mirror of https://github.com/espruino/BangleApps
commit
881dcde6b3
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0.01: attempt to import
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# Orloj 
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Astronomical clock.
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Written by: [Pavel Machek](https://github.com/pavelmachek)
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The plan is to have an (analog) astronomical clock with a lot of
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information on single dial.
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It continuously displays information that can be obtained "cheaply",
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that is current time, sunset/sunrise times, battery status and
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altitude. One-second updates with useful compass can be activated by
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tapping bottom right corner.
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Display is split in three rings. Outside ring is for time-based data
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with base of one week, and for non time-based data. Black dot
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indicates day of week. Green foot indicates number of steps taken, red
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battery symbol indicates remaining charge, black thermometer symbol
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represents temperature, and black ruler symbol indicates
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altitude. Number in bottom left corner is day of month.
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In the middle ring, hour-based data are displayed. Black dot indicates
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current hour, yellow symbols indicate sunset and sunrise, and black
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symbols indicate moonset and moonrise.
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require("heatshrink").decompress(atob("mEwwkB/4A+gAXWh4YWh4BCC6vwBxoIJGBYXXHhAUCJBYXXHhAXaVBgkHC7JGMEpDvQC48ACxoXHCx5WPC8BvPC8BgwgAAFC65nQ+AvWAFSjYaiyERUQ7QYGKS4EOyguUC7h4VFoIXUIgbBWAH4A/AH4APA=="))
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const SunCalc = require("suncalc"); // from modules folder
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// ################################################################################
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let ScreenWidth = g.getWidth(), CenterX = ScreenWidth/2;
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let ScreenHeight = g.getHeight(), CenterY = ScreenHeight/2;
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let outerRadius = Math.min(CenterX,CenterY) * 0.9;
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const lat = 50.1;
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const lon = 14.45;
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const h = g.getHeight();
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const w = g.getWidth();
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const sm = 15;
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let settings, location, mode = 0;
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var altitude, temperature;
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var img_north = Graphics.createImage(`
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X
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XXX
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XXX
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X XXX
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X XXX
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X XXXX
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X XXXX
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X XXXXX
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X XXXXX
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XXXXXXXXX
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`);
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var img_sunrise = Graphics.createImage(`
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XXX
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XXXXX
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XXXXXXXXX
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`);
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var img_moonrise = Graphics.createImage(`
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XXX
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XX X
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XXXXXXXXX
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`);
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var img_altitude = Graphics.createImage(`
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X X
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X X X
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XXXXXXXXX
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X X X
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X X
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`);
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var img_temperature = Graphics.createImage(`
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XX
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XXXXXXXX
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X XX
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XXXXXXXX
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XX
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`);
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var img_battery = Graphics.createImage(`
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XXXXXXXX
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XXX X
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XXXX XX
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XXXXX X
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XXXXXXXX
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`);
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var img_step = Graphics.createImage(`
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XXX
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XX XXXXX
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XXX XXXXX
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XXX XXXXX
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XX XXXX
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`);
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var img_sun = Graphics.createImage(`
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X X
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XXX
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XXXXXXX
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XXXXXXXXX
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XXXXXXXXX
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XXXXXXXXX
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XXXXXXX
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XXX
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X X
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`);
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var img_moon = Graphics.createImage(`
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XXX
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XX XXX
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X XXXX
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X XXX
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X XXX
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X XXX
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X XXXX
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X XXX
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XXX
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`);
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let use_compass = 0;
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function draw() {
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drawBorders();
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queueDraw();
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}
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function radA(p) { return p*(Math.PI*2); }
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function radD(d) { return d*(h/2); }
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function radX(p, d) {
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let a = radA(p);
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return h/2 + Math.sin(a)*radD(d);
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}
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function radY(p, d) {
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let a = radA(p);
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return w/2 - Math.cos(a)*radD(d);
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}
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function fracHour(d) {
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let hour = d.getHours();
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let min = d.getMinutes();
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hour = hour + min/60;
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if (hour > 12)
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hour -= 12;
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return hour;
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}
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let HourHandLength = outerRadius * 0.5;
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let HourHandWidth = 2*3, halfHourHandWidth = HourHandWidth/2;
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let MinuteHandLength = outerRadius * 0.7;
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let MinuteHandWidth = 2*2, halfMinuteHandWidth = MinuteHandWidth/2;
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let SecondHandLength = outerRadius * 0.9;
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let SecondHandOffset = 6;
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let twoPi = 2*Math.PI;
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let Pi = Math.PI;
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let halfPi = Math.PI/2;
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let sin = Math.sin, cos = Math.cos;
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let HourHandPolygon = [
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-halfHourHandWidth,halfHourHandWidth,
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-halfHourHandWidth,halfHourHandWidth-HourHandLength,
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halfHourHandWidth,halfHourHandWidth-HourHandLength,
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halfHourHandWidth,halfHourHandWidth,
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];
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let MinuteHandPolygon = [
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-halfMinuteHandWidth,halfMinuteHandWidth,
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-halfMinuteHandWidth,halfMinuteHandWidth-MinuteHandLength,
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halfMinuteHandWidth,halfMinuteHandWidth-MinuteHandLength,
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halfMinuteHandWidth,halfMinuteHandWidth,
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];
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/**** drawClockFace ****/
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function drawClockFace () {
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g.setColor(g.theme.fg);
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g.setFont('Vector', 22);
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g.setFontAlign(0,-1);
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g.drawString('12', CenterX,CenterY-outerRadius);
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g.setFontAlign(1,0);
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g.drawString('3', CenterX+outerRadius,CenterY);
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g.setFontAlign(0,1);
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g.drawString('6', CenterX,CenterY+outerRadius);
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g.setFontAlign(-1,0);
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g.drawString('9', CenterX-outerRadius,CenterY);
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}
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/**** transforme polygon ****/
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let transformedPolygon = new Array(HourHandPolygon.length);
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function transformPolygon (originalPolygon, OriginX,OriginY, Phi) {
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let sPhi = sin(Phi), cPhi = cos(Phi), x,y;
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for (let i = 0, l = originalPolygon.length; i < l; i+=2) {
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x = originalPolygon[i];
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y = originalPolygon[i+1];
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transformedPolygon[i] = OriginX + x*cPhi + y*sPhi;
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transformedPolygon[i+1] = OriginY + x*sPhi - y*cPhi;
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}
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}
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/**** draw clock hands ****/
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function drawClockHands () {
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let now = new Date();
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let Hours = now.getHours() % 12;
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let Minutes = now.getMinutes();
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let Seconds = now.getSeconds();
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let HoursAngle = (Hours+(Minutes/60))/12 * twoPi - Pi;
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let MinutesAngle = (Minutes/60) * twoPi - Pi;
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let SecondsAngle = (Seconds/60) * twoPi - Pi;
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g.setColor(g.theme.fg);
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transformPolygon(HourHandPolygon, CenterX,CenterY, HoursAngle);
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g.fillPoly(transformedPolygon);
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transformPolygon(MinuteHandPolygon, CenterX,CenterY, MinutesAngle);
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g.fillPoly(transformedPolygon);
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let sPhi = Math.sin(SecondsAngle), cPhi = Math.cos(SecondsAngle);
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g.setColor(g.theme.fg2);
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g.drawLine(
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CenterX + SecondHandOffset*sPhi,
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CenterY - SecondHandOffset*cPhi,
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CenterX - SecondHandLength*sPhi,
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CenterY + SecondHandLength*cPhi
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);
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g.setFont('Vector', 22);
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g.setFontAlign(-1, 1);
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g.drawString(now.getDate(), CenterX-outerRadius,CenterY+outerRadius);
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}
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function drawTimeIcon(time, icon, options) {
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let h = fracHour(time);
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let x = radX(h/12, 0.7);
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let y = radY(h/12, 0.7);
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g.drawImage(icon, x,y, options);
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}
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function drawOutsideIcon(h, icon, options) {
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let x = radX(h, 0.95);
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let y = radY(h, 0.95);
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g.drawImage(icon, x,y, options);
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}
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function drawBorders() {
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g.reset();
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g.setColor(0);
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g.fillRect(Bangle.appRect);
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g.setColor(-1);
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g.fillCircle(w/2, h/2, h/2 - 2);
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if (0) {
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g.fillCircle(sm+1, sm+1, sm);
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g.fillCircle(sm+1, h-sm-1, sm);
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g.fillCircle(w-sm-1, h-sm-1, sm);
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g.fillCircle(h-sm-1, sm+1, sm);
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}
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g.setColor(0, 1, 0);
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g.drawCircle(h/2, w/2, radD(0.7));
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g.drawCircle(h/2, w/2, radD(0.5));
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outerRadius = radD(0.7);
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drawClockHands();
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let d = new Date();
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let hour = fracHour(d);
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let min = d.getMinutes();
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let day = d.getDay();
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day = day + hour/24;
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{
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let x = radX(hour/12, 0.7);
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let y = radY(hour/12, 0.7);
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g.setColor(0, 0, 0);
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g.fillCircle(x,y, 5);
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}
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{
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let x = radX(min/60, 0.5);
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let y = radY(min/60, 0.5);
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g.setColor(0, 0, 0);
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g.drawLine(h/2, w/2, x, y);
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}
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{
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let x = radX(hour/12, 0.3);
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let y = radY(hour/12, 0.3);
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g.setColor(0, 0, 0);
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g.drawLine(h/2, w/2, x, y);
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}
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{
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let km = 0.001 * 0.719 * Bangle.getHealthStatus("day").steps;
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let x = radX(km/12 + 0, 0.95);
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let y = radY(km/12 + 0, 0.95);
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g.setColor(0, 0.7, 0);
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g.drawImage(img_step, x,y, { scale: 2, rotate: Math.PI*0.0 } );
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}
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{
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let bat = E.getBattery();
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let x = radX(bat/100, 0.95);
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let y = radY(bat/100, 0.95);
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g.setColor(0.7, 0, 0);
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g.drawImage(img_battery, x,y, { scale: 2, rotate: Math.PI*0.0 } );
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}
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{
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d = new Date();
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sun = SunCalc.getTimes(d, lat, lon);
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g.setColor(0.5, 0.5, 0);
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print("sun", sun);
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drawTimeIcon(sun.sunset, img_sunrise, { rotate: Math.PI, scale: 2 });
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drawTimeIcon(sun.sunrise, img_sunrise, { scale: 2 });
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g.setColor(0, 0, 0);
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moon = SunCalc.getMoonTimes(d, lat, lon);
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print("moon", moon);
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drawTimeIcon(moon.set, img_moonrise, { rotate: Math.PI, scale: 2 });
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drawTimeIcon(moon.rise, img_sunrise, { scale: 2 });
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pos = SunCalc.getPosition(d, lat, lon);
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print("sun:", pos);
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if (pos.altitude > -0.1) {
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g.setColor(0.5, 0.5, 0);
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az = pos.azimuth;
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drawOutsideIcon(az / (2*Math.PI), img_sun, { scale: 2 });
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}
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pos = SunCalc.getMoonPosition(d, lat, lon);
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print("moon:", pos);
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if (pos.altitude > -0.05) {
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g.setColor(0, 0, 0);
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az = pos.azimuth;
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drawOutsideIcon(az / (2*Math.PI), img_moon, { scale: 2 });
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}
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}
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{
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Bangle.getPressure().then((x) =>
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{ altitude = x.altitude; temperature = x.temperature; },
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print);
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print(altitude, temperature);
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drawOutsideIcon(altitude / 120, img_altitude, { scale: 2 });
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drawOutsideIcon(temperature / 12, img_temperature, { scale: 2 });
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}
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if (use_compass) {
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let obj = Bangle.getCompass();
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if (obj) {
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let h = 360-obj.heading;
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let x = radX(h/360, 0.7);
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let y = radY(h/360, 0.7);
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g.setColor(0, 0, 1);
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g.drawImage(img_north, x,y, {scale:2});
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}
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}
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{
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let x = radX(day/7, 0.95);
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let y = radY(day/7, 0.95);
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g.setColor(0, 0, 0);
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g.fillCircle(x,y, 5);
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}
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}
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function drawEmpty() {
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g.reset();
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g.setColor(g.theme.bg);
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g.fillRect(Bangle.appRect);
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}
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Bangle.on('touch', function(button, xy) {
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var x = xy.x;
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var y = xy.y;
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if (y > h) y = h;
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if (y < 0) y = 0;
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if (x > w) x = w;
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if (x < 0) x = 0;
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});
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// if we get a step then we are not idle
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Bangle.on('step', s => {
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});
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// timeout used to update every minute
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var drawTimeout;
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// schedule a draw for the next minute
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function queueDraw() {
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if (drawTimeout) clearTimeout(drawTimeout);
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next = 60000;
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if (use_compass) next = 250;
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drawTimeout = setTimeout(function() {
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drawTimeout = undefined;
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draw();
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}, next - (Date.now() % next));
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}
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// Stop updates when LCD is off, restart when on
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Bangle.on('lcdPower',on=>{
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if (on) {
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draw(); // draw immediately, queue redraw
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} else { // stop draw timer
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if (drawTimeout) clearTimeout(drawTimeout);
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drawTimeout = undefined;
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}
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});
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Bangle.setUI("clockupdown", btn=> {
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if (btn<0) use_compass = 0;
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if (btn>0) use_compass = 1;
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Bangle.setCompassPower(use_compass, 'orloj');
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draw();
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});
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if (use_compass)
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Bangle.setCompassPower(true, 'orloj');
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g.clear();
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draw();
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Binary file not shown.
After Width: | Height: | Size: 756 B |
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@ -0,0 +1,14 @@
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{ "id": "orloj",
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"name": "Orloj",
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||||
"version":"0.01",
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"description": "Astronomical clock",
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"icon": "app.png",
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"readme": "README.md",
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"supports" : ["BANGLEJS2"],
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"type": "clock",
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"tags": "clock",
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"storage": [
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{"name":"orloj.app.js","url":"app.js"},
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{"name":"orloj.img","url":"app-icon.js","evaluate":true}
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||||
]
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||||
}
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Reference in New Issue