FHMaster.java 5.7 KB

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  1. package at.acdp.urweb.fhpp;
  2. import java.util.ArrayList;
  3. import java.util.List;
  4. import java.util.concurrent.*;
  5. import at.acdp.urweb.Params;
  6. import com.digitalpetri.modbus.codec.Modbus;
  7. import com.digitalpetri.modbus.master.ModbusTcpMaster;
  8. import com.digitalpetri.modbus.master.ModbusTcpMasterConfig;
  9. import com.digitalpetri.modbus.requests.*;
  10. import com.digitalpetri.modbus.responses.ReadHoldingRegistersResponse;
  11. import io.netty.util.ReferenceCountUtil;
  12. import org.slf4j.Logger;
  13. import org.slf4j.LoggerFactory;
  14. public class FHMaster implements IFHMaster {
  15. private final Logger logger = LoggerFactory.getLogger(getClass());
  16. public static int posfaktorNum=1;
  17. public static int posfaktorDiv=1;
  18. private ModbusTcpMaster master;
  19. private final ScheduledExecutorService scheduler = Executors.newSingleThreadScheduledExecutor();
  20. private volatile boolean started = false;
  21. public FHMaster() {
  22. }
  23. @Override
  24. public void start(Params app) throws InterruptedException {
  25. started = true;
  26. ModbusTcpMasterConfig config = new ModbusTcpMasterConfig.Builder(app.axisIP)
  27. .setPort(app.axisPort)
  28. .build();
  29. master = new ModbusTcpMaster(config);
  30. while(true) {
  31. Thread.sleep(1000);
  32. readStatus();
  33. }
  34. }
  35. private void sendRequests(ModbusTcpMaster master, List<ModbusRequest> reqs) {
  36. for(var req: reqs) {
  37. var future=master.sendRequest(req, 0);
  38. future.whenCompleteAsync((response, ex) -> {
  39. if (response != null) {
  40. ReferenceCountUtil.release(response);
  41. }
  42. else {
  43. logger.error("Completed exceptionally, message={}", ex.getMessage(), ex);
  44. }
  45. }, Modbus.sharedExecutor());
  46. }
  47. }
  48. private void send(byte[] bytes, int quantity) {
  49. CompletableFuture<ReadHoldingRegistersResponse> f =
  50. master.sendRequest(new WriteMultipleRegistersRequest(0, quantity, bytes), 0);
  51. f.join();
  52. }
  53. @Override
  54. public void direktAuftrag(int pos, int speed, int start, boolean relative) {
  55. byte ccon=0x0;
  56. ccon|=(1<<0); // Enable drive
  57. ccon|=(1<<1); // !Stop
  58. ccon|=(1<<2); // Release Brake
  59. ccon|=(0<<3); //Reset fault
  60. ccon|=(0<<4); //Reserved
  61. ccon|=(0<<5); //lock software
  62. ccon|=(1<<6 |0 <<7); //lock software
  63. // 0,0 Satzselektion
  64. // 1,0 Direktauftrag
  65. // 0,1 Reserviert
  66. // 1,1 Reserviert
  67. byte cpos=0x0;
  68. cpos|=(1<<0); // !Halt
  69. cpos|=(start<<1); // start fahrauftrag
  70. cpos|=(0<<2); // start homing
  71. cpos|=(0<<3); // jog pos
  72. cpos|=(0<<4); // jog neg
  73. cpos|=(0<<5); // teach value
  74. cpos|=(0<<6); // clear remaining pos.
  75. cpos|=(0<<7); // Reserved
  76. byte cdir=0x0;
  77. cdir|=((relative==true?1:0) <<0); // relative(1), absolute(0)
  78. cdir|= (0<<1| 0<<2); //absolute/relative
  79. // 0,0 Positionsregelung
  80. // 0,1 Kraftbetrieb
  81. // 1,0 Geschwindigkeitsregelung
  82. // 1,1 Reserviert
  83. cdir|=(0<<3); // Function Number Kurvenscheibenfunktion (0=nein)
  84. cdir|=(0<<4); // Function Number Kurvenscheibenfunktion (0=nein)
  85. cdir|=(0<<5); // Function Group Kurvenscheibenfunktion (0=nein)
  86. cdir|=(0<<6); // Function Group Kurvenscheibenfunktion (0=nein)
  87. cdir|=(0<<7); // 0 = normal; 1=kurvenscheibenfunktion
  88. byte sbyte4= (byte) speed; // Geschw, in % vom Basiswert (PNU540
  89. byte sbyte8= (byte)(pos& 0xff);
  90. byte sbyte7= (byte)((pos>>8) & 0xff);
  91. byte sbyte6= (byte)((pos>>16) & 0xff);
  92. byte sbyte5= (byte)((pos>>24) & 0xff);
  93. send(new byte[]{ccon,
  94. cpos,
  95. cdir,
  96. sbyte4,
  97. sbyte5,
  98. sbyte6,
  99. sbyte7,
  100. sbyte8,
  101. },4);
  102. }
  103. @Override
  104. public CompletableFuture<Status> readStatus() {
  105. if(master==null)
  106. return null;
  107. CompletableFuture<ReadHoldingRegistersResponse> f =master.sendRequest(new ReadHoldingRegistersRequest(0,4), 0);
  108. CompletableFuture<Status> fc= f.thenApply((response) -> {
  109. if (response != null) {
  110. var bb=response.getRegisters();
  111. try {
  112. byte[] bytes = new byte[bb.readableBytes()];
  113. bb.readBytes(bytes);
  114. Status s=new Status();
  115. s.read(bytes);
  116. return s;
  117. // System.out.println(s.toString());
  118. // System.out.println(ByteBufUtil.hexDump(bb));
  119. }
  120. catch (Exception e) {
  121. e.printStackTrace();
  122. }
  123. ReferenceCountUtil.release(response);
  124. }
  125. else {
  126. logger.error("Completed exceptionally, message={}", "null");
  127. }
  128. return null;
  129. });
  130. return fc;
  131. }
  132. @Override
  133. public void bereitschaft() {
  134. List<ModbusRequest> blist = new ArrayList<>();
  135. blist.add(new WriteMultipleRegistersRequest(0,4, new byte[]{0b01000111,0,0,0,0,0,0,0}));
  136. try {
  137. Thread.sleep(10);
  138. sendRequests(master, blist);
  139. Thread.sleep(10);
  140. } catch (InterruptedException e) {
  141. e.printStackTrace();
  142. }
  143. }
  144. @Override
  145. public void stop() {
  146. started = false;
  147. }
  148. }