/* Copyright (C) 2024 Martin.JM
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This file is part of Gadgetbridge.
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Gadgetbridge is free software: you can redistribute it and/or modify
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it under the terms of the GNU Affero General Public License as published
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by the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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Gadgetbridge is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Affero General Public License for more details.
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You should have received a copy of the GNU Affero General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>. */
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package nodomain.freeyourgadget.gadgetbridge.devices.huawei;
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import org.slf4j.Logger;
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import org.slf4j.LoggerFactory;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.util.ArrayList;
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import java.util.Arrays;
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import nodomain.freeyourgadget.gadgetbridge.service.devices.huawei.HuaweiFileDownloadManager;
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import nodomain.freeyourgadget.gadgetbridge.service.devices.huawei.HuaweiSupportProvider;
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import nodomain.freeyourgadget.gadgetbridge.util.GB;
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public class HuaweiTruSleepParser {
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private static final Logger LOG = LoggerFactory.getLogger(HuaweiTruSleepParser.class);
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public static final int TAG_ACC = 1;
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public static final int TAG_PPG = 2;
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public static class TruSleepStatus {
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public final int startTime;
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public final int endTime;
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public TruSleepStatus(int startTime, int endTime) {
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this.startTime = startTime;
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this.endTime = endTime;
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}
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@Override
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public boolean equals(Object o) {
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if (o == null || getClass() != o.getClass()) return false;
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TruSleepStatus that = (TruSleepStatus) o;
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return startTime == that.startTime && endTime == that.endTime;
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}
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@Override
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public String toString() {
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return "TruSleepStatus{" +
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"endTime=" + endTime +
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", startTime=" + startTime +
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'}';
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}
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}
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public static class TruSleepDataAcc {
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public final int startTime;
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public final short flags;
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/*
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Accelerometer (ACC):
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Accelerometer data is sampled every 60 seconds, 24h a day and provides activity data on 3 axis.
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Each axis activity is represented as byte, where 0x00 is no activity and 0xff is high activity.
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The 3rd axis is ignored as it's always high (due to gravity??).
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*/
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public TruSleepDataAcc(int startTime, short flags) {
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this.startTime = startTime;
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this.flags = flags;
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}
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@Override
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public boolean equals(Object o) {
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if (o == null || getClass() != o.getClass()) return false;
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TruSleepDataAcc that = (TruSleepDataAcc) o;
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if (startTime != that.startTime)
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return false;
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return flags == that.flags;
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}
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@Override
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public String toString() {
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return "TruSleepDataAcc{" +
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"startTime=" + startTime +
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", flags=" + flags +
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'}';
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}
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}
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/*
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Photoplethysmogram (PPG):
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Every sample has a millisecond timestamp.
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At night data is sampled every second, but at day it's sampled less often (about every 5 minutes).
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*/
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public static class TruSleepDataPpg {
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public final long startTime;
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public final short flags;
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TruSleepDataPpg(long startTime, short flags) {
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this.startTime = startTime;
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this.flags = flags;
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}
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@Override
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public boolean equals(Object o) {
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if (o == null || getClass() != o.getClass()) return false;
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TruSleepDataPpg that = (TruSleepDataPpg) o;
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if (startTime != that.startTime)
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return false;
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return flags == that.flags;
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}
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@Override
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public String toString() {
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return "TruSleepDataPpg{" +
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"startTime=" + startTime +
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", flags=" + flags +
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'}';
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}
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}
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public static class TruSleepData {
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public ArrayList<TruSleepDataAcc> dataACCs;
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public ArrayList<TruSleepDataPpg> dataPPGs;
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public TruSleepData() {
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this.dataACCs = new ArrayList<>();
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this.dataPPGs = new ArrayList<>();
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}
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@Override
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public boolean equals(Object o) {
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if (o == null || getClass() != o.getClass()) return false;
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TruSleepData that = (TruSleepData) o;
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if (!dataACCs.equals(that.dataACCs))
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return false;
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return dataPPGs.equals(that.dataPPGs);
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}
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@Override
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public String toString() {
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return "TruSleepData{" +
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"dataPPGs=" + dataPPGs.toString() +
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", dataACCs=" + dataACCs.toString() +
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'}';
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}
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private static final byte TAG_COMPRESSION_RAW = (byte)0xaa;
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private static final byte TAG_COMPRESSION_COMP = (byte)0xbb;
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private static final byte TAG_COMPRESSION_RESTART = (byte)0xff;
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public void decodeAcc(byte[] data) throws IllegalArgumentException {
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/*
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Format:
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- Timestamp (4 byte)
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- Flags (3 bytes)
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*/
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ByteBuffer buffer = ByteBuffer.wrap(data);
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buffer.order(ByteOrder.LITTLE_ENDIAN);
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if (buffer.remaining() < 4)
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throw new IllegalArgumentException("Timestamp is missing");
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int startTime = buffer.getInt();
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if (buffer.remaining() < 2)
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throw new IllegalArgumentException("Flags are missing");
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short flags = buffer.getShort();
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dataACCs.add(new TruSleepDataAcc(startTime, flags));
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}
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public void decodePpg(byte[] data) throws IllegalArgumentException, IllegalStateException {
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/*
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Format:
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- Timestamp (4 byte)
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- Number of UINT16 (1 byte)
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- Compression tag (1 byte)
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- Compressed data
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- Compression tag (1 byte)
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- Compressed data
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*/
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ByteBuffer buffer = ByteBuffer.wrap(data);
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buffer.order(ByteOrder.LITTLE_ENDIAN);
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if (buffer.remaining() < 4)
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throw new IllegalArgumentException("Timestamp is missing");
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int startTime = buffer.getInt();
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if (buffer.remaining() < 1)
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throw new IllegalArgumentException("Count of short is missing");
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byte countShort = buffer.get();
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ArrayList<Short> peak = decodePeak(countShort, buffer);
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ArrayList<Short> amp = decodeAmp(countShort, buffer);
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// Sanity check
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if (peak.size() != countShort || amp.size() != countShort)
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throw new IllegalStateException("Decoded arrays have different length");
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for (int i = 0; i < countShort; i++) {
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dataPPGs.add(new TruSleepDataPpg((long)startTime * 1000 + peak.get(i) * 10, amp.get(i)));
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}
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LOG.debug("Buffer remaining {}", buffer.remaining());
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}
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private ArrayList<Short> decodePeak(byte countShort, ByteBuffer buffer) throws IllegalArgumentException {
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if (countShort == 0)
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throw new IllegalArgumentException("Number of short to generate is invalid");
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if (buffer.remaining() < 1)
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throw new IllegalArgumentException("Compression tag is missing");
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byte tag = buffer.get();
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ArrayList<Short> al = new ArrayList<Short>();
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if (tag == TAG_COMPRESSION_RAW) {
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if (buffer.remaining() < countShort * 2)
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throw new IllegalArgumentException("Not enough elements in buffer");
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while (countShort > 0) {
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al.add(buffer.getShort());
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countShort--;
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}
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} else if (tag == TAG_COMPRESSION_COMP) {
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short working = buffer.getShort();
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al.add(working);
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countShort--;
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while (countShort > 0) {
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byte c = buffer.get();
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if (c == TAG_COMPRESSION_RESTART) {
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if (buffer.remaining() < 2)
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throw new IllegalArgumentException("Not enough elements in buffer");
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working = buffer.getShort();
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} else {
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working += c;
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}
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al.add(working);
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countShort--;
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}
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} else {
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throw new IllegalArgumentException("Compression " + String.format("%02x", tag) + " is unsupported");
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}
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return al;
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}
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public ArrayList<Short> decodeAmp(byte countShort, ByteBuffer buffer) throws IllegalArgumentException {
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if (countShort == 0)
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throw new IllegalArgumentException("Number of short to generate is invalid");
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if (buffer.remaining() < 1)
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throw new IllegalArgumentException("Compression tag is missing");
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byte tag = buffer.get();
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ArrayList<Short> al = new ArrayList<Short>();
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if (tag == TAG_COMPRESSION_RAW) {
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if (buffer.remaining() < countShort * 2)
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throw new IllegalArgumentException("Not enough elements in buffer");
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while (countShort > 0) {
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al.add(buffer.getShort());
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countShort--;
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}
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} else if (tag == TAG_COMPRESSION_COMP) {
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if (buffer.remaining() < 2)
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throw new IllegalArgumentException("Offset buffer is missing");
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short offset = buffer.getShort();
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short working = 0;
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while (buffer.remaining() > 0) {
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byte c = buffer.get();
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if (c == TAG_COMPRESSION_RESTART) {
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if (buffer.remaining() < 2)
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throw new IllegalArgumentException("Raw buffer is missing");
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working = (short)(offset + buffer.getShort());
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} else {
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working = (short)(offset + c);
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}
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al.add(working);
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}
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} else {
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throw new IllegalArgumentException("Compression " + String.format("%02x", tag) + " is unsupported");
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}
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return al;
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}
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public void parsePpgData(byte[] data) {
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LOG.debug("Decoding PPG: len= {}, data = {}", data.length, GB.hexdump(data));
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try {
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decodePpg(data);
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} catch (Exception e) {
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LOG.error("Failed to parse TrueSleep PPG data: {}", e.toString());
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}
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}
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public void parseAccData(byte[] data) {
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LOG.debug("Decoding ACC: len= {}, data = {}", data.length, GB.hexdump(data));
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try {
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decodeAcc(data);
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} catch (Exception e) {
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LOG.error("Failed to parse TrueSleep ACC data: {}", e.toString());
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}
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}
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}
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public static TruSleepData parseData(byte[] data) {
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/*
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Format:
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- Zero padded
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- ACC data interleaved with PPG data
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- PPG data is compressed and has variable length
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*/
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TruSleepData sleepData = new TruSleepData();
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ByteBuffer buffer = ByteBuffer.wrap(data);
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buffer.order(ByteOrder.LITTLE_ENDIAN);
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byte c;
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while (buffer.remaining() > 0) {
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c = buffer.get();
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// Skip over padding
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if (c != TAG_ACC && c != TAG_PPG)
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continue;
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// The tag identifies the data packet
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if (c == TAG_ACC) {
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if (buffer.remaining() < 1)
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break;
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// ACC has 1 byte length
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byte length = buffer.get();
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if (buffer.remaining() < length)
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break;
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byte[] accData = new byte[length];
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buffer.get(accData);
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sleepData.parseAccData(accData);
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} else if (c == TAG_PPG) {
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if (buffer.remaining() < 2)
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break;
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// PPG has 2 byte length
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short length = buffer.getShort();
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if (buffer.remaining() < length)
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break;
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byte[] ppgData = new byte[length];
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buffer.get(ppgData);
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sleepData.parsePpgData(ppgData);
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}
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}
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return sleepData;
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}
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public static TruSleepStatus[] parseState(byte[] stateData) {
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/*
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Format:
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- Start time (int)
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- End time (int)
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- Unknown (short)
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- Unknown (byte)
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- Padding (5 bytes)
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Could be multiple available
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*/
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ByteBuffer buffer = ByteBuffer.wrap(stateData);
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buffer.order(ByteOrder.LITTLE_ENDIAN);
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TruSleepStatus[] retv = new TruSleepStatus[buffer.remaining() / 0x10];
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int c = 0;
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while (stateData.length - buffer.position() >= 0x10) {
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int startTime = buffer.getInt();
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int endTime = buffer.getInt();
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// Throw away for now because we don't know what it means, and we don't think we can implement this soon
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buffer.get(); buffer.get(); buffer.get();
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buffer.get(); buffer.get(); buffer.get(); buffer.get(); buffer.get();
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retv[c++] = new TruSleepStatus(startTime, endTime);
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}
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return retv;
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}
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private static void analyzeOneTimeframe(HuaweiSupportProvider provider, TruSleepStatus status, ArrayList<TruSleepDataAcc> acc, ArrayList<TruSleepDataPpg> ppg) {
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java.util.Date rangeStartTime = new java.util.Date((long)status.startTime*1000);
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java.util.Date rangeEndTime = new java.util.Date((long)status.endTime*1000);
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LOG.debug("FIXME: Analyse sleep range {} - {} not implemented", rangeStartTime, rangeEndTime);
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//FIXME: Sleep analysis algorithm implemented here
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for (HuaweiTruSleepParser.TruSleepDataAcc i : acc) {
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java.util.Date startTime = new java.util.Date((long)i.startTime*1000);
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LOG.debug("TruSleepDataAcc {} : {}", startTime, String.format("%04x", i.flags));
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}
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for (HuaweiTruSleepParser.TruSleepDataPpg i : ppg) {
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java.util.Date startTime = new java.util.Date((long) i.startTime);
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LOG.debug("TruSleepDataPpg {} : {}", startTime, String.format("%04x", i.flags));
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}
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}
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public static void analyze(HuaweiSupportProvider provider, TruSleepStatus[] status, TruSleepData data) {
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// Analyse each time range as specified by TruSleepStatus
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for (TruSleepStatus s : status) {
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ArrayList<TruSleepDataAcc> acc = new ArrayList<>();
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ArrayList<TruSleepDataPpg> ppg = new ArrayList<>();
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// Collect Accelerometer data for current time frame
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for (TruSleepDataAcc i : data.dataACCs) {
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if (i.startTime >= s.startTime && i.startTime <= s.endTime)
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acc.add(i);
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}
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// Collect PPG data for current time frame
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for (TruSleepDataPpg i : data.dataPPGs) {
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if (i.startTime >= s.startTime && i.startTime <= s.endTime)
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ppg.add(i);
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}
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// Analyse time frame
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analyzeOneTimeframe(provider, s, acc, ppg);
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}
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}
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public static class SleepFileDownloadCallback extends HuaweiFileDownloadManager.FileDownloadCallback {
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private byte[] statusData;
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private byte[] sleepData;
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private boolean statusSynced;
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private boolean dataSynced;
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protected HuaweiSupportProvider provider;
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public SleepFileDownloadCallback(HuaweiSupportProvider provider) {
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this.dataSynced = false;
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this.statusSynced = false;
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this.provider = provider;
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}
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public void syncComplete(byte[] statusData, byte[] sleepData) { }
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@Override
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public void downloadException(HuaweiFileDownloadManager.HuaweiFileDownloadException e) {
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if (e.fileRequest == null) {
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LOG.error("Failed to download TruSleep file: {}", e.toString());
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syncComplete(statusData, sleepData);
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return;
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}
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if (e.fileRequest.getFileType() == HuaweiFileDownloadManager.FileType.SLEEP_STATE) {
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statusSynced = true;
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} else if (e.fileRequest.getFileType() == HuaweiFileDownloadManager.FileType.SLEEP_DATA) {
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dataSynced = true;
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}
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if (statusSynced && dataSynced)
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syncComplete(statusData, sleepData);
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}
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@Override
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public void downloadComplete(HuaweiFileDownloadManager.FileRequest fileRequest) {
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if (fileRequest.getFileType() == HuaweiFileDownloadManager.FileType.SLEEP_STATE) {
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statusData = fileRequest.getData();
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statusSynced = true;
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} else if (fileRequest.getFileType() == HuaweiFileDownloadManager.FileType.SLEEP_DATA) {
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sleepData = fileRequest.getData();
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dataSynced = true;
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}
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LOG.debug("Downloaded TruSleep file {}", fileRequest.getFileType());
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if (statusSynced && dataSynced)
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syncComplete(statusData, sleepData);
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}
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}
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}
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