Date: Mon, 28 Jul 2003 18:30:50 +0300
From: "Mike Gorchak" Subject: New test for overlays While writting QNX Photon Overlay code I've found that the existent overlay test application is not enough, it performs too artificial tests - it always moves/resizes the overlay's viewport, but in the real life that happens very rare. So I decided to write new test (commonly base on testoverlay.c code) and called it testoverlay2 :) moose.dat - raw 8 bit paletted data of the small movie. (It was a moose.gif, also included in the attachment as reference, but not needed for this test, it is just for information). I cannot find, who created this .gif, so no credits this time :) But over inet I saw this gif zillion times, so I think we do not infringing somebody rights :) --HG-- extra : convert_revision : svn%3Ac70aab31-4412-0410-b14c-859654838e24/trunk%40673
This commit is contained in:
parent
273d5357a9
commit
4135dda11f
3 changed files with 573 additions and 1 deletions
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@ -4,7 +4,7 @@ noinst_PROGRAMS = \
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testver testtypes testhread testlock testerror testsem testtimer \
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loopwave testcdrom testkeys testvidinfo checkkeys testwin graywin \
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testsprite testbitmap testalpha testgamma testpalette testwm \
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threadwin testoverlay testgl testjoystick
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threadwin testoverlay testoverlay2 testgl testjoystick
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testalpha_SOURCES = testalpha.c
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testalpha_LDADD = @MATHLIB@
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BIN
test/moose.dat
Normal file
BIN
test/moose.dat
Normal file
Binary file not shown.
572
test/testoverlay2.c
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572
test/testoverlay2.c
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@ -0,0 +1,572 @@
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/********************************************************************************
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* *
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* Test of the overlay used for moved pictures, test more closed to real life. *
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* Running trojan moose :) Coded by Mike Gorchak. *
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* *
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********************************************************************************/
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#include "SDL.h"
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#define MOOSEPIC_W 64
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#define MOOSEPIC_H 88
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#define MOOSEFRAME_SIZE (MOOSEPIC_W * MOOSEPIC_H)
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#define MOOSEFRAMES_COUNT 10
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SDL_Color MooseColors[84]={
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{ 49, 49, 49}, { 66, 24, 0}, { 66, 33, 0}, { 66, 66, 66},
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{ 66, 115, 49}, { 74, 33, 0}, { 74, 41, 16}, { 82, 33, 8},
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{ 82, 41, 8}, { 82, 49, 16}, { 82, 82, 82}, { 90, 41, 8},
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{ 90, 41, 16}, { 90, 57, 24}, { 99, 49, 16}, { 99, 66, 24},
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{ 99, 66, 33}, { 99, 74, 33}, {107, 57, 24}, {107, 82, 41},
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{115, 57, 33}, {115, 66, 33}, {115, 66, 41}, {115, 74, 0},
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{115, 90, 49}, {115, 115, 115}, {123, 82, 0}, {123, 99, 57},
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{132, 66, 41}, {132, 74, 41}, {132, 90, 8}, {132, 99, 33},
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{132, 99, 66}, {132, 107, 66}, {140, 74, 49}, {140, 99, 16},
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{140, 107, 74}, {140, 115, 74}, {148, 107, 24}, {148, 115, 82},
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{148, 123, 74}, {148, 123, 90}, {156, 115, 33}, {156, 115, 90},
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{156, 123, 82}, {156, 132, 82}, {156, 132, 99}, {156, 156, 156},
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{165, 123, 49}, {165, 123, 90}, {165, 132, 82}, {165, 132, 90},
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{165, 132, 99}, {165, 140, 90}, {173, 132, 57}, {173, 132, 99},
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{173, 140, 107}, {173, 140, 115}, {173, 148, 99}, {173, 173, 173},
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{181, 140, 74}, {181, 148, 115}, {181, 148, 123}, {181, 156, 107},
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{189, 148, 123}, {189, 156, 82}, {189, 156, 123}, {189, 156, 132},
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{189, 189, 189}, {198, 156, 123}, {198, 165, 132}, {206, 165, 99},
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{206, 165, 132}, {206, 173, 140}, {206, 206, 206}, {214, 173, 115},
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{214, 173, 140}, {222, 181, 148}, {222, 189, 132}, {222, 189, 156},
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{222, 222, 222}, {231, 198, 165}, {231, 231, 231}, {239, 206, 173}
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};
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/* All RGB2YUV conversion code and some other parts of code has been taken from testoverlay.c */
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/* NOTE: These RGB conversion functions are not intended for speed,
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only as examples.
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*/
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void RGBtoYUV(Uint8 *rgb, int *yuv, int monochrome, int luminance)
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{
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int i;
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if (monochrome)
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{
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#if 1 /* these are the two formulas that I found on the FourCC site... */
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yuv[0] = 0.299*rgb[0] + 0.587*rgb[1] + 0.114*rgb[2];
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yuv[1] = 128;
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yuv[2] = 128;
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#else
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yuv[0] = (0.257 * rgb[0]) + (0.504 * rgb[1]) + (0.098 * rgb[2]) + 16;
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yuv[1] = 128;
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yuv[2] = 128;
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#endif
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}
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else
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{
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#if 1 /* these are the two formulas that I found on the FourCC site... */
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yuv[0] = 0.299*rgb[0] + 0.587*rgb[1] + 0.114*rgb[2];
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yuv[1] = (rgb[2]-yuv[0])*0.565 + 128;
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yuv[2] = (rgb[0]-yuv[0])*0.713 + 128;
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#else
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yuv[0] = (0.257 * rgb[0]) + (0.504 * rgb[1]) + (0.098 * rgb[2]) + 16;
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yuv[1] = 128 - (0.148 * rgb[0]) - (0.291 * rgb[1]) + (0.439 * rgb[2]);
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yuv[2] = 128 + (0.439 * rgb[0]) - (0.368 * rgb[1]) - (0.071 * rgb[2]);
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#endif
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}
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if (luminance!=100)
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{
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yuv[0]=yuv[0]*luminance/100;
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if (yuv[0]>255)
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yuv[0]=255;
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}
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}
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ConvertRGBtoYV12(SDL_Surface *s, SDL_Overlay *o, int monochrome, int luminance)
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{
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int x,y;
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int yuv[3];
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Uint8 *p,*op[3];
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SDL_LockSurface(s);
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SDL_LockYUVOverlay(o);
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/* Convert */
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for(y=0; y<s->h && y<o->h; y++)
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{
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p=((Uint8 *) s->pixels)+s->pitch*y;
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op[0]=o->pixels[0]+o->pitches[0]*y;
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op[1]=o->pixels[1]+o->pitches[1]*(y/2);
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op[2]=o->pixels[2]+o->pitches[2]*(y/2);
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for(x=0; x<s->w && x<o->w; x++)
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{
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RGBtoYUV(p, yuv, monochrome, luminance);
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*(op[0]++)=yuv[0];
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if(x%2==0 && y%2==0)
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{
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*(op[1]++)=yuv[2];
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*(op[2]++)=yuv[1];
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}
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p+=s->format->BytesPerPixel;
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}
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}
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SDL_UnlockYUVOverlay(o);
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SDL_UnlockSurface(s);
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}
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ConvertRGBtoIYUV(SDL_Surface *s, SDL_Overlay *o, int monochrome, int luminance)
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{
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int x,y;
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int yuv[3];
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Uint8 *p,*op[3];
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SDL_LockSurface(s);
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SDL_LockYUVOverlay(o);
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/* Convert */
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for(y=0; y<s->h && y<o->h; y++)
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{
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p=((Uint8 *) s->pixels)+s->pitch*y;
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op[0]=o->pixels[0]+o->pitches[0]*y;
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op[1]=o->pixels[1]+o->pitches[1]*(y/2);
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op[2]=o->pixels[2]+o->pitches[2]*(y/2);
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for(x=0; x<s->w && x<o->w; x++)
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{
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RGBtoYUV(p,yuv, monochrome, luminance);
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*(op[0]++)=yuv[0];
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if(x%2==0 && y%2==0)
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{
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*(op[1]++)=yuv[1];
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*(op[2]++)=yuv[2];
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}
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p+=s->format->BytesPerPixel;
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}
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}
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SDL_UnlockYUVOverlay(o);
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SDL_UnlockSurface(s);
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}
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ConvertRGBtoUYVY(SDL_Surface *s, SDL_Overlay *o, int monochrome, int luminance)
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{
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int x,y;
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int yuv[3];
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Uint8 *p,*op;
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SDL_LockSurface(s);
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SDL_LockYUVOverlay(o);
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for(y=0; y<s->h && y<o->h; y++)
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{
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p=((Uint8 *) s->pixels)+s->pitch*y;
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op=o->pixels[0]+o->pitches[0]*y;
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for(x=0; x<s->w && x<o->w; x++)
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{
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RGBtoYUV(p, yuv, monochrome, luminance);
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if(x%2==0)
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{
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*(op++)=yuv[1];
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*(op++)=yuv[0];
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*(op++)=yuv[2];
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}
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else
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*(op++)=yuv[0];
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p+=s->format->BytesPerPixel;
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}
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}
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SDL_UnlockYUVOverlay(o);
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SDL_UnlockSurface(s);
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}
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ConvertRGBtoYVYU(SDL_Surface *s, SDL_Overlay *o, int monochrome, int luminance)
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{
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int x,y;
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int yuv[3];
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Uint8 *p,*op;
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SDL_LockSurface(s);
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SDL_LockYUVOverlay(o);
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for(y=0; y<s->h && y<o->h; y++)
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{
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p=((Uint8 *) s->pixels)+s->pitch*y;
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op=o->pixels[0]+o->pitches[0]*y;
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for(x=0; x<s->w && x<o->w; x++)
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{
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RGBtoYUV(p,yuv, monochrome, luminance);
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if(x%2==0)
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{
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*(op++)=yuv[0];
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*(op++)=yuv[2];
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op[1]=yuv[1];
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}
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else
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{
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*op=yuv[0];
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op+=2;
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}
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p+=s->format->BytesPerPixel;
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}
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}
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SDL_UnlockYUVOverlay(o);
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SDL_UnlockSurface(s);
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}
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ConvertRGBtoYUY2(SDL_Surface *s, SDL_Overlay *o, int monochrome, int luminance)
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{
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int x,y;
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int yuv[3];
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Uint8 *p,*op;
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SDL_LockSurface(s);
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SDL_LockYUVOverlay(o);
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for(y=0; y<s->h && y<o->h; y++)
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{
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p=((Uint8 *) s->pixels)+s->pitch*y;
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op=o->pixels[0]+o->pitches[0]*y;
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for(x=0; x<s->w && x<o->w; x++)
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{
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RGBtoYUV(p,yuv, monochrome, luminance);
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if(x%2==0)
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{
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*(op++)=yuv[0];
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*(op++)=yuv[1];
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op[1]=yuv[2];
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}
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else
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{
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*op=yuv[0];
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op+=2;
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}
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p+=s->format->BytesPerPixel;
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}
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}
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SDL_UnlockYUVOverlay(o);
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SDL_UnlockSurface(s);
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}
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void Draw()
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{
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}
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static void PrintUsage(char *argv0)
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{
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fprintf(stderr, "Usage: %s [arg] [arg] [arg] ...\n", argv0);
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fprintf(stderr, "Where 'arg' is one of:\n");
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fprintf(stderr, " -fps <frames per second>\n");
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fprintf(stderr, " -format <fmt> (one of the: YV12, IYUV, YUY2, UYVY, YVYU)\n");
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fprintf(stderr, " -scale <scale factor> (initial scale of the overlay)\n");
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fprintf(stderr, " -help (shows this help)\n");
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fprintf(stderr, "\n");
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fprintf(stderr, " Press ESC to exit, or SPACE to freeze the movie while application running.\n");
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fprintf(stderr, "\n");
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}
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int main(int argc, char **argv)
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{
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Uint8* RawMooseData;
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SDL_RWops* handle;
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SDL_Surface* screen;
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SDL_Surface* MooseFrame[MOOSEFRAMES_COUNT];
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SDL_Overlay* overlay;
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SDL_Rect overlayrect;
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SDL_Event event;
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Uint32 lastftick;
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int paused=0;
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int i;
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int fps=12;
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int fpsdelay;
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int overlay_format=SDL_YUY2_OVERLAY;
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int scale=5;
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while ( argc > 1 )
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{
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if (strcmp(argv[1], "-fps")== 0)
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{
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if (argv[2])
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{
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fps = atoi(argv[2]);
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if (fps==0)
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{
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fprintf(stderr, "The -fps option requires an argument [from 1 to 1000], default is 12.\n");
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return -1;
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}
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if ((fps<0) || (fps>1000))
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{
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fprintf(stderr, "The -fps option must be in range from 1 to 1000, default is 12.\n");
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return -1;
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}
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argv += 2;
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argc -= 2;
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}
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else
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{
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fprintf(stderr, "The -fps option requires an argument [from 1 to 1000], default is 12.\n");
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return -1;
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}
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} else
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if (strcmp(argv[1], "-format") == 0)
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{
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if (argv[2])
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{
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if (!strcmp(argv[2],"YV12"))
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overlay_format = SDL_YV12_OVERLAY;
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else if(!strcmp(argv[2],"IYUV"))
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overlay_format = SDL_IYUV_OVERLAY;
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else if(!strcmp(argv[2],"YUY2"))
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overlay_format = SDL_YUY2_OVERLAY;
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else if(!strcmp(argv[2],"UYVY"))
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overlay_format = SDL_UYVY_OVERLAY;
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else if(!strcmp(argv[2],"YVYU"))
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overlay_format = SDL_YVYU_OVERLAY;
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else
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{
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fprintf(stderr, "The -format option %s is not recognized, see help for info.\n", argv[2]);
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return -1;
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}
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argv += 2;
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argc -= 2;
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}
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else
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{
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fprintf(stderr, "The -format option requires an argument, default is YUY2.\n");
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return -1;
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}
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} else
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if (strcmp(argv[1], "-scale") == 0)
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{
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if (argv[2])
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{
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scale = atoi(argv[2]);
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if (scale==0)
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{
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fprintf(stderr, "The -scale option requires an argument [from 1 to 50], default is 5.\n");
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return -1;
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}
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if ((scale<0) || (scale>50))
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{
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fprintf(stderr, "The -scale option must be in range from 1 to 50, default is 5.\n");
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return -1;
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}
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argv += 2;
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argc -= 2;
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}
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else
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{
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fprintf(stderr, "The -fps option requires an argument [from 1 to 1000], default is 12.\n");
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return -1;
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}
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} else
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if ((strcmp(argv[1], "-help") == 0 ) || (strcmp(argv[1], "-h") == 0))
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{
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PrintUsage(argv[0]);
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return 0;
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} else
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{
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fprintf(stderr, "Unrecognized option: %s.\n", argv[1]);
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return -1;
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}
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break;
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}
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RawMooseData=(Uint8*)malloc(MOOSEFRAME_SIZE * MOOSEFRAMES_COUNT);
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if (RawMooseData==NULL)
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{
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fprintf(stderr, "Can't allocate memory for movie !\n");
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free(RawMooseData);
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return 1;
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}
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/* load the trojan moose images */
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handle=SDL_RWFromFile("moose.dat", "r");
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if (handle==NULL)
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{
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fprintf(stderr, "Can't find the file moose.dat !\n");
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free(RawMooseData);
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return 2;
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}
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SDL_RWread(handle, RawMooseData, MOOSEFRAME_SIZE, MOOSEFRAMES_COUNT);
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SDL_RWclose(handle);
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if (SDL_Init(SDL_INIT_VIDEO | SDL_INIT_NOPARACHUTE) < 0)
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{
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fprintf(stderr, "Couldn't initialize SDL: %s\n", SDL_GetError());
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free(RawMooseData);
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return 3;
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}
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atexit(SDL_Quit);
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/* Set 640x480 video mode */
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if ( (screen=SDL_SetVideoMode(MOOSEPIC_W*scale, MOOSEPIC_H*scale, 0, SDL_RESIZABLE | SDL_SWSURFACE)) == NULL )
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{
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fprintf(stderr, "Couldn't set video mode: %s\n", 0, SDL_GetError());
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free(RawMooseData);
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return 4;
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}
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/* Set the window manager title bar */
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SDL_WM_SetCaption("SDL test overlay: running moose", "testoverlay2");
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for (i=0; i<MOOSEFRAMES_COUNT; i++)
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{
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MooseFrame[i]=SDL_CreateRGBSurfaceFrom(RawMooseData+i*MOOSEFRAME_SIZE, MOOSEPIC_W,
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MOOSEPIC_H, 8, MOOSEPIC_W, 0, 0, 0, 0);
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if (MooseFrame[i]==NULL)
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{
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fprintf(stderr, "Couldn't create SDL_Surfaces:%s\n", 0, SDL_GetError());
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free(RawMooseData);
|
||||
return 5;
|
||||
}
|
||||
SDL_SetColors(MooseFrame[i], MooseColors, 0, 84);
|
||||
|
||||
{
|
||||
SDL_Surface *newsurf;
|
||||
SDL_PixelFormat format;
|
||||
|
||||
format.palette=NULL;
|
||||
format.BitsPerPixel=32;
|
||||
format.BytesPerPixel=4;
|
||||
#if SDL_BYTEORDER == SDL_LIL_ENDIAN
|
||||
format.Rshift=0;
|
||||
format.Gshift=8;
|
||||
format.Bshift=16;
|
||||
#else
|
||||
format.Rshift=24;
|
||||
format.Gshift=16;
|
||||
format.Bshift=8;
|
||||
#endif
|
||||
format.Ashift=0;
|
||||
format.Rmask=0xff<<format.Rshift;
|
||||
format.Gmask=0xff<<format.Gshift;
|
||||
format.Bmask=0xff<<format.Bshift;
|
||||
format.Amask=0;
|
||||
format.Rloss=0;
|
||||
format.Gloss=0;
|
||||
format.Bloss=0;
|
||||
format.Aloss=8;
|
||||
format.colorkey=0;
|
||||
format.alpha=0;
|
||||
|
||||
newsurf=SDL_ConvertSurface(MooseFrame[i], &format, SDL_SWSURFACE);
|
||||
if(!newsurf)
|
||||
{
|
||||
fprintf(stderr, "Couldn't convert picture to 32bits RGB: %s\n", SDL_GetError());
|
||||
return 6;
|
||||
}
|
||||
SDL_FreeSurface(MooseFrame[i]);
|
||||
MooseFrame[i]=newsurf;
|
||||
}
|
||||
}
|
||||
|
||||
free(RawMooseData);
|
||||
|
||||
overlay=SDL_CreateYUVOverlay(MOOSEPIC_W, MOOSEPIC_H, overlay_format, screen);
|
||||
|
||||
printf("Created %dx%dx%d %s %s overlay\n",overlay->w,overlay->h,overlay->planes,
|
||||
overlay->hw_overlay?"hardware":"software",
|
||||
overlay->format==SDL_YV12_OVERLAY?"YV12":
|
||||
overlay->format==SDL_IYUV_OVERLAY?"IYUV":
|
||||
overlay->format==SDL_YUY2_OVERLAY?"YUY2":
|
||||
overlay->format==SDL_UYVY_OVERLAY?"UYVY":
|
||||
overlay->format==SDL_YVYU_OVERLAY?"YVYU":
|
||||
"Unknown");
|
||||
|
||||
for(i=0; i<overlay->planes; i++)
|
||||
{
|
||||
printf(" plane %d: pitch=%d\n", i, overlay->pitches[i]);
|
||||
}
|
||||
|
||||
overlayrect.x=0;
|
||||
overlayrect.y=0;
|
||||
overlayrect.w=MOOSEPIC_W*scale;
|
||||
overlayrect.h=MOOSEPIC_H*scale;
|
||||
|
||||
/* set the start frame */
|
||||
i=0;
|
||||
fpsdelay=1000/fps;
|
||||
|
||||
/* Ignore key up events, they don't even get filtered */
|
||||
SDL_EventState(SDL_KEYUP, SDL_IGNORE);
|
||||
|
||||
lastftick=SDL_GetTicks();
|
||||
|
||||
/* Loop, waiting for QUIT or RESIZE */
|
||||
while (1)
|
||||
{
|
||||
if (SDL_PollEvent(&event))
|
||||
{
|
||||
switch (event.type)
|
||||
{
|
||||
case SDL_VIDEORESIZE:
|
||||
screen=SDL_SetVideoMode(event.resize.w, event.resize.h, 0, SDL_RESIZABLE | SDL_SWSURFACE);
|
||||
overlayrect.w=event.resize.w;
|
||||
overlayrect.h=event.resize.h;
|
||||
break;
|
||||
case SDL_KEYDOWN:
|
||||
if (event.key.keysym.sym == SDLK_SPACE)
|
||||
{
|
||||
paused=!paused;
|
||||
break;
|
||||
}
|
||||
if (event.key.keysym.sym != SDLK_ESCAPE)
|
||||
{
|
||||
break;
|
||||
}
|
||||
case SDL_QUIT:
|
||||
SDL_FreeYUVOverlay(overlay);
|
||||
for (i=0; i<MOOSEFRAMES_COUNT; i++)
|
||||
{
|
||||
SDL_FreeSurface(MooseFrame[i]);
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
}
|
||||
|
||||
if (!paused)
|
||||
{
|
||||
if ((SDL_GetTicks()-lastftick)>fpsdelay)
|
||||
{
|
||||
lastftick=SDL_GetTicks();
|
||||
|
||||
switch (overlay_format)
|
||||
{
|
||||
case SDL_YUY2_OVERLAY:
|
||||
ConvertRGBtoYUY2(MooseFrame[i], overlay, 0, 100);
|
||||
break;
|
||||
case SDL_YV12_OVERLAY:
|
||||
ConvertRGBtoYV12(MooseFrame[i], overlay, 0, 100);
|
||||
break;
|
||||
case SDL_UYVY_OVERLAY:
|
||||
ConvertRGBtoUYVY(MooseFrame[i], overlay, 0, 100);
|
||||
break;
|
||||
case SDL_YVYU_OVERLAY:
|
||||
ConvertRGBtoYVYU(MooseFrame[i], overlay, 0, 100);
|
||||
break;
|
||||
case SDL_IYUV_OVERLAY:
|
||||
ConvertRGBtoIYUV(MooseFrame[i], overlay, 0, 100);
|
||||
break;
|
||||
}
|
||||
|
||||
SDL_DisplayYUVOverlay(overlay, &overlayrect);
|
||||
i++;
|
||||
if (i==10)
|
||||
{
|
||||
i=0;
|
||||
}
|
||||
}
|
||||
}
|
||||
/* kind of timeslice to OS */
|
||||
SDL_Delay(1);
|
||||
}
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
Loading…
Add table
Add a link
Reference in a new issue