XAML-Map-Control/MapControl/WinUI/ImageLoader.WinUI.cs
ClemensFischer 069072ce34 ImageLoader
2025-01-01 19:45:40 +01:00

131 lines
4.1 KiB
C#

// XAML Map Control - https://github.com/ClemensFischer/XAML-Map-Control
// Copyright © Clemens Fischer
// Licensed under the Microsoft Public License (Ms-PL)
using System;
using System.Diagnostics;
using System.IO;
using System.Runtime.InteropServices.WindowsRuntime;
using System.Threading.Tasks;
using Windows.Graphics.Imaging;
using Windows.Storage;
using Windows.Storage.Streams;
#if UWP
using Windows.UI.Xaml.Media;
using Windows.UI.Xaml.Media.Imaging;
#else
using Microsoft.UI.Xaml.Media;
using Microsoft.UI.Xaml.Media.Imaging;
#endif
namespace MapControl
{
public static partial class ImageLoader
{
public static ImageSource LoadImage(Uri uri)
{
return new BitmapImage(uri);
}
public static async Task<ImageSource> LoadImageAsync(IRandomAccessStream stream)
{
var image = new BitmapImage();
await image.SetSourceAsync(stream);
return image;
}
public static Task<ImageSource> LoadImageAsync(Stream stream)
{
return LoadImageAsync(stream.AsRandomAccessStream());
}
public static async Task<ImageSource> LoadImageAsync(string path)
{
ImageSource image = null;
path = FilePath.GetFullPath(path);
if (File.Exists(path))
{
var file = await StorageFile.GetFileFromPathAsync(path);
using (var stream = await file.OpenReadAsync())
{
image = await LoadImageAsync(stream);
}
}
return image;
}
internal static async Task<WriteableBitmap> LoadWriteableBitmapAsync(BitmapDecoder decoder)
{
var image = new WriteableBitmap((int)decoder.PixelWidth, (int)decoder.PixelHeight);
var pixelData = await decoder.GetPixelDataAsync(
BitmapPixelFormat.Bgra8, BitmapAlphaMode.Premultiplied, new BitmapTransform(),
ExifOrientationMode.IgnoreExifOrientation, ColorManagementMode.DoNotColorManage);
pixelData.DetachPixelData().CopyTo(image.PixelBuffer);
return image;
}
internal static async Task<WriteableBitmap> LoadWriteableBitmapAsync(Uri uri)
{
WriteableBitmap bitmap = null;
try
{
using (var stream = await RandomAccessStreamReference.CreateFromUri(uri).OpenReadAsync())
{
var decoder = await BitmapDecoder.CreateAsync(stream);
bitmap = await LoadWriteableBitmapAsync(decoder);
}
}
catch (Exception ex)
{
Debug.WriteLine($"{nameof(ImageLoader)}: {uri}: {ex.Message}");
}
return bitmap;
}
internal static async Task<ImageSource> LoadMergedImageAsync(Uri uri1, Uri uri2, IProgress<double> progress)
{
WriteableBitmap mergedBitmap = null;
progress?.Report(0d);
var bitmaps = await Task.WhenAll(LoadWriteableBitmapAsync(uri1), LoadWriteableBitmapAsync(uri2));
if (bitmaps.Length == 2 &&
bitmaps[0] != null &&
bitmaps[1] != null &&
bitmaps[0].PixelHeight == bitmaps[1].PixelHeight)
{
var buffer1 = bitmaps[0].PixelBuffer;
var buffer2 = bitmaps[1].PixelBuffer;
var stride1 = (uint)bitmaps[0].PixelWidth * 4;
var stride2 = (uint)bitmaps[1].PixelWidth * 4;
var stride = stride1 + stride2;
var height = bitmaps[0].PixelHeight;
mergedBitmap = new WriteableBitmap(bitmaps[0].PixelWidth + bitmaps[1].PixelWidth, height);
var buffer = mergedBitmap.PixelBuffer;
for (uint y = 0; y < height; y++)
{
buffer1.CopyTo(y * stride1, buffer, y * stride, stride1);
buffer2.CopyTo(y * stride2, buffer, y * stride + stride1, stride2);
}
}
progress?.Report(1d);
return mergedBitmap;
}
}
}