2 Copyright (C) 2002 Michael Niedermayer <michaelni@gmx.at>
4 This program is free software; you can redistribute it and/or modify
5 it under the terms of the GNU General Public License as published by
6 the Free Software Foundation; either version 2 of the License, or
7 (at your option) any later version.
9 This program is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 GNU General Public License for more details.
14 You should have received a copy of the GNU General Public License
15 along with this program; if not, write to the Free Software
16 Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
32 #include "img_format.h"
35 #include "libvo/fastmemcpy.h"
36 #include "postproc/swscale.h"
40 //===========================================================================//
42 typedef struct FilterParam
{
44 float preFilterRadius
;
47 struct SwsContext
*preFilterContext
;
48 uint8_t *preFilterBuf
;
53 int colorDiffCoeff
[512];
62 /***************************************************************************/
64 //FIXME stupid code duplication
65 static void getSubSampleFactors(int *h
, int *v
, int format
){
91 static int allocStuff(FilterParam
*f
, int width
, int height
){
92 int stride
= (width
+7)&~7;
96 f
->preFilterBuf
= (uint8_t*)memalign(8, stride
*height
);
97 f
->preFilterStride
= stride
;
99 vec
= sws_getGaussianVec(f
->preFilterRadius
, f
->quality
);
100 swsF
.lumH
= swsF
.lumV
= vec
;
101 swsF
.chrH
= swsF
.chrV
= NULL
;
102 f
->preFilterContext
= sws_getContext(
103 width
, height
, IMGFMT_Y8
, width
, height
, IMGFMT_Y8
, get_sws_cpuflags(), &swsF
, NULL
, NULL
);
106 vec
= sws_getGaussianVec(f
->strength
, 5.0);
107 for(i
=0; i
<512; i
++){
109 int index
= i
-256 + vec
->length
/2;
111 if(index
<0 || index
>=vec
->length
) d
= 0.0;
112 else d
= vec
->coeff
[index
];
114 f
->colorDiffCoeff
[i
]= (int)(d
/vec
->coeff
[vec
->length
/2]*(1<<12) + 0.5);
117 vec
= sws_getGaussianVec(f
->radius
, f
->quality
);
118 f
->distWidth
= vec
->length
;
119 f
->distStride
= (vec
->length
+7)&~7;
120 f
->distCoeff
= (int32_t*)memalign(8, f
->distWidth
*f
->distStride
*sizeof(int32_t));
122 for(y
=0; y
<vec
->length
; y
++){
123 for(x
=0; x
<vec
->length
; x
++){
124 double d
= vec
->coeff
[x
] * vec
->coeff
[y
];
126 f
->distCoeff
[x
+ y
*f
->distStride
]= (int)(d
*(1<<10) + 0.5);
127 // if(y==vec->length/2)
128 // printf("%6d ", f->distCoeff[x + y*f->distStride]);
136 static int config(struct vf_instance_s
* vf
,
137 int width
, int height
, int d_width
, int d_height
,
138 unsigned int flags
, unsigned int outfmt
){
141 //asm volatile("emms\n\t");
142 allocStuff(&vf
->priv
->luma
, width
, height
);
144 getSubSampleFactors(&sw
, &sh
, outfmt
);
145 allocStuff(&vf
->priv
->chroma
, width
>>sw
, height
>>sh
);
147 return vf_next_config(vf
,width
,height
,d_width
,d_height
,flags
,outfmt
);
150 static void freeBuffers(FilterParam
*f
){
151 if(f
->preFilterContext
) sws_freeContext(f
->preFilterContext
);
152 f
->preFilterContext
=NULL
;
154 if(f
->preFilterBuf
) free(f
->preFilterBuf
);
155 f
->preFilterBuf
=NULL
;
157 if(f
->distCoeff
) free(f
->distCoeff
);
161 static void uninit(struct vf_instance_s
* vf
){
162 if(!vf
->priv
) return;
164 freeBuffers(&vf
->priv
->luma
);
165 freeBuffers(&vf
->priv
->chroma
);
171 static inline void blur(uint8_t *dst
, uint8_t *src
, int w
, int h
, int dstStride
, int srcStride
, FilterParam
*fp
){
174 const int radius
= f
.distWidth
/2;
175 uint8_t *srcArray
[3]= {src
, NULL
, NULL
};
176 uint8_t *dstArray
[3]= {f
.preFilterBuf
, NULL
, NULL
};
177 int srcStrideArray
[3]= {srcStride
, 0, 0};
178 int dstStrideArray
[3]= {f
.preFilterStride
, 0, 0};
180 // f.preFilterContext->swScale(f.preFilterContext, srcArray, srcStrideArray, 0, h, dstArray, dstStrideArray);
181 sws_scale(f
.preFilterContext
, srcArray
, srcStrideArray
, 0, h
, dstArray
, dstStrideArray
);
188 const int preVal
= f
.preFilterBuf
[x
+ y
*f
.preFilterStride
];
190 const int srcVal
= src
[x
+ y
*srcStride
];
192 dst
[x
+ y
*dstStride
]= srcVal
;
193 if(y
%32==0) dst
[x
+ y
*dstStride
]= 0;
197 if(x
>= radius
&& x
< w
- radius
){
198 for(dy
=0; dy
<radius
*2+1; dy
++){
200 int iy
= y
+dy
- radius
;
202 else if(iy
>=h
) iy
= h
-iy
-1;
204 for(dx
=0; dx
<radius
*2+1; dx
++){
205 const int ix
= x
+dx
- radius
;
208 factor
= f
.colorDiffCoeff
[256+preVal
- f
.preFilterBuf
[ix
+ iy
*f
.preFilterStride
] ]
209 *f
.distCoeff
[dx
+ dy
*f
.distStride
];
210 sum
+= src
[ix
+ iy
*srcStride
] *factor
;
215 for(dy
=0; dy
<radius
*2+1; dy
++){
217 int iy
= y
+dy
- radius
;
219 else if(iy
>=h
) iy
= h
-iy
-1;
221 for(dx
=0; dx
<radius
*2+1; dx
++){
222 int ix
= x
+dx
- radius
;
225 else if(ix
>=w
) ix
= w
-ix
-1;
227 factor
= f
.colorDiffCoeff
[256+preVal
- f
.preFilterBuf
[ix
+ iy
*f
.preFilterStride
] ]
228 *f
.distCoeff
[dx
+ dy
*f
.distStride
];
229 sum
+= src
[ix
+ iy
*srcStride
] *factor
;
234 dst
[x
+ y
*dstStride
]= (sum
+ div
/2)/div
;
239 static int put_image(struct vf_instance_s
* vf
, mp_image_t
*mpi
, double pts
){
240 int cw
= mpi
->w
>> mpi
->chroma_x_shift
;
241 int ch
= mpi
->h
>> mpi
->chroma_y_shift
;
243 mp_image_t
*dmpi
=vf_get_image(vf
->next
,mpi
->imgfmt
,
244 MP_IMGTYPE_TEMP
, MP_IMGFLAG_ACCEPT_STRIDE
,
247 assert(mpi
->flags
&MP_IMGFLAG_PLANAR
);
249 blur(dmpi
->planes
[0], mpi
->planes
[0], mpi
->w
,mpi
->h
, dmpi
->stride
[0], mpi
->stride
[0], &vf
->priv
->luma
);
250 blur(dmpi
->planes
[1], mpi
->planes
[1], cw
, ch
, dmpi
->stride
[1], mpi
->stride
[1], &vf
->priv
->chroma
);
251 blur(dmpi
->planes
[2], mpi
->planes
[2], cw
, ch
, dmpi
->stride
[2], mpi
->stride
[2], &vf
->priv
->chroma
);
253 return vf_next_put_image(vf
,dmpi
, pts
);
256 //===========================================================================//
258 static int query_format(struct vf_instance_s
* vf
, unsigned int fmt
){
268 return vf_next_query_format(vf
, fmt
);
273 static int open(vf_instance_t
*vf
, char* args
){
277 vf
->put_image
=put_image
;
278 // vf->get_image=get_image;
279 vf
->query_format
=query_format
;
281 vf
->priv
=malloc(sizeof(struct vf_priv_s
));
282 memset(vf
->priv
, 0, sizeof(struct vf_priv_s
));
284 if(args
==NULL
) return 0;
286 e
=sscanf(args
, "%f:%f:%f:%f:%f:%f",
287 &vf
->priv
->luma
.radius
,
288 &vf
->priv
->luma
.preFilterRadius
,
289 &vf
->priv
->luma
.strength
,
290 &vf
->priv
->chroma
.radius
,
291 &vf
->priv
->chroma
.preFilterRadius
,
292 &vf
->priv
->chroma
.strength
295 vf
->priv
->luma
.quality
= vf
->priv
->chroma
.quality
= 3.0;
298 vf
->priv
->chroma
.radius
= vf
->priv
->luma
.radius
;
299 vf
->priv
->chroma
.preFilterRadius
= vf
->priv
->luma
.preFilterRadius
;
300 vf
->priv
->chroma
.strength
= vf
->priv
->luma
.strength
;
304 // if(vf->priv->luma.radius < 0) return 0;
305 // if(vf->priv->chroma.radius < 0) return 0;
310 vf_info_t vf_info_sab
= {
311 "shape adaptive blur",
313 "Michael Niedermayer",
319 //===========================================================================//