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520 lines
14 KiB
520 lines
14 KiB
// flymaster-client.js
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// WebSerial implementation of the Flymaster GPS protocol
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class FlymasterClient {
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constructor() {
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// Constants
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this.BAUDRATE = 57600;
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this.XON = 0x11;
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this.XOFF = 0x13;
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this.MAX_LINE = 90;
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this.DOWN_TIMEOUT = 1000; // 1 second in milliseconds
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// Packet IDs
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this.PACKET_FLIGHT_INFO = 0xa0a0;
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this.PACKET_KEY_POSITION = 0xa1a1;
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this.PACKET_DELTA_POSITION = 0xa2a2;
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this.PACKET_END_MARKER = 0xa3a3;
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// Acknowledgment bytes
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this.ACK_POSITIVE = 0xb1;
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this.ACK_NEGATIVE = 0xb3;
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// Serial port and streams
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this.port = null;
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this.reader = null;
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this.writer = null;
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// Device information
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this.gpsname = "";
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this.gpsunitid = 0;
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this.saved_tracks = [];
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this.selected_tracks = [];
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}
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/**
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* Request port access and open connection
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*/
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async connect() {
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try {
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// Request a port and open it
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this.port = await navigator.serial.requestPort();
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await this.port.open({
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baudRate: this.BAUDRATE,
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dataBits: 8,
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stopBits: 1,
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parity: "none",
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flowControl: "none" // We'll handle XON/XOFF in software
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});
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// Get reader and writer
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this.reader = this.port.readable.getReader();
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this.writer = this.port.writable.getWriter();
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console.log("Connected to device");
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return true;
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} catch (error) {
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console.error("Connection failed:", error);
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return false;
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}
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}
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/**
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* Close the connection
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*/
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async disconnect() {
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if (this.reader) {
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await this.reader.releaseLock();
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this.reader = null;
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}
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if (this.writer) {
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await this.writer.releaseLock();
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this.writer = null;
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}
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if (this.port && this.port.readable) {
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await this.port.close();
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this.port = null;
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}
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console.log("Disconnected from device");
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}
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/**
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* Initialize the GPS device
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*/
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async initGps() {
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// Get device information
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const result = await this.sendCommand("PFMSNP");
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this.gpsname = result[0];
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// Compute unit id as a XOR of the result
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this.gpsunitid = 0;
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for (let i = 0; i < result.length; i++) {
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for (let j = 0; j < result[i].length; j++) {
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this.gpsunitid ^= result[i].charCodeAt(j) << ((j % 4) * 8);
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}
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}
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// Download track list
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await this.sendSmplCommand("PFMDNL", ["LST"]);
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this.saved_tracks = [];
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let totaltracks = 0;
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do {
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const trackres = await this.receiveData("PFMLST");
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totaltracks = parseInt(trackres[0]);
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const date = trackres[2];
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const start = trackres[3];
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const duration = trackres[4];
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// Parse date and time
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const [day, month, year] = date.split('.').map(n => parseInt(n));
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const [hour, minute, second] = start.split(':').map(n => parseInt(n));
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// Create date object (note: month is 0-indexed in JS Date)
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const startDate = new Date(2000 + year, month - 1, day, hour, minute, second);
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// Parse duration
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const [dHour, dMinute, dSecond] = duration.split(':').map(n => parseInt(n));
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// Calculate end date
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const endDate = new Date(startDate.getTime() +
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(dHour * 3600 + dMinute * 60 + dSecond) * 1000);
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this.saved_tracks.push({
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startDate: startDate,
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endDate: endDate
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});
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} while (this.saved_tracks.length < totaltracks);
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console.log(`Initialized GPS: ${this.gpsname}, found ${this.saved_tracks.length} tracks`);
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return this.saved_tracks;
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}
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/**
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* Generate NMEA command with checksum
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*/
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genCommand(command, parameters = []) {
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let data = '$' + command + ',';
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let cksum = 0;
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// Calculate checksum for command
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for (let i = 0; i < command.length; i++) {
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cksum ^= command.charCodeAt(i);
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}
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cksum ^= ','.charCodeAt(0);
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// Add parameters and update checksum
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for (let i = 0; i < parameters.length; i++) {
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data += parameters[i];
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// Update checksum with parameter
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for (let j = 0; j < parameters[i].length; j++) {
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cksum ^= parameters[i].charCodeAt(j);
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}
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data += ',';
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cksum ^= ','.charCodeAt(0);
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}
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// Add checksum as hexadecimal
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data += '*' + cksum.toString(16).padStart(2, '0').toUpperCase() + '\r\n';
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return data;
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}
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/**
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* Send a command and get response
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*/
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async sendCommand(command, parameters = []) {
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await this.sendSmplCommand(command, parameters);
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return await this.receiveData(command);
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}
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/**
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* Send a command without waiting for response
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*/
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async sendSmplCommand(command, parameters = []) {
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const cmdStr = this.genCommand(command, parameters);
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const encoder = new TextEncoder();
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const data = encoder.encode(cmdStr);
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await this.writer.write(data);
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}
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/**
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* Read data from the device until a valid response is received
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*/
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async receiveData(command) {
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const decoder = new TextDecoder();
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let received = 0;
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let recv_cmd = "";
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let param = "";
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let result = [];
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let incmd = false;
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let cksum = 0;
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const startTime = Date.now();
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while (Date.now() - startTime < this.DOWN_TIMEOUT) {
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const { value, done } = await this.reader.read();
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if (done) break;
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for (let i = 0; i < value.length; i++) {
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const ch = value[i];
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received++;
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// Ignore XON, XOFF
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if (ch === this.XON || ch === this.XOFF) continue;
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if (ch === 0x24) { // '$'
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incmd = true;
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cksum = 0;
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param = "";
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recv_cmd = "";
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result = [];
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continue;
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}
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if (!incmd) continue;
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if (ch !== 0x2A) // '*'
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cksum ^= ch;
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if (ch === 0x2C || ch === 0x2A) { // ',' or '*'
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if (param.length) {
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if (!recv_cmd.length)
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recv_cmd = param;
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else
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result.push(param);
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}
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param = "";
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if (ch === 0x2A) { // '*'
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// Read checksum (2 hex characters)
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const cksum_s = String.fromCharCode(value[++i]) + String.fromCharCode(value[++i]);
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const cksum_r = parseInt(cksum_s, 16);
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// Skip CR, LF
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i += 2;
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if (cksum_r === cksum && recv_cmd === command)
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return result;
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}
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continue;
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}
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param += String.fromCharCode(ch);
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}
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}
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throw new Error("Timeout waiting for response");
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}
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/**
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* Read a binary packet from the device
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*/
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async readPacket() {
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// Read packet ID (2 bytes)
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const { value: idBytes } = await this.reader.read();
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const packetId = idBytes[0] + (idBytes[1] << 8);
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if (packetId === this.PACKET_END_MARKER) {
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return { end: true };
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}
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// Read length (1 byte)
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const { value: lengthByte } = await this.reader.read();
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const length = lengthByte[0];
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// Read data
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let data = new Uint8Array(length);
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let bytesRead = 0;
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while (bytesRead < length) {
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const { value } = await this.reader.read();
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const remaining = length - bytesRead;
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const bytesToCopy = Math.min(remaining, value.length);
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data.set(value.slice(0, bytesToCopy), bytesRead);
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bytesRead += bytesToCopy;
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}
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// Read checksum
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const { value: cksumByte } = await this.reader.read();
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const cksum = cksumByte[0];
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// Compute checksum
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let c_cksum = length;
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for (let i = 0; i < data.length; i++) {
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c_cksum ^= data[i];
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}
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if (c_cksum !== cksum) {
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// Send negative acknowledgment
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await this.writer.write(new Uint8Array([this.ACK_NEGATIVE]));
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throw new Error("Data checksum error");
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}
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return { packetId, data };
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}
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/**
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* Download a specific track
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*/
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async downloadTrack(trackIndex, progressCallback = null) {
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const track = this.saved_tracks[trackIndex];
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const result = [];
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// Format date for command
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const startDate = track.startDate;
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const year = startDate.getFullYear() % 100;
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const month = (startDate.getMonth() + 1).toString().padStart(2, '0');
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const day = startDate.getDate().toString().padStart(2, '0');
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const hour = startDate.getHours().toString().padStart(2, '0');
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const minute = startDate.getMinutes().toString().padStart(2, '0');
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const second = startDate.getSeconds().toString().padStart(2, '0');
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const timestamp = `${year}${month}${day}${hour}${minute}${second}`;
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// Send download command
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await this.sendSmplCommand("PFMDNL", [timestamp]);
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let newTrack = true;
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let basePos = null;
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let pktCount = 0;
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let pcounter = 0;
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const expCount = Math.floor((track.endDate - track.startDate) / 1000);
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while (true) {
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try {
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const packet = await this.readPacket();
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// Check if end of transmission
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if (packet.end) break;
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if (packet.packetId === this.PACKET_FLIGHT_INFO) {
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// Flight information packet
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// We could parse this, but for now we'll just acknowledge it
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}
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else if (packet.packetId === this.PACKET_KEY_POSITION) {
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// Key position packet
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basePos = this.parseKeyPosition(packet.data);
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result.push(this.makePoint(basePos, newTrack));
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newTrack = false;
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}
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else if (packet.packetId === this.PACKET_DELTA_POSITION) {
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// Delta position packet
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const deltas = this.parseDeltaPositions(packet.data);
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for (const delta of deltas) {
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// Apply delta to base position
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basePos.fix = delta.fix;
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basePos.latitude += delta.latoff;
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basePos.longitude += delta.lonoff;
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basePos.gpsaltitude += delta.gpsaltoff;
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basePos.baro += delta.baroff;
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basePos.time += delta.timeoff;
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pktCount += delta.timeoff;
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if (progressCallback && !(pcounter++ % 60)) {
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const continueDownload = progressCallback(pktCount, expCount);
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if (!continueDownload) {
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// Send negative acknowledgment
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await this.writer.write(new Uint8Array([this.ACK_NEGATIVE]));
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throw new Error("Download cancelled");
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}
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}
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result.push(this.makePoint(basePos, false));
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}
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}
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// Send positive acknowledgment
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await this.writer.write(new Uint8Array([this.ACK_POSITIVE]));
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} catch (error) {
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console.error("Error reading packet:", error);
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break;
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}
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}
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return result;
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}
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/**
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* Parse a key position packet
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*/
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parseKeyPosition(data) {
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const view = new DataView(data.buffer);
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return {
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latitude: view.getInt32(0, true), // little-endian
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longitude: view.getInt32(4, true), // little-endian
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gpsaltitude: view.getInt16(8, true), // little-endian
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baro: view.getInt16(10, true), // little-endian
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time: view.getUint32(12, true), // little-endian
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fix: data[16]
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};
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}
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/**
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* Parse delta positions from a packet
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*/
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parseDeltaPositions(data) {
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const deltas = [];
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const DELTA_SIZE = 9; // Size of each delta structure
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for (let i = 0; i + DELTA_SIZE <= data.length; i += DELTA_SIZE) {
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deltas.push({
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fix: data[i],
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latoff: new Int16Array(data.buffer.slice(i + 1, i + 3))[0],
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lonoff: new Int16Array(data.buffer.slice(i + 3, i + 5))[0],
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gpsaltoff: data[i + 5],
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baroff: data[i + 6],
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timeoff: new Uint16Array(data.buffer.slice(i + 7, i + 9))[0]
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});
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}
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return deltas;
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}
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/**
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* Convert a position to a trackpoint
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*/
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makePoint(pos, newTrack) {
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return {
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lat: pos.latitude / 60000.0,
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lon: -pos.longitude / 60000.0,
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gpsalt: pos.gpsaltitude,
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baroalt: (1 - Math.pow(Math.abs((pos.baro / 10.0) / 1013.25), 0.190284)) * 44307.69,
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time: pos.time + 946684800, // Convert from Y2K epoch to Unix epoch
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new_trk: newTrack
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};
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}
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/**
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* Get list of available tracks
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*/
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getTrackList() {
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return this.saved_tracks.map((track, index) => {
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return {
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index: index,
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startDate: track.startDate,
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endDate: track.endDate,
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duration: Math.floor((track.endDate - track.startDate) / 1000)
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};
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});
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}
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/**
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* Select tracks for download
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*/
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selectTracks(indices) {
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this.selected_tracks = indices.sort((a, b) => b - a); // Sort in descending order
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}
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/**
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* Download all selected tracks
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*/
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async downloadSelectedTracks(progressCallback = null) {
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let allPoints = [];
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for (const trackIndex of this.selected_tracks) {
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const points = await this.downloadTrack(trackIndex, progressCallback);
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allPoints = allPoints.concat(points);
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}
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return allPoints;
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}
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}
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// Example usage:
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async function connectToFlymaster() {
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const client = new FlymasterClient();
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try {
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// Connect to device
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const connected = await client.connect();
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if (!connected) {
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console.error("Failed to connect to device");
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return;
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}
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// Initialize GPS
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await client.initGps();
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// Get track list
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const tracks = client.getTrackList();
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console.log("Available tracks:", tracks);
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// Select tracks to download (e.g., the most recent one)
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client.selectTracks([0]);
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// Download selected tracks with progress callback
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const points = await client.downloadSelectedTracks((current, total) => {
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const percent = Math.floor((current / total) * 100);
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console.log(`Download progress: ${percent}%`);
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return true; // Return false to cancel download
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});
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console.log(`Downloaded ${points.length} points`);
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// Disconnect
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await client.disconnect();
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return points;
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} catch (error) {
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console.error("Error:", error);
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await client.disconnect();
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}
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}
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// Export the class
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if (typeof module !== 'undefined' && module.exports) {
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module.exports = { FlymasterClient };
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} else {
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window.FlymasterClient = FlymasterClient;
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}
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