435 lines
19 KiB
C++
435 lines
19 KiB
C++
/*
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* RestoreCommon.actor.cpp
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*
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* This source file is part of the FoundationDB open source project
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*
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* Copyright 2013-2018 Apple Inc. and the FoundationDB project authors
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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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// This file implements the functions defined in RestoreCommon.actor.h
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// The functions in this file are copied from BackupAgent
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#include "fdbserver/RestoreCommon.actor.h"
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#include "fdbclient/NativeAPI.actor.h"
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#include "fdbclient/SystemData.h"
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// Backup agent header
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#include "fdbclient/BackupAgent.actor.h"
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//#include "FileBackupAgent.h"
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#include "fdbclient/ManagementAPI.actor.h"
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#include "fdbclient/MutationList.h"
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#include "fdbclient/BackupContainer.h"
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#include "flow/actorcompiler.h" // This must be the last #include.
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// Split RestoreConfigFR defined in FileBackupAgent.actor.cpp to declaration in Restore.actor.h and implementation in
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// RestoreCommon.actor.cpp
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KeyBackedProperty<ERestoreState> RestoreConfigFR::stateEnum() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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Future<StringRef> RestoreConfigFR::stateText(Reference<ReadYourWritesTransaction> tr) {
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return map(stateEnum().getD(tr), [](ERestoreState s) -> StringRef { return FileBackupAgent::restoreStateText(s); });
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}
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KeyBackedProperty<Key> RestoreConfigFR::addPrefix() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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KeyBackedProperty<Key> RestoreConfigFR::removePrefix() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// XXX: Remove restoreRange() once it is safe to remove. It has been changed to restoreRanges
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KeyBackedProperty<KeyRange> RestoreConfigFR::restoreRange() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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KeyBackedProperty<std::vector<KeyRange>> RestoreConfigFR::restoreRanges() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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KeyBackedProperty<Key> RestoreConfigFR::batchFuture() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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KeyBackedProperty<Version> RestoreConfigFR::restoreVersion() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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KeyBackedProperty<Reference<IBackupContainer>> RestoreConfigFR::sourceContainer() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// Get the source container as a bare URL, without creating a container instance
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KeyBackedProperty<Value> RestoreConfigFR::sourceContainerURL() {
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return configSpace.pack(LiteralStringRef("sourceContainer"));
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}
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// Total bytes written by all log and range restore tasks.
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KeyBackedBinaryValue<int64_t> RestoreConfigFR::bytesWritten() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// File blocks that have had tasks created for them by the Dispatch task
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KeyBackedBinaryValue<int64_t> RestoreConfigFR::filesBlocksDispatched() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// File blocks whose tasks have finished
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KeyBackedBinaryValue<int64_t> RestoreConfigFR::fileBlocksFinished() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// Total number of files in the fileMap
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KeyBackedBinaryValue<int64_t> RestoreConfigFR::fileCount() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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// Total number of file blocks in the fileMap
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KeyBackedBinaryValue<int64_t> RestoreConfigFR::fileBlockCount() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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Future<std::vector<KeyRange>> RestoreConfigFR::getRestoreRangesOrDefault(Reference<ReadYourWritesTransaction> tr) {
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return getRestoreRangesOrDefault_impl(this, tr);
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}
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ACTOR Future<std::vector<KeyRange>> RestoreConfigFR::getRestoreRangesOrDefault_impl(
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RestoreConfigFR* self, Reference<ReadYourWritesTransaction> tr) {
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state std::vector<KeyRange> ranges = wait(self->restoreRanges().getD(tr));
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if (ranges.empty()) {
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state KeyRange range = wait(self->restoreRange().getD(tr));
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ranges.push_back(range);
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}
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return ranges;
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}
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KeyBackedSet<RestoreConfigFR::RestoreFile> RestoreConfigFR::fileSet() {
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return configSpace.pack(LiteralStringRef(__FUNCTION__));
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}
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Future<bool> RestoreConfigFR::isRunnable(Reference<ReadYourWritesTransaction> tr) {
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return map(stateEnum().getD(tr), [](ERestoreState s) -> bool {
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return s != ERestoreState::ABORTED && s != ERestoreState::COMPLETED && s != ERestoreState::UNITIALIZED;
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});
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}
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Future<Void> RestoreConfigFR::logError(Database cx, Error e, std::string const& details, void* taskInstance) {
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if (!uid.isValid()) {
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TraceEvent(SevError, "FileRestoreErrorNoUID").error(e).detail("Description", details);
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return Void();
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}
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TraceEvent t(SevWarn, "FileRestoreError");
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t.error(e).detail("RestoreUID", uid).detail("Description", details).detail("TaskInstance", (uint64_t)taskInstance);
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// These should not happen
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if (e.code() == error_code_key_not_found) t.backtrace();
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return updateErrorInfo(cx, e, details);
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}
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Key RestoreConfigFR::mutationLogPrefix() {
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return uidPrefixKey(applyLogKeys.begin, uid);
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}
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Key RestoreConfigFR::applyMutationsMapPrefix() {
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return uidPrefixKey(applyMutationsKeyVersionMapRange.begin, uid);
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}
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ACTOR Future<int64_t> RestoreConfigFR::getApplyVersionLag_impl(Reference<ReadYourWritesTransaction> tr, UID uid) {
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// Both of these are snapshot reads
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state Future<Optional<Value>> beginVal = tr->get(uidPrefixKey(applyMutationsBeginRange.begin, uid), true);
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state Future<Optional<Value>> endVal = tr->get(uidPrefixKey(applyMutationsEndRange.begin, uid), true);
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wait(success(beginVal) && success(endVal));
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if (!beginVal.get().present() || !endVal.get().present()) return 0;
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Version beginVersion = BinaryReader::fromStringRef<Version>(beginVal.get().get(), Unversioned());
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Version endVersion = BinaryReader::fromStringRef<Version>(endVal.get().get(), Unversioned());
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return endVersion - beginVersion;
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}
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Future<int64_t> RestoreConfigFR::getApplyVersionLag(Reference<ReadYourWritesTransaction> tr) {
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return getApplyVersionLag_impl(tr, uid);
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}
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void RestoreConfigFR::initApplyMutations(Reference<ReadYourWritesTransaction> tr, Key addPrefix, Key removePrefix) {
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// Set these because they have to match the applyMutations values.
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this->addPrefix().set(tr, addPrefix);
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this->removePrefix().set(tr, removePrefix);
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clearApplyMutationsKeys(tr);
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// Initialize add/remove prefix, range version map count and set the map's start key to InvalidVersion
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tr->set(uidPrefixKey(applyMutationsAddPrefixRange.begin, uid), addPrefix);
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tr->set(uidPrefixKey(applyMutationsRemovePrefixRange.begin, uid), removePrefix);
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int64_t startCount = 0;
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tr->set(uidPrefixKey(applyMutationsKeyVersionCountRange.begin, uid), StringRef((uint8_t*)&startCount, 8));
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Key mapStart = uidPrefixKey(applyMutationsKeyVersionMapRange.begin, uid);
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tr->set(mapStart, BinaryWriter::toValue<Version>(invalidVersion, Unversioned()));
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}
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void RestoreConfigFR::clearApplyMutationsKeys(Reference<ReadYourWritesTransaction> tr) {
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tr->setOption(FDBTransactionOptions::COMMIT_ON_FIRST_PROXY);
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// Clear add/remove prefix keys
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tr->clear(uidPrefixKey(applyMutationsAddPrefixRange.begin, uid));
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tr->clear(uidPrefixKey(applyMutationsRemovePrefixRange.begin, uid));
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// Clear range version map and count key
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tr->clear(uidPrefixKey(applyMutationsKeyVersionCountRange.begin, uid));
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Key mapStart = uidPrefixKey(applyMutationsKeyVersionMapRange.begin, uid);
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tr->clear(KeyRangeRef(mapStart, strinc(mapStart)));
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// Clear any loaded mutations that have not yet been applied
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Key mutationPrefix = mutationLogPrefix();
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tr->clear(KeyRangeRef(mutationPrefix, strinc(mutationPrefix)));
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// Clear end and begin versions (intentionally in this order)
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tr->clear(uidPrefixKey(applyMutationsEndRange.begin, uid));
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tr->clear(uidPrefixKey(applyMutationsBeginRange.begin, uid));
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}
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void RestoreConfigFR::setApplyBeginVersion(Reference<ReadYourWritesTransaction> tr, Version ver) {
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tr->set(uidPrefixKey(applyMutationsBeginRange.begin, uid), BinaryWriter::toValue(ver, Unversioned()));
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}
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void RestoreConfigFR::setApplyEndVersion(Reference<ReadYourWritesTransaction> tr, Version ver) {
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tr->set(uidPrefixKey(applyMutationsEndRange.begin, uid), BinaryWriter::toValue(ver, Unversioned()));
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}
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Future<Version> RestoreConfigFR::getApplyEndVersion(Reference<ReadYourWritesTransaction> tr) {
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return map(tr->get(uidPrefixKey(applyMutationsEndRange.begin, uid)), [=](Optional<Value> const& value) -> Version {
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return value.present() ? BinaryReader::fromStringRef<Version>(value.get(), Unversioned()) : 0;
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});
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}
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// Meng: Change RestoreConfigFR to Reference<RestoreConfigFR> because FastRestore pass the Reference<RestoreConfigFR> around
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ACTOR Future<std::string> RestoreConfigFR::getProgress_impl(Reference<RestoreConfigFR> restore,
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Reference<ReadYourWritesTransaction> tr) {
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tr->setOption(FDBTransactionOptions::ACCESS_SYSTEM_KEYS);
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tr->setOption(FDBTransactionOptions::LOCK_AWARE);
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state Future<int64_t> fileCount = restore->fileCount().getD(tr);
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state Future<int64_t> fileBlockCount = restore->fileBlockCount().getD(tr);
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state Future<int64_t> fileBlocksDispatched = restore->filesBlocksDispatched().getD(tr);
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state Future<int64_t> fileBlocksFinished = restore->fileBlocksFinished().getD(tr);
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state Future<int64_t> bytesWritten = restore->bytesWritten().getD(tr);
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state Future<StringRef> status = restore->stateText(tr);
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state Future<Version> lag = restore->getApplyVersionLag(tr);
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state Future<std::string> tag = restore->tag().getD(tr);
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state Future<std::pair<std::string, Version>> lastError = restore->lastError().getD(tr);
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// restore might no longer be valid after the first wait so make sure it is not needed anymore.
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state UID uid = restore->getUid();
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wait(success(fileCount) && success(fileBlockCount) && success(fileBlocksDispatched) &&
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success(fileBlocksFinished) && success(bytesWritten) && success(status) && success(lag) && success(tag) &&
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success(lastError));
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std::string errstr = "None";
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if (lastError.get().second != 0)
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errstr = format("'%s' %llds ago.\n", lastError.get().first.c_str(),
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(tr->getReadVersion().get() - lastError.get().second) / CLIENT_KNOBS->CORE_VERSIONSPERSECOND);
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TraceEvent("FileRestoreProgress")
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.detail("RestoreUID", uid)
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.detail("Tag", tag.get())
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.detail("State", status.get().toString())
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.detail("FileCount", fileCount.get())
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.detail("FileBlocksFinished", fileBlocksFinished.get())
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.detail("FileBlocksTotal", fileBlockCount.get())
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.detail("FileBlocksInProgress", fileBlocksDispatched.get() - fileBlocksFinished.get())
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.detail("BytesWritten", bytesWritten.get())
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.detail("ApplyLag", lag.get())
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.detail("TaskInstance", THIS_ADDR)
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.backtrace();
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return format("Tag: %s UID: %s State: %s Blocks: %lld/%lld BlocksInProgress: %lld Files: %lld BytesWritten: "
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"%lld ApplyVersionLag: %lld LastError: %s",
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tag.get().c_str(), uid.toString().c_str(), status.get().toString().c_str(), fileBlocksFinished.get(),
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fileBlockCount.get(), fileBlocksDispatched.get() - fileBlocksFinished.get(), fileCount.get(),
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bytesWritten.get(), lag.get(), errstr.c_str());
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}
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Future<std::string> RestoreConfigFR::getProgress(Reference<ReadYourWritesTransaction> tr) {
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Reference<RestoreConfigFR> restore = Reference<RestoreConfigFR>(this);
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return getProgress_impl(restore, tr);
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}
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// Meng: Change RestoreConfigFR to Reference<RestoreConfigFR>
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ACTOR Future<std::string> RestoreConfigFR::getFullStatus_impl(Reference<RestoreConfigFR> restore,
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Reference<ReadYourWritesTransaction> tr) {
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tr->setOption(FDBTransactionOptions::ACCESS_SYSTEM_KEYS);
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tr->setOption(FDBTransactionOptions::LOCK_AWARE);
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state Future<std::vector<KeyRange>> ranges = restore->getRestoreRangesOrDefault(tr);
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state Future<Key> addPrefix = restore->addPrefix().getD(tr);
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state Future<Key> removePrefix = restore->removePrefix().getD(tr);
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state Future<Key> url = restore->sourceContainerURL().getD(tr);
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state Future<Version> restoreVersion = restore->restoreVersion().getD(tr);
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state Future<std::string> progress = restore->getProgress(tr);
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// restore might no longer be valid after the first wait so make sure it is not needed anymore.
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wait(success(ranges) && success(addPrefix) && success(removePrefix) &&
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success(url) && success(restoreVersion) && success(progress));
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std::string returnStr;
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returnStr = format("%s URL: %s", progress.get().c_str(), url.get().toString().c_str());
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for (auto& range : ranges.get()) {
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returnStr += format(" Range: '%s'-'%s'", printable(range.begin).c_str(), printable(range.end).c_str());
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}
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returnStr += format(" AddPrefix: '%s' RemovePrefix: '%s' Version: %lld", printable(addPrefix.get()).c_str(),
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printable(removePrefix.get()).c_str(), restoreVersion.get());
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return returnStr;
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}
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Future<std::string> RestoreConfigFR::getFullStatus(Reference<ReadYourWritesTransaction> tr) {
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Reference<RestoreConfigFR> restore = Reference<RestoreConfigFR>(this);
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return getFullStatus_impl(restore, tr);
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}
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std::string RestoreConfigFR::toString() {
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std::stringstream ss;
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ss << "uid:" << uid.toString() << " prefix:" << prefix.contents().toString();
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return ss.str();
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}
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// parallelFileRestore is copied from FileBackupAgent.actor.cpp for the same reason as RestoreConfigFR is copied
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// The implementation of parallelFileRestore is copied from FileBackupAgent.actor.cpp
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// parallelFileRestore is copied from FileBackupAgent.actor.cpp for the same reason as RestoreConfigFR is copied
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namespace parallelFileRestore {
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// Helper class for reading restore data from a buffer and throwing the right errors.
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struct StringRefReader {
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StringRefReader(StringRef s = StringRef(), Error e = Error()) : rptr(s.begin()), end(s.end()), failure_error(e) {}
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// Return remainder of data as a StringRef
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StringRef remainder() { return StringRef(rptr, end - rptr); }
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// Return a pointer to len bytes at the current read position and advance read pos
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const uint8_t* consume(unsigned int len) {
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if (rptr == end && len != 0) throw end_of_stream();
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const uint8_t* p = rptr;
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rptr += len;
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if (rptr > end) throw failure_error;
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return p;
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}
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// Return a T from the current read position and advance read pos
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template <typename T>
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const T consume() {
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return *(const T*)consume(sizeof(T));
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}
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// Functions for consuming big endian (network byte order) integers.
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// Consumes a big endian number, swaps it to little endian, and returns it.
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int32_t consumeNetworkInt32() { return (int32_t)bigEndian32((uint32_t)consume<int32_t>()); }
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uint32_t consumeNetworkUInt32() { return bigEndian32(consume<uint32_t>()); }
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bool eof() { return rptr == end; }
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const uint8_t *rptr, *end;
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Error failure_error;
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};
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ACTOR Future<Standalone<VectorRef<KeyValueRef>>> decodeRangeFileBlock(Reference<IAsyncFile> file, int64_t offset,
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int len) {
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state Standalone<StringRef> buf = makeString(len);
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int rLen = wait(file->read(mutateString(buf), len, offset));
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if (rLen != len) throw restore_bad_read();
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Standalone<VectorRef<KeyValueRef>> results({}, buf.arena());
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state parallelFileRestore::StringRefReader reader(buf, restore_corrupted_data());
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try {
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// Read header, currently only decoding version 1001
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if (reader.consume<int32_t>() != 1001) throw restore_unsupported_file_version();
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// Read begin key, if this fails then block was invalid.
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uint32_t kLen = reader.consumeNetworkUInt32();
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const uint8_t* k = reader.consume(kLen);
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results.push_back(results.arena(), KeyValueRef(KeyRef(k, kLen), ValueRef()));
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// Read kv pairs and end key
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while (1) {
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// Read a key.
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kLen = reader.consumeNetworkUInt32();
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k = reader.consume(kLen);
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// If eof reached or first value len byte is 0xFF then a valid block end was reached.
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if (reader.eof() || *reader.rptr == 0xFF) {
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results.push_back(results.arena(), KeyValueRef(KeyRef(k, kLen), ValueRef()));
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break;
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}
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// Read a value, which must exist or the block is invalid
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uint32_t vLen = reader.consumeNetworkUInt32();
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const uint8_t* v = reader.consume(vLen);
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results.push_back(results.arena(), KeyValueRef(KeyRef(k, kLen), ValueRef(v, vLen)));
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// If eof reached or first byte of next key len is 0xFF then a valid block end was reached.
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if (reader.eof() || *reader.rptr == 0xFF) break;
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}
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// Make sure any remaining bytes in the block are 0xFF
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for (auto b : reader.remainder())
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if (b != 0xFF) throw restore_corrupted_data_padding();
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return results;
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} catch (Error& e) {
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TraceEvent(SevWarn, "FileRestoreCorruptRangeFileBlock")
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.error(e)
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.detail("Filename", file->getFilename())
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.detail("BlockOffset", offset)
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.detail("BlockLen", len)
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.detail("ErrorRelativeOffset", reader.rptr - buf.begin())
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.detail("ErrorAbsoluteOffset", reader.rptr - buf.begin() + offset);
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throw;
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}
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}
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ACTOR Future<Standalone<VectorRef<KeyValueRef>>> decodeLogFileBlock(Reference<IAsyncFile> file, int64_t offset,
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int len) {
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state Standalone<StringRef> buf = makeString(len);
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int rLen = wait(file->read(mutateString(buf), len, offset));
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if (rLen != len) throw restore_bad_read();
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Standalone<VectorRef<KeyValueRef>> results({}, buf.arena());
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state parallelFileRestore::StringRefReader reader(buf, restore_corrupted_data());
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try {
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// Read header, currently only decoding version 2001
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if (reader.consume<int32_t>() != 2001) throw restore_unsupported_file_version();
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// Read k/v pairs. Block ends either at end of last value exactly or with 0xFF as first key len byte.
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while (1) {
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// If eof reached or first key len bytes is 0xFF then end of block was reached.
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if (reader.eof() || *reader.rptr == 0xFF) break;
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// Read key and value. If anything throws then there is a problem.
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uint32_t kLen = reader.consumeNetworkUInt32();
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const uint8_t* k = reader.consume(kLen);
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uint32_t vLen = reader.consumeNetworkUInt32();
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const uint8_t* v = reader.consume(vLen);
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results.push_back(results.arena(), KeyValueRef(KeyRef(k, kLen), ValueRef(v, vLen)));
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}
|
|
|
|
// Make sure any remaining bytes in the block are 0xFF
|
|
for (auto b : reader.remainder())
|
|
if (b != 0xFF) throw restore_corrupted_data_padding();
|
|
|
|
return results;
|
|
|
|
} catch (Error& e) {
|
|
TraceEvent(SevWarn, "FileRestoreCorruptLogFileBlock")
|
|
.error(e)
|
|
.detail("Filename", file->getFilename())
|
|
.detail("BlockOffset", offset)
|
|
.detail("BlockLen", len)
|
|
.detail("ErrorRelativeOffset", reader.rptr - buf.begin())
|
|
.detail("ErrorAbsoluteOffset", reader.rptr - buf.begin() + offset);
|
|
throw;
|
|
}
|
|
}
|
|
|
|
} // namespace parallelFileRestore
|