Merge in 9 months of work on capper branch #71
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export {};
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export {};
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export {};
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export {};
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export {};
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export {};
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export {};
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declare const execRaw: any;
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/**
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* Promisified child_process.exec
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*
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* @param cmd
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* @param arg
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* @param opts See child_process.exec node docs
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* @param {stream.Writable} opts.stdout If defined, child process stdout will be piped to it.
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* @param {stream.Writable} opts.stderr If defined, child process stderr will be piped to it.
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*
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* @returns {Promise<{ stdout: string, stderr: stderr }>}
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*/
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declare function exec(...args: string[]): Promise<unknown>;
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/**
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* Exit process with either a 0 code or other
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* specified failure code. Print message to console first.
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*
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* @param {string} msg Reason for exit
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* @param {integer} code process exit code, default 0
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**/
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declare function exit(msg: string, code?: number): void;
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export {};
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export {};
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export {};
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interface RGBA {
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r: number;
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g: number;
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b: number;
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a: number;
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}
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export default class Frame {
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static info(imagePath: string): Promise<{
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width: any;
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height: any;
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}>;
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static solidColor(width: number, height: number, color: RGBA): Promise<unknown>;
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static blend(inPath: any, color: RGBA, imagePath: string): Promise<string>;
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}
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export {};
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declare class Intval {
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private _baseUrl;
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private req;
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constructor(url: string);
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move(): Promise<unknown>;
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setDir(dir: boolean): Promise<unknown>;
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setExposure(exposure: number, cb: Function): Promise<unknown>;
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connect(cb: Function): void;
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}
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export {};
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export {};
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export {};
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/** class representing the Projector features **/
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export {};
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export {};
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export {};
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export {};
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// Arri-S Animation Motor
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include <../common.scad>;
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BarrelDiameter = 40;
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BarrelLength = 75;
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SeatDiameter = 20;
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SeatLength = 3;
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CapLength = 30;
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CapDiameter = 30;
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CapThickness = 3;
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CapCatchDiameter = 28;
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CapCatchLength = 2;
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CapCatchOffset = 24;
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CapRimDiameter = 37;
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CapRimThickness = 3;
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NotchDiameter = 2;
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NotchOffset = 3;
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DriveLength = 8;
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DriveDiameter1 = 14;
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DriveDiameter2 = 12;
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module motorBarrel () {
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$fn = 200;
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cylinder(r = BarrelDiameter / 2, r2 = (BarrelDiameter - 1) / 2, h = BarrelLength, center = true);
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}
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module motorSeat () {
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$fn = 120;
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cylinder(r = SeatDiameter / 2, h = SeatLength, center = true);
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}
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module motor () {
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motorBarrel();
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translate([0, 0, (BarrelLength / 2) + (SeatLength / 2)]) motorSeat();
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//notch
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$fn = 50;
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translate([BarrelDiameter / 2, 0, -(BarrelLength / 2) + NotchOffset]) {
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rotate([0, 90, 0]) {
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cylinder(r = NotchDiameter / 2, h = 1, center = true);
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translate([0, 0, NotchDiameter / 4]) sphere(r = NotchDiameter / 2);
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}
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}
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}
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module capBellowsAdapter () {
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$fn = 200;
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difference () {
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cylinder(r = CapDiameter / 2, h = CapLength, center = true);
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cylinder(r = (CapDiameter - CapThickness) / 2, h = CapLength + 1, center = true);
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//catch
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translate([0, 0, (CapLength / 2) - CapCatchOffset]) difference () {
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cylinder(r = (CapDiameter + 1) / 2, h = CapCatchLength, center = true);
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cylinder(r = CapCatchDiameter / 2, h = CapCatchLength + 1, center = true);
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}
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}
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translate([0, 0, (CapLength / 2) + (CapRimThickness / 2)]) {
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difference () {
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cylinder(r = CapRimDiameter / 2, h = CapRimThickness, center = true);
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cube([CapDiameter - CapThickness - 8, CapDiameter - CapThickness - 8, CapRimThickness + 1], center = true);
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}
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}
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}
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motor();
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//capBellowsAdapter();
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