147 lines
5.5 KiB
C#
147 lines
5.5 KiB
C#
using System;
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using Ooui;
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using Xamarin.Forms;
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using Color = Xamarin.Forms.Color;
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namespace Samples
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{
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public class BoxViewClockSample : ISample
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{
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public string Title => "Xamarin.Forms BoxViewClock";
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public string Path => "/box-view-clock";
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BoxViewClockPage page;
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public Ooui.Element CreateElement ()
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{
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//
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// Always return the same page because the code never stops the timer
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// and we don't want to create an unlimited number of them.
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//
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if (page == null)
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page = new BoxViewClockPage ();
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return page.GetOouiElement ();
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}
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public void Publish()
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{
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UI.Publish(Path, CreateElement);
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}
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class BoxViewClockPage : ContentPage
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{
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// Structure for storing information about the three hands.
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struct HandParams
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{
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public HandParams (double width, double height, double offset) : this ()
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{
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Width = width;
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Height = height;
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Offset = offset;
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}
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public double Width { private set; get; } // fraction of radius
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public double Height { private set; get; } // ditto
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public double Offset { private set; get; } // relative to center pivot
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}
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static readonly HandParams secondParams = new HandParams (0.02, 1.1, 0.85);
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static readonly HandParams minuteParams = new HandParams (0.05, 0.8, 0.9);
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static readonly HandParams hourParams = new HandParams (0.125, 0.65, 0.9);
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BoxView[] tickMarks = new BoxView[60];
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BoxView secondHand, minuteHand, hourHand;
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public BoxViewClockPage ()
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{
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AbsoluteLayout absoluteLayout = new AbsoluteLayout ();
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// Create the tick marks (to be sized and positioned later)
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for (int i = 0; i < tickMarks.Length; i++) {
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tickMarks[i] = new BoxView {
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Color = Color.Accent
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};
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absoluteLayout.Children.Add (tickMarks[i]);
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}
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// Create the three hands.
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absoluteLayout.Children.Add (hourHand =
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new BoxView {
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Color = Color.Accent
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});
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absoluteLayout.Children.Add (minuteHand =
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new BoxView {
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Color = Color.Accent
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});
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absoluteLayout.Children.Add (secondHand =
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new BoxView {
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Color = Color.Accent
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});
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Content = absoluteLayout;
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// Attach a couple event handlers.
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Device.StartTimer (TimeSpan.FromMilliseconds (16), OnTimerTick);
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SizeChanged += OnPageSizeChanged;
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}
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void OnPageSizeChanged (object sender, EventArgs args)
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{
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// Size and position the 12 tick marks.
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Point center = new Point (this.Width / 2, this.Height / 2);
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double radius = 0.45 * Math.Min (this.Width, this.Height);
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for (int i = 0; i < tickMarks.Length; i++) {
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double size = radius / (i % 5 == 0 ? 15 : 30);
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double radians = i * 2 * Math.PI / tickMarks.Length;
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double x = center.X + radius * Math.Sin (radians) - size / 2;
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double y = center.Y - radius * Math.Cos (radians) - size / 2;
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AbsoluteLayout.SetLayoutBounds (tickMarks[i], new Rectangle (x, y, size, size));
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tickMarks[i].AnchorX = 0.51; // Anchor settings necessary for Android
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tickMarks[i].AnchorY = 0.51;
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tickMarks[i].Rotation = 180 * radians / Math.PI;
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}
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// Function for positioning and sizing hands.
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Action<BoxView, HandParams> Layout = (boxView, handParams) => {
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double width = handParams.Width * radius;
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double height = handParams.Height * radius;
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double offset = handParams.Offset;
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AbsoluteLayout.SetLayoutBounds (boxView,
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new Rectangle (center.X - 0.5 * width,
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center.Y - offset * height,
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width, height));
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boxView.AnchorX = 0.51;
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boxView.AnchorY = handParams.Offset;
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};
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Layout (secondHand, secondParams);
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Layout (minuteHand, minuteParams);
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Layout (hourHand, hourParams);
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}
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bool OnTimerTick ()
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{
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// Set rotation angles for hour and minute hands.
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DateTime dateTime = DateTime.Now;
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hourHand.Rotation = 30 * (dateTime.Hour % 12) + 0.5 * dateTime.Minute;
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minuteHand.Rotation = 6 * dateTime.Minute + 0.1 * dateTime.Second;
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// Do an animation for the second hand.
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double t = dateTime.Millisecond / 1000.0;
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if (t < 0.5) {
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t = 0.5 * Easing.SpringIn.Ease (t / 0.5);
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}
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else {
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t = 0.5 * (1 + Easing.SpringOut.Ease ((t - 0.5) / 0.5));
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}
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secondHand.Rotation = 6 * (dateTime.Second + t);
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return true;
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}
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}
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}
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}
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