1 // Copyright 2011 Google Inc. All Rights Reserved.
2 //
3 // Use of this source code is governed by a BSD-style license
4 // that can be found in the COPYING file in the root of the source
5 // tree. An additional intellectual property rights grant can be found
6 // in the file PATENTS. All contributing project authors may
7 // be found in the AUTHORS file in the root of the source tree.
8 // -----------------------------------------------------------------------------
9 //
10 //   WebP encoder: main interface
11 //
12 // Author: Skal (pascal.massimino@gmail.com)
13 
14 #ifndef WEBP_WEBP_ENCODE_H_
15 #define WEBP_WEBP_ENCODE_H_
16 
17 #include "./types.h"
18 
19 #ifdef __cplusplus
20 extern "C" {
21 #endif
22 
23 #define WEBP_ENCODER_ABI_VERSION 0x0202    // MAJOR(8b) + MINOR(8b)
24 
25 // Note: forward declaring enumerations is not allowed in (strict) C and C++,
26 // the types are left here for reference.
27 // typedef enum WebPImageHint WebPImageHint;
28 // typedef enum WebPEncCSP WebPEncCSP;
29 // typedef enum WebPPreset WebPPreset;
30 // typedef enum WebPEncodingError WebPEncodingError;
31 typedef struct WebPConfig WebPConfig;
32 typedef struct WebPPicture WebPPicture;   // main structure for I/O
33 typedef struct WebPAuxStats WebPAuxStats;
34 typedef struct WebPMemoryWriter WebPMemoryWriter;
35 
36 // Return the encoder's version number, packed in hexadecimal using 8bits for
37 // each of major/minor/revision. E.g: v2.5.7 is 0x020507.
38 WEBP_EXTERN(int) WebPGetEncoderVersion(void);
39 
40 //------------------------------------------------------------------------------
41 // One-stop-shop call! No questions asked:
42 
43 // Returns the size of the compressed data (pointed to by *output), or 0 if
44 // an error occurred. The compressed data must be released by the caller
45 // using the call 'free(*output)'.
46 // These functions compress using the lossy format, and the quality_factor
47 // can go from 0 (smaller output, lower quality) to 100 (best quality,
48 // larger output).
49 WEBP_EXTERN(size_t) WebPEncodeRGB(const uint8_t* rgb,
50                                   int width, int height, int stride,
51                                   float quality_factor, uint8_t** output);
52 WEBP_EXTERN(size_t) WebPEncodeBGR(const uint8_t* bgr,
53                                   int width, int height, int stride,
54                                   float quality_factor, uint8_t** output);
55 WEBP_EXTERN(size_t) WebPEncodeRGBA(const uint8_t* rgba,
56                                    int width, int height, int stride,
57                                    float quality_factor, uint8_t** output);
58 WEBP_EXTERN(size_t) WebPEncodeBGRA(const uint8_t* bgra,
59                                    int width, int height, int stride,
60                                    float quality_factor, uint8_t** output);
61 
62 // These functions are the equivalent of the above, but compressing in a
63 // lossless manner. Files are usually larger than lossy format, but will
64 // not suffer any compression loss.
65 WEBP_EXTERN(size_t) WebPEncodeLosslessRGB(const uint8_t* rgb,
66                                           int width, int height, int stride,
67                                           uint8_t** output);
68 WEBP_EXTERN(size_t) WebPEncodeLosslessBGR(const uint8_t* bgr,
69                                           int width, int height, int stride,
70                                           uint8_t** output);
71 WEBP_EXTERN(size_t) WebPEncodeLosslessRGBA(const uint8_t* rgba,
72                                            int width, int height, int stride,
73                                            uint8_t** output);
74 WEBP_EXTERN(size_t) WebPEncodeLosslessBGRA(const uint8_t* bgra,
75                                            int width, int height, int stride,
76                                            uint8_t** output);
77 
78 //------------------------------------------------------------------------------
79 // Coding parameters
80 
81 // Image characteristics hint for the underlying encoder.
82 typedef enum WebPImageHint {
83   WEBP_HINT_DEFAULT = 0,  // default preset.
84   WEBP_HINT_PICTURE,      // digital picture, like portrait, inner shot
85   WEBP_HINT_PHOTO,        // outdoor photograph, with natural lighting
86   WEBP_HINT_GRAPH,        // Discrete tone image (graph, map-tile etc).
87   WEBP_HINT_LAST
88 } WebPImageHint;
89 
90 // Compression parameters.
91 struct WebPConfig {
92   int lossless;           // Lossless encoding (0=lossy(default), 1=lossless).
93   float quality;          // between 0 (smallest file) and 100 (biggest)
94   int method;             // quality/speed trade-off (0=fast, 6=slower-better)
95 
96   WebPImageHint image_hint;  // Hint for image type (lossless only for now).
97 
98   // Parameters related to lossy compression only:
99   int target_size;        // if non-zero, set the desired target size in bytes.
100                           // Takes precedence over the 'compression' parameter.
101   float target_PSNR;      // if non-zero, specifies the minimal distortion to
102                           // try to achieve. Takes precedence over target_size.
103   int segments;           // maximum number of segments to use, in [1..4]
104   int sns_strength;       // Spatial Noise Shaping. 0=off, 100=maximum.
105   int filter_strength;    // range: [0 = off .. 100 = strongest]
106   int filter_sharpness;   // range: [0 = off .. 7 = least sharp]
107   int filter_type;        // filtering type: 0 = simple, 1 = strong (only used
108                           // if filter_strength > 0 or autofilter > 0)
109   int autofilter;         // Auto adjust filter's strength [0 = off, 1 = on]
110   int alpha_compression;  // Algorithm for encoding the alpha plane (0 = none,
111                           // 1 = compressed with WebP lossless). Default is 1.
112   int alpha_filtering;    // Predictive filtering method for alpha plane.
113                           //  0: none, 1: fast, 2: best. Default if 1.
114   int alpha_quality;      // Between 0 (smallest size) and 100 (lossless).
115                           // Default is 100.
116   int pass;               // number of entropy-analysis passes (in [1..10]).
117 
118   int show_compressed;    // if true, export the compressed picture back.
119                           // In-loop filtering is not applied.
120   int preprocessing;      // preprocessing filter:
121                           // 0=none, 1=segment-smooth, 2=pseudo-random dithering
122   int partitions;         // log2(number of token partitions) in [0..3]. Default
123                           // is set to 0 for easier progressive decoding.
124   int partition_limit;    // quality degradation allowed to fit the 512k limit
125                           // on prediction modes coding (0: no degradation,
126                           // 100: maximum possible degradation).
127   int emulate_jpeg_size;  // If true, compression parameters will be remapped
128                           // to better match the expected output size from
129                           // JPEG compression. Generally, the output size will
130                           // be similar but the degradation will be lower.
131   int thread_level;       // If non-zero, try and use multi-threaded encoding.
132   int low_memory;         // If set, reduce memory usage (but increase CPU use).
133 
134   uint32_t pad[5];        // padding for later use
135 };
136 
137 // Enumerate some predefined settings for WebPConfig, depending on the type
138 // of source picture. These presets are used when calling WebPConfigPreset().
139 typedef enum WebPPreset {
140   WEBP_PRESET_DEFAULT = 0,  // default preset.
141   WEBP_PRESET_PICTURE,      // digital picture, like portrait, inner shot
142   WEBP_PRESET_PHOTO,        // outdoor photograph, with natural lighting
143   WEBP_PRESET_DRAWING,      // hand or line drawing, with high-contrast details
144   WEBP_PRESET_ICON,         // small-sized colorful images
145   WEBP_PRESET_TEXT          // text-like
146 } WebPPreset;
147 
148 // Internal, version-checked, entry point
149 WEBP_EXTERN(int) WebPConfigInitInternal(WebPConfig*, WebPPreset, float, int);
150 
151 // Should always be called, to initialize a fresh WebPConfig structure before
152 // modification. Returns false in case of version mismatch. WebPConfigInit()
153 // must have succeeded before using the 'config' object.
154 // Note that the default values are lossless=0 and quality=75.
WebPConfigInit(WebPConfig * config)155 static WEBP_INLINE int WebPConfigInit(WebPConfig* config) {
156   return WebPConfigInitInternal(config, WEBP_PRESET_DEFAULT, 75.f,
157                                 WEBP_ENCODER_ABI_VERSION);
158 }
159 
160 // This function will initialize the configuration according to a predefined
161 // set of parameters (referred to by 'preset') and a given quality factor.
162 // This function can be called as a replacement to WebPConfigInit(). Will
163 // return false in case of error.
WebPConfigPreset(WebPConfig * config,WebPPreset preset,float quality)164 static WEBP_INLINE int WebPConfigPreset(WebPConfig* config,
165                                         WebPPreset preset, float quality) {
166   return WebPConfigInitInternal(config, preset, quality,
167                                 WEBP_ENCODER_ABI_VERSION);
168 }
169 
170 #if WEBP_ENCODER_ABI_VERSION > 0x0202
171 // Activate the lossless compression mode with the desired efficiency level
172 // between 0 (fastest, lowest compression) and 9 (slower, best compression).
173 // A good default level is '6', providing a fair tradeoff between compression
174 // speed and final compressed size.
175 // This function will overwrite several fields from config: 'method', 'quality'
176 // and 'lossless'. Returns false in case of parameter error.
177 WEBP_EXTERN(int) WebPConfigLosslessPreset(WebPConfig* config, int level);
178 #endif
179 
180 // Returns true if 'config' is non-NULL and all configuration parameters are
181 // within their valid ranges.
182 WEBP_EXTERN(int) WebPValidateConfig(const WebPConfig* config);
183 
184 //------------------------------------------------------------------------------
185 // Input / Output
186 // Structure for storing auxiliary statistics (mostly for lossy encoding).
187 
188 struct WebPAuxStats {
189   int coded_size;         // final size
190 
191   float PSNR[5];          // peak-signal-to-noise ratio for Y/U/V/All/Alpha
192   int block_count[3];     // number of intra4/intra16/skipped macroblocks
193   int header_bytes[2];    // approximate number of bytes spent for header
194                           // and mode-partition #0
195   int residual_bytes[3][4];  // approximate number of bytes spent for
196                              // DC/AC/uv coefficients for each (0..3) segments.
197   int segment_size[4];    // number of macroblocks in each segments
198   int segment_quant[4];   // quantizer values for each segments
199   int segment_level[4];   // filtering strength for each segments [0..63]
200 
201   int alpha_data_size;    // size of the transparency data
202   int layer_data_size;    // size of the enhancement layer data
203 
204   // lossless encoder statistics
205   uint32_t lossless_features;  // bit0:predictor bit1:cross-color transform
206                                // bit2:subtract-green bit3:color indexing
207   int histogram_bits;          // number of precision bits of histogram
208   int transform_bits;          // precision bits for transform
209   int cache_bits;              // number of bits for color cache lookup
210   int palette_size;            // number of color in palette, if used
211   int lossless_size;           // final lossless size
212 
213   uint32_t pad[4];        // padding for later use
214 };
215 
216 // Signature for output function. Should return true if writing was successful.
217 // data/data_size is the segment of data to write, and 'picture' is for
218 // reference (and so one can make use of picture->custom_ptr).
219 typedef int (*WebPWriterFunction)(const uint8_t* data, size_t data_size,
220                                   const WebPPicture* picture);
221 
222 // WebPMemoryWrite: a special WebPWriterFunction that writes to memory using
223 // the following WebPMemoryWriter object (to be set as a custom_ptr).
224 struct WebPMemoryWriter {
225   uint8_t* mem;       // final buffer (of size 'max_size', larger than 'size').
226   size_t   size;      // final size
227   size_t   max_size;  // total capacity
228   uint32_t pad[1];    // padding for later use
229 };
230 
231 // The following must be called first before any use.
232 WEBP_EXTERN(void) WebPMemoryWriterInit(WebPMemoryWriter* writer);
233 
234 #if WEBP_ENCODER_ABI_VERSION > 0x0203
235 // The following must be called to deallocate writer->mem memory. The 'writer'
236 // object itself is not deallocated.
237 WEBP_EXTERN(void) WebPMemoryWriterClear(WebPMemoryWriter* writer);
238 #endif
239 // The custom writer to be used with WebPMemoryWriter as custom_ptr. Upon
240 // completion, writer.mem and writer.size will hold the coded data.
241 #if WEBP_ENCODER_ABI_VERSION > 0x0203
242 // writer.mem must be freed by calling WebPMemoryWriterClear.
243 #else
244 // writer.mem must be freed by calling 'free(writer.mem)'.
245 #endif
246 WEBP_EXTERN(int) WebPMemoryWrite(const uint8_t* data, size_t data_size,
247                                  const WebPPicture* picture);
248 
249 // Progress hook, called from time to time to report progress. It can return
250 // false to request an abort of the encoding process, or true otherwise if
251 // everything is OK.
252 typedef int (*WebPProgressHook)(int percent, const WebPPicture* picture);
253 
254 // Color spaces.
255 typedef enum WebPEncCSP {
256   // chroma sampling
257   WEBP_YUV420  = 0,        // 4:2:0
258   WEBP_YUV420A = 4,        // alpha channel variant
259   WEBP_CSP_UV_MASK = 3,    // bit-mask to get the UV sampling factors
260   WEBP_CSP_ALPHA_BIT = 4   // bit that is set if alpha is present
261 } WebPEncCSP;
262 
263 // Encoding error conditions.
264 typedef enum WebPEncodingError {
265   VP8_ENC_OK = 0,
266   VP8_ENC_ERROR_OUT_OF_MEMORY,            // memory error allocating objects
267   VP8_ENC_ERROR_BITSTREAM_OUT_OF_MEMORY,  // memory error while flushing bits
268   VP8_ENC_ERROR_NULL_PARAMETER,           // a pointer parameter is NULL
269   VP8_ENC_ERROR_INVALID_CONFIGURATION,    // configuration is invalid
270   VP8_ENC_ERROR_BAD_DIMENSION,            // picture has invalid width/height
271   VP8_ENC_ERROR_PARTITION0_OVERFLOW,      // partition is bigger than 512k
272   VP8_ENC_ERROR_PARTITION_OVERFLOW,       // partition is bigger than 16M
273   VP8_ENC_ERROR_BAD_WRITE,                // error while flushing bytes
274   VP8_ENC_ERROR_FILE_TOO_BIG,             // file is bigger than 4G
275   VP8_ENC_ERROR_USER_ABORT,               // abort request by user
276   VP8_ENC_ERROR_LAST                      // list terminator. always last.
277 } WebPEncodingError;
278 
279 // maximum width/height allowed (inclusive), in pixels
280 #define WEBP_MAX_DIMENSION 16383
281 
282 // Main exchange structure (input samples, output bytes, statistics)
283 struct WebPPicture {
284   //   INPUT
285   //////////////
286   // Main flag for encoder selecting between ARGB or YUV input.
287   // It is recommended to use ARGB input (*argb, argb_stride) for lossless
288   // compression, and YUV input (*y, *u, *v, etc.) for lossy compression
289   // since these are the respective native colorspace for these formats.
290   int use_argb;
291 
292   // YUV input (mostly used for input to lossy compression)
293   WebPEncCSP colorspace;     // colorspace: should be YUV420 for now (=Y'CbCr).
294   int width, height;         // dimensions (less or equal to WEBP_MAX_DIMENSION)
295   uint8_t *y, *u, *v;        // pointers to luma/chroma planes.
296   int y_stride, uv_stride;   // luma/chroma strides.
297   uint8_t* a;                // pointer to the alpha plane
298   int a_stride;              // stride of the alpha plane
299   uint32_t pad1[2];          // padding for later use
300 
301   // ARGB input (mostly used for input to lossless compression)
302   uint32_t* argb;            // Pointer to argb (32 bit) plane.
303   int argb_stride;           // This is stride in pixels units, not bytes.
304   uint32_t pad2[3];          // padding for later use
305 
306   //   OUTPUT
307   ///////////////
308   // Byte-emission hook, to store compressed bytes as they are ready.
309   WebPWriterFunction writer;  // can be NULL
310   void* custom_ptr;           // can be used by the writer.
311 
312   // map for extra information (only for lossy compression mode)
313   int extra_info_type;    // 1: intra type, 2: segment, 3: quant
314                           // 4: intra-16 prediction mode,
315                           // 5: chroma prediction mode,
316                           // 6: bit cost, 7: distortion
317   uint8_t* extra_info;    // if not NULL, points to an array of size
318                           // ((width + 15) / 16) * ((height + 15) / 16) that
319                           // will be filled with a macroblock map, depending
320                           // on extra_info_type.
321 
322   //   STATS AND REPORTS
323   ///////////////////////////
324   // Pointer to side statistics (updated only if not NULL)
325   WebPAuxStats* stats;
326 
327   // Error code for the latest error encountered during encoding
328   WebPEncodingError error_code;
329 
330   // If not NULL, report progress during encoding.
331   WebPProgressHook progress_hook;
332 
333   void* user_data;        // this field is free to be set to any value and
334                           // used during callbacks (like progress-report e.g.).
335 
336   uint32_t pad3[3];       // padding for later use
337 
338   // Unused for now
339   uint8_t *pad4, *pad5;
340   uint32_t pad6[8];       // padding for later use
341 
342   // PRIVATE FIELDS
343   ////////////////////
344   void* memory_;          // row chunk of memory for yuva planes
345   void* memory_argb_;     // and for argb too.
346   void* pad7[2];          // padding for later use
347 };
348 
349 // Internal, version-checked, entry point
350 WEBP_EXTERN(int) WebPPictureInitInternal(WebPPicture*, int);
351 
352 // Should always be called, to initialize the structure. Returns false in case
353 // of version mismatch. WebPPictureInit() must have succeeded before using the
354 // 'picture' object.
355 // Note that, by default, use_argb is false and colorspace is WEBP_YUV420.
WebPPictureInit(WebPPicture * picture)356 static WEBP_INLINE int WebPPictureInit(WebPPicture* picture) {
357   return WebPPictureInitInternal(picture, WEBP_ENCODER_ABI_VERSION);
358 }
359 
360 //------------------------------------------------------------------------------
361 // WebPPicture utils
362 
363 // Convenience allocation / deallocation based on picture->width/height:
364 // Allocate y/u/v buffers as per colorspace/width/height specification.
365 // Note! This function will free the previous buffer if needed.
366 // Returns false in case of memory error.
367 WEBP_EXTERN(int) WebPPictureAlloc(WebPPicture* picture);
368 
369 // Release the memory allocated by WebPPictureAlloc() or WebPPictureImport*().
370 // Note that this function does _not_ free the memory used by the 'picture'
371 // object itself.
372 // Besides memory (which is reclaimed) all other fields of 'picture' are
373 // preserved.
374 WEBP_EXTERN(void) WebPPictureFree(WebPPicture* picture);
375 
376 // Copy the pixels of *src into *dst, using WebPPictureAlloc. Upon return, *dst
377 // will fully own the copied pixels (this is not a view). The 'dst' picture need
378 // not be initialized as its content is overwritten.
379 // Returns false in case of memory allocation error.
380 WEBP_EXTERN(int) WebPPictureCopy(const WebPPicture* src, WebPPicture* dst);
381 
382 // Compute PSNR, SSIM or LSIM distortion metric between two pictures.
383 // Result is in dB, stores in result[] in the Y/U/V/Alpha/All order.
384 // Returns false in case of error (src and ref don't have same dimension, ...)
385 // Warning: this function is rather CPU-intensive.
386 WEBP_EXTERN(int) WebPPictureDistortion(
387     const WebPPicture* src, const WebPPicture* ref,
388     int metric_type,           // 0 = PSNR, 1 = SSIM, 2 = LSIM
389     float result[5]);
390 
391 // self-crops a picture to the rectangle defined by top/left/width/height.
392 // Returns false in case of memory allocation error, or if the rectangle is
393 // outside of the source picture.
394 // The rectangle for the view is defined by the top-left corner pixel
395 // coordinates (left, top) as well as its width and height. This rectangle
396 // must be fully be comprised inside the 'src' source picture. If the source
397 // picture uses the YUV420 colorspace, the top and left coordinates will be
398 // snapped to even values.
399 WEBP_EXTERN(int) WebPPictureCrop(WebPPicture* picture,
400                                  int left, int top, int width, int height);
401 
402 // Extracts a view from 'src' picture into 'dst'. The rectangle for the view
403 // is defined by the top-left corner pixel coordinates (left, top) as well
404 // as its width and height. This rectangle must be fully be comprised inside
405 // the 'src' source picture. If the source picture uses the YUV420 colorspace,
406 // the top and left coordinates will be snapped to even values.
407 // Picture 'src' must out-live 'dst' picture. Self-extraction of view is allowed
408 // ('src' equal to 'dst') as a mean of fast-cropping (but note that doing so,
409 // the original dimension will be lost). Picture 'dst' need not be initialized
410 // with WebPPictureInit() if it is different from 'src', since its content will
411 // be overwritten.
412 // Returns false in case of memory allocation error or invalid parameters.
413 WEBP_EXTERN(int) WebPPictureView(const WebPPicture* src,
414                                  int left, int top, int width, int height,
415                                  WebPPicture* dst);
416 
417 // Returns true if the 'picture' is actually a view and therefore does
418 // not own the memory for pixels.
419 WEBP_EXTERN(int) WebPPictureIsView(const WebPPicture* picture);
420 
421 // Rescale a picture to new dimension width x height.
422 // If either 'width' or 'height' (but not both) is 0 the corresponding
423 // dimension will be calculated preserving the aspect ratio.
424 // No gamma correction is applied.
425 // Returns false in case of error (invalid parameter or insufficient memory).
426 WEBP_EXTERN(int) WebPPictureRescale(WebPPicture* pic, int width, int height);
427 
428 // Colorspace conversion function to import RGB samples.
429 // Previous buffer will be free'd, if any.
430 // *rgb buffer should have a size of at least height * rgb_stride.
431 // Returns false in case of memory error.
432 WEBP_EXTERN(int) WebPPictureImportRGB(
433     WebPPicture* picture, const uint8_t* rgb, int rgb_stride);
434 // Same, but for RGBA buffer.
435 WEBP_EXTERN(int) WebPPictureImportRGBA(
436     WebPPicture* picture, const uint8_t* rgba, int rgba_stride);
437 // Same, but for RGBA buffer. Imports the RGB direct from the 32-bit format
438 // input buffer ignoring the alpha channel. Avoids needing to copy the data
439 // to a temporary 24-bit RGB buffer to import the RGB only.
440 WEBP_EXTERN(int) WebPPictureImportRGBX(
441     WebPPicture* picture, const uint8_t* rgbx, int rgbx_stride);
442 
443 // Variants of the above, but taking BGR(A|X) input.
444 WEBP_EXTERN(int) WebPPictureImportBGR(
445     WebPPicture* picture, const uint8_t* bgr, int bgr_stride);
446 WEBP_EXTERN(int) WebPPictureImportBGRA(
447     WebPPicture* picture, const uint8_t* bgra, int bgra_stride);
448 WEBP_EXTERN(int) WebPPictureImportBGRX(
449     WebPPicture* picture, const uint8_t* bgrx, int bgrx_stride);
450 
451 // Converts picture->argb data to the YUV420A format. The 'colorspace'
452 // parameter is deprecated and should be equal to WEBP_YUV420.
453 // Upon return, picture->use_argb is set to false. The presence of real
454 // non-opaque transparent values is detected, and 'colorspace' will be
455 // adjusted accordingly. Note that this method is lossy.
456 // Returns false in case of error.
457 WEBP_EXTERN(int) WebPPictureARGBToYUVA(WebPPicture* picture,
458                                        WebPEncCSP /*colorspace = WEBP_YUV420*/);
459 
460 // Same as WebPPictureARGBToYUVA(), but the conversion is done using
461 // pseudo-random dithering with a strength 'dithering' between
462 // 0.0 (no dithering) and 1.0 (maximum dithering). This is useful
463 // for photographic picture.
464 WEBP_EXTERN(int) WebPPictureARGBToYUVADithered(
465     WebPPicture* picture, WebPEncCSP colorspace, float dithering);
466 
467 #if WEBP_ENCODER_ABI_VERSION > 0x0204
468 // Performs 'smart' RGBA->YUVA420 downsampling and colorspace conversion.
469 // Downsampling is handled with extra care in case of color clipping. This
470 // method is roughly 2x slower than WebPPictureARGBToYUVA() but produces better
471 // YUV representation.
472 // Returns false in case of error.
473 WEBP_EXTERN(int) WebPPictureSmartARGBToYUVA(WebPPicture* picture);
474 #endif
475 
476 // Converts picture->yuv to picture->argb and sets picture->use_argb to true.
477 // The input format must be YUV_420 or YUV_420A.
478 // Note that the use of this method is discouraged if one has access to the
479 // raw ARGB samples, since using YUV420 is comparatively lossy. Also, the
480 // conversion from YUV420 to ARGB incurs a small loss too.
481 // Returns false in case of error.
482 WEBP_EXTERN(int) WebPPictureYUVAToARGB(WebPPicture* picture);
483 
484 // Helper function: given a width x height plane of RGBA or YUV(A) samples
485 // clean-up the YUV or RGB samples under fully transparent area, to help
486 // compressibility (no guarantee, though).
487 WEBP_EXTERN(void) WebPCleanupTransparentArea(WebPPicture* picture);
488 
489 // Scan the picture 'picture' for the presence of non fully opaque alpha values.
490 // Returns true in such case. Otherwise returns false (indicating that the
491 // alpha plane can be ignored altogether e.g.).
492 WEBP_EXTERN(int) WebPPictureHasTransparency(const WebPPicture* picture);
493 
494 // Remove the transparency information (if present) by blending the color with
495 // the background color 'background_rgb' (specified as 24bit RGB triplet).
496 // After this call, all alpha values are reset to 0xff.
497 WEBP_EXTERN(void) WebPBlendAlpha(WebPPicture* pic, uint32_t background_rgb);
498 
499 //------------------------------------------------------------------------------
500 // Main call
501 
502 // Main encoding call, after config and picture have been initialized.
503 // 'picture' must be less than 16384x16384 in dimension (cf WEBP_MAX_DIMENSION),
504 // and the 'config' object must be a valid one.
505 // Returns false in case of error, true otherwise.
506 // In case of error, picture->error_code is updated accordingly.
507 // 'picture' can hold the source samples in both YUV(A) or ARGB input, depending
508 // on the value of 'picture->use_argb'. It is highly recommended to use
509 // the former for lossy encoding, and the latter for lossless encoding
510 // (when config.lossless is true). Automatic conversion from one format to
511 // another is provided but they both incur some loss.
512 WEBP_EXTERN(int) WebPEncode(const WebPConfig* config, WebPPicture* picture);
513 
514 //------------------------------------------------------------------------------
515 
516 #ifdef __cplusplus
517 }    // extern "C"
518 #endif
519 
520 #endif  /* WEBP_WEBP_ENCODE_H_ */
521