mirror of https://github.com/mpv-player/mpv
vertical cubic/linear scaling
prints some info (MMX, dstbpp, ...) mainloop rewritten git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@3345 b3059339-0415-0410-9bf9-f77b7e298cf2
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@ -8,8 +8,11 @@
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#include <inttypes.h>
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#include <string.h>
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#include <math.h>
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//#include <stdio.h> //FOR DEBUG ONLY
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#include <stdio.h>
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#include "../config.h"
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#ifdef HAVE_MALLOC_H
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#include <malloc.h>
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#endif
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#include "swscale.h"
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#include "../cpudetect.h"
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#undef MOVNTQ
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@ -24,22 +27,28 @@ int fullUVIpol=0;
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int allwaysIpol=0;
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#define RET 0xC3 //near return opcode
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//#define ASSERT(x) if(!(x)) { printf("ASSERT " #x " failed\n"); *((int*)0)=0; }
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#define ASSERT(x) ;
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/*
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NOTES
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known BUGS with known cause (no bugreports please!, but patches are welcome :) )
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horizontal MMX2 scaler reads 1-7 samples too much (might cause a sig11)
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Supported output formats BGR15 BGR16 BGR24 BGR32
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Supported output formats BGR15 BGR16 BGR24 BGR32, YV12
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BGR15 & BGR16 MMX verions support dithering
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Special versions: fast Y 1:1 scaling (no interpolation in y direction)
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TODO
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more intelligent missalignment avoidance for the horizontal scaler
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bicubic scaler
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dither in C
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change the distance of the u & v buffer
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how to differenciate between x86 an C at runtime ?! (using C for now)
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Move static / global vars into a struct so multiple scalers can be used
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write special vertical cubic upscale version
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Optimize C code (yv12 / minmax)
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*/
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#define ABS(a) ((a) > 0 ? (a) : (-(a)))
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@ -94,21 +103,35 @@ static uint64_t __attribute__((aligned(8))) temp0;
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static uint64_t __attribute__((aligned(8))) asm_yalpha1;
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static uint64_t __attribute__((aligned(8))) asm_uvalpha1;
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// temporary storage for 4 yuv lines:
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// 16bit for now (mmx likes it more compact)
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static uint16_t __attribute__((aligned(8))) pix_buf_y[4][2048];
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static uint16_t __attribute__((aligned(8))) pix_buf_uv[2][2048*2];
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static int16_t __attribute__((aligned(8))) *lumPixBuf[2000];
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static int16_t __attribute__((aligned(8))) *chrPixBuf[2000];
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static int16_t __attribute__((aligned(8))) hLumFilter[8000];
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static int16_t __attribute__((aligned(8))) hLumFilterPos[2000];
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static int16_t __attribute__((aligned(8))) hChrFilter[8000];
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static int16_t __attribute__((aligned(8))) hChrFilterPos[2000];
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static int16_t __attribute__((aligned(8))) vLumFilter[8000];
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static int16_t __attribute__((aligned(8))) vLumFilterPos[2000];
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static int16_t __attribute__((aligned(8))) vChrFilter[8000];
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static int16_t __attribute__((aligned(8))) vChrFilterPos[2000];
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// Contain simply the values from v(Lum|Chr)Filter just nicely packed for mmx
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//FIXME these are very likely too small / 8000 caused problems with 480x480
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static int16_t __attribute__((aligned(8))) lumMmxFilter[16000];
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static int16_t __attribute__((aligned(8))) chrMmxFilter[16000];
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#else
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static uint16_t pix_buf_y[4][2048];
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static uint16_t pix_buf_uv[2][2048*2];
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static int16_t *lumPixBuf[2000];
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static int16_t *chrPixBuf[2000];
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static int16_t hLumFilter[8000];
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static int16_t hLumFilterPos[2000];
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static int16_t hChrFilter[8000];
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static int16_t hChrFilterPos[2000];
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static int16_t vLumFilter[8000];
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static int16_t vLumFilterPos[2000];
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static int16_t vChrFilter[8000];
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static int16_t vChrFilterPos[2000];
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//FIXME just dummy vars
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static int16_t lumMmxFilter[1];
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static int16_t chrMmxFilter[1];
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#endif
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// clipping helper table for C implementations:
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@ -127,9 +150,19 @@ static int yuvtab_3343[256];
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static int yuvtab_0c92[256];
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static int yuvtab_1a1e[256];
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static int yuvtab_40cf[256];
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// Needed for cubic scaler to catch overflows
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static int clip_yuvtab_2568[768];
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static int clip_yuvtab_3343[768];
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static int clip_yuvtab_0c92[768];
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static int clip_yuvtab_1a1e[768];
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static int clip_yuvtab_40cf[768];
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static int hLumFilterSize;
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static int hChrFilterSize;
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static int hLumFilterSize=0;
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static int hChrFilterSize=0;
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static int vLumFilterSize=0;
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static int vChrFilterSize=0;
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static int vLumBufSize=0;
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static int vChrBufSize=0;
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int sws_flags=0;
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@ -274,15 +307,14 @@ void SwScale_YV12slice(unsigned char* srcptr[],int stride[], int srcSliceY ,
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void SwScale_Init(){
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// generating tables:
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int i;
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for(i=0;i<256;i++){
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clip_table[i]=0;
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clip_table[i+256]=i;
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clip_table[i+512]=255;
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yuvtab_2568[i]=(0x2568*(i-16))+(256<<13);
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yuvtab_3343[i]=0x3343*(i-128);
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yuvtab_0c92[i]=-0x0c92*(i-128);
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yuvtab_1a1e[i]=-0x1a1e*(i-128);
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yuvtab_40cf[i]=0x40cf*(i-128);
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for(i=0; i<768; i++){
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int c= MIN(MAX(i-256, 0), 255);
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clip_table[i]=c;
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yuvtab_2568[c]= clip_yuvtab_2568[i]=(0x2568*(c-16))+(256<<13);
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yuvtab_3343[c]= clip_yuvtab_3343[i]=0x3343*(c-128);
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yuvtab_0c92[c]= clip_yuvtab_0c92[i]=-0x0c92*(c-128);
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yuvtab_1a1e[c]= clip_yuvtab_1a1e[i]=-0x1a1e*(c-128);
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yuvtab_40cf[c]= clip_yuvtab_40cf[i]=0x40cf*(c-128);
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}
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for(i=0; i<768; i++)
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@ -295,5 +327,6 @@ void SwScale_Init(){
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clip_table15g[i]= (v<<2)&0x03E0;
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clip_table15r[i]= (v<<7)&0x7C00;
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}
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}
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@ -11,4 +11,4 @@ void SwScale_YV12slice(unsigned char* srcptr[],int stride[], int srcSliceY,
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int srcSliceH, uint8_t* dstptr[], int dststride, int dstbpp,
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int srcW, int srcH, int dstW, int dstH);
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// generating tables
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void SwScale_Init();
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void SwScale_Init();
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