mirror of
https://github.com/hyperion-project/hyperion.ng.git
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3fd20ec5fa
- added OsxGrabber for OSX - added binary for imx6 (cubox-i) and updated install script Former-commit-id: 2c55e292c842c67e54ce36bd91e4f6303b98687a
150 lines
4.3 KiB
C++
150 lines
4.3 KiB
C++
#include "utils/ImageResampler.h"
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ImageResampler::ImageResampler() :
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_horizontalDecimation(1),
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_verticalDecimation(1),
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_cropLeft(0),
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_cropRight(0),
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_cropTop(0),
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_cropBottom(0),
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_videoMode(VIDEO_2D)
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{
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}
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ImageResampler::~ImageResampler()
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{
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}
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void ImageResampler::setHorizontalPixelDecimation(int decimator)
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{
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_horizontalDecimation = decimator;
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}
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void ImageResampler::setVerticalPixelDecimation(int decimator)
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{
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_verticalDecimation = decimator;
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}
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void ImageResampler::setCropping(int cropLeft, int cropRight, int cropTop, int cropBottom)
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{
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_cropLeft = cropLeft;
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_cropRight = cropRight;
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_cropTop = cropTop;
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_cropBottom = cropBottom;
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}
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void ImageResampler::set3D(VideoMode mode)
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{
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_videoMode = mode;
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}
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void ImageResampler::processImage(const uint8_t * data, int width, int height, int lineLength, PixelFormat pixelFormat, Image<ColorRgb> &outputImage) const
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{
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int cropLeft = _cropLeft;
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int cropRight = _cropRight;
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int cropTop = _cropTop;
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int cropBottom = _cropBottom;
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// handle 3D mode
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switch (_videoMode)
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{
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case VIDEO_3DSBS:
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cropRight = width/2;
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break;
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case VIDEO_3DTAB:
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cropBottom = height/2;
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break;
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default:
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break;
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}
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// calculate the output size
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int outputWidth = (width - cropLeft - cropRight - _horizontalDecimation/2 + _horizontalDecimation - 1) / _horizontalDecimation;
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int outputHeight = (height - cropTop - cropBottom - _verticalDecimation/2 + _verticalDecimation - 1) / _verticalDecimation;
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outputImage.resize(outputWidth, outputHeight);
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for (int yDest = 0, ySource = cropTop + _verticalDecimation/2; yDest < outputHeight; ySource += _verticalDecimation, ++yDest)
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{
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for (int xDest = 0, xSource = cropLeft + _horizontalDecimation/2; xDest < outputWidth; xSource += _horizontalDecimation, ++xDest)
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{
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ColorRgb & rgb = outputImage(xDest, yDest);
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switch (pixelFormat)
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{
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case PIXELFORMAT_UYVY:
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{
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int index = lineLength * ySource + xSource * 2;
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uint8_t y = data[index+1];
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uint8_t u = ((xSource&1) == 0) ? data[index ] : data[index-2];
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uint8_t v = ((xSource&1) == 0) ? data[index+2] : data[index ];
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yuv2rgb(y, u, v, rgb.red, rgb.green, rgb.blue);
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}
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break;
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case PIXELFORMAT_YUYV:
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{
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int index = lineLength * ySource + xSource * 2;
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uint8_t y = data[index];
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uint8_t u = ((xSource&1) == 0) ? data[index+1] : data[index-1];
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uint8_t v = ((xSource&1) == 0) ? data[index+3] : data[index+1];
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yuv2rgb(y, u, v, rgb.red, rgb.green, rgb.blue);
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}
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break;
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case PIXELFORMAT_BGR16:
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{
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int index = lineLength * ySource + xSource * 2;
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rgb.blue = (data[index] & 0x1f) << 3;
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rgb.green = (((data[index+1] & 0x7) << 3) | (data[index] & 0xE0) >> 5) << 2;
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rgb.red = (data[index+1] & 0xF8);
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}
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break;
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case PIXELFORMAT_BGR24:
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{
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int index = lineLength * ySource + xSource * 3;
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rgb.blue = data[index ];
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rgb.green = data[index+1];
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rgb.red = data[index+2];
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}
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break;
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case PIXELFORMAT_RGB32:
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{
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int index = lineLength * ySource + xSource * 4;
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rgb.red = data[index ];
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rgb.green = data[index+1];
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rgb.blue = data[index+2];
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}
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break;
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case PIXELFORMAT_BGR32:
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{
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int index = lineLength * ySource + xSource * 4;
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rgb.blue = data[index ];
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rgb.green = data[index+1];
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rgb.red = data[index+2];
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}
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break;
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case PIXELFORMAT_NO_CHANGE:
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std::cerr << "Invalid pixel format given" << std::endl;
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break;
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}
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}
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}
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}
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uint8_t ImageResampler::clamp(int x)
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{
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return (x<0) ? 0 : ((x>255) ? 255 : uint8_t(x));
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}
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void ImageResampler::yuv2rgb(uint8_t y, uint8_t u, uint8_t v, uint8_t &r, uint8_t &g, uint8_t &b)
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{
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// see: http://en.wikipedia.org/wiki/YUV#Y.27UV444_to_RGB888_conversion
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int c = y - 16;
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int d = u - 128;
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int e = v - 128;
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r = clamp((298 * c + 409 * e + 128) >> 8);
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g = clamp((298 * c - 100 * d - 208 * e + 128) >> 8);
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b = clamp((298 * c + 516 * d + 128) >> 8);
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}
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