forked from upstream-mirrors/OpenTracks
Polar parser
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/*
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* Copyright 2011 Google Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may not
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* use this file except in compliance with the License. You may obtain a copy of
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* 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, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations under
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* the License.
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*/
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package com.google.android.apps.mytracks.services.sensors;
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import android.util.Log;
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import com.google.android.apps.mytracks.Constants;
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import com.google.android.apps.mytracks.content.Sensor;
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/**
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* An implementation of a SensorData parser for Polar Wearlink Bluetooth HRM.
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*
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* @author John R. Gerthoffer
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*/
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public class PolarMessageParser implements MessageParser {
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// Last Heart Rate value storage (in case of corrupt buffer)
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private int lastHeartRate = 0;
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@Override
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public Sensor.SensorDataSet parseBuffer(byte[] buffer) {
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StringBuilder sb = new StringBuilder();
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int heartRate = 0;
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// Due to a memory inconsistency issue, the packet does not always start at buffer[0].
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// While it works stepping thru in debug mode, it is not consistent when running real-time.
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// Note: After changing the BluetoothConnectionManager to pass a copy of 'buffer',
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// the problem was resolved! Passing a buffer copy in threaded comm's is typical in my experience.
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// Minimum length Polar packets is 8, so stop search 8 bytes before buffer ends.
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heartRate = lastHeartRate; // Default to use last value. (If our buffer is corrupted).
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for (int i = 0; i < buffer.length - 8; i++) {
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boolean bHdrOK = ((buffer[i] & 0xFF) == 0xFE);
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boolean bChkOK = ((buffer[i+2] & 0xFF) == (0xFF - (buffer[i+1] & 0xFF)));
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boolean bSeqOK = ((buffer[i+3] & 0xFF) < 16);
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boolean bStatusOK = ((buffer[i+4] & 0xFF) > 128); // I've seen 0xF1 or 0xE1.
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if (bHdrOK && bChkOK && bSeqOK && bStatusOK) {
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heartRate = buffer[i + 5] & 0xFF;
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lastHeartRate = heartRate; // Remember good value for next time.
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break; // Let's go store our data.
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}
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}
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// Heart Rate
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Sensor.SensorData.Builder b = Sensor.SensorData.newBuilder()
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.setValue(heartRate)
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.setState(Sensor.SensorState.SENDING);
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Sensor.SensorDataSet sds =
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Sensor.SensorDataSet.newBuilder()
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.setCreationTime(System.currentTimeMillis())
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.setHeartRate(b)
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.build();
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return sds;
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}
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/**
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* Applies packet validation rule to buffer
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* Parsing rule for a good Polar HRM packet;
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* boolean goodHdr = ((buffer[0] & 0xFF) == 0xFE);
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* boolean goodChk = ((buffer[2] & 0xFF) == (0xFF - (buffer[1] & 0xFF)));
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* goodPacket = goodHdr && goodChk;
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*
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* @param an array of bytes to parse
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* @return whether buffer has a valid packet starting at index zero
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*/
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@Override
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public boolean isValid(byte[] buffer) {
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/**
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* Polar Bluetooth Wearlink packet example;
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* Hdr Len Chk Seq Status HeartRate RRInterval_16-bits
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* FE 08 F7 06 F1 48 03 64
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* where Hdr always = 0xFE, Chk = 0xFF - Len
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*
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* Additional packet examples;
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* FE 08 F7 06 F1 48 03 64
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* FE 0A F5 06 F1 48 03 64 03 70
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*/
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boolean goodHdr = ((buffer[0] & 0xFF) == 0xFE);
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boolean goodChk = ((buffer[2] & 0xFF) == (0xFF - (buffer[1] & 0xFF)));
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return goodHdr && goodChk;
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}
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/**
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* Polar uses variable packet sizes; 8, 10, 12, 14 and rarely 16.
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* The most frequent are 8 and 10.
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* We will wait for 16 bytes.
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* This way, we are assured of getting one good one.
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*
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* @return the size of buffer needed to parse a good packet
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*/
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@Override
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public int getFrameSize() {
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return 16;
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}
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/**
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* Searches buffer for the beginning of a valid packet.
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* Parsing rule for a good Polar HRM packet;
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* boolean goodHdr = ((buffer[0] & 0xFF) == 0xFE);
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* boolean goodChk = ((buffer[2] & 0xFF) == (0xFF - (buffer[1] & 0xFF)));
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* goodPacket = goodHdr && goodChk;
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*
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* @param an array of bytes to parse
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*/
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@Override
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public int findNextAlignment(byte[] buffer) {
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// Minimum length Polar packets is 8, so stop search 8 bytes before buffer ends.
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for (int i = 0; i < buffer.length - 8; i++) {
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if (((buffer[i] & 0xFF) == 0xFE) && ((buffer[i+2] & 0xFF) == (0xFF - (buffer[i+1] & 0xFF)))) {
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return i;
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}
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}
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return -1;
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}
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}
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