swscale_internal.h 34.0 KB
Newer Older
1
/*
M
Michael Niedermayer 已提交
2
 * Copyright (C) 2001-2011 Michael Niedermayer <michaelni@gmx.at>
3 4 5
 *
 * This file is part of FFmpeg.
 *
6 7 8 9
 * FFmpeg is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2.1 of the License, or (at your option) any later version.
10 11 12
 *
 * FFmpeg is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 14
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
15
 *
16 17
 * You should have received a copy of the GNU Lesser General Public
 * 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 22
#ifndef SWSCALE_SWSCALE_INTERNAL_H
#define SWSCALE_SWSCALE_INTERNAL_H
23

24 25
#include "config.h"

26
#if HAVE_ALTIVEC_H
27 28 29
#include <altivec.h>
#endif

30
#include "libavutil/avassert.h"
31
#include "libavutil/avutil.h"
32
#include "libavutil/common.h"
M
Mans Rullgard 已提交
33
#include "libavutil/log.h"
34
#include "libavutil/pixfmt.h"
35
#include "libavutil/pixdesc.h"
36

37
#define STR(s) AV_TOSTRING(s) // AV_STRINGIFY is too long
38

39 40
#define YUVRGB_TABLE_HEADROOM 128

41
#define FAST_BGR2YV12 // use 7-bit instead of 15-bit coefficients
42

43 44
#define MAX_FILTER_SIZE 256

45 46
#define DITHER1XBPP

47
#if HAVE_BIGENDIAN
48 49 50
#define ALT32_CORR (-1)
#else
#define ALT32_CORR   1
51 52
#endif

53
#if ARCH_X86_64
54
#   define APCK_PTR2  8
55 56 57
#   define APCK_COEF 16
#   define APCK_SIZE 24
#else
58 59
#   define APCK_PTR2  4
#   define APCK_COEF  8
60
#   define APCK_SIZE 16
61 62
#endif

63 64
struct SwsContext;

65
typedef int (*SwsFunc)(struct SwsContext *context, const uint8_t *src[],
66
                       int srcStride[], int srcSliceY, int srcSliceH,
67
                       uint8_t *dst[], int dstStride[]);
68

69
/**
70
 * Write one line of horizontally scaled data to planar output
71 72
 * without any additional vertical scaling (or point-scaling).
 *
73
 * @param src     scaled source data, 15bit for 8-10bit output,
74
 *                19-bit for 16bit output (in int32_t)
75
 * @param dest    pointer to the output plane. For >8bit
76
 *                output, this is in uint16_t
77 78 79
 * @param dstW    width of destination in pixels
 * @param dither  ordered dither array of type int16_t and size 8
 * @param offset  Dither offset
80
 */
81 82
typedef void (*yuv2planar1_fn)(const int16_t *src, uint8_t *dest, int dstW,
                               const uint8_t *dither, int offset);
83

84
/**
K
Kieran Kunhya 已提交
85
 * Write one line of horizontally scaled data to planar output
86 87
 * with multi-point vertical scaling between input pixels.
 *
K
Kieran Kunhya 已提交
88 89
 * @param filter        vertical luma/alpha scaling coefficients, 12bit [0,4096]
 * @param src           scaled luma (Y) or alpha (A) source data, 15bit for 8-10bit output,
90
 *                      19-bit for 16bit output (in int32_t)
K
Kieran Kunhya 已提交
91 92 93 94 95 96
 * @param filterSize    number of vertical input lines to scale
 * @param dest          pointer to output plane. For >8bit
 *                      output, this is in uint16_t
 * @param dstW          width of destination pixels
 * @param offset        Dither offset
 */
97 98 99
typedef void (*yuv2planarX_fn)(const int16_t *filter, int filterSize,
                               const int16_t **src, uint8_t *dest, int dstW,
                               const uint8_t *dither, int offset);
K
Kieran Kunhya 已提交
100 101 102 103 104 105

/**
 * Write one line of horizontally scaled chroma to interleaved output
 * with multi-point vertical scaling between input pixels.
 *
 * @param c             SWS scaling context
106
 * @param chrFilter     vertical chroma scaling coefficients, 12bit [0,4096]
107 108 109 110
 * @param chrUSrc       scaled chroma (U) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
 * @param chrVSrc       scaled chroma (V) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
111
 * @param chrFilterSize number of vertical chroma input lines to scale
K
Kieran Kunhya 已提交
112
 * @param dest          pointer to the output plane. For >8bit
113
 *                      output, this is in uint16_t
K
Kieran Kunhya 已提交
114
 * @param dstW          width of chroma planes
115
 */
116 117 118 119 120 121
typedef void (*yuv2interleavedX_fn)(struct SwsContext *c,
                                    const int16_t *chrFilter,
                                    int chrFilterSize,
                                    const int16_t **chrUSrc,
                                    const int16_t **chrVSrc,
                                    uint8_t *dest, int dstW);
K
Kieran Kunhya 已提交
122

123 124 125 126 127 128
/**
 * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
 * output without any additional vertical scaling (or point-scaling). Note
 * that this function may do chroma scaling, see the "uvalpha" argument.
 *
 * @param c       SWS scaling context
129 130 131 132 133 134 135 136 137 138
 * @param lumSrc  scaled luma (Y) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param chrUSrc scaled chroma (U) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param chrVSrc scaled chroma (V) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param alpSrc  scaled alpha (A) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param dest    pointer to the output plane. For 16bit output, this is
 *                uint16_t
139 140 141 142 143 144 145 146 147 148 149 150 151
 * @param dstW    width of lumSrc and alpSrc in pixels, number of pixels
 *                to write into dest[]
 * @param uvalpha chroma scaling coefficient for the second line of chroma
 *                pixels, either 2048 or 0. If 0, one chroma input is used
 *                for 2 output pixels (or if the SWS_FLAG_FULL_CHR_INT flag
 *                is set, it generates 1 output pixel). If 2048, two chroma
 *                input pixels should be averaged for 2 output pixels (this
 *                only happens if SWS_FLAG_FULL_CHR_INT is not set)
 * @param y       vertical line number for this output. This does not need
 *                to be used to calculate the offset in the destination,
 *                but can be used to generate comfort noise using dithering
 *                for some output formats.
 */
152 153 154 155 156
typedef void (*yuv2packed1_fn)(struct SwsContext *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);
157 158 159 160 161
/**
 * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
 * output by doing bilinear scaling between two input lines.
 *
 * @param c       SWS scaling context
162 163 164 165 166 167 168 169 170 171
 * @param lumSrc  scaled luma (Y) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param chrUSrc scaled chroma (U) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param chrVSrc scaled chroma (V) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param alpSrc  scaled alpha (A) source data, 15bit for 8-10bit output,
 *                19-bit for 16bit output (in int32_t)
 * @param dest    pointer to the output plane. For 16bit output, this is
 *                uint16_t
172 173 174 175 176 177 178 179 180 181 182 183 184
 * @param dstW    width of lumSrc and alpSrc in pixels, number of pixels
 *                to write into dest[]
 * @param yalpha  luma/alpha scaling coefficients for the second input line.
 *                The first line's coefficients can be calculated by using
 *                4096 - yalpha
 * @param uvalpha chroma scaling coefficient for the second input line. The
 *                first line's coefficients can be calculated by using
 *                4096 - uvalpha
 * @param y       vertical line number for this output. This does not need
 *                to be used to calculate the offset in the destination,
 *                but can be used to generate comfort noise using dithering
 *                for some output formats.
 */
185 186 187 188 189 190
typedef void (*yuv2packed2_fn)(struct SwsContext *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);
191 192 193 194 195 196
/**
 * Write one line of horizontally scaled Y/U/V/A to packed-pixel YUV/RGB
 * output by doing multi-point vertical scaling between input pixels.
 *
 * @param c             SWS scaling context
 * @param lumFilter     vertical luma/alpha scaling coefficients, 12bit [0,4096]
197 198
 * @param lumSrc        scaled luma (Y) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
199 200
 * @param lumFilterSize number of vertical luma/alpha input lines to scale
 * @param chrFilter     vertical chroma scaling coefficients, 12bit [0,4096]
201 202 203 204
 * @param chrUSrc       scaled chroma (U) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
 * @param chrVSrc       scaled chroma (V) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
205
 * @param chrFilterSize number of vertical chroma input lines to scale
206 207 208 209
 * @param alpSrc        scaled alpha (A) source data, 15bit for 8-10bit output,
 *                      19-bit for 16bit output (in int32_t)
 * @param dest          pointer to the output plane. For 16bit output, this is
 *                      uint16_t
210 211 212 213 214 215 216
 * @param dstW          width of lumSrc and alpSrc in pixels, number of pixels
 *                      to write into dest[]
 * @param y             vertical line number for this output. This does not need
 *                      to be used to calculate the offset in the destination,
 *                      but can be used to generate comfort noise using dithering
 *                      or some output formats.
 */
217 218 219 220 221 222 223
typedef void (*yuv2packedX_fn)(struct SwsContext *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);
224

225
/* This struct should be aligned on at least a 32-byte boundary. */
R
Ramiro Polla 已提交
226
typedef struct SwsContext {
227 228 229
    /**
     * info on struct for av_log
     */
230
    const AVClass *av_class;
231 232

    /**
D
Diego Biurrun 已提交
233 234
     * Note that src, dst, srcStride, dstStride will be copied in the
     * sws_scale() wrapper so they can be freely modified here.
235 236
     */
    SwsFunc swScale;
R
Ramiro Polla 已提交
237 238 239 240 241 242 243
    int srcW;                     ///< Width  of source      luma/alpha planes.
    int srcH;                     ///< Height of source      luma/alpha planes.
    int dstH;                     ///< Height of destination luma/alpha planes.
    int chrSrcW;                  ///< Width  of source      chroma     planes.
    int chrSrcH;                  ///< Height of source      chroma     planes.
    int chrDstW;                  ///< Width  of destination chroma     planes.
    int chrDstH;                  ///< Height of destination chroma     planes.
244 245
    int lumXInc, chrXInc;
    int lumYInc, chrYInc;
246 247
    enum AVPixelFormat dstFormat; ///< Destination pixel format.
    enum AVPixelFormat srcFormat; ///< Source      pixel format.
248 249
    int dstFormatBpp;             ///< Number of bits per pixel of the destination pixel format.
    int srcFormatBpp;             ///< Number of bits per pixel of the source      pixel format.
250
    int dstBpc, srcBpc;
R
Ramiro Polla 已提交
251 252 253 254 255 256
    int chrSrcHSubSample;         ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in source      image.
    int chrSrcVSubSample;         ///< Binary logarithm of vertical   subsampling factor between luma/alpha and chroma planes in source      image.
    int chrDstHSubSample;         ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in destination image.
    int chrDstVSubSample;         ///< Binary logarithm of vertical   subsampling factor between luma/alpha and chroma planes in destination image.
    int vChrDrop;                 ///< Binary logarithm of extra vertical subsampling factor in source image chroma planes specified by user.
    int sliceDir;                 ///< Direction that slices are fed to the scaler (1 = top-to-bottom, -1 = bottom-to-top).
R
Ramiro Polla 已提交
257
    double param[2];              ///< Input parameters for scaling algorithms that need them.
258

259 260 261
    uint32_t pal_yuv[256];
    uint32_t pal_rgb[256];

R
Ramiro Polla 已提交
262 263 264 265 266 267 268 269 270 271 272
    /**
     * @name Scaled horizontal lines ring buffer.
     * The horizontal scaler keeps just enough scaled lines in a ring buffer
     * so they may be passed to the vertical scaler. The pointers to the
     * allocated buffers for each line are duplicated in sequence in the ring
     * buffer to simplify indexing and avoid wrapping around between lines
     * inside the vertical scaler code. The wrapping is done before the
     * vertical scaler is called.
     */
    //@{
    int16_t **lumPixBuf;          ///< Ring buffer for scaled horizontal luma   plane lines to be fed to the vertical scaler.
273 274
    int16_t **chrUPixBuf;         ///< Ring buffer for scaled horizontal chroma plane lines to be fed to the vertical scaler.
    int16_t **chrVPixBuf;         ///< Ring buffer for scaled horizontal chroma plane lines to be fed to the vertical scaler.
R
Ramiro Polla 已提交
275
    int16_t **alpPixBuf;          ///< Ring buffer for scaled horizontal alpha  plane lines to be fed to the vertical scaler.
276 277 278 279 280 281
    int vLumBufSize;              ///< Number of vertical luma/alpha lines allocated in the ring buffer.
    int vChrBufSize;              ///< Number of vertical chroma     lines allocated in the ring buffer.
    int lastInLumBuf;             ///< Last scaled horizontal luma/alpha line from source in the ring buffer.
    int lastInChrBuf;             ///< Last scaled horizontal chroma     line from source in the ring buffer.
    int lumBufIndex;              ///< Index in ring buffer of the last scaled horizontal luma/alpha line from source.
    int chrBufIndex;              ///< Index in ring buffer of the last scaled horizontal chroma     line from source.
R
Ramiro Polla 已提交
282
    //@}
283

284
    uint8_t *formatConvBuffer;
285

R
Ramiro Polla 已提交
286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303
    /**
     * @name Horizontal and vertical filters.
     * To better understand the following fields, here is a pseudo-code of
     * their usage in filtering a horizontal line:
     * @code
     * for (i = 0; i < width; i++) {
     *     dst[i] = 0;
     *     for (j = 0; j < filterSize; j++)
     *         dst[i] += src[ filterPos[i] + j ] * filter[ filterSize * i + j ];
     *     dst[i] >>= FRAC_BITS; // The actual implementation is fixed-point.
     * }
     * @endcode
     */
    //@{
    int16_t *hLumFilter;          ///< Array of horizontal filter coefficients for luma/alpha planes.
    int16_t *hChrFilter;          ///< Array of horizontal filter coefficients for chroma     planes.
    int16_t *vLumFilter;          ///< Array of vertical   filter coefficients for luma/alpha planes.
    int16_t *vChrFilter;          ///< Array of vertical   filter coefficients for chroma     planes.
304 305 306 307
    int32_t *hLumFilterPos;       ///< Array of horizontal filter starting positions for each dst[i] for luma/alpha planes.
    int32_t *hChrFilterPos;       ///< Array of horizontal filter starting positions for each dst[i] for chroma     planes.
    int32_t *vLumFilterPos;       ///< Array of vertical   filter starting positions for each dst[i] for luma/alpha planes.
    int32_t *vChrFilterPos;       ///< Array of vertical   filter starting positions for each dst[i] for chroma     planes.
308 309 310 311
    int hLumFilterSize;           ///< Horizontal filter size for luma/alpha pixels.
    int hChrFilterSize;           ///< Horizontal filter size for chroma     pixels.
    int vLumFilterSize;           ///< Vertical   filter size for luma/alpha pixels.
    int vChrFilterSize;           ///< Vertical   filter size for chroma     pixels.
R
Ramiro Polla 已提交
312
    //@}
313

R
Ramiro Polla 已提交
314 315 316 317
    int lumMmx2FilterCodeSize;    ///< Runtime-generated MMX2 horizontal fast bilinear scaler code size for luma/alpha planes.
    int chrMmx2FilterCodeSize;    ///< Runtime-generated MMX2 horizontal fast bilinear scaler code size for chroma     planes.
    uint8_t *lumMmx2FilterCode;   ///< Runtime-generated MMX2 horizontal fast bilinear scaler code for luma/alpha planes.
    uint8_t *chrMmx2FilterCode;   ///< Runtime-generated MMX2 horizontal fast bilinear scaler code for chroma     planes.
318 319 320

    int canMMX2BeUsed;

R
Ramiro Polla 已提交
321 322
    int dstY;                     ///< Last destination vertical line output from last slice.
    int flags;                    ///< Flags passed by the user to select scaler algorithm, optimizations, subsampling, etc...
323
    void *yuvTable;             // pointer to the yuv->rgb table start so it can be freed()
324 325 326 327
    uint8_t *table_rV[256 + 2*YUVRGB_TABLE_HEADROOM];
    uint8_t *table_gU[256 + 2*YUVRGB_TABLE_HEADROOM];
    int table_gV[256 + 2*YUVRGB_TABLE_HEADROOM];
    uint8_t *table_bU[256 + 2*YUVRGB_TABLE_HEADROOM];
328 329 330 331 332

    //Colorspace stuff
    int contrast, brightness, saturation;    // for sws_getColorspaceDetails
    int srcColorspaceTable[4];
    int dstColorspaceTable[4];
R
Ramiro Polla 已提交
333 334
    int srcRange;                 ///< 0 = MPG YUV range, 1 = JPG YUV range (source      image).
    int dstRange;                 ///< 0 = MPG YUV range, 1 = JPG YUV range (destination image).
335 336
    int src0Alpha;
    int dst0Alpha;
337 338 339 340 341 342
    int yuv2rgb_y_offset;
    int yuv2rgb_y_coeff;
    int yuv2rgb_v2r_coeff;
    int yuv2rgb_v2g_coeff;
    int yuv2rgb_u2g_coeff;
    int yuv2rgb_u2b_coeff;
343 344 345 346 347 348 349 350 351 352 353 354

#define RED_DITHER            "0*8"
#define GREEN_DITHER          "1*8"
#define BLUE_DITHER           "2*8"
#define Y_COEFF               "3*8"
#define VR_COEFF              "4*8"
#define UB_COEFF              "5*8"
#define VG_COEFF              "6*8"
#define UG_COEFF              "7*8"
#define Y_OFFSET              "8*8"
#define U_OFFSET              "9*8"
#define V_OFFSET              "10*8"
355 356
#define LUM_MMX_FILTER_OFFSET "11*8"
#define CHR_MMX_FILTER_OFFSET "11*8+4*4*256"
357
#define DSTW_OFFSET           "11*8+4*4*256*2" //do not change, it is hardcoded in the ASM
358 359 360 361
#define ESP_OFFSET            "11*8+4*4*256*2+8"
#define VROUNDER_OFFSET       "11*8+4*4*256*2+16"
#define U_TEMP                "11*8+4*4*256*2+24"
#define V_TEMP                "11*8+4*4*256*2+32"
C
Cédric Schieli 已提交
362
#define Y_TEMP                "11*8+4*4*256*2+40"
R
Ronald S. Bultje 已提交
363 364 365 366 367
#define ALP_MMX_FILTER_OFFSET "11*8+4*4*256*2+48"
#define UV_OFF_PX             "11*8+4*4*256*3+48"
#define UV_OFF_BYTE           "11*8+4*4*256*3+56"
#define DITHER16              "11*8+4*4*256*3+64"
#define DITHER32              "11*8+4*4*256*3+80"
368

369 370 371 372 373 374 375 376 377 378 379 380
    DECLARE_ALIGNED(8, uint64_t, redDither);
    DECLARE_ALIGNED(8, uint64_t, greenDither);
    DECLARE_ALIGNED(8, uint64_t, blueDither);

    DECLARE_ALIGNED(8, uint64_t, yCoeff);
    DECLARE_ALIGNED(8, uint64_t, vrCoeff);
    DECLARE_ALIGNED(8, uint64_t, ubCoeff);
    DECLARE_ALIGNED(8, uint64_t, vgCoeff);
    DECLARE_ALIGNED(8, uint64_t, ugCoeff);
    DECLARE_ALIGNED(8, uint64_t, yOffset);
    DECLARE_ALIGNED(8, uint64_t, uOffset);
    DECLARE_ALIGNED(8, uint64_t, vOffset);
381 382
    int32_t lumMmxFilter[4 * MAX_FILTER_SIZE];
    int32_t chrMmxFilter[4 * MAX_FILTER_SIZE];
R
Ramiro Polla 已提交
383
    int dstW;                     ///< Width  of destination luma/alpha planes.
384 385 386 387 388
    DECLARE_ALIGNED(8, uint64_t, esp);
    DECLARE_ALIGNED(8, uint64_t, vRounder);
    DECLARE_ALIGNED(8, uint64_t, u_temp);
    DECLARE_ALIGNED(8, uint64_t, v_temp);
    DECLARE_ALIGNED(8, uint64_t, y_temp);
R
Ronald S. Bultje 已提交
389
    int32_t alpMmxFilter[4 * MAX_FILTER_SIZE];
390 391 392
    // alignment of these values is not necessary, but merely here
    // to maintain the same offset across x8632 and x86-64. Once we
    // use proper offset macros in the asm, they can be removed.
393
    DECLARE_ALIGNED(8, ptrdiff_t, uv_off); ///< offset (in pixels) between u and v planes
394
    DECLARE_ALIGNED(8, ptrdiff_t, uv_offx2); ///< offset (in bytes) between u and v planes
395 396
    DECLARE_ALIGNED(8, uint16_t, dither16)[8];
    DECLARE_ALIGNED(8, uint32_t, dither32)[8];
M
Michael Niedermayer 已提交
397

398 399
    const uint8_t *chrDither8, *lumDither8;

400
#if HAVE_ALTIVEC
R
Ramiro Polla 已提交
401 402 403 404 405 406 407
    vector signed short   CY;
    vector signed short   CRV;
    vector signed short   CBU;
    vector signed short   CGU;
    vector signed short   CGV;
    vector signed short   OY;
    vector unsigned short CSHIFT;
408
    vector signed short  *vYCoeffsBank, *vCCoeffsBank;
M
Michael Niedermayer 已提交
409 410
#endif

411
#if ARCH_BFIN
412 413 414 415 416 417 418 419 420 421 422
    DECLARE_ALIGNED(4, uint32_t, oy);
    DECLARE_ALIGNED(4, uint32_t, oc);
    DECLARE_ALIGNED(4, uint32_t, zero);
    DECLARE_ALIGNED(4, uint32_t, cy);
    DECLARE_ALIGNED(4, uint32_t, crv);
    DECLARE_ALIGNED(4, uint32_t, rmask);
    DECLARE_ALIGNED(4, uint32_t, cbu);
    DECLARE_ALIGNED(4, uint32_t, bmask);
    DECLARE_ALIGNED(4, uint32_t, cgu);
    DECLARE_ALIGNED(4, uint32_t, cgv);
    DECLARE_ALIGNED(4, uint32_t, gmask);
423 424
#endif

425
#if HAVE_VIS
426
    DECLARE_ALIGNED(8, uint64_t, sparc_coeffs)[10];
D
Denes Balatoni 已提交
427
#endif
428
    int use_mmx_vfilter;
429

430
    /* function pointers for swScale() */
431 432 433
    yuv2planar1_fn yuv2plane1;
    yuv2planarX_fn yuv2planeX;
    yuv2interleavedX_fn yuv2nv12cX;
434 435 436
    yuv2packed1_fn yuv2packed1;
    yuv2packed2_fn yuv2packed2;
    yuv2packedX_fn yuv2packedX;
437

438
    /// Unscaled conversion of luma plane to YV12 for horizontal scaler.
439
    void (*lumToYV12)(uint8_t *dst, const uint8_t *src, const uint8_t *src2, const uint8_t *src3,
440 441
                      int width, uint32_t *pal);
    /// Unscaled conversion of alpha plane to YV12 for horizontal scaler.
442
    void (*alpToYV12)(uint8_t *dst, const uint8_t *src, const uint8_t *src2, const uint8_t *src3,
443 444
                      int width, uint32_t *pal);
    /// Unscaled conversion of chroma planes to YV12 for horizontal scaler.
445
    void (*chrToYV12)(uint8_t *dstU, uint8_t *dstV,
446
                      const uint8_t *src1, const uint8_t *src2, const uint8_t *src3,
447
                      int width, uint32_t *pal);
448 449

    /**
450 451 452
     * Functions to read planar input, such as planar RGB, and convert
     * internally to Y/UV.
     */
453 454
    /** @{ */
    void (*readLumPlanar)(uint8_t *dst, const uint8_t *src[4], int width);
455 456
    void (*readChrPlanar)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src[4],
                          int width);
457 458
    /** @} */

459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477
    /**
     * Scale one horizontal line of input data using a bilinear filter
     * to produce one line of output data. Compared to SwsContext->hScale(),
     * please take note of the following caveats when using these:
     * - Scaling is done using only 7bit instead of 14bit coefficients.
     * - You can use no more than 5 input pixels to produce 4 output
     *   pixels. Therefore, this filter should not be used for downscaling
     *   by more than ~20% in width (because that equals more than 5/4th
     *   downscaling and thus more than 5 pixels input per 4 pixels output).
     * - In general, bilinear filters create artifacts during downscaling
     *   (even when <20%), because one output pixel will span more than one
     *   input pixel, and thus some pixels will need edges of both neighbor
     *   pixels to interpolate the output pixel. Since you can use at most
     *   two input pixels per output pixel in bilinear scaling, this is
     *   impossible and thus downscaling by any size will create artifacts.
     * To enable this type of scaling, set SWS_FLAG_FAST_BILINEAR
     * in SwsContext->flags.
     */
    /** @{ */
478
    void (*hyscale_fast)(struct SwsContext *c,
A
Anton Khirnov 已提交
479
                         int16_t *dst, int dstWidth,
480 481
                         const uint8_t *src, int srcW, int xInc);
    void (*hcscale_fast)(struct SwsContext *c,
A
Anton Khirnov 已提交
482
                         int16_t *dst1, int16_t *dst2, int dstWidth,
483 484
                         const uint8_t *src1, const uint8_t *src2,
                         int srcW, int xInc);
485
    /** @} */
486

487 488 489 490 491
    /**
     * Scale one horizontal line of input data using a filter over the input
     * lines, to produce one (differently sized) line of output data.
     *
     * @param dst        pointer to destination buffer for horizontally scaled
492 493 494 495 496
     *                   data. If the number of bits per component of one
     *                   destination pixel (SwsContext->dstBpc) is <= 10, data
     *                   will be 15bpc in 16bits (int16_t) width. Else (i.e.
     *                   SwsContext->dstBpc == 16), data will be 19bpc in
     *                   32bits (int32_t) width.
497
     * @param dstW       width of destination image
498 499 500 501 502 503 504
     * @param src        pointer to source data to be scaled. If the number of
     *                   bits per component of a source pixel (SwsContext->srcBpc)
     *                   is 8, this is 8bpc in 8bits (uint8_t) width. Else
     *                   (i.e. SwsContext->dstBpc > 8), this is native depth
     *                   in 16bits (uint16_t) width. In other words, for 9-bit
     *                   YUV input, this is 9bpc, for 10-bit YUV input, this is
     *                   10bpc, and for 16-bit RGB or YUV, this is 16bpc.
505 506 507 508 509 510 511 512 513 514 515 516
     * @param filter     filter coefficients to be used per output pixel for
     *                   scaling. This contains 14bpp filtering coefficients.
     *                   Guaranteed to contain dstW * filterSize entries.
     * @param filterPos  position of the first input pixel to be used for
     *                   each output pixel during scaling. Guaranteed to
     *                   contain dstW entries.
     * @param filterSize the number of input coefficients to be used (and
     *                   thus the number of input pixels to be used) for
     *                   creating a single output pixel. Is aligned to 4
     *                   (and input coefficients thus padded with zeroes)
     *                   to simplify creating SIMD code.
     */
517
    /** @{ */
518 519
    void (*hyScale)(struct SwsContext *c, int16_t *dst, int dstW,
                    const uint8_t *src, const int16_t *filter,
520
                    const int32_t *filterPos, int filterSize);
521 522
    void (*hcScale)(struct SwsContext *c, int16_t *dst, int dstW,
                    const uint8_t *src, const int16_t *filter,
523
                    const int32_t *filterPos, int filterSize);
524
    /** @} */
525

526 527 528 529
    /// Color range conversion function for luma plane if needed.
    void (*lumConvertRange)(int16_t *dst, int width);
    /// Color range conversion function for chroma planes if needed.
    void (*chrConvertRange)(int16_t *dst1, int16_t *dst2, int width);
530

531
    int needs_hcscale; ///< Set if there are chroma planes to be converted.
532 533 534
} SwsContext;
//FIXME check init (where 0)

535
SwsFunc ff_yuv2rgb_get_func_ptr(SwsContext *c);
536 537 538
int ff_yuv2rgb_c_init_tables(SwsContext *c, const int inv_table[4],
                             int fullRange, int brightness,
                             int contrast, int saturation);
539

540 541
void ff_yuv2rgb_init_tables_altivec(SwsContext *c, const int inv_table[4],
                                    int brightness, int contrast, int saturation);
542 543 544
void updateMMXDitherTables(SwsContext *c, int dstY, int lumBufIndex, int chrBufIndex,
                           int lastInLumBuf, int lastInChrBuf);

R
Ramiro Polla 已提交
545 546
SwsFunc ff_yuv2rgb_init_mmx(SwsContext *c);
SwsFunc ff_yuv2rgb_init_vis(SwsContext *c);
547
SwsFunc ff_yuv2rgb_init_altivec(SwsContext *c);
R
Ramiro Polla 已提交
548
SwsFunc ff_yuv2rgb_get_func_ptr_bfin(SwsContext *c);
549
void ff_bfin_get_unscaled_swscale(SwsContext *c);
550

551 552 553 554 555
#if FF_API_SWS_FORMAT_NAME
/**
 * @deprecated Use av_get_pix_fmt_name() instead.
 */
attribute_deprecated
556
const char *sws_format_name(enum AVPixelFormat format);
557 558
#endif

559 560 561 562 563 564
static av_always_inline int is16BPS(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return desc->comp[0].depth_minus1 == 15;
}
M
Michael Niedermayer 已提交
565

566 567 568 569
static av_always_inline int is9_OR_10BPS(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
570
    return desc->comp[0].depth_minus1 >= 8 && desc->comp[0].depth_minus1 <= 13;
571
}
M
Michael Niedermayer 已提交
572

573 574
#define isNBPS(x) is9_OR_10BPS(x)

575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601
static av_always_inline int isBE(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return desc->flags & PIX_FMT_BE;
}

static av_always_inline int isYUV(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return !(desc->flags & PIX_FMT_RGB) && desc->nb_components >= 2;
}

static av_always_inline int isPlanarYUV(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return ((desc->flags & PIX_FMT_PLANAR) && isYUV(pix_fmt));
}

static av_always_inline int isRGB(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return (desc->flags & PIX_FMT_RGB);
}
602

603
#if 0 // FIXME
604
#define isGray(x) \
605 606
    (!(av_pix_fmt_desc_get(x)->flags & PIX_FMT_PAL) && \
     av_pix_fmt_desc_get(x)->nb_components <= 2)
607
#else
608
#define isGray(x)                      \
609 610 611 612
    ((x) == AV_PIX_FMT_GRAY8       ||  \
     (x) == AV_PIX_FMT_Y400A       ||  \
     (x) == AV_PIX_FMT_GRAY16BE    ||  \
     (x) == AV_PIX_FMT_GRAY16LE)
613
#endif
614

615 616
#define isRGBinInt(x) \
    (           \
617
     (x) == AV_PIX_FMT_RGB48BE     ||  \
618
     (x) == AV_PIX_FMT_RGB48LE     ||  \
619 620
     (x) == AV_PIX_FMT_RGBA64BE    ||  \
     (x) == AV_PIX_FMT_RGBA64LE    ||  \
621 622 623 624 625 626 627 628 629 630 631 632 633
     (x) == AV_PIX_FMT_RGB32       ||  \
     (x) == AV_PIX_FMT_RGB32_1     ||  \
     (x) == AV_PIX_FMT_RGB24       ||  \
     (x) == AV_PIX_FMT_RGB565BE    ||  \
     (x) == AV_PIX_FMT_RGB565LE    ||  \
     (x) == AV_PIX_FMT_RGB555BE    ||  \
     (x) == AV_PIX_FMT_RGB555LE    ||  \
     (x) == AV_PIX_FMT_RGB444BE    ||  \
     (x) == AV_PIX_FMT_RGB444LE    ||  \
     (x) == AV_PIX_FMT_RGB8        ||  \
     (x) == AV_PIX_FMT_RGB4        ||  \
     (x) == AV_PIX_FMT_RGB4_BYTE   ||  \
     (x) == AV_PIX_FMT_MONOBLACK   ||  \
634
     (x) == AV_PIX_FMT_MONOWHITE   \
635
    )
636 637
#define isBGRinInt(x) \
    (           \
638
     (x) == AV_PIX_FMT_BGR48BE     ||  \
639
     (x) == AV_PIX_FMT_BGR48LE     ||  \
640 641
     (x) == AV_PIX_FMT_BGRA64BE    ||  \
     (x) == AV_PIX_FMT_BGRA64LE    ||  \
642 643 644 645 646 647 648 649 650 651 652 653 654
     (x) == AV_PIX_FMT_BGR32       ||  \
     (x) == AV_PIX_FMT_BGR32_1     ||  \
     (x) == AV_PIX_FMT_BGR24       ||  \
     (x) == AV_PIX_FMT_BGR565BE    ||  \
     (x) == AV_PIX_FMT_BGR565LE    ||  \
     (x) == AV_PIX_FMT_BGR555BE    ||  \
     (x) == AV_PIX_FMT_BGR555LE    ||  \
     (x) == AV_PIX_FMT_BGR444BE    ||  \
     (x) == AV_PIX_FMT_BGR444LE    ||  \
     (x) == AV_PIX_FMT_BGR8        ||  \
     (x) == AV_PIX_FMT_BGR4        ||  \
     (x) == AV_PIX_FMT_BGR4_BYTE   ||  \
     (x) == AV_PIX_FMT_MONOBLACK   ||  \
655
     (x) == AV_PIX_FMT_MONOWHITE   \
656
    )
657

658
#define isRGBinBytes(x) (           \
659 660 661 662 663 664 665
           (x) == AV_PIX_FMT_RGB48BE     \
        || (x) == AV_PIX_FMT_RGB48LE     \
        || (x) == AV_PIX_FMT_RGBA64BE    \
        || (x) == AV_PIX_FMT_RGBA64LE    \
        || (x) == AV_PIX_FMT_RGBA        \
        || (x) == AV_PIX_FMT_ARGB        \
        || (x) == AV_PIX_FMT_RGB24       \
666 667
    )
#define isBGRinBytes(x) (           \
668 669 670 671 672 673 674
           (x) == AV_PIX_FMT_BGR48BE     \
        || (x) == AV_PIX_FMT_BGR48LE     \
        || (x) == AV_PIX_FMT_BGRA64BE    \
        || (x) == AV_PIX_FMT_BGRA64LE    \
        || (x) == AV_PIX_FMT_BGRA        \
        || (x) == AV_PIX_FMT_ABGR        \
        || (x) == AV_PIX_FMT_BGR24       \
675
    )
676

677 678 679 680
#define isAnyRGB(x) \
    (           \
          isRGBinInt(x)       ||    \
          isBGRinInt(x)       ||    \
681
          (x)==AV_PIX_FMT_GBR24P     \
682
    )
683

684 685 686 687 688 689
static av_always_inline int isALPHA(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return desc->nb_components == 2 || desc->nb_components == 4;
}
690

691
#if 1
692
#define isPacked(x)         (       \
693 694 695 696
           (x)==AV_PIX_FMT_PAL8        \
        || (x)==AV_PIX_FMT_YUYV422     \
        || (x)==AV_PIX_FMT_UYVY422     \
        || (x)==AV_PIX_FMT_Y400A       \
M
Michael Niedermayer 已提交
697 698
        ||  isRGBinInt(x)           \
        ||  isBGRinInt(x)           \
699
    )
700
#else
701 702 703 704 705 706 707
static av_always_inline int isPacked(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return ((desc->nb_components >= 2 && !(desc->flags & PIX_FMT_PLANAR)) ||
            pix_fmt == AV_PIX_FMT_PAL8);
}
708

709
#endif
710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735
static av_always_inline int isPlanar(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return (desc->nb_components >= 2 && (desc->flags & PIX_FMT_PLANAR));
}

static av_always_inline int isPackedRGB(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return ((desc->flags & (PIX_FMT_PLANAR | PIX_FMT_RGB)) == PIX_FMT_RGB);
}

static av_always_inline int isPlanarRGB(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
    return ((desc->flags & (PIX_FMT_PLANAR | PIX_FMT_RGB)) ==
            (PIX_FMT_PLANAR | PIX_FMT_RGB));
}

static av_always_inline int usePal(enum AVPixelFormat pix_fmt)
{
    const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(pix_fmt);
    av_assert0(desc);
736
    return (desc->flags & PIX_FMT_PAL) || (desc->flags & PIX_FMT_PSEUDOPAL);
737
}
738

739 740
extern const uint64_t ff_dither4[2];
extern const uint64_t ff_dither8[2];
741
extern const uint8_t dithers[8][8][8];
742
extern const uint16_t dither_scale[15][16];
743

744

745 746
extern const AVClass sws_context_class;

747
/**
748
 * Set c->swScale to an unscaled converter if one exists for the specific
749 750 751 752
 * source and destination formats, bit depths, flags, etc.
 */
void ff_get_unscaled_swscale(SwsContext *c);

753 754
void ff_swscale_get_unscaled_altivec(SwsContext *c);

755
/**
756
 * Return function pointer to fastest main scaler path function depending
757 758 759 760
 * on architecture and available optimizations.
 */
SwsFunc ff_getSwsFunc(SwsContext *c);

761
void ff_sws_init_input_funcs(SwsContext *c);
762 763 764 765 766 767 768
void ff_sws_init_output_funcs(SwsContext *c,
                              yuv2planar1_fn *yuv2plane1,
                              yuv2planarX_fn *yuv2planeX,
                              yuv2interleavedX_fn *yuv2nv12cX,
                              yuv2packed1_fn *yuv2packed1,
                              yuv2packed2_fn *yuv2packed2,
                              yuv2packedX_fn *yuv2packedX);
769
void ff_sws_init_swScale_altivec(SwsContext *c);
770
void ff_sws_init_swScale_mmx(SwsContext *c);
771

772
#endif /* SWSCALE_SWSCALE_INTERNAL_H */