2016-04-07 20:30:22 +02:00
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/// <reference path="../node_modules/pxt-core/typings/bluebird/bluebird.d.ts"/>
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/// <reference path="../node_modules/pxt-core/built/pxtsim.d.ts"/>
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2016-04-02 00:44:04 +02:00
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/// <reference path="../libs/microbit/dal.d.ts"/>
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2016-03-11 01:24:11 +01:00
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2016-04-07 21:52:02 +02:00
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namespace pxsim {
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2016-08-30 20:55:00 +02:00
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export type BBRowCol = [/*row*/string, /*column*/string];
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export type BoardPin = string;
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export interface BBLoc {type: "breadboard", rowCol: BBRowCol};
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export interface BoardLoc {type: "dalboard", pin: BoardPin};
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export type Loc = BBLoc | BoardLoc;
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2016-04-14 16:39:24 +02:00
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2016-08-30 20:55:00 +02:00
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export function initRuntimeWithDalBoard() {
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U.assert(!runtime.board);
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let b = new DalBoard();
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runtime.board = b;
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2016-06-25 20:40:21 +02:00
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}
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2016-08-30 20:55:00 +02:00
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if (!pxsim.initCurrentRuntime) {
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pxsim.initCurrentRuntime = initRuntimeWithDalBoard;
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2016-06-25 20:40:21 +02:00
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}
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2016-08-30 20:55:00 +02:00
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export function board() {
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return runtime.board as DalBoard;
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2016-04-03 05:44:29 +02:00
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}
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2016-08-30 20:55:00 +02:00
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export function mkRange(a: number, b: number): number[] {
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let res: number[] = [];
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for (; a < b; a++)
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res.push(a);
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return res;
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2016-04-03 05:44:29 +02:00
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}
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2016-08-30 20:55:00 +02:00
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export function parseQueryString(): (key: string) => string {
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let qs = window.location.search.substring(1);
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let getQsVal = (key: string) => decodeURIComponent((qs.split(`${key}=`)[1] || "").split("&")[0] || "").replace(/\+/g, " ");
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return getQsVal;
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2016-06-14 22:53:05 +02:00
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}
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2016-06-14 22:24:55 +02:00
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}
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2016-08-30 20:55:00 +02:00
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namespace pxsim.visuals {
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export interface IPointerEvents {
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up: string,
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down: string,
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move: string,
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leave: string
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}
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export const pointerEvents: IPointerEvents = !!(window as any).PointerEvent ? {
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up: "pointerup",
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down: "pointerdown",
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move: "pointermove",
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leave: "pointerleave"
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} : {
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up: "mouseup",
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down: "mousedown",
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move: "mousemove",
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leave: "mouseleave"
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};
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2016-05-05 08:31:55 +02:00
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2016-08-30 20:55:00 +02:00
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export function translateEl(el: SVGElement, xy: [number, number]) {
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//TODO append translation instead of replacing the full transform
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svg.hydrate(el, {transform: `translate(${xy[0]} ${xy[1]})`});
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}
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export interface ComposeOpts {
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el1: SVGAndSize<SVGSVGElement>,
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scaleUnit1: number,
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el2: SVGAndSize<SVGSVGElement>,
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scaleUnit2: number,
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margin: [number, number, number, number],
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middleMargin: number,
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2016-08-31 00:33:57 +02:00
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maxWidth?: string,
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maxHeight?: string,
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2016-08-30 20:55:00 +02:00
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}
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export interface ComposeResult {
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host: SVGSVGElement,
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scaleUnit: number,
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under: SVGGElement,
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over: SVGGElement,
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edges: number[],
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toHostCoord1: (xy: Coord) => Coord,
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toHostCoord2: (xy: Coord) => Coord,
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}
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export function composeSVG(opts: ComposeOpts): ComposeResult {
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let [a, b] = [opts.el1, opts.el2];
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U.assert(a.x == 0 && a.y == 0 && b.x == 0 && b.y == 0, "el1 and el2 x,y offsets not supported");
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let setXY = (e: SVGSVGElement, x: number, y: number) => svg.hydrate(e, {x: x, y: y});
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2016-08-31 20:34:49 +02:00
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let setWH = (e: SVGSVGElement, w: string, h: string) => {
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if (w)
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svg.hydrate(e, {width: w});
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if (h)
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svg.hydrate(e, {height: h});
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}
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2016-08-31 00:33:57 +02:00
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let setWHpx = (e: SVGSVGElement, w: number, h: number) => svg.hydrate(e, {width: `${w}px`, height: `${h}px`});
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2016-08-30 20:55:00 +02:00
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let scaleUnit = opts.scaleUnit2;
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let aScalar = opts.scaleUnit2 / opts.scaleUnit1;
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let bScalar = 1.0;
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let aw = a.w * aScalar;
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let ah = a.h * aScalar;
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2016-08-31 00:33:57 +02:00
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setWHpx(a.el, aw, ah);
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2016-08-30 20:55:00 +02:00
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let bw = b.w * bScalar;
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let bh = b.h * bScalar;
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2016-08-31 00:33:57 +02:00
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setWHpx(b.el, bw, bh);
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2016-08-30 20:55:00 +02:00
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let [mt, mr, mb, ml] = opts.margin;
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let mm = opts.middleMargin;
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let innerW = Math.max(aw, bw);
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let ax = mr + (innerW - aw) / 2.0;
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let ay = mt;
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setXY(a.el, ax, ay);
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let bx = mr + (innerW - bw) / 2.0;
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let by = ay + ah + mm;
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setXY(b.el, bx, by);
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let edges = [ay, ay + ah, by, by + bh];
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let w = mr + innerW + ml;
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let h = mt + ah + mm + bh + mb;
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let host = <SVGSVGElement>svg.elt("svg", {
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"version": "1.0",
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"viewBox": `0 0 ${w} ${h}`,
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"class": `sim-bb`,
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});
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2016-08-31 20:34:49 +02:00
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setWH(host, opts.maxWidth, opts.maxHeight);
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2016-08-30 20:55:00 +02:00
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setXY(host, 0, 0);
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let under = <SVGGElement>svg.child(host, "g");
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host.appendChild(a.el);
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host.appendChild(b.el);
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let over = <SVGGElement>svg.child(host, "g");
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let toHostCoord1 = (xy: Coord): Coord => {
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let [x, y] = xy;
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return [x * aScalar + ax, y * aScalar + ay];
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};
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let toHostCoord2 = (xy: Coord): Coord => {
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let [x, y] = xy;
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return [x * bScalar + bx, y * bScalar + by];
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};
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return {
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under: under,
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over: over,
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host: host,
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edges: edges,
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scaleUnit: scaleUnit,
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toHostCoord1: toHostCoord1,
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toHostCoord2: toHostCoord2,
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};
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}
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export type Coord = [number, number];
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export function findDistSqrd(a: Coord, b: Coord): number {
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let x = a[0] - b[0];
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let y = a[1] - b[1];
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return x * x + y * y;
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}
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export function findClosestCoordIdx(a: Coord, bs: Coord[]): number {
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let dists = bs.map(b => findDistSqrd(a, b));
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let minIdx = dists.reduce((prevIdx, currDist, currIdx, arr) => {
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return currDist < arr[prevIdx] ? currIdx : prevIdx;
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}, 0);
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return minIdx;
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}
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export interface IBoardComponent<T> {
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style: string,
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element: SVGElement,
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defs: SVGElement[],
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init(bus: EventBus, state: T, svgEl: SVGSVGElement, gpioPins: string[], otherArgs: string[]): void, //NOTE: constructors not supported in interfaces
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moveToCoord(xy: Coord): void,
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updateState(): void,
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updateTheme(): void,
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}
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export function mkTxt(cx: number, cy: number, size: number, rot: number, txt: string, txtXOffFactor?: number, txtYOffFactor?: number): SVGTextElement {
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let el = <SVGTextElement>svg.elt("text")
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//HACK: these constants (txtXOffFactor, txtYOffFactor) tweak the way this algorithm knows how to center the text
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txtXOffFactor = txtXOffFactor || -0.33333;
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txtYOffFactor = txtYOffFactor || 0.3;
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const xOff = txtXOffFactor * size * txt.length;
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const yOff = txtYOffFactor * size;
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svg.hydrate(el, {style: `font-size:${size}px;`,
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transform: `translate(${cx} ${cy}) rotate(${rot}) translate(${xOff} ${yOff})` });
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svg.addClass(el, "noselect");
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el.textContent = txt;
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return el;
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}
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export type WireColor =
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"black" | "white" | "gray" | "purple" | "blue" | "green" | "yellow" | "orange" | "red" | "brown";
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export const WIRE_COLOR_MAP: Map<string> = {
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black: "#514f4d",
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white: "#fcfdfc",
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gray: "#acabab",
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purple: "#a772a1",
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blue: "#01a6e8",
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green: "#3cce73",
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yellow: "#ece600",
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orange: "#fdb262",
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red: "#f44f43",
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brown: "#c89764",
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}
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export function mapWireColor(clr: WireColor | string): string {
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return WIRE_COLOR_MAP[clr] || clr;
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}
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export interface SVGAndSize<T extends SVGElement> {
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el: T,
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y: number,
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x: number,
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w: number,
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h: number
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};
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export type SVGElAndSize = SVGAndSize<SVGElement>;
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2016-04-12 17:55:20 +02:00
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2016-08-30 20:55:00 +02:00
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export const PIN_DIST = 15;
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2016-08-30 23:13:44 +02:00
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export interface BoardView {
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getView(): SVGAndSize<SVGSVGElement>;
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getCoord(pinNm: string): Coord;
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getPinDist(): number;
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2016-08-31 20:14:16 +02:00
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highlightPin(pinNm: string): void;
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2016-08-30 23:13:44 +02:00
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}
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2016-08-30 20:55:00 +02:00
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}
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