mirror of
https://github.com/ton-blockchain/ton
synced 2025-02-12 19:22:37 +00:00
408 lines
16 KiB
C++
408 lines
16 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 2017-2020 Telegram Systems LLP
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*/
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#pragma once
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#include "interfaces/validator-manager.h"
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#include "vm/cells.h"
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#include "vm/dict.h"
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#include "block/mc-config.h"
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#include "block/transaction.h"
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#include "shard.hpp"
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#include "signature-set.hpp"
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#include <vector>
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#include <string>
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#include <map>
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#include "common/global-version.h"
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namespace ton {
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namespace validator {
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using td::Ref;
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class ErrorCtxAdd;
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class ErrorCtxSet;
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struct ErrorCtx {
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protected:
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friend class ErrorCtxAdd;
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friend class ErrorCtxSet;
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std::vector<std::string> entries_;
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public:
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ErrorCtx() = default;
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ErrorCtx(std::vector<std::string> str_list) : entries_(std::move(str_list)) {
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}
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ErrorCtx(std::string str) : entries_{str} {
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}
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std::string as_string() const;
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ErrorCtxAdd add_guard(std::string str_add);
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ErrorCtxSet set_guard(std::string str);
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ErrorCtxSet set_guard(std::vector<std::string> str_list);
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};
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class ErrorCtxAdd {
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ErrorCtx& ctx_;
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public:
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ErrorCtxAdd(ErrorCtx& ctx, std::string ctx_elem) : ctx_(ctx) {
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ctx_.entries_.push_back(std::move(ctx_elem));
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}
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~ErrorCtxAdd() {
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ctx_.entries_.pop_back();
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}
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};
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class ErrorCtxSet {
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ErrorCtx& ctx_;
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std::vector<std::string> old_ctx_;
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public:
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ErrorCtxSet(ErrorCtx& ctx, std::vector<std::string> new_ctx) : ctx_(ctx) {
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old_ctx_ = std::move(ctx_.entries_);
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ctx_.entries_ = std::move(new_ctx);
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}
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ErrorCtxSet(ErrorCtx& ctx, std::string new_ctx) : ErrorCtxSet(ctx, std::vector<std::string>{new_ctx}) {
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}
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~ErrorCtxSet() {
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ctx_.entries_ = std::move(old_ctx_);
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}
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};
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inline ErrorCtxAdd ErrorCtx::add_guard(std::string str) {
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return ErrorCtxAdd(*this, std::move(str));
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}
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inline ErrorCtxSet ErrorCtx::set_guard(std::string str) {
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return ErrorCtxSet(*this, std::move(str));
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}
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inline ErrorCtxSet ErrorCtx::set_guard(std::vector<std::string> str_list) {
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return ErrorCtxSet(*this, std::move(str_list));
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}
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/*
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*
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* must write candidate to disk, if accepted
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* can reject block only if it is invalid (i.e. in case of
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* internal errors must retry or crash)
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* only exception: block can be rejected, if it is known from
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* masterchain, that it will not be part of shardchain finalized
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* state
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*
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*/
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class ValidateQuery : public td::actor::Actor {
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static constexpr int supported_version() {
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return SUPPORTED_VERSION;
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}
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static constexpr long long supported_capabilities() {
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return ton::capCreateStatsEnabled | ton::capBounceMsgBody | ton::capReportVersion | ton::capShortDequeue |
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ton::capStoreOutMsgQueueSize | ton::capMsgMetadata | ton::capDeferMessages;
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}
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public:
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ValidateQuery(ShardIdFull shard, BlockIdExt min_masterchain_block_id, std::vector<BlockIdExt> prev,
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BlockCandidate candidate, td::Ref<ValidatorSet> validator_set,
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td::actor::ActorId<ValidatorManager> manager, td::Timestamp timeout,
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td::Promise<ValidateCandidateResult> promise, bool is_fake = false);
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private:
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int verbosity{3 * 1};
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int pending{0};
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const ShardIdFull shard_;
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const BlockIdExt id_;
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BlockIdExt min_mc_block_id;
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std::vector<BlockIdExt> prev_blocks;
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std::vector<Ref<ShardState>> prev_states;
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BlockCandidate block_candidate;
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td::Ref<ValidatorSet> validator_set_;
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td::actor::ActorId<ValidatorManager> manager;
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td::Timestamp timeout;
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td::Promise<ValidateCandidateResult> main_promise;
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bool after_merge_{false};
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bool after_split_{false};
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bool before_split_{false};
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bool want_split_{false};
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bool want_merge_{false};
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bool is_key_block_{false};
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bool update_shard_cc_{false};
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bool is_fake_{false};
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bool prev_key_block_exists_{false};
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bool debug_checks_{false};
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bool outq_cleanup_partial_{false};
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BlockSeqno prev_key_seqno_{~0u};
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int stage_{0};
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td::BitArray<64> shard_pfx_;
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int shard_pfx_len_;
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td::Bits256 created_by_;
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Ref<vm::Cell> prev_state_root_;
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Ref<vm::Cell> state_root_;
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Ref<vm::Cell> state_update_;
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ton::Bits256 prev_state_hash_, state_hash_;
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ErrorCtx error_ctx_;
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td::Ref<MasterchainStateQ> mc_state_, latest_mc_state_;
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td::Ref<vm::Cell> mc_state_root_;
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BlockIdExt mc_blkid_, latest_mc_blkid_;
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ton::BlockSeqno mc_seqno_{0}, latest_mc_seqno_;
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Ref<vm::Cell> block_root_;
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std::vector<Ref<vm::Cell>> collated_roots_;
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std::map<RootHash, Ref<vm::Cell>> virt_roots_;
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std::unique_ptr<vm::Dictionary> top_shard_descr_dict_;
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Ref<vm::CellSlice> shard_hashes_; // from McBlockExtra
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Ref<vm::CellSlice> blk_config_params_; // from McBlockExtra
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Ref<BlockSignatureSet> prev_signatures_; // from McBlockExtra (UNCHECKED)
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Ref<vm::Cell> recover_create_msg_, mint_msg_; // from McBlockExtra (UNCHECKED)
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std::unique_ptr<block::ConfigInfo> config_, new_config_;
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std::unique_ptr<block::ShardConfig> old_shard_conf_; // from reference mc state
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std::unique_ptr<block::ShardConfig> new_shard_conf_; // from shard_hashes_ in mc blocks
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Ref<block::WorkchainInfo> wc_info_;
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std::unique_ptr<vm::AugmentedDictionary> fees_import_dict_;
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Ref<vm::Cell> old_mparams_;
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bool accept_msgs_{true};
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ton::BlockSeqno min_shard_ref_mc_seqno_{~0U};
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ton::UnixTime max_shard_utime_{0};
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ton::LogicalTime max_shard_lt_{0};
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int global_id_{0};
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ton::BlockSeqno vert_seqno_{~0U};
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bool ihr_enabled_{false};
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bool create_stats_enabled_{false};
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ton::BlockSeqno prev_key_block_seqno_;
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ton::BlockIdExt prev_key_block_;
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ton::LogicalTime prev_key_block_lt_;
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std::unique_ptr<block::BlockLimits> block_limits_;
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std::unique_ptr<block::BlockLimitStatus> block_limit_status_;
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td::uint64 total_gas_used_{0}, total_special_gas_used_{0};
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LogicalTime start_lt_, end_lt_;
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UnixTime prev_now_{~0u}, now_{~0u};
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ton::Bits256 rand_seed_;
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std::vector<block::StoragePrices> storage_prices_;
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block::StoragePhaseConfig storage_phase_cfg_{&storage_prices_};
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block::ComputePhaseConfig compute_phase_cfg_;
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block::ActionPhaseConfig action_phase_cfg_;
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td::RefInt256 masterchain_create_fee_, basechain_create_fee_;
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std::vector<block::McShardDescr> neighbors_;
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std::map<BlockSeqno, Ref<MasterchainStateQ>> aux_mc_states_;
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block::ShardState ps_, ns_;
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std::unique_ptr<vm::AugmentedDictionary> sibling_out_msg_queue_;
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std::shared_ptr<block::MsgProcessedUptoCollection> sibling_processed_upto_;
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std::map<td::Bits256, int> block_create_count_;
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unsigned block_create_total_{0};
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std::unique_ptr<vm::AugmentedDictionary> in_msg_dict_, out_msg_dict_, account_blocks_dict_;
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block::ValueFlow value_flow_;
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block::CurrencyCollection import_created_, transaction_fees_, total_burned_{0}, fees_burned_{0};
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td::RefInt256 import_fees_;
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ton::LogicalTime proc_lt_{0}, claimed_proc_lt_{0}, min_enq_lt_{~0ULL};
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ton::Bits256 proc_hash_ = ton::Bits256::zero(), claimed_proc_hash_, min_enq_hash_;
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std::vector<std::tuple<Bits256, LogicalTime, LogicalTime>> msg_proc_lt_;
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std::vector<std::tuple<Bits256, LogicalTime, LogicalTime>> msg_emitted_lt_;
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std::vector<std::tuple<Bits256, Bits256, bool>> lib_publishers_, lib_publishers2_;
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std::map<std::pair<StdSmcAddress, td::uint64>, Ref<vm::Cell>> removed_dispatch_queue_messages_;
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std::map<std::pair<StdSmcAddress, td::uint64>, Ref<vm::Cell>> new_dispatch_queue_messages_;
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std::set<StdSmcAddress> account_expected_defer_all_messages_;
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td::uint64 old_out_msg_queue_size_ = 0, new_out_msg_queue_size_ = 0;
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bool msg_metadata_enabled_ = false;
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bool deferring_messages_enabled_ = false;
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bool store_out_msg_queue_size_ = false;
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td::uint64 processed_account_dispatch_queues_ = 0;
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bool have_unprocessed_account_dispatch_queue_ = false;
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td::PerfWarningTimer perf_timer_;
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static constexpr td::uint32 priority() {
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return 2;
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}
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WorkchainId workchain() const {
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return shard_.workchain;
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}
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void finish_query();
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void abort_query(td::Status error);
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bool reject_query(std::string error, td::BufferSlice reason = {});
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bool reject_query(std::string err_msg, td::Status error, td::BufferSlice reason = {});
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bool soft_reject_query(std::string error, td::BufferSlice reason = {});
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void alarm() override;
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void start_up() override;
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bool save_candidate();
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void written_candidate();
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bool fatal_error(td::Status error);
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bool fatal_error(int err_code, std::string err_msg);
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bool fatal_error(int err_code, std::string err_msg, td::Status error);
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bool fatal_error(std::string err_msg, int err_code = -666);
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std::string error_ctx() const {
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return error_ctx_.as_string();
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}
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ErrorCtxAdd error_ctx_add_guard(std::string str) {
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return error_ctx_.add_guard(std::move(str));
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}
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ErrorCtxSet error_ctx_set_guard(std::string str) {
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return error_ctx_.set_guard(std::move(str));
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}
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bool is_masterchain() const {
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return shard_.is_masterchain();
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}
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td::actor::ActorId<ValidateQuery> get_self() {
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return actor_id(this);
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}
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void request_latest_mc_state();
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void after_get_latest_mc_state(td::Result<std::pair<Ref<MasterchainState>, BlockIdExt>> res);
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void after_get_mc_state(td::Result<Ref<ShardState>> res);
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void got_mc_handle(td::Result<BlockHandle> res);
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void after_get_shard_state(int idx, td::Result<Ref<ShardState>> res);
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bool process_mc_state(Ref<MasterchainState> mc_state);
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bool try_unpack_mc_state();
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bool fetch_config_params();
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bool check_prev_block(const BlockIdExt& listed, const BlockIdExt& prev, bool chk_chain_len = true);
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bool check_prev_block_exact(const BlockIdExt& listed, const BlockIdExt& prev);
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bool check_this_shard_mc_info();
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bool init_parse();
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bool unpack_block_candidate();
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bool extract_collated_data_from(Ref<vm::Cell> croot, int idx);
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bool extract_collated_data();
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bool try_validate();
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bool compute_prev_state();
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bool compute_next_state();
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bool unpack_merge_prev_state();
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bool unpack_prev_state();
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bool unpack_next_state();
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bool unpack_one_prev_state(block::ShardState& ss, BlockIdExt blkid, Ref<vm::Cell> prev_state_root);
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bool split_prev_state(block::ShardState& ss);
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bool request_neighbor_queues();
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void got_neighbor_out_queue(int i, td::Result<Ref<MessageQueue>> res);
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bool register_mc_state(Ref<MasterchainStateQ> other_mc_state);
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bool request_aux_mc_state(BlockSeqno seqno, Ref<MasterchainStateQ>& state);
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Ref<MasterchainStateQ> get_aux_mc_state(BlockSeqno seqno) const;
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void after_get_aux_shard_state(ton::BlockIdExt blkid, td::Result<Ref<ShardState>> res);
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bool check_one_shard(const block::McShardHash& info, const block::McShardHash* sibling,
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const block::WorkchainInfo* wc_info, const block::CatchainValidatorsConfig& ccvc);
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bool check_shard_layout();
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bool register_shard_block_creators(std::vector<td::Bits256> creator_list);
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bool check_cur_validator_set();
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bool check_mc_validator_info(bool update_mc_cc);
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bool check_utime_lt();
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bool prepare_out_msg_queue_size();
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void got_out_queue_size(size_t i, td::Result<td::uint64> res);
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bool fix_one_processed_upto(block::MsgProcessedUpto& proc, ton::ShardIdFull owner, bool allow_cur = false);
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bool fix_processed_upto(block::MsgProcessedUptoCollection& upto, bool allow_cur = false);
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bool fix_all_processed_upto();
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bool add_trivial_neighbor_after_merge();
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bool add_trivial_neighbor();
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bool unpack_block_data();
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bool unpack_precheck_value_flow(Ref<vm::Cell> value_flow_root);
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bool compute_minted_amount(block::CurrencyCollection& to_mint);
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bool precheck_one_account_update(td::ConstBitPtr acc_id, Ref<vm::CellSlice> old_value, Ref<vm::CellSlice> new_value);
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bool precheck_account_updates();
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bool precheck_one_transaction(td::ConstBitPtr acc_id, ton::LogicalTime trans_lt, Ref<vm::CellSlice> trans_csr,
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ton::Bits256& prev_trans_hash, ton::LogicalTime& prev_trans_lt,
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unsigned& prev_trans_lt_len, ton::Bits256& acc_state_hash);
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bool precheck_one_account_block(td::ConstBitPtr acc_id, Ref<vm::CellSlice> acc_blk);
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bool precheck_account_transactions();
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Ref<vm::Cell> lookup_transaction(const ton::StdSmcAddress& addr, ton::LogicalTime lt) const;
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bool is_valid_transaction_ref(Ref<vm::Cell> trans_ref) const;
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bool precheck_one_message_queue_update(td::ConstBitPtr out_msg_id, Ref<vm::CellSlice> old_value,
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Ref<vm::CellSlice> new_value);
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bool precheck_message_queue_update();
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bool check_account_dispatch_queue_update(td::Bits256 addr, Ref<vm::CellSlice> old_queue_csr,
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Ref<vm::CellSlice> new_queue_csr);
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bool unpack_dispatch_queue_update();
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bool update_max_processed_lt_hash(ton::LogicalTime lt, const ton::Bits256& hash);
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bool update_min_enqueued_lt_hash(ton::LogicalTime lt, const ton::Bits256& hash);
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bool check_imported_message(Ref<vm::Cell> msg_env);
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bool is_special_in_msg(const vm::CellSlice& in_msg) const;
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bool check_in_msg(td::ConstBitPtr key, Ref<vm::CellSlice> in_msg);
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bool check_in_msg_descr();
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bool check_out_msg(td::ConstBitPtr key, Ref<vm::CellSlice> out_msg);
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bool check_out_msg_descr();
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bool check_dispatch_queue_update();
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bool check_processed_upto();
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bool check_neighbor_outbound_message(Ref<vm::CellSlice> enq_msg, ton::LogicalTime lt, td::ConstBitPtr key,
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const block::McShardDescr& src_nb, bool& unprocessed);
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bool check_in_queue();
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bool check_delivered_dequeued();
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std::unique_ptr<block::Account> make_account_from(td::ConstBitPtr addr, Ref<vm::CellSlice> account);
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std::unique_ptr<block::Account> unpack_account(td::ConstBitPtr addr);
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bool check_one_transaction(block::Account& account, LogicalTime lt, Ref<vm::Cell> trans_root, bool is_first,
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bool is_last);
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bool check_account_transactions(const StdSmcAddress& acc_addr, Ref<vm::CellSlice> acc_tr);
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bool check_transactions();
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bool scan_account_libraries(Ref<vm::Cell> orig_libs, Ref<vm::Cell> final_libs, const td::Bits256& addr);
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bool check_all_ticktock_processed();
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bool check_message_processing_order();
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bool check_special_message(Ref<vm::Cell> in_msg_root, const block::CurrencyCollection& amount,
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Ref<vm::Cell> addr_cell);
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bool check_special_messages();
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bool check_one_library_update(td::ConstBitPtr key, Ref<vm::CellSlice> old_value, Ref<vm::CellSlice> new_value);
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bool check_shard_libraries();
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bool check_new_state();
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bool check_config_update(Ref<vm::CellSlice> old_conf_params, Ref<vm::CellSlice> new_conf_params);
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bool check_one_prev_dict_update(ton::BlockSeqno seqno, Ref<vm::CellSlice> old_val_extra,
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Ref<vm::CellSlice> new_val_extra);
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bool check_mc_state_extra();
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bool postcheck_value_flow();
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td::Status check_counter_update(const block::DiscountedCounter& oc, const block::DiscountedCounter& nc,
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unsigned expected_incr);
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bool check_one_block_creator_update(td::ConstBitPtr key, Ref<vm::CellSlice> old_val, Ref<vm::CellSlice> new_val);
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bool check_block_create_stats();
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bool check_one_shard_fee(ShardIdFull shard, const block::CurrencyCollection& fees,
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const block::CurrencyCollection& create);
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bool check_mc_block_extra();
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bool check_timeout() {
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if (timeout && timeout.is_in_past()) {
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abort_query(td::Status::Error(ErrorCode::timeout, "timeout"));
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return false;
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}
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return true;
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}
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td::Timer work_timer_{true};
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td::ThreadCpuTimer cpu_work_timer_{true};
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void record_stats();
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};
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} // namespace validator
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} // namespace ton
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