1 /*
2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11 #include <stdlib.h>
12 #include <string.h>
13
14 #include "./vpx_version.h"
15
16 #include "vpx/internal/vpx_codec_internal.h"
17 #include "vpx/vp8dx.h"
18 #include "vpx/vpx_decoder.h"
19
20 #include "vp9/common/vp9_frame_buffers.h"
21
22 #include "vp9/decoder/vp9_decoder.h"
23 #include "vp9/decoder/vp9_decodeframe.h"
24 #include "vp9/decoder/vp9_read_bit_buffer.h"
25
26 #include "vp9/vp9_iface_common.h"
27
28 #define VP9_CAP_POSTPROC (CONFIG_VP9_POSTPROC ? VPX_CODEC_CAP_POSTPROC : 0)
29
30 typedef vpx_codec_stream_info_t vp9_stream_info_t;
31
32 struct vpx_codec_alg_priv {
33 vpx_codec_priv_t base;
34 vpx_codec_dec_cfg_t cfg;
35 vp9_stream_info_t si;
36 struct VP9Decoder *pbi;
37 int postproc_cfg_set;
38 vp8_postproc_cfg_t postproc_cfg;
39 vpx_decrypt_cb decrypt_cb;
40 void *decrypt_state;
41 vpx_image_t img;
42 int img_avail;
43 int flushed;
44 int invert_tile_order;
45 int frame_parallel_decode; // frame-based threading.
46
47 // External frame buffer info to save for VP9 common.
48 void *ext_priv; // Private data associated with the external frame buffers.
49 vpx_get_frame_buffer_cb_fn_t get_ext_fb_cb;
50 vpx_release_frame_buffer_cb_fn_t release_ext_fb_cb;
51 };
52
decoder_init(vpx_codec_ctx_t * ctx,vpx_codec_priv_enc_mr_cfg_t * data)53 static vpx_codec_err_t decoder_init(vpx_codec_ctx_t *ctx,
54 vpx_codec_priv_enc_mr_cfg_t *data) {
55 // This function only allocates space for the vpx_codec_alg_priv_t
56 // structure. More memory may be required at the time the stream
57 // information becomes known.
58 (void)data;
59
60 if (!ctx->priv) {
61 vpx_codec_alg_priv_t *alg_priv = vpx_memalign(32, sizeof(*alg_priv));
62 if (alg_priv == NULL)
63 return VPX_CODEC_MEM_ERROR;
64
65 vp9_zero(*alg_priv);
66
67 ctx->priv = (vpx_codec_priv_t *)alg_priv;
68 ctx->priv->sz = sizeof(*ctx->priv);
69 ctx->priv->iface = ctx->iface;
70 ctx->priv->alg_priv = alg_priv;
71 ctx->priv->alg_priv->si.sz = sizeof(ctx->priv->alg_priv->si);
72 ctx->priv->init_flags = ctx->init_flags;
73 ctx->priv->alg_priv->flushed = 0;
74 ctx->priv->alg_priv->frame_parallel_decode =
75 (ctx->init_flags & VPX_CODEC_USE_FRAME_THREADING);
76
77 // Disable frame parallel decoding for now.
78 ctx->priv->alg_priv->frame_parallel_decode = 0;
79
80 if (ctx->config.dec) {
81 // Update the reference to the config structure to an internal copy.
82 ctx->priv->alg_priv->cfg = *ctx->config.dec;
83 ctx->config.dec = &ctx->priv->alg_priv->cfg;
84 }
85 }
86
87 return VPX_CODEC_OK;
88 }
89
decoder_destroy(vpx_codec_alg_priv_t * ctx)90 static vpx_codec_err_t decoder_destroy(vpx_codec_alg_priv_t *ctx) {
91 if (ctx->pbi) {
92 vp9_decoder_remove(ctx->pbi);
93 ctx->pbi = NULL;
94 }
95
96 vpx_free(ctx);
97
98 return VPX_CODEC_OK;
99 }
100
parse_bitdepth_colorspace_sampling(BITSTREAM_PROFILE profile,struct vp9_read_bit_buffer * rb)101 static int parse_bitdepth_colorspace_sampling(
102 BITSTREAM_PROFILE profile, struct vp9_read_bit_buffer *rb) {
103 const int sRGB = 7;
104 int colorspace;
105 if (profile >= PROFILE_2)
106 rb->bit_offset += 1; // Bit-depth 10 or 12.
107 colorspace = vp9_rb_read_literal(rb, 3);
108 if (colorspace != sRGB) {
109 rb->bit_offset += 1; // [16,235] (including xvycc) vs [0,255] range.
110 if (profile == PROFILE_1 || profile == PROFILE_3) {
111 rb->bit_offset += 2; // subsampling x/y.
112 rb->bit_offset += 1; // unused.
113 }
114 } else {
115 if (profile == PROFILE_1 || profile == PROFILE_3) {
116 rb->bit_offset += 1; // unused
117 } else {
118 // RGB is only available in version 1.
119 return 0;
120 }
121 }
122 return 1;
123 }
124
decoder_peek_si_internal(const uint8_t * data,unsigned int data_sz,vpx_codec_stream_info_t * si,int * is_intra_only,vpx_decrypt_cb decrypt_cb,void * decrypt_state)125 static vpx_codec_err_t decoder_peek_si_internal(const uint8_t *data,
126 unsigned int data_sz,
127 vpx_codec_stream_info_t *si,
128 int *is_intra_only,
129 vpx_decrypt_cb decrypt_cb,
130 void *decrypt_state) {
131 int intra_only_flag = 0;
132 uint8_t clear_buffer[9];
133
134 if (data + data_sz <= data)
135 return VPX_CODEC_INVALID_PARAM;
136
137 si->is_kf = 0;
138 si->w = si->h = 0;
139
140 if (decrypt_cb) {
141 data_sz = MIN(sizeof(clear_buffer), data_sz);
142 decrypt_cb(decrypt_state, data, clear_buffer, data_sz);
143 data = clear_buffer;
144 }
145
146 {
147 int show_frame;
148 int error_resilient;
149 struct vp9_read_bit_buffer rb = { data, data + data_sz, 0, NULL, NULL };
150 const int frame_marker = vp9_rb_read_literal(&rb, 2);
151 const BITSTREAM_PROFILE profile = vp9_read_profile(&rb);
152
153 if (frame_marker != VP9_FRAME_MARKER)
154 return VPX_CODEC_UNSUP_BITSTREAM;
155
156 if (profile >= MAX_PROFILES) return VPX_CODEC_UNSUP_BITSTREAM;
157
158 if (vp9_rb_read_bit(&rb)) { // show an existing frame
159 vp9_rb_read_literal(&rb, 3); // Frame buffer to show.
160 return VPX_CODEC_OK;
161 }
162
163 if (data_sz <= 8)
164 return VPX_CODEC_UNSUP_BITSTREAM;
165
166 si->is_kf = !vp9_rb_read_bit(&rb);
167 show_frame = vp9_rb_read_bit(&rb);
168 error_resilient = vp9_rb_read_bit(&rb);
169
170 if (si->is_kf) {
171 if (!vp9_read_sync_code(&rb))
172 return VPX_CODEC_UNSUP_BITSTREAM;
173
174 if (!parse_bitdepth_colorspace_sampling(profile, &rb))
175 return VPX_CODEC_UNSUP_BITSTREAM;
176 vp9_read_frame_size(&rb, (int *)&si->w, (int *)&si->h);
177 } else {
178 intra_only_flag = show_frame ? 0 : vp9_rb_read_bit(&rb);
179
180 rb.bit_offset += error_resilient ? 0 : 2; // reset_frame_context
181
182 if (intra_only_flag) {
183 if (!vp9_read_sync_code(&rb))
184 return VPX_CODEC_UNSUP_BITSTREAM;
185 if (profile > PROFILE_0) {
186 if (!parse_bitdepth_colorspace_sampling(profile, &rb))
187 return VPX_CODEC_UNSUP_BITSTREAM;
188 }
189 rb.bit_offset += REF_FRAMES; // refresh_frame_flags
190 vp9_read_frame_size(&rb, (int *)&si->w, (int *)&si->h);
191 }
192 }
193 }
194 if (is_intra_only != NULL)
195 *is_intra_only = intra_only_flag;
196 return VPX_CODEC_OK;
197 }
198
decoder_peek_si(const uint8_t * data,unsigned int data_sz,vpx_codec_stream_info_t * si)199 static vpx_codec_err_t decoder_peek_si(const uint8_t *data,
200 unsigned int data_sz,
201 vpx_codec_stream_info_t *si) {
202 return decoder_peek_si_internal(data, data_sz, si, NULL, NULL, NULL);
203 }
204
decoder_get_si(vpx_codec_alg_priv_t * ctx,vpx_codec_stream_info_t * si)205 static vpx_codec_err_t decoder_get_si(vpx_codec_alg_priv_t *ctx,
206 vpx_codec_stream_info_t *si) {
207 const size_t sz = (si->sz >= sizeof(vp9_stream_info_t))
208 ? sizeof(vp9_stream_info_t)
209 : sizeof(vpx_codec_stream_info_t);
210 memcpy(si, &ctx->si, sz);
211 si->sz = (unsigned int)sz;
212
213 return VPX_CODEC_OK;
214 }
215
update_error_state(vpx_codec_alg_priv_t * ctx,const struct vpx_internal_error_info * error)216 static vpx_codec_err_t update_error_state(vpx_codec_alg_priv_t *ctx,
217 const struct vpx_internal_error_info *error) {
218 if (error->error_code)
219 ctx->base.err_detail = error->has_detail ? error->detail : NULL;
220
221 return error->error_code;
222 }
223
init_buffer_callbacks(vpx_codec_alg_priv_t * ctx)224 static void init_buffer_callbacks(vpx_codec_alg_priv_t *ctx) {
225 VP9_COMMON *const cm = &ctx->pbi->common;
226
227 cm->new_fb_idx = -1;
228
229 if (ctx->get_ext_fb_cb != NULL && ctx->release_ext_fb_cb != NULL) {
230 cm->get_fb_cb = ctx->get_ext_fb_cb;
231 cm->release_fb_cb = ctx->release_ext_fb_cb;
232 cm->cb_priv = ctx->ext_priv;
233 } else {
234 cm->get_fb_cb = vp9_get_frame_buffer;
235 cm->release_fb_cb = vp9_release_frame_buffer;
236
237 if (vp9_alloc_internal_frame_buffers(&cm->int_frame_buffers))
238 vpx_internal_error(&cm->error, VPX_CODEC_MEM_ERROR,
239 "Failed to initialize internal frame buffers");
240
241 cm->cb_priv = &cm->int_frame_buffers;
242 }
243 }
244
set_default_ppflags(vp8_postproc_cfg_t * cfg)245 static void set_default_ppflags(vp8_postproc_cfg_t *cfg) {
246 cfg->post_proc_flag = VP8_DEBLOCK | VP8_DEMACROBLOCK;
247 cfg->deblocking_level = 4;
248 cfg->noise_level = 0;
249 }
250
set_ppflags(const vpx_codec_alg_priv_t * ctx,vp9_ppflags_t * flags)251 static void set_ppflags(const vpx_codec_alg_priv_t *ctx,
252 vp9_ppflags_t *flags) {
253 flags->post_proc_flag =
254 ctx->postproc_cfg.post_proc_flag;
255
256 flags->deblocking_level = ctx->postproc_cfg.deblocking_level;
257 flags->noise_level = ctx->postproc_cfg.noise_level;
258 }
259
init_decoder(vpx_codec_alg_priv_t * ctx)260 static void init_decoder(vpx_codec_alg_priv_t *ctx) {
261 ctx->pbi = vp9_decoder_create();
262 if (ctx->pbi == NULL)
263 return;
264
265 ctx->pbi->max_threads = ctx->cfg.threads;
266 ctx->pbi->inv_tile_order = ctx->invert_tile_order;
267 ctx->pbi->frame_parallel_decode = ctx->frame_parallel_decode;
268
269 // If postprocessing was enabled by the application and a
270 // configuration has not been provided, default it.
271 if (!ctx->postproc_cfg_set &&
272 (ctx->base.init_flags & VPX_CODEC_USE_POSTPROC))
273 set_default_ppflags(&ctx->postproc_cfg);
274
275 init_buffer_callbacks(ctx);
276 }
277
decode_one(vpx_codec_alg_priv_t * ctx,const uint8_t ** data,unsigned int data_sz,void * user_priv,int64_t deadline)278 static vpx_codec_err_t decode_one(vpx_codec_alg_priv_t *ctx,
279 const uint8_t **data, unsigned int data_sz,
280 void *user_priv, int64_t deadline) {
281 YV12_BUFFER_CONFIG sd;
282 vp9_ppflags_t flags = {0, 0, 0};
283 VP9_COMMON *cm = NULL;
284
285 (void)deadline;
286
287 vp9_zero(sd);
288 ctx->img_avail = 0;
289
290 // Determine the stream parameters. Note that we rely on peek_si to
291 // validate that we have a buffer that does not wrap around the top
292 // of the heap.
293 if (!ctx->si.h) {
294 int is_intra_only = 0;
295 const vpx_codec_err_t res =
296 decoder_peek_si_internal(*data, data_sz, &ctx->si, &is_intra_only,
297 ctx->decrypt_cb, ctx->decrypt_state);
298 if (res != VPX_CODEC_OK)
299 return res;
300
301 if (!ctx->si.is_kf && !is_intra_only)
302 return VPX_CODEC_ERROR;
303 }
304
305 // Initialize the decoder instance on the first frame
306 if (ctx->pbi == NULL) {
307 init_decoder(ctx);
308 if (ctx->pbi == NULL)
309 return VPX_CODEC_ERROR;
310 }
311
312 // Set these even if already initialized. The caller may have changed the
313 // decrypt config between frames.
314 ctx->pbi->decrypt_cb = ctx->decrypt_cb;
315 ctx->pbi->decrypt_state = ctx->decrypt_state;
316
317 cm = &ctx->pbi->common;
318
319 if (vp9_receive_compressed_data(ctx->pbi, data_sz, data))
320 return update_error_state(ctx, &cm->error);
321
322 if (ctx->base.init_flags & VPX_CODEC_USE_POSTPROC)
323 set_ppflags(ctx, &flags);
324
325 if (vp9_get_raw_frame(ctx->pbi, &sd, &flags))
326 return update_error_state(ctx, &cm->error);
327
328 yuvconfig2image(&ctx->img, &sd, user_priv);
329 ctx->img.fb_priv = cm->frame_bufs[cm->new_fb_idx].raw_frame_buffer.priv;
330 ctx->img_avail = 1;
331
332 return VPX_CODEC_OK;
333 }
334
read_marker(vpx_decrypt_cb decrypt_cb,void * decrypt_state,const uint8_t * data)335 static INLINE uint8_t read_marker(vpx_decrypt_cb decrypt_cb,
336 void *decrypt_state,
337 const uint8_t *data) {
338 if (decrypt_cb) {
339 uint8_t marker;
340 decrypt_cb(decrypt_state, data, &marker, 1);
341 return marker;
342 }
343 return *data;
344 }
345
parse_superframe_index(const uint8_t * data,size_t data_sz,uint32_t sizes[8],int * count,vpx_decrypt_cb decrypt_cb,void * decrypt_state)346 static vpx_codec_err_t parse_superframe_index(const uint8_t *data,
347 size_t data_sz,
348 uint32_t sizes[8], int *count,
349 vpx_decrypt_cb decrypt_cb,
350 void *decrypt_state) {
351 // A chunk ending with a byte matching 0xc0 is an invalid chunk unless
352 // it is a super frame index. If the last byte of real video compression
353 // data is 0xc0 the encoder must add a 0 byte. If we have the marker but
354 // not the associated matching marker byte at the front of the index we have
355 // an invalid bitstream and need to return an error.
356
357 uint8_t marker;
358
359 assert(data_sz);
360 marker = read_marker(decrypt_cb, decrypt_state, data + data_sz - 1);
361 *count = 0;
362
363 if ((marker & 0xe0) == 0xc0) {
364 const uint32_t frames = (marker & 0x7) + 1;
365 const uint32_t mag = ((marker >> 3) & 0x3) + 1;
366 const size_t index_sz = 2 + mag * frames;
367
368 // This chunk is marked as having a superframe index but doesn't have
369 // enough data for it, thus it's an invalid superframe index.
370 if (data_sz < index_sz)
371 return VPX_CODEC_CORRUPT_FRAME;
372
373 {
374 const uint8_t marker2 = read_marker(decrypt_cb, decrypt_state,
375 data + data_sz - index_sz);
376
377 // This chunk is marked as having a superframe index but doesn't have
378 // the matching marker byte at the front of the index therefore it's an
379 // invalid chunk.
380 if (marker != marker2)
381 return VPX_CODEC_CORRUPT_FRAME;
382 }
383
384 {
385 // Found a valid superframe index.
386 uint32_t i, j;
387 const uint8_t *x = &data[data_sz - index_sz + 1];
388
389 // Frames has a maximum of 8 and mag has a maximum of 4.
390 uint8_t clear_buffer[32];
391 assert(sizeof(clear_buffer) >= frames * mag);
392 if (decrypt_cb) {
393 decrypt_cb(decrypt_state, x, clear_buffer, frames * mag);
394 x = clear_buffer;
395 }
396
397 for (i = 0; i < frames; ++i) {
398 uint32_t this_sz = 0;
399
400 for (j = 0; j < mag; ++j)
401 this_sz |= (*x++) << (j * 8);
402 sizes[i] = this_sz;
403 }
404 *count = frames;
405 }
406 }
407 return VPX_CODEC_OK;
408 }
409
decoder_decode(vpx_codec_alg_priv_t * ctx,const uint8_t * data,unsigned int data_sz,void * user_priv,long deadline)410 static vpx_codec_err_t decoder_decode(vpx_codec_alg_priv_t *ctx,
411 const uint8_t *data, unsigned int data_sz,
412 void *user_priv, long deadline) {
413 const uint8_t *data_start = data;
414 const uint8_t * const data_end = data + data_sz;
415 vpx_codec_err_t res;
416 uint32_t frame_sizes[8];
417 int frame_count;
418
419 if (data == NULL && data_sz == 0) {
420 ctx->flushed = 1;
421 return VPX_CODEC_OK;
422 }
423
424 // Reset flushed when receiving a valid frame.
425 ctx->flushed = 0;
426
427 res = parse_superframe_index(data, data_sz, frame_sizes, &frame_count,
428 ctx->decrypt_cb, ctx->decrypt_state);
429 if (res != VPX_CODEC_OK)
430 return res;
431
432 if (ctx->frame_parallel_decode) {
433 // Decode in frame parallel mode. When decoding in this mode, the frame
434 // passed to the decoder must be either a normal frame or a superframe with
435 // superframe index so the decoder could get each frame's start position
436 // in the superframe.
437 if (frame_count > 0) {
438 int i;
439
440 for (i = 0; i < frame_count; ++i) {
441 const uint8_t *data_start_copy = data_start;
442 const uint32_t frame_size = frame_sizes[i];
443 vpx_codec_err_t res;
444 if (data_start < data
445 || frame_size > (uint32_t) (data_end - data_start)) {
446 ctx->base.err_detail = "Invalid frame size in index";
447 return VPX_CODEC_CORRUPT_FRAME;
448 }
449
450 res = decode_one(ctx, &data_start_copy, frame_size, user_priv,
451 deadline);
452 if (res != VPX_CODEC_OK)
453 return res;
454
455 data_start += frame_size;
456 }
457 } else {
458 res = decode_one(ctx, &data_start, data_sz, user_priv, deadline);
459 if (res != VPX_CODEC_OK)
460 return res;
461
462 // Extra data detected after the frame.
463 if (data_start < data_end - 1) {
464 ctx->base.err_detail = "Fail to decode frame in parallel mode";
465 return VPX_CODEC_INCAPABLE;
466 }
467 }
468 } else {
469 // Decode in serial mode.
470 if (frame_count > 0) {
471 int i;
472
473 for (i = 0; i < frame_count; ++i) {
474 const uint8_t *data_start_copy = data_start;
475 const uint32_t frame_size = frame_sizes[i];
476 vpx_codec_err_t res;
477 if (data_start < data
478 || frame_size > (uint32_t) (data_end - data_start)) {
479 ctx->base.err_detail = "Invalid frame size in index";
480 return VPX_CODEC_CORRUPT_FRAME;
481 }
482
483 res = decode_one(ctx, &data_start_copy, frame_size, user_priv,
484 deadline);
485 if (res != VPX_CODEC_OK)
486 return res;
487
488 data_start += frame_size;
489 }
490 } else {
491 while (data_start < data_end) {
492 const uint32_t frame_size = (uint32_t) (data_end - data_start);
493 const vpx_codec_err_t res = decode_one(ctx, &data_start, frame_size,
494 user_priv, deadline);
495 if (res != VPX_CODEC_OK)
496 return res;
497
498 // Account for suboptimal termination by the encoder.
499 while (data_start < data_end) {
500 const uint8_t marker = read_marker(ctx->decrypt_cb,
501 ctx->decrypt_state, data_start);
502 if (marker)
503 break;
504 ++data_start;
505 }
506 }
507 }
508 }
509
510 return VPX_CODEC_OK;
511 }
512
decoder_get_frame(vpx_codec_alg_priv_t * ctx,vpx_codec_iter_t * iter)513 static vpx_image_t *decoder_get_frame(vpx_codec_alg_priv_t *ctx,
514 vpx_codec_iter_t *iter) {
515 vpx_image_t *img = NULL;
516
517 if (ctx->img_avail) {
518 // iter acts as a flip flop, so an image is only returned on the first
519 // call to get_frame.
520 if (!(*iter)) {
521 img = &ctx->img;
522 *iter = img;
523 }
524 }
525 ctx->img_avail = 0;
526
527 return img;
528 }
529
decoder_set_fb_fn(vpx_codec_alg_priv_t * ctx,vpx_get_frame_buffer_cb_fn_t cb_get,vpx_release_frame_buffer_cb_fn_t cb_release,void * cb_priv)530 static vpx_codec_err_t decoder_set_fb_fn(
531 vpx_codec_alg_priv_t *ctx,
532 vpx_get_frame_buffer_cb_fn_t cb_get,
533 vpx_release_frame_buffer_cb_fn_t cb_release, void *cb_priv) {
534 if (cb_get == NULL || cb_release == NULL) {
535 return VPX_CODEC_INVALID_PARAM;
536 } else if (ctx->pbi == NULL) {
537 // If the decoder has already been initialized, do not accept changes to
538 // the frame buffer functions.
539 ctx->get_ext_fb_cb = cb_get;
540 ctx->release_ext_fb_cb = cb_release;
541 ctx->ext_priv = cb_priv;
542 return VPX_CODEC_OK;
543 }
544
545 return VPX_CODEC_ERROR;
546 }
547
ctrl_set_reference(vpx_codec_alg_priv_t * ctx,va_list args)548 static vpx_codec_err_t ctrl_set_reference(vpx_codec_alg_priv_t *ctx,
549 va_list args) {
550 vpx_ref_frame_t *const data = va_arg(args, vpx_ref_frame_t *);
551
552 if (data) {
553 vpx_ref_frame_t *const frame = (vpx_ref_frame_t *)data;
554 YV12_BUFFER_CONFIG sd;
555
556 image2yuvconfig(&frame->img, &sd);
557 return vp9_set_reference_dec(&ctx->pbi->common,
558 (VP9_REFFRAME)frame->frame_type, &sd);
559 } else {
560 return VPX_CODEC_INVALID_PARAM;
561 }
562 }
563
ctrl_copy_reference(vpx_codec_alg_priv_t * ctx,va_list args)564 static vpx_codec_err_t ctrl_copy_reference(vpx_codec_alg_priv_t *ctx,
565 va_list args) {
566 vpx_ref_frame_t *data = va_arg(args, vpx_ref_frame_t *);
567
568 if (data) {
569 vpx_ref_frame_t *frame = (vpx_ref_frame_t *)data;
570 YV12_BUFFER_CONFIG sd;
571
572 image2yuvconfig(&frame->img, &sd);
573
574 return vp9_copy_reference_dec(ctx->pbi,
575 (VP9_REFFRAME)frame->frame_type, &sd);
576 } else {
577 return VPX_CODEC_INVALID_PARAM;
578 }
579 }
580
ctrl_get_reference(vpx_codec_alg_priv_t * ctx,va_list args)581 static vpx_codec_err_t ctrl_get_reference(vpx_codec_alg_priv_t *ctx,
582 va_list args) {
583 vp9_ref_frame_t *data = va_arg(args, vp9_ref_frame_t *);
584
585 if (data) {
586 YV12_BUFFER_CONFIG* fb = get_ref_frame(&ctx->pbi->common, data->idx);
587 if (fb == NULL) return VPX_CODEC_ERROR;
588
589 yuvconfig2image(&data->img, fb, NULL);
590 return VPX_CODEC_OK;
591 } else {
592 return VPX_CODEC_INVALID_PARAM;
593 }
594 }
595
ctrl_set_postproc(vpx_codec_alg_priv_t * ctx,va_list args)596 static vpx_codec_err_t ctrl_set_postproc(vpx_codec_alg_priv_t *ctx,
597 va_list args) {
598 #if CONFIG_VP9_POSTPROC
599 vp8_postproc_cfg_t *data = va_arg(args, vp8_postproc_cfg_t *);
600
601 if (data) {
602 ctx->postproc_cfg_set = 1;
603 ctx->postproc_cfg = *((vp8_postproc_cfg_t *)data);
604 return VPX_CODEC_OK;
605 } else {
606 return VPX_CODEC_INVALID_PARAM;
607 }
608 #else
609 (void)ctx;
610 (void)args;
611 return VPX_CODEC_INCAPABLE;
612 #endif
613 }
614
ctrl_set_dbg_options(vpx_codec_alg_priv_t * ctx,va_list args)615 static vpx_codec_err_t ctrl_set_dbg_options(vpx_codec_alg_priv_t *ctx,
616 va_list args) {
617 (void)ctx;
618 (void)args;
619 return VPX_CODEC_INCAPABLE;
620 }
621
ctrl_get_last_ref_updates(vpx_codec_alg_priv_t * ctx,va_list args)622 static vpx_codec_err_t ctrl_get_last_ref_updates(vpx_codec_alg_priv_t *ctx,
623 va_list args) {
624 int *const update_info = va_arg(args, int *);
625
626 if (update_info) {
627 if (ctx->pbi)
628 *update_info = ctx->pbi->refresh_frame_flags;
629 else
630 return VPX_CODEC_ERROR;
631 return VPX_CODEC_OK;
632 } else {
633 return VPX_CODEC_INVALID_PARAM;
634 }
635 }
636
637
ctrl_get_frame_corrupted(vpx_codec_alg_priv_t * ctx,va_list args)638 static vpx_codec_err_t ctrl_get_frame_corrupted(vpx_codec_alg_priv_t *ctx,
639 va_list args) {
640 int *corrupted = va_arg(args, int *);
641
642 if (corrupted != NULL && ctx->pbi != NULL) {
643 const YV12_BUFFER_CONFIG *const frame = ctx->pbi->common.frame_to_show;
644 if (frame == NULL) return VPX_CODEC_ERROR;
645 *corrupted = frame->corrupted;
646 return VPX_CODEC_OK;
647 } else {
648 return VPX_CODEC_INVALID_PARAM;
649 }
650 }
651
ctrl_get_display_size(vpx_codec_alg_priv_t * ctx,va_list args)652 static vpx_codec_err_t ctrl_get_display_size(vpx_codec_alg_priv_t *ctx,
653 va_list args) {
654 int *const display_size = va_arg(args, int *);
655
656 if (display_size) {
657 if (ctx->pbi) {
658 const VP9_COMMON *const cm = &ctx->pbi->common;
659 display_size[0] = cm->display_width;
660 display_size[1] = cm->display_height;
661 } else {
662 return VPX_CODEC_ERROR;
663 }
664 return VPX_CODEC_OK;
665 } else {
666 return VPX_CODEC_INVALID_PARAM;
667 }
668 }
669
ctrl_set_invert_tile_order(vpx_codec_alg_priv_t * ctx,va_list args)670 static vpx_codec_err_t ctrl_set_invert_tile_order(vpx_codec_alg_priv_t *ctx,
671 va_list args) {
672 ctx->invert_tile_order = va_arg(args, int);
673 return VPX_CODEC_OK;
674 }
675
ctrl_set_decryptor(vpx_codec_alg_priv_t * ctx,va_list args)676 static vpx_codec_err_t ctrl_set_decryptor(vpx_codec_alg_priv_t *ctx,
677 va_list args) {
678 vpx_decrypt_init *init = va_arg(args, vpx_decrypt_init *);
679 ctx->decrypt_cb = init ? init->decrypt_cb : NULL;
680 ctx->decrypt_state = init ? init->decrypt_state : NULL;
681 return VPX_CODEC_OK;
682 }
683
684 static vpx_codec_ctrl_fn_map_t decoder_ctrl_maps[] = {
685 {VP8_COPY_REFERENCE, ctrl_copy_reference},
686
687 // Setters
688 {VP8_SET_REFERENCE, ctrl_set_reference},
689 {VP8_SET_POSTPROC, ctrl_set_postproc},
690 {VP8_SET_DBG_COLOR_REF_FRAME, ctrl_set_dbg_options},
691 {VP8_SET_DBG_COLOR_MB_MODES, ctrl_set_dbg_options},
692 {VP8_SET_DBG_COLOR_B_MODES, ctrl_set_dbg_options},
693 {VP8_SET_DBG_DISPLAY_MV, ctrl_set_dbg_options},
694 {VP9_INVERT_TILE_DECODE_ORDER, ctrl_set_invert_tile_order},
695 {VPXD_SET_DECRYPTOR, ctrl_set_decryptor},
696
697 // Getters
698 {VP8D_GET_LAST_REF_UPDATES, ctrl_get_last_ref_updates},
699 {VP8D_GET_FRAME_CORRUPTED, ctrl_get_frame_corrupted},
700 {VP9_GET_REFERENCE, ctrl_get_reference},
701 {VP9D_GET_DISPLAY_SIZE, ctrl_get_display_size},
702
703 { -1, NULL},
704 };
705
706 #ifndef VERSION_STRING
707 #define VERSION_STRING
708 #endif
709 CODEC_INTERFACE(vpx_codec_vp9_dx) = {
710 "WebM Project VP9 Decoder" VERSION_STRING,
711 VPX_CODEC_INTERNAL_ABI_VERSION,
712 VPX_CODEC_CAP_DECODER | VP9_CAP_POSTPROC |
713 VPX_CODEC_CAP_EXTERNAL_FRAME_BUFFER, // vpx_codec_caps_t
714 decoder_init, // vpx_codec_init_fn_t
715 decoder_destroy, // vpx_codec_destroy_fn_t
716 decoder_ctrl_maps, // vpx_codec_ctrl_fn_map_t
717 { // NOLINT
718 decoder_peek_si, // vpx_codec_peek_si_fn_t
719 decoder_get_si, // vpx_codec_get_si_fn_t
720 decoder_decode, // vpx_codec_decode_fn_t
721 decoder_get_frame, // vpx_codec_frame_get_fn_t
722 decoder_set_fb_fn, // vpx_codec_set_fb_fn_t
723 },
724 { // NOLINT
725 0,
726 NOT_IMPLEMENTED, // vpx_codec_enc_cfg_map_t
727 NOT_IMPLEMENTED, // vpx_codec_encode_fn_t
728 NOT_IMPLEMENTED, // vpx_codec_get_cx_data_fn_t
729 NOT_IMPLEMENTED, // vpx_codec_enc_config_set_fn_t
730 NOT_IMPLEMENTED, // vpx_codec_get_global_headers_fn_t
731 NOT_IMPLEMENTED, // vpx_codec_get_preview_frame_fn_t
732 NOT_IMPLEMENTED // vpx_codec_enc_mr_get_mem_loc_fn_t
733 }
734 };
735