mpv/libvo/aspect.c

134 lines
3.6 KiB
C
Raw Normal View History

/* Stuff for correct aspect scaling. */
#include "aspect.h"
#include "geometry.h"
#include "video_out.h"
//#ifndef ASPECT_TEST
#include "mp_msg.h"
#include "help_mp.h"
//#endif
//#define ASPECT_DEBUG
#if defined(ASPECT_DEBUG) || defined(ASPECT_TEST)
#include <stdio.h>
#endif
float vo_panscanrange = 1.0;
#include "video_out.h"
float force_monitor_aspect=0;
float monitor_pixel_aspect=1;
void aspect_save_orig(struct vo *vo, int orgw, int orgh)
{
#ifdef ASPECT_DEBUG
printf("aspect_save_orig %dx%d \n",orgw,orgh);
#endif
vo->aspdat.orgw = orgw;
vo->aspdat.orgh = orgh;
}
void aspect_save_prescale(struct vo *vo, int prew, int preh)
{
#ifdef ASPECT_DEBUG
printf("aspect_save_prescale %dx%d \n",prew,preh);
#endif
vo->aspdat.prew = prew;
vo->aspdat.preh = preh;
}
void aspect_save_screenres(struct vo *vo, int scrw, int scrh)
{
#ifdef ASPECT_DEBUG
printf("aspect_save_screenres %dx%d \n",scrw,scrh);
#endif
vo->aspdat.scrw = scrw;
vo->aspdat.scrh = scrh;
if (force_monitor_aspect)
vo->monitor_aspect = force_monitor_aspect;
else
vo->monitor_aspect = monitor_pixel_aspect * scrw / scrh;
}
/* aspect is called with the source resolution and the
* resolution, that the scaled image should fit into
*/
void aspect_fit(struct vo *vo, int *srcw, int *srch, int fitw, int fith)
{
struct aspect_data *aspdat = &vo->aspdat;
int tmpw;
#ifdef ASPECT_DEBUG
printf("aspect(0) fitin: %dx%d screenaspect: %.2f\n",aspdat->scrw,aspdat->scrh,
monitor_aspect);
printf("aspect(1) wh: %dx%d (org: %dx%d)\n",*srcw,*srch,aspdat->prew,aspdat->preh);
#endif
*srcw = fitw;
*srch = (int)(((float)fitw / (float)aspdat->prew * (float)aspdat->preh)
* ((float)aspdat->scrh / ((float)aspdat->scrw / vo->monitor_aspect)));
*srch+= *srch%2; // round
#ifdef ASPECT_DEBUG
printf("aspect(2) wh: %dx%d (org: %dx%d)\n",*srcw,*srch,aspdat->prew,aspdat->preh);
#endif
if(*srch>aspdat->scrh || *srch<aspdat->orgh){
tmpw = (int)(((float)fith / (float)aspdat->preh * (float)aspdat->prew)
* ((float)aspdat->scrw / ((float)aspdat->scrh / (1.0/vo->monitor_aspect))));
tmpw+= tmpw%2; // round
if(tmpw<=aspdat->scrw /*&& tmpw>=aspdat->orgw*/){
*srch = fith;
*srcw = tmpw;
}else{
#ifndef ASPECT_TEST
mp_msg(MSGT_VO,MSGL_WARN,MSGTR_LIBVO_ASPECT_NoSuitableNewResFound);
#else
mp_msg(MSGT_VO,MSGL_WARN,MSGTR_LIBVO_ASPECT_NoNewSizeFoundThatFitsIntoRes);
#endif
}
}
aspdat->asp=*srcw / (float)*srch;
#ifdef ASPECT_DEBUG
printf("aspect(3) wh: %dx%d (org: %dx%d)\n",*srcw,*srch,aspdat->prew,aspdat->preh);
#endif
}
void aspect(struct vo *vo, int *srcw, int *srch, int zoom){
int fitw = zoom ? vo->aspdat.scrw : vo->aspdat.prew;
int fith = zoom ? vo->aspdat.scrh : vo->aspdat.preh;
if( !zoom && geometry_wh_changed ) {
#ifdef ASPECT_DEBUG
printf("aspect(0) no aspect forced!\n");
#endif
return; // the user doesn't want to fix aspect
}
aspect_fit(vo, srcw, srch, fitw, fith);
}
void panscan_init(struct vo *vo)
{
vo->panscan_x = 0;
vo->panscan_y = 0;
vo->panscan_amount = 0.0f;
}
void panscan_calc(struct vo *vo)
{
int fwidth,fheight;
int vo_panscan_area;
if (vo_panscanrange > 0) {
aspect(vo, &fwidth, &fheight, A_ZOOM);
vo_panscan_area = (vo->aspdat.scrh - fheight);
if (!vo_panscan_area)
vo_panscan_area = vo->aspdat.scrw - fwidth;
vo_panscan_area *= vo_panscanrange;
} else
vo_panscan_area = -vo_panscanrange * vo->aspdat.scrh;
vo->panscan_amount = vo_fs ? vo_panscan : 0;
vo->panscan_x = vo_panscan_area * vo->panscan_amount * vo->aspdat.asp;
vo->panscan_y = vo_panscan_area * vo->panscan_amount;
}