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 #ifndef VPX_VP9_ENCODER_VP9_SPEED_FEATURES_H_ 12 #define VPX_VP9_ENCODER_VP9_SPEED_FEATURES_H_ 13 14 #include "vp9/common/vp9_enums.h" 15 16 #ifdef __cplusplus 17 extern "C" { 18 #endif 19 20 enum { 21 INTRA_ALL = (1 << DC_PRED) | (1 << V_PRED) | (1 << H_PRED) | (1 << D45_PRED) | 22 (1 << D135_PRED) | (1 << D117_PRED) | (1 << D153_PRED) | 23 (1 << D207_PRED) | (1 << D63_PRED) | (1 << TM_PRED), 24 INTRA_DC = (1 << DC_PRED), 25 INTRA_DC_TM = (1 << DC_PRED) | (1 << TM_PRED), 26 INTRA_DC_H_V = (1 << DC_PRED) | (1 << V_PRED) | (1 << H_PRED), 27 INTRA_DC_TM_H_V = 28 (1 << DC_PRED) | (1 << TM_PRED) | (1 << V_PRED) | (1 << H_PRED) 29 }; 30 31 enum { 32 INTER_ALL = (1 << NEARESTMV) | (1 << NEARMV) | (1 << ZEROMV) | (1 << NEWMV), 33 INTER_NEAREST = (1 << NEARESTMV), 34 INTER_NEAREST_NEW = (1 << NEARESTMV) | (1 << NEWMV), 35 INTER_NEAREST_ZERO = (1 << NEARESTMV) | (1 << ZEROMV), 36 INTER_NEAREST_NEW_ZERO = (1 << NEARESTMV) | (1 << ZEROMV) | (1 << NEWMV), 37 INTER_NEAREST_NEAR_NEW = (1 << NEARESTMV) | (1 << NEARMV) | (1 << NEWMV), 38 INTER_NEAREST_NEAR_ZERO = (1 << NEARESTMV) | (1 << NEARMV) | (1 << ZEROMV), 39 }; 40 41 enum { 42 DISABLE_ALL_INTER_SPLIT = (1 << THR_COMP_GA) | (1 << THR_COMP_LA) | 43 (1 << THR_ALTR) | (1 << THR_GOLD) | (1 << THR_LAST), 44 45 DISABLE_ALL_SPLIT = (1 << THR_INTRA) | DISABLE_ALL_INTER_SPLIT, 46 47 DISABLE_COMPOUND_SPLIT = (1 << THR_COMP_GA) | (1 << THR_COMP_LA), 48 49 LAST_AND_INTRA_SPLIT_ONLY = (1 << THR_COMP_GA) | (1 << THR_COMP_LA) | 50 (1 << THR_ALTR) | (1 << THR_GOLD) 51 }; 52 53 typedef enum { 54 DIAMOND = 0, 55 NSTEP = 1, 56 HEX = 2, 57 BIGDIA = 3, 58 SQUARE = 4, 59 FAST_HEX = 5, 60 FAST_DIAMOND = 6, 61 MESH = 7 62 } SEARCH_METHODS; 63 64 typedef enum { 65 // No recode. 66 DISALLOW_RECODE = 0, 67 // Allow recode for KF and exceeding maximum frame bandwidth. 68 ALLOW_RECODE_KFMAXBW = 1, 69 // Allow recode only for KF/ARF/GF frames. 70 ALLOW_RECODE_KFARFGF = 2, 71 // Allow recode for ARF/GF/KF and first normal frame in each group. 72 ALLOW_RECODE_FIRST = 3, 73 // Allow recode for all frames based on bitrate constraints. 74 ALLOW_RECODE = 4, 75 } RECODE_LOOP_TYPE; 76 77 typedef enum { 78 SUBPEL_TREE = 0, 79 SUBPEL_TREE_PRUNED = 1, // Prunes 1/2-pel searches 80 SUBPEL_TREE_PRUNED_MORE = 2, // Prunes 1/2-pel searches more aggressively 81 SUBPEL_TREE_PRUNED_EVENMORE = 3, // Prunes 1/2- and 1/4-pel searches 82 // Other methods to come 83 } SUBPEL_SEARCH_METHODS; 84 85 typedef enum { 86 NO_MOTION_THRESHOLD = 0, 87 LOW_MOTION_THRESHOLD = 7 88 } MOTION_THRESHOLD; 89 90 typedef enum { 91 USE_FULL_RD = 0, 92 USE_LARGESTALL, 93 USE_TX_8X8 94 } TX_SIZE_SEARCH_METHOD; 95 96 typedef enum { 97 NOT_IN_USE = 0, 98 RELAXED_NEIGHBORING_MIN_MAX = 1, 99 STRICT_NEIGHBORING_MIN_MAX = 2 100 } AUTO_MIN_MAX_MODE; 101 102 typedef enum { 103 // Try the full image with different values. 104 LPF_PICK_FROM_FULL_IMAGE, 105 // Try a small portion of the image with different values. 106 LPF_PICK_FROM_SUBIMAGE, 107 // Estimate the level based on quantizer and frame type 108 LPF_PICK_FROM_Q, 109 // Pick 0 to disable LPF if LPF was enabled last frame 110 LPF_PICK_MINIMAL_LPF 111 } LPF_PICK_METHOD; 112 113 typedef enum { 114 // Terminate search early based on distortion so far compared to 115 // qp step, distortion in the neighborhood of the frame, etc. 116 FLAG_EARLY_TERMINATE = 1 << 0, 117 118 // Skips comp inter modes if the best so far is an intra mode. 119 FLAG_SKIP_COMP_BESTINTRA = 1 << 1, 120 121 // Skips oblique intra modes if the best so far is an inter mode. 122 FLAG_SKIP_INTRA_BESTINTER = 1 << 3, 123 124 // Skips oblique intra modes at angles 27, 63, 117, 153 if the best 125 // intra so far is not one of the neighboring directions. 126 FLAG_SKIP_INTRA_DIRMISMATCH = 1 << 4, 127 128 // Skips intra modes other than DC_PRED if the source variance is small 129 FLAG_SKIP_INTRA_LOWVAR = 1 << 5, 130 } MODE_SEARCH_SKIP_LOGIC; 131 132 typedef enum { 133 FLAG_SKIP_EIGHTTAP = 1 << EIGHTTAP, 134 FLAG_SKIP_EIGHTTAP_SMOOTH = 1 << EIGHTTAP_SMOOTH, 135 FLAG_SKIP_EIGHTTAP_SHARP = 1 << EIGHTTAP_SHARP, 136 } INTERP_FILTER_MASK; 137 138 typedef enum { 139 // Search partitions using RD/NONRD criterion. 140 SEARCH_PARTITION, 141 142 // Always use a fixed size partition. 143 FIXED_PARTITION, 144 145 REFERENCE_PARTITION, 146 147 // Use an arbitrary partitioning scheme based on source variance within 148 // a 64X64 SB. 149 VAR_BASED_PARTITION, 150 151 // Use non-fixed partitions based on source variance. 152 SOURCE_VAR_BASED_PARTITION, 153 154 #if CONFIG_ML_VAR_PARTITION 155 // Make partition decisions with machine learning models. 156 ML_BASED_PARTITION 157 #endif // CONFIG_ML_VAR_PARTITION 158 } PARTITION_SEARCH_TYPE; 159 160 typedef enum { 161 // Does a dry run to see if any of the contexts need to be updated or not, 162 // before the final run. 163 TWO_LOOP = 0, 164 165 // No dry run, also only half the coef contexts and bands are updated. 166 // The rest are not updated at all. 167 ONE_LOOP_REDUCED = 1 168 } FAST_COEFF_UPDATE; 169 170 typedef enum { EIGHTH_PEL, QUARTER_PEL, HALF_PEL, FULL_PEL } SUBPEL_FORCE_STOP; 171 172 typedef struct ADAPT_SUBPEL_FORCE_STOP { 173 // Threshold for full pixel motion vector; 174 int mv_thresh; 175 176 // subpel_force_stop if full pixel MV is below the threshold. 177 SUBPEL_FORCE_STOP force_stop_below; 178 179 // subpel_force_stop if full pixel MV is equal to or above the threshold. 180 SUBPEL_FORCE_STOP force_stop_above; 181 } ADAPT_SUBPEL_FORCE_STOP; 182 183 typedef struct MV_SPEED_FEATURES { 184 // Motion search method (Diamond, NSTEP, Hex, Big Diamond, Square, etc). 185 SEARCH_METHODS search_method; 186 187 // This parameter controls which step in the n-step process we start at. 188 // It's changed adaptively based on circumstances. 189 int reduce_first_step_size; 190 191 // If this is set to 1, we limit the motion search range to 2 times the 192 // largest motion vector found in the last frame. 193 int auto_mv_step_size; 194 195 // Subpel_search_method can only be subpel_tree which does a subpixel 196 // logarithmic search that keeps stepping at 1/2 pixel units until 197 // you stop getting a gain, and then goes on to 1/4 and repeats 198 // the same process. Along the way it skips many diagonals. 199 SUBPEL_SEARCH_METHODS subpel_search_method; 200 201 // Subpel MV search level. Can take values 0 - 2. Higher values mean more 202 // extensive subpel search. 203 int subpel_search_level; 204 205 // When to stop subpel motion search. 206 SUBPEL_FORCE_STOP subpel_force_stop; 207 208 // If it's enabled, different subpel_force_stop will be used for different MV. 209 int enable_adaptive_subpel_force_stop; 210 211 ADAPT_SUBPEL_FORCE_STOP adapt_subpel_force_stop; 212 213 // This variable sets the step_param used in full pel motion search. 214 int fullpel_search_step_param; 215 } MV_SPEED_FEATURES; 216 217 typedef struct PARTITION_SEARCH_BREAKOUT_THR { 218 int64_t dist; 219 int rate; 220 } PARTITION_SEARCH_BREAKOUT_THR; 221 222 #define MAX_MESH_STEP 4 223 224 typedef struct MESH_PATTERN { 225 int range; 226 int interval; 227 } MESH_PATTERN; 228 229 typedef enum { 230 // No reaction to rate control on a detected slide/scene change. 231 NO_DETECTION = 0, 232 233 // Set to larger Q (max_q set by user) based only on the 234 // detected slide/scene change and current/past Q. 235 FAST_DETECTION_MAXQ = 1, 236 237 // Based on (first pass) encoded frame, if large frame size is detected 238 // then set to higher Q for the second re-encode. This involves 2 pass 239 // encoding on slide change, so slower than 1, but more accurate for 240 // detecting overshoot. 241 RE_ENCODE_MAXQ = 2 242 } OVERSHOOT_DETECTION_CBR_RT; 243 244 typedef enum { 245 USE_2_TAPS = 0, 246 USE_4_TAPS, 247 USE_8_TAPS, 248 USE_8_TAPS_SHARP, 249 } SUBPEL_SEARCH_TYPE; 250 251 typedef struct SPEED_FEATURES { 252 MV_SPEED_FEATURES mv; 253 254 // Frame level coding parameter update 255 int frame_parameter_update; 256 257 RECODE_LOOP_TYPE recode_loop; 258 259 // Trellis (dynamic programming) optimization of quantized values (+1, 0). 260 int optimize_coefficients; 261 262 // Always set to 0. If on it enables 0 cost background transmission 263 // (except for the initial transmission of the segmentation). The feature is 264 // disabled because the addition of very large block sizes make the 265 // backgrounds very to cheap to encode, and the segmentation we have 266 // adds overhead. 267 int static_segmentation; 268 269 // If 1 we iterate finding a best reference for 2 ref frames together - via 270 // a log search that iterates 4 times (check around mv for last for best 271 // error of combined predictor then check around mv for alt). If 0 we 272 // we just use the best motion vector found for each frame by itself. 273 BLOCK_SIZE comp_inter_joint_search_thresh; 274 275 // This variable is used to cap the maximum number of times we skip testing a 276 // mode to be evaluated. A high value means we will be faster. 277 // Turned off when (row_mt_bit_exact == 1 && adaptive_rd_thresh_row_mt == 0). 278 int adaptive_rd_thresh; 279 280 // Flag to use adaptive_rd_thresh when row-mt it enabled, only for non-rd 281 // pickmode. 282 int adaptive_rd_thresh_row_mt; 283 284 // Enables skipping the reconstruction step (idct, recon) in the 285 // intermediate steps assuming the last frame didn't have too many intra 286 // blocks and the q is less than a threshold. 287 int skip_encode_sb; 288 int skip_encode_frame; 289 // Speed feature to allow or disallow skipping of recode at block 290 // level within a frame. 291 int allow_skip_recode; 292 293 // Coefficient probability model approximation step size 294 int coeff_prob_appx_step; 295 296 // Enable uniform quantizer followed by trellis coefficient optimization 297 int allow_quant_coeff_opt; 298 double quant_opt_thresh; 299 300 // Enable asymptotic closed-loop encoding decision for key frame and 301 // alternate reference frames. 302 int allow_acl; 303 304 // Temporal dependency model based encoding mode optimization 305 int enable_tpl_model; 306 307 // Use transform domain distortion. Use pixel domain distortion in speed 0 308 // and certain situations in higher speed to improve the RD model precision. 309 int allow_txfm_domain_distortion; 310 double tx_domain_thresh; 311 312 // The threshold is to determine how slow the motino is, it is used when 313 // use_lastframe_partitioning is set to LAST_FRAME_PARTITION_LOW_MOTION 314 MOTION_THRESHOLD lf_motion_threshold; 315 316 // Determine which method we use to determine transform size. We can choose 317 // between options like full rd, largest for prediction size, largest 318 // for intra and model coefs for the rest. 319 TX_SIZE_SEARCH_METHOD tx_size_search_method; 320 321 // How many levels of tx size to search, starting from the largest. 322 int tx_size_search_depth; 323 324 // Low precision 32x32 fdct keeps everything in 16 bits and thus is less 325 // precise but significantly faster than the non lp version. 326 int use_lp32x32fdct; 327 328 // After looking at the first set of modes (set by index here), skip 329 // checking modes for reference frames that don't match the reference frame 330 // of the best so far. 331 int mode_skip_start; 332 333 // TODO(JBB): Remove this. 334 int reference_masking; 335 336 PARTITION_SEARCH_TYPE partition_search_type; 337 338 // Used if partition_search_type = FIXED_SIZE_PARTITION 339 BLOCK_SIZE always_this_block_size; 340 341 // Skip rectangular partition test when partition type none gives better 342 // rd than partition type split. 343 int less_rectangular_check; 344 345 // Disable testing non square partitions(eg 16x32) for block sizes larger than 346 // use_square_only_thresh_high or smaller than use_square_only_thresh_low. 347 int use_square_partition_only; 348 BLOCK_SIZE use_square_only_thresh_high; 349 BLOCK_SIZE use_square_only_thresh_low; 350 351 // Prune reference frames for rectangular partitions. 352 int prune_ref_frame_for_rect_partitions; 353 354 // Threshold values used for ML based rectangular partition search pruning. 355 // If < 0, the feature is turned off. 356 // Higher values mean more aggressiveness to skip rectangular partition 357 // search that results in better encoding speed but worse coding performance. 358 int ml_prune_rect_partition_threhold[4]; 359 360 // Sets min and max partition sizes for this 64x64 region based on the 361 // same 64x64 in last encoded frame, and the left and above neighbor. 362 AUTO_MIN_MAX_MODE auto_min_max_partition_size; 363 // Ensures the rd based auto partition search will always 364 // go down at least to the specified level. 365 BLOCK_SIZE rd_auto_partition_min_limit; 366 367 // Min and max partition size we enable (block_size) as per auto 368 // min max, but also used by adjust partitioning, and pick_partitioning. 369 BLOCK_SIZE default_min_partition_size; 370 BLOCK_SIZE default_max_partition_size; 371 372 // Whether or not we allow partitions one smaller or one greater than the last 373 // frame's partitioning. Only used if use_lastframe_partitioning is set. 374 int adjust_partitioning_from_last_frame; 375 376 // How frequently we re do the partitioning from scratch. Only used if 377 // use_lastframe_partitioning is set. 378 int last_partitioning_redo_frequency; 379 380 // Disables sub 8x8 blocksizes in different scenarios: Choices are to disable 381 // it always, to allow it for only Last frame and Intra, disable it for all 382 // inter modes or to enable it always. 383 int disable_split_mask; 384 385 // TODO(jingning): combine the related motion search speed features 386 // This allows us to use motion search at other sizes as a starting 387 // point for this motion search and limits the search range around it. 388 int adaptive_motion_search; 389 390 // Do extra full pixel motion search to obtain better motion vector. 391 int enhanced_full_pixel_motion_search; 392 393 // Threshold for allowing exhaistive motion search. 394 int exhaustive_searches_thresh; 395 396 // Pattern to be used for any exhaustive mesh searches. 397 MESH_PATTERN mesh_patterns[MAX_MESH_STEP]; 398 399 int schedule_mode_search; 400 401 // Allows sub 8x8 modes to use the prediction filter that was determined 402 // best for 8x8 mode. If set to 0 we always re check all the filters for 403 // sizes less than 8x8, 1 means we check all filter modes if no 8x8 filter 404 // was selected, and 2 means we use 8 tap if no 8x8 filter mode was selected. 405 int adaptive_pred_interp_filter; 406 407 // Adaptive prediction mode search 408 int adaptive_mode_search; 409 410 // Chessboard pattern prediction filter type search 411 int cb_pred_filter_search; 412 413 int cb_partition_search; 414 415 int motion_field_mode_search; 416 417 int alt_ref_search_fp; 418 419 // Fast quantization process path 420 int use_quant_fp; 421 422 // Use finer quantizer in every other few frames that run variable block 423 // partition type search. 424 int force_frame_boost; 425 426 // Maximally allowed base quantization index fluctuation. 427 int max_delta_qindex; 428 429 // Implements various heuristics to skip searching modes 430 // The heuristics selected are based on flags 431 // defined in the MODE_SEARCH_SKIP_HEURISTICS enum 432 unsigned int mode_search_skip_flags; 433 434 // A source variance threshold below which filter search is disabled 435 // Choose a very large value (UINT_MAX) to use 8-tap always 436 unsigned int disable_filter_search_var_thresh; 437 438 // These bit masks allow you to enable or disable intra modes for each 439 // transform size separately. 440 int intra_y_mode_mask[TX_SIZES]; 441 int intra_uv_mode_mask[TX_SIZES]; 442 443 // These bit masks allow you to enable or disable intra modes for each 444 // prediction block size separately. 445 int intra_y_mode_bsize_mask[BLOCK_SIZES]; 446 447 // This variable enables an early break out of mode testing if the model for 448 // rd built from the prediction signal indicates a value that's much 449 // higher than the best rd we've seen so far. 450 int use_rd_breakout; 451 452 // This enables us to use an estimate for intra rd based on dc mode rather 453 // than choosing an actual uv mode in the stage of encoding before the actual 454 // final encode. 455 int use_uv_intra_rd_estimate; 456 457 // This feature controls how the loop filter level is determined. 458 LPF_PICK_METHOD lpf_pick; 459 460 // This feature limits the number of coefficients updates we actually do 461 // by only looking at counts from 1/2 the bands. 462 FAST_COEFF_UPDATE use_fast_coef_updates; 463 464 // This flag controls the use of non-RD mode decision. 465 int use_nonrd_pick_mode; 466 467 // A binary mask indicating if NEARESTMV, NEARMV, ZEROMV, NEWMV 468 // modes are used in order from LSB to MSB for each BLOCK_SIZE. 469 int inter_mode_mask[BLOCK_SIZES]; 470 471 // This feature controls whether we do the expensive context update and 472 // calculation in the rd coefficient costing loop. 473 int use_fast_coef_costing; 474 475 // This feature controls the tolerence vs target used in deciding whether to 476 // recode a frame. It has no meaning if recode is disabled. 477 int recode_tolerance_low; 478 int recode_tolerance_high; 479 480 // This variable controls the maximum block size where intra blocks can be 481 // used in inter frames. 482 // TODO(aconverse): Fold this into one of the other many mode skips 483 BLOCK_SIZE max_intra_bsize; 484 485 // The frequency that we check if SOURCE_VAR_BASED_PARTITION or 486 // FIXED_PARTITION search type should be used. 487 int search_type_check_frequency; 488 489 // When partition is pre-set, the inter prediction result from pick_inter_mode 490 // can be reused in final block encoding process. It is enabled only for real- 491 // time mode speed 6. 492 int reuse_inter_pred_sby; 493 494 // This variable sets the encode_breakout threshold. Currently, it is only 495 // enabled in real time mode. 496 int encode_breakout_thresh; 497 498 // default interp filter choice 499 INTERP_FILTER default_interp_filter; 500 501 // Early termination in transform size search, which only applies while 502 // tx_size_search_method is USE_FULL_RD. 503 int tx_size_search_breakout; 504 505 // adaptive interp_filter search to allow skip of certain filter types. 506 int adaptive_interp_filter_search; 507 508 // mask for skip evaluation of certain interp_filter type. 509 INTERP_FILTER_MASK interp_filter_search_mask; 510 511 // Partition search early breakout thresholds. 512 PARTITION_SEARCH_BREAKOUT_THR partition_search_breakout_thr; 513 514 // Use ML-based partition search early breakout. 515 int use_ml_partition_search_breakout; 516 // Higher values mean more aggressiveness for partition search breakout that 517 // results in better encoding speed but worse compression performance. 518 float ml_partition_search_breakout_thresh[3]; 519 520 // Machine-learning based partition search early termination 521 int ml_partition_search_early_termination; 522 523 // Machine-learning based partition search pruning using prediction residue 524 // variance. 525 int ml_var_partition_pruning; 526 527 // Allow skipping partition search for still image frame 528 int allow_partition_search_skip; 529 530 // Fast approximation of vp9_model_rd_from_var_lapndz 531 int simple_model_rd_from_var; 532 533 // Skip a number of expensive mode evaluations for blocks with zero source 534 // variance. 535 int short_circuit_flat_blocks; 536 537 // Skip a number of expensive mode evaluations for blocks with very low 538 // temporal variance. If the low temporal variance flag is set for a block, 539 // do the following: 540 // 1: Skip all golden modes and ALL INTRA for bsize >= 32x32. 541 // 2: Skip golden non-zeromv and newmv-last for bsize >= 16x16, skip ALL 542 // INTRA for bsize >= 32x32 and vert/horz INTRA for bsize 16x16, 16x32 and 543 // 32x16. 544 // 3: Same as (2), but also skip golden zeromv. 545 int short_circuit_low_temp_var; 546 547 // Limits the rd-threshold update for early exit for the newmv-last mode, 548 // for non-rd mode. 549 int limit_newmv_early_exit; 550 551 // Adds a bias against golden reference, for non-rd mode. 552 int bias_golden; 553 554 // Bias to use base mv and skip 1/4 subpel search when use base mv in 555 // enhancement layer. 556 int base_mv_aggressive; 557 558 // Global flag to enable partition copy from the previous frame. 559 int copy_partition_flag; 560 561 // Compute the source sad for every superblock of the frame, 562 // prior to encoding the frame, to be used to bypass some encoder decisions. 563 int use_source_sad; 564 565 int use_simple_block_yrd; 566 567 // If source sad of superblock is high (> adapt_partition_thresh), will switch 568 // from VARIANCE_PARTITION to REFERENCE_PARTITION (which selects partition 569 // based on the nonrd-pickmode). 570 int adapt_partition_source_sad; 571 int adapt_partition_thresh; 572 573 // Enable use of alt-refs in 1 pass VBR. 574 int use_altref_onepass; 575 576 // Enable use of compound prediction, for nonrd_pickmode with nonzero lag. 577 int use_compound_nonrd_pickmode; 578 579 // Always use nonrd_pick_intra for all block sizes on keyframes. 580 int nonrd_keyframe; 581 582 // For SVC: enables use of partition from lower spatial resolution. 583 int svc_use_lowres_part; 584 585 // Flag to indicate process for handling overshoot on slide/scene change, 586 // for real-time CBR mode. 587 OVERSHOOT_DETECTION_CBR_RT overshoot_detection_cbr_rt; 588 589 // Disable partitioning of 16x16 blocks. 590 int disable_16x16part_nonkey; 591 592 // Allow for disabling golden reference. 593 int disable_golden_ref; 594 595 // Allow sub-pixel search to use interpolation filters with different taps in 596 // order to achieve accurate motion search result. 597 SUBPEL_SEARCH_TYPE use_accurate_subpel_search; 598 } SPEED_FEATURES; 599 600 struct VP9_COMP; 601 602 void vp9_set_speed_features_framesize_independent(struct VP9_COMP *cpi); 603 void vp9_set_speed_features_framesize_dependent(struct VP9_COMP *cpi); 604 605 #ifdef __cplusplus 606 } // extern "C" 607 #endif 608 609 #endif // VPX_VP9_ENCODER_VP9_SPEED_FEATURES_H_ 610