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@ -11,14 +11,13 @@ |
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//#undef HAVE_MMX
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//#undef ARCH_X86
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#define DITHER16BPP |
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#define ALT_ERROR |
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//#define ALT_ERROR
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#define RET 0xC3 //near return opcode
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/*
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NOTES |
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known BUGS with known cause (no bugreports please!) |
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line at the right (c,asm and mmx2) |
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code reads 1 sample too much (might cause a sig11) |
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TODO |
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@ -97,25 +96,24 @@ static int static_dstw; |
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static int old_dstw= -1; |
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static int old_s_xinc= -1; |
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// difference between the requested xinc and the required one for the mmx2 routine
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static int s_xinc_diff=0; |
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static int s_xinc2_diff=0; |
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#endif |
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int canMMX2BeUsed; |
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// we need that precission at least for the mmx2 code
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//s_xinc*= 256;
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s_xinc2=s_xinc>>1; |
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canMMX2BeUsed= (s_xinc <= 0x10000 && (dstw&31)==0) ? 1 : 0; |
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int canMMX2BeUsed=0; |
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static int test=0; |
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int srcWidth= (dstw*s_xinc + 0x8000)>>16; |
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#ifdef HAVE_MMX2 |
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if(canMMX2BeUsed) |
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{ |
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s_xinc+= s_xinc_diff; |
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s_xinc2+= s_xinc2_diff; |
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} |
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canMMX2BeUsed= (s_xinc <= 0x10000 && (dstw&31)==0 && (srcWidth&15)==0) ? 1 : 0; |
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#endif |
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// match pixel 0 of the src to pixel 0 of dst and match pixel n-2 of src to pixel n-2 of dst
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// n-2 is the last chrominance sample available
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// FIXME this is not perfect, but noone shuld notice the difference, the more correct variant
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// would be like the vertical one, but that would require some special code for the
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// first and last pixel
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if(canMMX2BeUsed) s_xinc+= 20; |
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else s_xinc = ((srcWidth-2)<<16)/(dstw-2) - 20; |
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s_xinc2=s_xinc>>1; |
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// force calculation of the horizontal interpolation of the first line
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s_last_ypos=-99; |
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s_last_y1pos=-99; |
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@ -185,21 +183,21 @@ canMMX2BeUsed= (s_xinc <= 0x10000 && (dstw&31)==0) ? 1 : 0; |
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"=r" (fragmentLength) |
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); |
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xpos= xx=xalpha= 0; |
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xpos= 0; //s_xinc/2 - 0x8000; // difference between pixel centers
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/* choose xinc so that all 8 parts fit exactly
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Note: we cannot use just 1 part because it would not fit in the code cache */ |
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s_xinc2_diff= -((((s_xinc2*(dstw/8))&0xFFFF))/(dstw/8))+10; |
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// s_xinc2_diff= -((((s_xinc2*(dstw/8))&0xFFFF))/(dstw/8))-10;
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// s_xinc_diff= -((((s_xinc*(dstw/8))&0xFFFF))/(dstw/8));
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#ifdef ALT_ERROR |
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s_xinc2_diff+= ((0x10000/(dstw/8))); |
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// s_xinc2_diff+= ((0x10000/(dstw/8)));
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#endif |
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s_xinc_diff= s_xinc2_diff*2; |
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// s_xinc_diff= s_xinc2_diff*2;
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s_xinc2+= s_xinc2_diff; |
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s_xinc+= s_xinc_diff; |
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// s_xinc2+= s_xinc2_diff;
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// s_xinc+= s_xinc_diff;
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old_s_xinc= s_xinc; |
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// old_s_xinc= s_xinc;
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for(i=0; i<dstw/8; i++) |
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{ |
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@ -223,8 +221,7 @@ canMMX2BeUsed= (s_xinc <= 0x10000 && (dstw&31)==0) ? 1 : 0; |
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xpos+=s_xinc; |
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} |
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xpos= xx=xalpha= 0; |
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//FIXME choose size and or xinc so that they fit exactly
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xpos= 0; //s_xinc2/2 - 0x10000; // difference between centers of chrom samples
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for(i=0; i<dstw/8; i++) |
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{ |
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int xx=xpos>>16; |
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@ -351,6 +348,7 @@ canMMX2BeUsed= (s_xinc <= 0x10000 && (dstw&31)==0) ? 1 : 0; |
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"m" ((s_xinc*4)&0xFFFF), "m" (s_xinc&0xFFFF) |
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: "%eax", "%ebx", "%ecx", "%edx", "%esi", "%edi" |
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); |
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for(i=dstw-1; (i*s_xinc)>>16 >=srcWidth-1; i--) buf1[i] = src[srcWidth-1]*128; |
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} |
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else |
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{ |
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@ -478,6 +476,11 @@ FUNNYUVCODE |
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"m" ((s_xinc2*4)&0xFFFF), "m" (s_xinc2&0xFFFF), "m" (src2) |
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: "%eax", "%ebx", "%ecx", "%edx", "%esi", "%edi" |
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); |
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for(i=dstw-1; (i*s_xinc2)>>16 >=srcWidth/2-1; i--) |
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{ |
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uvbuf1[i] = src1[srcWidth/2-1]*128; |
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uvbuf1[i+2048] = src2[srcWidth/2-1]*128; |
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} |
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} |
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else |
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{ |
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