Field (#12)
* ModbusAccessor finished and checked * read and write Field done. pushToField to do * field not finished, connection works * read csv file and add some comments
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parent
43ee88b3e3
commit
8446f991d3
@ -35,9 +35,6 @@ public abstract class DataPoint{
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}
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}
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/**
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* Just get the label of this DataPoint
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* @return the label in a string
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24
src/main/java/ch/hevs/isi/field/BooleanRegister.java
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24
src/main/java/ch/hevs/isi/field/BooleanRegister.java
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@ -0,0 +1,24 @@
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package ch.hevs.isi.field;
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import ch.hevs.isi.core.BooleanDataPoint;
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import ch.hevs.isi.core.DataPoint;
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public class BooleanRegister extends ModbusRegister{
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private boolean value;
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private BooleanDataPoint bdp;
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public BooleanRegister(String label, boolean isOutput, int address){
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this.bdp = new BooleanDataPoint(label, isOutput);
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value = bdp.getValue();
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updateMapOfRegisters(bdp, address);
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}
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@Override
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public void read() {
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bdp.setValue(ModbusAccessor.getMySelf().readBoolean(this.getAddress()));
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}
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@Override
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public void write() {
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ModbusAccessor.getMySelf().writeBoolean(this.getAddress(), bdp.getValue());
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}
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}
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@ -4,14 +4,24 @@ import ch.hevs.isi.core.DataPoint;
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import ch.hevs.isi.core.DataPointListener;
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import ch.hevs.isi.core.FloatDataPoint;
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import java.io.BufferedReader;
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import java.io.FileNotFoundException;
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import java.io.FileReader;
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import java.io.IOException;
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import java.util.Timer;
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public class FieldConnector implements DataPointListener {
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private static FieldConnector mySelf = null;
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private FieldConnector(){
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initialize("LocalHost",1502, "C:/Nils/Hesso/4_Semester/SIN/Minecraft_Electrical_Age_Project/ModbusMap.csv");
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}
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/**
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* static method to create a singleton pattern of the class
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* checks if an instance of the class is already made
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* if not, it creates an instance of the class FieldConnector
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* @return instance of FieldConnector
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*/
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public static FieldConnector getMySelf(){
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if (mySelf == null){
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mySelf = new FieldConnector();
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@ -19,16 +29,73 @@ public class FieldConnector implements DataPointListener {
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return mySelf;
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}
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public void initialize(String host, int port){
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/**
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* read the csv-file of the ModbusMap
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* @param pathToFile path to the file of all modbus registers (C:/.../ModbusMap.csv)
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*/
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public static void createRegister(String pathToFile){
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try{
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BufferedReader csvFile = new BufferedReader(new FileReader(pathToFile));
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csvFile.readLine();
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while(csvFile.ready()){
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String line = csvFile.readLine(); // read one line
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String[] splitLine = line.split(";"); // split line between ";"
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String label = splitLine[0]; // first split is the label of the register
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boolean isOutput = splitLine[3].equals("N"); // third split declares if it is an output
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int address = new Integer((splitLine[4])); // fourth split is the address of the register
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float range = new Float(splitLine[5]); // if it is a floatDatapoint, the fifth split is the range of the data
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float offset = new Float(splitLine[6]); // if it is a floatDatapoint, the sixth split is the offset of the data
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/*
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// create a float or a boolean register
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if (splitLine[1].equals("B")){
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BooleanRegister b = new BooleanRegister(label, isOutput, address);
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} else if(splitLine[1].equals("F")){
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FloatRegister f = new FloatRegister(label, isOutput, address, range, offset);
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}
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*/
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}
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}
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catch(FileNotFoundException e){
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e.printStackTrace();
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}
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catch (IOException e){
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e.printStackTrace();
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}
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}
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private void pushToField(DataPoint dp){
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System.out.println(dp.toString() + " -> Field");
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/**
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* this method initialize the fieldConnector
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* it connects the ModbusAccessor, reads the csv-file of the ModbusMap
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* and starts the periodical polling of the modbus registers
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* @param host ip address of the server
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* @param port port of the server
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* @param pathToFile path to the file of all modbus registers (C:/.../ModbusMap.csv)
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*/
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public void initialize(String host, int port, String pathToFile){
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ModbusAccessor.getMySelf().connect(host,port);
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createRegister(pathToFile);
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startPeriodicalPolling();
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}
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private void pushToField(String label, String value){
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System.out.println("Field: " + label + " " + value);
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}
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@Override
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public void onNewValue(DataPoint dp) {
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pushToField(dp);
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ModbusRegister mR = ModbusRegister.getRegisterFromDatapoint(dp);
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mR.write();
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pushToField(dp.getLabel(),dp.toString());
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}
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/**
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* method to start a periodical task
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* in our case it is the reading of the modbus registers
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*/
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public void startPeriodicalPolling(){
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Timer pollTimer = new Timer();
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PollTask pollTask = new PollTask();
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pollTimer.scheduleAtFixedRate(pollTask,0,100);
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}
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}
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26
src/main/java/ch/hevs/isi/field/FloatRegister.java
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26
src/main/java/ch/hevs/isi/field/FloatRegister.java
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@ -0,0 +1,26 @@
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package ch.hevs.isi.field;
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import ch.hevs.isi.core.DataPoint;
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import ch.hevs.isi.core.FloatDataPoint;
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import java.util.HashMap;
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public class FloatRegister extends ModbusRegister{
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private Float value;
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private FloatDataPoint fdp;
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public FloatRegister(String label, boolean isOutPut, int address, float range, float offset) {
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this.fdp = new FloatDataPoint(label, isOutPut);
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value = fdp.getValue();
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updateMapOfRegisters(fdp,address);
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}
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@Override
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public void read() {
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fdp.setValue(ModbusAccessor.getMySelf().readFloat(this.getAddress()));
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}
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@Override
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public void write() {
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ModbusAccessor.getMySelf().writeFloat(this.getAddress(), fdp.getValue());
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}
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}
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@ -9,6 +9,7 @@ import com.serotonin.modbus4j.exception.ModbusTransportException;
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import com.serotonin.modbus4j.ip.IpParameters;
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import com.serotonin.modbus4j.ip.tcp.TcpMaster;
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import com.serotonin.modbus4j.locator.BaseLocator;
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import com.sun.org.apache.xpath.internal.operations.Mod;
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public class ModbusAccessor {
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@ -19,7 +20,6 @@ public class ModbusAccessor {
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* private constructor
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* */
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private ModbusAccessor(){
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}
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/**
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@ -63,27 +63,39 @@ public class ModbusAccessor {
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* method to write a boolean value in the correct modbus register
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* @param register address of the register
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* @param value the desired boolean value
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* @throws ModbusTransportException
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* @throws ErrorResponseException
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*/
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public void writeBoolean (int register, boolean value) throws ModbusTransportException, ErrorResponseException{
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public void writeBoolean (int register, boolean value){
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//first parameter = slaveID = always 1 because we only have one
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//second parameter = register address ==> it is named offset because it starts with 0 and goes to the desired address
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this.master.setValue(BaseLocator.coilStatus(1,register), value); //set the desired value in the correct register
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try{
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this.master.setValue(BaseLocator.coilStatus(1,register), value); //set the desired value in the correct register
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}
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catch (ModbusTransportException e){
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e.printStackTrace();
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}
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catch (ErrorResponseException e){
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e.printStackTrace();
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}
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}
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/**
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* method to write a float value in the correct modbus register
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* @param register address of the register
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* @param value the desired float value
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* @throws ModbusTransportException
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* @throws ErrorResponseException
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*/
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public void writeFloat (int register, float value) throws ModbusTransportException, ErrorResponseException{
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public void writeFloat (int register, float value){
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//first parameter = slaveID = always 1 because we only have one
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//second parameter = register address ==> it is named offset because it starts with 0 and goes to the desired address
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//third parameter = DataType of the value. The max value is 3 Byte Float, but the class DataType has only 2 or 4 byte
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this.master.setValue(BaseLocator.holdingRegister(1,register,DataType.FOUR_BYTE_FLOAT), value);
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try{
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this.master.setValue(BaseLocator.holdingRegister(1,register,DataType.FOUR_BYTE_FLOAT), value);
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}
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catch (ModbusTransportException e){
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e.printStackTrace();
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}
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catch (ErrorResponseException e){
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e.printStackTrace();
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}
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}
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//methods to read
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/**
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@ -91,41 +103,55 @@ public class ModbusAccessor {
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* get the coil status of the register.
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* @param register address of register
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* @return boolean value of the desired register
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* @throws ModbusTransportException
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* @throws ErrorResponseException
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*/
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public boolean readBoolean(int register) throws ModbusTransportException, ErrorResponseException {
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public boolean readBoolean(int register){
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//first parameter = slaveID = always 1 because we only have one
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//second parameter = register address ==> it is named offset because it starts with 0 and goes to the desired address
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boolean booleanValue = this.master.getValue(BaseLocator.coilStatus(1,register));
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return booleanValue;
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try{
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boolean booleanValue = this.master.getValue(BaseLocator.coilStatus(1,register));
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return booleanValue;
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}
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catch (ModbusTransportException e){
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e.printStackTrace();
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}
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catch (ErrorResponseException e){
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e.printStackTrace();
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}
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return false;
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}
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/**
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* method to read a boolean value in the correct modbus register
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* get the value from the holding register
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* @param register address of the register
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* @return float value of the desired register
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* @throws ModbusTransportException
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* @throws ErrorResponseException
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*/
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public float readFloat(int register)throws ModbusTransportException, ErrorResponseException{
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public float readFloat(int register){
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//first parameter = slaveID = always 1 because we only have one
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//second parameter = register address ==> it is named offset because it starts with 0 and goes to the desired address
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//third parameter = DataType of the value. The max value is 3 Byte Float, but the class DataType has only 2 or 4 byte
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float floatValue = (float) this.master.getValue(BaseLocator.holdingRegister(1,register, DataType.FOUR_BYTE_FLOAT));
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return floatValue;
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try {
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float floatValue = (float) this.master.getValue(BaseLocator.holdingRegister(1,register, DataType.FOUR_BYTE_FLOAT));
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return floatValue;
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}
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catch (ModbusTransportException e){
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e.printStackTrace();
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}
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catch (ErrorResponseException e){
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e.printStackTrace();
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}
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return 0F;
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}
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/**
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* this main method is only for testing the ModbusAccessor class
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* @param args
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*/
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/*
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public static void main(String[] args) {
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//create an instance of ModbusAccessor and connect it with the server
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ModbusAccessor test = ModbusAccessor.getMySelf();
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test.connect("LocalHost", 1502);
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//do this all the time
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while(true){
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try{
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//get a boolean value => solar SetPoint
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boolean solar_connect_st = test.readBoolean(609); //SOLAR_CONNECT_ST
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//get a float value => factory SetPoint
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@ -137,7 +163,7 @@ public class ModbusAccessor {
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test.writeBoolean(401,false); //REMOTE_SOLAR_SW
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//check the factory SetPoint
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System.out.println("Factory Setpoint is: " + factory_st);
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System.out.println("Factory SetPoint is: " + factory_st);
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//check the solar SetPoint
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if(solar_connect_st){
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@ -145,13 +171,9 @@ public class ModbusAccessor {
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}else{
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System.out.println("Solar is disconnected");
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}
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}catch (ModbusTransportException e){
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}catch (ErrorResponseException e){
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}
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}
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}
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*/
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}
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43
src/main/java/ch/hevs/isi/field/ModbusRegister.java
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43
src/main/java/ch/hevs/isi/field/ModbusRegister.java
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@ -0,0 +1,43 @@
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package ch.hevs.isi.field;
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import ch.hevs.isi.core.DataPoint;
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import ch.hevs.isi.core.FloatDataPoint;
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import java.util.HashMap;
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public abstract class ModbusRegister {
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private int address;
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/**
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* get the address of the modbus register
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* @return address of the modbus register
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*/
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public int getAddress() {
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return address;
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}
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private final static HashMap<DataPoint, ModbusRegister> mapOfRegisters = new HashMap<>();
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/**
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* get the modbus register from the desired datapoint
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* @param dp the desired datapoint
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* @return modbus register
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*/
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public static ModbusRegister getRegisterFromDatapoint(DataPoint dp){
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return mapOfRegisters.get(dp);
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}
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public void updateMapOfRegisters(DataPoint dp, int address){
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this.address = address;
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mapOfRegisters.put(dp,this);
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}
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/**
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* read periodically each modbus register
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*/
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public static void poll(){
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for (ModbusRegister mr : mapOfRegisters.values()){
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mr.read(); //read all values (registers) of the map
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}
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}
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public abstract void read(); //abstract prototype of the method read
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public abstract void write(); //abstract prototype of the method read
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}
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10
src/main/java/ch/hevs/isi/field/PollTask.java
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10
src/main/java/ch/hevs/isi/field/PollTask.java
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@ -0,0 +1,10 @@
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package ch.hevs.isi.field;
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import java.util.TimerTask;
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public class PollTask extends TimerTask {
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@Override
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public void run() {
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ModbusRegister.poll();
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}
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}
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34
src/test/java/Field.java
Normal file
34
src/test/java/Field.java
Normal file
@ -0,0 +1,34 @@
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import ch.hevs.isi.core.BooleanDataPoint;
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import ch.hevs.isi.core.FloatDataPoint;
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import ch.hevs.isi.field.BooleanRegister;
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import ch.hevs.isi.field.FieldConnector;
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import ch.hevs.isi.field.FloatRegister;
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public class Field {
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public static void main(String[] args) {
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//FloatRegister fRI = new FloatRegister("GRID_U_FLOAT",false,89);
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BooleanRegister bRI = new BooleanRegister("SOLAR_CONNECT_ST", false ,609);
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FieldConnector.getMySelf().startPeriodicalPolling();
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//FloatRegister fRO = new FloatRegister("REMOTE_FACTORY_SP",true,205);
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BooleanRegister bRO = new BooleanRegister("REMOTE_SOLAR_SW", true ,401);
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/*
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fRO.fdp.setValue(0.8F);
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bRO.bdp.setValue(true);
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*/
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while(true)
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{
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/*
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float value = fRI.dataPoint.getValue()*1000;
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System.out.println(value);
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*/
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/*
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System.out.println(bRI.bdp.getValue());
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*/
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}
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}
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}
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