FFmpeg
swscale_internal.h
Go to the documentation of this file.
1 /*
2  * Copyright (C) 2001-2011 Michael Niedermayer <michaelni@gmx.at>
3  *
4  * This file is part of FFmpeg.
5  *
6  * FFmpeg is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * FFmpeg is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with FFmpeg; if not, write to the Free Software
18  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
19  */
20 
21 #ifndef SWSCALE_SWSCALE_INTERNAL_H
22 #define SWSCALE_SWSCALE_INTERNAL_H
23 
24 #include <stdatomic.h>
25 #include <assert.h>
26 
27 #include "config.h"
28 #include "swscale.h"
29 #include "graph.h"
30 
31 #include "libavutil/avassert.h"
32 #include "libavutil/common.h"
33 #include "libavutil/frame.h"
34 #include "libavutil/intreadwrite.h"
35 #include "libavutil/log.h"
36 #include "libavutil/mem_internal.h"
37 #include "libavutil/pixfmt.h"
38 #include "libavutil/pixdesc.h"
39 #include "libavutil/slicethread.h"
40 #if HAVE_ALTIVEC
42 #endif
43 #include "libavutil/half2float.h"
44 
45 #define STR(s) AV_TOSTRING(s) // AV_STRINGIFY is too long
46 
47 #define YUVRGB_TABLE_HEADROOM 512
48 #define YUVRGB_TABLE_LUMA_HEADROOM 512
49 
50 #define MAX_FILTER_SIZE SWS_MAX_FILTER_SIZE
51 
52 #define SWS_MAX_THREADS 8192 /* sanity clamp */
53 
54 #if HAVE_BIGENDIAN
55 #define ALT32_CORR (-1)
56 #else
57 #define ALT32_CORR 1
58 #endif
59 
60 #if ARCH_X86_64
61 # define APCK_PTR2 8
62 # define APCK_COEF 16
63 # define APCK_SIZE 24
64 #else
65 # define APCK_PTR2 4
66 # define APCK_COEF 8
67 # define APCK_SIZE 16
68 #endif
69 
70 #define RETCODE_USE_CASCADE -12345
71 
72 typedef struct SwsInternal SwsInternal;
73 
74 static inline SwsInternal *sws_internal(const SwsContext *sws)
75 {
76  return (SwsInternal *) sws;
77 }
78 
79 typedef struct Range {
80  unsigned int start;
81  unsigned int len;
82 } Range;
83 
84 typedef struct RangeList {
86  unsigned int nb_ranges;
88 } RangeList;
89 
90 int ff_range_add(RangeList *r, unsigned int start, unsigned int len);
91 
92 typedef int (*SwsFunc)(SwsInternal *c, const uint8_t *const src[],
93  const int srcStride[], int srcSliceY, int srcSliceH,
94  uint8_t *const dst[], const int dstStride[]);
95 
96 typedef void (*SwsColorFunc)(const SwsInternal *c, uint8_t *dst, int dst_stride,
97  const uint8_t *src, int src_stride, int w, int h);
98 
99 typedef struct SwsLuts {
100  uint16_t *in;
101  uint16_t *out;
102 } SwsLuts;
103 
104 typedef struct SwsColorXform {
106  int16_t mat[3][3];
107 } SwsColorXform;
108 
109 /**
110  * Write one line of horizontally scaled data to planar output
111  * without any additional vertical scaling (or point-scaling).
112  *
113  * @param src scaled source data, 15 bits for 8-10-bit output,
114  * 19 bits for 16-bit output (in int32_t)
115  * @param dest pointer to the output plane. For >8-bit
116  * output, this is in uint16_t
117  * @param dstW width of destination in pixels
118  * @param dither ordered dither array of type int16_t and size 8
119  * @param offset Dither offset
120  */
121 typedef void (*yuv2planar1_fn)(const int16_t *src, uint8_t *dest, int dstW,
122  const uint8_t *dither, int offset);
123 
124 /**
125  * Write one line of horizontally scaled data to planar output
126  * with multi-point vertical scaling between input pixels.
127  *
128  * @param filter vertical luma/alpha scaling coefficients, 12 bits [0,4096]
129  * @param src scaled luma (Y) or alpha (A) source data, 15 bits for
130  * 8-10-bit output, 19 bits for 16-bit output (in int32_t)
131  * @param filterSize number of vertical input lines to scale
132  * @param dest pointer to output plane. For >8-bit
133  * output, this is in uint16_t
134  * @param dstW width of destination pixels
135  * @param offset Dither offset
136  */
137 typedef void (*yuv2planarX_fn)(const int16_t *filter, int filterSize,
138  const int16_t **src, uint8_t *dest, int dstW,
139  const uint8_t *dither, int offset);
140 
141 /**
142  * Write one line of horizontally scaled chroma to interleaved output
143  * with multi-point vertical scaling between input pixels.
144  *
145  * @param dstFormat destination pixel format
146  * @param chrDither ordered dither array of type uint8_t and size 8
147  * @param chrFilter vertical chroma scaling coefficients, 12 bits [0,4096]
148  * @param chrUSrc scaled chroma (U) source data, 15 bits for 8-10-bit
149  * output, 19 bits for 16-bit output (in int32_t)
150  * @param chrVSrc scaled chroma (V) source data, 15 bits for 8-10-bit
151  * output, 19 bits for 16-bit output (in int32_t)
152  * @param chrFilterSize number of vertical chroma input lines to scale
153  * @param dest pointer to the output plane. For >8-bit
154  * output, this is in uint16_t
155  * @param dstW width of chroma planes
156  */
157 typedef void (*yuv2interleavedX_fn)(enum AVPixelFormat dstFormat,
158  const uint8_t *chrDither,
159  const int16_t *chrFilter,
160  int chrFilterSize,
161  const int16_t **chrUSrc,
162  const int16_t **chrVSrc,
163  uint8_t *dest, int dstW);
164 
165 /**
166  * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
167  * output without any additional vertical scaling (or point-scaling). Note
168  * that this function may do chroma scaling, see the "uvalpha" argument.
169  *
170  * @param c SWS scaling context
171  * @param lumSrc scaled luma (Y) source data, 15 bits for 8-10-bit output,
172  * 19 bits for 16-bit output (in int32_t)
173  * @param chrUSrc scaled chroma (U) source data, 15 bits for 8-10-bit output,
174  * 19 bits for 16-bit output (in int32_t)
175  * @param chrVSrc scaled chroma (V) source data, 15 bits for 8-10-bit output,
176  * 19 bits for 16-bit output (in int32_t)
177  * @param alpSrc scaled alpha (A) source data, 15 bits for 8-10-bit output,
178  * 19 bits for 16-bit output (in int32_t)
179  * @param dest pointer to the output plane. For 16-bit output, this is
180  * uint16_t
181  * @param dstW width of lumSrc and alpSrc in pixels, number of pixels
182  * to write into dest[]
183  * @param uvalpha chroma scaling coefficient for the second line of chroma
184  * pixels, either 2048 or 0. If 0, one chroma input is used
185  * for 2 output pixels (or if the SWS_FLAG_FULL_CHR_INT flag
186  * is set, it generates 1 output pixel). If 2048, two chroma
187  * input pixels should be averaged for 2 output pixels (this
188  * only happens if SWS_FLAG_FULL_CHR_INT is not set)
189  * @param y vertical line number for this output. This does not need
190  * to be used to calculate the offset in the destination,
191  * but can be used to generate comfort noise using dithering
192  * for some output formats.
193  */
194 typedef void (*yuv2packed1_fn)(SwsInternal *c, const int16_t *lumSrc,
195  const int16_t *chrUSrc[2],
196  const int16_t *chrVSrc[2],
197  const int16_t *alpSrc, uint8_t *dest,
198  int dstW, int uvalpha, int y);
199 /**
200  * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
201  * output by doing bilinear scaling between two input lines.
202  *
203  * @param c SWS scaling context
204  * @param lumSrc scaled luma (Y) source data, 15 bits for 8-10-bit output,
205  * 19 bits for 16-bit output (in int32_t)
206  * @param chrUSrc scaled chroma (U) source data, 15 bits for 8-10-bit output,
207  * 19 bits for 16-bit output (in int32_t)
208  * @param chrVSrc scaled chroma (V) source data, 15 bits for 8-10-bit output,
209  * 19 bits for 16-bit output (in int32_t)
210  * @param alpSrc scaled alpha (A) source data, 15 bits for 8-10-bit output,
211  * 19 bits for 16-bit output (in int32_t)
212  * @param dest pointer to the output plane. For 16-bit output, this is
213  * uint16_t
214  * @param dstW width of lumSrc and alpSrc in pixels, number of pixels
215  * to write into dest[]
216  * @param yalpha luma/alpha scaling coefficients for the second input line.
217  * The first line's coefficients can be calculated by using
218  * 4096 - yalpha
219  * @param uvalpha chroma scaling coefficient for the second input line. The
220  * first line's coefficients can be calculated by using
221  * 4096 - uvalpha
222  * @param y vertical line number for this output. This does not need
223  * to be used to calculate the offset in the destination,
224  * but can be used to generate comfort noise using dithering
225  * for some output formats.
226  */
227 typedef void (*yuv2packed2_fn)(SwsInternal *c, const int16_t *lumSrc[2],
228  const int16_t *chrUSrc[2],
229  const int16_t *chrVSrc[2],
230  const int16_t *alpSrc[2],
231  uint8_t *dest,
232  int dstW, int yalpha, int uvalpha, int y);
233 /**
234  * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
235  * output by doing multi-point vertical scaling between input pixels.
236  *
237  * @param c SWS scaling context
238  * @param lumFilter vertical luma/alpha scaling coefficients, 12 bits [0,4096]
239  * @param lumSrc scaled luma (Y) source data, 15 bits for 8-10-bit output,
240  * 19 bits for 16-bit output (in int32_t)
241  * @param lumFilterSize number of vertical luma/alpha input lines to scale
242  * @param chrFilter vertical chroma scaling coefficients, 12 bits [0,4096]
243  * @param chrUSrc scaled chroma (U) source data, 15 bits for 8-10-bit output,
244  * 19 bits for 16-bit output (in int32_t)
245  * @param chrVSrc scaled chroma (V) source data, 15 bits for 8-10-bit output,
246  * 19 bits for 16-bit output (in int32_t)
247  * @param chrFilterSize number of vertical chroma input lines to scale
248  * @param alpSrc scaled alpha (A) source data, 15 bits for 8-10-bit output,
249  * 19 bits for 16-bit output (in int32_t)
250  * @param dest pointer to the output plane. For 16-bit output, this is
251  * uint16_t
252  * @param dstW width of lumSrc and alpSrc in pixels, number of pixels
253  * to write into dest[]
254  * @param y vertical line number for this output. This does not need
255  * to be used to calculate the offset in the destination,
256  * but can be used to generate comfort noise using dithering
257  * or some output formats.
258  */
259 typedef void (*yuv2packedX_fn)(SwsInternal *c, const int16_t *lumFilter,
260  const int16_t **lumSrc, int lumFilterSize,
261  const int16_t *chrFilter,
262  const int16_t **chrUSrc,
263  const int16_t **chrVSrc, int chrFilterSize,
264  const int16_t **alpSrc, uint8_t *dest,
265  int dstW, int y);
266 
267 /**
268  * Write one line of horizontally scaled Y/U/V/A to YUV/RGB
269  * output by doing multi-point vertical scaling between input pixels.
270  *
271  * @param c SWS scaling context
272  * @param lumFilter vertical luma/alpha scaling coefficients, 12 bits [0,4096]
273  * @param lumSrc scaled luma (Y) source data, 15 bits for 8-10-bit output,
274  * 19 bits for 16-bit output (in int32_t)
275  * @param lumFilterSize number of vertical luma/alpha input lines to scale
276  * @param chrFilter vertical chroma scaling coefficients, 12 bits [0,4096]
277  * @param chrUSrc scaled chroma (U) source data, 15 bits for 8-10-bit output,
278  * 19 bits for 16-bit output (in int32_t)
279  * @param chrVSrc scaled chroma (V) source data, 15 bits for 8-10-bit output,
280  * 19 bits for 16-bit output (in int32_t)
281  * @param chrFilterSize number of vertical chroma input lines to scale
282  * @param alpSrc scaled alpha (A) source data, 15 bits for 8-10-bit output,
283  * 19 bits for 16-bit output (in int32_t)
284  * @param dest pointer to the output planes. For 16-bit output, this is
285  * uint16_t
286  * @param dstW width of lumSrc and alpSrc in pixels, number of pixels
287  * to write into dest[]
288  * @param y vertical line number for this output. This does not need
289  * to be used to calculate the offset in the destination,
290  * but can be used to generate comfort noise using dithering
291  * or some output formats.
292  */
293 typedef void (*yuv2anyX_fn)(SwsInternal *c, const int16_t *lumFilter,
294  const int16_t **lumSrc, int lumFilterSize,
295  const int16_t *chrFilter,
296  const int16_t **chrUSrc,
297  const int16_t **chrVSrc, int chrFilterSize,
298  const int16_t **alpSrc, uint8_t **dest,
299  int dstW, int y);
300 
301 /**
302  * Unscaled conversion of luma/alpha plane to YV12 for horizontal scaler.
303  */
304 typedef void (*planar1_YV12_fn)(uint8_t *dst, const uint8_t *src, const uint8_t *src2,
305  const uint8_t *src3, int width, uint32_t *pal,
306  void *opaque);
307 
308 /**
309  * Unscaled conversion of chroma plane to YV12 for horizontal scaler.
310  */
311 typedef void (*planar2_YV12_fn)(uint8_t *dst, uint8_t *dst2, const uint8_t *src,
312  const uint8_t *src2, const uint8_t *src3,
313  int width, uint32_t *pal, void *opaque);
314 
315 /**
316  * Unscaled conversion of arbitrary planar data (e.g. RGBA) to YV12, through
317  * conversion using the given color matrix.
318  */
319 typedef void (*planarX_YV12_fn)(uint8_t *dst, const uint8_t *src[4], int width,
320  int32_t *rgb2yuv, void *opaque);
321 
322 typedef void (*planarX2_YV12_fn)(uint8_t *dst, uint8_t *dst2,
323  const uint8_t *src[4], int width,
324  int32_t *rgb2yuv, void *opaque);
325 
326 struct SwsSlice;
327 struct SwsFilterDescriptor;
328 
329 /* This struct should be aligned on at least a 32-byte boundary. */
330 struct SwsInternal {
331  /* Currently active user-facing options. Also contains AVClass */
333 
334  /* Parent context (for slice contexts) */
336 
339  int *slice_err;
341 
342  /* Scaling graph, reinitialized dynamically as needed. */
343  SwsGraph *graph[2]; /* top, bottom fields */
344 
345  // values passed to current sws_receive_slice() call
348 
349  /**
350  * Note that src, dst, srcStride, dstStride will be copied in the
351  * sws_scale() wrapper so they can be freely modified here.
352  */
354  int chrSrcW; ///< Width of source chroma planes.
355  int chrSrcH; ///< Height of source chroma planes.
356  int chrDstW; ///< Width of destination chroma planes.
357  int chrDstH; ///< Height of destination chroma planes.
360  int dstFormatBpp; ///< Number of bits per pixel of the destination pixel format.
361  int srcFormatBpp; ///< Number of bits per pixel of the source pixel format.
363  int chrSrcHSubSample; ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in source image.
364  int chrSrcVSubSample; ///< Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in source image.
365  int chrDstHSubSample; ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in destination image.
366  int chrDstVSubSample; ///< Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in destination image.
367  int vChrDrop; ///< Binary logarithm of extra vertical subsampling factor in source image chroma planes specified by user.
368  int sliceDir; ///< Direction that slices are fed to the scaler (1 = top-to-bottom, -1 = bottom-to-top).
369 
372 
374 
375  /* The cascaded_* fields allow splitting a scaler task into multiple
376  * sequential steps, this is for example used to limit the maximum
377  * downscaling factor that needs to be supported in one scaler.
378  */
381  uint8_t *cascaded_tmp[2][4];
383 
384  double gamma_value;
386  uint16_t *gamma;
387  uint16_t *inv_gamma;
388 
389  int numDesc;
390  int descIndex[2];
391  int numSlice;
392  struct SwsSlice *slice;
394 
395  uint32_t pal_yuv[256];
396  uint32_t pal_rgb[256];
397 
398  float uint2float_lut[256];
399 
400  /**
401  * @name Scaled horizontal lines ring buffer.
402  * The horizontal scaler keeps just enough scaled lines in a ring buffer
403  * so they may be passed to the vertical scaler. The pointers to the
404  * allocated buffers for each line are duplicated in sequence in the ring
405  * buffer to simplify indexing and avoid wrapping around between lines
406  * inside the vertical scaler code. The wrapping is done before the
407  * vertical scaler is called.
408  */
409  //@{
410  int lastInLumBuf; ///< Last scaled horizontal luma/alpha line from source in the ring buffer.
411  int lastInChrBuf; ///< Last scaled horizontal chroma line from source in the ring buffer.
412  //@}
413 
416 
417  /**
418  * @name Horizontal and vertical filters.
419  * To better understand the following fields, here is a pseudo-code of
420  * their usage in filtering a horizontal line:
421  * @code
422  * for (i = 0; i < width; i++) {
423  * dst[i] = 0;
424  * for (j = 0; j < filterSize; j++)
425  * dst[i] += src[ filterPos[i] + j ] * filter[ filterSize * i + j ];
426  * dst[i] >>= FRAC_BITS; // The actual implementation is fixed-point.
427  * }
428  * @endcode
429  */
430  //@{
431  int16_t *hLumFilter; ///< Array of horizontal filter coefficients for luma/alpha planes.
432  int16_t *hChrFilter; ///< Array of horizontal filter coefficients for chroma planes.
433  int16_t *vLumFilter; ///< Array of vertical filter coefficients for luma/alpha planes.
434  int16_t *vChrFilter; ///< Array of vertical filter coefficients for chroma planes.
435  int32_t *hLumFilterPos; ///< Array of horizontal filter starting positions for each dst[i] for luma/alpha planes.
436  int32_t *hChrFilterPos; ///< Array of horizontal filter starting positions for each dst[i] for chroma planes.
437  int32_t *vLumFilterPos; ///< Array of vertical filter starting positions for each dst[i] for luma/alpha planes.
438  int32_t *vChrFilterPos; ///< Array of vertical filter starting positions for each dst[i] for chroma planes.
439  int hLumFilterSize; ///< Horizontal filter size for luma/alpha pixels.
440  int hChrFilterSize; ///< Horizontal filter size for chroma pixels.
441  int vLumFilterSize; ///< Vertical filter size for luma/alpha pixels.
442  int vChrFilterSize; ///< Vertical filter size for chroma pixels.
443  //@}
444 
445  int lumMmxextFilterCodeSize; ///< Runtime-generated MMXEXT horizontal fast bilinear scaler code size for luma/alpha planes.
446  int chrMmxextFilterCodeSize; ///< Runtime-generated MMXEXT horizontal fast bilinear scaler code size for chroma planes.
447  uint8_t *lumMmxextFilterCode; ///< Runtime-generated MMXEXT horizontal fast bilinear scaler code for luma/alpha planes.
448  uint8_t *chrMmxextFilterCode; ///< Runtime-generated MMXEXT horizontal fast bilinear scaler code for chroma planes.
449 
452 
453  int dstY; ///< Last destination vertical line output from last slice.
454  void *yuvTable; // pointer to the yuv->rgb table start so it can be freed()
455  // alignment ensures the offset can be added in a single
456  // instruction on e.g. ARM
458  uint8_t *table_rV[256 + 2*YUVRGB_TABLE_HEADROOM];
459  uint8_t *table_gU[256 + 2*YUVRGB_TABLE_HEADROOM];
460  uint8_t *table_bU[256 + 2*YUVRGB_TABLE_HEADROOM];
461  DECLARE_ALIGNED(16, int32_t, input_rgb2yuv_table)[16+40*4]; // This table can contain both C and SIMD formatted values, the C vales are always at the XY_IDX points
462 #define RY_IDX 0
463 #define GY_IDX 1
464 #define BY_IDX 2
465 #define RU_IDX 3
466 #define GU_IDX 4
467 #define BU_IDX 5
468 #define RV_IDX 6
469 #define GV_IDX 7
470 #define BV_IDX 8
471 #define RGB2YUV_SHIFT 15
472 
473  int *dither_error[4];
474 
475  //Colorspace stuff
476  int contrast, brightness, saturation; // for sws_getColorspaceDetails
481  int srcXYZ;
482  int dstXYZ;
489 
490 #define RED_DITHER "0*8"
491 #define GREEN_DITHER "1*8"
492 #define BLUE_DITHER "2*8"
493 #define Y_COEFF "3*8"
494 #define VR_COEFF "4*8"
495 #define UB_COEFF "5*8"
496 #define VG_COEFF "6*8"
497 #define UG_COEFF "7*8"
498 #define Y_OFFSET "8*8"
499 #define U_OFFSET "9*8"
500 #define V_OFFSET "10*8"
501 #define LUM_MMX_FILTER_OFFSET "11*8"
502 #define CHR_MMX_FILTER_OFFSET "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)
503 #define DSTW_OFFSET "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2"
504 #define ESP_OFFSET "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+8"
505 #define VROUNDER_OFFSET "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+16"
506 #define U_TEMP "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+24"
507 #define V_TEMP "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+32"
508 #define Y_TEMP "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+40"
509 #define ALP_MMX_FILTER_OFFSET "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*2+48"
510 #define UV_OFF_PX "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*3+48"
511 #define UV_OFF_BYTE "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*3+56"
512 #define DITHER16 "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*3+64"
513 #define DITHER32 "11*8+4*4*"AV_STRINGIFY(MAX_FILTER_SIZE)"*3+80"
514 #define DITHER32_INT (11*8+4*4*MAX_FILTER_SIZE*3+80) // value equal to above, used for checking that the struct hasn't been changed by mistake
515 
516  DECLARE_ALIGNED(8, uint64_t, redDither);
519 
520  DECLARE_ALIGNED(8, uint64_t, yCoeff);
521  DECLARE_ALIGNED(8, uint64_t, vrCoeff);
522  DECLARE_ALIGNED(8, uint64_t, ubCoeff);
523  DECLARE_ALIGNED(8, uint64_t, vgCoeff);
524  DECLARE_ALIGNED(8, uint64_t, ugCoeff);
525  DECLARE_ALIGNED(8, uint64_t, yOffset);
526  DECLARE_ALIGNED(8, uint64_t, uOffset);
527  DECLARE_ALIGNED(8, uint64_t, vOffset);
530  int dstW_mmx;
531  DECLARE_ALIGNED(8, uint64_t, esp);
532  DECLARE_ALIGNED(8, uint64_t, vRounder);
533  DECLARE_ALIGNED(8, uint64_t, u_temp);
534  DECLARE_ALIGNED(8, uint64_t, v_temp);
535  DECLARE_ALIGNED(8, uint64_t, y_temp);
537  // alignment of these values is not necessary, but merely here
538  // to maintain the same offset across x8632 and x86-64. Once we
539  // use proper offset macros in the asm, they can be removed.
540  DECLARE_ALIGNED(8, ptrdiff_t, uv_off); ///< offset (in pixels) between u and v planes
541  DECLARE_ALIGNED(8, ptrdiff_t, uv_offx2); ///< offset (in bytes) between u and v planes
542  DECLARE_ALIGNED(8, uint16_t, dither16)[8];
543  DECLARE_ALIGNED(8, uint32_t, dither32)[8];
544 
545  const uint8_t *chrDither8, *lumDither8;
546 
547 #if HAVE_ALTIVEC
548  vector signed short CY;
549  vector signed short CRV;
550  vector signed short CBU;
551  vector signed short CGU;
552  vector signed short CGV;
553  vector signed short OY;
554  vector unsigned short CSHIFT;
555  vector signed short *vYCoeffsBank, *vCCoeffsBank;
556 #endif
557 
559 
560 /* pre defined color-spaces gamma */
561 #define XYZ_GAMMA (2.6)
562 #define RGB_GAMMA (2.2)
567 
568  /* function pointers for swscale() */
576 
577  /// Opaque data pointer passed to all input functions.
579 
583 
584  /**
585  * Functions to read planar input, such as planar RGB, and convert
586  * internally to Y/UV/A.
587  */
588  /** @{ */
592  /** @} */
593 
594  /**
595  * Scale one horizontal line of input data using a bilinear filter
596  * to produce one line of output data. Compared to SwsInternal->hScale(),
597  * please take note of the following caveats when using these:
598  * - Scaling is done using only 7 bits instead of 14-bit coefficients.
599  * - You can use no more than 5 input pixels to produce 4 output
600  * pixels. Therefore, this filter should not be used for downscaling
601  * by more than ~20% in width (because that equals more than 5/4th
602  * downscaling and thus more than 5 pixels input per 4 pixels output).
603  * - In general, bilinear filters create artifacts during downscaling
604  * (even when <20%), because one output pixel will span more than one
605  * input pixel, and thus some pixels will need edges of both neighbor
606  * pixels to interpolate the output pixel. Since you can use at most
607  * two input pixels per output pixel in bilinear scaling, this is
608  * impossible and thus downscaling by any size will create artifacts.
609  * To enable this type of scaling, set SWS_FLAG_FAST_BILINEAR
610  * in SwsInternal->flags.
611  */
612  /** @{ */
614  int16_t *dst, int dstWidth,
615  const uint8_t *src, int srcW, int xInc);
617  int16_t *dst1, int16_t *dst2, int dstWidth,
618  const uint8_t *src1, const uint8_t *src2,
619  int srcW, int xInc);
620  /** @} */
621 
622  /**
623  * Scale one horizontal line of input data using a filter over the input
624  * lines, to produce one (differently sized) line of output data.
625  *
626  * @param dst pointer to destination buffer for horizontally scaled
627  * data. If the number of bits per component of one
628  * destination pixel (SwsInternal->dstBpc) is <= 10, data
629  * will be 15 bpc in 16 bits (int16_t) width. Else (i.e.
630  * SwsInternal->dstBpc == 16), data will be 19bpc in
631  * 32 bits (int32_t) width.
632  * @param dstW width of destination image
633  * @param src pointer to source data to be scaled. If the number of
634  * bits per component of a source pixel (SwsInternal->srcBpc)
635  * is 8, this is 8bpc in 8 bits (uint8_t) width. Else
636  * (i.e. SwsInternal->dstBpc > 8), this is native depth
637  * in 16 bits (uint16_t) width. In other words, for 9-bit
638  * YUV input, this is 9bpc, for 10-bit YUV input, this is
639  * 10bpc, and for 16-bit RGB or YUV, this is 16bpc.
640  * @param filter filter coefficients to be used per output pixel for
641  * scaling. This contains 14bpp filtering coefficients.
642  * Guaranteed to contain dstW * filterSize entries.
643  * @param filterPos position of the first input pixel to be used for
644  * each output pixel during scaling. Guaranteed to
645  * contain dstW entries.
646  * @param filterSize the number of input coefficients to be used (and
647  * thus the number of input pixels to be used) for
648  * creating a single output pixel. Is aligned to 4
649  * (and input coefficients thus padded with zeroes)
650  * to simplify creating SIMD code.
651  */
652  /** @{ */
653  void (*hyScale)(SwsInternal *c, int16_t *dst, int dstW,
654  const uint8_t *src, const int16_t *filter,
655  const int32_t *filterPos, int filterSize);
656  void (*hcScale)(SwsInternal *c, int16_t *dst, int dstW,
657  const uint8_t *src, const int16_t *filter,
658  const int32_t *filterPos, int filterSize);
659  /** @} */
660 
661  /**
662  * Color range conversion functions if needed.
663  * If SwsInternal->dstBpc is > 14:
664  * - int16_t *dst (data is 15 bpc)
665  * - uint16_t coeff
666  * - int32_t offset
667  * Otherwise (SwsInternal->dstBpc is <= 14):
668  * - int32_t *dst (data is 19 bpc)
669  * - uint32_t coeff
670  * - int64_t offset
671  */
672  /** @{ */
673  void (*lumConvertRange)(int16_t *dst, int width,
674  uint32_t coeff, int64_t offset);
675  void (*chrConvertRange)(int16_t *dst1, int16_t *dst2, int width,
676  uint32_t coeff, int64_t offset);
677  /** @} */
678 
683 
684  int needs_hcscale; ///< Set if there are chroma planes to be converted.
685 
686  // scratch buffer for converting packed rgb0 sources
687  // filled with a copy of the input frame + fully opaque alpha,
688  // then passed as input to further conversion
689  uint8_t *rgb0_scratch;
691 
692  // scratch buffer for converting XYZ sources
693  // filled with the input converted to rgb48
694  // then passed as input to further conversion
695  uint8_t *xyz_scratch;
696  unsigned int xyz_scratch_allocated;
697 
698  unsigned int dst_slice_align;
702 
704 };
705 //FIXME check init (where 0)
706 
707 static_assert(offsetof(SwsInternal, redDither) + DITHER32_INT == offsetof(SwsInternal, dither32),
708  "dither32 must be at the same offset as redDither + DITHER32_INT");
709 
710 #if ARCH_X86_64
711 /* x86 yuv2gbrp uses the SwsInternal for yuv coefficients
712  if struct offsets change the asm needs to be updated too */
713 static_assert(offsetof(SwsInternal, yuv2rgb_y_offset) == 40348,
714  "yuv2rgb_y_offset must be updated in x86 asm");
715 #endif
716 
718 int ff_yuv2rgb_c_init_tables(SwsInternal *c, const int inv_table[4],
719  int fullRange, int brightness,
720  int contrast, int saturation);
721 void ff_yuv2rgb_init_tables_ppc(SwsInternal *c, const int inv_table[4],
722  int brightness, int contrast, int saturation);
723 
724 void ff_updateMMXDitherTables(SwsInternal *c, int dstY);
725 
726 void ff_update_palette(SwsInternal *c, const uint32_t *pal);
727 
733 
736 
738 
742 
744 {
746  av_assert0(desc);
747  return desc->comp[0].depth == 16;
748 }
749 
751 {
753  av_assert0(desc);
754  return desc->comp[0].depth == 32;
755 }
756 
758 {
760  av_assert0(desc);
761  return desc->comp[0].depth >= 9 && desc->comp[0].depth <= 14;
762 }
763 
765 {
767  av_assert0(desc);
768  return desc->flags & AV_PIX_FMT_FLAG_BE;
769 }
770 
772 {
774  av_assert0(desc);
775  return !(desc->flags & AV_PIX_FMT_FLAG_RGB) && desc->nb_components >= 2;
776 }
777 
779 {
781  av_assert0(desc);
782  return ((desc->flags & AV_PIX_FMT_FLAG_PLANAR) && isYUV(pix_fmt));
783 }
784 
785 /*
786  * Identity semi-planar YUV formats. Specifically, those are YUV formats
787  * where the second and third components (U & V) are on the same plane.
788  */
790 {
792  av_assert0(desc);
793  return (isPlanarYUV(pix_fmt) && desc->comp[1].plane == desc->comp[2].plane);
794 }
795 
797 {
799  av_assert0(desc);
800  return (desc->flags & AV_PIX_FMT_FLAG_RGB);
801 }
802 
804 {
806  av_assert0(desc);
807  return !(desc->flags & AV_PIX_FMT_FLAG_PAL) &&
808  !(desc->flags & AV_PIX_FMT_FLAG_HWACCEL) &&
809  desc->nb_components <= 2 &&
812 }
813 
815 {
816  return pix_fmt == AV_PIX_FMT_RGB48BE ||
834 }
835 
837 {
838  return pix_fmt == AV_PIX_FMT_BGR48BE ||
856 }
857 
859 {
861  av_assert0(desc);
862  return !!(desc->flags & AV_PIX_FMT_FLAG_BAYER);
863 }
864 
866 {
868  av_assert0(desc);
869  return desc->comp[1].depth == 8;
870 }
871 
873 {
875  av_assert0(desc);
876  return (desc->flags & AV_PIX_FMT_FLAG_RGB) ||
878 }
879 
881 {
883  av_assert0(desc);
884  return desc->flags & AV_PIX_FMT_FLAG_FLOAT;
885 }
886 
888 {
890  av_assert0(desc);
891  return (desc->flags & AV_PIX_FMT_FLAG_FLOAT) && desc->comp[0].depth == 16;
892 }
893 
895 {
897  av_assert0(desc);
898  if (pix_fmt == AV_PIX_FMT_PAL8)
899  return 1;
900  return desc->flags & AV_PIX_FMT_FLAG_ALPHA;
901 }
902 
904 {
906  av_assert0(desc);
907  return (desc->nb_components >= 2 && !(desc->flags & AV_PIX_FMT_FLAG_PLANAR)) ||
910 }
911 
913 {
915  av_assert0(desc);
916  return (desc->nb_components >= 2 && (desc->flags & AV_PIX_FMT_FLAG_PLANAR));
917 }
918 
920 {
922  av_assert0(desc);
924 }
925 
927 {
929  av_assert0(desc);
930  return ((desc->flags & (AV_PIX_FMT_FLAG_PLANAR | AV_PIX_FMT_FLAG_RGB)) ==
932 }
933 
935 {
936  switch (pix_fmt) {
937  case AV_PIX_FMT_PAL8:
939  case AV_PIX_FMT_BGR8:
940  case AV_PIX_FMT_GRAY8:
942  case AV_PIX_FMT_RGB8:
943  return 1;
944  default:
945  return 0;
946  }
947 }
948 
949 /*
950  * Identity formats where the data is in the high bits, and the low bits are shifted away.
951  */
953 {
954  int i;
956  av_assert0(desc);
958  return 0;
959  for (i = 0; i < desc->nb_components; i++) {
960  if (!desc->comp[i].shift)
961  return 0;
962  if ((desc->comp[i].shift + desc->comp[i].depth) & 0x7)
963  return 0;
964  }
965  return 1;
966 }
967 
968 /*
969  * Identity formats where the chroma planes are swapped (CrCb order).
970  */
972 {
974  av_assert0(desc);
975  if (!isYUV(pix_fmt))
976  return 0;
977  if ((desc->flags & AV_PIX_FMT_FLAG_ALPHA) && desc->nb_components < 4)
978  return 0;
979  if (desc->nb_components < 3)
980  return 0;
982  return desc->comp[1].offset > desc->comp[2].offset;
983  else
984  return desc->comp[1].plane > desc->comp[2].plane;
985 }
986 
987 extern const uint64_t ff_dither4[2];
988 extern const uint64_t ff_dither8[2];
989 
990 extern const uint8_t ff_dither_2x2_4[3][8];
991 extern const uint8_t ff_dither_2x2_8[3][8];
992 extern const uint8_t ff_dither_4x4_16[5][8];
993 extern const uint8_t ff_dither_8x8_32[9][8];
994 extern const uint8_t ff_dither_8x8_73[9][8];
995 extern const uint8_t ff_dither_8x8_128[9][8];
996 extern const uint8_t ff_dither_8x8_220[9][8];
997 
998 extern const int32_t ff_yuv2rgb_coeffs[11][4];
999 
1000 extern const AVClass ff_sws_context_class;
1001 
1003  SwsFilter *dstFilter);
1004 
1005 /**
1006  * Set c->convert_unscaled to an unscaled converter if one exists for the
1007  * specific source and destination formats, bit depths, flags, etc.
1008  */
1013 
1015 
1017  planar1_YV12_fn *lumToYV12,
1018  planar1_YV12_fn *alpToYV12,
1019  planar2_YV12_fn *chrToYV12,
1020  planarX_YV12_fn *readLumPlanar,
1021  planarX_YV12_fn *readAlpPlanar,
1022  planarX2_YV12_fn *readChrPlanar);
1024  yuv2planar1_fn *yuv2plane1,
1026  yuv2interleavedX_fn *yuv2nv12cX,
1027  yuv2packed1_fn *yuv2packed1,
1028  yuv2packed2_fn *yuv2packed2,
1029  yuv2packedX_fn *yuv2packedX,
1030  yuv2anyX_fn *yuv2anyX);
1038 
1039 void ff_hyscale_fast_c(SwsInternal *c, int16_t *dst, int dstWidth,
1040  const uint8_t *src, int srcW, int xInc);
1041 void ff_hcscale_fast_c(SwsInternal *c, int16_t *dst1, int16_t *dst2,
1042  int dstWidth, const uint8_t *src1,
1043  const uint8_t *src2, int srcW, int xInc);
1044 int ff_init_hscaler_mmxext(int dstW, int xInc, uint8_t *filterCode,
1045  int16_t *filter, int32_t *filterPos,
1046  int numSplits);
1047 void ff_hyscale_fast_mmxext(SwsInternal *c, int16_t *dst,
1048  int dstWidth, const uint8_t *src,
1049  int srcW, int xInc);
1050 void ff_hcscale_fast_mmxext(SwsInternal *c, int16_t *dst1, int16_t *dst2,
1051  int dstWidth, const uint8_t *src1,
1052  const uint8_t *src2, int srcW, int xInc);
1053 
1054 int ff_sws_alphablendaway(SwsInternal *c, const uint8_t *const src[],
1055  const int srcStride[], int srcSliceY, int srcSliceH,
1056  uint8_t *const dst[], const int dstStride[]);
1057 
1058 void ff_copyPlane(const uint8_t *src, int srcStride,
1059  int srcSliceY, int srcSliceH, int width,
1060  uint8_t *dst, int dstStride);
1061 
1062 static inline void fillPlane16(uint8_t *plane, int stride, int width, int height, int y,
1063  int alpha, int bits, const int big_endian)
1064 {
1065  uint8_t *ptr = plane + stride * y;
1066  int v = alpha ? 0xFFFF>>(16-bits) : (1<<(bits-1));
1067  if (big_endian != HAVE_BIGENDIAN)
1068  v = av_bswap16(v);
1069  for (int i = 0; i < height; i++) {
1070  for (int j = 0; j < width; j++)
1071  AV_WN16(ptr + 2 * j, v);
1072  ptr += stride;
1073  }
1074 }
1075 
1076 static inline void fillPlane32(uint8_t *plane, int stride, int width, int height, int y,
1077  int alpha, int bits, const int big_endian, int is_float)
1078 {
1079  uint8_t *ptr = plane + stride * y;
1080  uint32_t v;
1081  uint32_t onef32 = 0x3f800000;
1082  if (is_float)
1083  v = alpha ? onef32 : 0;
1084  else
1085  v = alpha ? 0xFFFFFFFF>>(32-bits) : (1<<(bits-1));
1086  if (big_endian != HAVE_BIGENDIAN)
1087  v = av_bswap32(v);
1088 
1089  for (int i = 0; i < height; i++) {
1090  for (int j = 0; j < width; j++)
1091  AV_WN32(ptr + 4 * j, v);
1092  ptr += stride;
1093  }
1094 }
1095 
1096 
1097 #define MAX_SLICE_PLANES 4
1098 
1099 /// Slice plane
1100 typedef struct SwsPlane
1101 {
1102  int available_lines; ///< max number of lines that can be hold by this plane
1103  int sliceY; ///< index of first line
1104  int sliceH; ///< number of lines
1105  uint8_t **line; ///< line buffer
1106  uint8_t **tmp; ///< Tmp line buffer used by mmx code
1107 } SwsPlane;
1108 
1109 /**
1110  * Struct which defines a slice of an image to be scaled or an output for
1111  * a scaled slice.
1112  * A slice can also be used as intermediate ring buffer for scaling steps.
1113  */
1114 typedef struct SwsSlice
1115 {
1116  int width; ///< Slice line width
1117  int h_chr_sub_sample; ///< horizontal chroma subsampling factor
1118  int v_chr_sub_sample; ///< vertical chroma subsampling factor
1119  int is_ring; ///< flag to identify if this slice is a ring buffer
1120  int should_free_lines; ///< flag to identify if there are dynamic allocated lines
1121  enum AVPixelFormat fmt; ///< planes pixel format
1122  SwsPlane plane[MAX_SLICE_PLANES]; ///< color planes
1123 } SwsSlice;
1124 
1125 /**
1126  * Struct which holds all necessary data for processing a slice.
1127  * A processing step can be a color conversion or horizontal/vertical scaling.
1128  */
1129 typedef struct SwsFilterDescriptor
1130 {
1131  SwsSlice *src; ///< Source slice
1132  SwsSlice *dst; ///< Output slice
1133 
1134  int alpha; ///< Flag for processing alpha channel
1135  void *instance; ///< Filter instance data
1136 
1137  /// Function for processing input slice sliceH lines starting from line sliceY
1138  int (*process)(SwsInternal *c, struct SwsFilterDescriptor *desc, int sliceY, int sliceH);
1140 
1141 // warp input lines in the form (src + width*i + j) to slice format (line[i][j])
1142 // relative=true means first line src[x][0] otherwise first line is src[x][lum/crh Y]
1143 int ff_init_slice_from_src(SwsSlice * s, uint8_t *const src[4], const int stride[4],
1144  int srcW, int lumY, int lumH, int chrY, int chrH, int relative);
1145 
1146 // Initialize scaler filter descriptor chain
1148 
1149 // Free all filter data
1151 
1152 /*
1153  function for applying ring buffer logic into slice s
1154  It checks if the slice can hold more @lum lines, if yes
1155  do nothing otherwise remove @lum least used lines.
1156  It applies the same procedure for @chr lines.
1157 */
1158 int ff_rotate_slice(SwsSlice *s, int lum, int chr);
1159 
1160 /// initializes gamma conversion descriptor
1162 
1163 /// initializes lum pixel format conversion descriptor
1165 
1166 /// initializes lum horizontal scaling descriptor
1167 int ff_init_desc_hscale(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint16_t *filter, int * filter_pos, int filter_size, int xInc);
1168 
1169 /// initializes chr pixel format conversion descriptor
1171 
1172 /// initializes chr horizontal scaling descriptor
1173 int ff_init_desc_chscale(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint16_t *filter, int * filter_pos, int filter_size, int xInc);
1174 
1176 
1177 /// initializes vertical scaling descriptors
1179 
1180 /// setup vertical scaler functions
1182  yuv2interleavedX_fn yuv2nv12cX, yuv2packed1_fn yuv2packed1, yuv2packed2_fn yuv2packed2,
1183  yuv2packedX_fn yuv2packedX, yuv2anyX_fn yuv2anyX, int use_mmx);
1184 
1185 void ff_sws_slice_worker(void *priv, int jobnr, int threadnr,
1186  int nb_jobs, int nb_threads);
1187 
1188 int ff_swscale(SwsInternal *c, const uint8_t *const src[], const int srcStride[],
1189  int srcSliceY, int srcSliceH, uint8_t *const dst[],
1190  const int dstStride[], int dstSliceY, int dstSliceH);
1191 
1192 
1193 //number of extra lines to process
1194 #define MAX_LINES_AHEAD 4
1195 
1196 //shuffle filter and filterPos for hyScale and hcScale filters in avx2
1197 int ff_shuffle_filter_coefficients(SwsInternal *c, int* filterPos, int filterSize, int16_t *filter, int dstW);
1198 #endif /* SWSCALE_SWSCALE_INTERNAL_H */
ff_hyscale_fast_mmxext
void ff_hyscale_fast_mmxext(SwsInternal *c, int16_t *dst, int dstWidth, const uint8_t *src, int srcW, int xInc)
Definition: hscale_fast_bilinear_simd.c:192
isBayer
static av_always_inline int isBayer(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:858
SwsInternal::needs_hcscale
int needs_hcscale
Set if there are chroma planes to be converted.
Definition: swscale_internal.h:684
SwsInternal::greenDither
uint64_t greenDither
Definition: swscale_internal.h:517
SwsInternal::input_rgb2yuv_table
int32_t input_rgb2yuv_table[16+40 *4]
Definition: swscale_internal.h:461
yuv2planar1_fn
void(* yuv2planar1_fn)(const int16_t *src, uint8_t *dest, int dstW, const uint8_t *dither, int offset)
Write one line of horizontally scaled data to planar output without any additional vertical scaling (...
Definition: swscale_internal.h:121
AVPixelFormat
AVPixelFormat
Pixel format.
Definition: pixfmt.h:71
SwsInternal::table_rV
uint8_t * table_rV[256+2 *YUVRGB_TABLE_HEADROOM]
Definition: swscale_internal.h:458
ff_dither_8x8_128
const uint8_t ff_dither_8x8_128[9][8]
Definition: swscale.c:38
AV_PIX_FMT_BGR48LE
@ AV_PIX_FMT_BGR48LE
packed RGB 16:16:16, 48bpp, 16B, 16G, 16R, the 2-byte value for each R/G/B component is stored as lit...
Definition: pixfmt.h:146
isPlanarRGB
static av_always_inline int isPlanarRGB(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:926
SwsPlane::sliceH
int sliceH
number of lines
Definition: swscale_internal.h:1104
SwsInternal::rgb0_scratch
uint8_t * rgb0_scratch
Definition: swscale_internal.h:689
SwsInternal::hLumFilterSize
int hLumFilterSize
Horizontal filter size for luma/alpha pixels.
Definition: swscale_internal.h:439
ff_sws_slice_worker
void ff_sws_slice_worker(void *priv, int jobnr, int threadnr, int nb_jobs, int nb_threads)
Definition: swscale.c:1531
isRGB
static av_always_inline int isRGB(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:796
Half2FloatTables
Definition: half2float.h:27
isPacked
static av_always_inline int isPacked(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:903
SwsPlane::line
uint8_t ** line
line buffer
Definition: swscale_internal.h:1105
r
const char * r
Definition: vf_curves.c:127
SwsInternal::rgb0_scratch_allocated
unsigned int rgb0_scratch_allocated
Definition: swscale_internal.h:690
AV_PIX_FMT_BGRA64BE
@ AV_PIX_FMT_BGRA64BE
packed RGBA 16:16:16:16, 64bpp, 16B, 16G, 16R, 16A, the 2-byte value for each R/G/B/A component is st...
Definition: pixfmt.h:204
ff_dither_8x8_220
const uint8_t ff_dither_8x8_220[9][8]
Definition: output.c:85
ff_sws_init_output_funcs
void ff_sws_init_output_funcs(SwsInternal *c, yuv2planar1_fn *yuv2plane1, yuv2planarX_fn *yuv2planeX, yuv2interleavedX_fn *yuv2nv12cX, yuv2packed1_fn *yuv2packed1, yuv2packed2_fn *yuv2packed2, yuv2packedX_fn *yuv2packedX, yuv2anyX_fn *yuv2anyX)
Definition: output.c:3289
mem_internal.h
SwsInternal::lumConvertRange_coeff
uint32_t lumConvertRange_coeff
Definition: swscale_internal.h:679
SwsInternal::srcFormatBpp
int srcFormatBpp
Number of bits per pixel of the source pixel format.
Definition: swscale_internal.h:361
AV_PIX_FMT_BGR32
#define AV_PIX_FMT_BGR32
Definition: pixfmt.h:513
AV_PIX_FMT_RGB444LE
@ AV_PIX_FMT_RGB444LE
packed RGB 4:4:4, 16bpp, (msb)4X 4R 4G 4B(lsb), little-endian, X=unused/undefined
Definition: pixfmt.h:136
isPlanarYUV
static av_always_inline int isPlanarYUV(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:778
SwsInternal::cascaded_tmp
uint8_t * cascaded_tmp[2][4]
Definition: swscale_internal.h:381
av_pix_fmt_desc_get
const AVPixFmtDescriptor * av_pix_fmt_desc_get(enum AVPixelFormat pix_fmt)
Definition: pixdesc.c:3456
SwsInternal::desc
struct SwsFilterDescriptor * desc
Definition: swscale_internal.h:393
SwsInternal::formatConvBuffer
uint8_t * formatConvBuffer
Definition: swscale_internal.h:414
ff_yuv2rgb_init_tables_ppc
void ff_yuv2rgb_init_tables_ppc(SwsInternal *c, const int inv_table[4], int brightness, int contrast, int saturation)
Definition: yuv2rgb_altivec.c:606
src1
const pixel * src1
Definition: h264pred_template.c:420
SwsInternal::stride_unaligned_warned
atomic_int stride_unaligned_warned
Definition: swscale_internal.h:699
saturation
static IPT saturation(const CmsCtx *ctx, IPT ipt)
Definition: cms.c:559
ff_yuv2rgb_init_x86
SwsFunc ff_yuv2rgb_init_x86(SwsInternal *c)
Definition: yuv2rgb.c:241
int64_t
long long int64_t
Definition: coverity.c:34
RangeList::ranges_allocated
int ranges_allocated
Definition: swscale_internal.h:87
SwsInternal::lastInChrBuf
int lastInChrBuf
Last scaled horizontal chroma line from source in the ring buffer.
Definition: swscale_internal.h:411
AV_PIX_FMT_FLAG_FLOAT
#define AV_PIX_FMT_FLAG_FLOAT
The pixel format contains IEEE-754 floating point values.
Definition: pixdesc.h:158
SwsSlice::plane
SwsPlane plane[MAX_SLICE_PLANES]
color planes
Definition: swscale_internal.h:1122
SwsInternal::color_conversion_warned
int color_conversion_warned
Definition: swscale_internal.h:701
AVFrame
This structure describes decoded (raw) audio or video data.
Definition: frame.h:427
pixdesc.h
AV_PIX_FMT_RGBA64BE
@ AV_PIX_FMT_RGBA64BE
packed RGBA 16:16:16:16, 64bpp, 16R, 16G, 16B, 16A, the 2-byte value for each R/G/B/A component is st...
Definition: pixfmt.h:202
w
uint8_t w
Definition: llviddspenc.c:38
ff_sws_alphablendaway
int ff_sws_alphablendaway(SwsInternal *c, const uint8_t *const src[], const int srcStride[], int srcSliceY, int srcSliceH, uint8_t *const dst[], const int dstStride[])
Definition: alphablend.c:23
isGray
static av_always_inline int isGray(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:803
ff_rotate_slice
int ff_rotate_slice(SwsSlice *s, int lum, int chr)
Definition: slice.c:120
ff_sws_init_range_convert_aarch64
av_cold void ff_sws_init_range_convert_aarch64(SwsInternal *c)
Definition: swscale.c:314
SwsFilterDescriptor
Struct which holds all necessary data for processing a slice.
Definition: swscale_internal.h:1129
yuv2planeX
static void FUNC() yuv2planeX(const int16_t *filter, int filterSize, const int16_t **src, uint8_t *dest, int dstW, const uint8_t *dither, int offset)
Definition: swscale_ppc_template.c:84
table
static const uint16_t table[]
Definition: prosumer.c:203
SwsInternal::lumToYV12
planar1_YV12_fn lumToYV12
Definition: swscale_internal.h:580
AV_PIX_FMT_MONOWHITE
@ AV_PIX_FMT_MONOWHITE
Y , 1bpp, 0 is white, 1 is black, in each byte pixels are ordered from the msb to the lsb.
Definition: pixfmt.h:82
rgb2yuv
static const char rgb2yuv[]
Definition: vf_scale_vulkan.c:83
atomic_int
intptr_t atomic_int
Definition: stdatomic.h:55
SwsInternal::vChrFilterPos
int32_t * vChrFilterPos
Array of vertical filter starting positions for each dst[i] for chroma planes.
Definition: swscale_internal.h:438
SwsInternal::vChrFilterSize
int vChrFilterSize
Vertical filter size for chroma pixels.
Definition: swscale_internal.h:442
SwsInternal::y_temp
uint64_t y_temp
Definition: swscale_internal.h:535
AV_PIX_FMT_RGB32_1
#define AV_PIX_FMT_RGB32_1
Definition: pixfmt.h:512
ff_sws_init_swscale_vsx
void ff_sws_init_swscale_vsx(SwsInternal *c)
Definition: swscale_vsx.c:2019
SwsInternal::uint2float_lut
float uint2float_lut[256]
Definition: swscale_internal.h:398
filter
void(* filter)(uint8_t *src, int stride, int qscale)
Definition: h263dsp.c:29
SwsInternal::cascaded_tmpStride
int cascaded_tmpStride[2][4]
Definition: swscale_internal.h:380
AV_PIX_FMT_BGR24
@ AV_PIX_FMT_BGR24
packed RGB 8:8:8, 24bpp, BGRBGR...
Definition: pixfmt.h:76
SwsInternal::esp
uint64_t esp
Definition: swscale_internal.h:531
SwsInternal::h2f_tables
Half2FloatTables * h2f_tables
Definition: swscale_internal.h:703
SwsInternal::dstW_mmx
int dstW_mmx
Definition: swscale_internal.h:530
SwsInternal::dstBpc
int dstBpc
Definition: swscale_internal.h:362
SwsInternal::lumMmxFilter
int32_t lumMmxFilter[4 *MAX_FILTER_SIZE]
Definition: swscale_internal.h:528
SwsInternal::yuv2rgb_u2b_coeff
int yuv2rgb_u2b_coeff
Definition: swscale_internal.h:488
AVSliceThread
struct AVSliceThread AVSliceThread
Definition: slicethread.h:22
SwsInternal::srcXYZ
int srcXYZ
Definition: swscale_internal.h:481
SwsInternal::hcscale_fast
void(* hcscale_fast)(SwsInternal *c, int16_t *dst1, int16_t *dst2, int dstWidth, const uint8_t *src1, const uint8_t *src2, int srcW, int xInc)
Definition: swscale_internal.h:616
SwsInternal::table_gV
int table_gV[256+2 *YUVRGB_TABLE_HEADROOM]
Definition: swscale_internal.h:457
ff_sws_init_scale
void ff_sws_init_scale(SwsInternal *c)
Definition: swscale.c:694
AV_PIX_FMT_RGB555BE
@ AV_PIX_FMT_RGB555BE
packed RGB 5:5:5, 16bpp, (msb)1X 5R 5G 5B(lsb), big-endian , X=unused/undefined
Definition: pixfmt.h:114
SwsInternal::frame_dst
AVFrame * frame_dst
Definition: swscale_internal.h:371
SwsInternal::chrDstH
int chrDstH
Height of destination chroma planes.
Definition: swscale_internal.h:357
SwsInternal::dither32
uint32_t dither32[8]
Definition: swscale_internal.h:543
SwsSlice::fmt
enum AVPixelFormat fmt
planes pixel format
Definition: swscale_internal.h:1121
SwsFilterDescriptor::src
SwsSlice * src
Source slice.
Definition: swscale_internal.h:1131
ff_sws_init_single_context
int ff_sws_init_single_context(SwsContext *sws, SwsFilter *srcFilter, SwsFilter *dstFilter)
Definition: utils.c:1108
Range::start
unsigned int start
Definition: swscale_internal.h:80
SwsInternal::chrDstW
int chrDstW
Width of destination chroma planes.
Definition: swscale_internal.h:356
SwsInternal::chrMmxextFilterCode
uint8_t * chrMmxextFilterCode
Runtime-generated MMXEXT horizontal fast bilinear scaler code for chroma planes.
Definition: swscale_internal.h:448
SwsInternal::use_mmx_vfilter
int use_mmx_vfilter
Definition: swscale_internal.h:558
SwsInternal::hLumFilter
int16_t * hLumFilter
Array of horizontal filter coefficients for luma/alpha planes.
Definition: swscale_internal.h:431
is16BPS
static av_always_inline int is16BPS(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:743
SwsFilterDescriptor::instance
void * instance
Filter instance data.
Definition: swscale_internal.h:1135
ff_sws_init_input_funcs
void ff_sws_init_input_funcs(SwsInternal *c, planar1_YV12_fn *lumToYV12, planar1_YV12_fn *alpToYV12, planar2_YV12_fn *chrToYV12, planarX_YV12_fn *readLumPlanar, planarX_YV12_fn *readAlpPlanar, planarX2_YV12_fn *readChrPlanar)
SwsInternal::vRounder
uint64_t vRounder
Definition: swscale_internal.h:532
ff_sws_init_swscale_x86
void ff_sws_init_swscale_x86(SwsInternal *c)
Definition: swscale.c:490
SwsInternal::table_gU
uint8_t * table_gU[256+2 *YUVRGB_TABLE_HEADROOM]
Definition: swscale_internal.h:459
SwsInternal::inv_gamma
uint16_t * inv_gamma
Definition: swscale_internal.h:387
SwsInternal::slicethread
AVSliceThread * slicethread
Definition: swscale_internal.h:337
SwsInternal::input_opaque
void * input_opaque
Opaque data pointer passed to all input functions.
Definition: swscale_internal.h:578
AV_PIX_FMT_FLAG_HWACCEL
#define AV_PIX_FMT_FLAG_HWACCEL
Pixel format is an HW accelerated format.
Definition: pixdesc.h:128
SwsInternal::uOffset
uint64_t uOffset
Definition: swscale_internal.h:526
SwsInternal::readAlpPlanar
planarX_YV12_fn readAlpPlanar
Definition: swscale_internal.h:590
Range::len
unsigned int len
Definition: swscale_internal.h:81
ff_dither_2x2_8
const uint8_t ff_dither_2x2_8[3][8]
Definition: output.c:46
SwsInternal::frame_src
AVFrame * frame_src
Definition: swscale_internal.h:370
ff_sws_init_range_convert_loongarch
av_cold void ff_sws_init_range_convert_loongarch(SwsInternal *c)
Definition: swscale_init_loongarch.c:27
SwsInternal::yuv2rgb_v2g_coeff
int yuv2rgb_v2g_coeff
Definition: swscale_internal.h:486
ff_sws_init_xyzdsp_aarch64
av_cold void ff_sws_init_xyzdsp_aarch64(SwsInternal *c)
Definition: swscale.c:339
isNBPS
static av_always_inline int isNBPS(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:757
SwsFilterDescriptor::process
int(* process)(SwsInternal *c, struct SwsFilterDescriptor *desc, int sliceY, int sliceH)
Function for processing input slice sliceH lines starting from line sliceY.
Definition: swscale_internal.h:1138
SwsSlice::h_chr_sub_sample
int h_chr_sub_sample
horizontal chroma subsampling factor
Definition: swscale_internal.h:1117
SwsInternal::yuvTable
void * yuvTable
Definition: swscale_internal.h:454
SwsInternal::dstColorspaceTable
int dstColorspaceTable[4]
Definition: swscale_internal.h:478
ff_hyscale_fast_c
void ff_hyscale_fast_c(SwsInternal *c, int16_t *dst, int dstWidth, const uint8_t *src, int srcW, int xInc)
Definition: hscale_fast_bilinear.c:23
ff_dither4
const uint64_t ff_dither4[2]
Definition: swscale.c:33
ff_dither_8x8_73
const uint8_t ff_dither_8x8_73[9][8]
Definition: output.c:72
SwsInternal::opts
SwsContext opts
Definition: swscale_internal.h:332
SwsColorFunc
void(* SwsColorFunc)(const SwsInternal *c, uint8_t *dst, int dst_stride, const uint8_t *src, int src_stride, int w, int h)
Definition: swscale_internal.h:96
MAX_FILTER_SIZE
#define MAX_FILTER_SIZE
Definition: swscale_internal.h:50
AV_PIX_FMT_BGR8
@ AV_PIX_FMT_BGR8
packed RGB 3:3:2, 8bpp, (msb)2B 3G 3R(lsb)
Definition: pixfmt.h:90
avassert.h
SwsInternal::xyz_scratch
uint8_t * xyz_scratch
Definition: swscale_internal.h:695
SwsInternal::pal_rgb
uint32_t pal_rgb[256]
Definition: swscale_internal.h:396
SwsColorXform::gamma
SwsLuts gamma
Definition: swscale_internal.h:105
av_cold
#define av_cold
Definition: attributes.h:106
SwsInternal::src_ranges
RangeList src_ranges
Definition: swscale_internal.h:373
ff_shuffle_filter_coefficients
int ff_shuffle_filter_coefficients(SwsInternal *c, int *filterPos, int filterSize, int16_t *filter, int dstW)
Definition: utils.c:93
YUVRGB_TABLE_HEADROOM
#define YUVRGB_TABLE_HEADROOM
Definition: swscale_internal.h:47
yuv2packed2_fn
void(* yuv2packed2_fn)(SwsInternal *c, const int16_t *lumSrc[2], const int16_t *chrUSrc[2], const int16_t *chrVSrc[2], const int16_t *alpSrc[2], uint8_t *dest, int dstW, int yalpha, int uvalpha, int y)
Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB output by doing bilinear scalin...
Definition: swscale_internal.h:227
SwsInternal::slice_err
int * slice_err
Definition: swscale_internal.h:339
SwsInternal::brightness
int brightness
Definition: swscale_internal.h:476
SwsInternal::redDither
uint64_t redDither
Definition: swscale_internal.h:516
SwsInternal::nb_slice_ctx
int nb_slice_ctx
Definition: swscale_internal.h:340
intreadwrite.h
dither
static const uint16_t dither[8][8]
Definition: vf_gradfun.c:46
SwsInternal::slice_ctx
SwsContext ** slice_ctx
Definition: swscale_internal.h:338
s
#define s(width, name)
Definition: cbs_vp9.c:198
SwsInternal::alpToYV12
planar1_YV12_fn alpToYV12
Definition: swscale_internal.h:581
ff_dither_8x8_32
const uint8_t ff_dither_8x8_32[9][8]
Definition: output.c:60
CSHIFT
#define CSHIFT
Definition: audiogen.c:72
pix_fmt
static enum AVPixelFormat pix_fmt
Definition: demux_decode.c:41
SwsInternal::cascaded_context
SwsContext * cascaded_context[3]
Definition: swscale_internal.h:379
SwsSlice::width
int width
Slice line width.
Definition: swscale_internal.h:1116
SwsInternal::ugCoeff
uint64_t ugCoeff
Definition: swscale_internal.h:524
bits
uint8_t bits
Definition: vp3data.h:128
av_assert0
#define av_assert0(cond)
assert() equivalent, that is always enabled.
Definition: avassert.h:41
ff_yuv2rgb_c_init_tables
int ff_yuv2rgb_c_init_tables(SwsInternal *c, const int inv_table[4], int fullRange, int brightness, int contrast, int saturation)
SwsPlane::tmp
uint8_t ** tmp
Tmp line buffer used by mmx code.
Definition: swscale_internal.h:1106
ff_get_unscaled_swscale
void ff_get_unscaled_swscale(SwsInternal *c)
Set c->convert_unscaled to an unscaled converter if one exists for the specific source and destinatio...
Definition: swscale_unscaled.c:2383
AV_PIX_FMT_FLAG_ALPHA
#define AV_PIX_FMT_FLAG_ALPHA
The pixel format has an alpha channel.
Definition: pixdesc.h:147
SwsInternal::dither_error
int * dither_error[4]
Definition: swscale_internal.h:473
ff_sws_context_class
const AVClass ff_sws_context_class
Definition: options.c:98
AV_PIX_FMT_RGB4
@ AV_PIX_FMT_RGB4
packed RGB 1:2:1 bitstream, 4bpp, (msb)1R 2G 1B(lsb), a byte contains two pixels, the first pixel in ...
Definition: pixfmt.h:94
SwsInternal::lumMmxextFilterCode
uint8_t * lumMmxextFilterCode
Runtime-generated MMXEXT horizontal fast bilinear scaler code for luma/alpha planes.
Definition: swscale_internal.h:447
ff_sws_init_swscale_aarch64
void ff_sws_init_swscale_aarch64(SwsInternal *c)
Definition: swscale.c:350
SwsInternal::contrast
int contrast
Definition: swscale_internal.h:476
AV_PIX_FMT_BGR32_1
#define AV_PIX_FMT_BGR32_1
Definition: pixfmt.h:514
SwsInternal::vLumFilterSize
int vLumFilterSize
Vertical filter size for luma/alpha pixels.
Definition: swscale_internal.h:441
ff_sws_init_swscale_loongarch
void ff_sws_init_swscale_loongarch(SwsInternal *c)
Definition: swscale_init_loongarch.c:62
SwsInternal::chrSrcH
int chrSrcH
Height of source chroma planes.
Definition: swscale_internal.h:355
ff_sws_init_range_convert
av_cold void ff_sws_init_range_convert(SwsInternal *c)
Definition: swscale.c:623
ff_init_hscaler_mmxext
int ff_init_hscaler_mmxext(int dstW, int xInc, uint8_t *filterCode, int16_t *filter, int32_t *filterPos, int numSplits)
Definition: hscale_fast_bilinear_simd.c:30
SwsInternal::chrConvertRange
void(* chrConvertRange)(int16_t *dst1, int16_t *dst2, int width, uint32_t coeff, int64_t offset)
Definition: swscale_internal.h:675
SwsInternal::yuv2anyX
yuv2anyX_fn yuv2anyX
Definition: swscale_internal.h:575
isSemiPlanarYUV
static av_always_inline int isSemiPlanarYUV(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:789
ff_hcscale_fast_mmxext
void ff_hcscale_fast_mmxext(SwsInternal *c, int16_t *dst1, int16_t *dst2, int dstWidth, const uint8_t *src1, const uint8_t *src2, int srcW, int xInc)
Definition: hscale_fast_bilinear_simd.c:282
SwsInternal::chrConvertRange_coeff
uint32_t chrConvertRange_coeff
Definition: swscale_internal.h:680
AV_PIX_FMT_RGB565LE
@ AV_PIX_FMT_RGB565LE
packed RGB 5:6:5, 16bpp, (msb) 5R 6G 5B(lsb), little-endian
Definition: pixfmt.h:113
ff_yuv2rgb_init_ppc
SwsFunc ff_yuv2rgb_init_ppc(SwsInternal *c)
Definition: yuv2rgb_altivec.c:535
AVClass
Describe the class of an AVClass context structure.
Definition: log.h:76
ff_init_slice_from_src
int ff_init_slice_from_src(SwsSlice *s, uint8_t *const src[4], const int stride[4], int srcW, int lumY, int lumH, int chrY, int chrH, int relative)
Definition: slice.c:148
SwsInternal::srcBpc
int srcBpc
Definition: swscale_internal.h:362
SwsInternal::dither16
uint16_t dither16[8]
Definition: swscale_internal.h:542
planarX_YV12_fn
void(* planarX_YV12_fn)(uint8_t *dst, const uint8_t *src[4], int width, int32_t *rgb2yuv, void *opaque)
Unscaled conversion of arbitrary planar data (e.g.
Definition: swscale_internal.h:319
isFloat16
static av_always_inline int isFloat16(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:887
SwsPlane::available_lines
int available_lines
max number of lines that can be hold by this plane
Definition: swscale_internal.h:1102
SwsInternal::uv_off
ptrdiff_t uv_off
offset (in pixels) between u and v planes
Definition: swscale_internal.h:540
AV_PIX_FMT_RGB48LE
@ AV_PIX_FMT_RGB48LE
packed RGB 16:16:16, 48bpp, 16R, 16G, 16B, the 2-byte value for each R/G/B component is stored as lit...
Definition: pixfmt.h:110
SwsInternal::hyScale
void(* hyScale)(SwsInternal *c, int16_t *dst, int dstW, const uint8_t *src, const int16_t *filter, const int32_t *filterPos, int filterSize)
Scale one horizontal line of input data using a filter over the input lines, to produce one (differen...
Definition: swscale_internal.h:653
SwsInternal::chrXInc
int chrXInc
Definition: swscale_internal.h:358
AV_PIX_FMT_MONOBLACK
@ AV_PIX_FMT_MONOBLACK
Y , 1bpp, 0 is black, 1 is white, in each byte pixels are ordered from the msb to the lsb.
Definition: pixfmt.h:83
RangeList
Definition: swscale_internal.h:84
SwsInternal::chrMmxextFilterCodeSize
int chrMmxextFilterCodeSize
Runtime-generated MMXEXT horizontal fast bilinear scaler code size for chroma planes.
Definition: swscale_internal.h:446
ff_sws_init_swscale_riscv
void ff_sws_init_swscale_riscv(SwsInternal *c)
Definition: swscale.c:74
AV_PIX_FMT_BGR565LE
@ AV_PIX_FMT_BGR565LE
packed BGR 5:6:5, 16bpp, (msb) 5B 6G 5R(lsb), little-endian
Definition: pixfmt.h:118
AV_PIX_FMT_RGBA64LE
@ AV_PIX_FMT_RGBA64LE
packed RGBA 16:16:16:16, 64bpp, 16R, 16G, 16B, 16A, the 2-byte value for each R/G/B/A component is st...
Definition: pixfmt.h:203
SwsInternal::saturation
int saturation
Definition: swscale_internal.h:476
SwsPlane
Slice plane.
Definition: swscale_internal.h:1100
RangeList::nb_ranges
unsigned int nb_ranges
Definition: swscale_internal.h:86
ff_get_unscaled_swscale_ppc
void ff_get_unscaled_swscale_ppc(SwsInternal *c)
Definition: yuv2yuv_altivec.c:187
planarX2_YV12_fn
void(* planarX2_YV12_fn)(uint8_t *dst, uint8_t *dst2, const uint8_t *src[4], int width, int32_t *rgb2yuv, void *opaque)
Definition: swscale_internal.h:322
ff_init_desc_hscale
int ff_init_desc_hscale(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint16_t *filter, int *filter_pos, int filter_size, int xInc)
initializes lum horizontal scaling descriptor
Definition: hscale.c:146
SwsInternal::readLumPlanar
planarX_YV12_fn readLumPlanar
Functions to read planar input, such as planar RGB, and convert internally to Y/UV/A.
Definition: swscale_internal.h:589
SwsInternal::canMMXEXTBeUsed
int canMMXEXTBeUsed
Definition: swscale_internal.h:450
SwsInternal::lastInLumBuf
int lastInLumBuf
Last scaled horizontal luma/alpha line from source in the ring buffer.
Definition: swscale_internal.h:410
ff_sws_init_range_convert_x86
av_cold void ff_sws_init_range_convert_x86(SwsInternal *c)
Definition: swscale.c:474
SwsInternal::slice
struct SwsSlice * slice
Definition: swscale_internal.h:392
AV_PIX_FMT_RGB8
@ AV_PIX_FMT_RGB8
packed RGB 3:3:2, 8bpp, (msb)3R 3G 2B(lsb)
Definition: pixfmt.h:93
SwsInternal::chrMmxFilter
int32_t chrMmxFilter[4 *MAX_FILTER_SIZE]
Definition: swscale_internal.h:529
AV_PIX_FMT_BGR4
@ AV_PIX_FMT_BGR4
packed RGB 1:2:1 bitstream, 4bpp, (msb)1B 2G 1R(lsb), a byte contains two pixels, the first pixel in ...
Definition: pixfmt.h:91
ff_yuv2rgb_init_loongarch
SwsFunc ff_yuv2rgb_init_loongarch(SwsInternal *c)
Definition: swscale_init_loongarch.c:110
SwsInternal::lumXInc
int lumXInc
Definition: swscale_internal.h:358
AV_PIX_FMT_GRAY8
@ AV_PIX_FMT_GRAY8
Y , 8bpp.
Definition: pixfmt.h:81
AV_PIX_FMT_BGR555BE
@ AV_PIX_FMT_BGR555BE
packed BGR 5:5:5, 16bpp, (msb)1X 5B 5G 5R(lsb), big-endian , X=unused/undefined
Definition: pixfmt.h:119
planar2_YV12_fn
void(* planar2_YV12_fn)(uint8_t *dst, uint8_t *dst2, const uint8_t *src, const uint8_t *src2, const uint8_t *src3, int width, uint32_t *pal, void *opaque)
Unscaled conversion of chroma plane to YV12 for horizontal scaler.
Definition: swscale_internal.h:311
SwsInternal::dstXYZ
int dstXYZ
Definition: swscale_internal.h:482
ff_init_desc_no_chr
int ff_init_desc_no_chr(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst)
Definition: hscale.c:284
Range
Definition: vf_colorbalance.c:37
c
Undefined Behavior In the C some operations are like signed integer dereferencing freed accessing outside allocated Undefined Behavior must not occur in a C it is not safe even if the output of undefined operations is unused The unsafety may seem nit picking but Optimizing compilers have in fact optimized code on the assumption that no undefined Behavior occurs Optimizing code based on wrong assumptions can and has in some cases lead to effects beyond the output of computations The signed integer overflow problem in speed critical code Code which is highly optimized and works with signed integers sometimes has the problem that often the output of the computation does not c
Definition: undefined.txt:32
SwsInternal::dstY
int dstY
Last destination vertical line output from last slice.
Definition: swscale_internal.h:453
SwsInternal::yuv2packed2
yuv2packed2_fn yuv2packed2
Definition: swscale_internal.h:573
AV_PIX_FMT_BGR4_BYTE
@ AV_PIX_FMT_BGR4_BYTE
packed RGB 1:2:1, 8bpp, (msb)1B 2G 1R(lsb)
Definition: pixfmt.h:92
ff_range_add
int ff_range_add(RangeList *r, unsigned int start, unsigned int len)
Definition: utils.c:2390
isDataInHighBits
static av_always_inline int isDataInHighBits(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:952
ff_sws_init_xyzdsp
av_cold void ff_sws_init_xyzdsp(SwsInternal *c)
Definition: swscale.c:860
yuv2packedX_fn
void(* yuv2packedX_fn)(SwsInternal *c, const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize, const int16_t *chrFilter, const int16_t **chrUSrc, const int16_t **chrVSrc, int chrFilterSize, const int16_t **alpSrc, uint8_t *dest, int dstW, int y)
Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB output by doing multi-point ver...
Definition: swscale_internal.h:259
SwsInternal::needAlpha
int needAlpha
Definition: swscale_internal.h:415
relative
static IPT relative(const CmsCtx *ctx, IPT ipt)
Definition: cms.c:544
isBE
static av_always_inline int isBE(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:764
AV_PIX_FMT_RGB24
@ AV_PIX_FMT_RGB24
packed RGB 8:8:8, 24bpp, RGBRGB...
Definition: pixfmt.h:75
SwsInternal::parent
SwsContext * parent
Definition: swscale_internal.h:335
SwsInternal::xyz_scratch_allocated
unsigned int xyz_scratch_allocated
Definition: swscale_internal.h:696
SwsInternal::xyz12Torgb48
SwsColorFunc xyz12Torgb48
Definition: swscale_internal.h:563
height
#define height
Definition: dsp.h:89
SwsInternal::yuv2rgb_v2r_coeff
int yuv2rgb_v2r_coeff
Definition: swscale_internal.h:485
SwsFilterDescriptor::dst
SwsSlice * dst
Output slice.
Definition: swscale_internal.h:1132
DECLARE_ALIGNED
#define DECLARE_ALIGNED(n, t, v)
Definition: mem_internal.h:104
ff_sws_init_swscale_ppc
void ff_sws_init_swscale_ppc(SwsInternal *c)
Definition: swscale_altivec.c:233
AV_WN32
#define AV_WN32(p, v)
Definition: intreadwrite.h:372
SwsInternal::yCoeff
uint64_t yCoeff
Definition: swscale_internal.h:520
AV_PIX_FMT_FLAG_RGB
#define AV_PIX_FMT_FLAG_RGB
The pixel format contains RGB-like data (as opposed to YUV/grayscale).
Definition: pixdesc.h:136
fillPlane16
static void fillPlane16(uint8_t *plane, int stride, int width, int height, int y, int alpha, int bits, const int big_endian)
Definition: swscale_internal.h:1062
dst
uint8_t ptrdiff_t const uint8_t ptrdiff_t int intptr_t intptr_t int int16_t * dst
Definition: dsp.h:87
usePal
static av_always_inline int usePal(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:934
av_bswap32
#define av_bswap32
Definition: bswap.h:47
isAnyRGB
static av_always_inline int isAnyRGB(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:872
AV_PIX_FMT_RGB444BE
@ AV_PIX_FMT_RGB444BE
packed RGB 4:4:4, 16bpp, (msb)4X 4R 4G 4B(lsb), big-endian, X=unused/undefined
Definition: pixfmt.h:137
SwsInternal::yuv2rgb_y_coeff
int yuv2rgb_y_coeff
Definition: swscale_internal.h:484
SwsInternal::data_unaligned_warned
atomic_int data_unaligned_warned
Definition: swscale_internal.h:700
planar1_YV12_fn
void(* planar1_YV12_fn)(uint8_t *dst, const uint8_t *src, const uint8_t *src2, const uint8_t *src3, int width, uint32_t *pal, void *opaque)
Unscaled conversion of luma/alpha plane to YV12 for horizontal scaler.
Definition: swscale_internal.h:304
ff_init_desc_chscale
int ff_init_desc_chscale(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint16_t *filter, int *filter_pos, int filter_size, int xInc)
initializes chr horizontal scaling descriptor
Definition: hscale.c:253
isYUV
static av_always_inline int isYUV(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:771
AV_PIX_FMT_FLAG_BITSTREAM
#define AV_PIX_FMT_FLAG_BITSTREAM
All values of a component are bit-wise packed end to end.
Definition: pixdesc.h:124
ff_init_desc_cfmt_convert
int ff_init_desc_cfmt_convert(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint32_t *pal)
initializes chr pixel format conversion descriptor
Definition: hscale.c:238
ff_init_vscale
int ff_init_vscale(SwsInternal *c, SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst)
initializes vertical scaling descriptors
Definition: vscale.c:214
ff_swscale
int ff_swscale(SwsInternal *c, const uint8_t *const src[], const int srcStride[], int srcSliceY, int srcSliceH, uint8_t *const dst[], const int dstStride[], int dstSliceY, int dstSliceH)
Definition: swscale.c:259
frame.h
AV_PIX_FMT_BGR444BE
@ AV_PIX_FMT_BGR444BE
packed BGR 4:4:4, 16bpp, (msb)4X 4B 4G 4R(lsb), big-endian, X=unused/undefined
Definition: pixfmt.h:139
SwsInternal::rgb48Toxyz12
SwsColorFunc rgb48Toxyz12
Definition: swscale_internal.h:564
SwsFilter
Definition: swscale.h:402
SwsLuts
Definition: swscale_internal.h:99
is32BPS
static av_always_inline int is32BPS(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:750
AV_PIX_FMT_RGB32
#define AV_PIX_FMT_RGB32
Definition: pixfmt.h:511
SwsInternal::hChrFilterSize
int hChrFilterSize
Horizontal filter size for chroma pixels.
Definition: swscale_internal.h:440
isBGRinInt
static av_always_inline int isBGRinInt(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:836
SwsInternal::sliceDir
int sliceDir
Direction that slices are fed to the scaler (1 = top-to-bottom, -1 = bottom-to-top).
Definition: swscale_internal.h:368
isSwappedChroma
static av_always_inline int isSwappedChroma(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:971
AV_PIX_FMT_BGR565BE
@ AV_PIX_FMT_BGR565BE
packed BGR 5:6:5, 16bpp, (msb) 5B 6G 5R(lsb), big-endian
Definition: pixfmt.h:117
offset
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf offset
Definition: writing_filters.txt:86
ff_free_filters
int ff_free_filters(SwsInternal *c)
Definition: slice.c:386
ff_init_filters
int ff_init_filters(SwsInternal *c)
Definition: slice.c:246
SwsInternal::is_internal_gamma
int is_internal_gamma
Definition: swscale_internal.h:385
SwsInternal::yuv2packed1
yuv2packed1_fn yuv2packed1
Definition: swscale_internal.h:572
fillPlane32
static void fillPlane32(uint8_t *plane, int stride, int width, int height, int y, int alpha, int bits, const int big_endian, int is_float)
Definition: swscale_internal.h:1076
slicethread.h
half2float.h
SwsInternal::u_temp
uint64_t u_temp
Definition: swscale_internal.h:533
AV_PIX_FMT_FLAG_BAYER
#define AV_PIX_FMT_FLAG_BAYER
The pixel format is following a Bayer pattern.
Definition: pixdesc.h:152
ff_init_gamma_convert
int ff_init_gamma_convert(SwsFilterDescriptor *desc, SwsSlice *src, uint16_t *table)
initializes gamma conversion descriptor
Definition: gamma.c:59
SwsInternal::dstFormatBpp
int dstFormatBpp
Number of bits per pixel of the destination pixel format.
Definition: swscale_internal.h:360
yuv2anyX_fn
void(* yuv2anyX_fn)(SwsInternal *c, const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize, const int16_t *chrFilter, const int16_t **chrUSrc, const int16_t **chrVSrc, int chrFilterSize, const int16_t **alpSrc, uint8_t **dest, int dstW, int y)
Write one line of horizontally scaled Y/U/V/A to YUV/RGB output by doing multi-point vertical scaling...
Definition: swscale_internal.h:293
SwsInternal::hLumFilterPos
int32_t * hLumFilterPos
Array of horizontal filter starting positions for each dst[i] for luma/alpha planes.
Definition: swscale_internal.h:435
AV_PIX_FMT_BGRA64LE
@ AV_PIX_FMT_BGRA64LE
packed RGBA 16:16:16:16, 64bpp, 16B, 16G, 16R, 16A, the 2-byte value for each R/G/B/A component is st...
Definition: pixfmt.h:205
SwsInternal::alpMmxFilter
int32_t alpMmxFilter[4 *MAX_FILTER_SIZE]
Definition: swscale_internal.h:536
SwsInternal::vChrDrop
int vChrDrop
Binary logarithm of extra vertical subsampling factor in source image chroma planes specified by user...
Definition: swscale_internal.h:367
SwsInternal::vrCoeff
uint64_t vrCoeff
Definition: swscale_internal.h:521
SwsInternal::dst_slice_align
unsigned int dst_slice_align
Definition: swscale_internal.h:698
sws
static SwsContext * sws[3]
Definition: swscale.c:73
SwsInternal::yOffset
uint64_t yOffset
Definition: swscale_internal.h:525
AV_PIX_FMT_RGB555LE
@ AV_PIX_FMT_RGB555LE
packed RGB 5:5:5, 16bpp, (msb)1X 5R 5G 5B(lsb), little-endian, X=unused/undefined
Definition: pixfmt.h:115
SwsInternal::yuv2rgb_u2g_coeff
int yuv2rgb_u2g_coeff
Definition: swscale_internal.h:487
SwsInternal::numDesc
int numDesc
Definition: swscale_internal.h:389
AV_PIX_FMT_RGB48BE
@ AV_PIX_FMT_RGB48BE
packed RGB 16:16:16, 48bpp, 16R, 16G, 16B, the 2-byte value for each R/G/B component is stored as big...
Definition: pixfmt.h:109
ff_yuv2rgb_coeffs
const int32_t ff_yuv2rgb_coeffs[11][4]
Definition: yuv2rgb.c:47
log.h
i
#define i(width, name, range_min, range_max)
Definition: cbs_h2645.c:256
SwsInternal::yuv2planeX
yuv2planarX_fn yuv2planeX
Definition: swscale_internal.h:570
ff_copyPlane
void ff_copyPlane(const uint8_t *src, int srcStride, int srcSliceY, int srcSliceH, int width, uint8_t *dst, int dstStride)
Definition: swscale_unscaled.c:125
SwsInternal::chrDstHSubSample
int chrDstHSubSample
Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in destination...
Definition: swscale_internal.h:365
src2
const pixel * src2
Definition: h264pred_template.c:421
SwsInternal::yuv2rgb_y_offset
int yuv2rgb_y_offset
Definition: swscale_internal.h:483
SwsInternal::v_temp
uint64_t v_temp
Definition: swscale_internal.h:534
SwsInternal::cascaded_mainindex
int cascaded_mainindex
Definition: swscale_internal.h:382
common.h
SwsSlice::should_free_lines
int should_free_lines
flag to identify if there are dynamic allocated lines
Definition: swscale_internal.h:1120
av_always_inline
#define av_always_inline
Definition: attributes.h:63
yuv2interleavedX_fn
void(* yuv2interleavedX_fn)(enum AVPixelFormat dstFormat, const uint8_t *chrDither, const int16_t *chrFilter, int chrFilterSize, const int16_t **chrUSrc, const int16_t **chrVSrc, uint8_t *dest, int dstW)
Write one line of horizontally scaled chroma to interleaved output with multi-point vertical scaling ...
Definition: swscale_internal.h:157
graph.h
AV_PIX_FMT_FLAG_BE
#define AV_PIX_FMT_FLAG_BE
Pixel format is big-endian.
Definition: pixdesc.h:116
SwsSlice::is_ring
int is_ring
flag to identify if this slice is a ring buffer
Definition: swscale_internal.h:1119
SwsInternal::ubCoeff
uint64_t ubCoeff
Definition: swscale_internal.h:522
SwsInternal::lumConvertRange
void(* lumConvertRange)(int16_t *dst, int width, uint32_t coeff, int64_t offset)
Color range conversion functions if needed.
Definition: swscale_internal.h:673
len
int len
Definition: vorbis_enc_data.h:426
ff_updateMMXDitherTables
void ff_updateMMXDitherTables(SwsInternal *c, int dstY)
SwsSlice::v_chr_sub_sample
int v_chr_sub_sample
vertical chroma subsampling factor
Definition: swscale_internal.h:1118
AV_PIX_FMT_RGB4_BYTE
@ AV_PIX_FMT_RGB4_BYTE
packed RGB 1:2:1, 8bpp, (msb)1R 2G 1B(lsb)
Definition: pixfmt.h:95
SwsInternal::chrYInc
int chrYInc
Definition: swscale_internal.h:359
SwsSlice
Struct which defines a slice of an image to be scaled or an output for a scaled slice.
Definition: swscale_internal.h:1114
isFloat
static av_always_inline int isFloat(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:880
RangeList::ranges
Range * ranges
Definition: swscale_internal.h:85
SwsInternal::chrDstVSubSample
int chrDstVSubSample
Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in destination i...
Definition: swscale_internal.h:366
AV_PIX_FMT_PAL8
@ AV_PIX_FMT_PAL8
8 bits with AV_PIX_FMT_RGB32 palette
Definition: pixfmt.h:84
yuv2packed1_fn
void(* yuv2packed1_fn)(SwsInternal *c, const int16_t *lumSrc, const int16_t *chrUSrc[2], const int16_t *chrVSrc[2], const int16_t *alpSrc, uint8_t *dest, int dstW, int uvalpha, int y)
Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB output without any additional v...
Definition: swscale_internal.h:194
SwsInternal::vLumFilter
int16_t * vLumFilter
Array of vertical filter coefficients for luma/alpha planes.
Definition: swscale_internal.h:433
SwsFilterDescriptor::alpha
int alpha
Flag for processing alpha channel.
Definition: swscale_internal.h:1134
SwsInternal
Definition: swscale_internal.h:330
SwsColorXform::mat
int16_t mat[3][3]
Definition: swscale_internal.h:106
pixfmt.h
ff_dither8
const uint64_t ff_dither8[2]
Definition: swscale.c:37
ff_sws_init_swscale_arm
void ff_sws_init_swscale_arm(SwsInternal *c)
Definition: swscale.c:33
SwsInternal::vLumFilterPos
int32_t * vLumFilterPos
Array of vertical filter starting positions for each dst[i] for luma/alpha planes.
Definition: swscale_internal.h:437
SwsInternal::rgb2xyz
SwsColorXform rgb2xyz
Definition: swscale_internal.h:566
yuv2planarX_fn
void(* yuv2planarX_fn)(const int16_t *filter, int filterSize, const int16_t **src, uint8_t *dest, int dstW, const uint8_t *dither, int offset)
Write one line of horizontally scaled data to planar output with multi-point vertical scaling between...
Definition: swscale_internal.h:137
SwsInternal::chrDither8
const uint8_t * chrDither8
Definition: swscale_internal.h:545
SwsInternal::table_bU
uint8_t * table_bU[256+2 *YUVRGB_TABLE_HEADROOM]
Definition: swscale_internal.h:460
SwsInternal::convert_unscaled
SwsFunc convert_unscaled
Note that src, dst, srcStride, dstStride will be copied in the sws_scale() wrapper so they can be fre...
Definition: swscale_internal.h:353
SwsInternal::hyscale_fast
void(* hyscale_fast)(SwsInternal *c, int16_t *dst, int dstWidth, const uint8_t *src, int srcW, int xInc)
Scale one horizontal line of input data using a bilinear filter to produce one line of output data.
Definition: swscale_internal.h:613
MAX_SLICE_PLANES
#define MAX_SLICE_PLANES
Definition: swscale_internal.h:1097
SwsInternal::src0Alpha
int src0Alpha
Definition: swscale_internal.h:479
ff_init_vscale_pfn
void ff_init_vscale_pfn(SwsInternal *c, yuv2planar1_fn yuv2plane1, yuv2planarX_fn yuv2planeX, yuv2interleavedX_fn yuv2nv12cX, yuv2packed1_fn yuv2packed1, yuv2packed2_fn yuv2packed2, yuv2packedX_fn yuv2packedX, yuv2anyX_fn yuv2anyX, int use_mmx)
setup vertical scaler functions
Definition: vscale.c:258
isPackedRGB
static av_always_inline int isPackedRGB(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:919
ff_sws_fill_xyztables
av_cold int ff_sws_fill_xyztables(SwsInternal *c)
Definition: utils.c:722
SwsInternal::xyz2rgb
SwsColorXform xyz2rgb
Definition: swscale_internal.h:565
SwsLuts::out
uint16_t * out
Definition: swscale_internal.h:101
SwsInternal::chrSrcHSubSample
int chrSrcHSubSample
Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in source imag...
Definition: swscale_internal.h:363
SwsInternal::blueDither
uint64_t blueDither
Definition: swscale_internal.h:518
AV_PIX_FMT_FLAG_PLANAR
#define AV_PIX_FMT_FLAG_PLANAR
At least one pixel component is not in the first data plane.
Definition: pixdesc.h:132
ff_get_unscaled_swscale_aarch64
void ff_get_unscaled_swscale_aarch64(SwsInternal *c)
Definition: swscale_unscaled.c:218
SwsInternal::descIndex
int descIndex[2]
Definition: swscale_internal.h:390
AV_PIX_FMT_RGB565BE
@ AV_PIX_FMT_RGB565BE
packed RGB 5:6:5, 16bpp, (msb) 5R 6G 5B(lsb), big-endian
Definition: pixfmt.h:112
SwsInternal::hChrFilterPos
int32_t * hChrFilterPos
Array of horizontal filter starting positions for each dst[i] for chroma planes.
Definition: swscale_internal.h:436
SwsInternal::warned_unuseable_bilinear
int warned_unuseable_bilinear
Definition: swscale_internal.h:451
ff_yuv2rgb_get_func_ptr
SwsFunc ff_yuv2rgb_get_func_ptr(SwsInternal *c)
SwsInternal::gamma
uint16_t * gamma
Definition: swscale_internal.h:386
SwsInternal::numSlice
int numSlice
Definition: swscale_internal.h:391
desc
const char * desc
Definition: libsvtav1.c:78
DITHER32_INT
#define DITHER32_INT
Definition: swscale_internal.h:514
SwsInternal::vChrFilter
int16_t * vChrFilter
Array of vertical filter coefficients for chroma planes.
Definition: swscale_internal.h:434
SwsInternal::graph
SwsGraph * graph[2]
Definition: swscale_internal.h:343
SwsInternal::pal_yuv
uint32_t pal_yuv[256]
Definition: swscale_internal.h:395
isBayer16BPS
static av_always_inline int isBayer16BPS(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:865
SwsInternal::chrSrcVSubSample
int chrSrcVSubSample
Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in source image.
Definition: swscale_internal.h:364
SwsInternal::dst0Alpha
int dst0Alpha
Definition: swscale_internal.h:480
SwsPlane::sliceY
int sliceY
index of first line
Definition: swscale_internal.h:1103
SwsInternal::dst_slice_height
int dst_slice_height
Definition: swscale_internal.h:347
SwsGraph
Filter graph, which represents a 'baked' pixel format conversion.
Definition: graph.h:108
AVPixFmtDescriptor
Descriptor that unambiguously describes how the bits of a pixel are stored in the up to 4 data planes...
Definition: pixdesc.h:69
AV_PIX_FMT_BGR555LE
@ AV_PIX_FMT_BGR555LE
packed BGR 5:5:5, 16bpp, (msb)1X 5B 5G 5R(lsb), little-endian, X=unused/undefined
Definition: pixfmt.h:120
SwsInternal::readChrPlanar
planarX2_YV12_fn readChrPlanar
Definition: swscale_internal.h:591
util_altivec.h
SwsInternal::yuv2plane1
yuv2planar1_fn yuv2plane1
Definition: swscale_internal.h:569
lum
static double lum(void *priv, double x, double y, int plane)
Definition: vf_fftfilt.c:107
alpha
static const int16_t alpha[]
Definition: ilbcdata.h:55
SwsInternal::chrToYV12
planar2_YV12_fn chrToYV12
Definition: swscale_internal.h:582
SwsFunc
int(* SwsFunc)(SwsInternal *c, const uint8_t *const src[], const int srcStride[], int srcSliceY, int srcSliceH, uint8_t *const dst[], const int dstStride[])
Definition: swscale_internal.h:92
isRGBinInt
static av_always_inline int isRGBinInt(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:814
SwsInternal::dst_slice_start
int dst_slice_start
Definition: swscale_internal.h:346
ff_sws_init_range_convert_riscv
av_cold void ff_sws_init_range_convert_riscv(SwsInternal *c)
Definition: swscale.c:29
int32_t
int32_t
Definition: audioconvert.c:56
SwsInternal::lumConvertRange_offset
int64_t lumConvertRange_offset
Definition: swscale_internal.h:681
SwsInternal::hcScale
void(* hcScale)(SwsInternal *c, int16_t *dst, int dstW, const uint8_t *src, const int16_t *filter, const int32_t *filterPos, int filterSize)
Definition: swscale_internal.h:656
coeff
static const double coeff[2][5]
Definition: vf_owdenoise.c:80
SwsColorXform
Definition: swscale_internal.h:104
sws_internal
static SwsInternal * sws_internal(const SwsContext *sws)
Definition: swscale_internal.h:74
SwsInternal::srcColorspaceTable
int srcColorspaceTable[4]
Definition: swscale_internal.h:477
ff_init_desc_fmt_convert
int ff_init_desc_fmt_convert(SwsFilterDescriptor *desc, SwsSlice *src, SwsSlice *dst, uint32_t *pal)
initializes lum pixel format conversion descriptor
Definition: hscale.c:129
h
h
Definition: vp9dsp_template.c:2070
SwsInternal::lumMmxextFilterCodeSize
int lumMmxextFilterCodeSize
Runtime-generated MMXEXT horizontal fast bilinear scaler code size for luma/alpha planes.
Definition: swscale_internal.h:445
stride
#define stride
Definition: h264pred_template.c:536
isPlanar
static av_always_inline int isPlanar(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:912
SwsInternal::vgCoeff
uint64_t vgCoeff
Definition: swscale_internal.h:523
width
#define width
Definition: dsp.h:89
ff_get_unscaled_swscale_arm
void ff_get_unscaled_swscale_arm(SwsInternal *c)
Definition: swscale_unscaled.c:185
av_bswap16
#define av_bswap16
Definition: bswap.h:28
SwsContext
Main external API structure.
Definition: swscale.h:189
AV_PIX_FMT_FLAG_PAL
#define AV_PIX_FMT_FLAG_PAL
Pixel format has a palette in data[1], values are indexes in this palette.
Definition: pixdesc.h:120
AV_PIX_FMT_BGR444LE
@ AV_PIX_FMT_BGR444LE
packed BGR 4:4:4, 16bpp, (msb)4X 4B 4G 4R(lsb), little-endian, X=unused/undefined
Definition: pixfmt.h:138
SwsInternal::chrSrcW
int chrSrcW
Width of source chroma planes.
Definition: swscale_internal.h:354
ff_update_palette
void ff_update_palette(SwsInternal *c, const uint32_t *pal)
Definition: swscale.c:870
SwsLuts::in
uint16_t * in
Definition: swscale_internal.h:100
SwsInternal::yuv2nv12cX
yuv2interleavedX_fn yuv2nv12cX
Definition: swscale_internal.h:571
SwsInternal::lumDither8
const uint8_t * lumDither8
Definition: swscale_internal.h:545
SwsInternal::lumYInc
int lumYInc
Definition: swscale_internal.h:359
SwsInternal::gamma_value
double gamma_value
Definition: swscale_internal.h:384
ff_dither_4x4_16
const uint8_t ff_dither_4x4_16[5][8]
Definition: output.c:52
ff_hcscale_fast_c
void ff_hcscale_fast_c(SwsInternal *c, int16_t *dst1, int16_t *dst2, int dstWidth, const uint8_t *src1, const uint8_t *src2, int srcW, int xInc)
Definition: hscale_fast_bilinear.c:38
SwsInternal::uv_offx2
ptrdiff_t uv_offx2
offset (in bytes) between u and v planes
Definition: swscale_internal.h:541
src
#define src
Definition: vp8dsp.c:248
swscale.h
SwsInternal::chrConvertRange_offset
int64_t chrConvertRange_offset
Definition: swscale_internal.h:682
ff_dither_2x2_4
const uint8_t ff_dither_2x2_4[3][8]
Definition: output.c:40
SwsInternal::yuv2packedX
yuv2packedX_fn yuv2packedX
Definition: swscale_internal.h:574
isALPHA
static av_always_inline int isALPHA(enum AVPixelFormat pix_fmt)
Definition: swscale_internal.h:894
SwsInternal::hChrFilter
int16_t * hChrFilter
Array of horizontal filter coefficients for chroma planes.
Definition: swscale_internal.h:432
SwsInternal::vOffset
uint64_t vOffset
Definition: swscale_internal.h:527
AV_PIX_FMT_BGR48BE
@ AV_PIX_FMT_BGR48BE
packed RGB 16:16:16, 48bpp, 16B, 16G, 16R, the 2-byte value for each R/G/B component is stored as big...
Definition: pixfmt.h:145
AV_WN16
#define AV_WN16(p, v)
Definition: intreadwrite.h:368