First init.
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69
ANANO_ReadZeitronix-2/ANANO_ReadZeitronix-2.ino
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69
ANANO_ReadZeitronix-2/ANANO_ReadZeitronix-2.ino
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//#include <SoftwareSerial.h>
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#include <PostNeoSWSerial.h>
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PostNeoSWSerial zt2Serial( 10, 11 );
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volatile uint32_t newlines = 0UL;
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static void handleRxChar( uint8_t c )
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{
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if (c == '\n')
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newlines++;
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}
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// Define the buffer size and array to hold the data
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const int bufferSize = 16;
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uint8_t dataBuffer[bufferSize];
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int dataIndex = 0;
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bool dataStarted = false; // Flag to indicate if we are in the middle of a valid packet
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void setup() {
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Serial.begin(9600);
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zt2Serial.begin(9600);
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}
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void loop() {
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// Check if data is available on SoftwareSerial
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while (zt2Serial.available()) {
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// Read a byte from SoftwareSerial
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uint8_t byteRead = zt2Serial.read();
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// Check for the start of a new data packet
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if (!dataStarted) {
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// If the start of a new packet is detected
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if (byteRead == 0 && zt2Serial.available() >= 2) {
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// Read the next two bytes to confirm the start sequence
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uint8_t nextByte1 = zt2Serial.read();
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uint8_t nextByte2 = zt2Serial.read();
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// Check if the following bytes are 0x01 and 0x02
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if (nextByte1 == 0x01 && nextByte2 == 0x02) {
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// Start collecting data
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dataStarted = true;
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dataIndex = 0;
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}
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}
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}
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// If we're in a valid data packet, store the data
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if (dataStarted) {
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// Store the byte in the buffer
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if (dataIndex < bufferSize) {
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dataBuffer[dataIndex++] = byteRead;
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}
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// If buffer is full, process the data
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if (dataIndex >= bufferSize) {
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// Print out the collected data in hexadecimal format
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Serial.print("Received Data: ");
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for (int i = 0; i < bufferSize; i++) {
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Serial.print(dataBuffer[i]);
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Serial.print(" ");
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}
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Serial.println();
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// Reset flag and index to start collecting new data
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dataStarted = false;
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dataIndex = 0;
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}
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}
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}
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}
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