mirror of https://gitee.com/bigwinds/arangodb
1099 lines
36 KiB
C++
1099 lines
36 KiB
C++
////////////////////////////////////////////////////////////////////////////////
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/// DISCLAIMER
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///
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/// Copyright 2014-2016 ArangoDB GmbH, Cologne, Germany
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/// Copyright 2004-2014 triAGENS GmbH, Cologne, Germany
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///
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/// Licensed under the Apache License, Version 2.0 (the "License");
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/// you may not use this file except in compliance with the License.
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/// You may obtain a copy of the License at
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///
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/// http://www.apache.org/licenses/LICENSE-2.0
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///
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/// Unless required by applicable law or agreed to in writing, software
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/// distributed under the License is distributed on an "AS IS" BASIS,
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/// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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/// See the License for the specific language governing permissions and
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/// limitations under the License.
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///
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/// Copyright holder is ArangoDB GmbH, Cologne, Germany
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///
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/// @author Simon Grätzer
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/// @author Michael Hackstein
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////////////////////////////////////////////////////////////////////////////////
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#include "RocksDBEdgeIndex.h"
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#include "Aql/AstNode.h"
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#include "Aql/SortCondition.h"
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#include "Basics/Exceptions.h"
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#include "Basics/LocalTaskQueue.h"
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#include "Basics/StaticStrings.h"
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#include "Basics/StringRef.h"
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#include "Basics/VelocyPackHelper.h"
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#include "Cache/CachedValue.h"
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#include "Cache/TransactionalCache.h"
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#include "Indexes/SimpleAttributeEqualityMatcher.h"
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#include "RocksDBEngine/RocksDBCollection.h"
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#include "RocksDBEngine/RocksDBCommon.h"
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#include "RocksDBEngine/RocksDBKey.h"
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#include "RocksDBEngine/RocksDBKeyBounds.h"
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#include "RocksDBEngine/RocksDBMethods.h"
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#include "RocksDBEngine/RocksDBSettingsManager.h"
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#include "RocksDBEngine/RocksDBTransactionState.h"
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#include "RocksDBEngine/RocksDBTypes.h"
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#include "Scheduler/Scheduler.h"
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#include "Scheduler/SchedulerFeature.h"
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#include "Transaction/Context.h"
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#include "Transaction/Helpers.h"
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#include "Transaction/Methods.h"
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#include "VocBase/LogicalCollection.h"
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#include <rocksdb/db.h>
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#include <rocksdb/utilities/transaction_db.h>
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#include <rocksdb/utilities/write_batch_with_index.h>
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#include <velocypack/Iterator.h>
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#include <velocypack/velocypack-aliases.h>
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#include <cmath>
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using namespace arangodb;
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using namespace arangodb::basics;
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namespace {
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constexpr bool EdgeIndexFillBlockCache = false;
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}
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RocksDBEdgeIndexWarmupTask::RocksDBEdgeIndexWarmupTask(
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std::shared_ptr<basics::LocalTaskQueue> const& queue,
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RocksDBEdgeIndex* index,
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transaction::Methods* trx,
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rocksdb::Slice const& lower,
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rocksdb::Slice const& upper)
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: LocalTask(queue),
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_index(index),
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_trx(trx),
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_lower(lower.data(), lower.size()),
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_upper(upper.data(), upper.size()) {}
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void RocksDBEdgeIndexWarmupTask::run() {
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try {
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_index->warmupInternal(_trx, _lower, _upper);
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} catch (...) {
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_queue->setStatus(TRI_ERROR_INTERNAL);
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}
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_queue->join();
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}
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RocksDBEdgeIndexIterator::RocksDBEdgeIndexIterator(
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LogicalCollection* collection, transaction::Methods* trx,
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arangodb::RocksDBEdgeIndex const* index,
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std::unique_ptr<VPackBuilder> keys, std::shared_ptr<cache::Cache> cache)
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: IndexIterator(collection, trx),
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_keys(std::move(keys)),
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_keysIterator(_keys->slice()),
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_index(index),
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_bounds(RocksDBKeyBounds::EdgeIndex(0)),
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_cache(std::move(cache)),
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_builderIterator(arangodb::velocypack::Slice::emptyArraySlice()),
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_lastKey(VPackSlice::nullSlice()) {
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TRI_ASSERT(_keys != nullptr);
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TRI_ASSERT(_keys->slice().isArray());
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auto* mthds = RocksDBTransactionState::toMethods(trx);
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// intentional copy of the options
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rocksdb::ReadOptions options = mthds->iteratorReadOptions();
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options.fill_cache = EdgeIndexFillBlockCache;
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_iterator = mthds->NewIterator(options, index->columnFamily());
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}
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RocksDBEdgeIndexIterator::~RocksDBEdgeIndexIterator() {
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if (_keys != nullptr) {
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// return the VPackBuilder to the transaction context
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_trx->transactionContextPtr()->returnBuilder(_keys.release());
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}
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}
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void RocksDBEdgeIndexIterator::resetInplaceMemory() { _builder.clear(); }
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void RocksDBEdgeIndexIterator::reset() {
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resetInplaceMemory();
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_keysIterator.reset();
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_lastKey = VPackSlice::nullSlice();
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_builderIterator =
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VPackArrayIterator(arangodb::velocypack::Slice::emptyArraySlice());
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}
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// returns true if we have one more key for the index lookup.
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// if true, sets the `key` Slice to point to the new key's value
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// note that the underlying data for the Slice must remain valid
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// as long as the iterator is used and the key is not moved forward.
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// returns false if there are no more keys to look for
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bool RocksDBEdgeIndexIterator::initKey(VPackSlice& key) {
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if (!_keysIterator.valid()) {
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// no next key
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_lastKey = VPackSlice::nullSlice();
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return false;
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}
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key = _keysIterator.value();
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if (key.isObject()) {
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key = key.get(StaticStrings::IndexEq);
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}
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TRI_ASSERT(key.isString());
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_lastKey = key;
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return true;
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}
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bool RocksDBEdgeIndexIterator::next(LocalDocumentIdCallback const& cb, size_t limit) {
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TRI_ASSERT(_trx->state()->isRunning());
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#ifdef ARANGODB_ENABLE_MAINTAINER_MODE
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TRI_ASSERT(limit > 0); // Someone called with limit == 0. Api broken
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#else
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// Gracefully return in production code
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// Nothing bad has happened
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if (limit == 0) {
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return false;
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}
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#endif
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while (limit > 0) {
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while (_builderIterator.valid()) {
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// We still have unreturned edges in out memory.
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// Just plainly return those.
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TRI_ASSERT(_builderIterator.value().isNumber());
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cb(LocalDocumentId{_builderIterator.value().getNumericValue<uint64_t>()});
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limit--;
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// Twice advance the iterator
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_builderIterator.next();
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// We always have <revision,_from> pairs
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TRI_ASSERT(_builderIterator.valid());
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_builderIterator.next();
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if (limit == 0) {
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// Limit reached bail out
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return true;
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}
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}
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if (!_keysIterator.valid()) {
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// We are done iterating
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return false;
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}
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// We have exhausted local memory.
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// Now fill it again:
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VPackSlice fromToSlice = _keysIterator.value();
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if (fromToSlice.isObject()) {
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fromToSlice = fromToSlice.get(StaticStrings::IndexEq);
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}
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TRI_ASSERT(fromToSlice.isString());
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StringRef fromTo(fromToSlice);
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bool needRocksLookup = true;
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if (_cache) {
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for (size_t attempts = 0; attempts < 10; ++attempts) {
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// Try to read from cache
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auto finding = _cache->find(fromTo.data(), (uint32_t)fromTo.size());
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if (finding.found()) {
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needRocksLookup = false;
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// We got sth. in the cache
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VPackSlice cachedData(finding.value()->value());
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TRI_ASSERT(cachedData.isArray());
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if (cachedData.length() / 2 < limit) {
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// Directly return it, no need to copy
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_builderIterator = VPackArrayIterator(cachedData);
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while (_builderIterator.valid()) {
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TRI_ASSERT(_builderIterator.value().isNumber());
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cb(LocalDocumentId{
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_builderIterator.value().getNumericValue<uint64_t>()});
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limit--;
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// Twice advance the iterator
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_builderIterator.next();
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// We always have <revision,_from> pairs
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TRI_ASSERT(_builderIterator.valid());
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_builderIterator.next();
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}
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_builderIterator = VPackArrayIterator(
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arangodb::velocypack::Slice::emptyArraySlice());
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} else {
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// We need to copy it.
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// And then we just get back to beginning of the loop
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_builder.clear();
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_builder.add(cachedData);
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TRI_ASSERT(_builder.slice().isArray());
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_builderIterator = VPackArrayIterator(_builder.slice());
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// Do not set limit
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}
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break;
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}
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if (finding.result().isNot(TRI_ERROR_LOCK_TIMEOUT)) {
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// We really have not found an entry.
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// Otherwise we do not know yet
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break;
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}
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} // attempts
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} // if (_cache)
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if (needRocksLookup) {
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lookupInRocksDB(fromTo);
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}
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_keysIterator.next();
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}
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TRI_ASSERT(limit == 0);
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return _builderIterator.valid() || _keysIterator.valid();
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}
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bool RocksDBEdgeIndexIterator::nextCovering(DocumentCallback const& cb, size_t limit) {
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TRI_ASSERT(_trx->state()->isRunning());
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#ifdef ARANGODB_ENABLE_MAINTAINER_MODE
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TRI_ASSERT(limit > 0); // Someone called with limit == 0. Api broken
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#else
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// Gracefully return in production code
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// Nothing bad has happened
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if (limit == 0) {
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return false;
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}
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#endif
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while (limit > 0) {
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while (_builderIterator.valid()) {
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// We still have unreturned edges in memory.
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// Just plainly return those.
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TRI_ASSERT(_builderIterator.value().isNumber());
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cb(LocalDocumentId{_builderIterator.value().getNumericValue<uint64_t>()}, _lastKey);
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limit--;
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// Twice advance the iterator
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_builderIterator.next();
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// We always have <revision,_from> pairs
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TRI_ASSERT(_builderIterator.valid());
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_builderIterator.next();
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if (limit == 0) {
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// Limit reached. bail out
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return true;
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}
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}
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VPackSlice fromToSlice;
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if (!initKey(fromToSlice)) {
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return false;
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}
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StringRef fromTo(fromToSlice);
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bool needRocksLookup = true;
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if (_cache) {
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for (size_t attempts = 0; attempts < 10; ++attempts) {
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// Try to read from cache
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auto finding = _cache->find(fromTo.data(), (uint32_t)fromTo.size());
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if (finding.found()) {
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needRocksLookup = false;
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// We got sth. in the cache
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VPackSlice cachedData(finding.value()->value());
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TRI_ASSERT(cachedData.isArray());
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if (cachedData.length() / 2 < limit) {
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// Directly return it, no need to copy
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_builderIterator = VPackArrayIterator(cachedData);
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while (_builderIterator.valid()) {
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TRI_ASSERT(_builderIterator.value().isNumber());
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cb(LocalDocumentId{
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_builderIterator.value().getNumericValue<uint64_t>()}, _lastKey);
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limit--;
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// Twice advance the iterator
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_builderIterator.next();
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// We always have <revision,_from> pairs
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TRI_ASSERT(_builderIterator.valid());
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_builderIterator.next();
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}
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_builderIterator = VPackArrayIterator(
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arangodb::velocypack::Slice::emptyArraySlice());
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} else {
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// We need to copy it.
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// And then we just get back to beginning of the loop
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_builder.clear();
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_builder.add(cachedData);
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TRI_ASSERT(_builder.slice().isArray());
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_builderIterator = VPackArrayIterator(_builder.slice());
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// Do not set limit
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}
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break;
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}
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if (finding.result().isNot(TRI_ERROR_LOCK_TIMEOUT)) {
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// We really have not found an entry.
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// Otherwise we do not know yet
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break;
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}
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} // attempts
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} // if (_cache)
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if (needRocksLookup) {
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lookupInRocksDB(fromTo);
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}
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_keysIterator.next();
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}
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TRI_ASSERT(limit == 0);
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return _builderIterator.valid() || _keysIterator.valid();
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}
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bool RocksDBEdgeIndexIterator::nextExtra(ExtraCallback const& cb,
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size_t limit) {
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TRI_ASSERT(_trx->state()->isRunning());
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#ifdef ARANGODB_ENABLE_MAINTAINER_MODE
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TRI_ASSERT(limit > 0); // Someone called with limit == 0. Api broken
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#else
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// Gracefully return in production code
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// Nothing bad has happened
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if (limit == 0) {
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return false;
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}
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#endif
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while (limit > 0) {
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while (_builderIterator.valid()) {
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// We still have unreturned edges in out memory.
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// Just plainly return those.
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TRI_ASSERT(_builderIterator.value().isNumber());
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LocalDocumentId tkn{_builderIterator.value().getNumericValue<uint64_t>()};
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_builderIterator.next();
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TRI_ASSERT(_builderIterator.valid());
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// For now we store the complete opposite _from/_to value
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TRI_ASSERT(_builderIterator.value().isString());
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cb(tkn, _builderIterator.value());
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_builderIterator.next();
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limit--;
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if (limit == 0) {
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// Limit reached bail out
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return true;
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}
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}
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if (!_keysIterator.valid()) {
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// We are done iterating
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return false;
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}
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// We have exhausted local memory.
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// Now fill it again:
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VPackSlice fromToSlice = _keysIterator.value();
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if (fromToSlice.isObject()) {
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fromToSlice = fromToSlice.get(StaticStrings::IndexEq);
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}
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TRI_ASSERT(fromToSlice.isString());
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StringRef fromTo(fromToSlice);
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bool needRocksLookup = true;
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if (_cache) {
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for (size_t attempts = 0; attempts < 10; ++attempts) {
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// Try to read from cache
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auto finding = _cache->find(fromTo.data(), (uint32_t)fromTo.size());
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if (finding.found()) {
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needRocksLookup = false;
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// We got sth. in the cache
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VPackSlice cachedData(finding.value()->value());
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TRI_ASSERT(cachedData.isArray());
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if (cachedData.length() / 2 < limit) {
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// Directly return it, no need to copy
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_builderIterator = VPackArrayIterator(cachedData);
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while (_builderIterator.valid()) {
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TRI_ASSERT(_builderIterator.value().isNumber());
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LocalDocumentId tkn{
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_builderIterator.value().getNumericValue<uint64_t>()};
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_builderIterator.next();
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TRI_ASSERT(_builderIterator.valid());
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TRI_ASSERT(_builderIterator.value().isString());
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cb(tkn, _builderIterator.value());
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_builderIterator.next();
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limit--;
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}
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_builderIterator = VPackArrayIterator(
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arangodb::velocypack::Slice::emptyArraySlice());
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} else {
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// We need to copy it.
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// And then we just get back to beginning of the loop
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_builder.clear();
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_builder.add(cachedData);
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TRI_ASSERT(_builder.slice().isArray());
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_builderIterator = VPackArrayIterator(_builder.slice());
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// Do not set limit
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}
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break;
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} // finding found
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if (finding.result().isNot(TRI_ERROR_LOCK_TIMEOUT)) {
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// We really have not found an entry.
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// Otherwise we do not know yet
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break;
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}
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} // attempts
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} // if (_cache)
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if (needRocksLookup) {
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lookupInRocksDB(fromTo);
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}
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_keysIterator.next();
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}
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TRI_ASSERT(limit == 0);
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return _builderIterator.valid() || _keysIterator.valid();
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}
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void RocksDBEdgeIndexIterator::lookupInRocksDB(StringRef fromTo) {
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// Bad case read from RocksDB
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_bounds = RocksDBKeyBounds::EdgeIndexVertex(_index->_objectId, fromTo);
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_iterator->Seek(_bounds.start());
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resetInplaceMemory();
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rocksdb::Comparator const* cmp = _index->comparator();
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cache::Cache* cc = _cache.get();
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_builder.openArray(true);
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auto end = _bounds.end();
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while (_iterator->Valid() && (cmp->Compare(_iterator->key(), end) < 0)) {
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LocalDocumentId const documentId = RocksDBKey::indexDocumentId(
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RocksDBEntryType::EdgeIndexValue, _iterator->key());
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// adding revision ID and _from or _to value
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_builder.add(VPackValue(documentId.id()));
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StringRef vertexId = RocksDBValue::vertexId(_iterator->value());
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_builder.add(VPackValuePair(vertexId.data(), vertexId.size(),
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VPackValueType::String));
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_iterator->Next();
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}
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_builder.close();
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if (cc != nullptr) {
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// TODO Add cache retry on next call
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// Now we have something in _inplaceMemory.
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// It may be an empty array or a filled one, never mind, we cache both
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auto entry = cache::CachedValue::construct(
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fromTo.data(), static_cast<uint32_t>(fromTo.size()),
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_builder.slice().start(),
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static_cast<uint64_t>(_builder.slice().byteSize()));
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if (entry) {
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bool inserted = false;
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for (size_t attempts = 0; attempts < 10; attempts++) {
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auto status = cc->insert(entry);
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if (status.ok()) {
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inserted = true;
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break;
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}
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if (status.errorNumber() != TRI_ERROR_LOCK_TIMEOUT) {
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break;
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}
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}
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if (!inserted) {
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LOG_TOPIC(DEBUG, arangodb::Logger::CACHE) << "Failed to cache: "
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<< fromTo.toString();
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delete entry;
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}
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}
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}
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TRI_ASSERT(_builder.slice().isArray());
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_builderIterator = VPackArrayIterator(_builder.slice());
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}
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// ============================= Index ====================================
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uint64_t RocksDBEdgeIndex::HashForKey(const rocksdb::Slice& key) {
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std::hash<StringRef> hasher;
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// NOTE: This function needs to use the same hashing on the
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// indexed VPack as the initial inserter does
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StringRef tmp = RocksDBKey::vertexId(key);
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return static_cast<uint64_t>(hasher(tmp));
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}
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RocksDBEdgeIndex::RocksDBEdgeIndex(
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TRI_idx_iid_t iid,
|
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arangodb::LogicalCollection& collection,
|
|
arangodb::velocypack::Slice const& info,
|
|
std::string const& attr
|
|
)
|
|
: RocksDBIndex(iid, collection, std::vector<std::vector<AttributeName>>(
|
|
{{AttributeName(attr, false)}}),
|
|
false, false, RocksDBColumnFamily::edge(),
|
|
basics::VelocyPackHelper::stringUInt64(info, "objectId"),
|
|
!ServerState::instance()->isCoordinator() /*useCache*/),
|
|
_directionAttr(attr),
|
|
_isFromIndex(attr == StaticStrings::FromString),
|
|
_estimator(nullptr) {
|
|
TRI_ASSERT(_cf == RocksDBColumnFamily::edge());
|
|
|
|
if (!ServerState::instance()->isCoordinator()) {
|
|
// We activate the estimator only on DBServers
|
|
_estimator = std::make_unique<RocksDBCuckooIndexEstimator<uint64_t>>(
|
|
RocksDBIndex::ESTIMATOR_SIZE);
|
|
TRI_ASSERT(_estimator != nullptr);
|
|
}
|
|
// edge indexes are always created with ID 1 or 2
|
|
TRI_ASSERT(iid == 1 || iid == 2);
|
|
TRI_ASSERT(_objectId != 0);
|
|
}
|
|
|
|
RocksDBEdgeIndex::~RocksDBEdgeIndex() {}
|
|
|
|
/// @brief return a selectivity estimate for the index
|
|
double RocksDBEdgeIndex::selectivityEstimate(
|
|
arangodb::StringRef const& attribute) const {
|
|
TRI_ASSERT(!ServerState::instance()->isCoordinator());
|
|
if (_unique) {
|
|
return 1.0;
|
|
}
|
|
if (!attribute.empty() && attribute.compare(_directionAttr)) {
|
|
return 0.0;
|
|
}
|
|
TRI_ASSERT(_estimator != nullptr);
|
|
return _estimator->computeEstimate();
|
|
}
|
|
|
|
/// @brief return a VelocyPack representation of the index
|
|
void RocksDBEdgeIndex::toVelocyPack(VPackBuilder& builder,
|
|
std::underlying_type<Serialize>::type flags) const {
|
|
builder.openObject();
|
|
RocksDBIndex::toVelocyPack(builder, flags);
|
|
builder.add(
|
|
arangodb::StaticStrings::IndexUnique,
|
|
arangodb::velocypack::Value(false)
|
|
);
|
|
builder.add(
|
|
arangodb::StaticStrings::IndexSparse,
|
|
arangodb::velocypack::Value(false)
|
|
);
|
|
builder.close();
|
|
}
|
|
|
|
Result RocksDBEdgeIndex::insertInternal(
|
|
transaction::Methods& trx,
|
|
RocksDBMethods* mthd,
|
|
LocalDocumentId const& documentId,
|
|
velocypack::Slice const& doc,
|
|
Index::OperationMode mode
|
|
) {
|
|
Result res;
|
|
VPackSlice fromTo = doc.get(_directionAttr);
|
|
TRI_ASSERT(fromTo.isString());
|
|
auto fromToRef = StringRef(fromTo);
|
|
RocksDBKeyLeaser key(&trx);
|
|
|
|
key->constructEdgeIndexValue(_objectId, fromToRef, documentId);
|
|
|
|
VPackSlice toFrom = _isFromIndex
|
|
? transaction::helpers::extractToFromDocument(doc)
|
|
: transaction::helpers::extractFromFromDocument(doc);
|
|
TRI_ASSERT(toFrom.isString());
|
|
RocksDBValue value = RocksDBValue::EdgeIndexValue(StringRef(toFrom));
|
|
|
|
// blacklist key in cache
|
|
blackListKey(fromToRef);
|
|
|
|
// acquire rocksdb transaction
|
|
rocksdb::Status s = mthd->Put(_cf, key.ref(), value.string());
|
|
|
|
if (s.ok()) {
|
|
std::hash<StringRef> hasher;
|
|
uint64_t hash = static_cast<uint64_t>(hasher(fromToRef));
|
|
RocksDBTransactionState::toState(&trx)->trackIndexInsert(
|
|
_collection.id(), id(), hash
|
|
);
|
|
} else {
|
|
res.reset(rocksutils::convertStatus(s));
|
|
addErrorMsg(res);
|
|
}
|
|
|
|
return res;
|
|
}
|
|
|
|
Result RocksDBEdgeIndex::removeInternal(
|
|
transaction::Methods& trx,
|
|
RocksDBMethods* mthd,
|
|
LocalDocumentId const& documentId,
|
|
velocypack::Slice const& doc,
|
|
Index::OperationMode mode
|
|
) {
|
|
Result res;
|
|
|
|
// VPackSlice primaryKey = doc.get(StaticStrings::KeyString);
|
|
VPackSlice fromTo = doc.get(_directionAttr);
|
|
auto fromToRef = StringRef(fromTo);
|
|
TRI_ASSERT(fromTo.isString());
|
|
RocksDBKeyLeaser key(&trx);
|
|
key->constructEdgeIndexValue(_objectId, fromToRef, documentId);
|
|
VPackSlice toFrom = _isFromIndex
|
|
? transaction::helpers::extractToFromDocument(doc)
|
|
: transaction::helpers::extractFromFromDocument(doc);
|
|
TRI_ASSERT(toFrom.isString());
|
|
RocksDBValue value = RocksDBValue::EdgeIndexValue(StringRef(toFrom));
|
|
|
|
// blacklist key in cache
|
|
blackListKey(fromToRef);
|
|
|
|
rocksdb::Status s = mthd->Delete(_cf, key.ref());
|
|
if (s.ok()) {
|
|
std::hash<StringRef> hasher;
|
|
uint64_t hash = static_cast<uint64_t>(hasher(fromToRef));
|
|
RocksDBTransactionState::toState(&trx)->trackIndexRemove(
|
|
_collection.id(), id(), hash
|
|
);
|
|
} else {
|
|
res.reset(rocksutils::convertStatus(s));
|
|
addErrorMsg(res);
|
|
}
|
|
|
|
return res;
|
|
}
|
|
|
|
void RocksDBEdgeIndex::batchInsert(
|
|
transaction::Methods& trx,
|
|
std::vector<std::pair<LocalDocumentId, VPackSlice>> const& documents,
|
|
std::shared_ptr<arangodb::basics::LocalTaskQueue> queue) {
|
|
auto* mthds = RocksDBTransactionState::toMethods(&trx);
|
|
|
|
for (auto const& doc : documents) {
|
|
VPackSlice fromTo = doc.second.get(_directionAttr);
|
|
TRI_ASSERT(fromTo.isString());
|
|
auto fromToRef = StringRef(fromTo);
|
|
RocksDBKeyLeaser key(&trx);
|
|
key->constructEdgeIndexValue(_objectId, fromToRef, doc.first);
|
|
|
|
blackListKey(fromToRef);
|
|
rocksdb::Status s = mthds->Put(_cf, key.ref(), rocksdb::Slice());
|
|
if (!s.ok()) {
|
|
queue->setStatus(rocksutils::convertStatus(s).errorNumber());
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
/// @brief checks whether the index supports the condition
|
|
bool RocksDBEdgeIndex::supportsFilterCondition(
|
|
std::vector<std::shared_ptr<arangodb::Index>> const& allIndexes,
|
|
arangodb::aql::AstNode const* node,
|
|
arangodb::aql::Variable const* reference, size_t itemsInIndex,
|
|
size_t& estimatedItems, double& estimatedCost) const {
|
|
SimpleAttributeEqualityMatcher matcher(this->_fields);
|
|
return matcher.matchOne(this, node, reference, itemsInIndex, estimatedItems,
|
|
estimatedCost);
|
|
}
|
|
|
|
/// @brief creates an IndexIterator for the given Condition
|
|
IndexIterator* RocksDBEdgeIndex::iteratorForCondition(
|
|
transaction::Methods* trx, ManagedDocumentResult*,
|
|
arangodb::aql::AstNode const* node,
|
|
arangodb::aql::Variable const* reference,
|
|
IndexIteratorOptions const& opts) {
|
|
TRI_ASSERT(!isSorted() || opts.sorted);
|
|
// get computation node
|
|
TRI_ASSERT(node->type == aql::NODE_TYPE_OPERATOR_NARY_AND);
|
|
TRI_ASSERT(node->numMembers() == 1);
|
|
auto comp = node->getMember(0);
|
|
|
|
// assume a.b == value
|
|
auto attrNode = comp->getMember(0);
|
|
auto valNode = comp->getMember(1);
|
|
|
|
// got value == a.b -> flip sides
|
|
if (attrNode->type != aql::NODE_TYPE_ATTRIBUTE_ACCESS) {
|
|
attrNode = comp->getMember(1);
|
|
valNode = comp->getMember(0);
|
|
}
|
|
|
|
TRI_ASSERT(attrNode->type == aql::NODE_TYPE_ATTRIBUTE_ACCESS);
|
|
TRI_ASSERT(attrNode->stringEquals(_directionAttr));
|
|
|
|
if (comp->type == aql::NODE_TYPE_OPERATOR_BINARY_EQ) {
|
|
// a.b == value
|
|
return createEqIterator(trx, attrNode, valNode);
|
|
}
|
|
|
|
if (comp->type == aql::NODE_TYPE_OPERATOR_BINARY_IN) {
|
|
// a.b IN values
|
|
if (!valNode->isArray()) {
|
|
// a.b IN non-array
|
|
return new EmptyIndexIterator(&_collection, trx);
|
|
}
|
|
return createInIterator(trx, attrNode, valNode);
|
|
}
|
|
|
|
// operator type unsupported
|
|
return new EmptyIndexIterator(&_collection, trx);
|
|
}
|
|
|
|
/// @brief specializes the condition for use with the index
|
|
arangodb::aql::AstNode* RocksDBEdgeIndex::specializeCondition(
|
|
arangodb::aql::AstNode* node,
|
|
arangodb::aql::Variable const* reference) const {
|
|
// SimpleAttributeEqualityMatcher matcher(IndexAttributes);
|
|
SimpleAttributeEqualityMatcher matcher(this->_fields);
|
|
return matcher.specializeOne(this, node, reference);
|
|
}
|
|
|
|
static std::string FindMedian(rocksdb::Iterator* it,
|
|
std::string const& start,
|
|
std::string const& end) {
|
|
|
|
// now that we do know the actual bounds calculate a
|
|
// bad approximation for the index median key
|
|
size_t min = std::min(start.size(), end.size());
|
|
std::string median = std::string(min, '\0');
|
|
for (size_t i = 0; i < min; i++) {
|
|
median[i] = (start.data()[i] + end.data()[i]) / 2;
|
|
}
|
|
|
|
// now search the beginning of a new vertex ID
|
|
it->Seek(median);
|
|
if (!it->Valid()) {
|
|
return end;
|
|
}
|
|
do {
|
|
median = it->key().ToString();
|
|
it->Next();
|
|
} while (it->Valid() &&
|
|
RocksDBKey::vertexId(it->key()) == RocksDBKey::vertexId(median));
|
|
if (!it->Valid()) {
|
|
return end;
|
|
}
|
|
return it->key().ToString(); // median is exclusive upper bound
|
|
}
|
|
|
|
void RocksDBEdgeIndex::warmup(transaction::Methods* trx,
|
|
std::shared_ptr<basics::LocalTaskQueue> queue) {
|
|
if (!useCache()) {
|
|
return;
|
|
}
|
|
|
|
// prepare transaction for parallel read access
|
|
RocksDBTransactionState::toState(trx)->prepareForParallelReads();
|
|
|
|
auto rocksColl = toRocksDBCollection(_collection);
|
|
auto* mthds = RocksDBTransactionState::toMethods(trx);
|
|
auto bounds = RocksDBKeyBounds::EdgeIndex(_objectId);
|
|
|
|
uint64_t expectedCount = static_cast<uint64_t>(selectivityEstimate() *
|
|
rocksColl->numberDocuments());
|
|
|
|
// Prepare the cache to be resized for this amount of objects to be inserted.
|
|
_cache->sizeHint(expectedCount);
|
|
if (expectedCount < 100000) {
|
|
LOG_TOPIC(DEBUG, Logger::ENGINES) << "Skipping the multithreaded loading";
|
|
auto task = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, bounds.start(), bounds.end());
|
|
queue->enqueue(task);
|
|
return;
|
|
}
|
|
|
|
// try to find the right bounds
|
|
rocksdb::ReadOptions ro = mthds->iteratorReadOptions();
|
|
ro.prefix_same_as_start = false; // key-prefix includes edge (i.e. "collection/vertex")
|
|
ro.total_order_seek = true; // otherwise full-index-scan does not work
|
|
ro.verify_checksums = false;
|
|
ro.fill_cache = EdgeIndexFillBlockCache;
|
|
|
|
std::unique_ptr<rocksdb::Iterator> it(rocksutils::globalRocksDB()->NewIterator(ro, _cf));
|
|
// get the first and last actual key
|
|
it->Seek(bounds.start());
|
|
if (!it->Valid()) {
|
|
LOG_TOPIC(DEBUG, Logger::ENGINES) << "Cannot use multithreaded edge index warmup";
|
|
auto task = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, bounds.start(), bounds.end());
|
|
queue->enqueue(task);
|
|
return;
|
|
}
|
|
std::string firstKey = it->key().ToString();
|
|
it->SeekForPrev(bounds.end());
|
|
if (!it->Valid()) {
|
|
LOG_TOPIC(DEBUG, Logger::ENGINES) << "Cannot use multithreaded edge index warmup";
|
|
auto task = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, bounds.start(), bounds.end());
|
|
queue->enqueue(task);
|
|
return;
|
|
}
|
|
std::string lastKey = it->key().ToString();
|
|
|
|
std::string q1 = firstKey, q2, q3, q4, q5 = lastKey;
|
|
q3 = FindMedian(it.get(), q1, q5);
|
|
if (q3 == lastKey) {
|
|
LOG_TOPIC(DEBUG, Logger::ENGINES) << "Cannot use multithreaded edge index warmup";
|
|
auto task = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, bounds.start(), bounds.end());
|
|
queue->enqueue(task);
|
|
return;
|
|
}
|
|
|
|
q2 = FindMedian(it.get(), q1, q3);
|
|
q4 = FindMedian(it.get(), q3, q5);
|
|
|
|
auto task1 = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, q1, q2);
|
|
queue->enqueue(task1);
|
|
|
|
auto task2 = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, q2, q3);
|
|
queue->enqueue(task2);
|
|
|
|
auto task3 = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, q3, q4);
|
|
queue->enqueue(task3);
|
|
|
|
auto task4 = std::make_shared<RocksDBEdgeIndexWarmupTask>(
|
|
queue, this, trx, q4, bounds.end());
|
|
queue->enqueue(task4);
|
|
}
|
|
|
|
void RocksDBEdgeIndex::warmupInternal(transaction::Methods* trx,
|
|
rocksdb::Slice const& lower,
|
|
rocksdb::Slice const& upper) {
|
|
auto scheduler = SchedulerFeature::SCHEDULER;
|
|
auto rocksColl = toRocksDBCollection(_collection);
|
|
bool needsInsert = false;
|
|
std::string previous = "";
|
|
VPackBuilder builder;
|
|
|
|
// intentional copy of the read options
|
|
auto* mthds = RocksDBTransactionState::toMethods(trx);
|
|
rocksdb::Slice const end = upper;
|
|
rocksdb::ReadOptions options = mthds->iteratorReadOptions();
|
|
options.iterate_upper_bound = &end; // safe to use on rocksb::DB directly
|
|
options.prefix_same_as_start = false; // key-prefix includes edge
|
|
options.total_order_seek = true; // otherwise full-index-scan does not work
|
|
options.verify_checksums = false;
|
|
options.fill_cache = EdgeIndexFillBlockCache;
|
|
std::unique_ptr<rocksdb::Iterator> it(
|
|
rocksutils::globalRocksDB()->NewIterator(options, _cf));
|
|
|
|
size_t n = 0;
|
|
cache::Cache* cc = _cache.get();
|
|
for (it->Seek(lower); it->Valid(); it->Next()) {
|
|
if (scheduler->isStopping()) {
|
|
return;
|
|
}
|
|
n++;
|
|
|
|
rocksdb::Slice key = it->key();
|
|
StringRef v = RocksDBKey::vertexId(key);
|
|
if (previous.empty()) {
|
|
// First call.
|
|
builder.clear();
|
|
previous = v.toString();
|
|
bool shouldTry = true;
|
|
while (shouldTry) {
|
|
auto finding = cc->find(previous.data(), (uint32_t)previous.size());
|
|
if (finding.found()) {
|
|
shouldTry = false;
|
|
needsInsert = false;
|
|
} else if ( // shouldTry if failed lookup was just a lock timeout
|
|
finding.result().errorNumber() != TRI_ERROR_LOCK_TIMEOUT) {
|
|
shouldTry = false;
|
|
needsInsert = true;
|
|
builder.openArray(true);
|
|
}
|
|
}
|
|
}
|
|
|
|
if (v != previous) {
|
|
if (needsInsert) {
|
|
// Switch to next vertex id.
|
|
// Store what we have.
|
|
builder.close();
|
|
|
|
while (cc->isBusy()) {
|
|
// We should wait here, the cache will reject
|
|
// any inserts anyways.
|
|
std::this_thread::sleep_for(std::chrono::microseconds(10000));
|
|
}
|
|
|
|
auto entry = cache::CachedValue::construct(
|
|
previous.data(), static_cast<uint32_t>(previous.size()),
|
|
builder.slice().start(),
|
|
static_cast<uint64_t>(builder.slice().byteSize()));
|
|
if (entry) {
|
|
bool inserted = false;
|
|
for (size_t attempts = 0; attempts < 10; attempts++) {
|
|
auto status = cc->insert(entry);
|
|
if (status.ok()) {
|
|
inserted = true;
|
|
break;
|
|
}
|
|
if (status.errorNumber() != TRI_ERROR_LOCK_TIMEOUT) {
|
|
break;
|
|
}
|
|
}
|
|
if (!inserted) {
|
|
delete entry;
|
|
}
|
|
}
|
|
builder.clear();
|
|
}
|
|
// Need to store
|
|
previous = v.toString();
|
|
auto finding = cc->find(previous.data(), (uint32_t)previous.size());
|
|
if (finding.found()) {
|
|
needsInsert = false;
|
|
} else {
|
|
needsInsert = true;
|
|
builder.openArray(true);
|
|
}
|
|
}
|
|
if (needsInsert) {
|
|
LocalDocumentId const docId = RocksDBKey::indexDocumentId(RocksDBEntryType::EdgeIndexValue, key);
|
|
if (!rocksColl->readDocumentWithCallback(trx, docId, [&](LocalDocumentId const&, VPackSlice doc) {
|
|
builder.add(VPackValue(docId.id()));
|
|
VPackSlice toFrom =
|
|
_isFromIndex ? transaction::helpers::extractToFromDocument(doc)
|
|
: transaction::helpers::extractFromFromDocument(doc);
|
|
TRI_ASSERT(toFrom.isString());
|
|
builder.add(toFrom);
|
|
})) {
|
|
#ifdef ARANGODB_ENABLE_MAINTAINER_MODE
|
|
// Data Inconsistency.
|
|
// We have a revision id without a document...
|
|
TRI_ASSERT(false);
|
|
#endif
|
|
}
|
|
}
|
|
}
|
|
|
|
if (!previous.empty() && needsInsert) {
|
|
// We still have something to store
|
|
builder.close();
|
|
|
|
auto entry = cache::CachedValue::construct(
|
|
previous.data(), static_cast<uint32_t>(previous.size()),
|
|
builder.slice().start(),
|
|
static_cast<uint64_t>(builder.slice().byteSize()));
|
|
if (entry) {
|
|
bool inserted = false;
|
|
for (size_t attempts = 0; attempts < 10; attempts++) {
|
|
auto status = cc->insert(entry);
|
|
if (status.ok()) {
|
|
inserted = true;
|
|
break;
|
|
}
|
|
if (status.errorNumber() != TRI_ERROR_LOCK_TIMEOUT) {
|
|
break;
|
|
}
|
|
}
|
|
if (!inserted) {
|
|
delete entry;
|
|
}
|
|
}
|
|
}
|
|
LOG_TOPIC(DEBUG, Logger::ENGINES) << "loaded n: " << n ;
|
|
}
|
|
|
|
// ===================== Helpers ==================
|
|
|
|
/// @brief create the iterator
|
|
IndexIterator* RocksDBEdgeIndex::createEqIterator(
|
|
transaction::Methods* trx,
|
|
arangodb::aql::AstNode const* attrNode,
|
|
arangodb::aql::AstNode const* valNode) const {
|
|
// lease builder, but immediately pass it to the unique_ptr so we don't leak
|
|
transaction::BuilderLeaser builder(trx);
|
|
std::unique_ptr<VPackBuilder> keys(builder.steal());
|
|
keys->openArray();
|
|
|
|
handleValNode(keys.get(), valNode);
|
|
TRI_IF_FAILURE("EdgeIndex::noIterator") {
|
|
THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
|
|
}
|
|
keys->close();
|
|
|
|
return new RocksDBEdgeIndexIterator(
|
|
&_collection, trx, this, std::move(keys), _cache
|
|
);
|
|
}
|
|
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/// @brief create the iterator
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IndexIterator* RocksDBEdgeIndex::createInIterator(
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transaction::Methods* trx,
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arangodb::aql::AstNode const* attrNode,
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arangodb::aql::AstNode const* valNode) const {
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// lease builder, but immediately pass it to the unique_ptr so we don't leak
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transaction::BuilderLeaser builder(trx);
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std::unique_ptr<VPackBuilder> keys(builder.steal());
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keys->openArray();
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size_t const n = valNode->numMembers();
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for (size_t i = 0; i < n; ++i) {
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handleValNode(keys.get(), valNode->getMemberUnchecked(i));
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TRI_IF_FAILURE("EdgeIndex::iteratorValNodes") {
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THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
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}
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}
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TRI_IF_FAILURE("EdgeIndex::noIterator") {
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THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
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}
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keys->close();
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return new RocksDBEdgeIndexIterator(
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&_collection, trx, this, std::move(keys), _cache
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);
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}
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/// @brief add a single value node to the iterator's keys
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void RocksDBEdgeIndex::handleValNode(
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VPackBuilder* keys, arangodb::aql::AstNode const* valNode) const {
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if (!valNode->isStringValue() || valNode->getStringLength() == 0) {
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return;
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}
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keys->openObject();
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keys->add(StaticStrings::IndexEq,
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VPackValuePair(valNode->getStringValue(),
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valNode->getStringLength(), VPackValueType::String));
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keys->close();
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TRI_IF_FAILURE("EdgeIndex::collectKeys") {
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THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
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}
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}
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void RocksDBEdgeIndex::afterTruncate(TRI_voc_tick_t tick) {
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TRI_ASSERT(_estimator != nullptr);
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_estimator->bufferTruncate(tick);
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RocksDBIndex::afterTruncate(tick);
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}
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RocksDBCuckooIndexEstimator<uint64_t>* RocksDBEdgeIndex::estimator() {
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return _estimator.get();
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}
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void RocksDBEdgeIndex::setEstimator(std::unique_ptr<RocksDBCuckooIndexEstimator<uint64_t>> est) {
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_estimator = std::move(est);
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}
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void RocksDBEdgeIndex::recalculateEstimates() {
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TRI_ASSERT(_estimator != nullptr);
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_estimator->clear();
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rocksdb::TransactionDB* db = rocksutils::globalRocksDB();
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rocksdb::SequenceNumber seq = db->GetLatestSequenceNumber();
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auto bounds = RocksDBKeyBounds::EdgeIndex(_objectId);
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rocksdb::Slice const end = bounds.end();
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rocksdb::ReadOptions options;
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options.iterate_upper_bound = &end; // safe to use on rocksb::DB directly
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options.prefix_same_as_start = false; // key-prefix includes edge
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options.total_order_seek = true; // otherwise full scan fails
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options.verify_checksums = false;
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options.fill_cache = false;
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std::unique_ptr<rocksdb::Iterator> it(db->NewIterator(options, _cf));
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for (it->Seek(bounds.start()); it->Valid(); it->Next()) {
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uint64_t hash = RocksDBEdgeIndex::HashForKey(it->key());
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_estimator->insert(hash);
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}
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_estimator->setCommitSeq(seq);
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}
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