add name
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parent
05c212f01d
commit
9e6fb60a71
30
ESPBMS.ino
30
ESPBMS.ino
@ -18,6 +18,7 @@ void setup() {
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Serial.println("Scanning...");
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Serial.println("Scanning...");
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}
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}
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std::__cxx11::string currentName;
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bool gotBasicInfo;
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bool gotBasicInfo;
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bool gotCellInfo;
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bool gotCellInfo;
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@ -96,6 +97,7 @@ void loop() {
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gotBasicInfo=false;
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gotBasicInfo=false;
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gotCellInfo=false;
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gotCellInfo=false;
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currentName=advertisedDevice.getName();
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while(gotBasicInfo==false || gotCellInfo==false){
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while(gotBasicInfo==false || gotCellInfo==false){
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// REQUEST BASIC INFO
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// REQUEST BASIC INFO
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// header status command length data checksum footer
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// header status command length data checksum footer
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@ -270,15 +272,15 @@ bool processBasicInfo(byte *data, unsigned int dataLen){
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uint16_t BalanceCodeHigh = (two_ints_into16(data[14], data[15]));
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uint16_t BalanceCodeHigh = (two_ints_into16(data[14], data[15]));
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uint8_t MosfetStatus = ((byte)data[20]);
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uint8_t MosfetStatus = ((byte)data[20]);
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Serial.printf("Total voltage: %f\r\n", (float)Volts / 1000);
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Serial.printf("%s Total voltage: %f\r\n",currentName, (float)Volts / 1000);
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Serial.printf("Amps: %f\r\n", (float)Amps / 1000);
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Serial.printf("%s Amps: %f\r\n",currentName, (float)Amps / 1000);
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Serial.printf("CapacityRemainAh: %f\r\n", (float)CapacityRemainAh / 1000);
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Serial.printf("%s CapacityRemainAh: %f\r\n",currentName, (float)CapacityRemainAh / 1000);
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Serial.printf("CapacityRemainPercent: %d\r\n", CapacityRemainPercent);
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Serial.printf("%s CapacityRemainPercent: %d\r\n",currentName, CapacityRemainPercent);
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Serial.printf("Temp1: %f\r\n", (float)Temp1 / 10);
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Serial.printf("%s Temp1: %f\r\n",currentName, (float)Temp1 / 10);
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Serial.printf("Temp2: %f\r\n", (float)Temp2 / 10);
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Serial.printf("%s Temp2: %f\r\n",currentName, (float)Temp2 / 10);
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Serial.printf("Balance Code Low: 0x%x\r\n", BalanceCodeLow);
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Serial.printf("%s Balance Code Low: 0x%x\r\n",currentName, BalanceCodeLow);
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Serial.printf("Balance Code High: 0x%x\r\n", BalanceCodeHigh);
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Serial.printf("%s Balance Code High: 0x%x\r\n",currentName, BalanceCodeHigh);
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Serial.printf("Mosfet Status: 0x%x\r\n", MosfetStatus);
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Serial.printf("%s Mosfet Status: 0x%x\r\n",currentName, MosfetStatus);
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gotBasicInfo=true;
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gotBasicInfo=true;
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@ -308,13 +310,13 @@ bool processCellInfo(byte *data, unsigned int dataLen)
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_cellMin = CellVolt;
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_cellMin = CellVolt;
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}
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}
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Serial.printf("Cell %d volt: %f\r\n", i,(float)CellVolt/1000);
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Serial.printf("%s Cell %d volt: %f\r\n",currentName, i,(float)CellVolt/1000);
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}
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}
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Serial.printf("Max cell volt: %f\r\n", (float)_cellMax / 1000);
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Serial.printf("%s Max cell volt: %f\r\n",currentName, (float)_cellMax / 1000);
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Serial.printf("Min cell volt: %f\r\n", (float)_cellMin / 1000);
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Serial.printf("%s Min cell volt: %f\r\n",currentName, (float)_cellMin / 1000);
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Serial.printf("Difference cell volt: %f\r\n", (float)_cellMax - _cellMin / 1000);
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Serial.printf("%s Difference cell volt: %f\r\n",currentName, (float)_cellMax - _cellMin / 1000);
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Serial.printf("Average cell volt: %f\r\n", (float)_cellSum / NumOfCells / 1000);
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Serial.printf("%s Average cell volt: %f\r\n",currentName, (float)_cellSum / NumOfCells / 1000);
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gotCellInfo=true;
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gotCellInfo=true;
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