Refactored copy arduino into library with real tests.
Optimized copy light firmware from 1000ms response times to 10ms
This commit is contained in:
parent
9990943aed
commit
2ca59c0be8
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@ -0,0 +1,123 @@
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var serialport = require('serialport'),
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SerialPort = serialport.SerialPort,
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exec = require('child_process').exec,
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mcopy = {};
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/******
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Arduino handlers
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*******/
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mcopy.arduino = {
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path : '',
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known: [
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'/dev/tty.usbmodem1a161',
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'/dev/tty.usbserial-A800f8dk',
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'/dev/tty.usbserial-A900cebm',
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'/dev/tty.usbmodem1a131',
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'/dev/tty.usbserial-a900f6de',
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'/dev/tty.usbmodem1a141'
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],
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serial : {},
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baud : 57600,
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queue : {},
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timer : 0,
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lock : false
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};
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mcopy.arduino.init = function (callback) {
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'use strict';
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console.log('Searching for devices...');
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var cmd = 'ls /dev/tty.*';
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exec(cmd, function (e, std) {
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var devices = std.split('\n'),
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matches = [];
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devices.pop();
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for (var i = 0; i < devices.length; i++) {
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if (devices[i].indexOf('usbserial') !== -1
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||devices[i].indexOf('usbmodem') !== -1){
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matches.push(devices[i]);
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}
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}
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if (matches.length === 0) {
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console.log('No devices found.');
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if (callback) { callback(false); }
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} else if (matches.length > 0) {
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console.log('Found ' + matches[0]);
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mcopy.arduino.path = matches[0];
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//once connected to the arduino
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//start user interface
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if (callback) { callback(true); }
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}
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});
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};
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//commands which respond to a sent char
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mcopy.arduino.send = function (cmd, res) {
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'use strict';
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if (!mcopy.arduino.lock) {
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mcopy.arduino.lock = true;
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mcopy.arduino.queue[cmd] = res;
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setTimeout(function () {
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mcopy.arduino.serial.write(cmd, function (err, results) {
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if (err) { console.log(err); }
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mcopy.arduino.lock = false;
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mcopy.arduino.timer = new Date().getTime();
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});
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}, mcopy.cfg.arduino.serialDelay);
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}
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};
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//send strings, after char triggers firmware to accept
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mcopy.arduino.string = function (str) {
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'use strict';
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setTimeout(function () {
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mcopy.arduino.serial.write(str, function (err, results) {
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if (err) { console.log(err); }
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//console.log('sent: ' + str);
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});
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}, mcopy.cfg.arduino.serialDelay);
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};
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//with same over serial when done
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mcopy.arduino.end = function (data) {
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'use strict';
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var end = new Date().getTime(),
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ms = end - mcopy.arduino.timer;
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if (mcopy.arduino.queue[data] !== undefined) {
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mcopy.arduino.lock = false;
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console.log('Command ' + data + ' took ' + ms + 'ms');
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mcopy.arduino.queue[data](ms);
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delete mcopy.arduino.queue[data]; //add timestamp?
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} else {
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console.log('Received stray "' + data + '" from ' + mcopy.arduino.path); //silent to user
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}
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};
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mcopy.arduino.connect = function (callback) {
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'use strict';
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console.log('Connecting to ' + mcopy.arduino.path + '...');
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mcopy.arduino.serial = new SerialPort(mcopy.arduino.path, {
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baudrate: mcopy.cfg.arduino.baud,
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parser: serialport.parsers.readline("\n")
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}, false);
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mcopy.arduino.serial.open(function (error) {
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if (error) {
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return console.log('failed to open: '+ error);
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} else {
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console.log('Opened connection with ' + mcopy.arduino.path);
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mcopy.arduino.serial.on('data', function (data) {
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data = data.replace('\r', '');
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mcopy.arduino.end(data);
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});
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setTimeout(function () {
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console.log('Verifying firmware...');
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mcopy.arduino.send(mcopy.cfg.arduino.cmd.connect, function () {
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console.log('Firmware verified');
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console.log('Optical printer ready!');
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if (callback) { callback(); }
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});
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}, 2000);
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}
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});
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};
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if (typeof module !== 'undefined') {
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module.exports = function (cfg) {
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mcopy.cfg = cfg;
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return mcopy.arduino;
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}
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}
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129
app/main.js
129
app/main.js
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@ -1,24 +1,22 @@
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'use strict';
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const electron = require('electron'),
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var electron = require('electron'),
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fs = require('fs'),
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Menu = require('menu'),
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ipcMain = require('electron').ipcMain,
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app = electron.app,
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exec = require('child_process').exec,
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BrowserWindow = electron.BrowserWindow,
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uuid = require('node-uuid'),
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serialport = require('serialport'),
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SerialPort = serialport.SerialPort,
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mcopy = {};
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let mainWindow;
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mcopy.cfg = JSON.parse(fs.readFileSync('./cfg.json', 'utf8'));
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mcopy.arduino = require('./lib/mcopy-arduino.js')(mcopy.cfg);
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var mainWindow;
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var init = function () {
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mcopy.cfg = JSON.parse(fs.readFileSync('./cfg.json', 'utf8'));
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createWindow();
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mcopy.arduino.init(function (success) {
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mcopy.arduino.connect(function () {
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mcopy.arduino.colorTest();
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//
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});
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});
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};
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@ -54,118 +52,3 @@ ipcMain.on('light', function(event, arg) {
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//
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event.returnValue = true;
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});
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/******
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Arduino handlers
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*******/
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mcopy.arduino = {
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path : '',
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known: [
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'/dev/tty.usbmodem1a161',
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'/dev/tty.usbserial-A800f8dk',
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'/dev/tty.usbserial-A900cebm',
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'/dev/tty.usbmodem1a131',
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'/dev/tty.usbserial-a900f6de',
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'/dev/tty.usbmodem1a141'
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],
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serial : {},
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baud : 57600,
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queue : {},
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timer : 0,
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lock : false
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};
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mcopy.arduino.init = function (callback) {
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console.log('Searching for devices...');
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var cmd = 'ls /dev/tty.*';
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exec(cmd, function (e, std) {
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var devices = std.split('\n'),
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matches = [];
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devices.pop();
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for (var i = 0; i < devices.length; i++) {
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if (devices[i].indexOf('usbserial') !== -1
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||devices[i].indexOf('usbmodem') !== -1){
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matches.push(devices[i]);
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}
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}
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if (matches.length === 0) {
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console.log('No devices found.');
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if (callback) { callback(false); }
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} else if (matches.length > 0) {
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console.log('Found ' + matches[0]);
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mcopy.arduino.path = matches[0];
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//once connected to the arduino
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//start user interface
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if (callback) { callback(true); }
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}
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});
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};
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//commands which respond to a sent char
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mcopy.arduino.send = function (cmd, res) {
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if (!mcopy.arduino.lock) {
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mcopy.arduino.lock = true;
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mcopy.arduino.queue[cmd] = res;
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setTimeout(function () {
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mcopy.arduino.serial.write(cmd, function (err, results) {
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if (err) { console.log(err); }
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mcopy.arduino.lock = false;
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mcopy.arduino.timer = new Date().getTime();
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});
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}, mcopy.cfg.arduino.serialDelay);
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}
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};
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//send strings, after char triggers firmware to accept
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mcopy.arduino.string = function (str) {
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setTimeout(function () {
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mcopy.arduino.serial.write(str, function (err, results) {
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if (err) { console.log(err); }
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//console.log('sent: ' + str);
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});
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}, mcopy.cfg.arduino.serialDelay);
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};
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//with same over serial when done
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mcopy.arduino.end = function (data) {
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var end = new Date().getTime(),
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ms = end - mcopy.arduino.timer;
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if (mcopy.arduino.queue[data] !== undefined) {
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mcopy.arduino.lock = false;
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console.log('Command ' + data + ' took ' + ms + 'ms');
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mcopy.arduino.queue[data](ms);
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delete mcopy.arduino.queue[data]; //add timestamp?
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} else {
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console.log('Received stray "' + data + '" from ' + mcopy.arduino.path); //silent to user
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}
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};
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mcopy.arduino.connect = function (callback) {
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console.log('Connecting to ' + mcopy.arduino.path + '...');
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mcopy.arduino.serial = new SerialPort(mcopy.arduino.path, {
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baudrate: mcopy.cfg.arduino.baud,
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parser: serialport.parsers.readline("\n")
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}, false);
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mcopy.arduino.serial.open(function (error) {
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if (error) {
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return console.log('failed to open: '+ error);
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} else {
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console.log('Opened connection with ' + mcopy.arduino.path);
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mcopy.arduino.serial.on('data', function (data) {
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data = data.replace('\r', '');
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mcopy.arduino.end(data);
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});
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setTimeout(function () {
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console.log('Verifying firmware...');
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mcopy.arduino.send(mcopy.cfg.arduino.cmd.connect, function () {
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console.log('Firmware verified');
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console.log('Optical printer ready!');
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if (callback) { callback(); }
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});
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}, 2000);
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}
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});
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};
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mcopy.arduino.colorTest = function () {
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var color = '255,140,70';
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mcopy.arduino.send(mcopy.cfg.arduino.cmd.light, function () {
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console.log('Light set to ' + color);
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});
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mcopy.arduino.string(color);
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};
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var fs = require('fs'),
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mcopy = {};
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mcopy.cfg = JSON.parse(fs.readFileSync('./cfg.json', 'utf8'));
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mcopy.arduino = require('../lib/mcopy-arduino.js')(mcopy.cfg);
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mcopy.arduino.colorTest = function (color, cb) {
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mcopy.arduino.send(mcopy.cfg.arduino.cmd.light, function () {
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console.log('Light set to ' + color);
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if (cb) setTimeout(cb, 20);
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});
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mcopy.arduino.string(color);
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};
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mcopy.arduino.init(function (success) {
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mcopy.arduino.connect(function () {
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mcopy.arduino.colorTest('255,140,70', function () {
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mcopy.arduino.colorTest('5,0,0', function () {
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mcopy.arduino.colorTest('255,255,255', function () {
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mcopy.arduino.colorTest('160,14,250', function () {
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mcopy.arduino.colorTest('5,32,200', function () {
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});//5
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});//4
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});//3
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});//2
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});//1
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});
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});
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@ -21,10 +21,12 @@ volatile int g = 0;
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volatile int b = 0;
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volatile char cmd_char = 'z';
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const int serialDelay = 5;
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void setup () {
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Serial.begin(57600);
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Serial.flush();
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Serial.setTimeout(serialDelay);
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pixieSerial.begin(115200); // Pixie REQUIRES this baud rate
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light.setPixelColor(0, 0, 0, 0);
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}
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@ -29,10 +29,12 @@ volatile int g = 0;
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volatile int b = 0;
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volatile char cmd_char = 'z';
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const int serialDelay = 5;
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void setup () {
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Serial.begin(57600);
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Serial.flush();
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Serial.setTimeout(serialDelay);
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//pixieSerial.begin(115200); // Pixie REQUIRES this baud rate
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light.begin();
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light.setPixelColor(0, 0, 0, 0);
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@ -62,6 +64,16 @@ void cmd (char val) {
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}
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}
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//takes 1004ms w/ string method
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//takes 2ms(!!!!!) w/o readString() ugh
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//WAIT!! Serial.setTimeout(1000) by default!
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//500 - WORKS
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//250 - WORKS
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//100 - WORKS
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//25? - WORKS
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//5 - WORKS - STAY HERE FOR NOW
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//got down to ~10ms, will take hours off 4000 frame roll
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//timing may also change when switching to pixie
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void colorString () {
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while (Serial.available() == 0) {
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//Wait for color string
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