Allow timespans to vary.
No change in performance if they do not vary. Originally committed as revision 17840 to svn://svn.ffmpeg.org/ffmpeg/trunk
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@ -34,10 +34,10 @@ struct TimeFilter {
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double integrator2_state;
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};
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TimeFilter * ff_timefilter_new(double period, double feedback2_factor, double feedback3_factor)
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TimeFilter * ff_timefilter_new(double feedback2_factor, double feedback3_factor)
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{
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TimeFilter *self = av_mallocz(sizeof(TimeFilter));
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self->integrator2_state = period;
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self->integrator2_state = 1.0;
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self->feedback2_factor = feedback2_factor;
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self->feedback3_factor = feedback3_factor;
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return self;
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@ -53,20 +53,20 @@ void ff_timefilter_reset(TimeFilter *self)
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self->cycle_time = 0;
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}
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void ff_timefilter_update(TimeFilter *self, double system_time)
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void ff_timefilter_update(TimeFilter *self, double system_time, double period)
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{
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if (!self->cycle_time) {
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/// init loop
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self->cycle_time = system_time;
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} else {
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double loop_error;
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self->cycle_time+= self->integrator2_state;
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self->cycle_time+= self->integrator2_state * period;
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/// calculate loop error
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loop_error = system_time - self->cycle_time;
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/// update loop
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self->cycle_time += self->feedback2_factor * loop_error;
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self->integrator2_state += self->feedback3_factor * loop_error;
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self->integrator2_state += self->feedback3_factor * loop_error / period;
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}
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}
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@ -37,10 +37,6 @@ typedef struct TimeFilter TimeFilter;
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/**
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* Create a new Delay Locked Loop time filter
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*
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* period is the device cycle duration in seconds. For example, at
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* 44.1Hz and a buffer size of 512 frames, period = 512 / 44100. The filter
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* only works if the cycle duration is fixed.
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*
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* feedback2_factor and feedback3_factor are the factors used for the
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* multiplications that are respectively performed in the second and third
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* feedback paths of the loop.
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@ -58,19 +54,22 @@ typedef struct TimeFilter TimeFilter;
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* For more details about these parameters and background concepts please see:
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* http://www.kokkinizita.net/papers/usingdll.pdf
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*/
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TimeFilter * ff_timefilter_new(double period, double feedback2_factor, double feedback3_factor);
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TimeFilter * ff_timefilter_new(double feedback2_factor, double feedback3_factor);
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/**
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* Update the filter
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*
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* This function must be called in real time, at each process cycle.
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*
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* period is the device cycle duration in seconds. For example, at
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* 44.1Hz and a buffer size of 512 frames, period = 512 / 44100.
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*
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* system_time, in seconds, should be the value of the system clock time,
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* at (or as close as possible to) the moment the device hardware interrupt
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* occured (or any other event the device clock raises at the beginning of a
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* cycle).
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*/
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void ff_timefilter_update(TimeFilter *self, double system_time);
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void ff_timefilter_update(TimeFilter *self, double system_time, double period);
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/**
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* Retrieve the filtered time
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