478 lines
11 KiB
JavaScript
478 lines
11 KiB
JavaScript
'use strict';
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/** @module lib/mscript */
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const BLACK = '0,0,0';
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const WHITE = '255,255,255';
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const CMD = [
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'CF',
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'PF',
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'BF',
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'CB',
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'PB',
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'BB'
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];
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const ALTS = {
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'CF' : ['CAMERA FORWARD', 'CAM FORWARD'],
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'PF' : ['PROJECTOR FORWARD', 'PROJ FORWARD'],
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'BF' : ['BLACK FORWARD', 'BLACK', 'BLANK FORWARD', 'BLANK'],
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'CB' : ['CAMERA BACKWARD', 'CAM BACKWARD', 'CAMERA BACK', 'CAM BACK'],
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'PB' : ['PROJECTOR FORWARD', 'PROJ FORWARD', 'PROJECTOR BACK', 'PROJ BACK'],
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'BB' : ['BLACK BACKWARD', 'BLACK BACK', 'BLANK BACK'],
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'L ' : ['LIGHT', 'COLOR', 'LAMP'],
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'F ' : ['FADE']
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};
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/** class Mscript */
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class Mscript {
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constructor () {
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this.output = {};
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}
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/**
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* Clear the state of the script
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*/
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clear () {
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this.cam = 0;
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this.proj = 0;
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this.color = '';
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this.loops = [];
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this.rec = -1;
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this.two = '';
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this.arr = [];
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this.light = [];
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this.target = 0; //move to target using CAM # or PROJ #
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this.dist = 0;
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this.output = {};
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}
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/**
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* Main function, accepts multi-line string, parses into lines
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* and interprets the instructions from the text. Returns an array
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* of steps to be fed into the mcopy.
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*/
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interpret (text, callback) {
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this.clear()
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if (typeof text === 'undefined') {
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return this.fail('No input');
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}
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//split string into lines, each containing a command
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let lines = text.split('\n');
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for (let line of lines) {
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line = line.replace(/\t+/g, ""); //strip tabs
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line = line.trim(); //remove excess whitespace before and after command
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line = line.toUpperCase();
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this.two = line.substring(0, 2);
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if (CMD.indexOf(this.two) !== -1) {
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this.basic_cmd(line);
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} else if (line.substring(0, 4) === 'LOOP') {
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this.new_loop(line);
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} else if (line.substring(0, 2) === 'L ') {
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this.light_state(line);
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} else if (line.substring(0, 2) === 'F ') {
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this.new_loop(line, true);
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} else if (line.substring(0, 3) === 'END') {
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this.end_loop(line);
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} else if (line.substring(0, 3) === 'CAM') { //directly go to that frame (black?)
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this.move_cam(line);
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} else if (line.substring(0, 4) === 'PROJ') { //directly go to that frame
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this.move_proj(line);
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} else if (line.substring(0, 3) === 'SET') { //set that state
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this.set_state(line);
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} else if (line.substring(0, 1) === '#' || line.substring(0, 2) === '//') {
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//comments
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//ignore while parsing
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}
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}
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this.output.success = true;
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this.output.arr = this.arr; //all instructions
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this.output.light = this.light; //all light instructions
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this.output.cam = this.cam;
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this.output.proj = this.proj;
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if (typeof callback !== 'undefined') {
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//should only be invoked by running mscript.tests()
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callback(this.output);
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}
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}
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/**
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* Apply a basic two character command
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*/
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basic_cmd (line) {
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if (this.rec !== -1) {
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//hold generated arr in state loop array
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this.loops[this.rec].arr
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.push.apply(this.loops[this.rec].arr,
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this.str_to_arr(line,
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this.two));
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this.loops[this.rec].light
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.push.apply(this.loops[this.rec].light,
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this.light_to_arr(line,
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this.two));
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} else {
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this.arr.push.apply(this.arr, this.str_to_arr(line, this.two));
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this.light.push.apply(this.light, this.light_to_arr(line, this.two))
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}
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}
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/**
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* Start a new loop
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*/
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new_loop (line, fade) {
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this.rec++;
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this.loops[this.rec] = {
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arr : [],
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light : [],
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cam : 0,
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proj : 0,
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cmd : line + ''
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};
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if (fade) {
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this.fade(line);
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}
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}
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/**
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* Close the most recent loop
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*/
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end_loop (line) {
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let light_arr;
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let start;
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let end;
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let len;
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for (let x = 0; x < this.loop_count(this.loops[this.rec].cmd); x++) {
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light_arr = this.loops[this.rec].light;
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if (this.loops[this.rec].fade) {
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start = this.loops[this.rec].start;
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end = this.loops[this.rec].end;
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len = this.loops[this.rec].fade_len;
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light_arr = light_arr.map(l => {
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return this.fade_rgb(start, end, len, x);
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})
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}
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if (this.rec === 0) {
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this.arr.push.apply(this.arr, this.loops[this.rec].arr);
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this.light.push.apply(this.light, light_arr);
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} else if (this.rec >= 1) {
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this.loops[this.rec - 1].arr
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.push.apply(this.loops[this.rec - 1].arr,
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this.loops[this.rec].arr);
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this.loops[this.rec - 1].light
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.push.apply(this.loops[this.rec - 1].light,
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light_arr);
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}
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}
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this.update('END', this.loop_count(this.loops[this.rec].cmd));
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delete this.loops[this.rec];
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this.rec--;
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}
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/**
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* Move camera to explicitly-defined frame
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*/
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move_cam (line) {
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this.target = parseInt(line.split('CAM ')[1]);
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if (this.rec !== -1) {
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if (this.target > this.cam) {
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this.dist = this.target - this.cam;
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for (let x = 0; x < this.dist; x++) {
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this.loops[this.rec].arr.push('BF');
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this.loops[this.rec].light.push(BLACK);
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this.update('BF');
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}
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} else {
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this.dist = this.cam - this.target;
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for (let x = 0; x < this.dist; x++) {
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this.loops[this.rec].arr.push('BB');
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this.loops[this.rec].light.push(BLACK);
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this.update('BB');
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}
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}
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} else {
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if (target > this.cam) {
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this.dist = this.target - this.cam;
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for (let x = 0; x < this.dist; x++) {
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this.arr.push('BF');
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this.light.push(BLACK);
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this.update('BF');
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}
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} else {
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this.dist = this.cam - this.target;
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for (let x = 0; x < this.dist; x++) {
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this.arr.push('BB');
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this.light.push(BLACK);
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this.update('BB');
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}
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}
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}
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}
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/**
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* Move projector to explicitly-defined frame
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*/
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move_proj (line) {
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this.target = parseInt(line.split('PROJ ')[1]);
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if (this.rec !== -1) {
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if (this.target > this.proj) {
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this.dist = this.target - this.proj;
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for (let x = 0; x < this.dist; x++) {
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this.loops[this.rec].arr.push('PF');
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this.loops[this.rec].light.push('');
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this.update('PF');
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}
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} else {
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this.dist = this.proj - this.target;
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for (let x = 0; x < this.dist; x++) {
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this.loops[this.rec].arr.push('PB');
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this.loops[this.rec].light.push('');
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this.update('PB');
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}
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}
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} else {
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if (this.target > this.proj) {
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this.dist = this.target - this.proj;
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for (let x = 0; x < this.dist; x++) {
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this.arr.push('PF');
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this.light.push('');
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this.update('PF');
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}
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} else {
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this.dist = this.proj - this.target;
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for (let x = 0; x < this.dist; x++) {
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this.arr.push('PB');
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this.light.push('');
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this.update('PB');
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}
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}
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}
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}
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/**
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* Set the state of either the cam or projector
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*/
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set_state (line) {
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if (line.substring(0, 7) === 'SET CAM') {
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this.cam = parseInt(line.split('SET CAM')[1]);
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} else if (line.substring(0, 8) === 'SET PROJ') {
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this.proj = parseInt(line.split('SET PROJ')[1]);
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}
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}
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/**
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* Return the last loop
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*/
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last_loop () {
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return this.loops[this.loops.length - 1];
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}
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/**
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* Return the second-last loop
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*/
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parent_loop () {
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return this.loops[this.loops.length - 2];
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}
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/**
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* Extract the loop count integer from a LOOP cmd
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*/
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loop_count (str) {
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return parseInt(str.split(' ')[1]);
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}
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/**
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* Execute a fade of frame length, from color to another color
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*/
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fade (line) {
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let len = this.fade_count(line);
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let start = this.fade_start(line);
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let end = this.fade_end(line);
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this.loops[this.rec].start = start;
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this.loops[this.rec].end = end;
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this.loops[this.rec].fade = true;
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this.loops[this.rec].fade_count = 0;
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this.loops[this.rec].fade_len = len;
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}
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/**
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* Extract the fade length integer from a FADE cmd
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*/
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fade_count (str) {
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return parseInt(str.split(' ')[1]);
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}
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/**
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* Extract the start color from a string
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*/
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fade_start (str) {
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let color = str.split(' ')[2];
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return this.rgb(color.trim())
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}
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/**
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* Extract the end color from a string
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*/
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fade_end (str) {
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let color = str.split(' ')[3];
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return this.rgb(color.trim())
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}
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fade_rgb (start, end, len, x) {
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let cur = [];
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let diff;
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for (let i = 0; i < 3; i++) {
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if (x === len - 1) {
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cur[i] = end[i];
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} else if (start[i] >= end[i]) {
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diff = start[i] - end[i];
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cur[i] = start[i] - Math.round((diff / (len - 1)) * x);
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} else {
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diff = end[i] - start[i];
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cur[i] = start[i] + Math.round((diff / (len - 1)) * x);
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}
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}
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return this.rgb_str(cur);
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}
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rgb (str) {
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let rgb = str.split(',');
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return rgb.map( char => {
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return parseInt(char);
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})
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}
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rgb_str (arr) {
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return arr.join(',');
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}
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/**
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* Increase the state of a specific object, such as the camera/projector,
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* by the value defined in val
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*/
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update (cmd, val = 1) {
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if (cmd === 'END') {
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//I don't understand this loop
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for (let i = 0; i < val; i++) {
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if (this.rec === 0) {
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this.cam += this.loops[this.rec].cam;
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this.proj += this.loops[this.rec].proj;
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} else if (this.rec >= 1) {
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this.loops[this.rec - 1].cam += this.loops[this.rec].cam;
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this.loops[this.rec - 1].proj += this.loops[this.rec].proj;
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}
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}
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} else if (cmd === 'CF') {
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if (this.rec === -1) {
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this.cam += val;
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} else {
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this.loops[this.rec].cam += val;
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}
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} else if (cmd === 'CB') {
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if (this.rec === -1) {
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this.cam -= val;
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} else {
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this.loops[this.rec].cam--;
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}
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} else if (cmd === 'PF') {
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if (this.rec === -1) {
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this.proj += val;
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} else {
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this.loops[this.rec].proj += val;
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}
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} else if (cmd === 'PB') {
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if (this.rec === -1) {
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this.proj -= val;
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} else {
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this.loops[this.rec].proj--;
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}
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} else if (cmd === 'BF') {
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if (this.rec === -1) {
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this.cam += val;
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} else {
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this.loops[this.rec].cam += val;
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}
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} else if (cmd === 'BB') {
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if (this.rec === -1) {
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this.cam -= val;
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} else {
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this.loops[this.rec].cam -= val;
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}
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} else if (cmd === 'L ') {
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}
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}
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/**
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* Split string on command, extract any integers from string
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*/
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str_to_arr (str, cmd) {
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const cnt = str.split(cmd);
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let c = parseInt(cnt[1]);
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let arr = [];
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if (cnt[1] === '') {
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c = 1;
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} else {
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c = parseInt(cnt[1]);
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}
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arr = new Array(c).fill(cmd);
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this.update(cmd, c);
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return arr;
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}
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/**
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* Split a string on a command to extract data for light array
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*/
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light_to_arr (str, cmd) {
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const cnt = str.split(cmd);
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let c = parseInt(cnt[1]);
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let arr = [];
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if (cnt[1] === '') {
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c = 1;
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} else {
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c = parseInt(cnt[1]);
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}
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for (var i = 0; i < c; i++) {
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if (cmd === 'CF'
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|| cmd === 'CB') {
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arr.push(this.color);
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} else if (cmd === 'BF'
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|| cmd === 'BB') {
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arr.push(BLACK);
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} else {
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arr.push('');
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}
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}
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return arr;
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}
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/**
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* Split a string to extract an rgb color value
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*/
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light_state (str) {
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//add parsers for other color spaces
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const color = str.replace('L ', '').trim();
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this.color = color;
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}
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/**
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* Throw an error with specific message
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*/
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fail (msg) {
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throw new Error(msg);
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}
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}
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module.exports = Mscript;
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/*
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CAM # - go to camera frame #
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PROJ # - go to projector frame #
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SET CAM # - sets camera count to #
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SET PROJ # - sets projector count to #
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LOOP # - begin loop, can nest recursively, # times
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END LOOP - (or END) closes loop
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L #RGB - sets light to rgb value
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FADE
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CF - Camera forwards
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PF - Projector forwards
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BF - Black forwards
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CB - Camera backwards
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PB - Projector backwards
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BB - Black backwards
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*/ |