mirror of
https://github.com/WinampDesktop/winamp.git
synced 2024-11-28 12:40:49 +01:00
359 lines
9.5 KiB
C++
359 lines
9.5 KiB
C++
#include "main.h"
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#include "vid_subs.h"
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#include "vid_gdi+.h"
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#include "WinampAttributes.h"
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#include "../nu/AutoWide.h"
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#include "../nsutil/image.h"
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GDIPVideoOutput gdiplusVideo;
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static void colorspace_convert(UINT inputtype, const char * inputbuf, char * output, int flip, int width, int height);
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void GDIPVideoOutput::SetupGraphics()
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{
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// create new canvas
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if (graphics) delete graphics;
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graphics = new Graphics(parent, FALSE);
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graphics->Clear(Color(0));
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HDC h = graphics->GetHDC();
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// recreate back device context
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if (graphicsback) delete graphicsback; // we must delete this before deleting backdc
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if (backdc) DeleteDC(backdc);
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backdc = CreateCompatibleDC(h);
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// make sure back device context has right size and color depth
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HBITMAP memBM = CreateCompatibleBitmap(h, winw, winh);
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SelectObject(backdc, memBM);
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DeleteObject(memBM);
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// create back graphics canvas
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graphicsback = new Graphics(backdc);
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graphicsback->Clear(Color(0));
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graphics->ReleaseHDC(h);
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// set parameters
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/* fuck it, all default for now.
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graphicsback->SetInterpolationMode(InterpolationModeBilinear);
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graphicsback->SetCompositingQuality(CompositingQualityHighSpeed);
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graphicsback->SetCompositingMode(CompositingModeSourceCopy);
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graphicsback->SetSmoothingMode(SmoothingModeNone);
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*/
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}
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GDIPVideoOutput::GDIPVideoOutput() : graphics(0), frame(0), type(0), graphicsback(0), backdc(0), w(0), h(0), flip(0), winw(0), winh(0), gdiplusToken(0), subs(0), needschange(0), parent(0), adjuster(0)
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{
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}
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GDIPVideoOutput::~GDIPVideoOutput()
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{
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}
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int GDIPVideoOutput::create(HWND parent, VideoAspectAdjuster *_adjuster, int w, int h, unsigned int type, int flipit, double aspectratio) //return 1 if ok
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{
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GdiplusStartupInput gdiplusStartupInput;
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GdiplusStartup(&gdiplusToken, &gdiplusStartupInput, NULL);
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needschange = 1;
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adjuster = _adjuster;
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needschange = 0;
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RECT r;
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GetWindowRect(parent, &r);
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winw = r.right - r.left;
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winh = r.bottom = r.top;
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this->parent = parent;
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this->flip = flipit;
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this->w = w;
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this->h = h;
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this->type = type;
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SetupGraphics();
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frame = new Bitmap(w, h, graphicsback);
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ZeroMemory(&lastrect, sizeof(RECT));
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return 1;
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}
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// TODO: verify that this works
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bool GDIPVideoOutput::FillFrame(Bitmap * frame, void *buf)
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{
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switch (type)
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{
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case VIDEO_MAKETYPE('R', 'G', '3', '2'):
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{
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BITMAPINFO info;
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info.bmiHeader.biSize = sizeof(BITMAPINFOHEADER);
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info.bmiHeader.biWidth = w;
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info.bmiHeader.biHeight = h;
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info.bmiHeader.biPlanes = 1;
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info.bmiHeader.biBitCount = 32;
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info.bmiHeader.biCompression = BI_RGB;
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info.bmiHeader.biSizeImage = 0;
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info.bmiHeader.biXPelsPerMeter = 0;
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info.bmiHeader.biYPelsPerMeter = 0;
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info.bmiHeader.biXPelsPerMeter = 0;
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info.bmiHeader.biYPelsPerMeter = 0;
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info.bmiHeader.biClrUsed = 0;
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info.bmiHeader.biClrImportant = 0;
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frame->FromBITMAPINFO(&info, buf);
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}
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return true;
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case VIDEO_MAKETYPE('R', 'G', '2', '4'):
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{
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BITMAPINFO info;
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info.bmiHeader.biSize = sizeof(BITMAPINFOHEADER);
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info.bmiHeader.biWidth = w;
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info.bmiHeader.biHeight = h;
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info.bmiHeader.biPlanes = 1;
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info.bmiHeader.biBitCount = 24;
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info.bmiHeader.biCompression = BI_RGB;
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info.bmiHeader.biSizeImage = 0;
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info.bmiHeader.biXPelsPerMeter = 0;
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info.bmiHeader.biYPelsPerMeter = 0;
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info.bmiHeader.biXPelsPerMeter = 0;
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info.bmiHeader.biYPelsPerMeter = 0;
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info.bmiHeader.biClrUsed = 0;
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info.bmiHeader.biClrImportant = 0;
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frame->FromBITMAPINFO(&info, buf);
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}
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return true;
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}
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return false;
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}
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void GDIPVideoOutput::displayFrame(const char *buf, int size, int time)
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{
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// TODO: verify that this works before uncommenting if (!FillFrame(frame, const_cast<char *>(buf)))
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{
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BitmapData d;
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d.Width = w;
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d.Height = h;
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d.PixelFormat = PixelFormat32bppRGB;
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d.Stride = 4 * w;
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d.Scan0 = 0;
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// write the frame to our bitmap object
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if (frame->LockBits(&Rect(0, 0, w, h), ImageLockModeWrite, PixelFormat32bppRGB, &d) != Ok)
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{
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needschange = 1; return;
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}
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colorspace_convert(type, buf, (char*)d.Scan0, flip, w, h);
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frame->UnlockBits(&d);
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}
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// fix aspect ratio
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RECT r = {0, 0, winw, winh};
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adjuster->adjustAspect(r);
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if (memcmp(&r, &lastrect, sizeof(RECT))) graphicsback->Clear(Color(0));
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lastrect = r;
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// draw the image
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graphicsback->DrawImage(frame, r.left, r.top, r.right - r.left, r.bottom - r.top);
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if (subs)
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{ // draw subtitles
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//graphicsback->DrawString(AutoWide(subs->text),-1,&Font(L"Arial.ttf",36),PointF(subs->xPos,subs->yPos),&SolidBrush(Color(subs->colorRed,subs->colorGreen,subs->colorBlue)));
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}
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// flip graphics and graphicsback
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HDC h = graphics->GetHDC();
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HDC b = graphicsback->GetHDC();
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BitBlt(h, r.left, r.top, r.right - r.left, r.bottom - r.top, b, r.left, r.top, SRCCOPY);
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graphicsback->ReleaseHDC(b);
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graphics->ReleaseHDC(h);
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}
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int GDIPVideoOutput::needChange()
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{
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return needschange;
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}
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void GDIPVideoOutput::close()
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{
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if (graphics) delete graphics; graphics = 0;
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if (frame) delete frame; frame = 0;
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if (graphicsback) delete graphicsback; graphicsback = 0;
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if (backdc) DeleteDC(backdc); backdc = 0;
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subs = 0;
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type = 0;
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GdiplusShutdown(gdiplusToken);
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}
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void GDIPVideoOutput::Refresh()
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{}
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void GDIPVideoOutput::timerCallback()
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{
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RECT r;
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GetWindowRect(parent, &r);
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UINT w, h;
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w = r.right - r.left;
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h = r.bottom - r.top;
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bool change = (w != winw || h != winh);
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if (change)
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{
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winw = w;
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winh = h;
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// sizes have changed, we must reset the graphics
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SetupGraphics();
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}
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}
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//mmm. ctrl+c ctrl+v.
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static void colorspace_convert(UINT type, const char * buf, char * lpSurface, int flip, int width, int height)
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{
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const int lPitch = width * 4;
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if (type == VIDEO_MAKETYPE('Y', 'V', '1', '2'))
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{
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const YV12_PLANES *planes = (YV12_PLANES *)buf;
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// convert yv12 to rgb
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const int bytes = 4;
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int i, j, y00, y01, y10, y11, u, v;
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unsigned char *pY = (unsigned char *)planes->y.baseAddr;
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unsigned char *pU = (unsigned char *)planes->u.baseAddr;
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unsigned char *pV = (unsigned char *)planes->v.baseAddr;
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unsigned char *pOut = (unsigned char*)lpSurface;
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const int rvScale = (int)(2.017 * 65536.0); //91881;
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const int gvScale = - (int)(0.392 * 65536.0); // -22553;
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const int guScale = - (int)(0.813 * 65536.0); // -46801;
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const int buScale = (int)(1.596 * 65536.0); //116129;
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const int yScale = (int)(1.164 * 65536.0); //(1.164*65536.0);
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int addOut = lPitch * 2 - width * bytes;
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int yrb = planes->y.rowBytes;
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int addL = lPitch;
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/* LIMIT: convert a 16.16 fixed-point value to a byte, with clipping. */
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#define LIMIT(x) ((x)>0xffffff?0xff: ((x)<=0xffff?0:((x)>>16)))
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if (flip)
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{
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pOut += (lPitch) * (height - 1);
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addOut = -lPitch * 2 - width * bytes;
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addL = -addL;
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}
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for (j = 0; j <= height - 2; j += 2)
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{
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for (i = 0; i <= width - 2; i += 2)
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{
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y00 = *pY - 16;
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y01 = *(pY + 1) - 16;
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y10 = *(pY + yrb) - 16;
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y11 = *(pY + yrb + 1) - 16;
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u = (*pU++) - 128;
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v = (*pV++) - 128;
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{
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int r, g, b;
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g = guScale * v + gvScale * u;
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r = buScale * v;
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b = rvScale * u;
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y00 *= yScale; y01 *= yScale;
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y10 *= yScale; y11 *= yScale;
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{
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{
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unsigned char *rgb = pOut;
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/* Write out top two pixels */
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rgb[0] = LIMIT(b + y00); rgb[1] = LIMIT(g + y00); rgb[2] = LIMIT(r + y00);
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rgb[4] = LIMIT(b + y01); rgb[5] = LIMIT(g + y01); rgb[6] = LIMIT(r + y01);
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/* Skip down to next line to write out bottom two pixels */
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rgb += addL;
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rgb[0] = LIMIT(b + y10); rgb[1] = LIMIT(g + y10); rgb[2] = LIMIT(r + y10);
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rgb[4] = LIMIT(b + y11); rgb[5] = LIMIT(g + y11); rgb[6] = LIMIT(r + y11);
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}
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}
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}
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pY += 2;
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pOut += 2 * bytes;
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}
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pY += yrb + yrb - width;
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pU += planes->u.rowBytes - width / 2;
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pV += planes->v.rowBytes - width / 2;
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pOut += addOut;
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}
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}
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else if (type == VIDEO_MAKETYPE('R', 'G', '3', '2'))
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{
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if (flip)
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nsutil_image_CopyFlipped_U8((uint8_t *)lpSurface, lPitch, (const uint8_t *)buf, width*4, width, height);
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else
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nsutil_image_Copy_U8((uint8_t *)lpSurface, lPitch, (const uint8_t *)buf, width*4, width, height);
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}
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else if (type == VIDEO_MAKETYPE('Y', 'U', 'Y', '2') || type == VIDEO_MAKETYPE('U', 'Y', 'V', 'Y'))
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{
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char *b = (char *)lpSurface;
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int l2 = lPitch;
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if (flip)
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{
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b += (height - 1) * l2;
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l2 = -l2;
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}
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{
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{
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// yuy2->rgb32 conversion
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unsigned char *src = (unsigned char *)buf;
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unsigned char *dst = (unsigned char *)lpSurface;
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int line, col; //, linewidth;
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int y, yy;
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int u, v;
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int vr, ug, vg, ub;
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unsigned char *py, *pu, *pv;
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//linewidth = width - (width >> 1);
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py = src;
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pu = src + 1;
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pv = src + 3;
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int pitchadd = lPitch - (width * 4);
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for (line = 0; line < height; line++)
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{
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for (col = 0; col < width; col++)
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{
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#undef LIMIT
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#define LIMIT(x) ( (x) > 0xffff ? 0xff : ( (x) <= 0xff ? 0 : ( (x) >> 8 ) ) )
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y = *py;
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yy = y << 8;
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u = *pu - 128;
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ug = 88 * u;
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ub = 454 * u;
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v = *pv - 128;
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vg = 183 * v;
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vr = 359 * v;
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*dst++ = LIMIT(yy + ub); // b
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*dst++ = LIMIT(yy - ug - vg); // g
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*dst++ = LIMIT(yy + vr); // r
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dst++;
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py += 2;
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if ((col & 1) == 1)
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{
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pu += 4; // skip yvy every second y
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pv += 4; // skip yuy every second y
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}
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} // ..for col
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dst += pitchadd;
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} /* ..for line */
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}
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}
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}
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else if (type == VIDEO_MAKETYPE('R', 'G', '2', '4'))
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{
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if (flip)
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nsutil_image_ConvertFlipped_RGB24_RGB32((RGB32 *)lpSurface, lPitch, (const uint8_t *)buf, width*3, width, height);
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else
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nsutil_image_Convert_RGB24_RGB32((RGB32 *)lpSurface, lPitch, (const uint8_t *)buf, width*3, width, height);
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}
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} |