;
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return std::size_t(-1);
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}
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std::uint8_t * message_body;
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std::size_t message_body_length = ratchet.encrypt_output_length(
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plaintext_length
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);
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if (received_message) {
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message_body = message;
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} else {
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olm::PreKeyMessageWriter writer;
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encode_one_time_key_message(
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writer,
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PROTOCOL_VERSION,
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CURVE25519_KEY_LENGTH,
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CURVE25519_KEY_LENGTH,
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CURVE25519_KEY_LENGTH,
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message_body_length,
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message
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);
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olm::store_array(writer.one_time_key, bob_one_time_key.public_key);
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olm::store_array(writer.identity_key, alice_identity_key.public_key);
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olm::store_array(writer.base_key, alice_base_key.public_key);
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message_body = writer.message;
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}
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std::size_t result = ratchet.encrypt(
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plaintext, plaintext_length,
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random, random_length,
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message_body, message_body_length
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);
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if (result == std::size_t(-1)) {
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last_error = ratchet.last_error;
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ratchet.last_error = OlmErrorCode::OLM_SUCCESS;
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return result;
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}
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return result;
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}
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std::size_t olm::Session::decrypt_max_plaintext_length(
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MessageType message_type,
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std::uint8_t const * message, std::size_t message_length
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) {
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std::uint8_t const * message_body;
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std::size_t message_body_length;
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if (message_type == olm::MessageType::MESSAGE) {
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message_body = message;
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message_body_length = message_length;
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} else {
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olm::PreKeyMessageReader reader;
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decode_one_time_key_message(reader, message, message_length);
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if (!reader.message) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_FORMAT;
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return std::size_t(-1);
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}
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message_body = reader.message;
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message_body_length = reader.message_length;
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}
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std::size_t result = ratchet.decrypt_max_plaintext_length(
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message_body, message_body_length
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);
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if (result == std::size_t(-1)) {
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last_error = ratchet.last_error;
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ratchet.last_error = OlmErrorCode::OLM_SUCCESS;
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}
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return result;
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}
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std::size_t olm::Session::decrypt(
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olm::MessageType message_type,
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std::uint8_t const * message, std::size_t message_length,
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std::uint8_t * plaintext, std::size_t max_plaintext_length
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) {
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std::uint8_t const * message_body;
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std::size_t message_body_length;
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if (message_type == olm::MessageType::MESSAGE) {
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message_body = message;
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message_body_length = message_length;
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} else {
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olm::PreKeyMessageReader reader;
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decode_one_time_key_message(reader, message, message_length);
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if (!reader.message) {
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last_error = OlmErrorCode::OLM_BAD_MESSAGE_FORMAT;
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return std::size_t(-1);
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}
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message_body = reader.message;
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message_body_length = reader.message_length;
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}
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std::size_t result = ratchet.decrypt(
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message_body, message_body_length, plaintext, max_plaintext_length
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);
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if (result == std::size_t(-1)) {
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last_error = ratchet.last_error;
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ratchet.last_error = OlmErrorCode::OLM_SUCCESS;
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return result;
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}
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received_message = true;
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return result;
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}
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void olm::Session::describe(char *describe_buffer, size_t buflen) {
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if (buflen == 0) return;
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describe_buffer[0] = '\0';
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char *buf_pos = describe_buffer;
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int size;
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size = snprintf(
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buf_pos, buflen - (buf_pos - describe_buffer),
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"sender chain index: %d ", ratchet.sender_chain[0].chain_key.index
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);
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if (size > 0) buf_pos += size;
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size = snprintf(buf_pos, buflen - (buf_pos - describe_buffer), "receiver chain indices:");
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if (size > 0) buf_pos += size;
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for (size_t i = 0; i < ratchet.receiver_chains.size(); ++i) {
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size = snprintf(
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buf_pos, buflen - (buf_pos - describe_buffer),
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" %d", ratchet.receiver_chains[i].chain_key.index
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);
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if (size > 0) buf_pos += size;
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}
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size = snprintf(buf_pos, buflen - (buf_pos - describe_buffer), " skipped message keys:");
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if (size >= 0) buf_pos += size;
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for (size_t i = 0; i < ratchet.skipped_message_keys.size(); ++i) {
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size = snprintf(
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buf_pos, buflen - (buf_pos - describe_buffer),
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" %d", ratchet.skipped_message_keys[i].message_key.index
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);
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if (size > 0) buf_pos += size;
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}
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}
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namespace {
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// the master branch writes pickle version 1; the logging_enabled branch writes
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// 0x80000001.
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static const std::uint32_t SESSION_PICKLE_VERSION = 1;
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}
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std::size_t olm::pickle_length(
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Session const & value
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) {
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std::size_t length = 0;
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length += olm::pickle_length(SESSION_PICKLE_VERSION);
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length += olm::pickle_length(value.received_message);
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length += olm::pickle_length(value.alice_identity_key);
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length += olm::pickle_length(value.alice_base_key);
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length += olm::pickle_length(value.bob_one_time_key);
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length += olm::pickle_length(value.ratchet);
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return length;
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}
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std::uint8_t * olm::pickle(
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std::uint8_t * pos,
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Session const & value
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) {
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pos = olm::pickle(pos, SESSION_PICKLE_VERSION);
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pos = olm::pickle(pos, value.received_message);
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pos = olm::pickle(pos, value.alice_identity_key);
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pos = olm::pickle(pos, value.alice_base_key);
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pos = olm::pickle(pos, value.bob_one_time_key);
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pos = olm::pickle(pos, value.ratchet);
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return pos;
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}
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std::uint8_t const * olm::unpickle(
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std::uint8_t const * pos, std::uint8_t const * end,
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Session & value
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) {
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uint32_t pickle_version;
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pos = olm::unpickle(pos, end, pickle_version);
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bool includes_chain_index;
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switch (pickle_version) {
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case 1:
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includes_chain_index = false;
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break;
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case 0x80000001UL:
|
|
includes_chain_index = true;
|
|
break;
|
|
|
|
default:
|
|
value.last_error = OlmErrorCode::OLM_UNKNOWN_PICKLE_VERSION;
|
|
return end;
|
|
}
|
|
|
|
pos = olm::unpickle(pos, end, value.received_message);
|
|
pos = olm::unpickle(pos, end, value.alice_identity_key);
|
|
pos = olm::unpickle(pos, end, value.alice_base_key);
|
|
pos = olm::unpickle(pos, end, value.bob_one_time_key);
|
|
pos = olm::unpickle(pos, end, value.ratchet, includes_chain_index);
|
|
return pos;
|
|
}
|