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148 lines
6.6 KiB
148 lines
6.6 KiB
extern alias CoreDrawing;
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using System;
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using ZeroLevel.ML.DNN.Models;
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namespace ZeroLevel.ML.Services
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{
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internal sealed class ImageRegionReader
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{
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private readonly CoreDrawing.System.Drawing.Imaging.BitmapData _bitmapData;
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private readonly RegionInfo _regionInfo;
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public int TensorIndex => _regionInfo.Index;
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public int X => _regionInfo.X;
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public int Y => _regionInfo.Y;
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public ImageRegionReader(CoreDrawing.System.Drawing.Imaging.BitmapData bitmapData, RegionInfo regionInfo)
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{
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_bitmapData = bitmapData;
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_regionInfo = regionInfo;
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}
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/// <summary>
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/// dx, dy, r, g, b
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/// </summary>
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/// <param name="handler"></param>
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public void Read(Action<int, int, int, int, int> handler)
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{
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throw new NotImplementedException();
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unsafe
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{
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var cropSizeX = _regionInfo.CropSizeX;
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var cropSizeY = _regionInfo.CropSizeY;
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var right = _regionInfo.X + _regionInfo.CropSizeX;
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if (right > _bitmapData.Width)
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{
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cropSizeX = _bitmapData.Width - _regionInfo.X;
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}
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var bottom = _regionInfo.Y + _regionInfo.CropSizeY;
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if (bottom > _bitmapData.Height)
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{
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cropSizeY = _bitmapData.Height - _regionInfo.Y;
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}
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byte* scan0 = (byte*)_bitmapData.Scan0.ToPointer();
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for (var dy = 0; dy < cropSizeY; dy++)
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{
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byte* row = scan0 + (_regionInfo.Y + dy + 0) * _regionInfo.Stride;
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for (var dx = 0; dx < cropSizeX; dx++)
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{
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int bIndex = (dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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int gIndex = bIndex + 1;
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int rIndex = bIndex + 2;
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int b = row[rIndex];
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int g = row[gIndex];
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int r = row[bIndex];
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handler.Invoke(dx, dy, r, g, b);
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}
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}
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}
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}
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public void FillTensor(TensorPoolItem tensor)
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{
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unsafe
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{
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var cropSizeX = _regionInfo.CropSizeX;
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var cropSizeY = _regionInfo.CropSizeY;
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var right = _regionInfo.X + _regionInfo.CropSizeX;
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if (right > _bitmapData.Width)
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{
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cropSizeX = _bitmapData.Width - _regionInfo.X;
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}
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var bottom = _regionInfo.Y + _regionInfo.CropSizeY;
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if (bottom > _bitmapData.Height)
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{
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cropSizeY = _bitmapData.Height - _regionInfo.Y;
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}
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byte* scan0 = (byte*)_bitmapData.Scan0.ToPointer();
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var x_l = ((int)Math.Ceiling((double)(cropSizeX / 8))) * 8;
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var y_l = ((int)Math.Ceiling((double)(cropSizeY / 8))) * 8;
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int idx;
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for (var dy = 0; dy < cropSizeY; dy++)
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{
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byte* row = scan0 + (_regionInfo.Y + dy + 0) * _regionInfo.Stride;
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for (var dx = 0; dx < x_l; dx += 8)
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{
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idx = (0 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 0, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 0, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 0, dy] = row[idx + 2];
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idx = (1 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 1, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 1, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 1, dy] = row[idx + 2];
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idx = (2 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 2, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 2, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 2, dy] = row[idx + 2];
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idx = (3 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 3, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 3, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 3, dy] = row[idx + 2];
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idx = (4 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 4, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 4, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 4, dy] = row[idx + 2];
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idx = (5 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 5, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 5, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 5, dy] = row[idx + 2];
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idx = (6 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 6, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 6, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 6, dy] = row[idx + 2];
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idx = (7 + dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx + 7, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx + 7, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx + 7, dy] = row[idx + 2];
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}
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if (x_l < cropSizeX)
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{
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for(var dx = x_l; dx <= cropSizeX; dx++)
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{
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idx = (dx + _regionInfo.X) * _regionInfo.BytesPerPixel;
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tensor.Tensor[tensor.TensorIndex, 0, dx, dy] = row[idx + 0];
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tensor.Tensor[tensor.TensorIndex, 1, dx, dy] = row[idx + 1];
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tensor.Tensor[tensor.TensorIndex, 2, dx, dy] = row[idx + 2];
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}
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}
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}
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}
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}
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}
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}
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