Свойство | Type | Description | |
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Output | int | ||
Read | int | ||
UpdateClock | void |
Méthode | Description | |
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Reset ( ) : void | ||
SID ( ) | ||
SetSamplingParameters ( double clock_freq, double sample_freq, double pass_freq = -1, double filter_scale = 0.97 ) : bool |
Setting of SID sampling parameters. Use a clock freqency of 985248Hz for PAL C64, 1022730Hz for NTSC C64. The default end of passband frequency is pass_freq = 0.9*sample_freq/2 for sample frequencies up to ~ 44.1kHz, and 20kHz for higher sample frequencies. For resampling, the ratio between the clock frequency and the sample frequency is limited as follows: 125*clock_freq/sample_freq < 16384 E.g. provided a clock frequency of ~ 1MHz, the sample frequency can not be set lower than ~ 8kHz. A lower sample frequency would make the resampling code overfill its 16k sample ring buffer. The end of passband frequency is also limited: pass_freq <= 0.9*sample_freq/2 E.g. for a 44.1kHz sampling rate the end of passband frequency is limited to slightly below 20kHz. This constraint ensures that the FIR table is not overfilled. |
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UpdateClock ( int &delta_t, short buf, int n, int offset, int interleave = 1 ) : int |
SID clocking with audio sampling. Fixpoint arithmetics is used.
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Write ( int offset, int value ) : void |
Méthode | Description | |
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Output ( ) : int | ||
Read ( int offset ) : int | ||
UpdateClock ( int delta_t ) : void |
public SetSamplingParameters ( double clock_freq, double sample_freq, double pass_freq = -1, double filter_scale = 0.97 ) : bool | ||
clock_freq | double | Clock freq. |
sample_freq | double | Sample freq. |
pass_freq | double | Pass freq. |
filter_scale | double | Filter scale. |
Résultat | bool |
public UpdateClock ( int &delta_t, short buf, int n, int offset, int interleave = 1 ) : int | ||
delta_t | int | Delta t. |
buf | short | Buffer. |
n | int | N. |
offset | int | Offset. |
interleave | int | Interleave. |
Résultat | int |
public Write ( int offset, int value ) : void | ||
offset | int | |
value | int | |
Résultat | void |