*/
#ifdef SAM_SYNCHRO
-/*****************************************************************************
- * vpar_SynchroUpdateTab : Update a mean table in the synchro structure
- *****************************************************************************/
-float vpar_SynchroUpdateTab( video_synchro_tab_t * tab, int count )
-{
-
- tab->mean = ( tab->mean + MAX_COUNT * count ) / ( MAX_COUNT + 1 );
- tab->deviation = ( tab->deviation + MAX_COUNT * abs (tab->mean - count) )
- / ( MAX_COUNT + 1 );
-
- return tab->deviation;
-}
/*****************************************************************************
* vpar_SynchroUpdateStructures : Update the synchro structures
*****************************************************************************/
void vpar_SynchroUpdateStructures( vpar_thread_t * p_vpar,
- int i_coding_type, int dropped )
+ int i_coding_type, boolean_t b_kept )
{
- float candidate_deviation;
- float optimal_deviation;
- float predict;
- mtime_t i_current_pts;
- mtime_t i_delay;
- mtime_t i_displaydate;
- decoder_fifo_t * decoder_fifo = p_vpar->bit_stream.p_decoder_fifo;
-
- /* interpolate the current _decode_ PTS */
- i_current_pts = decoder_fifo->buffer[decoder_fifo->i_start]->b_has_pts ?
- decoder_fifo->buffer[decoder_fifo->i_start]->i_pts :
- 0;
- if( !i_current_pts )
+ double i_can_display;
+ mtime_t i_pts;
+ pes_packet_t * p_pes = p_vpar->bit_stream.p_decoder_fifo->buffer[
+ p_vpar->bit_stream.p_decoder_fifo->i_start ];
+
+ /* try to guess the current DTS and PTS */
+ if( p_pes->b_has_pts )
{
- i_current_pts = p_vpar->synchro.i_last_decode_pts
- + 1000000.0 / (1 + p_vpar->synchro.actual_fps);
- }
- p_vpar->synchro.i_last_decode_pts = i_current_pts;
+ i_pts = p_pes->i_pts;
- /* see if the current image has a pts - if not, set to 0 */
- p_vpar->synchro.fifo[p_vpar->synchro.i_fifo_stop].i_pts
- = i_current_pts;
+ /* if the image is I type, then the presentation timestamp is
+ * the PTS of the PES. Otherwise, we calculate it with the
+ * theorical framerate value */
+ if( i_coding_type == I_CODING_TYPE )
+ {
+ p_vpar->synchro.i_last_pts = p_pes->i_pts;
+ }
+ else
+ {
+ p_vpar->synchro.i_last_pts += p_vpar->synchro.i_theorical_delay;
+ }
- /* update display time */
- i_displaydate = decoder_fifo->buffer[decoder_fifo->i_start]->b_has_pts ?
- decoder_fifo->buffer[decoder_fifo->i_start]->i_pts :
- 0;
- if( !i_displaydate || i_coding_type != I_CODING_TYPE )
+ p_pes->b_has_pts = 0;
+ }
+ else
{
- if (!p_vpar->synchro.i_images_since_pts )
- p_vpar->synchro.i_images_since_pts = 10;
-
- i_displaydate = p_vpar->synchro.i_last_display_pts
- + 1000000.0 / (p_vpar->synchro.theorical_fps);
+ p_vpar->synchro.i_last_pts += p_vpar->synchro.i_theorical_delay;
+ i_pts = p_vpar->synchro.i_last_pts;
}
- decoder_fifo->buffer[decoder_fifo->i_start]->b_has_pts = 0;
-
- p_vpar->synchro.i_images_since_pts--;
- p_vpar->synchro.i_last_display_pts = i_displaydate;
-
-
-
/* update structures */
switch(i_coding_type)
{
case P_CODING_TYPE:
- p_vpar->synchro.current_p_count++;
- if( !dropped ) p_vpar->synchro.nondropped_p_count++;
+ p_vpar->synchro.i_P_seen++;
+ if( b_kept ) p_vpar->synchro.i_P_kept++;
break;
case B_CODING_TYPE:
- p_vpar->synchro.current_b_count++;
- if( !dropped ) p_vpar->synchro.nondropped_b_count++;
+ p_vpar->synchro.i_B_seen++;
+ if( b_kept ) p_vpar->synchro.i_B_kept++;
break;
case I_CODING_TYPE:
- /* update information about images we can decode */
- if (i_current_pts != p_vpar->synchro.i_last_i_pts)
+ /* update the last I PTS we have, we need it to
+ * calculate the theorical framerate */
+ if (i_pts != p_vpar->synchro.i_last_seen_I_pts)
{
- if ( p_vpar->synchro.i_last_i_pts && i_current_pts != p_vpar->synchro.i_last_i_pts)
+ if ( p_vpar->synchro.i_last_seen_I_pts )
{
- p_vpar->synchro.theorical_fps = (p_vpar->synchro.theorical_fps + 1000000.0 * (1 + p_vpar->synchro.current_b_count + p_vpar->synchro.current_p_count) / (i_current_pts - p_vpar->synchro.i_last_i_pts)) / 2;
+ p_vpar->synchro.i_theorical_delay =
+ ( i_pts - p_vpar->synchro.i_last_seen_I_pts )
+ / ( 1 + p_vpar->synchro.i_B_seen
+ + p_vpar->synchro.i_P_seen);
}
- p_vpar->synchro.i_last_i_pts = i_current_pts;
+ p_vpar->synchro.i_last_seen_I_pts = i_pts;
}
- if( !dropped )
- {
- if ( p_vpar->synchro.i_last_nondropped_i_pts && i_current_pts != p_vpar->synchro.i_last_nondropped_i_pts)
- {
- p_vpar->synchro.actual_fps = (p_vpar->synchro.actual_fps + 1000000.0 * (1 + p_vpar->synchro.nondropped_b_count + p_vpar->synchro.nondropped_p_count) / (i_current_pts - p_vpar->synchro.i_last_nondropped_i_pts)) / 2;
- }
-
- }
-
-
- /* update all the structures for P images */
-
- /* period == 1 */
- optimal_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_p[0],
- p_vpar->synchro.current_p_count);
- predict = p_vpar->synchro.tab_p[0].mean;
-
- /* period == 2 */
- candidate_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_p[1 + (p_vpar->synchro.modulo & 0x1)],
- p_vpar->synchro.current_p_count);
- if (candidate_deviation < optimal_deviation)
- {
- optimal_deviation = candidate_deviation;
- predict = p_vpar->synchro.tab_p[1 + (p_vpar->synchro.modulo & 0x1)].mean;
- }
-
- /* period == 3 */
- candidate_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_p[3 + (p_vpar->synchro.modulo % 3)],
- p_vpar->synchro.current_p_count);
- if (candidate_deviation < optimal_deviation)
- {
- optimal_deviation = candidate_deviation;
- predict = p_vpar->synchro.tab_p[1 + (p_vpar->synchro.modulo % 3)].mean;
- }
-
- p_vpar->synchro.p_count_predict = predict;
- p_vpar->synchro.current_p_count = 0;
-
-
- /* update all the structures for B images */
-
- /* period == 1 */
- optimal_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_b[0],
- p_vpar->synchro.current_b_count);
- predict = p_vpar->synchro.tab_b[0].mean;
+ /* now we calculated all statistics, it's time to
+ * decide what we have the time to display */
+ i_can_display = (float)(i_pts - p_vpar->synchro.i_last_kept_I_pts)
+ / p_vpar->synchro.i_delay;
- /* period == 2 */
- candidate_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_b[1 + (p_vpar->synchro.modulo & 0x1)],
- p_vpar->synchro.current_b_count);
- if (candidate_deviation < optimal_deviation)
- {
- optimal_deviation = candidate_deviation;
- predict = p_vpar->synchro.tab_b[1 + (p_vpar->synchro.modulo & 0x1)].mean;
- }
+ p_vpar->synchro.b_all_I = 0;
+ p_vpar->synchro.b_all_B = 0;
+ p_vpar->synchro.b_all_P = 0;
+ p_vpar->synchro.displayable_p = 0;
+ p_vpar->synchro.displayable_b = 0;
- /* period == 3 */
- candidate_deviation = vpar_SynchroUpdateTab(
- &p_vpar->synchro.tab_b[3 + (p_vpar->synchro.modulo % 3)],
- p_vpar->synchro.current_b_count);
- if (candidate_deviation < optimal_deviation)
+ if( ( p_vpar->synchro.b_all_I = ( i_can_display > 1 ) ) )
{
- optimal_deviation = candidate_deviation;
- predict = p_vpar->synchro.tab_b[1 + (p_vpar->synchro.modulo % 3)].mean;
- }
-
- p_vpar->synchro.b_count_predict = predict;
- p_vpar->synchro.current_b_count = 0;
+ i_can_display -= 1;
- /* now we calculated all statistics, it's time to
- * decide what we have the time to display
- */
- i_delay = i_current_pts - p_vpar->synchro.i_last_nondropped_i_pts;
-
- p_vpar->synchro.can_display_i
- = ( p_vpar->synchro.i_mean_decode_time < i_delay );
-
- p_vpar->synchro.can_display_p
- = ( p_vpar->synchro.i_mean_decode_time
- * (1 + p_vpar->synchro.p_count_predict) < i_delay );
+ if( !( p_vpar->synchro.b_all_P
+ = ( i_can_display > p_vpar->synchro.i_P_seen ) ) )
+ {
+ p_vpar->synchro.displayable_p = i_can_display;
+ }
+ else
+ {
+ i_can_display -= p_vpar->synchro.i_P_seen;
- if( !p_vpar->synchro.can_display_p )
- {
- p_vpar->synchro.displayable_p
- = -1 + i_delay / p_vpar->synchro.i_mean_decode_time;
- if( p_vpar->synchro.displayable_p < 0 )
- p_vpar->synchro.displayable_p = 0;
- }
- else
- p_vpar->synchro.displayable_p = 0;
-
- if( p_vpar->synchro.can_display_p
- && !(p_vpar->synchro.can_display_b
- = ( p_vpar->synchro.i_mean_decode_time
- * (1 + p_vpar->synchro.b_count_predict
- + p_vpar->synchro.p_count_predict)) < i_delay) )
- {
- p_vpar->synchro.displayable_b
- = -2.0 + i_delay / p_vpar->synchro.i_mean_decode_time
- - p_vpar->synchro.can_display_p;
+ if( !( p_vpar->synchro.b_all_B
+ = ( i_can_display > p_vpar->synchro.i_B_seen ) ) )
+ {
+ p_vpar->synchro.displayable_b = i_can_display;
+ }
+ }
}
- else
- p_vpar->synchro.displayable_b = 0;
-#if 0
- intf_DbgMsg( "I %i P %i (%f) B %i (%f)\n",
- p_vpar->synchro.can_display_i,
- p_vpar->synchro.can_display_p,
- p_vpar->synchro.displayable_p,
- p_vpar->synchro.can_display_b,
- p_vpar->synchro.displayable_b );
+#if 1
+ if( p_vpar->synchro.b_all_I )
+ intf_ErrMsg( " I: 1/1 " );
+ if( p_vpar->synchro.b_all_P )
+ intf_ErrMsg( "P: %i/%i ", p_vpar->synchro.i_P_seen,
+ p_vpar->synchro.i_P_seen );
+ else if( p_vpar->synchro.displayable_p > 0 )
+ intf_ErrMsg( "P: %.2f/%i ", p_vpar->synchro.displayable_p,
+ p_vpar->synchro.i_P_seen );
+ if( p_vpar->synchro.b_all_B )
+ intf_ErrMsg( "B: %i/%i", p_vpar->synchro.i_B_seen,
+ p_vpar->synchro.i_B_seen );
+ else if( p_vpar->synchro.displayable_b > 0 )
+ intf_ErrMsg( "B: %.2f/%i", p_vpar->synchro.displayable_b,
+ p_vpar->synchro.i_B_seen );
+ intf_ErrMsg( " \r" );
#endif
+ p_vpar->synchro.i_P_seen = 0;
+ p_vpar->synchro.i_B_seen = 0;
/* update some values */
- if( !dropped )
+ if( b_kept )
{
- p_vpar->synchro.i_last_nondropped_i_pts = i_current_pts;
- p_vpar->synchro.nondropped_p_count = 0;
- p_vpar->synchro.nondropped_b_count = 0;
+ p_vpar->synchro.i_last_kept_I_pts = i_pts;
+ p_vpar->synchro.i_P_kept = 0;
+ p_vpar->synchro.i_B_kept = 0;
}
break;
-
}
-
- p_vpar->synchro.modulo++;
-
}
/*****************************************************************************
boolean_t vpar_SynchroChoose( vpar_thread_t * p_vpar, int i_coding_type,
int i_structure )
{
- mtime_t i_delay = p_vpar->synchro.i_last_decode_pts - mdate();
+ mtime_t i_delay = p_vpar->synchro.i_last_pts - mdate();
+
+ //return (i_coding_type == I_CODING_TYPE);
switch( i_coding_type )
{
case I_CODING_TYPE:
- return( p_vpar->synchro.can_display_i );
+ //intf_ErrMsg( " I %f %f\nI ", 1000000.0 / p_vpar->synchro.i_theorical_delay, 1000000.0 / p_vpar->synchro.i_delay );
+ return( p_vpar->synchro.b_all_I );
case P_CODING_TYPE:
- if( p_vpar->synchro.can_display_p )
+ //return(1);
+ if( p_vpar->synchro.b_all_P )
+ {
+ //intf_ErrMsg( " p " );
return( 1 );
+ }
if( p_vpar->synchro.displayable_p * i_delay
- < p_vpar->synchro.i_mean_decode_time )
+ < p_vpar->synchro.i_delay )
{
- //intf_ErrMsg( "trashed a P\n" );
+ //intf_ErrMsg( " - " );
return( 0 );
}
p_vpar->synchro.displayable_p--;
+ //intf_ErrMsg( " p> " );
return( 1 );
case B_CODING_TYPE:
- if( p_vpar->synchro.can_display_b )
+ if( p_vpar->synchro.b_all_B )
+ {
+ //intf_ErrMsg( "b " );
return( 1 );
+ }
- /* modulo & 0x3 is here to add some randomness */
- if( i_delay < (1 + (p_vpar->synchro.modulo & 0x3))
- * p_vpar->synchro.i_mean_decode_time )
+ if( p_vpar->synchro.displayable_b <= 0 )
{
- //intf_ErrMsg( "trashed a B\n" );
+ //intf_ErrMsg( " " );
return( 0 );
}
- if( p_vpar->synchro.displayable_b <= 0 )
+ if( i_delay < 0 )
+ {
+ //intf_ErrMsg( "ยท " );
+ p_vpar->synchro.displayable_b -= 0.5;
return( 0 );
+ }
+ //intf_ErrMsg( "b " );
p_vpar->synchro.displayable_b--;
return( 1 );
}
void vpar_SynchroTrash( vpar_thread_t * p_vpar, int i_coding_type,
int i_structure )
{
- vpar_SynchroUpdateStructures (p_vpar, i_coding_type, 1);
+ vpar_SynchroUpdateStructures (p_vpar, i_coding_type, 0);
}
void vpar_SynchroDecode( vpar_thread_t * p_vpar, int i_coding_type,
int i_structure )
{
- vpar_SynchroUpdateStructures (p_vpar, i_coding_type, 0);
+ vpar_SynchroUpdateStructures (p_vpar, i_coding_type, 1);
- p_vpar->synchro.fifo[p_vpar->synchro.i_fifo_stop].i_decode_date = mdate();
- p_vpar->synchro.fifo[p_vpar->synchro.i_fifo_stop].i_image_type
- = i_coding_type;
+ p_vpar->synchro.i_date_fifo[p_vpar->synchro.i_stop] = mdate();
- p_vpar->synchro.i_fifo_stop = (p_vpar->synchro.i_fifo_stop + 1) & 0xf;
+ FIFO_INCREMENT( i_stop );
}
*****************************************************************************/
void vpar_SynchroEnd( vpar_thread_t * p_vpar )
{
- mtime_t i_decode_time;
-
- i_decode_time = (mdate() -
- p_vpar->synchro.fifo[p_vpar->synchro.i_fifo_start].i_decode_date)
- / ( (p_vpar->synchro.i_fifo_stop - p_vpar->synchro.i_fifo_start) & 0x0f);
+ if( p_vpar->synchro.i_stop != p_vpar->synchro.i_start )
+ {
+ mtime_t i_delay;
- p_vpar->synchro.i_mean_decode_time =
- ( 7 * p_vpar->synchro.i_mean_decode_time + i_decode_time ) / 8;
+ i_delay = ( mdate() -
+ p_vpar->synchro.i_date_fifo[p_vpar->synchro.i_start] )
+ / ( (p_vpar->synchro.i_stop - p_vpar->synchro.i_start) & 0x0f );
- /* intf_ErrMsg( "decoding time was %lli\n",
- p_vpar->synchro.i_mean_decode_time ); */
+ p_vpar->synchro.i_delay =
+ ( 7 * p_vpar->synchro.i_delay + i_delay ) >> 3;
- p_vpar->synchro.i_fifo_start = (p_vpar->synchro.i_fifo_start + 1) & 0xf;
+#if 0
+ intf_ErrMsg( "decode %lli (mean %lli, theorical %lli)\n",
+ i_delay, p_vpar->synchro.i_delay,
+ p_vpar->synchro.i_theorical_delay );
+#endif
+ }
+ else
+ {
+ intf_ErrMsg( "vpar error: critical ! fifo full\n" );
+ }
+ FIFO_INCREMENT( i_start );
}
/*****************************************************************************
*****************************************************************************/
mtime_t vpar_SynchroDate( vpar_thread_t * p_vpar )
{
- mtime_t i_displaydate = p_vpar->synchro.i_last_display_pts;
-
#if 0
+
+ mtime_t i_displaydate = p_vpar->synchro.i_last_pts;
+
static mtime_t i_delta = 0;
- intf_ErrMsg( "displaying type %i with delay %lli and delta %lli\n",
- p_vpar->synchro.fifo[p_vpar->synchro.i_fifo_start].i_image_type,
+ intf_ErrMsg( "displaying image with delay %lli and delta %lli\n",
i_displaydate - mdate(),
i_displaydate - i_delta );
intf_ErrMsg ( "theorical fps: %f - actual fps: %f \n",
- p_vpar->synchro.theorical_fps, p_vpar->synchro.actual_fps );
+ 1000000.0 / p_vpar->synchro.i_theorical_delay, 1000000.0 / p_vpar->synchro.i_delay );
i_delta = i_displaydate;
-#endif
return i_displaydate;
+#else
+
+ return p_vpar->synchro.i_last_pts;
+
+#endif
}
#endif