mirror of
https://github.com/alexandrebobkov/ESP-Nodes.git
synced 2025-08-09 09:55:25 +00:00
384 lines
16 KiB
JavaScript
384 lines
16 KiB
JavaScript
/* global SerialPort, ParityType, FlowControlType */
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/**
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* Wrapper class around Webserial API to communicate with the serial device.
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* @param {typeof import("w3c-web-serial").SerialPort} device - Requested device prompted by the browser.
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*
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* ```
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* const port = await navigator.serial.requestPort();
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* ```
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*/
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class Transport {
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constructor(device, tracing = false, enableSlipReader = true) {
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this.device = device;
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this.tracing = tracing;
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this.slipReaderEnabled = false;
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this.baudrate = 0;
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this.traceLog = "";
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this.lastTraceTime = Date.now();
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this.buffer = new Uint8Array(0);
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this.SLIP_END = 0xc0;
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this.SLIP_ESC = 0xdb;
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this.SLIP_ESC_END = 0xdc;
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this.SLIP_ESC_ESC = 0xdd;
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this._DTR_state = false;
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this.slipReaderEnabled = enableSlipReader;
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}
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/**
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* Request the serial device vendor ID and Product ID as string.
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* @returns {string} Return the device VendorID and ProductID from SerialPortInfo as formatted string.
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*/
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getInfo() {
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const info = this.device.getInfo();
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return info.usbVendorId && info.usbProductId
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? `WebSerial VendorID 0x${info.usbVendorId.toString(16)} ProductID 0x${info.usbProductId.toString(16)}`
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: "";
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}
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/**
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* Request the serial device product id from SerialPortInfo.
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* @returns {number | undefined} Return the product ID.
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*/
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getPid() {
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return this.device.getInfo().usbProductId;
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}
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/**
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* Format received or sent data for tracing output.
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* @param {string} message Message to format as trace line.
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*/
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trace(message) {
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const delta = Date.now() - this.lastTraceTime;
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const prefix = `TRACE ${delta.toFixed(3)}`;
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const traceMessage = `${prefix} ${message}`;
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console.log(traceMessage);
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this.traceLog += traceMessage + "\n";
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}
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async returnTrace() {
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try {
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await navigator.clipboard.writeText(this.traceLog);
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console.log("Text copied to clipboard!");
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}
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catch (err) {
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console.error("Failed to copy text:", err);
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}
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}
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hexify(s) {
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return Array.from(s)
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.map((byte) => byte.toString(16).padStart(2, "0"))
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.join("")
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.padEnd(16, " ");
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}
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hexConvert(uint8Array, autoSplit = true) {
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if (autoSplit && uint8Array.length > 16) {
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let result = "";
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let s = uint8Array;
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while (s.length > 0) {
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const line = s.slice(0, 16);
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const asciiLine = String.fromCharCode(...line)
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.split("")
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.map((c) => (c === " " || (c >= " " && c <= "~" && c !== " ") ? c : "."))
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.join("");
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s = s.slice(16);
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result += `\n ${this.hexify(line.slice(0, 8))} ${this.hexify(line.slice(8))} | ${asciiLine}`;
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}
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return result;
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}
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else {
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return this.hexify(uint8Array);
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}
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}
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/**
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* Format data packet using the Serial Line Internet Protocol (SLIP).
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* @param {Uint8Array} data Binary unsigned 8 bit array data to format.
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* @returns {Uint8Array} Formatted unsigned 8 bit data array.
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*/
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slipWriter(data) {
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const outData = [];
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outData.push(0xc0);
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for (let i = 0; i < data.length; i++) {
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if (data[i] === 0xdb) {
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outData.push(0xdb, 0xdd);
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}
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else if (data[i] === 0xc0) {
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outData.push(0xdb, 0xdc);
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}
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else {
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outData.push(data[i]);
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}
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}
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outData.push(0xc0);
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return new Uint8Array(outData);
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}
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/**
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* Write binary data to device using the WebSerial device writable stream.
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* @param {Uint8Array} data 8 bit unsigned data array to write to device.
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*/
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async write(data) {
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const outData = this.slipWriter(data);
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if (this.device.writable) {
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const writer = this.device.writable.getWriter();
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if (this.tracing) {
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console.log("Write bytes");
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this.trace(`Write ${outData.length} bytes: ${this.hexConvert(outData)}`);
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}
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await writer.write(outData);
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writer.releaseLock();
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}
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}
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/**
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* Append a buffer array after another buffer array
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* @param {Uint8Array} arr1 - First array buffer.
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* @param {Uint8Array} arr2 - magic hex number to select ROM.
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* @returns {Uint8Array} Return a 8 bit unsigned array.
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*/
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appendArray(arr1, arr2) {
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const combined = new Uint8Array(arr1.length + arr2.length);
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combined.set(arr1);
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combined.set(arr2, arr1.length);
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return combined;
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}
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// Asynchronous generator to yield incoming data chunks
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async *readLoop(timeout) {
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if (!this.reader)
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return;
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try {
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while (true) {
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const timeoutPromise = new Promise((_, reject) => setTimeout(() => reject(new Error("Read timeout exceeded")), timeout));
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// Await the race between the timeout and the reader read
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const result = await Promise.race([this.reader.read(), timeoutPromise]);
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// If a timeout occurs, result will be null; otherwise, it will have { value, done }
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if (result === null)
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break;
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const { value, done } = result;
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if (done || !value)
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break;
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yield value; // Yield each data chunk
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}
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}
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catch (error) {
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console.error("Error reading from serial port:", error);
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}
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finally {
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this.buffer = new Uint8Array(0);
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}
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}
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// Read a specific number of bytes
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async newRead(numBytes, timeout) {
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if (this.buffer.length >= numBytes) {
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const output = this.buffer.slice(0, numBytes);
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this.buffer = this.buffer.slice(numBytes); // Remove the returned data from buffer
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return output;
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}
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while (this.buffer.length < numBytes) {
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const readLoop = this.readLoop(timeout);
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const { value, done } = await readLoop.next();
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if (done || !value) {
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break;
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}
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// Append the newly read data to the buffer
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this.buffer = this.appendArray(this.buffer, value);
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}
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// Return as much data as possible
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const output = this.buffer.slice(0, numBytes);
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this.buffer = this.buffer.slice(numBytes);
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return output;
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}
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async flushInput() {
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var _a;
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if (this.reader && !(await this.reader.closed)) {
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await this.reader.cancel();
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this.reader.releaseLock();
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this.reader = (_a = this.device.readable) === null || _a === void 0 ? void 0 : _a.getReader();
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}
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}
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async flushOutput() {
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var _a, _b;
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this.buffer = new Uint8Array(0);
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await ((_a = this.device.writable) === null || _a === void 0 ? void 0 : _a.getWriter().close());
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(_b = this.device.writable) === null || _b === void 0 ? void 0 : _b.getWriter().releaseLock();
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}
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// `inWaiting` returns the count of bytes in the buffer
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inWaiting() {
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return this.buffer.length;
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}
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/**
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* Detect if the data read from device is a Fatal or Guru meditation error.
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* @param {Uint8Array} input Data read from device
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*/
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detectPanicHandler(input) {
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const guruMeditationRegex = /G?uru Meditation Error: (?:Core \d panic'ed \(([a-zA-Z ]*)\))?/;
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const fatalExceptionRegex = /F?atal exception \(\d+\): (?:([a-zA-Z ]*)?.*epc)?/;
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const inputString = new TextDecoder("utf-8").decode(input);
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const match = inputString.match(guruMeditationRegex) || inputString.match(fatalExceptionRegex);
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if (match) {
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const cause = match[1] || match[2];
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const msg = `Guru Meditation Error detected${cause ? ` (${cause})` : ""}`;
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throw new Error(msg);
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}
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}
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/**
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* Take a data array and return the first well formed packet after
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* replacing the escape sequence. Reads at least 8 bytes.
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* @param {number} timeout Timeout read data.
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* @yields {Uint8Array} Formatted packet using SLIP escape sequences.
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*/
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async *read(timeout) {
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var _a;
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if (!this.reader) {
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this.reader = (_a = this.device.readable) === null || _a === void 0 ? void 0 : _a.getReader();
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}
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let partialPacket = null;
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let isEscaping = false;
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let successfulSlip = false;
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while (true) {
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const waitingBytes = this.inWaiting();
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const readBytes = await this.newRead(waitingBytes > 0 ? waitingBytes : 1, timeout);
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if (!readBytes || readBytes.length === 0) {
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const msg = partialPacket === null
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? successfulSlip
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? "Serial data stream stopped: Possible serial noise or corruption."
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: "No serial data received."
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: `Packet content transfer stopped`;
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this.trace(msg);
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throw new Error(msg);
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}
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this.trace(`Read ${readBytes.length} bytes: ${this.hexConvert(readBytes)}`);
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let i = 0; // Track position in readBytes
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while (i < readBytes.length) {
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const byte = readBytes[i++];
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if (partialPacket === null) {
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if (byte === this.SLIP_END) {
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partialPacket = new Uint8Array(0); // Start of a new packet
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}
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else {
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this.trace(`Read invalid data: ${this.hexConvert(readBytes)}`);
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const remainingData = await this.newRead(this.inWaiting(), timeout);
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this.trace(`Remaining data in serial buffer: ${this.hexConvert(remainingData)}`);
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this.detectPanicHandler(new Uint8Array([...readBytes, ...(remainingData || [])]));
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throw new Error(`Invalid head of packet (0x${byte.toString(16)}): Possible serial noise or corruption.`);
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}
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}
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else if (isEscaping) {
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isEscaping = false;
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if (byte === this.SLIP_ESC_END) {
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partialPacket = this.appendArray(partialPacket, new Uint8Array([this.SLIP_END]));
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}
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else if (byte === this.SLIP_ESC_ESC) {
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partialPacket = this.appendArray(partialPacket, new Uint8Array([this.SLIP_ESC]));
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}
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else {
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this.trace(`Read invalid data: ${this.hexConvert(readBytes)}`);
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const remainingData = await this.newRead(this.inWaiting(), timeout);
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this.trace(`Remaining data in serial buffer: ${this.hexConvert(remainingData)}`);
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this.detectPanicHandler(new Uint8Array([...readBytes, ...(remainingData || [])]));
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throw new Error(`Invalid SLIP escape (0xdb, 0x${byte.toString(16)})`);
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}
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}
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else if (byte === this.SLIP_ESC) {
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isEscaping = true;
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}
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else if (byte === this.SLIP_END) {
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this.trace(`Received full packet: ${this.hexConvert(partialPacket)}`);
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this.buffer = this.appendArray(this.buffer, readBytes.slice(i));
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yield partialPacket;
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partialPacket = null;
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successfulSlip = true;
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}
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else {
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partialPacket = this.appendArray(partialPacket, new Uint8Array([byte]));
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}
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}
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}
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}
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/**
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* Read from serial device without slip formatting.
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* @yields {Uint8Array} The next number in the Fibonacci sequence.
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*/
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async *rawRead() {
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if (!this.reader)
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return;
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try {
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while (true) {
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const { value, done } = await this.reader.read();
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if (done || !value)
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break;
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if (this.tracing) {
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console.log("Raw Read bytes");
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this.trace(`Read ${value.length} bytes: ${this.hexConvert(value)}`);
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}
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yield value; // Yield each data chunk
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}
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}
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catch (error) {
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console.error("Error reading from serial port:", error);
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}
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finally {
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this.buffer = new Uint8Array(0);
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}
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}
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/**
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* Send the RequestToSend (RTS) signal to given state
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* # True for EN=LOW, chip in reset and False EN=HIGH, chip out of reset
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* @param {boolean} state Boolean state to set the signal
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*/
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async setRTS(state) {
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await this.device.setSignals({ requestToSend: state });
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// # Work-around for adapters on Windows using the usbser.sys driver:
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// # generate a dummy change to DTR so that the set-control-line-state
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// # request is sent with the updated RTS state and the same DTR state
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// Referenced to esptool.py
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await this.setDTR(this._DTR_state);
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}
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/**
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* Send the dataTerminalReady (DTS) signal to given state
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* # True for IO0=LOW, chip in reset and False IO0=HIGH
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* @param {boolean} state Boolean state to set the signal
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*/
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async setDTR(state) {
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this._DTR_state = state;
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await this.device.setSignals({ dataTerminalReady: state });
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}
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/**
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* Connect to serial device using the Webserial open method.
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* @param {number} baud Number baud rate for serial connection. Default is 115200.
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* @param {typeof import("w3c-web-serial").SerialOptions} serialOptions Serial Options for WebUSB SerialPort class.
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*/
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async connect(baud = 115200, serialOptions = {}) {
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var _a;
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await this.device.open({
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baudRate: baud,
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dataBits: serialOptions === null || serialOptions === void 0 ? void 0 : serialOptions.dataBits,
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stopBits: serialOptions === null || serialOptions === void 0 ? void 0 : serialOptions.stopBits,
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bufferSize: serialOptions === null || serialOptions === void 0 ? void 0 : serialOptions.bufferSize,
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parity: serialOptions === null || serialOptions === void 0 ? void 0 : serialOptions.parity,
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flowControl: serialOptions === null || serialOptions === void 0 ? void 0 : serialOptions.flowControl,
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});
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this.baudrate = baud;
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this.reader = (_a = this.device.readable) === null || _a === void 0 ? void 0 : _a.getReader();
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}
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async sleep(ms) {
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return new Promise((resolve) => setTimeout(resolve, ms));
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}
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/**
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* Wait for a given timeout ms for serial device unlock.
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* @param {number} timeout Timeout time in milliseconds (ms) to sleep
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*/
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async waitForUnlock(timeout) {
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while ((this.device.readable && this.device.readable.locked) ||
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(this.device.writable && this.device.writable.locked)) {
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await this.sleep(timeout);
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}
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}
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/**
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* Disconnect from serial device by running SerialPort.close() after streams unlock.
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*/
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async disconnect() {
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var _a, _b;
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if ((_a = this.device.readable) === null || _a === void 0 ? void 0 : _a.locked) {
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await ((_b = this.reader) === null || _b === void 0 ? void 0 : _b.cancel());
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}
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await this.waitForUnlock(400);
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await this.device.close();
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this.reader = undefined;
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}
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}
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export { Transport };
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