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1 /*
2  * Copyright (c) 2019, 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 #include <stdint.h>
13 
14 #include "av1/common/blockd.h"
15 #include "config/aom_config.h"
16 #include "config/aom_scale_rtcd.h"
17 
18 #include "aom/aom_codec.h"
19 #include "aom/aom_encoder.h"
20 
21 #include "av1/common/av1_common_int.h"
22 
23 #include "av1/encoder/encoder.h"
24 #include "av1/encoder/firstpass.h"
25 #include "av1/encoder/gop_structure.h"
26 #include "av1/encoder/pass2_strategy.h"
27 
28 // This function sets gf_group->frame_parallel_level for LF_UPDATE frames based
29 // on the value of parallel_frame_count.
set_frame_parallel_level(int * frame_parallel_level,int * parallel_frame_count,int max_parallel_frames)30 static void set_frame_parallel_level(int *frame_parallel_level,
31                                      int *parallel_frame_count,
32                                      int max_parallel_frames) {
33   assert(*parallel_frame_count > 0);
34   // parallel_frame_count > 1 indicates subsequent frame(s) in the current
35   // parallel encode set.
36   *frame_parallel_level = 1 + (*parallel_frame_count > 1);
37   // Update the count of no. of parallel frames.
38   (*parallel_frame_count)++;
39   if (*parallel_frame_count > max_parallel_frames) *parallel_frame_count = 1;
40 }
41 
42 // This function sets gf_group->src_offset based on frame_parallel_level.
43 // Outputs are gf_group->src_offset and first_frame_index
set_src_offset(GF_GROUP * const gf_group,int * first_frame_index,int cur_frame_idx,int frame_ind)44 static void set_src_offset(GF_GROUP *const gf_group, int *first_frame_index,
45                            int cur_frame_idx, int frame_ind) {
46   if (gf_group->frame_parallel_level[frame_ind] > 0) {
47     if (gf_group->frame_parallel_level[frame_ind] == 1) {
48       *first_frame_index = cur_frame_idx;
49     }
50 
51     // Obtain the offset of the frame at frame_ind in the lookahead queue by
52     // subtracting the display order hints of the current frame from the display
53     // order hint of the first frame in parallel encoding set (at
54     // first_frame_index).
55     gf_group->src_offset[frame_ind] =
56         (cur_frame_idx + gf_group->arf_src_offset[frame_ind]) -
57         *first_frame_index;
58   }
59 }
60 
61 // Sets the GF_GROUP params for LF_UPDATE frames.
set_params_for_leaf_frames(const TWO_PASS * twopass,const TWO_PASS_FRAME * twopass_frame,const PRIMARY_RATE_CONTROL * p_rc,FRAME_INFO * frame_info,GF_GROUP * const gf_group,int * cur_frame_idx,int * frame_ind,int * parallel_frame_count,int max_parallel_frames,int do_frame_parallel_encode,int * first_frame_index,int * cur_disp_index,int layer_depth,int start,int end)62 static AOM_INLINE void set_params_for_leaf_frames(
63     const TWO_PASS *twopass, const TWO_PASS_FRAME *twopass_frame,
64     const PRIMARY_RATE_CONTROL *p_rc, FRAME_INFO *frame_info,
65     GF_GROUP *const gf_group, int *cur_frame_idx, int *frame_ind,
66     int *parallel_frame_count, int max_parallel_frames,
67     int do_frame_parallel_encode, int *first_frame_index, int *cur_disp_index,
68     int layer_depth, int start, int end) {
69   gf_group->update_type[*frame_ind] = LF_UPDATE;
70   gf_group->arf_src_offset[*frame_ind] = 0;
71   gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
72   gf_group->layer_depth[*frame_ind] = MAX_ARF_LAYERS;
73   gf_group->frame_type[*frame_ind] = INTER_FRAME;
74   gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
75   gf_group->max_layer_depth = AOMMAX(gf_group->max_layer_depth, layer_depth);
76   gf_group->display_idx[*frame_ind] = (*cur_disp_index);
77   gf_group->arf_boost[*frame_ind] =
78       av1_calc_arf_boost(twopass, twopass_frame, p_rc, frame_info, start,
79                          end - start, 0, NULL, NULL, 0);
80   ++(*cur_disp_index);
81 
82   // Set the level of parallelism for the LF_UPDATE frame.
83   if (do_frame_parallel_encode) {
84     set_frame_parallel_level(&gf_group->frame_parallel_level[*frame_ind],
85                              parallel_frame_count, max_parallel_frames);
86     // Set LF_UPDATE frames as non-reference frames.
87     gf_group->is_frame_non_ref[*frame_ind] = 1;
88   }
89   set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
90 
91   ++(*frame_ind);
92   ++(*cur_frame_idx);
93 }
94 
95 // Sets the GF_GROUP params for INTNL_OVERLAY_UPDATE frames.
set_params_for_intnl_overlay_frames(GF_GROUP * const gf_group,int * cur_frame_idx,int * frame_ind,int * first_frame_index,int * cur_disp_index,int layer_depth)96 static AOM_INLINE void set_params_for_intnl_overlay_frames(
97     GF_GROUP *const gf_group, int *cur_frame_idx, int *frame_ind,
98     int *first_frame_index, int *cur_disp_index, int layer_depth) {
99   gf_group->update_type[*frame_ind] = INTNL_OVERLAY_UPDATE;
100   gf_group->arf_src_offset[*frame_ind] = 0;
101   gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
102   gf_group->layer_depth[*frame_ind] = layer_depth;
103   gf_group->frame_type[*frame_ind] = INTER_FRAME;
104   gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
105   gf_group->display_idx[*frame_ind] = (*cur_disp_index);
106   ++(*cur_disp_index);
107 
108   set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
109   ++(*frame_ind);
110   ++(*cur_frame_idx);
111 }
112 
113 // Sets the GF_GROUP params for INTNL_ARF_UPDATE frames.
set_params_for_internal_arfs(const TWO_PASS * twopass,const TWO_PASS_FRAME * twopass_frame,const PRIMARY_RATE_CONTROL * p_rc,FRAME_INFO * frame_info,GF_GROUP * const gf_group,int * cur_frame_idx,int * frame_ind,int * parallel_frame_count,int max_parallel_frames,int do_frame_parallel_encode,int * first_frame_index,int depth_thr,int * cur_disp_idx,int layer_depth,int arf_src_offset,int offset,int f_frames,int b_frames)114 static AOM_INLINE void set_params_for_internal_arfs(
115     const TWO_PASS *twopass, const TWO_PASS_FRAME *twopass_frame,
116     const PRIMARY_RATE_CONTROL *p_rc, FRAME_INFO *frame_info,
117     GF_GROUP *const gf_group, int *cur_frame_idx, int *frame_ind,
118     int *parallel_frame_count, int max_parallel_frames,
119     int do_frame_parallel_encode, int *first_frame_index, int depth_thr,
120     int *cur_disp_idx, int layer_depth, int arf_src_offset, int offset,
121     int f_frames, int b_frames) {
122   gf_group->update_type[*frame_ind] = INTNL_ARF_UPDATE;
123   gf_group->arf_src_offset[*frame_ind] = arf_src_offset;
124   gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
125   gf_group->layer_depth[*frame_ind] = layer_depth;
126   gf_group->frame_type[*frame_ind] = INTER_FRAME;
127   gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
128   gf_group->display_idx[*frame_ind] =
129       (*cur_disp_idx) + gf_group->arf_src_offset[*frame_ind];
130   gf_group->arf_boost[*frame_ind] =
131       av1_calc_arf_boost(twopass, twopass_frame, p_rc, frame_info, offset,
132                          f_frames, b_frames, NULL, NULL, 0);
133 
134   if (do_frame_parallel_encode) {
135     if (depth_thr != INT_MAX) {
136       assert(depth_thr == 3 || depth_thr == 4);
137       assert(IMPLIES(depth_thr == 3, layer_depth == 4));
138       assert(IMPLIES(depth_thr == 4, layer_depth == 5));
139       // Set frame_parallel_level of the first frame in the given layer to 1.
140       if (gf_group->layer_depth[(*frame_ind) - 1] != layer_depth) {
141         gf_group->frame_parallel_level[*frame_ind] = 1;
142       } else {
143         // Set frame_parallel_level of the consecutive frame in the same given
144         // layer to 2.
145         assert(gf_group->frame_parallel_level[(*frame_ind) - 1] == 1);
146         gf_group->frame_parallel_level[*frame_ind] = 2;
147         // Store the display order hints of the past 2 INTNL_ARF_UPDATE
148         // frames which would not have been displayed at the time of the encode
149         // of current frame.
150         gf_group->skip_frame_refresh[*frame_ind][0] =
151             gf_group->display_idx[(*frame_ind) - 1];
152         gf_group->skip_frame_refresh[*frame_ind][1] =
153             gf_group->display_idx[(*frame_ind) - 2];
154         // Set the display_idx of frame_parallel_level 1 frame in
155         // gf_group->skip_frame_as_ref.
156         gf_group->skip_frame_as_ref[*frame_ind] =
157             gf_group->display_idx[(*frame_ind) - 1];
158       }
159     }
160     // If max_parallel_frames is not exceeded and if the frame will not be
161     // temporally filtered, encode the next internal ARF frame in parallel.
162     if (*parallel_frame_count > 1 &&
163         *parallel_frame_count <= max_parallel_frames) {
164       if (gf_group->arf_src_offset[*frame_ind] < TF_LOOKAHEAD_IDX_THR)
165         gf_group->frame_parallel_level[*frame_ind] = 2;
166       *parallel_frame_count = 1;
167     }
168   }
169   set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
170   ++(*frame_ind);
171 }
172 
173 // Set parameters for frames between 'start' and 'end' (excluding both).
set_multi_layer_params_for_fp(const TWO_PASS * twopass,const TWO_PASS_FRAME * twopass_frame,GF_GROUP * const gf_group,const PRIMARY_RATE_CONTROL * p_rc,RATE_CONTROL * rc,FRAME_INFO * frame_info,int start,int end,int * cur_frame_idx,int * frame_ind,int * parallel_frame_count,int max_parallel_frames,int do_frame_parallel_encode,int * first_frame_index,int depth_thr,int * cur_disp_idx,int layer_depth)174 static void set_multi_layer_params_for_fp(
175     const TWO_PASS *twopass, const TWO_PASS_FRAME *twopass_frame,
176     GF_GROUP *const gf_group, const PRIMARY_RATE_CONTROL *p_rc,
177     RATE_CONTROL *rc, FRAME_INFO *frame_info, int start, int end,
178     int *cur_frame_idx, int *frame_ind, int *parallel_frame_count,
179     int max_parallel_frames, int do_frame_parallel_encode,
180     int *first_frame_index, int depth_thr, int *cur_disp_idx, int layer_depth) {
181   const int num_frames_to_process = end - start;
182 
183   // Either we are at the last level of the pyramid, or we don't have enough
184   // frames between 'l' and 'r' to create one more level.
185   if (layer_depth > gf_group->max_layer_depth_allowed ||
186       num_frames_to_process < 3) {
187     // Leaf nodes.
188     while (start < end) {
189       set_params_for_leaf_frames(twopass, twopass_frame, p_rc, frame_info,
190                                  gf_group, cur_frame_idx, frame_ind,
191                                  parallel_frame_count, max_parallel_frames,
192                                  do_frame_parallel_encode, first_frame_index,
193                                  cur_disp_idx, layer_depth, start, end);
194       ++start;
195     }
196   } else {
197     const int m = (start + end - 1) / 2;
198 
199     // Internal ARF.
200     int arf_src_offset = m - start;
201     set_params_for_internal_arfs(
202         twopass, twopass_frame, p_rc, frame_info, gf_group, cur_frame_idx,
203         frame_ind, parallel_frame_count, max_parallel_frames,
204         do_frame_parallel_encode, first_frame_index, INT_MAX, cur_disp_idx,
205         layer_depth, arf_src_offset, m, end - m, m - start);
206 
207     // If encode reordering is enabled, configure the multi-layers accordingly
208     // and return. For e.g., the encode order for gf-interval 16 after
209     // reordering would be 0-> 16-> 8-> 4-> 2-> 6-> 1-> 3-> 5-> 7-> 12-> 10->
210     // 14-> 9-> 11-> 13-> 15.
211     if (layer_depth >= depth_thr) {
212       int m1 = (m + start - 1) / 2;
213       int m2 = (m + 1 + end) / 2;
214       int arf_src_offsets[2] = { m1 - start, m2 - start };
215       // Parameters to compute arf_boost.
216       int offset[2] = { m1, m2 };
217       int f_frames[2] = { m - m1, end - m2 };
218       int b_frames[2] = { m1 - start, m2 - (m + 1) };
219 
220       // Set GF_GROUP params for INTNL_ARF_UPDATE frames which are reordered.
221       for (int i = 0; i < 2; i++) {
222         set_params_for_internal_arfs(
223             twopass, twopass_frame, p_rc, frame_info, gf_group, cur_frame_idx,
224             frame_ind, parallel_frame_count, max_parallel_frames,
225             do_frame_parallel_encode, first_frame_index, depth_thr,
226             cur_disp_idx, layer_depth + 1, arf_src_offsets[i], offset[i],
227             f_frames[i], b_frames[i]);
228       }
229 
230       // Initialize the start and end indices to configure LF_UPDATE frames.
231       int start_idx[4] = { start, m1 + 1, m + 1, end - 1 };
232       int end_idx[4] = { m1, m, m2, end };
233       int layer_depth_for_intnl_overlay[4] = { layer_depth + 1, layer_depth,
234                                                layer_depth + 1, INVALID_IDX };
235 
236       // Set GF_GROUP params for the rest of LF_UPDATE and INTNL_OVERLAY_UPDATE
237       // frames after reordering.
238       for (int i = 0; i < 4; i++) {
239         set_multi_layer_params_for_fp(
240             twopass, twopass_frame, gf_group, p_rc, rc, frame_info,
241             start_idx[i], end_idx[i], cur_frame_idx, frame_ind,
242             parallel_frame_count, max_parallel_frames, do_frame_parallel_encode,
243             first_frame_index, depth_thr, cur_disp_idx, layer_depth + 2);
244         if (layer_depth_for_intnl_overlay[i] != INVALID_IDX)
245           set_params_for_intnl_overlay_frames(
246               gf_group, cur_frame_idx, frame_ind, first_frame_index,
247               cur_disp_idx, layer_depth_for_intnl_overlay[i]);
248       }
249       return;
250     }
251 
252     // Frames displayed before this internal ARF.
253     set_multi_layer_params_for_fp(
254         twopass, twopass_frame, gf_group, p_rc, rc, frame_info, start, m,
255         cur_frame_idx, frame_ind, parallel_frame_count, max_parallel_frames,
256         do_frame_parallel_encode, first_frame_index, depth_thr, cur_disp_idx,
257         layer_depth + 1);
258 
259     // Overlay for internal ARF.
260     set_params_for_intnl_overlay_frames(gf_group, cur_frame_idx, frame_ind,
261                                         first_frame_index, cur_disp_idx,
262                                         layer_depth);
263 
264     // Frames displayed after this internal ARF.
265     set_multi_layer_params_for_fp(
266         twopass, twopass_frame, gf_group, p_rc, rc, frame_info, m + 1, end,
267         cur_frame_idx, frame_ind, parallel_frame_count, max_parallel_frames,
268         do_frame_parallel_encode, first_frame_index, depth_thr, cur_disp_idx,
269         layer_depth + 1);
270   }
271 }
272 
273 // Structure for bookkeeping start, end and display indices to configure
274 // INTNL_ARF_UPDATE frames.
275 typedef struct {
276   int start;
277   int end;
278   int display_index;
279 } FRAME_REORDER_INFO;
280 
281 // Updates the stats required to configure the GF_GROUP.
fill_arf_frame_stats(FRAME_REORDER_INFO * arf_frame_stats,int arf_frame_index,int display_idx,int start,int end)282 static AOM_INLINE void fill_arf_frame_stats(FRAME_REORDER_INFO *arf_frame_stats,
283                                             int arf_frame_index,
284                                             int display_idx, int start,
285                                             int end) {
286   arf_frame_stats[arf_frame_index].start = start;
287   arf_frame_stats[arf_frame_index].end = end;
288   arf_frame_stats[arf_frame_index].display_index = display_idx;
289 }
290 
291 // Sets GF_GROUP params for INTNL_ARF_UPDATE frames. Also populates
292 // doh_gf_index_map and arf_frame_stats.
set_params_for_internal_arfs_in_gf14(GF_GROUP * const gf_group,FRAME_REORDER_INFO * arf_frame_stats,int * cur_frame_idx,int * cur_disp_idx,int * frame_ind,int * count_arf_frames,int * doh_gf_index_map,int start,int end,int layer_depth,int layer_with_parallel_encodes)293 static AOM_INLINE void set_params_for_internal_arfs_in_gf14(
294     GF_GROUP *const gf_group, FRAME_REORDER_INFO *arf_frame_stats,
295     int *cur_frame_idx, int *cur_disp_idx, int *frame_ind,
296     int *count_arf_frames, int *doh_gf_index_map, int start, int end,
297     int layer_depth, int layer_with_parallel_encodes) {
298   int index = (start + end - 1) / 2;
299   gf_group->update_type[*frame_ind] = INTNL_ARF_UPDATE;
300   gf_group->arf_src_offset[*frame_ind] = index - 1;
301   gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
302   gf_group->layer_depth[*frame_ind] = layer_depth;
303   gf_group->frame_type[*frame_ind] = INTER_FRAME;
304   gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
305   gf_group->display_idx[*frame_ind] =
306       (*cur_disp_idx) + gf_group->arf_src_offset[*frame_ind];
307 
308   // Update the display index of the current frame with its gf index.
309   doh_gf_index_map[index] = *frame_ind;
310   if (layer_with_parallel_encodes) {
311     assert(layer_depth == 4);
312     // Set frame_parallel_level of the first frame in the given layer depth
313     // to 1.
314     if (gf_group->layer_depth[(*frame_ind) - 1] != layer_depth) {
315       gf_group->frame_parallel_level[*frame_ind] = 1;
316     } else {
317       // Set frame_parallel_level of the consecutive frame in the same given
318       // layer depth to 2.
319       assert(gf_group->frame_parallel_level[(*frame_ind) - 1] == 1);
320       gf_group->frame_parallel_level[*frame_ind] = 2;
321       // Set the display_idx of frame_parallel_level 1 frame in
322       // gf_group->skip_frame_as_ref.
323       gf_group->skip_frame_as_ref[*frame_ind] =
324           gf_group->display_idx[(*frame_ind) - 1];
325     }
326   }
327   ++(*frame_ind);
328 
329   // Update arf_frame_stats.
330   fill_arf_frame_stats(arf_frame_stats, *count_arf_frames, index, start, end);
331   ++(*count_arf_frames);
332 }
333 
334 // Sets GF_GROUP params for all INTNL_ARF_UPDATE frames in the given layer
335 // dpeth.
set_params_for_cur_layer_frames(GF_GROUP * const gf_group,FRAME_REORDER_INFO * arf_frame_stats,int * cur_frame_idx,int * cur_disp_idx,int * frame_ind,int * count_arf_frames,int * doh_gf_index_map,int num_dir,int node_start,int node_end,int layer_depth)336 static AOM_INLINE void set_params_for_cur_layer_frames(
337     GF_GROUP *const gf_group, FRAME_REORDER_INFO *arf_frame_stats,
338     int *cur_frame_idx, int *cur_disp_idx, int *frame_ind,
339     int *count_arf_frames, int *doh_gf_index_map, int num_dir, int node_start,
340     int node_end, int layer_depth) {
341   assert(num_dir < 3);
342   int start, end;
343   // Iterate through the nodes in the previous layer depth.
344   for (int i = node_start; i < node_end; i++) {
345     // For each node, check if a frame can be coded as INTNL_ARF_UPDATE frame on
346     // either direction.
347     for (int dir = 0; dir < num_dir; dir++) {
348       // Checks for a frame to the left of current node.
349       if (dir == 0) {
350         start = arf_frame_stats[i].start;
351         end = arf_frame_stats[i].display_index;
352       } else {
353         // Checks for a frame to the right of current node.
354         start = arf_frame_stats[i].display_index + 1;
355         end = arf_frame_stats[i].end;
356       }
357       const int num_frames_to_process = end - start;
358       // Checks if a frame can be coded as INTNL_ARF_UPDATE frame. If
359       // num_frames_to_process is less than 3, then there are not enough frames
360       // between 'start' and 'end' to create another level.
361       if (num_frames_to_process >= 3) {
362         // Flag to indicate the lower layer depths for which parallel encoding
363         // is enabled. Currently enabled for layer 4 frames.
364         int layer_with_parallel_encodes = layer_depth == 4;
365         set_params_for_internal_arfs_in_gf14(
366             gf_group, arf_frame_stats, cur_frame_idx, cur_disp_idx, frame_ind,
367             count_arf_frames, doh_gf_index_map, start, end, layer_depth,
368             layer_with_parallel_encodes);
369       }
370     }
371   }
372 }
373 
374 // Configures multi-layers of the GF_GROUP when consecutive encode of frames in
375 // the same layer depth is enbaled.
set_multi_layer_params_for_gf14(const TWO_PASS * twopass,const TWO_PASS_FRAME * twopass_frame,const PRIMARY_RATE_CONTROL * p_rc,FRAME_INFO * frame_info,GF_GROUP * const gf_group,FRAME_REORDER_INFO * arf_frame_stats,int * cur_frame_idx,int * frame_ind,int * count_arf_frames,int * doh_gf_index_map,int * parallel_frame_count,int * first_frame_index,int * cur_disp_index,int gf_interval,int layer_depth,int max_parallel_frames)376 static AOM_INLINE void set_multi_layer_params_for_gf14(
377     const TWO_PASS *twopass, const TWO_PASS_FRAME *twopass_frame,
378     const PRIMARY_RATE_CONTROL *p_rc, FRAME_INFO *frame_info,
379     GF_GROUP *const gf_group, FRAME_REORDER_INFO *arf_frame_stats,
380     int *cur_frame_idx, int *frame_ind, int *count_arf_frames,
381     int *doh_gf_index_map, int *parallel_frame_count, int *first_frame_index,
382     int *cur_disp_index, int gf_interval, int layer_depth,
383     int max_parallel_frames) {
384   assert(layer_depth == 2);
385   assert(gf_group->max_layer_depth_allowed >= 4);
386   int layer, node_start, node_end = 0;
387   // Maximum layer depth excluding LF_UPDATE frames is 4 since applicable only
388   // for gf-interval 14.
389   const int max_layer_depth = 4;
390   // Iterate through each layer depth starting from 2 till 'max_layer_depth'.
391   for (layer = layer_depth; layer <= max_layer_depth; layer++) {
392     // 'node_start' and 'node_end' indicate the number of nodes from the
393     // previous layer depth to be considered. It also corresponds to the indices
394     // of arf_frame_stats.
395     node_start = node_end;
396     node_end = (*count_arf_frames);
397     // 'num_dir' indicates the number of directions to traverse w.r.t. a given
398     // node in order to choose an INTNL_ARF_UPDATE frame. Layer depth 2 would
399     // have only one frame and hence needs to traverse only in the left
400     // direction w.r.t the node in the previous layer.
401     int num_dir = layer == 2 ? 1 : 2;
402     set_params_for_cur_layer_frames(gf_group, arf_frame_stats, cur_frame_idx,
403                                     cur_disp_index, frame_ind, count_arf_frames,
404                                     doh_gf_index_map, num_dir, node_start,
405                                     node_end, layer);
406   }
407 
408   for (int i = 1; i < gf_interval; i++) {
409     // Since doh_gf_index_map is already populated for all INTNL_ARF_UPDATE
410     // frames in the GF_GROUP, any frame with INVALID_IDX would correspond to an
411     // LF_UPDATE frame.
412     if (doh_gf_index_map[i] == INVALID_IDX) {
413       // LF_UPDATE frames.
414       // TODO(Remya): Correct start and end parameters passed to
415       // set_params_for_leaf_frames() once encode reordering for gf-interval 14
416       // is enbaled for parallel encode of lower layer frames.
417       set_params_for_leaf_frames(
418           twopass, twopass_frame, p_rc, frame_info, gf_group, cur_frame_idx,
419           frame_ind, parallel_frame_count, max_parallel_frames, 1,
420           first_frame_index, cur_disp_index, layer, 0, 0);
421     } else {
422       // In order to obtain the layer depths of INTNL_OVERLAY_UPDATE frames, get
423       // the gf index of corresponding INTNL_ARF_UPDATE frames.
424       int intnl_arf_index = doh_gf_index_map[i];
425       int ld = gf_group->layer_depth[intnl_arf_index];
426       set_params_for_intnl_overlay_frames(gf_group, cur_frame_idx, frame_ind,
427                                           first_frame_index, cur_disp_index,
428                                           ld);
429     }
430   }
431 }
432 
433 // Set parameters for frames between 'start' and 'end' (excluding both).
set_multi_layer_params(const TWO_PASS * twopass,const TWO_PASS_FRAME * twopass_frame,GF_GROUP * const gf_group,const PRIMARY_RATE_CONTROL * p_rc,RATE_CONTROL * rc,FRAME_INFO * frame_info,int start,int end,int * cur_frame_idx,int * frame_ind,int * parallel_frame_count,int max_parallel_frames,int do_frame_parallel_encode,int * first_frame_index,int layer_depth)434 static void set_multi_layer_params(
435     const TWO_PASS *twopass, const TWO_PASS_FRAME *twopass_frame,
436     GF_GROUP *const gf_group, const PRIMARY_RATE_CONTROL *p_rc,
437     RATE_CONTROL *rc, FRAME_INFO *frame_info, int start, int end,
438     int *cur_frame_idx, int *frame_ind, int *parallel_frame_count,
439     int max_parallel_frames, int do_frame_parallel_encode,
440     int *first_frame_index, int layer_depth) {
441   const int num_frames_to_process = end - start;
442 
443   // Either we are at the last level of the pyramid, or we don't have enough
444   // frames between 'l' and 'r' to create one more level.
445   if (layer_depth > gf_group->max_layer_depth_allowed ||
446       num_frames_to_process < 3) {
447     // Leaf nodes.
448     while (start < end) {
449       gf_group->update_type[*frame_ind] = LF_UPDATE;
450       gf_group->arf_src_offset[*frame_ind] = 0;
451       gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
452       gf_group->layer_depth[*frame_ind] = MAX_ARF_LAYERS;
453       gf_group->arf_boost[*frame_ind] =
454           av1_calc_arf_boost(twopass, twopass_frame, p_rc, frame_info, start,
455                              end - start, 0, NULL, NULL, 0);
456       gf_group->frame_type[*frame_ind] = INTER_FRAME;
457       gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
458       gf_group->max_layer_depth =
459           AOMMAX(gf_group->max_layer_depth, layer_depth);
460       // Set the level of parallelism for the LF_UPDATE frame.
461       if (do_frame_parallel_encode) {
462         set_frame_parallel_level(&gf_group->frame_parallel_level[*frame_ind],
463                                  parallel_frame_count, max_parallel_frames);
464         // Set LF_UPDATE frames as non-reference frames.
465         gf_group->is_frame_non_ref[*frame_ind] = 1;
466       }
467       set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
468       ++(*frame_ind);
469       ++(*cur_frame_idx);
470       ++start;
471     }
472   } else {
473     const int m = (start + end - 1) / 2;
474 
475     // Internal ARF.
476     gf_group->update_type[*frame_ind] = INTNL_ARF_UPDATE;
477     gf_group->arf_src_offset[*frame_ind] = m - start;
478     gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
479     gf_group->layer_depth[*frame_ind] = layer_depth;
480     gf_group->frame_type[*frame_ind] = INTER_FRAME;
481     gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
482 
483     if (do_frame_parallel_encode) {
484       // If max_parallel_frames is not exceeded and if the frame will not be
485       // temporally filtered, encode the next internal ARF frame in parallel.
486       if (*parallel_frame_count > 1 &&
487           *parallel_frame_count <= max_parallel_frames) {
488         if (gf_group->arf_src_offset[*frame_ind] < TF_LOOKAHEAD_IDX_THR)
489           gf_group->frame_parallel_level[*frame_ind] = 2;
490         *parallel_frame_count = 1;
491       }
492     }
493     set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
494 
495     // Get the boost factor for intermediate ARF frames.
496     gf_group->arf_boost[*frame_ind] =
497         av1_calc_arf_boost(twopass, twopass_frame, p_rc, frame_info, m, end - m,
498                            m - start, NULL, NULL, 0);
499     ++(*frame_ind);
500 
501     // Frames displayed before this internal ARF.
502     set_multi_layer_params(
503         twopass, twopass_frame, gf_group, p_rc, rc, frame_info, start, m,
504         cur_frame_idx, frame_ind, parallel_frame_count, max_parallel_frames,
505         do_frame_parallel_encode, first_frame_index, layer_depth + 1);
506 
507     // Overlay for internal ARF.
508     gf_group->update_type[*frame_ind] = INTNL_OVERLAY_UPDATE;
509     gf_group->arf_src_offset[*frame_ind] = 0;
510     gf_group->cur_frame_idx[*frame_ind] = *cur_frame_idx;
511     gf_group->arf_boost[*frame_ind] = 0;
512     gf_group->layer_depth[*frame_ind] = layer_depth;
513     gf_group->frame_type[*frame_ind] = INTER_FRAME;
514     gf_group->refbuf_state[*frame_ind] = REFBUF_UPDATE;
515 
516     set_src_offset(gf_group, first_frame_index, *cur_frame_idx, *frame_ind);
517     ++(*frame_ind);
518     ++(*cur_frame_idx);
519 
520     // Frames displayed after this internal ARF.
521     set_multi_layer_params(
522         twopass, twopass_frame, gf_group, p_rc, rc, frame_info, m + 1, end,
523         cur_frame_idx, frame_ind, parallel_frame_count, max_parallel_frames,
524         do_frame_parallel_encode, first_frame_index, layer_depth + 1);
525   }
526 }
527 
construct_multi_layer_gf_structure(AV1_COMP * cpi,TWO_PASS * twopass,GF_GROUP * const gf_group,RATE_CONTROL * rc,FRAME_INFO * const frame_info,int baseline_gf_interval,FRAME_UPDATE_TYPE first_frame_update_type)528 static int construct_multi_layer_gf_structure(
529     AV1_COMP *cpi, TWO_PASS *twopass, GF_GROUP *const gf_group,
530     RATE_CONTROL *rc, FRAME_INFO *const frame_info, int baseline_gf_interval,
531     FRAME_UPDATE_TYPE first_frame_update_type) {
532   PRIMARY_RATE_CONTROL *const p_rc = &cpi->ppi->p_rc;
533   // TODO(angiebird): Why do we need "-1" here?
534   const int gf_interval = baseline_gf_interval - 1;
535   int frame_index = 0;
536   int cur_frame_index = 0;
537 
538   // Set the display order hint for the first frame in the GF_GROUP.
539   int cur_disp_index = (first_frame_update_type == KF_UPDATE)
540                            ? 0
541                            : cpi->common.current_frame.frame_number;
542 
543   // Initialize gf_group->frame_parallel_level and gf_group->is_frame_non_ref to
544   // 0.
545   memset(
546       gf_group->frame_parallel_level, 0,
547       sizeof(gf_group->frame_parallel_level[0]) * MAX_STATIC_GF_GROUP_LENGTH);
548   memset(gf_group->is_frame_non_ref, 0,
549          sizeof(gf_group->is_frame_non_ref[0]) * MAX_STATIC_GF_GROUP_LENGTH);
550   memset(gf_group->src_offset, 0,
551          sizeof(gf_group->src_offset[0]) * MAX_STATIC_GF_GROUP_LENGTH);
552   // Initialize gf_group->skip_frame_refresh and gf_group->skip_frame_as_ref
553   // with INVALID_IDX.
554   memset(gf_group->skip_frame_refresh, INVALID_IDX,
555          sizeof(gf_group->skip_frame_refresh[0][0]) *
556              MAX_STATIC_GF_GROUP_LENGTH * REF_FRAMES);
557   memset(gf_group->skip_frame_as_ref, INVALID_IDX,
558          sizeof(gf_group->skip_frame_as_ref[0]) * MAX_STATIC_GF_GROUP_LENGTH);
559 
560   int kf_decomp = cpi->oxcf.kf_cfg.enable_keyframe_filtering > 1;
561   // This is a patch that fixes https://crbug.com/aomedia/3163
562   // enable_keyframe_filtering > 1 will introduce an extra overlay frame at
563   // key frame location. However when
564   // baseline_gf_interval == MAX_STATIC_GF_GROUP_LENGTH, we can't
565   // afford to have an extra overlay frame. Otherwise, the gf_group->size will
566   // become MAX_STATIC_GF_GROUP_LENGTH + 1, which causes memory error.
567   // A cheap solution is to turn of kf_decomp here.
568   // TODO(angiebird): Find a systematic way to solve this issue.
569   if (baseline_gf_interval == MAX_STATIC_GF_GROUP_LENGTH) {
570     kf_decomp = 0;
571   }
572   if (first_frame_update_type == KF_UPDATE) {
573     gf_group->update_type[frame_index] = kf_decomp ? ARF_UPDATE : KF_UPDATE;
574     gf_group->arf_src_offset[frame_index] = 0;
575     gf_group->cur_frame_idx[frame_index] = cur_frame_index;
576     gf_group->layer_depth[frame_index] = 0;
577     gf_group->frame_type[frame_index] = KEY_FRAME;
578     gf_group->refbuf_state[frame_index] = REFBUF_RESET;
579     gf_group->max_layer_depth = 0;
580     gf_group->display_idx[frame_index] = cur_disp_index;
581     if (!kf_decomp) cur_disp_index++;
582     ++frame_index;
583 
584     if (kf_decomp) {
585       gf_group->update_type[frame_index] = OVERLAY_UPDATE;
586       gf_group->arf_src_offset[frame_index] = 0;
587       gf_group->cur_frame_idx[frame_index] = cur_frame_index;
588       gf_group->layer_depth[frame_index] = 0;
589       gf_group->frame_type[frame_index] = INTER_FRAME;
590       gf_group->refbuf_state[frame_index] = REFBUF_UPDATE;
591       gf_group->max_layer_depth = 0;
592       gf_group->display_idx[frame_index] = cur_disp_index;
593       cur_disp_index++;
594       ++frame_index;
595     }
596     cur_frame_index++;
597   }
598 
599   if (first_frame_update_type == GF_UPDATE) {
600     gf_group->update_type[frame_index] = GF_UPDATE;
601     gf_group->arf_src_offset[frame_index] = 0;
602     gf_group->cur_frame_idx[frame_index] = cur_frame_index;
603     gf_group->layer_depth[frame_index] = 0;
604     gf_group->frame_type[frame_index] = INTER_FRAME;
605     gf_group->refbuf_state[frame_index] = REFBUF_UPDATE;
606     gf_group->max_layer_depth = 0;
607     gf_group->display_idx[frame_index] = cur_disp_index;
608     cur_disp_index++;
609     ++frame_index;
610     ++cur_frame_index;
611   }
612 
613   // ALTREF.
614   const int use_altref = gf_group->max_layer_depth_allowed > 0;
615   int is_fwd_kf = rc->frames_to_fwd_kf == gf_interval;
616 
617   if (use_altref) {
618     gf_group->update_type[frame_index] = ARF_UPDATE;
619     gf_group->arf_src_offset[frame_index] = gf_interval - cur_frame_index;
620     gf_group->cur_frame_idx[frame_index] = cur_frame_index;
621     gf_group->layer_depth[frame_index] = 1;
622     gf_group->arf_boost[frame_index] = cpi->ppi->p_rc.gfu_boost;
623     gf_group->frame_type[frame_index] = is_fwd_kf ? KEY_FRAME : INTER_FRAME;
624     gf_group->refbuf_state[frame_index] = REFBUF_UPDATE;
625     gf_group->max_layer_depth = 1;
626     gf_group->arf_index = frame_index;
627     gf_group->display_idx[frame_index] =
628         cur_disp_index + gf_group->arf_src_offset[frame_index];
629     ++frame_index;
630   } else {
631     gf_group->arf_index = -1;
632   }
633 
634   // Flag to indicate if multi-layer configuration is complete.
635   int is_multi_layer_configured = 0;
636 
637   // Running count of no. of frames that is part of a given parallel
638   // encode set in a gf_group. Value of 1 indicates no parallel encode.
639   int parallel_frame_count = 1;
640   // Enable parallel encode of frames if gf_group has a multi-layer pyramid
641   // structure with minimum 4 layers.
642   int do_frame_parallel_encode = (cpi->ppi->num_fp_contexts > 1 && use_altref &&
643                                   gf_group->max_layer_depth_allowed >= 4);
644 
645   int first_frame_index = cur_frame_index;
646   if (do_frame_parallel_encode) {
647     // construct_multi_layer_gf_structure() takes the input parameter
648     // 'gf_interval' as p_rc->baseline_gf_interval - 1 . Below code computes the
649     // actual GF_GROUP length by compensating for this offset.
650     int actual_gf_length = ((first_frame_update_type == KF_UPDATE) ||
651                             (first_frame_update_type == GF_UPDATE))
652                                ? gf_interval
653                                : gf_interval + 1;
654 
655     // In order to facilitate parallel encoding of frames in lower layer depths,
656     // encode reordering is done. Currently encode reordering is enabled only
657     // for gf-intervals 16 and 32. NOTE: Since the buffer holding the
658     // reference frames is of size 8 (ref_frame_map[REF_FRAMES]), there is a
659     // limitation on the number of hidden frames possible at any given point and
660     // hence the reordering is enabled only for gf-intervals 16 and 32.
661     // Disabling encode reordering for gf-interval 14 since some cross-frame
662     // dependencies related to temporal filtering for FPMT is currently not
663     // handled.
664     int disable_gf14_reorder = 1;
665     if (actual_gf_length == 14 && !disable_gf14_reorder) {
666       // This array holds the gf index of INTNL_ARF_UPDATE frames in the slot
667       // corresponding to their display order hint. This is used while
668       // configuring the LF_UPDATE frames and INTNL_OVERLAY_UPDATE frames.
669       int doh_gf_index_map[FIXED_GF_INTERVAL];
670       // Initialize doh_gf_index_map with INVALID_IDX.
671       memset(&doh_gf_index_map[0], INVALID_IDX,
672              (sizeof(doh_gf_index_map[0]) * FIXED_GF_INTERVAL));
673 
674       FRAME_REORDER_INFO arf_frame_stats[REF_FRAMES - 1];
675       // Store the stats corresponding to layer 1 frame.
676       fill_arf_frame_stats(arf_frame_stats, 0, actual_gf_length, 1,
677                            actual_gf_length);
678       int count_arf_frames = 1;
679 
680       // Sets multi-layer params for gf-interval 14 to consecutively encode
681       // frames in the same layer depth, i.e., encode order would be 0-> 14->
682       // 7-> 3-> 10-> 5-> 12-> 1-> 2-> 4-> 6-> 8-> 9-> 11-> 13.
683       // TODO(Remya): Set GF_GROUP param 'arf_boost' for all frames.
684       set_multi_layer_params_for_gf14(
685           twopass, &cpi->twopass_frame, p_rc, frame_info, gf_group,
686           arf_frame_stats, &cur_frame_index, &frame_index, &count_arf_frames,
687           doh_gf_index_map, &parallel_frame_count, &first_frame_index,
688           &cur_disp_index, actual_gf_length, use_altref + 1,
689           cpi->ppi->num_fp_contexts);
690 
691       // Set gf_group->skip_frame_refresh.
692       for (int i = 0; i < actual_gf_length; i++) {
693         int count = 0;
694         if (gf_group->update_type[i] == INTNL_ARF_UPDATE) {
695           for (int j = 0; j < i; j++) {
696             // Store the display order hint of the frames which would not
697             // have been displayed at the encode call of frame 'i'.
698             if ((gf_group->display_idx[j] < gf_group->display_idx[i]) &&
699                 gf_group->update_type[j] == INTNL_ARF_UPDATE) {
700               gf_group->skip_frame_refresh[i][count++] =
701                   gf_group->display_idx[j];
702             }
703           }
704         }
705       }
706     } else {
707       // Set layer depth threshold for reordering as per the gf length.
708       int depth_thr = (actual_gf_length == 16)   ? 3
709                       : (actual_gf_length == 32) ? 4
710                                                  : INT_MAX;
711 
712       set_multi_layer_params_for_fp(
713           twopass, &cpi->twopass_frame, gf_group, p_rc, rc, frame_info,
714           cur_frame_index, gf_interval, &cur_frame_index, &frame_index,
715           &parallel_frame_count, cpi->ppi->num_fp_contexts,
716           do_frame_parallel_encode, &first_frame_index, depth_thr,
717           &cur_disp_index, use_altref + 1);
718     }
719     is_multi_layer_configured = 1;
720   }
721 
722   // Rest of the frames.
723   if (!is_multi_layer_configured)
724     set_multi_layer_params(
725         twopass, &cpi->twopass_frame, gf_group, p_rc, rc, frame_info,
726         cur_frame_index, gf_interval, &cur_frame_index, &frame_index,
727         &parallel_frame_count, cpi->ppi->num_fp_contexts,
728         do_frame_parallel_encode, &first_frame_index, use_altref + 1);
729 
730   if (use_altref) {
731     gf_group->update_type[frame_index] = OVERLAY_UPDATE;
732     gf_group->arf_src_offset[frame_index] = 0;
733     gf_group->cur_frame_idx[frame_index] = cur_frame_index;
734     gf_group->layer_depth[frame_index] = MAX_ARF_LAYERS;
735     gf_group->arf_boost[frame_index] = NORMAL_BOOST;
736     gf_group->frame_type[frame_index] = INTER_FRAME;
737     gf_group->refbuf_state[frame_index] =
738         is_fwd_kf ? REFBUF_RESET : REFBUF_UPDATE;
739     gf_group->display_idx[frame_index] = cur_disp_index;
740     ++frame_index;
741   } else {
742     for (; cur_frame_index <= gf_interval; ++cur_frame_index) {
743       gf_group->update_type[frame_index] = LF_UPDATE;
744       gf_group->arf_src_offset[frame_index] = 0;
745       gf_group->cur_frame_idx[frame_index] = cur_frame_index;
746       gf_group->layer_depth[frame_index] = MAX_ARF_LAYERS;
747       gf_group->arf_boost[frame_index] = NORMAL_BOOST;
748       gf_group->frame_type[frame_index] = INTER_FRAME;
749       gf_group->refbuf_state[frame_index] = REFBUF_UPDATE;
750       gf_group->max_layer_depth = AOMMAX(gf_group->max_layer_depth, 2);
751       set_src_offset(gf_group, &first_frame_index, cur_frame_index,
752                      frame_index);
753       gf_group->display_idx[frame_index] = cur_disp_index;
754       cur_disp_index++;
755       ++frame_index;
756     }
757   }
758   if (do_frame_parallel_encode) {
759     // Iterate through the gf_group and reset frame_parallel_level to 0 in case
760     // a frame is marked as frame_parallel_level 1 with no subsequent
761     // frame_parallel_level 2 frame(s).
762     int level1_frame_idx = INT_MAX;
763     int level2_frame_count = 0;
764     for (int frame_idx = 0; frame_idx < frame_index; frame_idx++) {
765       if (gf_group->frame_parallel_level[frame_idx] == 1) {
766         // Set frame_parallel_level to 0 if only one frame is present in a
767         // parallel encode set.
768         if (level1_frame_idx != INT_MAX && !level2_frame_count)
769           gf_group->frame_parallel_level[level1_frame_idx] = 0;
770         // Book-keep frame_idx of frame_parallel_level 1 frame and reset the
771         // count of frame_parallel_level 2 frames in the corresponding parallel
772         // encode set.
773         level1_frame_idx = frame_idx;
774         level2_frame_count = 0;
775       }
776       if (gf_group->frame_parallel_level[frame_idx] == 2) level2_frame_count++;
777     }
778     // If frame_parallel_level is set to 1 for the last LF_UPDATE
779     // frame in the gf_group, reset it to zero since there are no subsequent
780     // frames in the gf_group.
781     if (gf_group->frame_parallel_level[frame_index - 2] == 1) {
782       assert(gf_group->update_type[frame_index - 2] == LF_UPDATE);
783       gf_group->frame_parallel_level[frame_index - 2] = 0;
784     }
785   }
786 
787   for (int gf_idx = frame_index; gf_idx < MAX_STATIC_GF_GROUP_LENGTH;
788        ++gf_idx) {
789     gf_group->update_type[gf_idx] = LF_UPDATE;
790     gf_group->arf_src_offset[gf_idx] = 0;
791     gf_group->cur_frame_idx[gf_idx] = gf_idx;
792     gf_group->layer_depth[gf_idx] = MAX_ARF_LAYERS;
793     gf_group->arf_boost[gf_idx] = NORMAL_BOOST;
794     gf_group->frame_type[gf_idx] = INTER_FRAME;
795     gf_group->refbuf_state[gf_idx] = REFBUF_UPDATE;
796     gf_group->max_layer_depth = AOMMAX(gf_group->max_layer_depth, 2);
797   }
798 
799   return frame_index;
800 }
801 
set_ld_layer_depth(GF_GROUP * gf_group,int gop_length)802 static void set_ld_layer_depth(GF_GROUP *gf_group, int gop_length) {
803   int log_gop_length = 0;
804   while ((1 << log_gop_length) < gop_length) {
805     ++log_gop_length;
806   }
807 
808   for (int gf_index = 0; gf_index < gf_group->size; ++gf_index) {
809     int count = 0;
810     // Find the trailing zeros
811     for (; count < MAX_ARF_LAYERS; ++count) {
812       if ((gf_index >> count) & 0x01) break;
813     }
814     gf_group->layer_depth[gf_index] = AOMMAX(log_gop_length - count, 0);
815   }
816   gf_group->max_layer_depth = log_gop_length;
817 }
818 
av1_gop_setup_structure(AV1_COMP * cpi)819 void av1_gop_setup_structure(AV1_COMP *cpi) {
820   RATE_CONTROL *const rc = &cpi->rc;
821   PRIMARY_RATE_CONTROL *const p_rc = &cpi->ppi->p_rc;
822   GF_GROUP *const gf_group = &cpi->ppi->gf_group;
823   TWO_PASS *const twopass = &cpi->ppi->twopass;
824   FRAME_INFO *const frame_info = &cpi->frame_info;
825   const int key_frame = rc->frames_since_key == 0;
826   FRAME_UPDATE_TYPE first_frame_update_type = ARF_UPDATE;
827 
828   if (key_frame) {
829     first_frame_update_type = KF_UPDATE;
830     if (cpi->oxcf.kf_max_pyr_height != -1) {
831       gf_group->max_layer_depth_allowed = AOMMIN(
832           cpi->oxcf.kf_max_pyr_height, gf_group->max_layer_depth_allowed);
833     }
834   } else if (!cpi->ppi->gf_state.arf_gf_boost_lst) {
835     first_frame_update_type = GF_UPDATE;
836   }
837 
838   gf_group->size = construct_multi_layer_gf_structure(
839       cpi, twopass, gf_group, rc, frame_info, p_rc->baseline_gf_interval,
840       first_frame_update_type);
841 
842   if (gf_group->max_layer_depth_allowed == 0)
843     set_ld_layer_depth(gf_group, p_rc->baseline_gf_interval);
844 }
845 
av1_gop_check_forward_keyframe(const GF_GROUP * gf_group,int gf_frame_index)846 int av1_gop_check_forward_keyframe(const GF_GROUP *gf_group,
847                                    int gf_frame_index) {
848   return gf_group->frame_type[gf_frame_index] == KEY_FRAME &&
849          gf_group->refbuf_state[gf_frame_index] == REFBUF_UPDATE;
850 }
851 
av1_gop_is_second_arf(const GF_GROUP * gf_group,int gf_frame_index)852 int av1_gop_is_second_arf(const GF_GROUP *gf_group, int gf_frame_index) {
853   const int arf_src_offset = gf_group->arf_src_offset[gf_frame_index];
854   // TODO(angiebird): when gf_group->size == 32, it's possble to
855   // have "two" second arf. Check if this is acceptable.
856   if (gf_group->update_type[gf_frame_index] == INTNL_ARF_UPDATE &&
857       arf_src_offset >= TF_LOOKAHEAD_IDX_THR) {
858     return 1;
859   }
860   return 0;
861 }
862