Merge "remove unused temporal preproc code"
[profile/ivi/libvpx.git] / vp8 / encoder / ethreading.c
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
12 #include "onyx_int.h"
13 #include "threading.h"
14 #include "common.h"
15 #include "extend.h"
16
17
18 extern int vp8cx_encode_inter_macroblock(VP8_COMP *cpi, MACROBLOCK *x, TOKENEXTRA **t, int recon_yoffset, int recon_uvoffset);
19 extern int vp8cx_encode_intra_macro_block(VP8_COMP *cpi, MACROBLOCK *x, TOKENEXTRA **t);
20 extern void vp8cx_mb_init_quantizer(VP8_COMP *cpi, MACROBLOCK *x);
21 extern void vp8_build_block_offsets(MACROBLOCK *x);
22 extern void vp8_setup_block_ptrs(MACROBLOCK *x);
23
24 static
25 THREAD_FUNCTION thread_encoding_proc(void *p_data)
26 {
27 #if CONFIG_MULTITHREAD
28     int ithread = ((ENCODETHREAD_DATA *)p_data)->ithread;
29     VP8_COMP *cpi   = (VP8_COMP *)(((ENCODETHREAD_DATA *)p_data)->ptr1);
30     MB_ROW_COMP *mbri = (MB_ROW_COMP *)(((ENCODETHREAD_DATA *)p_data)->ptr2);
31     ENTROPY_CONTEXT_PLANES mb_row_left_context;
32
33     //printf("Started thread %d\n", ithread);
34
35     while (1)
36     {
37         if (cpi->b_multi_threaded == 0)
38             break;
39
40         //if(WaitForSingleObject(cpi->h_event_mbrencoding[ithread], INFINITE) == WAIT_OBJECT_0)
41         if (sem_wait(&cpi->h_event_mbrencoding[ithread]) == 0)
42         {
43             if (cpi->b_multi_threaded == FALSE) // we're shutting down
44                 break;
45             else
46             {
47                 VP8_COMMON *cm      = &cpi->common;
48                 int mb_row           = mbri->mb_row;
49                 MACROBLOCK  *x      = &mbri->mb;
50                 MACROBLOCKD *xd     = &x->e_mbd;
51                 TOKENEXTRA **tp     = &mbri->tp;
52                 int *segment_counts  = mbri->segment_counts;
53                 int *totalrate      = &mbri->totalrate;
54
55                 {
56                     int i;
57                     int recon_yoffset, recon_uvoffset;
58                     int mb_col;
59                     int ref_fb_idx = cm->lst_fb_idx;
60                     int dst_fb_idx = cm->new_fb_idx;
61                     int recon_y_stride = cm->yv12_fb[ref_fb_idx].y_stride;
62                     int recon_uv_stride = cm->yv12_fb[ref_fb_idx].uv_stride;
63                     volatile int *last_row_current_mb_col;
64                     INT64 activity_sum = 0;
65
66                     if (ithread > 0)
67                         last_row_current_mb_col = &cpi->mb_row_ei[ithread-1].current_mb_col;
68                     else
69                         last_row_current_mb_col = &cpi->current_mb_col_main;
70
71                     // reset above block coeffs
72                     xd->above_context = cm->above_context;
73                     xd->left_context = &mb_row_left_context;
74
75                     vp8_zero(mb_row_left_context);
76
77                     xd->up_available = (mb_row != 0);
78                     recon_yoffset = (mb_row * recon_y_stride * 16);
79                     recon_uvoffset = (mb_row * recon_uv_stride * 8);
80
81
82                     cpi->tplist[mb_row].start = *tp;
83
84                     //printf("Thread mb_row = %d\n", mb_row);
85
86                     // for each macroblock col in image
87                     for (mb_col = 0; mb_col < cm->mb_cols; mb_col++)
88                     {
89                         int seg_map_index = (mb_row * cm->mb_cols);
90
91                         while (mb_col > (*last_row_current_mb_col - 1) && *last_row_current_mb_col != cm->mb_cols - 1)
92                         {
93                             x86_pause_hint();
94                             thread_sleep(0);
95                         }
96
97                         // Distance of Mb to the various image edges.
98                         // These specified to 8th pel as they are always compared to values that are in 1/8th pel units
99                         xd->mb_to_left_edge = -((mb_col * 16) << 3);
100                         xd->mb_to_right_edge = ((cm->mb_cols - 1 - mb_col) * 16) << 3;
101                         xd->mb_to_top_edge = -((mb_row * 16) << 3);
102                         xd->mb_to_bottom_edge = ((cm->mb_rows - 1 - mb_row) * 16) << 3;
103
104                         // Set up limit values for motion vectors used to prevent them extending outside the UMV borders
105                         x->mv_col_min = -((mb_col * 16) + (VP8BORDERINPIXELS - 16));
106                         x->mv_col_max = ((cm->mb_cols - 1 - mb_col) * 16) + (VP8BORDERINPIXELS - 16);
107                         x->mv_row_min = -((mb_row * 16) + (VP8BORDERINPIXELS - 16));
108                         x->mv_row_max = ((cm->mb_rows - 1 - mb_row) * 16) + (VP8BORDERINPIXELS - 16);
109
110                         xd->dst.y_buffer = cm->yv12_fb[dst_fb_idx].y_buffer + recon_yoffset;
111                         xd->dst.u_buffer = cm->yv12_fb[dst_fb_idx].u_buffer + recon_uvoffset;
112                         xd->dst.v_buffer = cm->yv12_fb[dst_fb_idx].v_buffer + recon_uvoffset;
113                         xd->left_available = (mb_col != 0);
114
115                         x->rddiv = cpi->RDDIV;
116                         x->rdmult = cpi->RDMULT;
117
118                         activity_sum += vp8_activity_masking(cpi, x);
119
120                         // Is segmentation enabled
121                         // MB level adjutment to quantizer
122                         if (xd->segmentation_enabled)
123                         {
124                             // Code to set segment id in xd->mbmi.segment_id for current MB (with range checking)
125                             if (cpi->segmentation_map[seg_map_index+mb_col] <= 3)
126                                 xd->mode_info_context->mbmi.segment_id = cpi->segmentation_map[seg_map_index+mb_col];
127                             else
128                                 xd->mode_info_context->mbmi.segment_id = 0;
129
130                             vp8cx_mb_init_quantizer(cpi, x);
131                         }
132                         else
133                             xd->mode_info_context->mbmi.segment_id = 0;         // Set to Segment 0 by default
134
135                         x->active_ptr = cpi->active_map + seg_map_index + mb_col;
136
137                         if (cm->frame_type == KEY_FRAME)
138                         {
139                             *totalrate += vp8cx_encode_intra_macro_block(cpi, x, tp);
140 #ifdef MODE_STATS
141                             y_modes[xd->mbmi.mode] ++;
142 #endif
143                         }
144                         else
145                         {
146                             *totalrate += vp8cx_encode_inter_macroblock(cpi, x, tp, recon_yoffset, recon_uvoffset);
147
148 #ifdef MODE_STATS
149                             inter_y_modes[xd->mbmi.mode] ++;
150
151                             if (xd->mbmi.mode == SPLITMV)
152                             {
153                                 int b;
154
155                                 for (b = 0; b < xd->mbmi.partition_count; b++)
156                                 {
157                                     inter_b_modes[x->partition->bmi[b].mode] ++;
158                                 }
159                             }
160
161 #endif
162
163                             // Count of last ref frame 0,0 useage
164                             if ((xd->mode_info_context->mbmi.mode == ZEROMV) && (xd->mode_info_context->mbmi.ref_frame == LAST_FRAME))
165                                 cpi->inter_zz_count ++;
166
167                             // Special case code for cyclic refresh
168                             // If cyclic update enabled then copy xd->mbmi.segment_id; (which may have been updated based on mode
169                             // during vp8cx_encode_inter_macroblock()) back into the global sgmentation map
170                             if (cpi->cyclic_refresh_mode_enabled && xd->segmentation_enabled)
171                             {
172                                 cpi->segmentation_map[seg_map_index+mb_col] = xd->mode_info_context->mbmi.segment_id;
173
174                                 // If the block has been refreshed mark it as clean (the magnitude of the -ve influences how long it will be before we consider another refresh):
175                                 // Else if it was coded (last frame 0,0) and has not already been refreshed then mark it as a candidate for cleanup next time (marked 0)
176                                 // else mark it as dirty (1).
177                                 if (xd->mode_info_context->mbmi.segment_id)
178                                     cpi->cyclic_refresh_map[seg_map_index+mb_col] = -1;
179                                 else if ((xd->mode_info_context->mbmi.mode == ZEROMV) && (xd->mode_info_context->mbmi.ref_frame == LAST_FRAME))
180                                 {
181                                     if (cpi->cyclic_refresh_map[seg_map_index+mb_col] == 1)
182                                         cpi->cyclic_refresh_map[seg_map_index+mb_col] = 0;
183                                 }
184                                 else
185                                     cpi->cyclic_refresh_map[seg_map_index+mb_col] = 1;
186
187                             }
188                         }
189                         cpi->tplist[mb_row].stop = *tp;
190
191                         x->gf_active_ptr++;      // Increment pointer into gf useage flags structure for next mb
192
193                         for (i = 0; i < 16; i++)
194                             vpx_memcpy(&xd->mode_info_context->bmi[i], &xd->block[i].bmi, sizeof(xd->block[i].bmi));
195
196                         // adjust to the next column of macroblocks
197                         x->src.y_buffer += 16;
198                         x->src.u_buffer += 8;
199                         x->src.v_buffer += 8;
200
201                         recon_yoffset += 16;
202                         recon_uvoffset += 8;
203
204                         // Keep track of segment useage
205                         segment_counts[xd->mode_info_context->mbmi.segment_id] ++;
206
207                         // skip to next mb
208                         xd->mode_info_context++;
209                         x->partition_info++;
210
211                         xd->above_context++;
212
213                         cpi->mb_row_ei[ithread].current_mb_col = mb_col;
214
215                     }
216
217                     //extend the recon for intra prediction
218                     vp8_extend_mb_row(
219                         &cm->yv12_fb[dst_fb_idx],
220                         xd->dst.y_buffer + 16,
221                         xd->dst.u_buffer + 8,
222                         xd->dst.v_buffer + 8);
223
224                     // this is to account for the border
225                     xd->mode_info_context++;
226                     x->partition_info++;
227                     x->activity_sum += activity_sum;
228
229                     x->src.y_buffer += 16 * x->src.y_stride * (cpi->encoding_thread_count + 1) - 16 * cm->mb_cols;
230                     x->src.u_buffer +=  8 * x->src.uv_stride * (cpi->encoding_thread_count + 1) - 8 * cm->mb_cols;
231                     x->src.v_buffer +=  8 * x->src.uv_stride * (cpi->encoding_thread_count + 1) - 8 * cm->mb_cols;
232
233                     xd->mode_info_context += xd->mode_info_stride * cpi->encoding_thread_count;
234                     x->partition_info += xd->mode_info_stride * cpi->encoding_thread_count;
235
236                     if (ithread == (cpi->encoding_thread_count - 1) || mb_row == cm->mb_rows - 1)
237                     {
238                         //SetEvent(cpi->h_event_main);
239                         sem_post(&cpi->h_event_main);
240                     }
241
242                 }
243
244             }
245         }
246     }
247
248 #else
249     (void) p_data;
250 #endif
251
252     //printf("exit thread %d\n", ithread);
253     return 0;
254 }
255
256 static void setup_mbby_copy(MACROBLOCK *mbdst, MACROBLOCK *mbsrc)
257 {
258
259     MACROBLOCK *x = mbsrc;
260     MACROBLOCK *z = mbdst;
261     int i;
262
263     z->ss               = x->ss;
264     z->ss_count          = x->ss_count;
265     z->searches_per_step  = x->searches_per_step;
266     z->errorperbit      = x->errorperbit;
267
268     z->sadperbit16      = x->sadperbit16;
269     z->sadperbit4       = x->sadperbit4;
270     z->errthresh        = x->errthresh;
271
272     /*
273     z->mv_col_min    = x->mv_col_min;
274     z->mv_col_max    = x->mv_col_max;
275     z->mv_row_min    = x->mv_row_min;
276     z->mv_row_max    = x->mv_row_max;
277     z->vector_range = x->vector_range ;
278     */
279
280     z->vp8_short_fdct4x4     = x->vp8_short_fdct4x4;
281     z->vp8_short_fdct8x4     = x->vp8_short_fdct8x4;
282     z->short_walsh4x4    = x->short_walsh4x4;
283     z->quantize_b        = x->quantize_b;
284
285     /*
286     z->mvc              = x->mvc;
287     z->src.y_buffer      = x->src.y_buffer;
288     z->src.u_buffer      = x->src.u_buffer;
289     z->src.v_buffer      = x->src.v_buffer;
290     */
291
292
293     vpx_memcpy(z->mvcosts,          x->mvcosts,         sizeof(x->mvcosts));
294     z->mvcost[0] = &z->mvcosts[0][mv_max+1];
295     z->mvcost[1] = &z->mvcosts[1][mv_max+1];
296     z->mvsadcost[0] = &z->mvsadcosts[0][mv_max+1];
297     z->mvsadcost[1] = &z->mvsadcosts[1][mv_max+1];
298
299
300     vpx_memcpy(z->token_costs,       x->token_costs,      sizeof(x->token_costs));
301     vpx_memcpy(z->inter_bmode_costs,  x->inter_bmode_costs, sizeof(x->inter_bmode_costs));
302     //memcpy(z->mvcosts,            x->mvcosts,         sizeof(x->mvcosts));
303     //memcpy(z->mvcost,         x->mvcost,          sizeof(x->mvcost));
304     vpx_memcpy(z->mbmode_cost,       x->mbmode_cost,      sizeof(x->mbmode_cost));
305     vpx_memcpy(z->intra_uv_mode_cost,  x->intra_uv_mode_cost, sizeof(x->intra_uv_mode_cost));
306     vpx_memcpy(z->bmode_costs,       x->bmode_costs,      sizeof(x->bmode_costs));
307
308     for (i = 0; i < 25; i++)
309     {
310         z->block[i].quant           = x->block[i].quant;
311         z->block[i].quant_shift     = x->block[i].quant_shift;
312         z->block[i].zbin            = x->block[i].zbin;
313         z->block[i].zrun_zbin_boost   = x->block[i].zrun_zbin_boost;
314         z->block[i].round           = x->block[i].round;
315         /*
316         z->block[i].src             = x->block[i].src;
317         */
318         z->block[i].src_stride       = x->block[i].src_stride;
319         z->block[i].force_empty      = x->block[i].force_empty;
320
321     }
322
323     {
324         MACROBLOCKD *xd = &x->e_mbd;
325         MACROBLOCKD *zd = &z->e_mbd;
326
327         /*
328         zd->mode_info_context = xd->mode_info_context;
329         zd->mode_info        = xd->mode_info;
330
331         zd->mode_info_stride  = xd->mode_info_stride;
332         zd->frame_type       = xd->frame_type;
333         zd->up_available     = xd->up_available   ;
334         zd->left_available   = xd->left_available;
335         zd->left_context     = xd->left_context;
336         zd->last_frame_dc     = xd->last_frame_dc;
337         zd->last_frame_dccons = xd->last_frame_dccons;
338         zd->gold_frame_dc     = xd->gold_frame_dc;
339         zd->gold_frame_dccons = xd->gold_frame_dccons;
340         zd->mb_to_left_edge    = xd->mb_to_left_edge;
341         zd->mb_to_right_edge   = xd->mb_to_right_edge;
342         zd->mb_to_top_edge     = xd->mb_to_top_edge   ;
343         zd->mb_to_bottom_edge  = xd->mb_to_bottom_edge;
344         zd->gf_active_ptr     = xd->gf_active_ptr;
345         zd->frames_since_golden       = xd->frames_since_golden;
346         zd->frames_till_alt_ref_frame   = xd->frames_till_alt_ref_frame;
347         */
348         zd->subpixel_predict         = xd->subpixel_predict;
349         zd->subpixel_predict8x4      = xd->subpixel_predict8x4;
350         zd->subpixel_predict8x8      = xd->subpixel_predict8x8;
351         zd->subpixel_predict16x16    = xd->subpixel_predict16x16;
352         zd->segmentation_enabled     = xd->segmentation_enabled;
353         zd->mb_segement_abs_delta      = xd->mb_segement_abs_delta;
354         vpx_memcpy(zd->segment_feature_data, xd->segment_feature_data, sizeof(xd->segment_feature_data));
355
356         for (i = 0; i < 25; i++)
357         {
358             zd->block[i].dequant = xd->block[i].dequant;
359         }
360     }
361 }
362
363
364 void vp8cx_init_mbrthread_data(VP8_COMP *cpi,
365                                MACROBLOCK *x,
366                                MB_ROW_COMP *mbr_ei,
367                                int mb_row,
368                                int count
369                               )
370 {
371
372     VP8_COMMON *const cm = & cpi->common;
373     MACROBLOCKD *const xd = & x->e_mbd;
374     int i;
375     (void) mb_row;
376
377     for (i = 0; i < count; i++)
378     {
379         MACROBLOCK *mb = & mbr_ei[i].mb;
380         MACROBLOCKD *mbd = &mb->e_mbd;
381
382         mbd->subpixel_predict        = xd->subpixel_predict;
383         mbd->subpixel_predict8x4     = xd->subpixel_predict8x4;
384         mbd->subpixel_predict8x8     = xd->subpixel_predict8x8;
385         mbd->subpixel_predict16x16   = xd->subpixel_predict16x16;
386 #if CONFIG_RUNTIME_CPU_DETECT
387         mbd->rtcd                   = xd->rtcd;
388 #endif
389         mb->gf_active_ptr            = x->gf_active_ptr;
390
391         mb->vector_range             = 32;
392
393         vpx_memset(mbr_ei[i].segment_counts, 0, sizeof(mbr_ei[i].segment_counts));
394         mbr_ei[i].totalrate = 0;
395
396         mb->partition_info = x->pi + x->e_mbd.mode_info_stride * (i + 1);
397
398         mbd->mode_info_context = cm->mi   + x->e_mbd.mode_info_stride * (i + 1);
399         mbd->mode_info_stride  = cm->mode_info_stride;
400
401         mbd->frame_type = cm->frame_type;
402
403         mbd->frames_since_golden = cm->frames_since_golden;
404         mbd->frames_till_alt_ref_frame = cm->frames_till_alt_ref_frame;
405
406         mb->src = * cpi->Source;
407         mbd->pre = cm->yv12_fb[cm->lst_fb_idx];
408         mbd->dst = cm->yv12_fb[cm->new_fb_idx];
409
410         mb->src.y_buffer += 16 * x->src.y_stride * (i + 1);
411         mb->src.u_buffer +=  8 * x->src.uv_stride * (i + 1);
412         mb->src.v_buffer +=  8 * x->src.uv_stride * (i + 1);
413
414
415         vp8_build_block_offsets(mb);
416
417         vp8_setup_block_dptrs(mbd);
418
419         vp8_setup_block_ptrs(mb);
420
421         mb->activity_sum = 0;
422
423         mbd->left_context = &cm->left_context;
424         mb->mvc = cm->fc.mvc;
425
426         setup_mbby_copy(&mbr_ei[i].mb, x);
427
428     }
429 }
430
431
432 void vp8cx_create_encoder_threads(VP8_COMP *cpi)
433 {
434     cpi->b_multi_threaded = 0;
435
436     cpi->processor_core_count = 32; //vp8_get_proc_core_count();
437
438     CHECK_MEM_ERROR(cpi->tplist, vpx_malloc(sizeof(TOKENLIST) * cpi->common.mb_rows));
439
440 #if CONFIG_MULTITHREAD
441
442     if (cpi->processor_core_count > 1 && cpi->oxcf.multi_threaded > 1)
443     {
444         int ithread;
445
446         if (cpi->oxcf.multi_threaded > cpi->processor_core_count)
447             cpi->encoding_thread_count = cpi->processor_core_count - 1;
448         else
449             cpi->encoding_thread_count = cpi->oxcf.multi_threaded - 1;
450
451
452         CHECK_MEM_ERROR(cpi->h_encoding_thread, vpx_malloc(sizeof(pthread_t) * cpi->encoding_thread_count));
453         CHECK_MEM_ERROR(cpi->h_event_mbrencoding, vpx_malloc(sizeof(sem_t) * cpi->encoding_thread_count));
454         CHECK_MEM_ERROR(cpi->mb_row_ei, vpx_memalign(32, sizeof(MB_ROW_COMP) * cpi->encoding_thread_count));
455         vpx_memset(cpi->mb_row_ei, 0, sizeof(MB_ROW_COMP) * cpi->encoding_thread_count);
456         CHECK_MEM_ERROR(cpi->en_thread_data, vpx_malloc(sizeof(ENCODETHREAD_DATA) * cpi->encoding_thread_count));
457         //cpi->h_event_main = CreateEvent(NULL, FALSE, FALSE, NULL);
458         sem_init(&cpi->h_event_main, 0, 0);
459
460         cpi->b_multi_threaded = 1;
461
462         //printf("[VP8:] multi_threaded encoding is enabled with %d threads\n\n", (cpi->encoding_thread_count +1));
463
464         for (ithread = 0; ithread < cpi->encoding_thread_count; ithread++)
465         {
466             //cpi->h_event_mbrencoding[ithread] = CreateEvent(NULL, FALSE, FALSE, NULL);
467             sem_init(&cpi->h_event_mbrencoding[ithread], 0, 0);
468             cpi->en_thread_data[ithread].ithread = ithread;
469             cpi->en_thread_data[ithread].ptr1 = (void *)cpi;
470             cpi->en_thread_data[ithread].ptr2 = (void *)&cpi->mb_row_ei[ithread];
471
472             //printf(" call begin thread %d \n", ithread);
473
474             //cpi->h_encoding_thread[ithread] =   (HANDLE)_beginthreadex(
475             //  NULL,           // security
476             //  0,              // stksize
477             //  thread_encoding_proc,
478             //  (&cpi->en_thread_data[ithread]),          // Thread data
479             //  0,
480             //  NULL);
481
482             pthread_create(&cpi->h_encoding_thread[ithread], 0, thread_encoding_proc, (&cpi->en_thread_data[ithread]));
483
484         }
485
486     }
487
488 #endif
489 }
490
491 void vp8cx_remove_encoder_threads(VP8_COMP *cpi)
492 {
493 #if CONFIG_MULTITHREAD
494
495     if (cpi->b_multi_threaded)
496     {
497         //shutdown other threads
498         cpi->b_multi_threaded = 0;
499         {
500             int i;
501
502             for (i = 0; i < cpi->encoding_thread_count; i++)
503             {
504                 //SetEvent(cpi->h_event_mbrencoding[i]);
505                 sem_post(&cpi->h_event_mbrencoding[i]);
506                 pthread_join(cpi->h_encoding_thread[i], 0);
507             }
508
509             for (i = 0; i < cpi->encoding_thread_count; i++)
510                 sem_destroy(&cpi->h_event_mbrencoding[i]);
511         }
512         //free thread related resources
513         vpx_free(cpi->h_event_mbrencoding);
514         vpx_free(cpi->h_encoding_thread);
515         vpx_free(cpi->mb_row_ei);
516         vpx_free(cpi->en_thread_data);
517     }
518
519 #endif
520     vpx_free(cpi->tplist);
521 }