mirror of
https://github.com/zyphlar/LanternPowerMonitor.git
synced 2024-03-08 14:07:47 +00:00
Add rudimentary support for DS18B120 Thermometers, MH-Z19B CO2 Sensors, and ZWave.me controllers.
This commit is contained in:
parent
883cf7865d
commit
88933a2286
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@ -15,7 +15,7 @@
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<dependencies>
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<dependency>
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<groupId>com.lanternsoftware.util</groupId>
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<artifactId>lantern-util-common</artifactId>
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<artifactId>lantern-util-servlet</artifactId>
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<version>1.0.0</version>
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</dependency>
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<dependency>
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@ -29,10 +29,25 @@
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<artifactId>logback-classic</artifactId>
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<version>1.2.3</version>
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</dependency>
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<dependency>
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<groupId>com.neuronrobotics</groupId>
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<artifactId>nrjavaserial</artifactId>
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<version>5.2.1</version>
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</dependency>
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<dependency>
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<groupId>com.fazecast</groupId>
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<artifactId>jSerialComm</artifactId>
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<version>2.5.1</version>
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</dependency>
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<dependency>
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<groupId>org.hid4java</groupId>
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<artifactId>hid4java</artifactId>
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<version>0.5.0</version>
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<version>0.7.0</version>
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</dependency>
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<dependency>
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<groupId>com.pi4j</groupId>
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<artifactId>pi4j-device</artifactId>
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<version>1.3</version>
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</dependency>
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</dependencies>
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<build>
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@ -0,0 +1,41 @@
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package com.lanternsoftware.thermometer;
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import com.lanternsoftware.util.CollectionUtils;
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import com.pi4j.component.temperature.TemperatureSensor;
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import com.pi4j.component.temperature.impl.TmpDS18B20DeviceType;
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import com.pi4j.io.w1.W1Device;
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import com.pi4j.io.w1.W1Master;
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import java.util.List;
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public class DS18B20Thermometer implements IThermometer {
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W1Device device;
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public static List<DS18B20Thermometer> devices() {
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W1Master master = new W1Master();
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return CollectionUtils.transform(master.getDevices(TmpDS18B20DeviceType.FAMILY_CODE), DS18B20Thermometer::new);
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}
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public DS18B20Thermometer() {
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W1Master master = new W1Master();
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device = CollectionUtils.getFirst(master.getDevices(TmpDS18B20DeviceType.FAMILY_CODE));
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}
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public DS18B20Thermometer(W1Device _device) {
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device = _device;
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}
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@Override
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public double getTemperatureCelsius() {
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return device == null?-273:((TemperatureSensor) device).getTemperature();
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}
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@Override
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public boolean isConnected() {
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return device != null;
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}
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@Override
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public void shutdown() {
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}
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}
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@ -1,4 +1,4 @@
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package com.lanternsoftware.thermometer.context;
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package com.lanternsoftware.thermometer;
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import com.lanternsoftware.util.NullUtils;
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import com.lanternsoftware.util.concurrency.ConcurrencyUtils;
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@ -11,14 +11,15 @@ import org.slf4j.LoggerFactory;
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import java.util.Timer;
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import java.util.TimerTask;
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public class ThermometerApp {
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private static final Logger LOG = LoggerFactory.getLogger(ThermometerApp.class);
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public class HidThermometer implements IThermometer{
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private static final Logger LOG = LoggerFactory.getLogger(HidThermometer.class);
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private HidDevice device;
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private final Timer timer = new Timer();
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private double lastTemp;
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private final byte[] READ = hexToByte("0180330100000000");
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public void start() {
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public HidThermometer() {
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HidServices hs = HidManager.getHidServices();
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for (HidDevice d : hs.getAttachedHidDevices()) {
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if (NullUtils.isEqual(d.getVendorId(), (short) 0x413d) && NullUtils.isEqual(d.getProductId(), (short) 0x2107)) {
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@ -27,11 +28,13 @@ public class ThermometerApp {
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}
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}
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if ((device != null) && device.open()) {
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synchronized (device) {
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read(hexToByte("0182770100000000"));
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read(hexToByte("0186ff0100000000"));
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read(hexToByte("0182770100000000"));
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read(hexToByte("0182770100000000"));
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final byte[] INIT1 = hexToByte("0182770100000000");
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final byte[] INIT2 = hexToByte("0186ff0100000000");
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synchronized (this) {
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read(INIT1);
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read(INIT2);
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read(INIT1);
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read(INIT1);
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}
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} else {
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LOG.error("Failed to open HID Device");
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@ -45,7 +48,11 @@ public class ThermometerApp {
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}, 0L, 10000L);
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}
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public void stop() {
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public boolean isConnected() {
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return device != null;
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}
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public void shutdown() {
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timer.cancel();
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ConcurrencyUtils.sleep(10000);
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if (device != null) {
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@ -100,14 +107,14 @@ public class ThermometerApp {
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}
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return response;
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}
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public double getTemperature() {
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public double getTemperatureCelsius() {
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return lastTemp;
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}
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public double readTemperature() {
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private double readTemperature() {
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if (device != null) {
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synchronized (device) {
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byte[] response = read(hexToByte("0180330100000000"));
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synchronized (this) {
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byte[] response = read(READ);
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if (response == null)
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return 5.0;
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int rawReading = ((response[3] & 0xFF) + (response[2] << 8));
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@ -0,0 +1,6 @@
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package com.lanternsoftware.thermometer;
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public interface ICO2Sensor {
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int getPPM();
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void shutdown();
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}
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@ -0,0 +1,7 @@
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package com.lanternsoftware.thermometer;
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public interface IThermometer {
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double getTemperatureCelsius();
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boolean isConnected();
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void shutdown();
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}
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@ -0,0 +1,165 @@
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package com.lanternsoftware.thermometer;
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import com.lanternsoftware.util.concurrency.ConcurrencyUtils;
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import gnu.io.CommPortIdentifier;
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import gnu.io.SerialPort;
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import org.apache.commons.io.IOUtils;
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import org.slf4j.Logger;
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import org.slf4j.LoggerFactory;
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import java.io.InputStream;
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import java.io.OutputStream;
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import java.nio.ByteBuffer;
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import java.util.concurrent.atomic.AtomicInteger;
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public class MHZ19BCO2Sensor implements ICO2Sensor {
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private static final Logger LOG = LoggerFactory.getLogger(MHZ19BCO2Sensor.class);
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private static final int DEFAULT_TIMEOUT = 1000;
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private static final byte[] CMD_GAS_CONCENTRATION = {(byte)0xff, 0x01, (byte)0x86, 0x00, 0x00, 0x00, 0x00, 0x00, 0x79};
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private static final byte[] CMD_CALIBRATE_ZERO_POINT = {(byte)0xff, 0x01, (byte)0x87, 0x00, 0x00, 0x00, 0x00, 0x00, 0x78};
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private static final byte[] CMD_AUTO_CALIBRATION_ON_WITHOUT_CHECKSUM = {(byte)0xff, 0x01, (byte)0x79, (byte)0xa0, 0x00, 0x00, 0x00, 0x00};
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private static final byte[] CMD_AUTO_CALIBRATION_OFF_WITHOUT_CHECKSUM = {(byte)0xff, 0x01, (byte)0x79, 0x00, 0x00, 0x00, 0x00, 0x00};
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private static final int CALIBRATE_SPAN_POINT_MIN = 1000;
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private SerialPort serialPort;
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private InputStream is;
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private OutputStream os;
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private MHZ19BCO2Sensor(String _port) {
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this(_port, DEFAULT_TIMEOUT);
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}
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private MHZ19BCO2Sensor(String _port, int _timeout) {
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try {
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CommPortIdentifier portIdentifier = CommPortIdentifier.getPortIdentifier(_port);
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serialPort = portIdentifier.open("co2port", 2000);
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serialPort.setSerialPortParams(9600, SerialPort.DATABITS_8, SerialPort.STOPBITS_1, SerialPort.PARITY_NONE);
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serialPort.enableReceiveTimeout(_timeout);
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serialPort.enableReceiveThreshold(9);
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is = serialPort.getInputStream();
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os = serialPort.getOutputStream();
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} catch (Exception _e) {
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if (serialPort != null) {
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serialPort.close();
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serialPort = null;
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}
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LOG.error("Exception while starting MHZ19BCO2Sensor", _e);
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}
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}
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public void shutdown() {
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IOUtils.closeQuietly(is);
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IOUtils.closeQuietly(os);
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if (serialPort != null)
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serialPort.close();
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}
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private void write(byte[] out) {
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try {
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int length = is.available();
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if (length > 0) {
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byte[] unread = new byte[length];
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int read = is.read(unread, 0, length);
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LOG.debug("deleted unread buffer length:{}", read);
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}
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os.write(out, 0, out.length);
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}
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catch (Exception _e) {
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LOG.error("Exception while writing to MHZ19B", _e);
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}
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}
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private byte getCheckSum(byte[] data) {
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int ret = 0;
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for (int i = 1; i <= 7; i++) {
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ret += data[i];
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}
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return (byte)(~(byte)(ret & 0x000000ff) + 1);
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}
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private byte[] getCommandWithCheckSum(byte[] baseCommand) {
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byte[] checkSum = {getCheckSum(baseCommand)};
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byte[] data = new byte[baseCommand.length + 1];
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System.arraycopy(baseCommand, 0, data, 0, baseCommand.length);
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System.arraycopy(checkSum, 0, data, baseCommand.length, 1);
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return data;
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}
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@Override
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public int getPPM() {
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write(CMD_GAS_CONCENTRATION);
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try {
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ByteBuffer buf = ByteBuffer.allocate(2);
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byte[] data = new byte[9];
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if (is.read(data, 0, 9) < 9)
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return 0;
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buf.put(data[2]);
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buf.put(data[3]);
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return buf.getShort(0);
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}
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catch (Exception _e) {
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LOG.error("Could not read value from MHZ19B", _e);
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return 0;
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}
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}
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public void setCalibrateZeroPoint() {
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write(CMD_CALIBRATE_ZERO_POINT);
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}
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public void setCalibrateSpanPoint(int point) {
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if (point < CALIBRATE_SPAN_POINT_MIN) {
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LOG.info("since span needs at least {} ppm, set it to {} ppm.", CALIBRATE_SPAN_POINT_MIN, CALIBRATE_SPAN_POINT_MIN);
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point = CALIBRATE_SPAN_POINT_MIN;
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}
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byte high = (byte)((point / 256) & 0x000000ff);
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byte low = (byte)((point % 256) & 0x000000ff);
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byte[] CMD_CALIBRATE_SPAN_POINT = {(byte)0xff, 0x01, (byte)0x88, high, low, 0x00, 0x00, 0x00};
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write(getCommandWithCheckSum(CMD_CALIBRATE_SPAN_POINT));
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LOG.info("set the calibration span point to {} ppm.", point);
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}
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public void setAutoCalibration(boolean set) {
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if (set) {
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write(getCommandWithCheckSum(CMD_AUTO_CALIBRATION_ON_WITHOUT_CHECKSUM));
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LOG.info("set auto calibration to ON.");
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} else {
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write(getCommandWithCheckSum(CMD_AUTO_CALIBRATION_OFF_WITHOUT_CHECKSUM));
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LOG.info("set auto calibration to OFF.");
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}
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}
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private void setDetectionRange(int range) {
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byte high = (byte)((range / 256) & 0x000000ff);
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byte low = (byte)((range % 256) & 0x000000ff);
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byte[] CMD_DETECTION_RANGE = {(byte)0xff, 0x01, (byte)0x99, high, low, 0x00, 0x00, 0x00};
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write(getCommandWithCheckSum(CMD_DETECTION_RANGE));
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LOG.info("set the detection range to {} ppm.", range);
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}
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public void setDetectionRange2000() {
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setDetectionRange(2000);
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}
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public void setDetectionRange5000() {
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setDetectionRange(5000);
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}
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public static void main(String[] args) {
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MHZ19BCO2Sensor mhz19b = new MHZ19BCO2Sensor("/dev/ttyAMA0");
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mhz19b.setDetectionRange5000();
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mhz19b.setAutoCalibration(false);
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AtomicInteger i = new AtomicInteger(0);
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while (i.incrementAndGet() < 2000) {
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LOG.debug("co2: {}PPM", mhz19b.getPPM());
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ConcurrencyUtils.sleep(5000);
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}
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Runtime.getRuntime().addShutdownHook(new Thread(mhz19b::shutdown, "Shutdown"));
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}
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}
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@ -1,16 +0,0 @@
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package com.lanternsoftware.thermometer;
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import com.lanternsoftware.thermometer.context.ThermometerApp;
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public class TestThermo {
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public static void main(String[] args) {
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ThermometerApp app = new ThermometerApp();
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app.start();
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try {
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Thread.sleep(20000);
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} catch (InterruptedException _e) {
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_e.printStackTrace();
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}
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app.stop();
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}
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}
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@ -1,22 +1,27 @@
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package com.lanternsoftware.thermometer.context;
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import com.lanternsoftware.thermometer.DS18B20Thermometer;
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import com.lanternsoftware.thermometer.HidThermometer;
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import com.lanternsoftware.thermometer.IThermometer;
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import javax.servlet.ServletContextEvent;
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import javax.servlet.ServletContextListener;
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import java.util.ArrayList;
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import java.util.List;
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public class Globals implements ServletContextListener {
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public static ThermometerApp app;
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public static List<IThermometer> thermometers = new ArrayList<>();
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@Override
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public void contextInitialized(ServletContextEvent sce) {
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app = new ThermometerApp();
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app.start();
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IThermometer t = new HidThermometer();
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if (t.isConnected())
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thermometers.add(t);
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thermometers.addAll(DS18B20Thermometer.devices());
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}
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@Override
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public void contextDestroyed(ServletContextEvent sce) {
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if (app != null) {
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app.stop();
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app = null;
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}
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thermometers.forEach(IThermometer::shutdown);
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}
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}
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@ -1,18 +1,23 @@
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package com.lanternsoftware.thermometer.servlet;
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import com.lanternsoftware.thermometer.IThermometer;
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import com.lanternsoftware.thermometer.context.Globals;
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import com.lanternsoftware.util.CollectionUtils;
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import com.lanternsoftware.util.dao.DaoSerializer;
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import com.lanternsoftware.util.servlet.LanternServlet;
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import javax.servlet.ServletException;
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import javax.servlet.annotation.WebServlet;
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import javax.servlet.http.HttpServletRequest;
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import javax.servlet.http.HttpServletResponse;
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import java.io.IOException;
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@WebServlet("/temp")
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public class TempServlet extends ThermoServlet {
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@WebServlet("/temp/*")
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public class TempServlet extends LanternServlet {
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@Override
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protected void doGet(HttpServletRequest req, HttpServletResponse resp) throws ServletException, IOException {
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setResponseEntity(resp, "application/json", "{\"temp\": "+ Globals.app.getTemperature() + "}");
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protected void doGet(HttpServletRequest req, HttpServletResponse resp) {
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int idx = DaoSerializer.toInteger(CollectionUtils.get(path(req), 0));
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IThermometer therm = CollectionUtils.get(Globals.thermometers, idx);
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double temp = therm == null ? -273 : therm.getTemperatureCelsius();
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setResponseEntity(resp, "application/json", "{\"temp\": "+ temp + "}");
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}
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}
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@ -9,9 +9,9 @@
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</appender>
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<appender name="FILE" class="ch.qos.logback.core.rolling.RollingFileAppender">
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<file>/opt/currentmonitor/log/log.txt</file>
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<file>/opt/tomcat/log/thermo.txt</file>
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<rollingPolicy class="ch.qos.logback.core.rolling.SizeAndTimeBasedRollingPolicy">
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<fileNamePattern>/opt/currentmonitor/log/log.%d{yyyy-MM-dd}.%i.txt</fileNamePattern>
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<fileNamePattern>/opt/currentmonitor/log/thermo.%d{yyyy-MM-dd}.%i.txt</fileNamePattern>
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<maxFileSize>20MB</maxFileSize>
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<maxHistory>20</maxHistory>
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</rollingPolicy>
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@ -20,9 +20,10 @@
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</encoder>
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</appender>
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<logger name="com.lanternsoftware" level="INFO"/>
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<logger name="com.lanternsoftware" level="DEBUG"/>
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<root level="OFF">
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<appender-ref ref="FILE"/>
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<appender-ref ref="STDOUT"/>
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</root>
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</configuration>
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@ -1,16 +1,14 @@
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package com.lanternsoftware.thermometer;
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import com.lanternsoftware.thermometer.context.ThermometerApp;
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import com.lanternsoftware.util.concurrency.ConcurrencyUtils;
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public class TestStartup {
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public static void main(String[] args) {
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ThermometerApp app = new ThermometerApp();
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app.start();
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try {
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Thread.sleep(20000);
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} catch (InterruptedException _e) {
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_e.printStackTrace();
|
||||
IThermometer thermometer = new DS18B20Thermometer();
|
||||
for (int i=0; i<200; i++) {
|
||||
System.out.println(String.format("%.2f", thermometer.getTemperatureCelsius()));
|
||||
ConcurrencyUtils.sleep(1000);
|
||||
}
|
||||
app.stop();
|
||||
thermometer.shutdown();
|
||||
}
|
||||
}
|
||||
|
|
|
@ -2,6 +2,7 @@ package com.lanternsoftware.zwave;
|
|||
|
||||
import com.lanternsoftware.datamodel.zwave.Switch;
|
||||
import com.lanternsoftware.datamodel.zwave.SwitchType;
|
||||
import com.lanternsoftware.util.concurrency.ConcurrencyUtils;
|
||||
import com.lanternsoftware.zwave.security.SecurityController;
|
||||
import org.slf4j.Logger;
|
||||
import org.slf4j.LoggerFactory;
|
||||
|
@ -14,6 +15,8 @@ public class TestSecurity {
|
|||
Switch sw = new Switch("Garage", "Door 1", 1000, true, false, null, 0);
|
||||
sw.setGpioPin(7);
|
||||
sw.setType(SwitchType.SECURITY);
|
||||
c.listen(sw, (nodeId, _open) -> LOG.info("Door is " + (_open ? "OPEN" : "CLOSED")));
|
||||
c.listen(sw, (nodeId, _open) -> LOG.error("Door event, now " + (_open ? "OPEN" : "CLOSED")));
|
||||
ConcurrencyUtils.sleep(60000);
|
||||
c.shutdown();
|
||||
}
|
||||
}
|
||||
|
|
|
@ -22,6 +22,7 @@ import com.lanternsoftware.zwave.controller.Controller;
|
|||
import com.lanternsoftware.zwave.dao.MongoZWaveDao;
|
||||
import com.lanternsoftware.zwave.message.IMessageSubscriber;
|
||||
import com.lanternsoftware.zwave.message.MessageEngine;
|
||||
import com.lanternsoftware.zwave.message.impl.AddNodeToNetworkRequest;
|
||||
import com.lanternsoftware.zwave.message.impl.BinarySwitchReportRequest;
|
||||
import com.lanternsoftware.zwave.message.impl.BinarySwitchSetRequest;
|
||||
import com.lanternsoftware.zwave.message.impl.CRC16EncapRequest;
|
||||
|
@ -226,6 +227,8 @@ public class ZWaveApp {
|
|||
}
|
||||
});
|
||||
|
||||
controller.send(new MultilevelSwitchSetRequest((byte)2, 0xFF));
|
||||
|
||||
// controller.send(new MultilevelSensorGetRequest((byte)11));
|
||||
// controller.send(new ThermostatSetPointGetRequest((byte)11, ThermostatSetPointIndex.HEATING));
|
||||
// controller.send(new ThermostatSetPointGetRequest((byte)11, ThermostatSetPointIndex.COOLING));
|
||||
|
|
|
@ -9,7 +9,7 @@
|
|||
</appender>
|
||||
|
||||
|
||||
<logger name="com.lanternsoftware" level="INFO"/>
|
||||
<logger name="com.lanternsoftware" level="DEBUG"/>
|
||||
|
||||
<root level="OFF">
|
||||
<appender-ref ref="STDOUT"/>
|
||||
|
|
|
@ -7,10 +7,10 @@ public class TestStartup {
|
|||
ZWaveApp app = new ZWaveApp();
|
||||
app.start();
|
||||
try {
|
||||
Thread.sleep(20000);
|
||||
Thread.sleep(20000000);
|
||||
} catch (InterruptedException _e) {
|
||||
_e.printStackTrace();
|
||||
}
|
||||
app.stop();
|
||||
Runtime.getRuntime().addShutdownHook(new Thread(app::stop, "Shutdown"));
|
||||
}
|
||||
}
|
||||
|
|
|
@ -39,13 +39,13 @@ public class Controller {
|
|||
private SerialPort serialPort;
|
||||
private OutputStream os;
|
||||
private boolean running = false;
|
||||
private AtomicInteger callbackId = new AtomicInteger(0);
|
||||
private final AtomicInteger callbackId = new AtomicInteger(0);
|
||||
private final Object ackMutex = new Object();
|
||||
private final Object responseMutex = new Object();
|
||||
private final Object callbackMutex = new Object();
|
||||
private boolean responseReceived;
|
||||
private final Map<Byte, Byte> callbacks = new HashMap<>();
|
||||
private ExecutorService executor = Executors.newFixedThreadPool(2);
|
||||
private final ExecutorService executor = Executors.newFixedThreadPool(2);
|
||||
private NodeManager nodeManager;
|
||||
|
||||
public boolean start(String _port) {
|
||||
|
@ -172,9 +172,10 @@ public class Controller {
|
|||
logger.debug("Finished outbound of: {}", message.describe());
|
||||
}
|
||||
if (message instanceof RequestMessage) {
|
||||
logger.debug("Waiting for response from: {}", message.describe());
|
||||
synchronized (responseMutex) {
|
||||
responseMutex.wait(1000);
|
||||
logger.debug("Waiting for response from: {}", message.describe());
|
||||
if (!responseReceived)
|
||||
responseMutex.wait(1000);
|
||||
logger.debug("Response received: {}", responseReceived);
|
||||
responseReceived = false;
|
||||
}
|
||||
|
|
|
@ -33,9 +33,17 @@ public abstract class MessageEngine {
|
|||
}
|
||||
MessageType messageType = _data[2] == 0x00 ? MessageType.REQUEST : MessageType.RESPONSE;
|
||||
ControllerMessageType controllerMessageType = ControllerMessageType.fromByte((byte)(_data[3] & 0xFF));
|
||||
int offset = ((messageType == MessageType.REQUEST) && NullUtils.isOneOf(controllerMessageType, ControllerMessageType.SendData, ControllerMessageType.ApplicationCommandHandler))?7:5;
|
||||
CommandClass commandClass = _data.length > offset + 1 ? CommandClass.fromByte((byte)(_data[offset] & 0xFF)):CommandClass.NO_OPERATION;
|
||||
byte command = ((commandClass == CommandClass.NO_OPERATION) || (_data.length <= offset+2))?0:(byte)(_data[offset+1] & 0xFF);
|
||||
CommandClass commandClass = CommandClass.NO_OPERATION;
|
||||
byte command = 0;
|
||||
int offset = 5;
|
||||
if (NullUtils.isOneOf(controllerMessageType, ControllerMessageType.SendData, ControllerMessageType.ApplicationCommandHandler)) {
|
||||
if (messageType == MessageType.REQUEST)
|
||||
offset = 7;
|
||||
if (_data.length > offset + 1)
|
||||
commandClass = CommandClass.fromByte((byte)(_data[offset] & 0xFF));
|
||||
if (_data.length > offset + 2)
|
||||
command = (byte)(_data[offset+1] & 0xFF);
|
||||
}
|
||||
Message message = messages.get(Message.toKey(controllerMessageType.data, messageType.data, commandClass.data, command));
|
||||
if (message == null) {
|
||||
logger.debug("Could not find message class for message: {} {} {} {}", controllerMessageType.label, messageType.name(), commandClass.label, command);
|
||||
|
|
|
@ -0,0 +1,17 @@
|
|||
package com.lanternsoftware.zwave.message.impl;
|
||||
|
||||
import com.lanternsoftware.zwave.message.ControllerMessageType;
|
||||
import com.lanternsoftware.zwave.message.NoCommandRequestMessage;
|
||||
|
||||
public class AddNodeToNetworkRequest extends NoCommandRequestMessage {
|
||||
public AddNodeToNetworkRequest() {
|
||||
super(ControllerMessageType.AddNodeToNetwork);
|
||||
}
|
||||
|
||||
@Override
|
||||
public byte[] getPayload() {
|
||||
byte[] payload = new byte[1];
|
||||
payload[0] = (byte)0x05;
|
||||
return payload;
|
||||
}
|
||||
}
|
|
@ -1,3 +1,4 @@
|
|||
com.lanternsoftware.zwave.message.impl.AddNodeToNetworkRequest
|
||||
com.lanternsoftware.zwave.message.impl.ApplicationUpdateRequest
|
||||
com.lanternsoftware.zwave.message.impl.AssociationGetRequest
|
||||
com.lanternsoftware.zwave.message.impl.AssociationReportRequest
|
||||
|
|
Loading…
Reference in New Issue
Block a user