mirror of
https://github.com/danog/ton.git
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449 lines
18 KiB
C++
449 lines
18 KiB
C++
/*
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This file is part of TON Blockchain Library.
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TON Blockchain Library is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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TON Blockchain Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with TON Blockchain Library. If not, see <http://www.gnu.org/licenses/>.
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Copyright 2017-2019 Telegram Systems LLP
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*/
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#include "full-node.hpp"
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#include "ton/ton-shard.h"
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#include "ton/ton-io.hpp"
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#include "td/actor/MultiPromise.h"
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namespace ton {
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namespace validator {
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namespace fullnode {
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void FullNodeImpl::add_permanent_key(PublicKeyHash key, td::Promise<td::Unit> promise) {
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if (local_keys_.count(key)) {
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promise.set_value(td::Unit());
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return;
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}
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local_keys_.insert(key);
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if (!sign_cert_by_.is_zero()) {
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promise.set_value(td::Unit());
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return;
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}
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for (auto &x : all_validators_) {
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if (x == key) {
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sign_cert_by_ = key;
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}
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}
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for (auto &shard : shards_) {
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td::actor::send_closure(shard.second, &FullNodeShard::update_validators, all_validators_, sign_cert_by_);
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}
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promise.set_value(td::Unit());
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}
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void FullNodeImpl::del_permanent_key(PublicKeyHash key, td::Promise<td::Unit> promise) {
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if (!local_keys_.count(key)) {
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promise.set_value(td::Unit());
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return;
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}
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local_keys_.erase(key);
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if (sign_cert_by_ != key) {
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promise.set_value(td::Unit());
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return;
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}
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sign_cert_by_ = PublicKeyHash::zero();
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for (auto &x : all_validators_) {
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if (local_keys_.count(x)) {
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sign_cert_by_ = x;
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}
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}
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for (auto &shard : shards_) {
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td::actor::send_closure(shard.second, &FullNodeShard::update_validators, all_validators_, sign_cert_by_);
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}
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promise.set_value(td::Unit());
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}
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void FullNodeImpl::update_adnl_id(adnl::AdnlNodeIdShort adnl_id, td::Promise<td::Unit> promise) {
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adnl_id_ = adnl_id;
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td::MultiPromise mp;
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auto ig = mp.init_guard();
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ig.add_promise(std::move(promise));
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for (auto &s : shards_) {
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td::actor::send_closure(s.second, &FullNodeShard::update_adnl_id, adnl_id, ig.get_promise());
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}
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}
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void FullNodeImpl::initial_read_complete(BlockHandle top_handle) {
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auto P = td::PromiseCreator::lambda([SelfId = actor_id(this)](td::Result<td::Unit> R) {
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R.ensure();
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td::actor::send_closure(SelfId, &FullNodeImpl::sync_completed);
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});
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auto it = shards_.find(ShardIdFull{masterchainId});
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CHECK(it != shards_.end());
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td::actor::send_closure(it->second, &FullNodeShard::set_handle, top_handle, std::move(P));
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}
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void FullNodeImpl::add_shard(ShardIdFull shard) {
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LOG(WARNING) << "add shard " << shard;
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while (true) {
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if (shards_.count(shard) == 0) {
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shards_.emplace(shard, FullNodeShard::create(shard, local_id_, adnl_id_, zero_state_file_hash_, keyring_, adnl_,
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rldp_, overlays_, validator_manager_, client_));
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if (all_validators_.size() > 0) {
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td::actor::send_closure(shards_[shard], &FullNodeShard::update_validators, all_validators_, sign_cert_by_);
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}
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} else {
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break;
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}
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if (shard.shard == shardIdAll) {
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break;
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}
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shard = shard_parent(shard);
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}
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}
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void FullNodeImpl::del_shard(ShardIdFull shard) {
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LOG(FATAL) << "deleting shards not implemented: shard=" << shard;
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shards_.erase(shard);
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}
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void FullNodeImpl::sync_completed() {
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td::actor::send_closure(validator_manager_, &ValidatorManagerInterface::sync_complete, [](td::Unit) {});
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}
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void FullNodeImpl::send_ihr_message(AccountIdPrefixFull dst, td::BufferSlice data) {
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auto shard = get_shard(ShardIdFull{masterchainId});
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping OUT ihr message to unknown shard";
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::send_ihr_message, std::move(data));
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}
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void FullNodeImpl::send_ext_message(AccountIdPrefixFull dst, td::BufferSlice data) {
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auto shard = get_shard(dst);
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping OUT ext message to unknown shard";
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::send_external_message, std::move(data));
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}
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void FullNodeImpl::send_shard_block_info(BlockIdExt block_id, CatchainSeqno cc_seqno, td::BufferSlice data) {
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auto shard = get_shard(ShardIdFull{masterchainId, shardIdAll});
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping OUT shard block info message to unknown shard";
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::send_shard_block_info, block_id, cc_seqno, std::move(data));
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}
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void FullNodeImpl::send_broadcast(BlockBroadcast broadcast) {
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auto shard = get_shard(ShardIdFull{masterchainId});
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping OUT broadcast to unknown shard";
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::send_broadcast, std::move(broadcast));
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}
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void FullNodeImpl::download_block(BlockIdExt id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<ReceivedBlock> promise) {
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auto shard = get_shard(id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download block query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::download_block, id, priority, timeout, std::move(promise));
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}
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void FullNodeImpl::download_zero_state(BlockIdExt id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) {
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auto shard = get_shard(id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download state query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::download_zero_state, id, priority, timeout, std::move(promise));
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}
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void FullNodeImpl::download_persistent_state(BlockIdExt id, BlockIdExt masterchain_block_id, td::uint32 priority,
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td::Timestamp timeout, td::Promise<td::BufferSlice> promise) {
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auto shard = get_shard(id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download state diff query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::download_persistent_state, id, masterchain_block_id, priority, timeout,
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std::move(promise));
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}
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void FullNodeImpl::download_block_proof(BlockIdExt block_id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) {
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auto shard = get_shard(block_id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download proof query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::download_block_proof, block_id, priority, timeout, std::move(promise));
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}
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void FullNodeImpl::download_block_proof_link(BlockIdExt block_id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) {
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auto shard = get_shard(block_id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download proof link query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::download_block_proof_link, block_id, priority, timeout,
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std::move(promise));
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}
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void FullNodeImpl::get_next_key_blocks(BlockIdExt block_id, td::Timestamp timeout,
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td::Promise<std::vector<BlockIdExt>> promise) {
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auto shard = get_shard(block_id.shard_full());
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if (shard.empty()) {
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VLOG(FULL_NODE_WARNING) << "dropping download proof link query to unknown shard";
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promise.set_error(td::Status::Error(ErrorCode::notready, "shard not ready"));
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return;
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}
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td::actor::send_closure(shard, &FullNodeShard::get_next_key_blocks, block_id, timeout, std::move(promise));
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}
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td::actor::ActorId<FullNodeShard> FullNodeImpl::get_shard(ShardIdFull shard) {
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while (shards_.count(shard) == 0) {
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if (shard.shard == shardIdAll) {
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return td::actor::ActorId<FullNodeShard>{};
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}
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shard = shard_parent(shard);
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}
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return shards_[shard].get();
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}
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td::actor::ActorId<FullNodeShard> FullNodeImpl::get_shard(AccountIdPrefixFull dst) {
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return get_shard(shard_prefix(dst, 60));
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}
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void FullNodeImpl::got_key_block_proof(td::Ref<ProofLink> proof) {
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auto R = proof->get_key_block_config();
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R.ensure();
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auto config = R.move_as_ok();
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PublicKeyHash l = PublicKeyHash::zero();
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std::vector<PublicKeyHash> keys;
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for (td::int32 i = -1; i <= 1; i++) {
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auto r = config->get_total_validator_set(i < 0 ? i : 1 - i);
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if (r.not_null()) {
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auto vec = r->export_vector();
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for (auto &el : vec) {
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auto key = ValidatorFullId{el.key}.compute_short_id();
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keys.push_back(key);
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if (local_keys_.count(key)) {
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l = key;
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}
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}
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}
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}
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if (keys == all_validators_) {
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return;
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}
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all_validators_ = keys;
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sign_cert_by_ = l;
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CHECK(all_validators_.size() > 0);
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for (auto &shard : shards_) {
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td::actor::send_closure(shard.second, &FullNodeShard::update_validators, all_validators_, sign_cert_by_);
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}
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}
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void FullNodeImpl::got_zero_block_state(td::Ref<ShardState> state) {
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auto m = td::Ref<MasterchainState>{std::move(state)};
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PublicKeyHash l = PublicKeyHash::zero();
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std::vector<PublicKeyHash> keys;
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for (td::int32 i = -1; i <= 1; i++) {
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auto r = m->get_total_validator_set(i < 0 ? i : 1 - i);
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if (r.not_null()) {
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auto vec = r->export_vector();
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for (auto &el : vec) {
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auto key = ValidatorFullId{el.key}.compute_short_id();
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keys.push_back(key);
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if (local_keys_.count(key)) {
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l = key;
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}
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}
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}
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}
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if (keys == all_validators_) {
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return;
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}
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all_validators_ = keys;
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sign_cert_by_ = l;
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CHECK(all_validators_.size() > 0);
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for (auto &shard : shards_) {
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td::actor::send_closure(shard.second, &FullNodeShard::update_validators, all_validators_, sign_cert_by_);
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}
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}
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void FullNodeImpl::new_key_block(BlockHandle handle) {
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if (handle->id().seqno() == 0) {
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auto P = td::PromiseCreator::lambda([SelfId = actor_id(this)](td::Result<td::Ref<ShardState>> R) {
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if (R.is_error()) {
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VLOG(FULL_NODE_WARNING) << "failed to get zero state: " << R.move_as_error();
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} else {
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td::actor::send_closure(SelfId, &FullNodeImpl::got_zero_block_state, R.move_as_ok());
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}
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});
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td::actor::send_closure(validator_manager_, &ValidatorManagerInterface::get_shard_state_from_db, handle,
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std::move(P));
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} else {
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CHECK(handle->is_key_block());
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auto P = td::PromiseCreator::lambda([SelfId = actor_id(this)](td::Result<td::Ref<ProofLink>> R) {
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if (R.is_error()) {
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VLOG(FULL_NODE_WARNING) << "failed to get key block proof: " << R.move_as_error();
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} else {
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td::actor::send_closure(SelfId, &FullNodeImpl::got_key_block_proof, R.move_as_ok());
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}
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});
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td::actor::send_closure(validator_manager_, &ValidatorManagerInterface::get_block_proof_link_from_db, handle,
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std::move(P));
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}
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}
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void FullNodeImpl::start_up() {
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if (local_id_.is_zero()) {
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auto pk = ton::PrivateKey{ton::privkeys::Ed25519::random()};
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local_id_ = pk.compute_short_id();
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td::actor::send_closure(keyring_, &ton::keyring::Keyring::add_key, std::move(pk), true, [](td::Unit) {});
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}
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class Callback : public ValidatorManagerInterface::Callback {
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public:
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void initial_read_complete(BlockHandle handle) override {
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td::actor::send_closure(id_, &FullNodeImpl::initial_read_complete, handle);
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}
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void add_shard(ShardIdFull shard) override {
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td::actor::send_closure(id_, &FullNodeImpl::add_shard, shard);
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}
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void del_shard(ShardIdFull shard) override {
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td::actor::send_closure(id_, &FullNodeImpl::del_shard, shard);
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}
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void send_ihr_message(AccountIdPrefixFull dst, td::BufferSlice data) override {
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td::actor::send_closure(id_, &FullNodeImpl::send_ihr_message, dst, std::move(data));
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}
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void send_ext_message(AccountIdPrefixFull dst, td::BufferSlice data) override {
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td::actor::send_closure(id_, &FullNodeImpl::send_ext_message, dst, std::move(data));
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}
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void send_shard_block_info(BlockIdExt block_id, CatchainSeqno cc_seqno, td::BufferSlice data) override {
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td::actor::send_closure(id_, &FullNodeImpl::send_shard_block_info, block_id, cc_seqno, std::move(data));
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}
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void send_broadcast(BlockBroadcast broadcast) override {
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td::actor::send_closure(id_, &FullNodeImpl::send_broadcast, std::move(broadcast));
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}
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void download_block(BlockIdExt id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<ReceivedBlock> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::download_block, id, priority, timeout, std::move(promise));
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}
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void download_zero_state(BlockIdExt id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::download_zero_state, id, priority, timeout, std::move(promise));
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}
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void download_persistent_state(BlockIdExt id, BlockIdExt masterchain_block_id, td::uint32 priority,
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td::Timestamp timeout, td::Promise<td::BufferSlice> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::download_persistent_state, id, masterchain_block_id, priority,
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timeout, std::move(promise));
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}
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void download_block_proof(BlockIdExt block_id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::download_block_proof, block_id, priority, timeout,
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std::move(promise));
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}
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void download_block_proof_link(BlockIdExt block_id, td::uint32 priority, td::Timestamp timeout,
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td::Promise<td::BufferSlice> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::download_block_proof_link, block_id, priority, timeout,
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std::move(promise));
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}
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void get_next_key_blocks(BlockIdExt block_id, td::Timestamp timeout,
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td::Promise<std::vector<BlockIdExt>> promise) override {
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td::actor::send_closure(id_, &FullNodeImpl::get_next_key_blocks, block_id, timeout, std::move(promise));
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}
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void new_key_block(BlockHandle handle) override {
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td::actor::send_closure(id_, &FullNodeImpl::new_key_block, std::move(handle));
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}
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Callback(td::actor::ActorId<FullNodeImpl> id) : id_(id) {
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}
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private:
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td::actor::ActorId<FullNodeImpl> id_;
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};
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auto P = td::PromiseCreator::lambda([](td::Unit R) {});
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td::actor::send_closure(validator_manager_, &ValidatorManagerInterface::install_callback,
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std::make_unique<Callback>(actor_id(this)), std::move(P));
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}
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FullNodeImpl::FullNodeImpl(PublicKeyHash local_id, adnl::AdnlNodeIdShort adnl_id, FileHash zero_state_file_hash,
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td::actor::ActorId<keyring::Keyring> keyring, td::actor::ActorId<adnl::Adnl> adnl,
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td::actor::ActorId<rldp::Rldp> rldp, td::actor::ActorId<dht::Dht> dht,
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td::actor::ActorId<overlay::Overlays> overlays,
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td::actor::ActorId<ValidatorManagerInterface> validator_manager,
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td::actor::ActorId<adnl::AdnlExtClient> client, std::string db_root)
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: local_id_(local_id)
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, adnl_id_(adnl_id)
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, zero_state_file_hash_(zero_state_file_hash)
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, keyring_(keyring)
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, adnl_(adnl)
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, rldp_(rldp)
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, dht_(dht)
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, overlays_(overlays)
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, validator_manager_(validator_manager)
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, client_(client)
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, db_root_(db_root) {
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add_shard(ShardIdFull{masterchainId});
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}
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td::actor::ActorOwn<FullNode> FullNode::create(ton::PublicKeyHash local_id, adnl::AdnlNodeIdShort adnl_id,
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FileHash zero_state_file_hash,
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td::actor::ActorId<keyring::Keyring> keyring,
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td::actor::ActorId<adnl::Adnl> adnl, td::actor::ActorId<rldp::Rldp> rldp,
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td::actor::ActorId<dht::Dht> dht,
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td::actor::ActorId<overlay::Overlays> overlays,
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td::actor::ActorId<ValidatorManagerInterface> validator_manager,
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td::actor::ActorId<adnl::AdnlExtClient> client, std::string db_root) {
|
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return td::actor::create_actor<FullNodeImpl>("fullnode", local_id, adnl_id, zero_state_file_hash, keyring, adnl, rldp,
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dht, overlays, validator_manager, client, db_root);
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}
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} // namespace fullnode
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|
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} // namespace validator
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|
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} // namespace ton
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