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/*****************************************************************************
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* set: header writing
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*****************************************************************************
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* Copyright (C) 2003-2016 x264 project
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*
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* Authors: Laurent Aimar <[email protected]>
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* Loren Merritt <[email protected]>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02111, USA.
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*
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* This program is also available under a commercial proprietary license.
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* For more information, contact us at [email protected].
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*****************************************************************************/
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#include "common/common.h"
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#include "set.h"
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#define bs_write_ue bs_write_ue_big
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// Indexed by pic_struct values
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static const uint8_t num_clock_ts[10] = { 0, 1, 1, 1, 2, 2, 3, 3, 2, 3 };
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const static uint8_t avcintra_uuid[] = {0xF7, 0x49, 0x3E, 0xB3, 0xD4, 0x00, 0x47, 0x96, 0x86, 0x86, 0xC9, 0x70, 0x7B, 0x64, 0x37, 0x2A};
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static void transpose( uint8_t *buf, int w )
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{
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for( int i = 0; i < w; i++ )
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for( int j = 0; j < i; j++ )
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XCHG( uint8_t, buf[w*i+j], buf[w*j+i] );
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}
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static void scaling_list_write( bs_t *s, x264_pps_t *pps, int idx )
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{
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const int len = idx<4 ? 16 : 64;
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const uint8_t *zigzag = idx<4 ? x264_zigzag_scan4[0] : x264_zigzag_scan8[0];
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const uint8_t *list = pps->scaling_list[idx];
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const uint8_t *def_list = (idx==CQM_4IC) ? pps->scaling_list[CQM_4IY]
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: (idx==CQM_4PC) ? pps->scaling_list[CQM_4PY]
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: (idx==CQM_8IC+4) ? pps->scaling_list[CQM_8IY+4]
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: (idx==CQM_8PC+4) ? pps->scaling_list[CQM_8PY+4]
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: x264_cqm_jvt[idx];
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if( !memcmp( list, def_list, len ) )
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bs_write1( s, 0 ); // scaling_list_present_flag
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else if( !memcmp( list, x264_cqm_jvt[idx], len ) )
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{
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bs_write1( s, 1 ); // scaling_list_present_flag
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bs_write_se( s, -8 ); // use jvt list
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}
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else
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{
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int run;
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bs_write1( s, 1 ); // scaling_list_present_flag
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// try run-length compression of trailing values
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for( run = len; run > 1; run-- )
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if( list[zigzag[run-1]] != list[zigzag[run-2]] )
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break;
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if( run < len && len - run < bs_size_se( (int8_t)-list[zigzag[run]] ) )
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run = len;
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for( int j = 0; j < run; j++ )
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bs_write_se( s, (int8_t)(list[zigzag[j]] - (j>0 ? list[zigzag[j-1]] : 8)) ); // delta
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if( run < len )
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bs_write_se( s, (int8_t)-list[zigzag[run]] );
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}
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}
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void x264_sei_write( bs_t *s, uint8_t *payload, int payload_size, int payload_type )
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{
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int i;
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bs_realign( s );
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for( i = 0; i <= payload_type-255; i += 255 )
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bs_write( s, 8, 255 );
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bs_write( s, 8, payload_type-i );
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for( i = 0; i <= payload_size-255; i += 255 )
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bs_write( s, 8, 255 );
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bs_write( s, 8, payload_size-i );
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for( i = 0; i < payload_size; i++ )
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bs_write( s, 8, payload[i] );
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bs_rbsp_trailing( s );
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bs_flush( s );
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}
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void x264_sps_init( x264_sps_t *sps, int i_id, x264_param_t *param )
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{
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int csp = param->i_csp & X264_CSP_MASK;
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sps->i_id = i_id;
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sps->i_mb_width = ( param->i_width + 15 ) / 16;
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sps->i_mb_height= ( param->i_height + 15 ) / 16;
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sps->i_chroma_format_idc = csp >= X264_CSP_I444 ? CHROMA_444 :
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csp >= X264_CSP_I422 ? CHROMA_422 : CHROMA_420;
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sps->b_qpprime_y_zero_transform_bypass = param->rc.i_rc_method == X264_RC_CQP && param->rc.i_qp_constant == 0;
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if( sps->b_qpprime_y_zero_transform_bypass || sps->i_chroma_format_idc == CHROMA_444 )
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sps->i_profile_idc = PROFILE_HIGH444_PREDICTIVE;
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else if( sps->i_chroma_format_idc == CHROMA_422 )
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sps->i_profile_idc = PROFILE_HIGH422;
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else if( BIT_DEPTH > 8 )
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sps->i_profile_idc = PROFILE_HIGH10;
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else if( param->analyse.b_transform_8x8 || param->i_cqm_preset != X264_CQM_FLAT )
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sps->i_profile_idc = PROFILE_HIGH;
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else if( param->b_cabac || param->i_bframe > 0 || param->b_interlaced || param->b_fake_interlaced || param->analyse.i_weighted_pred > 0 )
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sps->i_profile_idc = PROFILE_MAIN;
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else
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sps->i_profile_idc = PROFILE_BASELINE;
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sps->b_constraint_set0 = sps->i_profile_idc == PROFILE_BASELINE;
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/* x264 doesn't support the features that are in Baseline and not in Main,
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* namely arbitrary_slice_order and slice_groups. */
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sps->b_constraint_set1 = sps->i_profile_idc <= PROFILE_MAIN;
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/* Never set constraint_set2, it is not necessary and not used in real world. */
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sps->b_constraint_set2 = 0;
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sps->b_constraint_set3 = 0;
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sps->i_level_idc = param->i_level_idc;
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if( param->i_level_idc == 9 && ( sps->i_profile_idc == PROFILE_BASELINE || sps->i_profile_idc == PROFILE_MAIN ) )
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{
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sps->b_constraint_set3 = 1; /* level 1b with Baseline or Main profile is signalled via constraint_set3 */
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sps->i_level_idc = 11;
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}
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/* Intra profiles */
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if( param->i_keyint_max == 1 && sps->i_profile_idc > PROFILE_HIGH )
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sps->b_constraint_set3 = 1;
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sps->vui.i_num_reorder_frames = param->i_bframe_pyramid ? 2 : param->i_bframe ? 1 : 0;
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/* extra slot with pyramid so that we don't have to override the
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* order of forgetting old pictures */
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sps->vui.i_max_dec_frame_buffering =
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sps->i_num_ref_frames = X264_MIN(X264_REF_MAX, X264_MAX4(param->i_frame_reference, 1 + sps->vui.i_num_reorder_frames,
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param->i_bframe_pyramid ? 4 : 1, param->i_dpb_size));
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sps->i_num_ref_frames -= param->i_bframe_pyramid == X264_B_PYRAMID_STRICT;
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if( param->i_keyint_max == 1 )
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{
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sps->i_num_ref_frames = 0;
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sps->vui.i_max_dec_frame_buffering = 0;
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}
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/* number of refs + current frame */
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int max_frame_num = sps->vui.i_max_dec_frame_buffering * (!!param->i_bframe_pyramid+1) + 1;
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/* Intra refresh cannot write a recovery time greater than max frame num-1 */
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if( param->b_intra_refresh )
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{
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int time_to_recovery = X264_MIN( sps->i_mb_width - 1, param->i_keyint_max ) + param->i_bframe - 1;
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max_frame_num = X264_MAX( max_frame_num, time_to_recovery+1 );
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}
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sps->i_log2_max_frame_num = 4;
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while( (1 << sps->i_log2_max_frame_num) <= max_frame_num )
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sps->i_log2_max_frame_num++;
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sps->i_poc_type = param->i_bframe || param->b_interlaced || param->i_avcintra_class ? 0 : 2;
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if( sps->i_poc_type == 0 )
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{
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int max_delta_poc = (param->i_bframe + 2) * (!!param->i_bframe_pyramid + 1) * 2;
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sps->i_log2_max_poc_lsb = 4;
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while( (1 << sps->i_log2_max_poc_lsb) <= max_delta_poc * 2 )
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sps->i_log2_max_poc_lsb++;
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}
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sps->b_vui = 1;
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sps->b_gaps_in_frame_num_value_allowed = 0;
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sps->b_frame_mbs_only = !(param->b_interlaced || param->b_fake_interlaced);
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if( !sps->b_frame_mbs_only )
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sps->i_mb_height = ( sps->i_mb_height + 1 ) & ~1;
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sps->b_mb_adaptive_frame_field = param->b_interlaced;
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sps->b_direct8x8_inference = 1;
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sps->crop.i_left = param->crop_rect.i_left;
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sps->crop.i_top = param->crop_rect.i_top;
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sps->crop.i_right = param->crop_rect.i_right + sps->i_mb_width*16 - param->i_width;
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sps->crop.i_bottom = (param->crop_rect.i_bottom + sps->i_mb_height*16 - param->i_height) >> !sps->b_frame_mbs_only;
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sps->b_crop = sps->crop.i_left || sps->crop.i_top ||
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sps->crop.i_right || sps->crop.i_bottom;
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sps->vui.b_aspect_ratio_info_present = 0;
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if( param->vui.i_sar_width > 0 && param->vui.i_sar_height > 0 )
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{
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sps->vui.b_aspect_ratio_info_present = 1;
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sps->vui.i_sar_width = param->vui.i_sar_width;
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sps->vui.i_sar_height= param->vui.i_sar_height;
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}
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sps->vui.b_overscan_info_present = param->vui.i_overscan > 0 && param->vui.i_overscan <= 2;
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if( sps->vui.b_overscan_info_present )
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sps->vui.b_overscan_info = ( param->vui.i_overscan == 2 ? 1 : 0 );
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sps->vui.b_signal_type_present = 0;
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sps->vui.i_vidformat = ( param->vui.i_vidformat >= 0 && param->vui.i_vidformat <= 5 ? param->vui.i_vidformat : 5 );
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sps->vui.b_fullrange = ( param->vui.b_fullrange >= 0 && param->vui.b_fullrange <= 1 ? param->vui.b_fullrange :
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( csp >= X264_CSP_BGR ? 1 : 0 ) );
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sps->vui.b_color_description_present = 0;
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sps->vui.i_colorprim = ( param->vui.i_colorprim >= 0 && param->vui.i_colorprim <= 9 ? param->vui.i_colorprim : 2 );
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sps->vui.i_transfer = ( param->vui.i_transfer >= 0 && param->vui.i_transfer <= 15 ? param->vui.i_transfer : 2 );
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sps->vui.i_colmatrix = ( param->vui.i_colmatrix >= 0 && param->vui.i_colmatrix <= 10 ? param->vui.i_colmatrix :
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( csp >= X264_CSP_BGR ? 0 : 2 ) );
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if( sps->vui.i_colorprim != 2 ||
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sps->vui.i_transfer != 2 ||
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sps->vui.i_colmatrix != 2 )
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{
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sps->vui.b_color_description_present = 1;
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}
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if( sps->vui.i_vidformat != 5 ||
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sps->vui.b_fullrange ||
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sps->vui.b_color_description_present )
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{
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sps->vui.b_signal_type_present = 1;
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}
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/* FIXME: not sufficient for interlaced video */
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sps->vui.b_chroma_loc_info_present = param->vui.i_chroma_loc > 0 && param->vui.i_chroma_loc <= 5 &&
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sps->i_chroma_format_idc == CHROMA_420;
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if( sps->vui.b_chroma_loc_info_present )
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{
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sps->vui.i_chroma_loc_top = param->vui.i_chroma_loc;
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sps->vui.i_chroma_loc_bottom = param->vui.i_chroma_loc;
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}
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sps->vui.b_timing_info_present = param->i_timebase_num > 0 && param->i_timebase_den > 0;
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if( sps->vui.b_timing_info_present )
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{
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sps->vui.i_num_units_in_tick = param->i_timebase_num;
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sps->vui.i_time_scale = param->i_timebase_den * 2;
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sps->vui.b_fixed_frame_rate = !param->b_vfr_input;
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}
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sps->vui.b_vcl_hrd_parameters_present = 0; // we don't support VCL HRD
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sps->vui.b_nal_hrd_parameters_present = !!param->i_nal_hrd;
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sps->vui.b_pic_struct_present = param->b_pic_struct;
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// NOTE: HRD related parts of the SPS are initialised in x264_ratecontrol_init_reconfigurable
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sps->vui.b_bitstream_restriction = param->i_keyint_max > 1;
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if( sps->vui.b_bitstream_restriction )
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{
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sps->vui.b_motion_vectors_over_pic_boundaries = 1;
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sps->vui.i_max_bytes_per_pic_denom = 0;
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sps->vui.i_max_bits_per_mb_denom = 0;
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sps->vui.i_log2_max_mv_length_horizontal =
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sps->vui.i_log2_max_mv_length_vertical = (int)log2f( X264_MAX( 1, param->analyse.i_mv_range*4-1 ) ) + 1;
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}
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}
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void x264_sps_write( bs_t *s, x264_sps_t *sps )
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{
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bs_realign( s );
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bs_write( s, 8, sps->i_profile_idc );
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bs_write1( s, sps->b_constraint_set0 );
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bs_write1( s, sps->b_constraint_set1 );
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bs_write1( s, sps->b_constraint_set2 );
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bs_write1( s, sps->b_constraint_set3 );
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bs_write( s, 4, 0 ); /* reserved */
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bs_write( s, 8, sps->i_level_idc );
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bs_write_ue( s, sps->i_id );
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if( sps->i_profile_idc >= PROFILE_HIGH )
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{
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bs_write_ue( s, sps->i_chroma_format_idc );
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if( sps->i_chroma_format_idc == CHROMA_444 )
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bs_write1( s, 0 ); // separate_colour_plane_flag
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bs_write_ue( s, BIT_DEPTH-8 ); // bit_depth_luma_minus8
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bs_write_ue( s, BIT_DEPTH-8 ); // bit_depth_chroma_minus8
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bs_write1( s, sps->b_qpprime_y_zero_transform_bypass );
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bs_write1( s, 0 ); // seq_scaling_matrix_present_flag
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}
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bs_write_ue( s, sps->i_log2_max_frame_num - 4 );
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bs_write_ue( s, sps->i_poc_type );
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if( sps->i_poc_type == 0 )
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bs_write_ue( s, sps->i_log2_max_poc_lsb - 4 );
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bs_write_ue( s, sps->i_num_ref_frames );
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bs_write1( s, sps->b_gaps_in_frame_num_value_allowed );
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bs_write_ue( s, sps->i_mb_width - 1 );
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bs_write_ue( s, (sps->i_mb_height >> !sps->b_frame_mbs_only) - 1);
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bs_write1( s, sps->b_frame_mbs_only );
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if( !sps->b_frame_mbs_only )
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bs_write1( s, sps->b_mb_adaptive_frame_field );
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bs_write1( s, sps->b_direct8x8_inference );
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bs_write1( s, sps->b_crop );
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if( sps->b_crop )
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{
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int h_shift = sps->i_chroma_format_idc == CHROMA_420 || sps->i_chroma_format_idc == CHROMA_422;
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int v_shift = sps->i_chroma_format_idc == CHROMA_420;
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bs_write_ue( s, sps->crop.i_left >> h_shift );
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bs_write_ue( s, sps->crop.i_right >> h_shift );
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bs_write_ue( s, sps->crop.i_top >> v_shift );
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bs_write_ue( s, sps->crop.i_bottom >> v_shift );
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}
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bs_write1( s, sps->b_vui );
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if( sps->b_vui )
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{
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bs_write1( s, sps->vui.b_aspect_ratio_info_present );
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if( sps->vui.b_aspect_ratio_info_present )
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{
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int i;
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static const struct { uint8_t w, h, sar; } sar[] =
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{
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// aspect_ratio_idc = 0 -> unspecified
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{ 1, 1, 1 }, { 12, 11, 2 }, { 10, 11, 3 }, { 16, 11, 4 },
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{ 40, 33, 5 }, { 24, 11, 6 }, { 20, 11, 7 }, { 32, 11, 8 },
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{ 80, 33, 9 }, { 18, 11, 10}, { 15, 11, 11}, { 64, 33, 12},
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{160, 99, 13}, { 4, 3, 14}, { 3, 2, 15}, { 2, 1, 16},
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// aspect_ratio_idc = [17..254] -> reserved
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{ 0, 0, 255 }
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};
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for( i = 0; sar[i].sar != 255; i++ )
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{
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if( sar[i].w == sps->vui.i_sar_width &&
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sar[i].h == sps->vui.i_sar_height )
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break;
337
}
338
bs_write( s, 8, sar[i].sar );
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if( sar[i].sar == 255 ) /* aspect_ratio_idc (extended) */
340
{
341
bs_write( s, 16, sps->vui.i_sar_width );
342
bs_write( s, 16, sps->vui.i_sar_height );
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}
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}
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bs_write1( s, sps->vui.b_overscan_info_present );
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if( sps->vui.b_overscan_info_present )
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bs_write1( s, sps->vui.b_overscan_info );
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350
bs_write1( s, sps->vui.b_signal_type_present );
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if( sps->vui.b_signal_type_present )
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{
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bs_write( s, 3, sps->vui.i_vidformat );
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bs_write1( s, sps->vui.b_fullrange );
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bs_write1( s, sps->vui.b_color_description_present );
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if( sps->vui.b_color_description_present )
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{
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bs_write( s, 8, sps->vui.i_colorprim );
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bs_write( s, 8, sps->vui.i_transfer );
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bs_write( s, 8, sps->vui.i_colmatrix );
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}
362
}
363
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bs_write1( s, sps->vui.b_chroma_loc_info_present );
365
if( sps->vui.b_chroma_loc_info_present )
366
{
367
bs_write_ue( s, sps->vui.i_chroma_loc_top );
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bs_write_ue( s, sps->vui.i_chroma_loc_bottom );
369
}
370
371
bs_write1( s, sps->vui.b_timing_info_present );
372
if( sps->vui.b_timing_info_present )
373
{
374
bs_write32( s, sps->vui.i_num_units_in_tick );
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bs_write32( s, sps->vui.i_time_scale );
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bs_write1( s, sps->vui.b_fixed_frame_rate );
377
}
378
379
bs_write1( s, sps->vui.b_nal_hrd_parameters_present );
380
if( sps->vui.b_nal_hrd_parameters_present )
381
{
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bs_write_ue( s, sps->vui.hrd.i_cpb_cnt - 1 );
383
bs_write( s, 4, sps->vui.hrd.i_bit_rate_scale );
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bs_write( s, 4, sps->vui.hrd.i_cpb_size_scale );
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bs_write_ue( s, sps->vui.hrd.i_bit_rate_value - 1 );
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bs_write_ue( s, sps->vui.hrd.i_cpb_size_value - 1 );
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bs_write1( s, sps->vui.hrd.b_cbr_hrd );
390
391
bs_write( s, 5, sps->vui.hrd.i_initial_cpb_removal_delay_length - 1 );
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bs_write( s, 5, sps->vui.hrd.i_cpb_removal_delay_length - 1 );
393
bs_write( s, 5, sps->vui.hrd.i_dpb_output_delay_length - 1 );
394
bs_write( s, 5, sps->vui.hrd.i_time_offset_length );
395
}
396
397
bs_write1( s, sps->vui.b_vcl_hrd_parameters_present );
398
399
if( sps->vui.b_nal_hrd_parameters_present || sps->vui.b_vcl_hrd_parameters_present )
400
bs_write1( s, 0 ); /* low_delay_hrd_flag */
401
402
bs_write1( s, sps->vui.b_pic_struct_present );
403
bs_write1( s, sps->vui.b_bitstream_restriction );
404
if( sps->vui.b_bitstream_restriction )
405
{
406
bs_write1( s, sps->vui.b_motion_vectors_over_pic_boundaries );
407
bs_write_ue( s, sps->vui.i_max_bytes_per_pic_denom );
408
bs_write_ue( s, sps->vui.i_max_bits_per_mb_denom );
409
bs_write_ue( s, sps->vui.i_log2_max_mv_length_horizontal );
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bs_write_ue( s, sps->vui.i_log2_max_mv_length_vertical );
411
bs_write_ue( s, sps->vui.i_num_reorder_frames );
412
bs_write_ue( s, sps->vui.i_max_dec_frame_buffering );
413
}
414
}
415
416
bs_rbsp_trailing( s );
417
bs_flush( s );
418
}
419
420
void x264_pps_init( x264_pps_t *pps, int i_id, x264_param_t *param, x264_sps_t *sps )
421
{
422
pps->i_id = i_id;
423
pps->i_sps_id = sps->i_id;
424
pps->b_cabac = param->b_cabac;
425
426
pps->b_pic_order = !param->i_avcintra_class && param->b_interlaced;
427
pps->i_num_slice_groups = 1;
428
429
pps->i_num_ref_idx_l0_default_active = param->i_frame_reference;
430
pps->i_num_ref_idx_l1_default_active = 1;
431
432
pps->b_weighted_pred = param->analyse.i_weighted_pred > 0;
433
pps->b_weighted_bipred = param->analyse.b_weighted_bipred ? 2 : 0;
434
435
pps->i_pic_init_qp = param->rc.i_rc_method == X264_RC_ABR || param->b_stitchable ? 26 + QP_BD_OFFSET : SPEC_QP( param->rc.i_qp_constant );
436
pps->i_pic_init_qs = 26 + QP_BD_OFFSET;
437
438
pps->i_chroma_qp_index_offset = param->analyse.i_chroma_qp_offset;
439
pps->b_deblocking_filter_control = 1;
440
pps->b_constrained_intra_pred = param->b_constrained_intra;
441
pps->b_redundant_pic_cnt = 0;
442
443
pps->b_transform_8x8_mode = param->analyse.b_transform_8x8 ? 1 : 0;
444
445
pps->i_cqm_preset = param->i_cqm_preset;
446
447
switch( pps->i_cqm_preset )
448
{
449
case X264_CQM_FLAT:
450
for( int i = 0; i < 8; i++ )
451
pps->scaling_list[i] = x264_cqm_flat16;
452
break;
453
case X264_CQM_JVT:
454
for( int i = 0; i < 8; i++ )
455
pps->scaling_list[i] = x264_cqm_jvt[i];
456
break;
457
case X264_CQM_CUSTOM:
458
/* match the transposed DCT & zigzag */
459
transpose( param->cqm_4iy, 4 );
460
transpose( param->cqm_4py, 4 );
461
transpose( param->cqm_4ic, 4 );
462
transpose( param->cqm_4pc, 4 );
463
transpose( param->cqm_8iy, 8 );
464
transpose( param->cqm_8py, 8 );
465
transpose( param->cqm_8ic, 8 );
466
transpose( param->cqm_8pc, 8 );
467
pps->scaling_list[CQM_4IY] = param->cqm_4iy;
468
pps->scaling_list[CQM_4PY] = param->cqm_4py;
469
pps->scaling_list[CQM_4IC] = param->cqm_4ic;
470
pps->scaling_list[CQM_4PC] = param->cqm_4pc;
471
pps->scaling_list[CQM_8IY+4] = param->cqm_8iy;
472
pps->scaling_list[CQM_8PY+4] = param->cqm_8py;
473
pps->scaling_list[CQM_8IC+4] = param->cqm_8ic;
474
pps->scaling_list[CQM_8PC+4] = param->cqm_8pc;
475
for( int i = 0; i < 8; i++ )
476
for( int j = 0; j < (i < 4 ? 16 : 64); j++ )
477
if( pps->scaling_list[i][j] == 0 )
478
pps->scaling_list[i] = x264_cqm_jvt[i];
479
break;
480
}
481
}
482
483
void x264_pps_write( bs_t *s, x264_sps_t *sps, x264_pps_t *pps )
484
{
485
bs_realign( s );
486
bs_write_ue( s, pps->i_id );
487
bs_write_ue( s, pps->i_sps_id );
488
489
bs_write1( s, pps->b_cabac );
490
bs_write1( s, pps->b_pic_order );
491
bs_write_ue( s, pps->i_num_slice_groups - 1 );
492
493
bs_write_ue( s, pps->i_num_ref_idx_l0_default_active - 1 );
494
bs_write_ue( s, pps->i_num_ref_idx_l1_default_active - 1 );
495
bs_write1( s, pps->b_weighted_pred );
496
bs_write( s, 2, pps->b_weighted_bipred );
497
498
bs_write_se( s, pps->i_pic_init_qp - 26 - QP_BD_OFFSET );
499
bs_write_se( s, pps->i_pic_init_qs - 26 - QP_BD_OFFSET );
500
bs_write_se( s, pps->i_chroma_qp_index_offset );
501
502
bs_write1( s, pps->b_deblocking_filter_control );
503
bs_write1( s, pps->b_constrained_intra_pred );
504
bs_write1( s, pps->b_redundant_pic_cnt );
505
506
if( pps->b_transform_8x8_mode || pps->i_cqm_preset != X264_CQM_FLAT )
507
{
508
bs_write1( s, pps->b_transform_8x8_mode );
509
bs_write1( s, (pps->i_cqm_preset != X264_CQM_FLAT) );
510
if( pps->i_cqm_preset != X264_CQM_FLAT )
511
{
512
scaling_list_write( s, pps, CQM_4IY );
513
scaling_list_write( s, pps, CQM_4IC );
514
bs_write1( s, 0 ); // Cr = Cb
515
scaling_list_write( s, pps, CQM_4PY );
516
scaling_list_write( s, pps, CQM_4PC );
517
bs_write1( s, 0 ); // Cr = Cb
518
if( pps->b_transform_8x8_mode )
519
{
520
if( sps->i_chroma_format_idc == CHROMA_444 )
521
{
522
scaling_list_write( s, pps, CQM_8IY+4 );
523
scaling_list_write( s, pps, CQM_8IC+4 );
524
bs_write1( s, 0 ); // Cr = Cb
525
scaling_list_write( s, pps, CQM_8PY+4 );
526
scaling_list_write( s, pps, CQM_8PC+4 );
527
bs_write1( s, 0 ); // Cr = Cb
528
}
529
else
530
{
531
scaling_list_write( s, pps, CQM_8IY+4 );
532
scaling_list_write( s, pps, CQM_8PY+4 );
533
}
534
}
535
}
536
bs_write_se( s, pps->i_chroma_qp_index_offset );
537
}
538
539
bs_rbsp_trailing( s );
540
bs_flush( s );
541
}
542
543
void x264_sei_recovery_point_write( x264_t *h, bs_t *s, int recovery_frame_cnt )
544
{
545
bs_t q;
546
ALIGNED_4( uint8_t tmp_buf[100] );
547
M32( tmp_buf ) = 0; // shut up gcc
548
bs_init( &q, tmp_buf, 100 );
549
550
bs_realign( &q );
551
552
bs_write_ue( &q, recovery_frame_cnt ); // recovery_frame_cnt
553
bs_write1( &q, 1 ); //exact_match_flag 1
554
bs_write1( &q, 0 ); //broken_link_flag 0
555
bs_write( &q, 2, 0 ); //changing_slice_group 0
556
557
bs_align_10( &q );
558
bs_flush( &q );
559
560
x264_sei_write( s, tmp_buf, bs_pos( &q ) / 8, SEI_RECOVERY_POINT );
561
}
562
563
int x264_sei_version_write( x264_t *h, bs_t *s )
564
{
565
// random ID number generated according to ISO-11578
566
static const uint8_t uuid[16] =
567
{
568
0xdc, 0x45, 0xe9, 0xbd, 0xe6, 0xd9, 0x48, 0xb7,
569
0x96, 0x2c, 0xd8, 0x20, 0xd9, 0x23, 0xee, 0xef
570
};
571
char *opts = x264_param2string( &h->param, 0 );
572
char *payload;
573
int length;
574
575
if( !opts )
576
return -1;
577
CHECKED_MALLOC( payload, 200 + strlen( opts ) );
578
579
memcpy( payload, uuid, 16 );
580
sprintf( payload+16, "x264 - core %d%s - H.264/MPEG-4 AVC codec - "
581
"Copy%s 2003-2016 - http://www.videolan.org/x264.html - options: %s",
582
X264_BUILD, X264_VERSION, HAVE_GPL?"left":"right", opts );
583
length = strlen(payload)+1;
584
585
x264_sei_write( s, (uint8_t *)payload, length, SEI_USER_DATA_UNREGISTERED );
586
587
x264_free( opts );
588
x264_free( payload );
589
return 0;
590
fail:
591
x264_free( opts );
592
return -1;
593
}
594
595
void x264_sei_buffering_period_write( x264_t *h, bs_t *s )
596
{
597
x264_sps_t *sps = h->sps;
598
bs_t q;
599
ALIGNED_4( uint8_t tmp_buf[100] );
600
M32( tmp_buf ) = 0; // shut up gcc
601
bs_init( &q, tmp_buf, 100 );
602
603
bs_realign( &q );
604
bs_write_ue( &q, sps->i_id );
605
606
if( sps->vui.b_nal_hrd_parameters_present )
607
{
608
bs_write( &q, sps->vui.hrd.i_initial_cpb_removal_delay_length, h->initial_cpb_removal_delay );
609
bs_write( &q, sps->vui.hrd.i_initial_cpb_removal_delay_length, h->initial_cpb_removal_delay_offset );
610
}
611
612
bs_align_10( &q );
613
bs_flush( &q );
614
615
x264_sei_write( s, tmp_buf, bs_pos( &q ) / 8, SEI_BUFFERING_PERIOD );
616
}
617
618
void x264_sei_pic_timing_write( x264_t *h, bs_t *s )
619
{
620
x264_sps_t *sps = h->sps;
621
bs_t q;
622
ALIGNED_4( uint8_t tmp_buf[100] );
623
M32( tmp_buf ) = 0; // shut up gcc
624
bs_init( &q, tmp_buf, 100 );
625
626
bs_realign( &q );
627
628
if( sps->vui.b_nal_hrd_parameters_present || sps->vui.b_vcl_hrd_parameters_present )
629
{
630
bs_write( &q, sps->vui.hrd.i_cpb_removal_delay_length, h->fenc->i_cpb_delay - h->i_cpb_delay_pir_offset );
631
bs_write( &q, sps->vui.hrd.i_dpb_output_delay_length, h->fenc->i_dpb_output_delay );
632
}
633
634
if( sps->vui.b_pic_struct_present )
635
{
636
bs_write( &q, 4, h->fenc->i_pic_struct-1 ); // We use index 0 for "Auto"
637
638
// These clock timestamps are not standardised so we don't set them
639
// They could be time of origin, capture or alternative ideal display
640
for( int i = 0; i < num_clock_ts[h->fenc->i_pic_struct]; i++ )
641
bs_write1( &q, 0 ); // clock_timestamp_flag
642
}
643
644
bs_align_10( &q );
645
bs_flush( &q );
646
647
x264_sei_write( s, tmp_buf, bs_pos( &q ) / 8, SEI_PIC_TIMING );
648
}
649
650
void x264_sei_frame_packing_write( x264_t *h, bs_t *s )
651
{
652
int quincunx_sampling_flag = h->param.i_frame_packing == 0;
653
bs_t q;
654
ALIGNED_4( uint8_t tmp_buf[100] );
655
M32( tmp_buf ) = 0; // shut up gcc
656
bs_init( &q, tmp_buf, 100 );
657
658
bs_realign( &q );
659
660
bs_write_ue( &q, 0 ); // frame_packing_arrangement_id
661
bs_write1( &q, 0 ); // frame_packing_arrangement_cancel_flag
662
bs_write ( &q, 7, h->param.i_frame_packing ); // frame_packing_arrangement_type
663
bs_write1( &q, quincunx_sampling_flag ); // quincunx_sampling_flag
664
665
// 0: views are unrelated, 1: left view is on the left, 2: left view is on the right
666
bs_write ( &q, 6, h->param.i_frame_packing != 6 ); // content_interpretation_type
667
668
bs_write1( &q, 0 ); // spatial_flipping_flag
669
bs_write1( &q, 0 ); // frame0_flipped_flag
670
bs_write1( &q, 0 ); // field_views_flag
671
bs_write1( &q, h->param.i_frame_packing == 5 && !(h->fenc->i_frame&1) ); // current_frame_is_frame0_flag
672
bs_write1( &q, 0 ); // frame0_self_contained_flag
673
bs_write1( &q, 0 ); // frame1_self_contained_flag
674
if ( quincunx_sampling_flag == 0 && h->param.i_frame_packing != 5 )
675
{
676
bs_write( &q, 4, 0 ); // frame0_grid_position_x
677
bs_write( &q, 4, 0 ); // frame0_grid_position_y
678
bs_write( &q, 4, 0 ); // frame1_grid_position_x
679
bs_write( &q, 4, 0 ); // frame1_grid_position_y
680
}
681
bs_write( &q, 8, 0 ); // frame_packing_arrangement_reserved_byte
682
// "frame_packing_arrangement_repetition_period equal to 1 specifies that the frame packing arrangement SEI message persists in output"
683
// for (i_frame_packing == 5) this will undermine current_frame_is_frame0_flag which must alternate every view sequence
684
bs_write_ue( &q, h->param.i_frame_packing != 5 ); // frame_packing_arrangement_repetition_period
685
bs_write1( &q, 0 ); // frame_packing_arrangement_extension_flag
686
687
bs_align_10( &q );
688
bs_flush( &q );
689
690
x264_sei_write( s, tmp_buf, bs_pos( &q ) / 8, SEI_FRAME_PACKING );
691
}
692
693
void x264_filler_write( x264_t *h, bs_t *s, int filler )
694
{
695
bs_realign( s );
696
697
for( int i = 0; i < filler; i++ )
698
bs_write( s, 8, 0xff );
699
700
bs_rbsp_trailing( s );
701
bs_flush( s );
702
}
703
704
void x264_sei_dec_ref_pic_marking_write( x264_t *h, bs_t *s )
705
{
706
x264_slice_header_t *sh = &h->sh_backup;
707
bs_t q;
708
ALIGNED_4( uint8_t tmp_buf[100] );
709
M32( tmp_buf ) = 0; // shut up gcc
710
bs_init( &q, tmp_buf, 100 );
711
712
bs_realign( &q );
713
714
/* We currently only use this for repeating B-refs, as required by Blu-ray. */
715
bs_write1( &q, 0 ); //original_idr_flag
716
bs_write_ue( &q, sh->i_frame_num ); //original_frame_num
717
if( !h->sps->b_frame_mbs_only )
718
bs_write1( &q, 0 ); //original_field_pic_flag
719
720
bs_write1( &q, sh->i_mmco_command_count > 0 );
721
if( sh->i_mmco_command_count > 0 )
722
{
723
for( int i = 0; i < sh->i_mmco_command_count; i++ )
724
{
725
bs_write_ue( &q, 1 );
726
bs_write_ue( &q, sh->mmco[i].i_difference_of_pic_nums - 1 );
727
}
728
bs_write_ue( &q, 0 );
729
}
730
731
bs_align_10( &q );
732
bs_flush( &q );
733
734
x264_sei_write( s, tmp_buf, bs_pos( &q ) / 8, SEI_DEC_REF_PIC_MARKING );
735
}
736
737
int x264_sei_avcintra_umid_write( x264_t *h, bs_t *s )
738
{
739
uint8_t data[512];
740
const char *msg = "UMID";
741
const int len = 497;
742
743
memset( data, 0xff, len );
744
memcpy( data, avcintra_uuid, sizeof(avcintra_uuid) );
745
memcpy( data+16, msg, strlen(msg) );
746
747
data[20] = 0x13;
748
/* These bytes appear to be some sort of frame/seconds counter in certain applications,
749
* but others jump around, so leave them as zero for now */
750
data[22] = data[23] = data[25] = data[26] = 0;
751
data[28] = 0x14;
752
data[30] = data[31] = data[33] = data[34] = 0;
753
data[36] = 0x60;
754
data[41] = 0x22; /* Believed to be some sort of end of basic UMID identifier */
755
data[60] = 0x62;
756
data[62] = data[63] = data[65] = data[66] = 0;
757
data[68] = 0x63;
758
data[70] = data[71] = data[73] = data[74] = 0;
759
760
x264_sei_write( &h->out.bs, data, len, SEI_USER_DATA_UNREGISTERED );
761
762
return 0;
763
}
764
765
int x264_sei_avcintra_vanc_write( x264_t *h, bs_t *s, int len )
766
{
767
uint8_t data[6000];
768
const char *msg = "VANC";
769
if( len > sizeof(data) )
770
{
771
x264_log( h, X264_LOG_ERROR, "AVC-Intra SEI is too large (%d)\n", len );
772
return -1;
773
}
774
775
memset( data, 0xff, len );
776
memcpy( data, avcintra_uuid, sizeof(avcintra_uuid) );
777
memcpy( data+16, msg, strlen(msg) );
778
779
x264_sei_write( &h->out.bs, data, len, SEI_USER_DATA_UNREGISTERED );
780
781
return 0;
782
}
783
784
const x264_level_t x264_levels[] =
785
{
786
{ 10, 1485, 99, 396, 64, 175, 64, 64, 0, 2, 0, 0, 1 },
787
{ 9, 1485, 99, 396, 128, 350, 64, 64, 0, 2, 0, 0, 1 }, /* "1b" */
788
{ 11, 3000, 396, 900, 192, 500, 128, 64, 0, 2, 0, 0, 1 },
789
{ 12, 6000, 396, 2376, 384, 1000, 128, 64, 0, 2, 0, 0, 1 },
790
{ 13, 11880, 396, 2376, 768, 2000, 128, 64, 0, 2, 0, 0, 1 },
791
{ 20, 11880, 396, 2376, 2000, 2000, 128, 64, 0, 2, 0, 0, 1 },
792
{ 21, 19800, 792, 4752, 4000, 4000, 256, 64, 0, 2, 0, 0, 0 },
793
{ 22, 20250, 1620, 8100, 4000, 4000, 256, 64, 0, 2, 0, 0, 0 },
794
{ 30, 40500, 1620, 8100, 10000, 10000, 256, 32, 22, 2, 0, 1, 0 },
795
{ 31, 108000, 3600, 18000, 14000, 14000, 512, 16, 60, 4, 1, 1, 0 },
796
{ 32, 216000, 5120, 20480, 20000, 20000, 512, 16, 60, 4, 1, 1, 0 },
797
{ 40, 245760, 8192, 32768, 20000, 25000, 512, 16, 60, 4, 1, 1, 0 },
798
{ 41, 245760, 8192, 32768, 50000, 62500, 512, 16, 24, 2, 1, 1, 0 },
799
{ 42, 522240, 8704, 34816, 50000, 62500, 512, 16, 24, 2, 1, 1, 1 },
800
{ 50, 589824, 22080, 110400, 135000, 135000, 512, 16, 24, 2, 1, 1, 1 },
801
{ 51, 983040, 36864, 184320, 240000, 240000, 512, 16, 24, 2, 1, 1, 1 },
802
{ 52, 2073600, 36864, 184320, 240000, 240000, 512, 16, 24, 2, 1, 1, 1 },
803
{ 0 }
804
};
805
806
#define ERROR(...)\
807
{\
808
if( verbose )\
809
x264_log( h, X264_LOG_WARNING, __VA_ARGS__ );\
810
ret = 1;\
811
}
812
813
int x264_validate_levels( x264_t *h, int verbose )
814
{
815
int ret = 0;
816
int mbs = h->sps->i_mb_width * h->sps->i_mb_height;
817
int dpb = mbs * h->sps->vui.i_max_dec_frame_buffering;
818
int cbp_factor = h->sps->i_profile_idc>=PROFILE_HIGH422 ? 16 :
819
h->sps->i_profile_idc==PROFILE_HIGH10 ? 12 :
820
h->sps->i_profile_idc==PROFILE_HIGH ? 5 : 4;
821
822
const x264_level_t *l = x264_levels;
823
while( l->level_idc != 0 && l->level_idc != h->param.i_level_idc )
824
l++;
825
826
if( l->frame_size < mbs
827
|| l->frame_size*8 < h->sps->i_mb_width * h->sps->i_mb_width
828
|| l->frame_size*8 < h->sps->i_mb_height * h->sps->i_mb_height )
829
ERROR( "frame MB size (%dx%d) > level limit (%d)\n",
830
h->sps->i_mb_width, h->sps->i_mb_height, l->frame_size );
831
if( dpb > l->dpb )
832
ERROR( "DPB size (%d frames, %d mbs) > level limit (%d frames, %d mbs)\n",
833
h->sps->vui.i_max_dec_frame_buffering, dpb, l->dpb / mbs, l->dpb );
834
835
#define CHECK( name, limit, val ) \
836
if( (val) > (limit) ) \
837
ERROR( name " (%"PRId64") > level limit (%d)\n", (int64_t)(val), (limit) );
838
839
CHECK( "VBV bitrate", (l->bitrate * cbp_factor) / 4, h->param.rc.i_vbv_max_bitrate );
840
CHECK( "VBV buffer", (l->cpb * cbp_factor) / 4, h->param.rc.i_vbv_buffer_size );
841
CHECK( "MV range", l->mv_range, h->param.analyse.i_mv_range );
842
CHECK( "interlaced", !l->frame_only, h->param.b_interlaced );
843
CHECK( "fake interlaced", !l->frame_only, h->param.b_fake_interlaced );
844
845
if( h->param.i_fps_den > 0 )
846
CHECK( "MB rate", l->mbps, (int64_t)mbs * h->param.i_fps_num / h->param.i_fps_den );
847
848
/* TODO check the rest of the limits */
849
return ret;
850
}
851
852