Adding Nick Palmer's submission;
* Memory mapped file, single-pass parsing, custom hash map, fixed thread pool The threading was a hasty addition and needs work * Used arraylist instead of treemap to reduce a little overhead We only need it sorted for output, so only construct a treemap for output * Attempt to speed up double conversion * Cap core count for low-core systems * Fix wrong exponent * Accumulate measurement value in double, seems marginally faster Benchmark Mode Cnt Score Error Units DoubleParsingBenchmark.ourToDouble thrpt 10 569.771 ± 7.065 ops/us DoubleParsingBenchmark.ourToDoubleAccumulateInToDouble thrpt 10 648.026 ± 7.741 ops/us DoubleParsingBenchmark.ourToDoubleDivideInsteadOfMultiply thrpt 10 570.412 ± 9.329 ops/us DoubleParsingBenchmark.ourToDoubleNegative thrpt 10 512.618 ± 8.580 ops/us DoubleParsingBenchmark.ourToDoubleNegativeAccumulateInToDouble thrpt 10 565.043 ± 18.137 ops/us DoubleParsingBenchmark.ourToDoubleNegativeDivideInsteadOfMultiply thrpt 10 511.228 ± 13.967 ops/us DoubleParsingBenchmark.stringToDouble thrpt 10 52.310 ± 1.351 ops/us DoubleParsingBenchmark.stringToDoubleNegative thrpt 10 50.785 ± 1.252 ops/us
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calculate_average_palmr.sh
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calculate_average_palmr.sh
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#!/bin/sh
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#
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# Copyright 2023 The original 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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JAVA_OPTS="--enable-preview"
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time java $JAVA_OPTS --class-path target/average-1.0.0-SNAPSHOT.jar dev.morling.onebrc.CalculateAverage_palmr
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src/main/java/dev/morling/onebrc/CalculateAverage_palmr.java
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src/main/java/dev/morling/onebrc/CalculateAverage_palmr.java
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/*
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* Copyright 2023 The original 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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package dev.morling.onebrc;
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import java.io.IOException;
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import java.io.RandomAccessFile;
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import java.nio.ByteBuffer;
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import java.nio.channels.FileChannel;
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import java.nio.charset.StandardCharsets;
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import java.util.*;
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public class CalculateAverage_palmr {
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private static final String FILE = "./measurements.txt";
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public static final int CHUNK_SIZE = 1024 * 1024 * 10; // Trial and error showed ~10MB to be a good size on our machine
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public static final int LITTLE_CHUNK_SIZE = 128; // Enough bytes to cover a station name and measurement value :fingers-crossed:
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public static final int STATION_NAME_BUFFER_SIZE = 50;
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public static final int THREAD_COUNT = Math.min(8, Runtime.getRuntime().availableProcessors());
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public static void main(String[] args) throws IOException {
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@SuppressWarnings("resource") // It's faster to leak the file than be well-behaved
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RandomAccessFile file = new RandomAccessFile(FILE, "r");
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FileChannel channel = file.getChannel();
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long fileSize = channel.size();
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long threadChunk = fileSize / THREAD_COUNT;
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Thread[] threads = new Thread[THREAD_COUNT];
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ByteArrayKeyedMap[] results = new ByteArrayKeyedMap[THREAD_COUNT];
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for (int i = 0; i < THREAD_COUNT; i++) {
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final int j = i;
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long startPoint = j * threadChunk;
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long endPoint = startPoint + threadChunk;
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Thread thread = new Thread(() -> {
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try {
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results[j] = readAndParse(channel, startPoint, endPoint, fileSize);
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}
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catch (Throwable t) {
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System.err.println("It's broken :(");
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// noinspection CallToPrintStackTrace
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t.printStackTrace();
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}
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});
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threads[i] = thread;
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thread.start();
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}
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final Map<String, MeasurementAggregator> finalAggregator = new TreeMap<>();
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for (int i = 0; i < THREAD_COUNT; i++) {
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try {
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threads[i].join();
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}
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catch (InterruptedException e) {
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throw new RuntimeException(e);
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}
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results[i].getAsUnorderedList().forEach(v -> {
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String stationName = new String(v.stationNameBytes, StandardCharsets.UTF_8);
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finalAggregator.compute(stationName, (_, x) -> {
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if (x == null) {
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return v;
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}
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else {
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x.count += v.count;
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x.min = Math.min(x.min, v.min);
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x.max = Math.max(x.max, v.max);
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x.sum += v.sum;
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return x;
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}
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});
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});
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}
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System.out.println(finalAggregator);
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}
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private static ByteArrayKeyedMap readAndParse(final FileChannel channel,
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final long startPoint,
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final long endPoint,
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final long fileSize) {
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final State state = new State();
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boolean skipFirstEntry = startPoint != 0;
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long offset = startPoint;
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while (offset < endPoint) {
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parseData(channel, state, offset, Math.min(CHUNK_SIZE, fileSize - offset), false, skipFirstEntry);
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skipFirstEntry = false;
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offset += CHUNK_SIZE;
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}
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if (offset < fileSize) {
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// Make sure we finish reading any partially read entry by going a little in to the next chunk, stopping at the first newline
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parseData(channel, state, offset, Math.min(LITTLE_CHUNK_SIZE, fileSize - offset), true, false);
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}
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return state.aggregators;
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}
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private static void parseData(final FileChannel channel,
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final State state,
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final long offset,
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final long bufferSize,
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final boolean stopAtNewline,
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final boolean skipFirstEntry) {
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ByteBuffer byteBuffer;
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try {
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byteBuffer = channel.map(FileChannel.MapMode.READ_ONLY, offset, bufferSize);
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}
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catch (IOException e) {
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throw new RuntimeException(e);
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}
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boolean isSkippingToFirstCleanEntry = skipFirstEntry;
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while (byteBuffer.hasRemaining()) {
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byte currentChar = byteBuffer.get();
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if (isSkippingToFirstCleanEntry) {
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if (currentChar == '\n') {
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isSkippingToFirstCleanEntry = false;
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}
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continue;
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}
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if (currentChar == ';') {
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state.parsingValue = true;
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}
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else if (currentChar == '\n') {
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if (state.stationPointerEnd != 0) {
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double value = state.measurementValue * state.exponent;
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MeasurementAggregator aggregator = state.aggregators.computeIfAbsent(state.stationBuffer, state.stationPointerEnd, state.signedHashCode);
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aggregator.count++;
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aggregator.min = Math.min(aggregator.min, value);
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aggregator.max = Math.max(aggregator.max, value);
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aggregator.sum += value;
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}
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if (stopAtNewline) {
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return;
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}
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// reset
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state.reset();
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}
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else {
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if (!state.parsingValue) {
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state.stationBuffer[state.stationPointerEnd++] = currentChar;
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state.signedHashCode = 31 * state.signedHashCode + (currentChar & 0xff);
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}
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else {
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if (currentChar == '-') {
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state.exponent = -0.1;
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}
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else if (currentChar != '.') {
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state.measurementValue = state.measurementValue * 10 + (currentChar - '0');
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}
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}
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}
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}
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}
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static final class State {
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ByteArrayKeyedMap aggregators = new ByteArrayKeyedMap();
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boolean parsingValue = false;
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byte[] stationBuffer = new byte[STATION_NAME_BUFFER_SIZE];
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int signedHashCode = 0;
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int stationPointerEnd = 0;
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double measurementValue = 0;
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double exponent = 0.1;
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public void reset() {
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parsingValue = false;
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signedHashCode = 0;
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stationPointerEnd = 0;
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measurementValue = 0;
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exponent = 0.1;
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}
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}
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private static class MeasurementAggregator {
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final byte[] stationNameBytes;
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final int stationNameHashCode;
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private double min = Double.POSITIVE_INFINITY;
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private double max = Double.NEGATIVE_INFINITY;
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private double sum;
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private long count;
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public MeasurementAggregator(final byte[] stationNameBytes, final int stationNameHashCode) {
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this.stationNameBytes = stationNameBytes;
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this.stationNameHashCode = stationNameHashCode;
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}
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public String toString() {
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return round(min) + "/" + round(sum / count) + "/" + round(max);
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}
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private double round(double value) {
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return Math.round(value * 10.0) / 10.0;
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}
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}
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private static class ByteArrayKeyedMap {
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private final int BUCKET_COUNT = 0xFFF; // 413 unique stations in the data set, & 0xFFF ~= 399 (only 14 collisions (given our hashcode implementation))
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private final MeasurementAggregator[] buckets = new MeasurementAggregator[BUCKET_COUNT + 1];
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private final List<MeasurementAggregator> compactUnorderedBuckets = new ArrayList<>(413);
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public MeasurementAggregator computeIfAbsent(final byte[] key, final int keyLength, final int keyHashCode) {
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int index = keyHashCode & BUCKET_COUNT;
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while (true) {
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MeasurementAggregator maybe = buckets[index];
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if (maybe == null) {
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final byte[] copiedKey = Arrays.copyOf(key, keyLength);
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MeasurementAggregator measurementAggregator = new MeasurementAggregator(copiedKey, keyHashCode);
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buckets[index] = measurementAggregator;
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compactUnorderedBuckets.add(measurementAggregator);
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return measurementAggregator;
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}
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else {
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if (Arrays.equals(key, 0, keyLength, maybe.stationNameBytes, 0, maybe.stationNameBytes.length)) {
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return maybe;
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}
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index++;
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index &= BUCKET_COUNT;
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}
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}
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}
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public List<MeasurementAggregator> getAsUnorderedList() {
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return compactUnorderedBuckets;
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}
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}
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}
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