rkhachatryan commented on a change in pull request #13351:
URL: https://github.com/apache/flink/pull/13351#discussion_r495087415



##########
File path: 
flink-runtime/src/main/java/org/apache/flink/runtime/checkpoint/channel/SequentialChannelStateReaderImpl.java
##########
@@ -0,0 +1,263 @@
+/*
+ * Licensed to the Apache Software Foundation (ASF) under one or more
+ * contributor license agreements.  See the NOTICE file distributed with
+ * this work for additional information regarding copyright ownership.
+ * The ASF licenses this file to You 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.
+ */
+
+package org.apache.flink.runtime.checkpoint.channel;
+
+import org.apache.flink.api.java.tuple.Tuple2;
+import org.apache.flink.core.fs.FSDataInputStream;
+import org.apache.flink.runtime.checkpoint.OperatorSubtaskState;
+import org.apache.flink.runtime.checkpoint.StateObjectCollection;
+import org.apache.flink.runtime.checkpoint.TaskStateSnapshot;
+import org.apache.flink.runtime.io.network.api.writer.ResultPartitionWriter;
+import org.apache.flink.runtime.io.network.buffer.Buffer;
+import org.apache.flink.runtime.io.network.buffer.BufferBuilder;
+import org.apache.flink.runtime.io.network.buffer.BufferConsumer;
+import org.apache.flink.runtime.io.network.partition.consumer.InputGate;
+import 
org.apache.flink.runtime.io.network.partition.consumer.RecoveredInputChannel;
+import org.apache.flink.runtime.state.AbstractChannelStateHandle;
+import org.apache.flink.runtime.state.StreamStateHandle;
+import org.apache.flink.util.Preconditions;
+
+import java.io.IOException;
+import java.util.Collection;
+import java.util.HashSet;
+import java.util.List;
+import java.util.Map;
+import java.util.Set;
+import java.util.function.Consumer;
+import java.util.function.Function;
+import java.util.stream.Stream;
+
+import static java.util.Comparator.comparingLong;
+import static java.util.stream.Collectors.groupingBy;
+import static java.util.stream.Collectors.toList;
+import static 
org.apache.flink.runtime.checkpoint.channel.ChannelStateByteBuffer.wrap;
+
+/**
+ * {@link SequentialChannelStateReader} implementation.
+ */
+public class SequentialChannelStateReaderImpl implements 
SequentialChannelStateReader {
+
+       private final TaskStateSnapshot taskStateSnapshot;
+       private final ChannelStateSerializer serializer;
+       private final ChannelStateChunkReader chunkReader;
+
+       public SequentialChannelStateReaderImpl(TaskStateSnapshot 
taskStateSnapshot) {
+               this(taskStateSnapshot, new ChannelStateSerializerImpl());
+       }
+
+       public SequentialChannelStateReaderImpl(TaskStateSnapshot 
taskStateSnapshot, ChannelStateSerializer serializer) {
+               this.taskStateSnapshot = taskStateSnapshot;
+               this.serializer = serializer;
+               this.chunkReader = new ChannelStateChunkReader(serializer);
+       }
+
+       public SequentialChannelStateReaderImpl(TaskStateSnapshot 
taskStateSnapshot, ChannelStateSerializer serializer, ChannelStateChunkReader 
chunkReader) {
+               this.taskStateSnapshot = taskStateSnapshot;
+               this.serializer = serializer;
+               this.chunkReader = chunkReader;
+       }
+
+       @Override
+       public boolean hasChannelStates() {
+               return 
taskStateSnapshot.getSubtaskStateMappings().stream().anyMatch(subtaskStateEntry 
->
+                       
subtaskStateEntry.getValue().getInputChannelState().stream().anyMatch(h -> 
!h.getOffsets().isEmpty()) ||
+                               
subtaskStateEntry.getValue().getResultSubpartitionState().stream().anyMatch(h 
-> !h.getOffsets().isEmpty()));
+       }
+
+       @Override
+       public void readInputData(InputGate[] inputGates) throws IOException {
+               try (InputChannelRecoveredStateHandler stateHandler = new 
InputChannelRecoveredStateHandler(inputGates)) {
+                       read(OperatorSubtaskState::getInputChannelState, 
stateHandler);
+               }
+       }
+
+       @Override
+       public void readOutputData(ResultPartitionWriter[] writers) throws 
IOException {
+               try (ResultSubpartitionRecoveredStateHandler stateHandler = new 
ResultSubpartitionRecoveredStateHandler(writers)) {
+                       read(OperatorSubtaskState::getResultSubpartitionState, 
stateHandler);
+               }
+       }
+
+       private <Info, Context, Handle extends 
AbstractChannelStateHandle<Info>> void read(
+                       Function<OperatorSubtaskState, 
StateObjectCollection<Handle>> stateHandleExtractor,
+                       RecoveredChannelStateHandler<Info, Context> 
stateHandler) throws IOException {
+               for (Map.Entry<StreamStateHandle, List<Handle>> 
delegateAndHandles : groupByDelegate(streamSubtaskStates(), 
stateHandleExtractor).entrySet()) {
+                       readSequentially(delegateAndHandles.getKey(), 
delegateAndHandles.getValue(), stateHandler);
+               }
+       }
+
+       private <Info, Context, Handle extends 
AbstractChannelStateHandle<Info>> void readSequentially(
+                       StreamStateHandle streamStateHandle,
+                       List<Handle> channelStateHandles,
+                       RecoveredChannelStateHandler<Info, Context> 
stateHandler) throws IOException {
+               try (FSDataInputStream is = 
streamStateHandle.openInputStream()) {
+                       serializer.readHeader(is);
+                       for (Tuple2<Long, Info> offsetAndChannelInfo : 
extractOffsetsSorted(channelStateHandles)) {
+                               chunkReader.readChunk(is, 
offsetAndChannelInfo.f0, stateHandler, offsetAndChannelInfo.f1);
+                       }
+               }
+       }
+
+       private Stream<OperatorSubtaskState> streamSubtaskStates() {
+               return 
taskStateSnapshot.getSubtaskStateMappings().stream().map(Map.Entry::getValue);
+       }
+
+       private static <Info, Handle extends AbstractChannelStateHandle<Info>> 
Map<StreamStateHandle, List<Handle>> groupByDelegate(
+                       Stream<OperatorSubtaskState> states,
+                       Function<OperatorSubtaskState, 
StateObjectCollection<Handle>> stateHandleExtractor) {
+               return states
+                       .map(stateHandleExtractor).flatMap(Collection::stream)
+                       .peek(validate())
+                       
.collect(groupingBy(AbstractChannelStateHandle::getDelegate));
+       }
+
+       private static <Info, Handle extends AbstractChannelStateHandle<Info>> 
Consumer<Handle> validate() {
+               Set<Info> seen = new HashSet<>();
+               // expect each channel to be described only once; otherwise, 
buffers in channel could be re-ordered
+               return handle -> 
Preconditions.checkState(seen.add(handle.getInfo()), "duplicate channel info: 
%s");
+       }
+
+       private static <Info, Handle extends AbstractChannelStateHandle<Info>> 
List<Tuple2<Long, Info>> extractOffsetsSorted(List<Handle> channelStateHandles) 
{
+               return channelStateHandles
+                       .stream()
+                       
.flatMap(SequentialChannelStateReaderImpl::extractOffsets)
+                       .sorted(comparingLong(offsetAndInfo -> 
offsetAndInfo.f0))
+                       .collect(toList());
+       }
+
+       private static  <Info, Handle extends AbstractChannelStateHandle<Info>> 
Stream<Tuple2<Long, Info>> extractOffsets(Handle handle) {
+               return handle.getOffsets().stream().map(offset -> 
Tuple2.of(offset, handle.getInfo()));
+       }
+
+       @Override
+       public void close() throws Exception {
+       }
+
+}
+
+interface RecoveredChannelStateHandler<Info, Context> extends AutoCloseable {
+       Tuple2<ChannelStateByteBuffer, Context> getBuffer(Info info) throws 
IOException;
+
+       void recover(Info info, Context context) throws IOException;
+}
+
+class InputChannelRecoveredStateHandler implements 
RecoveredChannelStateHandler<InputChannelInfo, Buffer> {
+       private final InputGate[] inputGates;
+
+       InputChannelRecoveredStateHandler(InputGate[] inputGates) {
+               this.inputGates = inputGates;
+       }
+
+       @Override
+       public Tuple2<ChannelStateByteBuffer, Buffer> 
getBuffer(InputChannelInfo channelInfo) throws IOException {
+               RecoveredInputChannel channel = getChannel(channelInfo);
+               Buffer buffer;
+               try {
+                       buffer = channel.getBuffer();
+                       return Tuple2.of(wrap(buffer), buffer);
+               } catch (InterruptedException e) {
+                       throw new IOException(e);
+               }
+       }
+
+       @Override
+       public void recover(InputChannelInfo channelInfo, Buffer buffer) {
+               if (buffer.readableBytes() > 0) {
+                       getChannel(channelInfo).onRecoveredStateBuffer(buffer);
+               } else {
+                       buffer.recycleBuffer();
+               }
+       }
+
+       @Override
+       public void close() throws IOException {
+               // note that we need to finish all RecoveredInputChannels, not 
just those with state
+               for (final InputGate inputGate : inputGates) {
+                       inputGate.finishReadRecoveredState();
+               }
+       }
+
+       private RecoveredInputChannel getChannel(InputChannelInfo info) {
+               return (RecoveredInputChannel) 
inputGates[info.getGateIdx()].getChannel(info.getInputChannelIdx());
+       }
+}
+
+class ResultSubpartitionRecoveredStateHandler implements 
RecoveredChannelStateHandler<ResultSubpartitionInfo, Tuple2<BufferBuilder, 
BufferConsumer>> {
+
+       private final ResultPartitionWriter[] writers;
+
+       ResultSubpartitionRecoveredStateHandler(ResultPartitionWriter[] 
writers) {
+               this.writers = writers;
+       }
+
+       @Override
+       public Tuple2<ChannelStateByteBuffer, Tuple2<BufferBuilder, 
BufferConsumer>> getBuffer(ResultSubpartitionInfo subpartitionInfo) throws 
IOException {
+               BufferBuilder bufferBuilder;
+               try {
+                       bufferBuilder = 
getWriter(subpartitionInfo).getBufferBuilder(subpartitionInfo.getSubPartitionIdx());
+               } catch (InterruptedException e) {
+                       throw new IOException(e);

Review comment:
       You're right about `currentThread().interrupt()` and that handling of 
`IOException` likely differs from that of `InterruptedException`. 
   But for the latter, I think it's better to wrap it into `RuntimeException`.




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