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arangodb/arangod/RocksDBEngine/RocksDBEdgeIndex.cpp

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////////////////////////////////////////////////////////////////////////////////
/// DISCLAIMER
///
/// Copyright 2014-2016 ArangoDB GmbH, Cologne, Germany
/// Copyright 2004-2014 triAGENS GmbH, Cologne, Germany
///
/// Licensed under the Apache License, Version 2.0 (the "License");
/// you may not use this file except in compliance with the License.
/// You may obtain a copy of the License at
///
/// http://www.apache.org/licenses/LICENSE-2.0
///
/// Unless required by applicable law or agreed to in writing, software
/// distributed under the License is distributed on an "AS IS" BASIS,
/// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
/// See the License for the specific language governing permissions and
/// limitations under the License.
///
/// Copyright holder is ArangoDB GmbH, Cologne, Germany
///
/// @author Simon Grätzer
////////////////////////////////////////////////////////////////////////////////
#include "RocksDBEdgeIndex.h"
#include "Aql/AstNode.h"
#include "Aql/SortCondition.h"
#include "Basics/Exceptions.h"
#include "Basics/LocalTaskQueue.h"
#include "Basics/StaticStrings.h"
#include "Basics/StringRef.h"
#include "Basics/VelocyPackHelper.h"
#include "Cache/CachedValue.h"
#include "Cache/TransactionalCache.h"
#include "Indexes/SimpleAttributeEqualityMatcher.h"
#include "Transaction/Context.h"
#include "Transaction/Helpers.h"
#include "Transaction/Methods.h"
#include "VocBase/LogicalCollection.h"
#include "RocksDBEngine/RocksDBCollection.h"
#include "RocksDBEngine/RocksDBCommon.h"
#include "RocksDBEngine/RocksDBKey.h"
#include "RocksDBEngine/RocksDBKeyBounds.h"
#include "RocksDBEngine/RocksDBToken.h"
#include "RocksDBEngine/RocksDBTransactionState.h"
#include "RocksDBEngine/RocksDBTypes.h"
#include <rocksdb/db.h>
#include <rocksdb/options.h>
#include <rocksdb/slice.h>
#include <rocksdb/utilities/transaction_db.h>
#include <velocypack/Iterator.h>
#include <velocypack/velocypack-aliases.h>
using namespace arangodb;
using namespace arangodb::basics;
RocksDBEdgeIndexIterator::RocksDBEdgeIndexIterator(
LogicalCollection* collection, transaction::Methods* trx,
ManagedDocumentResult* mmdr, arangodb::RocksDBEdgeIndex const* index,
std::unique_ptr<VPackBuilder>& keys,
bool useCache, cache::Cache* cache)
: IndexIterator(collection, trx, mmdr, index),
_keys(keys.get()),
_keysIterator(_keys->slice()),
_index(index),
_cacheIndexPosition(0),
_bounds(RocksDBKeyBounds::EdgeIndex(0)),
_doUpdateBounds(true),
_useCache(useCache),
_cache(cache)
{
keys.release(); // now we have ownership for _keys
TRI_ASSERT(_keys->slice().isArray());
RocksDBTransactionState* state = rocksutils::toRocksTransactionState(_trx);
TRI_ASSERT(state != nullptr);
rocksdb::Transaction* rtrx = state->rocksTransaction();
_iterator.reset(rtrx->GetIterator(state->readOptions()));
}
void RocksDBEdgeIndexIterator::updateBounds(StringRef fromTo) {
_bounds = RocksDBKeyBounds::EdgeIndexVertex(_index->_objectId, fromTo);
_iterator->Seek(_bounds.start());
}
RocksDBEdgeIndexIterator::~RocksDBEdgeIndexIterator() {
if (_keys != nullptr) {
// return the VPackBuilder to the transaction context
_trx->transactionContextPtr()->returnBuilder(_keys.release());
}
}
StringRef getFromToFromIterator(arangodb::velocypack::ArrayIterator const& it){
VPackSlice fromTo = it.value();
if (fromTo.isObject()) {
fromTo = fromTo.get(StaticStrings::IndexEq);
}
TRI_ASSERT(fromTo.isString());
return StringRef(fromTo);
}
bool RocksDBEdgeIndexIterator::next(TokenCallback const& cb, size_t limit) {
TRI_ASSERT(_trx->state()->isRunning());
if (limit == 0 || !_keysIterator.valid()) {
// No limit no data, or we are actually done. The last call should have
// returned false
TRI_ASSERT(limit > 0); // Someone called with limit == 0. Api broken
return false;
}
// acquire rocksdb collection
RocksDBToken token;
while (_keysIterator.valid()) {
TRI_ASSERT(limit > 0);
StringRef fromTo = getFromToFromIterator(_keysIterator);
if (_useCache){
// find in cache
auto f = _cache->find(fromTo.data(),fromTo.size());
if (f.found()) {
//iterate over cached primary keys
VPackSlice cachedPrimaryKeys(f.value()->value());
for(std::size_t i = _cacheIndexPosition; i < cachedPrimaryKeys.length(); i++){
StringRef edgeKey(cachedPrimaryKeys.at(i));
if(lookupDocumentAndUseCb(edgeKey, cb, limit, token)){
return true; // more documents - funtion will be re-entered
} else {
//iterate over keys
}
_cacheIndexPosition = 0; //reset
}
continue; // do not use the code below that does a lookup in rocksdb
}
}
// cache lookup failed for key value we need to look up
// primary keys in rocksdb
// if there are more documents in the iterator then
// we are not allowed to reset the index.
// if _doUpdateBound is set to false we resume
// returning from an valid iterator after hitting
// the batch size limit
if(_doUpdateBounds){
updateBounds(fromTo);
_cacheValueBuilder.openArray();
} else {
_doUpdateBounds = true;
}
while (_iterator->Valid() && (_index->_cmp->Compare(_iterator->key(), _bounds.end()) < 0)) {
StringRef edgeKey = RocksDBKey::primaryKey(_iterator->key());
if(_useCache){
_cacheValueBuilder.add(VPackValuePair(edgeKey.data(),edgeKey.size()));
}
//insert into cache - how many documents do we have in range? estimate
if(lookupDocumentAndUseCb(edgeKey, cb, limit, token)){
return true; // more documents - funtion will be re-entered
} else {
// batch size limit not reached continue loop
}
}
_cacheValueBuilder.close();
if (_useCache) {
auto entry = cache::CachedValue::construct(
fromTo.data(), static_cast<uint32_t>(fromTo.size()),
_cacheValueBuilder.slice().start(), static_cast<uint64_t>(_cacheValueBuilder.slice().byteSize()));
bool cached = _cache->insert(entry);
if (!cached) {
delete entry;
}
}
_keysIterator.next(); // handle next key
}
return false; // no more documents in this iterator
}
// acquire the document token through the primary index
bool RocksDBEdgeIndexIterator::lookupDocumentAndUseCb(
StringRef primaryKey, TokenCallback const& cb,
size_t& limit, RocksDBToken& token){
//we pass the token in as ref to avoid allocations
auto rocksColl = toRocksDBCollection(_collection);
Result res = rocksColl->lookupDocumentToken(_trx, primaryKey, token);
_iterator->Next();
if (res.ok()) {
cb(token);
--limit;
if (limit == 0) {
_doUpdateBounds=false; //limit hit continue with next batch
return true;
}
} // TODO do we need to handle failed lookups here?
return false; // limit not hit continue in while loop
}
void RocksDBEdgeIndexIterator::reset() {
_doUpdateBounds = true;
//rest offsets into iterators
_keysIterator.reset();
_cacheIndexPosition = 0;
}
// ============================= Index ====================================
RocksDBEdgeIndex::RocksDBEdgeIndex(TRI_idx_iid_t iid,
arangodb::LogicalCollection* collection,
VPackSlice const& info,
std::string const& attr)
: RocksDBIndex(iid, collection, std::vector<std::vector<AttributeName>>(
{{AttributeName(attr, false)}}),
false, false,
basics::VelocyPackHelper::stringUInt64(info, "objectId")),
_directionAttr(attr) {
TRI_ASSERT(iid != 0);
if (_objectId != 0 && !ServerState::instance()->isCoordinator()) {
_useCache = true;
}
}
RocksDBEdgeIndex::~RocksDBEdgeIndex() {}
/// @brief return a selectivity estimate for the index
double RocksDBEdgeIndex::selectivityEstimate(
arangodb::StringRef const* attribute) const {
if (ServerState::instance()->isCoordinator()) {
// use hard-coded selectivity estimate in case of cluster coordinator
return 0.1;
}
if (attribute != nullptr) {
// the index attribute is given here
// now check if we can restrict the selectivity estimation to the correct
// part of the index
if (attribute->compare(_directionAttr) == 0) {
// _from
return 0.2; //_edgesFrom->selectivity();
} else {
return 0;
}
// other attribute. now return the average selectivity
}
// return average selectivity of the two index parts
// double estimate = (_edgesFrom->selectivity() + _edgesTo->selectivity()) *
// 0.5;
// TRI_ASSERT(estimate >= 0.0 &&
// estimate <= 1.00001); // floating-point tolerance
return 0.1;
}
/// @brief return the memory usage for the index
size_t RocksDBEdgeIndex::memory() const {
rocksdb::TransactionDB* db = rocksutils::globalRocksDB();
RocksDBKeyBounds bounds = RocksDBKeyBounds::EdgeIndex(_objectId);
rocksdb::Range r(bounds.start(), bounds.end());
uint64_t out;
db->GetApproximateSizes(&r, 1, &out, true);
return (size_t)out;
}
/// @brief return a VelocyPack representation of the index
void RocksDBEdgeIndex::toVelocyPack(VPackBuilder& builder, bool withFigures,
bool forPersistence) const {
builder.openObject();
RocksDBIndex::toVelocyPack(builder, withFigures, forPersistence);
// add slectivity estimate hard-coded
builder.add("unique", VPackValue(false));
builder.add("sparse", VPackValue(false));
builder.close();
}
/// @brief return a VelocyPack representation of the index figures
void RocksDBEdgeIndex::toVelocyPackFigures(VPackBuilder& builder) const {
Index::toVelocyPackFigures(builder);
// TODO
THROW_ARANGO_NOT_YET_IMPLEMENTED();
}
int RocksDBEdgeIndex::insert(transaction::Methods* trx,
TRI_voc_rid_t revisionId, VPackSlice const& doc,
bool isRollback) {
VPackSlice primaryKey = doc.get(StaticStrings::KeyString);
VPackSlice fromTo = doc.get(_directionAttr);
TRI_ASSERT(primaryKey.isString() && fromTo.isString());
auto fromToRef=StringRef(fromTo);
RocksDBKey key = RocksDBKey::EdgeIndexValue(_objectId, fromToRef,
StringRef(primaryKey));
//blacklist key in cache
cacheBlackListKey(fromToRef.data(),fromToRef.size());
// acquire rocksdb transaction
RocksDBTransactionState* state = rocksutils::toRocksTransactionState(trx);
rocksdb::Transaction* rtrx = state->rocksTransaction();
rocksdb::Status status =
rtrx->Put(rocksdb::Slice(key.string()), rocksdb::Slice());
if (status.ok()) {
return TRI_ERROR_NO_ERROR;
} else {
return rocksutils::convertStatus(status).errorNumber();
}
}
int RocksDBEdgeIndex::insertRaw(rocksdb::WriteBatchWithIndex*,
TRI_voc_rid_t, VPackSlice const&) {
THROW_ARANGO_EXCEPTION(TRI_ERROR_NOT_IMPLEMENTED);
}
int RocksDBEdgeIndex::remove(transaction::Methods* trx,
TRI_voc_rid_t revisionId, VPackSlice const& doc,
bool isRollback) {
VPackSlice primaryKey = doc.get(StaticStrings::KeyString);
VPackSlice fromTo = doc.get(_directionAttr);
auto fromToRef=StringRef(fromTo);
TRI_ASSERT(primaryKey.isString() && fromTo.isString());
RocksDBKey key = RocksDBKey::EdgeIndexValue(_objectId, fromToRef,
StringRef(primaryKey));
//blacklist key in cache
cacheBlackListKey(fromToRef.data(),fromToRef.size());
// acquire rocksdb transaction
RocksDBTransactionState* state = rocksutils::toRocksTransactionState(trx);
rocksdb::Transaction* rtrx = state->rocksTransaction();
rocksdb::Status status = rtrx->Delete(rocksdb::Slice(key.string()));
if (status.ok()) {
return TRI_ERROR_NO_ERROR;
} else {
return rocksutils::convertStatus(status).errorNumber();
}
}
/// optimization for truncateNoTrx, never called in fillIndex
int RocksDBEdgeIndex::removeRaw(rocksdb::WriteBatch* writeBatch,
TRI_voc_rid_t, VPackSlice const& doc) {
VPackSlice primaryKey = doc.get(StaticStrings::KeyString);
VPackSlice fromTo = doc.get(_directionAttr);
TRI_ASSERT(primaryKey.isString() && fromTo.isString());
auto fromToRef=StringRef(fromTo);
RocksDBKey key = RocksDBKey::EdgeIndexValue(_objectId, fromToRef,
StringRef(primaryKey));
//blacklist key in cache
cacheBlackListKey(fromToRef.data(),fromToRef.size());
writeBatch->Delete(rocksdb::Slice(key.string()));
return TRI_ERROR_NO_ERROR;
}
void RocksDBEdgeIndex::batchInsert(
transaction::Methods* trx,
std::vector<std::pair<TRI_voc_rid_t, VPackSlice>> const& documents,
std::shared_ptr<arangodb::basics::LocalTaskQueue> queue) {
// acquire rocksdb transaction
RocksDBTransactionState* state = rocksutils::toRocksTransactionState(trx);
rocksdb::Transaction* rtrx = state->rocksTransaction();
for (std::pair<TRI_voc_rid_t, VPackSlice> const& doc : documents) {
VPackSlice primaryKey = doc.second.get(StaticStrings::KeyString);
VPackSlice fromTo = doc.second.get(_directionAttr);
TRI_ASSERT(primaryKey.isString() && fromTo.isString());
auto fromToRef=StringRef(fromTo);
RocksDBKey key = RocksDBKey::EdgeIndexValue(_objectId, fromToRef,
StringRef(primaryKey));
cacheBlackListKey(fromToRef.data(),fromToRef.size());
rocksdb::Status status =
rtrx->Put(rocksdb::Slice(key.string()), rocksdb::Slice());
if (!status.ok()) {
Result res =
rocksutils::convertStatus(status, rocksutils::StatusHint::index);
queue->setStatus(res.errorNumber());
break;
}
}
}
/// @brief called when the index is dropped
int RocksDBEdgeIndex::drop() {
// First drop the cache all indexes can work without it.
RocksDBIndex::drop();
return rocksutils::removeLargeRange(rocksutils::globalRocksDB(),
RocksDBKeyBounds::EdgeIndex(_objectId))
.errorNumber();
}
/// @brief checks whether the index supports the condition
bool RocksDBEdgeIndex::supportsFilterCondition(
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* mmdr,
arangodb::aql::AstNode const* node,
arangodb::aql::Variable const* reference, bool reverse) {
//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, mmdr, 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, mmdr, this);
}
return createInIterator(trx, mmdr, attrNode, valNode);
}
// operator type unsupported
return new EmptyIndexIterator(_collection, trx, mmdr, this);
}
/// @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);
}
/// @brief Transform the list of search slices to search values.
/// This will multiply all IN entries and simply return all other
/// entries.
void RocksDBEdgeIndex::expandInSearchValues(VPackSlice const slice,
VPackBuilder& builder) const {
TRI_ASSERT(slice.isArray());
builder.openArray();
for (auto const& side : VPackArrayIterator(slice)) {
if (side.isNull()) {
builder.add(side);
} else {
TRI_ASSERT(side.isArray());
builder.openArray();
for (auto const& item : VPackArrayIterator(side)) {
TRI_ASSERT(item.isObject());
if (item.hasKey(StaticStrings::IndexEq)) {
TRI_ASSERT(!item.hasKey(StaticStrings::IndexIn));
builder.add(item);
} else {
TRI_ASSERT(item.hasKey(StaticStrings::IndexIn));
VPackSlice list = item.get(StaticStrings::IndexIn);
TRI_ASSERT(list.isArray());
for (auto const& it : VPackArrayIterator(list)) {
builder.openObject();
builder.add(StaticStrings::IndexEq, it);
builder.close();
}
}
}
builder.close();
}
}
builder.close();
}
// ===================== Helpers ==================
/// @brief create the iterator
IndexIterator* RocksDBEdgeIndex::createEqIterator(
transaction::Methods* trx, ManagedDocumentResult* mmdr,
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, mmdr, this, keys, useCache(), _cache.get());
}
/// @brief create the iterator
IndexIterator* RocksDBEdgeIndex::createInIterator(
transaction::Methods* trx, ManagedDocumentResult* mmdr,
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();
size_t const n = valNode->numMembers();
for (size_t i = 0; i < n; ++i) {
handleValNode(keys.get(), valNode->getMemberUnchecked(i));
TRI_IF_FAILURE("EdgeIndex::iteratorValNodes") {
THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
}
}
TRI_IF_FAILURE("EdgeIndex::noIterator") {
THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
}
keys->close();
return new RocksDBEdgeIndexIterator(
_collection, trx, mmdr, this, keys, useCache(), _cache.get());
}
/// @brief add a single value node to the iterator's keys
void RocksDBEdgeIndex::handleValNode(
VPackBuilder* keys, arangodb::aql::AstNode const* valNode) const {
if (!valNode->isStringValue() || valNode->getStringLength() == 0) {
return;
}
keys->openObject();
keys->add(StaticStrings::IndexEq,
VPackValuePair(valNode->getStringValue(),
valNode->getStringLength(), VPackValueType::String));
keys->close();
TRI_IF_FAILURE("EdgeIndex::collectKeys") {
THROW_ARANGO_EXCEPTION(TRI_ERROR_DEBUG);
}
}
int RocksDBEdgeIndex::cleanup() {
rocksdb::TransactionDB* db = rocksutils::globalRocksDB();
rocksdb::CompactRangeOptions opts;
RocksDBKeyBounds bounds = RocksDBKeyBounds::EdgeIndex(_objectId);
rocksdb::Slice b = bounds.start(), e = bounds.end();
db->CompactRange(opts, &b, &e);
return TRI_ERROR_NO_ERROR;
}