Green Sky
a5093c4aa3
3e05824b80 refactor: Rename `out` parameters to `out_$something`. 0199c0f17f cleanup: apply the same scheme to types aebbfabe26 cleanup: event length naming inconsistencies 2457125aa8 cleanup: align group send err enum order git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: 3e05824b80eb9bee33e8254cba0780d84c522182
495 lines
15 KiB
C
495 lines
15 KiB
C
/* SPDX-License-Identifier: GPL-3.0-or-later
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* Copyright © 2016-2020 The TokTok team.
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* Copyright © 2015 Tox project.
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*/
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/**
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* Packer and unpacker functions for saving and loading groups.
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*/
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#include "group_pack.h"
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include "DHT.h"
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#include "attributes.h"
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#include "bin_pack.h"
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#include "bin_unpack.h"
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#include "ccompat.h"
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#include "crypto_core.h"
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#include "crypto_core_pack.h"
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#include "group_common.h"
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#include "group_moderation.h"
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#include "logger.h"
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#include "network.h"
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#include "util.h"
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bool group_privacy_state_from_int(uint8_t value, Group_Privacy_State *out_enum)
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{
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switch (value) {
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case GI_PUBLIC: {
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*out_enum = GI_PUBLIC;
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return true;
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}
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case GI_PRIVATE: {
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*out_enum = GI_PRIVATE;
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return true;
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}
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default: {
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*out_enum = GI_PUBLIC;
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return false;
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}
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}
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}
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bool group_voice_state_from_int(uint8_t value, Group_Voice_State *out_enum)
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{
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switch (value) {
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case GV_ALL: {
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*out_enum = GV_ALL;
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return true;
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}
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case GV_MODS: {
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*out_enum = GV_MODS;
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return true;
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}
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case GV_FOUNDER: {
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*out_enum = GV_FOUNDER;
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return true;
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}
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default: {
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*out_enum = GV_ALL;
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return false;
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}
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}
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}
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non_null()
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static bool load_unpack_state_values(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 8, nullptr)) {
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LOGGER_ERROR(chat->log, "Group state values array malformed");
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return false;
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}
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bool manually_disconnected = false;
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uint8_t privacy_state = 0;
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uint8_t voice_state = 0;
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if (!(bin_unpack_bool(bu, &manually_disconnected)
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&& bin_unpack_u16(bu, &chat->shared_state.group_name_len)
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&& bin_unpack_u08(bu, &privacy_state)
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&& bin_unpack_u16(bu, &chat->shared_state.maxpeers)
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&& bin_unpack_u16(bu, &chat->shared_state.password_length)
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&& bin_unpack_u32(bu, &chat->shared_state.version)
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&& bin_unpack_u32(bu, &chat->shared_state.topic_lock)
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&& bin_unpack_u08(bu, &voice_state))) {
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LOGGER_ERROR(chat->log, "Failed to unpack state value");
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return false;
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}
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chat->connection_state = manually_disconnected ? CS_DISCONNECTED : CS_CONNECTING;
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group_privacy_state_from_int(privacy_state, &chat->shared_state.privacy_state);
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group_voice_state_from_int(voice_state, &chat->shared_state.voice_state);
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// we always load saved groups as private in case the group became private while we were offline.
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// this will have no detrimental effect if the group is public, as the correct privacy
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// state will be set via sync.
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chat->join_type = HJ_PRIVATE;
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return true;
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}
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non_null()
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static bool load_unpack_state_bin(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 5, nullptr)) {
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LOGGER_ERROR(chat->log, "Group state binary array malformed");
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return false;
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}
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if (!bin_unpack_bin_fixed(bu, chat->shared_state_sig, SIGNATURE_SIZE)) {
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LOGGER_ERROR(chat->log, "Failed to unpack shared state signature");
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return false;
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}
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if (!unpack_extended_public_key(&chat->shared_state.founder_public_key, bu)) {
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LOGGER_ERROR(chat->log, "Failed to unpack founder public key");
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return false;
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}
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if (!(bin_unpack_bin_max(bu, chat->shared_state.group_name, &chat->shared_state.group_name_len, sizeof(chat->shared_state.group_name))
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&& bin_unpack_bin_max(bu, chat->shared_state.password, &chat->shared_state.password_length, sizeof(chat->shared_state.password))
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&& bin_unpack_bin_fixed(bu, chat->shared_state.mod_list_hash, MOD_MODERATION_HASH_SIZE))) {
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LOGGER_ERROR(chat->log, "Failed to unpack state binary data");
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return false;
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}
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return true;
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}
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non_null()
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static bool load_unpack_topic_info(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 6, nullptr)) {
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LOGGER_ERROR(chat->log, "Group topic array malformed");
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return false;
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}
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if (!(bin_unpack_u32(bu, &chat->topic_info.version)
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&& bin_unpack_u16(bu, &chat->topic_info.length)
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&& bin_unpack_u16(bu, &chat->topic_info.checksum)
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&& bin_unpack_bin_max(bu, chat->topic_info.topic, &chat->topic_info.length, sizeof(chat->topic_info.topic))
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&& bin_unpack_bin_fixed(bu, chat->topic_info.public_sig_key, SIG_PUBLIC_KEY_SIZE)
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&& bin_unpack_bin_fixed(bu, chat->topic_sig, SIGNATURE_SIZE))) {
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LOGGER_ERROR(chat->log, "Failed to unpack topic info");
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return false;
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}
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return true;
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}
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non_null()
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static bool load_unpack_mod_list(GC_Chat *chat, Bin_Unpack *bu)
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{
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uint32_t actual_size = 0;
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if (!bin_unpack_array_fixed(bu, 2, &actual_size)) {
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LOGGER_ERROR(chat->log, "Group mod list array malformed: %d != 2", actual_size);
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return false;
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}
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if (!bin_unpack_u16(bu, &chat->moderation.num_mods)) {
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LOGGER_ERROR(chat->log, "Failed to unpack mod list value");
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return false;
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}
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if (chat->moderation.num_mods == 0) {
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bin_unpack_nil(bu);
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return true;
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}
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if (chat->moderation.num_mods > MOD_MAX_NUM_MODERATORS) {
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LOGGER_ERROR(chat->log, "moderation count %u exceeds maximum %u", chat->moderation.num_mods, MOD_MAX_NUM_MODERATORS);
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chat->moderation.num_mods = MOD_MAX_NUM_MODERATORS;
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}
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uint8_t *packed_mod_list = (uint8_t *)malloc(chat->moderation.num_mods * MOD_LIST_ENTRY_SIZE);
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if (packed_mod_list == nullptr) {
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LOGGER_ERROR(chat->log, "Failed to allocate memory for packed mod list");
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return false;
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}
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const size_t packed_size = chat->moderation.num_mods * MOD_LIST_ENTRY_SIZE;
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if (!bin_unpack_bin_fixed(bu, packed_mod_list, packed_size)) {
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LOGGER_ERROR(chat->log, "Failed to unpack mod list binary data");
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free(packed_mod_list);
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return false;
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}
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if (mod_list_unpack(&chat->moderation, packed_mod_list, packed_size, chat->moderation.num_mods) == -1) {
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LOGGER_ERROR(chat->log, "Failed to unpack mod list info");
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free(packed_mod_list);
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return false;
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}
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free(packed_mod_list);
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return true;
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}
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non_null()
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static bool load_unpack_keys(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 4, nullptr)) {
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LOGGER_ERROR(chat->log, "Group keys array malformed");
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return false;
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}
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if (!(unpack_extended_public_key(&chat->chat_public_key, bu)
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&& unpack_extended_secret_key(&chat->chat_secret_key, bu)
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&& unpack_extended_public_key(&chat->self_public_key, bu)
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&& unpack_extended_secret_key(&chat->self_secret_key, bu))) {
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LOGGER_ERROR(chat->log, "Failed to unpack keys");
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return false;
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}
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return true;
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}
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non_null()
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static bool load_unpack_self_info(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 4, nullptr)) {
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LOGGER_ERROR(chat->log, "Group self info array malformed");
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return false;
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}
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uint8_t self_nick[MAX_GC_NICK_SIZE];
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uint16_t self_nick_len = 0;
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uint8_t self_role = GR_USER;
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uint8_t self_status = GS_NONE;
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if (!(bin_unpack_u16(bu, &self_nick_len)
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&& bin_unpack_u08(bu, &self_role)
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&& bin_unpack_u08(bu, &self_status))) {
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LOGGER_ERROR(chat->log, "Failed to unpack self values");
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return false;
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}
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if (self_nick_len > MAX_GC_NICK_SIZE) {
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LOGGER_ERROR(chat->log, "self_nick too big (%u bytes), truncating to %d", self_nick_len, MAX_GC_NICK_SIZE);
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self_nick_len = MAX_GC_NICK_SIZE;
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}
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if (!bin_unpack_bin_fixed(bu, self_nick, self_nick_len)) {
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LOGGER_ERROR(chat->log, "Failed to unpack self nick bytes");
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return false;
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}
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// we have to add ourself before setting self info
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if (peer_add(chat, nullptr, chat->self_public_key.enc) != 0) {
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LOGGER_ERROR(chat->log, "Failed to add self to peer list");
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return false;
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}
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if (chat->numpeers == 0) {
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LOGGER_ERROR(chat->log, "Failed to unpack self: numpeers should be > 0");
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return false;
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}
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GC_Peer *self = &chat->group[0];
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self->gconn.addr.public_key = chat->self_public_key;
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memcpy(self->nick, self_nick, self_nick_len);
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self->nick_length = self_nick_len;
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self->role = (Group_Role)self_role;
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self->status = (Group_Peer_Status)self_status;
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self->gconn.confirmed = true;
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return true;
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}
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non_null()
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static bool load_unpack_saved_peers(GC_Chat *chat, Bin_Unpack *bu)
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{
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if (!bin_unpack_array_fixed(bu, 2, nullptr)) {
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LOGGER_ERROR(chat->log, "Group saved peers array malformed");
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return false;
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}
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// Saved peers
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uint16_t saved_peers_size = 0;
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if (!bin_unpack_u16(bu, &saved_peers_size)) {
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LOGGER_ERROR(chat->log, "Failed to unpack saved peers value");
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return false;
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}
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if (saved_peers_size == 0) {
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bin_unpack_nil(bu);
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return true;
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}
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uint8_t *saved_peers = (uint8_t *)malloc(saved_peers_size * GC_SAVED_PEER_SIZE);
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if (saved_peers == nullptr) {
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LOGGER_ERROR(chat->log, "Failed to allocate memory for saved peer list");
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return false;
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}
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if (!bin_unpack_bin_fixed(bu, saved_peers, saved_peers_size)) {
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LOGGER_ERROR(chat->log, "Failed to unpack saved peers binary data");
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free(saved_peers);
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return false;
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}
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if (unpack_gc_saved_peers(chat, saved_peers, saved_peers_size) == -1) {
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LOGGER_ERROR(chat->log, "Failed to unpack saved peers"); // recoverable error
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}
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free(saved_peers);
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return true;
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}
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bool gc_load_unpack_group(GC_Chat *chat, Bin_Unpack *bu)
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{
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uint32_t actual_size;
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if (!bin_unpack_array_fixed(bu, 7, &actual_size)) {
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LOGGER_ERROR(chat->log, "Group info array malformed: %d != 7", actual_size);
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return false;
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}
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return load_unpack_state_values(chat, bu)
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&& load_unpack_state_bin(chat, bu)
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&& load_unpack_topic_info(chat, bu)
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&& load_unpack_mod_list(chat, bu)
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&& load_unpack_keys(chat, bu)
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&& load_unpack_self_info(chat, bu)
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&& load_unpack_saved_peers(chat, bu);
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}
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non_null()
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static void save_pack_state_values(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 8);
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bin_pack_bool(bp, chat->connection_state == CS_DISCONNECTED); // 1
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bin_pack_u16(bp, chat->shared_state.group_name_len); // 2
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bin_pack_u08(bp, chat->shared_state.privacy_state); // 3
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bin_pack_u16(bp, chat->shared_state.maxpeers); // 4
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bin_pack_u16(bp, chat->shared_state.password_length); // 5
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bin_pack_u32(bp, chat->shared_state.version); // 6
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bin_pack_u32(bp, chat->shared_state.topic_lock); // 7
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bin_pack_u08(bp, chat->shared_state.voice_state); // 8
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}
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non_null()
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static void save_pack_state_bin(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 5);
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bin_pack_bin(bp, chat->shared_state_sig, SIGNATURE_SIZE); // 1
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pack_extended_public_key(&chat->shared_state.founder_public_key, bp); // 2
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bin_pack_bin(bp, chat->shared_state.group_name, chat->shared_state.group_name_len); // 3
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bin_pack_bin(bp, chat->shared_state.password, chat->shared_state.password_length); // 4
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bin_pack_bin(bp, chat->shared_state.mod_list_hash, MOD_MODERATION_HASH_SIZE); // 5
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}
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non_null()
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static void save_pack_topic_info(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 6);
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bin_pack_u32(bp, chat->topic_info.version); // 1
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bin_pack_u16(bp, chat->topic_info.length); // 2
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bin_pack_u16(bp, chat->topic_info.checksum); // 3
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bin_pack_bin(bp, chat->topic_info.topic, chat->topic_info.length); // 4
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bin_pack_bin(bp, chat->topic_info.public_sig_key, SIG_PUBLIC_KEY_SIZE); // 5
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bin_pack_bin(bp, chat->topic_sig, SIGNATURE_SIZE); // 6
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}
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non_null()
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static void save_pack_mod_list(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 2);
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const uint16_t num_mods = min_u16(chat->moderation.num_mods, MOD_MAX_NUM_MODERATORS);
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if (num_mods == 0) {
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bin_pack_u16(bp, num_mods); // 1
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bin_pack_nil(bp); // 2
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return;
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}
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uint8_t *packed_mod_list = (uint8_t *)malloc(num_mods * MOD_LIST_ENTRY_SIZE);
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// we can still recover without the mod list
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if (packed_mod_list == nullptr) {
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bin_pack_u16(bp, 0); // 1
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bin_pack_nil(bp); // 2
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LOGGER_ERROR(chat->log, "Failed to allocate memory for moderation list");
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return;
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}
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bin_pack_u16(bp, num_mods); // 1
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mod_list_pack(&chat->moderation, packed_mod_list);
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const size_t packed_size = num_mods * MOD_LIST_ENTRY_SIZE;
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bin_pack_bin(bp, packed_mod_list, packed_size); // 2
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free(packed_mod_list);
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}
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non_null()
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static void save_pack_keys(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 4);
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pack_extended_public_key(&chat->chat_public_key, bp); // 1
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pack_extended_secret_key(&chat->chat_secret_key, bp); // 2
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pack_extended_public_key(&chat->self_public_key, bp); // 3
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pack_extended_secret_key(&chat->self_secret_key, bp); // 4
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}
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non_null()
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static void save_pack_self_info(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 4);
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GC_Peer *self = &chat->group[0];
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if (self->nick_length > MAX_GC_NICK_SIZE) {
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LOGGER_ERROR(chat->log, "self_nick is too big (%u). Truncating to %d", self->nick_length, MAX_GC_NICK_SIZE);
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self->nick_length = MAX_GC_NICK_SIZE;
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}
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bin_pack_u16(bp, self->nick_length); // 1
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bin_pack_u08(bp, (uint8_t)self->role); // 2
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bin_pack_u08(bp, self->status); // 3
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bin_pack_bin(bp, self->nick, self->nick_length); // 4
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}
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non_null()
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static void save_pack_saved_peers(const GC_Chat *chat, Bin_Pack *bp)
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{
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bin_pack_array(bp, 2);
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uint8_t *saved_peers = (uint8_t *)malloc(GC_MAX_SAVED_PEERS * GC_SAVED_PEER_SIZE);
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// we can still recover without the saved peers list
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if (saved_peers == nullptr) {
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bin_pack_u16(bp, 0); // 1
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bin_pack_nil(bp); // 2
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LOGGER_ERROR(chat->log, "Failed to allocate memory for saved peers list");
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return;
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}
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uint16_t packed_size = 0;
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const int count = pack_gc_saved_peers(chat, saved_peers, GC_MAX_SAVED_PEERS * GC_SAVED_PEER_SIZE, &packed_size);
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if (count < 0) {
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LOGGER_ERROR(chat->log, "Failed to pack saved peers");
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}
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bin_pack_u16(bp, packed_size); // 1
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|
|
if (packed_size == 0) {
|
|
bin_pack_nil(bp); // 2
|
|
free(saved_peers);
|
|
return;
|
|
}
|
|
|
|
bin_pack_bin(bp, saved_peers, packed_size); // 2
|
|
|
|
free(saved_peers);
|
|
}
|
|
|
|
void gc_save_pack_group(const GC_Chat *chat, Bin_Pack *bp)
|
|
{
|
|
if (chat->numpeers == 0) {
|
|
LOGGER_ERROR(chat->log, "Failed to pack group: numpeers is 0");
|
|
return;
|
|
}
|
|
|
|
bin_pack_array(bp, 7);
|
|
|
|
save_pack_state_values(chat, bp); // 1
|
|
save_pack_state_bin(chat, bp); // 2
|
|
save_pack_topic_info(chat, bp); // 3
|
|
save_pack_mod_list(chat, bp); // 4
|
|
save_pack_keys(chat, bp); // 5
|
|
save_pack_self_info(chat, bp); // 6
|
|
save_pack_saved_peers(chat, bp); // 7
|
|
}
|