AOMedia AV1 Codec
decoder.h
1 /*
2  * Copyright (c) 2016, Alliance for Open Media. All rights reserved.
3  *
4  * This source code is subject to the terms of the BSD 2 Clause License and
5  * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6  * was not distributed with this source code in the LICENSE file, you can
7  * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8  * Media Patent License 1.0 was not distributed with this source code in the
9  * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10  */
11 
12 #ifndef AOM_AV1_DECODER_DECODER_H_
13 #define AOM_AV1_DECODER_DECODER_H_
14 
15 #include "config/aom_config.h"
16 
17 #include "aom/aom_codec.h"
18 #include "aom_dsp/bitreader.h"
19 #include "aom_scale/yv12config.h"
20 #include "aom_util/aom_thread.h"
21 
22 #include "av1/common/av1_common_int.h"
23 #include "av1/common/thread_common.h"
24 #include "av1/decoder/dthread.h"
25 #if CONFIG_ACCOUNTING
26 #include "av1/decoder/accounting.h"
27 #endif
28 #if CONFIG_INSPECTION
29 #include "av1/decoder/inspection.h"
30 #endif
31 
32 #ifdef __cplusplus
33 extern "C" {
34 #endif
35 
45 typedef struct DecoderCodingBlock {
49  DECLARE_ALIGNED(32, MACROBLOCKD, xd);
53  int corrupted;
58  uint8_t *mc_buf[2];
63  tran_low_t *dqcoeff_block[MAX_MB_PLANE];
68  uint16_t cb_offset[MAX_MB_PLANE];
73  eob_info *eob_data[MAX_MB_PLANE];
78  uint16_t txb_offset[MAX_MB_PLANE];
83  uint8_t ref_mv_count[MODE_CTX_REF_FRAMES];
85 
88 typedef void (*decode_block_visitor_fn_t)(const AV1_COMMON *const cm,
89  DecoderCodingBlock *dcb,
90  aom_reader *const r, const int plane,
91  const int row, const int col,
92  const TX_SIZE tx_size);
93 
94 typedef void (*predict_inter_block_visitor_fn_t)(AV1_COMMON *const cm,
95  DecoderCodingBlock *dcb,
96  BLOCK_SIZE bsize);
97 
98 typedef void (*cfl_store_inter_block_visitor_fn_t)(AV1_COMMON *const cm,
99  MACROBLOCKD *const xd);
100 
101 typedef struct ThreadData {
102  DecoderCodingBlock dcb;
103 
104  // Coding block buffer for the current superblock.
105  // Used only for single-threaded decoding and multi-threaded decoding with
106  // row_mt == 1 cases.
107  // See also: similar buffer in 'AV1Decoder'.
108  CB_BUFFER cb_buffer_base;
109 
110  aom_reader *bit_reader;
111 
112  // Motion compensation buffer used to get a prediction buffer with extended
113  // borders. One buffer for each of the two possible references.
114  uint8_t *mc_buf[2];
115  // Mask for this block used for compound prediction.
116  uint8_t *seg_mask;
117  // Allocated size of 'mc_buf'.
118  int32_t mc_buf_size;
119  // If true, the pointers in 'mc_buf' were converted from highbd pointers.
120  int mc_buf_use_highbd; // Boolean: whether the byte pointers stored in
121  // mc_buf were converted from highbd pointers.
122 
123  CONV_BUF_TYPE *tmp_conv_dst;
124  uint8_t *tmp_obmc_bufs[2];
125 
126  decode_block_visitor_fn_t read_coeffs_tx_intra_block_visit;
127  decode_block_visitor_fn_t predict_and_recon_intra_block_visit;
128  decode_block_visitor_fn_t read_coeffs_tx_inter_block_visit;
129  decode_block_visitor_fn_t inverse_tx_inter_block_visit;
130  predict_inter_block_visitor_fn_t predict_inter_block_visit;
131  cfl_store_inter_block_visitor_fn_t cfl_store_inter_block_visit;
132 } ThreadData;
133 
134 typedef struct AV1DecRowMTJobInfo {
135  int tile_row;
136  int tile_col;
137  int mi_row;
138 } AV1DecRowMTJobInfo;
139 
140 typedef struct AV1DecRowMTSyncData {
141 #if CONFIG_MULTITHREAD
142  pthread_mutex_t *mutex_;
143  pthread_cond_t *cond_;
144 #endif
145  int allocated_sb_rows;
146  int *cur_sb_col;
147  // Denotes the superblock interval at which conditional signalling should
148  // happen. Also denotes the minimum number of extra superblocks of the top row
149  // to be complete to start decoding the current superblock. A value of 1
150  // indicates top-right dependency.
151  int sync_range;
152  // Denotes the additional number of superblocks in the previous row to be
153  // complete to start decoding the current superblock when intraBC tool is
154  // enabled. This additional top-right delay is required to satisfy the
155  // hardware constraints for intraBC tool when row multithreading is enabled.
156  int intrabc_extra_top_right_sb_delay;
157  int mi_rows;
158  int mi_cols;
159  int mi_rows_parse_done;
160  int mi_rows_decode_started;
161  int num_threads_working;
162 } AV1DecRowMTSync;
163 
164 typedef struct AV1DecRowMTInfo {
165  int tile_rows_start;
166  int tile_rows_end;
167  int tile_cols_start;
168  int tile_cols_end;
169  int start_tile;
170  int end_tile;
171  int mi_rows_to_decode;
172 
173  // Invariant:
174  // mi_rows_parse_done >= mi_rows_decode_started.
175  // mi_rows_parse_done and mi_rows_decode_started are both initialized to 0.
176  // mi_rows_parse_done is incremented freely. mi_rows_decode_started may only
177  // be incremented to catch up with mi_rows_parse_done but is not allowed to
178  // surpass mi_rows_parse_done.
179  //
180  // When mi_rows_decode_started reaches mi_rows_to_decode, there are no more
181  // decode jobs.
182 
183  // Indicates the progress of the bit-stream parsing of superblocks.
184  // Initialized to 0. Incremented by sb_mi_size when parse sb row is done.
185  int mi_rows_parse_done;
186  // Indicates the progress of the decoding of superblocks.
187  // Initialized to 0. Incremented by sb_mi_size when decode sb row is started.
188  int mi_rows_decode_started;
189  // Boolean: Initialized to 0 (false). Set to 1 (true) on error to abort
190  // decoding.
191  int row_mt_exit;
192 } AV1DecRowMTInfo;
193 
194 typedef struct TileDataDec {
195  TileInfo tile_info;
196  aom_reader bit_reader;
197  DECLARE_ALIGNED(16, FRAME_CONTEXT, tctx);
198  AV1DecRowMTSync dec_row_mt_sync;
199 } TileDataDec;
200 
201 typedef struct TileBufferDec {
202  const uint8_t *data;
203  size_t size;
204 } TileBufferDec;
205 
206 typedef struct DataBuffer {
207  const uint8_t *data;
208  size_t size;
209 } DataBuffer;
210 
211 typedef struct EXTERNAL_REFERENCES {
212  YV12_BUFFER_CONFIG refs[MAX_EXTERNAL_REFERENCES];
213  int num;
214 } EXTERNAL_REFERENCES;
215 
216 typedef struct TileJobsDec {
217  TileBufferDec *tile_buffer;
218  TileDataDec *tile_data;
219 } TileJobsDec;
220 
221 typedef struct AV1DecTileMTData {
222 #if CONFIG_MULTITHREAD
223  pthread_mutex_t *job_mutex;
224 #endif
225  TileJobsDec *job_queue;
226  int jobs_enqueued;
227  int jobs_dequeued;
228  int alloc_tile_rows;
229  int alloc_tile_cols;
230 } AV1DecTileMT;
231 
232 #if CONFIG_COLLECT_COMPONENT_TIMING
233 #include "aom_ports/aom_timer.h"
234 // Adjust the following to add new components.
235 enum {
236  decode_mbmi_block_time,
237  decode_token_recon_block_intra_time,
238  predict_inter_block_time,
239  decode_reconstruct_tx_inter_time,
240  decode_token_recon_block_inter_time,
241  decode_token_recon_block_time,
242  parse_decode_block_time,
243  decode_tile_time,
244  decode_tiles_time,
245  av1_loop_filter_frame_time,
246  cdef_and_lr_time,
247  av1_decode_tg_tiles_and_wrapup_time,
248  aom_decode_frame_from_obus_time,
249  kTimingComponents,
250 } UENUM1BYTE(TIMING_COMPONENT);
251 
252 static inline char const *get_component_name(int index) {
253  switch (index) {
254  case decode_mbmi_block_time: return "decode_mbmi_block_time";
255  case decode_token_recon_block_intra_time:
256  return "decode_token_recon_block_intra_time";
257  case predict_inter_block_time: return "predict_inter_block_time";
258  case decode_reconstruct_tx_inter_time:
259  return "decode_reconstruct_tx_inter_time";
260  case decode_token_recon_block_inter_time:
261  return "decode_token_recon_block_inter_time";
262  case decode_token_recon_block_time: return "decode_token_recon_block_time";
263  case parse_decode_block_time: return "parse_decode_block_time";
264  case decode_tile_time: return "decode_tile_time";
265  case decode_tiles_time: return "decode_tiles_time";
266  case av1_loop_filter_frame_time: return "av1_loop_filter_frame_time";
267  case cdef_and_lr_time: return "cdef_and_lr_time";
268  case av1_decode_tg_tiles_and_wrapup_time:
269  return "av1_decode_tg_tiles_and_wrapup_time";
270  case aom_decode_frame_from_obus_time:
271  return "aom_decode_frame_from_obus_time";
272 
273  default: assert(0);
274  }
275  return "error";
276 }
277 #endif
278 
279 typedef struct AV1Decoder {
280  DecoderCodingBlock dcb;
281 
282  DECLARE_ALIGNED(32, AV1_COMMON, common);
283 
284  AVxWorker lf_worker;
285  AV1LfSync lf_row_sync;
286  AV1LrSync lr_row_sync;
287  AV1LrStruct lr_ctxt;
288  AV1CdefSync cdef_sync;
289  AV1CdefWorkerData *cdef_worker;
290  AVxWorker *tile_workers;
291  int num_workers;
292  DecWorkerData *thread_data;
293  ThreadData td;
294  TileDataDec *tile_data;
295  int allocated_tiles;
296 
297  TileBufferDec tile_buffers[MAX_TILE_ROWS][MAX_TILE_COLS];
298  AV1DecTileMT tile_mt_info;
299 
300  // Each time the decoder is called, we expect to receive a full temporal unit.
301  // This can contain up to one shown frame per spatial layer in the current
302  // operating point (note that some layers may be entirely omitted).
303  // If the 'output_all_layers' option is true, we save all of these shown
304  // frames so that they can be returned to the application. If the
305  // 'output_all_layers' option is false, then we only output one image per
306  // temporal unit.
307  //
308  // Note: The saved buffers are released at the start of the next time the
309  // application calls aom_codec_decode().
310  int output_all_layers;
311  RefCntBuffer *output_frames[MAX_NUM_SPATIAL_LAYERS];
312  size_t num_output_frames; // How many frames are queued up so far?
313 
314  // In order to properly support random-access decoding, we need
315  // to behave slightly differently for the very first frame we decode.
316  // So we track whether this is the first frame or not.
317  int decoding_first_frame;
318 
319  int allow_lowbitdepth;
320  int max_threads;
321  int inv_tile_order;
322  int need_resync; // wait for key/intra-only frame.
323  int reset_decoder_state;
324 
325  int tile_size_bytes;
326  int tile_col_size_bytes;
327  int dec_tile_row, dec_tile_col; // always -1 for non-VR tile encoding
328 #if CONFIG_ACCOUNTING
329  int acct_enabled;
330  Accounting accounting;
331 #endif
332  int sequence_header_ready;
333  int sequence_header_changed;
334 #if CONFIG_INSPECTION
335  aom_inspect_cb inspect_cb;
336  void *inspect_ctx;
337  int *sb_bits;
338  int sb_bits_alloc_size;
339 #endif
340  int operating_point;
341  int current_operating_point;
342  // If nonzero, the maximum frame size (width * height). 0 means unlimited.
343  unsigned int frame_size_limit;
344  int seen_frame_header;
345  // The expected start_tile (tg_start syntax element) of the next tile group.
346  int next_start_tile;
347 
348  // State if the camera frame header is already decoded while
349  // large_scale_tile = 1.
350  int camera_frame_header_ready;
351  size_t frame_header_size;
352  DataBuffer obu_size_hdr;
353  int output_frame_width_in_tiles_minus_1;
354  int output_frame_height_in_tiles_minus_1;
355  int tile_count_minus_1;
356  uint32_t coded_tile_data_size;
357  unsigned int ext_tile_debug; // for ext-tile software debug & testing
358 
359  // Decoder has 3 modes of operation:
360  // (1) Single-threaded decoding.
361  // (2) Multi-threaded decoding with each tile decoded in parallel.
362  // (3) In addition to (2), each thread decodes 1 superblock row in parallel.
363  // row_mt = 1 triggers mode (3) above, while row_mt = 0, will trigger mode (1)
364  // or (2) depending on 'max_threads'.
365  unsigned int row_mt;
366 
367  EXTERNAL_REFERENCES ext_refs;
368  YV12_BUFFER_CONFIG tile_list_outbuf;
369 
370  // Coding block buffer for the current frame.
371  // Allocated and used only for multi-threaded decoding with 'row_mt == 0'.
372  // See also: similar buffer in 'ThreadData' struct.
373  CB_BUFFER *cb_buffer_base;
374  // Allocated size of 'cb_buffer_base'. Currently same as the number of
375  // superblocks in the coded frame.
376  int cb_buffer_alloc_size;
377 
378  int allocated_row_mt_sync_rows;
379 
380 #if CONFIG_MULTITHREAD
381  pthread_mutex_t *row_mt_mutex_;
382  pthread_cond_t *row_mt_cond_;
383 #endif
384 
385  AV1DecRowMTInfo frame_row_mt_info;
386  aom_metadata_array_t *metadata;
387 
388  int context_update_tile_id;
389  int skip_loop_filter;
390  int skip_film_grain;
391  int is_annexb;
392  int valid_for_referencing[REF_FRAMES];
393  int is_fwd_kf_present;
394  int is_arf_frame_present;
395  int num_tile_groups;
396  aom_s_frame_info sframe_info;
397 
402  SequenceHeader seq_params;
403 
407  bool buffer_removal_time_present;
408 
412  struct aom_internal_error_info error;
413 
417  unsigned int number_temporal_layers;
418 
422  unsigned int number_spatial_layers;
423 
424 #if CONFIG_COLLECT_COMPONENT_TIMING
425 
428  uint64_t component_time[kTimingComponents];
429  struct aom_usec_timer component_timer[kTimingComponents];
433  uint64_t frame_component_time[kTimingComponents];
434 #endif
435 } AV1Decoder;
436 
437 // Returns 0 on success. Sets pbi->common.error.error_code to a nonzero error
438 // code and returns a nonzero value on failure.
439 int av1_receive_compressed_data(struct AV1Decoder *pbi, size_t size,
440  const uint8_t **psource);
441 
442 // Get the frame at a particular index in the output queue
443 int av1_get_raw_frame(AV1Decoder *pbi, size_t index, YV12_BUFFER_CONFIG **sd,
444  aom_film_grain_t **grain_params);
445 
446 int av1_get_frame_to_show(struct AV1Decoder *pbi, YV12_BUFFER_CONFIG *frame);
447 
448 aom_codec_err_t av1_copy_reference_dec(struct AV1Decoder *pbi, int idx,
449  YV12_BUFFER_CONFIG *sd);
450 
451 aom_codec_err_t av1_set_reference_dec(AV1_COMMON *cm, int idx,
452  int use_external_ref,
453  YV12_BUFFER_CONFIG *sd);
454 aom_codec_err_t av1_copy_new_frame_dec(AV1_COMMON *cm,
455  YV12_BUFFER_CONFIG *new_frame,
456  YV12_BUFFER_CONFIG *sd);
457 
458 struct AV1Decoder *av1_decoder_create(BufferPool *const pool);
459 
460 void av1_decoder_remove(struct AV1Decoder *pbi);
461 void av1_dealloc_dec_jobs(struct AV1DecTileMTData *tile_mt_info);
462 
463 void av1_dec_row_mt_dealloc(AV1DecRowMTSync *dec_row_mt_sync);
464 
465 void av1_dec_free_cb_buf(AV1Decoder *pbi);
466 
467 static inline void decrease_ref_count(RefCntBuffer *const buf,
468  BufferPool *const pool) {
469  if (buf != NULL) {
470  --buf->ref_count;
471  // Reference counts should never become negative. If this assertion fails,
472  // there is a bug in our reference count management.
473  assert(buf->ref_count >= 0);
474  // A worker may only get a free framebuffer index when calling get_free_fb.
475  // But the raw frame buffer is not set up until we finish decoding header.
476  // So if any error happens during decoding header, frame_bufs[idx] will not
477  // have a valid raw frame buffer.
478  if (buf->ref_count == 0 && buf->raw_frame_buffer.data) {
479  pool->release_fb_cb(pool->cb_priv, &buf->raw_frame_buffer);
480  buf->raw_frame_buffer.data = NULL;
481  buf->raw_frame_buffer.size = 0;
482  buf->raw_frame_buffer.priv = NULL;
483  }
484  }
485 }
486 
487 #define ACCT_STR __func__
488 static inline int av1_read_uniform(aom_reader *r, int n) {
489  const int l = get_unsigned_bits(n);
490  const int m = (1 << l) - n;
491  const int v = aom_read_literal(r, l - 1, ACCT_STR);
492  assert(l != 0);
493  if (v < m)
494  return v;
495  else
496  return (v << 1) - m + aom_read_literal(r, 1, ACCT_STR);
497 }
498 
499 typedef void (*palette_visitor_fn_t)(MACROBLOCKD *const xd, int plane,
500  aom_reader *r);
501 
502 void av1_visit_palette(AV1Decoder *const pbi, MACROBLOCKD *const xd,
503  aom_reader *r, palette_visitor_fn_t visit);
504 
505 typedef void (*block_visitor_fn_t)(AV1Decoder *const pbi, ThreadData *const td,
506  int mi_row, int mi_col, aom_reader *r,
507  PARTITION_TYPE partition, BLOCK_SIZE bsize);
508 
511 #if CONFIG_COLLECT_COMPONENT_TIMING
512 static inline void start_timing(AV1Decoder *pbi, int component) {
513  aom_usec_timer_start(&pbi->component_timer[component]);
514 }
515 static inline void end_timing(AV1Decoder *pbi, int component) {
516  aom_usec_timer_mark(&pbi->component_timer[component]);
517  pbi->frame_component_time[component] +=
518  aom_usec_timer_elapsed(&pbi->component_timer[component]);
519 }
520 
521 static inline char const *get_frame_type_enum(int type) {
522  switch (type) {
523  case 0: return "KEY_FRAME";
524  case 1: return "INTER_FRAME";
525  case 2: return "INTRA_ONLY_FRAME";
526  case 3: return "S_FRAME";
527  default: assert(0);
528  }
529  return "error";
530 }
531 #endif
532 
533 #ifdef __cplusplus
534 } // extern "C"
535 #endif
536 
537 #endif // AOM_AV1_DECODER_DECODER_H_
void(* aom_inspect_cb)(void *decoder, void *ctx)
Definition: aomdx.h:55
int corrupted
Definition: decoder.h:53
eob_info * eob_data[3]
Definition: decoder.h:73
uint16_t txb_offset[3]
Definition: decoder.h:78
tran_low_t * dqcoeff_block[3]
Definition: decoder.h:63
Describes the codec algorithm interface to applications.
Contains coding block data required by the decoder.
Definition: decoder.h:45
uint16_t cb_offset[3]
Definition: decoder.h:68
uint8_t ref_mv_count[MODE_CTX_REF_FRAMES]
Definition: decoder.h:83
struct aom_metadata_array aom_metadata_array_t
Array of aom_metadata structs for an image.
Definition: aom_image.h:200
YV12 frame buffer data structure.
Definition: yv12config.h:46
uint8_t * mc_buf[2]
Definition: decoder.h:58
MACROBLOCKD xd
Definition: decoder.h:49
Structure to hold information about S_FRAME.
Definition: aomdx.h:153
Variables related to current coding block.
Definition: blockd.h:570
aom_codec_err_t
Algorithm return codes.
Definition: aom_codec.h:155
Top level common structure used by both encoder and decoder.
Definition: av1_common_int.h:766
struct Accounting Accounting
Definition: aomdx.h:50