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https://github.com/danog/ton.git
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546 lines
18 KiB
C++
546 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 "vm/db/StaticBagOfCellsDb.h"
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#include "vm/cells/CellWithStorage.h"
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#include "vm/boc.h"
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#include "vm/cells/ExtCell.h"
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#include "td/utils/crypto.h"
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#include "td/utils/format.h"
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#include "td/utils/misc.h"
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#include "td/utils/port/RwMutex.h"
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#include "td/utils/ConcurrentHashTable.h"
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#include <limits>
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namespace vm {
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//
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// Common interface
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//
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template <class ExtraT>
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class RootCell : public Cell {
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struct PrivateTag {};
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public:
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td::Result<LoadedCell> load_cell() const override {
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return cell_->load_cell();
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}
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Ref<Cell> virtualize(VirtualizationParameters virt) const override {
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return cell_->virtualize(virt);
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}
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td::uint32 get_virtualization() const override {
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return cell_->get_virtualization();
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}
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CellUsageTree::NodePtr get_tree_node() const override {
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return cell_->get_tree_node();
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}
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bool is_loaded() const override {
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return cell_->is_loaded();
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}
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// hash and level
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LevelMask get_level_mask() const override {
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return cell_->get_level_mask();
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}
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template <class T>
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static Ref<Cell> create(Ref<Cell> cell, T&& extra) {
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return Ref<RootCell>(true, std::move(cell), std::forward<T>(extra), PrivateTag{});
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}
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template <class T>
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RootCell(Ref<Cell> cell, T&& extra, PrivateTag) : cell_(std::move(cell)), extra_(std::forward<T>(extra)) {
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}
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private:
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Ref<Cell> cell_;
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ExtraT extra_;
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td::uint16 do_get_depth(td::uint32 level) const override {
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return cell_->get_depth(level);
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}
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const Hash do_get_hash(td::uint32 level) const override {
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return cell_->get_hash(level);
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}
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};
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class DataCellCacheNoop {
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public:
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Ref<DataCell> store(int idx, Ref<DataCell> cell) {
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return cell;
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}
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Ref<DataCell> load(int idx) {
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return {};
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}
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void clear() {
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}
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};
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class DataCellCacheMutex {
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public:
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Ref<DataCell> store(int idx, Ref<DataCell> cell) {
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auto lock = cells_rw_mutex_.lock_write();
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return cells_.emplace(idx, std::move(cell)).first->second;
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}
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Ref<DataCell> load(int idx) {
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auto lock = cells_rw_mutex_.lock_read();
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auto it = cells_.find(idx);
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if (it != cells_.end()) {
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return it->second;
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}
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return {};
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}
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void clear() {
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auto guard = cells_rw_mutex_.lock_write();
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cells_.clear();
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}
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private:
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td::RwMutex cells_rw_mutex_;
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td::HashMap<int, Ref<DataCell>> cells_;
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};
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class DataCellCacheTdlib {
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public:
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Ref<DataCell> store(int idx, Ref<DataCell> cell) {
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return Ref<DataCell>(cells_.insert(as_key(idx), cell.get()));
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}
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Ref<DataCell> load(int idx) {
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return Ref<DataCell>(cells_.find(as_key(idx), nullptr));
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}
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void clear() {
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cells_.for_each([](auto key, auto value) { Ref<DataCell>{value}; });
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}
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private:
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td::ConcurrentHashMap<td::uint32, const DataCell*> cells_;
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td::uint32 as_key(int idx) {
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td::uint32 key = static_cast<td::uint32>(idx + 1);
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key *= 1000000007;
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return key;
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}
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};
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struct StaticBocExtCellExtra {
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int idx;
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std::weak_ptr<StaticBagOfCellsDb> deserializer;
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};
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class StaticBocLoader {
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public:
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static td::Result<Ref<DataCell>> load_data_cell(const Cell& cell, const StaticBocExtCellExtra& extra) {
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auto deserializer = extra.deserializer.lock();
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if (!deserializer) {
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return td::Status::Error("StaticBocDb is already destroyed, cannot fetch cell");
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}
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return deserializer->load_by_idx(extra.idx);
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}
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};
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using StaticBocExtCell = ExtCell<StaticBocExtCellExtra, StaticBocLoader>;
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using StaticBocRootCell = RootCell<std::shared_ptr<StaticBagOfCellsDb>>;
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td::Result<Ref<Cell>> StaticBagOfCellsDb::create_ext_cell(Cell::LevelMask level_mask, td::Slice hash, td::Slice depth,
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int idx) {
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TRY_RESULT(res, StaticBocExtCell::create(PrunnedCellInfo{level_mask, hash, depth},
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StaticBocExtCellExtra{idx, shared_from_this()}));
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return std::move(res);
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}
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//
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// Baseline implementation
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//
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class StaticBagOfCellsDbBaselineImpl : public StaticBagOfCellsDb {
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public:
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StaticBagOfCellsDbBaselineImpl(std::vector<Ref<Cell>> roots) : roots_(std::move(roots)) {
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}
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td::Result<size_t> get_root_count() override {
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return roots_.size();
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};
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td::Result<Ref<Cell>> get_root_cell(size_t idx) override {
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if (idx >= roots_.size()) {
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return td::Status::Error(PSLICE() << "invalid root_cell index: " << idx);
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}
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return roots_[idx];
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};
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private:
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std::vector<Ref<Cell>> roots_;
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td::Result<Ref<DataCell>> load_by_idx(int idx) override {
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UNREACHABLE();
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}
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};
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td::Result<std::shared_ptr<StaticBagOfCellsDb>> StaticBagOfCellsDbBaseline::create(std::unique_ptr<BlobView> data) {
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std::string buf(data->size(), '\0');
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TRY_RESULT(slice, data->view(buf, 0));
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return create(slice);
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}
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td::Result<std::shared_ptr<StaticBagOfCellsDb>> StaticBagOfCellsDbBaseline::create(td::Slice data) {
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BagOfCells boc;
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TRY_RESULT(x, boc.deserialize(data));
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if (x <= 0) {
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return td::Status::Error("failed to deserialize");
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}
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std::vector<Ref<Cell>> roots(boc.get_root_count());
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for (int i = 0; i < boc.get_root_count(); i++) {
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roots[i] = boc.get_root_cell(i);
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}
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return std::make_shared<StaticBagOfCellsDbBaselineImpl>(std::move(roots));
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}
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//
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// Main implementation
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//
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class StaticBagOfCellsDbLazyImpl : public StaticBagOfCellsDb {
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public:
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explicit StaticBagOfCellsDbLazyImpl(std::unique_ptr<BlobView> data, StaticBagOfCellsDbLazy::Options options)
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: data_(std::move(data)), options_(std::move(options)) {
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get_thread_safe_counter().add(1);
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}
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td::Result<size_t> get_root_count() override {
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TRY_STATUS(check_status());
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TRY_STATUS(check_result(load_header()));
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return info_.root_count;
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};
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td::Result<Ref<Cell>> get_root_cell(size_t idx) override {
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TRY_STATUS(check_status());
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TRY_RESULT(root_count, get_root_count());
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if (idx >= root_count) {
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return td::Status::Error(PSLICE() << "invalid root_cell index: " << idx);
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}
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TRY_RESULT(cell_idx, load_root_idx(td::narrow_cast<int>(idx)));
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// Load DataCell in order to ensure lower hashes correctness
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// They will be valid for all non-root cell automaically
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TRY_RESULT(data_cell, check_result(load_data_cell(td::narrow_cast<int>(cell_idx))));
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return create_root_cell(std::move(data_cell));
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};
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~StaticBagOfCellsDbLazyImpl() {
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//LOG(ERROR) << deserialize_cell_cnt_ << " " << deserialize_cell_hash_cnt_;
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get_thread_safe_counter().add(-1);
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}
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private:
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std::atomic<bool> should_cache_cells_{true};
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std::unique_ptr<BlobView> data_;
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StaticBagOfCellsDbLazy::Options options_;
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bool has_info_{false};
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BagOfCells::Info info_;
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std::mutex index_i_mutex_;
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td::RwMutex index_data_rw_mutex_;
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std::string index_data_;
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std::atomic<int> index_i_{0};
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size_t index_offset_{0};
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DataCellCacheMutex cells_;
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//DataCellCacheNoop cells_;
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//DataCellCacheTdlib cells_;
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int next_idx_{0};
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Ref<Cell> empty_cell_;
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//stats
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td::ThreadSafeCounter deserialize_cell_cnt_;
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td::ThreadSafeCounter deserialize_cell_hash_cnt_;
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std::atomic<bool> has_error_{false};
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std::mutex status_mutex_;
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td::Status status_;
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static td::NamedThreadSafeCounter::CounterRef get_thread_safe_counter() {
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static auto res = td::NamedThreadSafeCounter::get_default().get_counter("StaticBagOfCellsDbLazy");
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return res;
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}
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td::Status check_status() TD_WARN_UNUSED_RESULT {
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if (has_error_.load(std::memory_order_relaxed)) {
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std::lock_guard<std::mutex> guard(status_mutex_);
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return status_.clone();
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}
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return td::Status::OK();
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}
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template <class T>
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T check_result(T&& to_check) {
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CHECK(status_.is_ok());
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if (to_check.is_error()) {
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std::lock_guard<std::mutex> guard(status_mutex_);
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has_error_.store(true);
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status_ = to_check.error().clone();
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}
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return std::forward<T>(to_check);
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}
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td::Result<Ref<DataCell>> load_by_idx(int idx) override {
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TRY_STATUS(check_status());
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return check_result(load_data_cell(idx));
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}
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struct Ptr {
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td::MutableSlice as_slice() {
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return data;
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}
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td::string data;
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};
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// May be optimized
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auto alloc(size_t size) {
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//return td::StackAllocator::alloc(size);
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return Ptr{std::string(size, '\0')};
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}
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td::Result<size_t> load_idx_offset(int idx) {
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if (idx < 0) {
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return 0;
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}
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td::Slice offset_view;
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CHECK(info_.offset_byte_size <= 8);
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char arr[8];
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td::RwMutex::ReadLock guard;
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if (info_.has_index) {
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TRY_RESULT(new_offset_view, data_->view(td::MutableSlice(arr, info_.offset_byte_size),
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info_.index_offset + idx * info_.offset_byte_size));
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offset_view = new_offset_view;
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} else {
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guard = index_data_rw_mutex_.lock_read().move_as_ok();
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offset_view = td::Slice(index_data_).substr(idx * info_.offset_byte_size, info_.offset_byte_size);
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}
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CHECK(offset_view.size() == (size_t)info_.offset_byte_size);
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return td::narrow_cast<std::size_t>(info_.read_offset(offset_view.ubegin()));
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}
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td::Result<td::int64> load_root_idx(int root_i) {
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CHECK(root_i >= 0 && root_i < info_.root_count);
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if (!info_.has_roots) {
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return 0;
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}
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char arr[8];
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TRY_RESULT(idx_view, data_->view(td::MutableSlice(arr, info_.ref_byte_size),
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info_.roots_offset + root_i * info_.ref_byte_size));
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CHECK(idx_view.size() == (size_t)info_.ref_byte_size);
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return info_.read_ref(idx_view.ubegin());
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}
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struct CellLocation {
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std::size_t begin;
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std::size_t end;
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bool should_cache;
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};
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td::Result<CellLocation> get_cell_location(int idx) {
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CHECK(idx >= 0);
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CHECK(idx < info_.cell_count);
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TRY_STATUS(preload_index(idx));
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TRY_RESULT(from, load_idx_offset(idx - 1));
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TRY_RESULT(till, load_idx_offset(idx));
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CellLocation res;
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res.begin = from;
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res.end = till;
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res.should_cache = true;
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if (info_.has_cache_bits) {
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res.begin /= 2;
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res.should_cache = res.end % 2 == 1;
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res.end /= 2;
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}
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CHECK(std::numeric_limits<std::size_t>::max() - res.begin >= info_.data_offset);
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CHECK(std::numeric_limits<std::size_t>::max() - res.end >= info_.data_offset);
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res.begin += static_cast<std::size_t>(info_.data_offset);
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res.end += static_cast<std::size_t>(info_.data_offset);
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return res;
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}
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td::Status load_header() {
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if (has_info_) {
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return td::Status::OK();
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}
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std::string header(1000, '\0');
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TRY_RESULT(header_view, data_->view(td::MutableSlice(header).truncate(data_->size()), 0))
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auto parse_res = info_.parse_serialized_header(header_view);
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if (parse_res <= 0) {
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return td::Status::Error("bag-of-cell error: failed to read header");
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}
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if (info_.total_size < data_->size()) {
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return td::Status::Error("bag-of-cell error: not enough data");
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}
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if (options_.check_crc32c && info_.has_crc32c) {
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std::string buf(td::narrow_cast<std::size_t>(info_.total_size), '\0');
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TRY_RESULT(data, data_->view(td::MutableSlice(buf), 0));
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unsigned crc_computed = td::crc32c(td::Slice{data.ubegin(), data.uend() - 4});
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unsigned crc_stored = td::as<unsigned>(data.uend() - 4);
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if (crc_computed != crc_stored) {
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return td::Status::Error(PSLICE()
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<< "bag-of-cells CRC32C mismatch: expected " << td::format::as_hex(crc_computed)
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<< ", found " << td::format::as_hex(crc_stored));
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}
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}
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has_info_ = true;
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return td::Status::OK();
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}
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td::Status preload_index(int idx) {
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if (info_.has_index) {
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return td::Status::OK();
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}
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CHECK(idx < info_.cell_count);
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if (index_i_.load(std::memory_order_relaxed) > idx) {
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return td::Status::OK();
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}
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std::lock_guard<std::mutex> index_i_guard(index_i_mutex_);
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std::array<char, 1024> buf;
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auto buf_slice = td::MutableSlice(buf.data(), buf.size());
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for (; index_i_ <= idx; index_i_++) {
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auto offset = td::narrow_cast<size_t>(info_.data_offset + index_offset_);
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CHECK(data_->size() >= offset);
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TRY_RESULT(cell, data_->view(buf_slice.copy().truncate(data_->size() - offset), offset));
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CellSerializationInfo cell_info;
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TRY_STATUS(cell_info.init(cell, info_.ref_byte_size));
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index_offset_ += cell_info.end_offset;
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LOG_CHECK((unsigned)info_.offset_byte_size <= 8) << info_.offset_byte_size;
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td::uint8 tmp[8];
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info_.write_offset(tmp, index_offset_);
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auto guard = index_data_rw_mutex_.lock_write();
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index_data_.append(reinterpret_cast<const char*>(tmp), info_.offset_byte_size);
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}
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return td::Status::OK();
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}
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Ref<Cell> get_any_cell(int idx) {
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return get_data_cell(idx);
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}
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Ref<DataCell> get_data_cell(int idx) {
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return cells_.load(idx);
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}
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Ref<DataCell> set_data_cell(int idx, Ref<DataCell> cell) {
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if (/*idx >= info_.root_count || */ !should_cache_cells_.load(std::memory_order_relaxed)) {
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return cell;
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}
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CHECK(cell.not_null());
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return cells_.store(idx, std::move(cell));
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}
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Ref<Cell> set_any_cell(int idx, Ref<Cell> cell) {
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auto data_cell = Ref<DataCell>(cell);
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if (data_cell.is_null()) {
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return cell;
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}
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return set_data_cell(idx, std::move(data_cell));
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}
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td::Result<Ref<Cell>> load_any_cell(int idx) {
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{
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auto cell = get_any_cell(idx);
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if (cell.not_null()) {
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return std::move(cell);
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}
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}
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TRY_RESULT(cell_location, get_cell_location(idx));
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auto buf = alloc(cell_location.end - cell_location.begin);
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TRY_RESULT(cell_slice, data_->view(buf.as_slice(), cell_location.begin));
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TRY_RESULT(res, deserialize_any_cell(idx, cell_slice, cell_location.should_cache));
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return std::move(res);
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}
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td::Result<Ref<DataCell>> load_data_cell(int idx) {
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{
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auto cell = get_data_cell(idx);
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if (cell.not_null()) {
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return std::move(cell);
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}
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}
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TRY_RESULT(cell_location, get_cell_location(idx));
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auto buf = alloc(cell_location.end - cell_location.begin);
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TRY_RESULT(cell_slice, data_->view(buf.as_slice(), cell_location.begin));
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TRY_RESULT(res, deserialize_data_cell(idx, cell_slice, cell_location.should_cache));
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return std::move(res);
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}
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td::Result<Ref<DataCell>> deserialize_data_cell(int idx, td::Slice cell_slice, bool should_cache) {
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CellSerializationInfo cell_info;
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TRY_STATUS(cell_info.init(cell_slice, info_.ref_byte_size));
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if (cell_slice.size() != cell_info.end_offset) {
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return td::Status::Error(PSLICE() << "unused space in cell #" << idx << " serialization");
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}
|
|
return deserialize_data_cell(idx, cell_slice, cell_info, should_cache);
|
|
}
|
|
|
|
td::Result<Ref<DataCell>> deserialize_data_cell(int idx, td::Slice cell_slice, const CellSerializationInfo& cell_info,
|
|
bool should_cache) {
|
|
deserialize_cell_cnt_.add(1);
|
|
Ref<Cell> refs[4];
|
|
CHECK(cell_info.refs_cnt <= 4);
|
|
auto* ref_ptr = cell_slice.ubegin() + cell_info.refs_offset;
|
|
for (int k = 0; k < cell_info.refs_cnt; k++, ref_ptr += info_.ref_byte_size) {
|
|
int ref_idx = td::narrow_cast<int>(info_.read_ref(ref_ptr));
|
|
if (ref_idx >= info_.cell_count) {
|
|
return td::Status::Error(PSLICE() << "invalid bag-of-cells cell #" << idx << " refers to cell #" << ref_idx
|
|
<< " which is too big " << td::tag("cell_count", info_.cell_count));
|
|
}
|
|
if (idx >= ref_idx) {
|
|
return td::Status::Error(PSLICE() << "invalid bag-of-cells cell #" << idx << " refers to cell #" << ref_idx
|
|
<< " which is a backward reference");
|
|
}
|
|
TRY_RESULT(ref, load_any_cell(ref_idx));
|
|
refs[k] = std::move(ref);
|
|
}
|
|
|
|
TRY_RESULT(data_cell, cell_info.create_data_cell(cell_slice, td::Span<Ref<Cell>>(refs, cell_info.refs_cnt)));
|
|
if (!should_cache) {
|
|
return std::move(data_cell);
|
|
}
|
|
return set_data_cell(idx, std::move(data_cell));
|
|
}
|
|
|
|
td::Result<Ref<Cell>> deserialize_any_cell(int idx, td::Slice cell_slice, bool should_cache) {
|
|
CellSerializationInfo cell_info;
|
|
TRY_STATUS(cell_info.init(cell_slice, info_.ref_byte_size));
|
|
if (cell_info.with_hashes) {
|
|
deserialize_cell_hash_cnt_.add(1);
|
|
int n = cell_info.level_mask.get_hashes_count();
|
|
return create_ext_cell(cell_info.level_mask, cell_slice.substr(cell_info.hashes_offset, n * Cell::hash_bytes),
|
|
cell_slice.substr(cell_info.depth_offset, n * Cell::depth_bytes), idx);
|
|
}
|
|
TRY_RESULT(data_cell, deserialize_data_cell(idx, cell_slice, cell_info, should_cache));
|
|
return std::move(data_cell);
|
|
}
|
|
td::Result<Ref<Cell>> create_root_cell(Ref<DataCell> data_cell) {
|
|
return StaticBocRootCell::create(std::move(data_cell), shared_from_this());
|
|
}
|
|
};
|
|
|
|
td::Result<std::shared_ptr<StaticBagOfCellsDb>> StaticBagOfCellsDbLazy::create(std::unique_ptr<BlobView> data,
|
|
Options options) {
|
|
return std::make_shared<StaticBagOfCellsDbLazyImpl>(std::move(data), std::move(options));
|
|
}
|
|
|
|
td::Result<std::shared_ptr<StaticBagOfCellsDb>> StaticBagOfCellsDbLazy::create(td::BufferSlice data, Options options) {
|
|
return std::make_shared<StaticBagOfCellsDbLazyImpl>(vm::BufferSliceBlobView::create(std::move(data)),
|
|
std::move(options));
|
|
}
|
|
|
|
td::Result<std::shared_ptr<StaticBagOfCellsDb>> StaticBagOfCellsDbLazy::create(std::string data, Options options) {
|
|
return create(BufferSliceBlobView::create(td::BufferSlice(data)), std::move(options));
|
|
}
|
|
|
|
} // namespace vm
|