12 #define LOWPASSFREQREF (5000.0f)
13 #define HIGHPASSFREQREF (250.0f)
16 /* Filters implementation is based on the "Cookbook formulae for audio
17 * EQ biquad filter coefficients" by Robert Bristow-Johnson
18 * http://www.musicdsp.org/files/Audio-EQ-Cookbook.txt
20 /* Implementation note: For the shelf filters, the specified gain is for the
21 * reference frequency, which is the centerpoint of the transition band. This
22 * better matches EFX filter design. To set the gain for the shelf itself, use
23 * the square root of the desired linear gain (or halve the dB gain).
26 typedef enum ALfilterType
{
27 /** EFX-style low-pass filter, specifying a gain and reference frequency. */
28 ALfilterType_HighShelf
,
29 /** EFX-style high-pass filter, specifying a gain and reference frequency. */
30 ALfilterType_LowShelf
,
31 /** Peaking filter, specifying a gain and reference frequency. */
34 /** Low-pass cut-off filter, specifying a cut-off frequency. */
36 /** High-pass cut-off filter, specifying a cut-off frequency. */
37 ALfilterType_HighPass
,
38 /** Band-pass filter, specifying a center frequency. */
39 ALfilterType_BandPass
,
42 typedef struct ALfilterState
{
43 ALfloat x
[2]; /* History of two last input samples */
44 ALfloat y
[2]; /* History of two last output samples */
45 ALfloat b0
, b1
, b2
; /* Transfer function coefficients "b" */
46 ALfloat a1
, a2
; /* Transfer function coefficients "a" (a0 is pre-applied) */
48 /* Currently only a C-based filter process method is implemented. */
49 #define ALfilterState_process ALfilterState_processC
51 /* Calculates the rcpQ (i.e. 1/Q) coefficient for shelving filters, using the
52 * reference gain and shelf slope parameter.
56 inline ALfloat
calc_rcpQ_from_slope(ALfloat gain
, ALfloat slope
)
58 return sqrtf((gain
+ 1.0f
/gain
)*(1.0f
/slope
- 1.0f
) + 2.0f
);
60 /* Calculates the rcpQ (i.e. 1/Q) coefficient for filters, using the frequency
61 * multiple (i.e. ref_freq / sampling_freq) and bandwidth.
62 * 0 < freq_mult < 0.5.
64 inline ALfloat
calc_rcpQ_from_bandwidth(ALfloat freq_mult
, ALfloat bandwidth
)
66 ALfloat w0
= F_TAU
* freq_mult
;
67 return 2.0f
*sinhf(logf(2.0f
)/2.0f
*bandwidth
*w0
/sinf(w0
));
70 inline void ALfilterState_clear(ALfilterState
*filter
)
78 void ALfilterState_setParams(ALfilterState
*filter
, ALfilterType type
, ALfloat gain
, ALfloat freq_mult
, ALfloat rcpQ
);
80 inline void ALfilterState_copyParams(ALfilterState
*restrict dst
, const ALfilterState
*restrict src
)
89 void ALfilterState_processC(ALfilterState
*filter
, ALfloat
*restrict dst
, const ALfloat
*restrict src
, ALsizei numsamples
);
91 inline void ALfilterState_processPassthru(ALfilterState
*filter
, const ALfloat
*restrict src
, ALsizei numsamples
)
95 filter
->x
[1] = src
[numsamples
-2];
96 filter
->x
[0] = src
[numsamples
-1];
97 filter
->y
[1] = src
[numsamples
-2];
98 filter
->y
[0] = src
[numsamples
-1];
100 else if(numsamples
== 1)
102 filter
->x
[1] = filter
->x
[0];
103 filter
->x
[0] = src
[0];
104 filter
->y
[1] = filter
->y
[0];
105 filter
->y
[0] = src
[0];
110 typedef struct ALfilter
{
111 // Filter type (AL_FILTER_NULL, ...)
120 void (*SetParami
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALint val
);
121 void (*SetParamiv
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, const ALint
*vals
);
122 void (*SetParamf
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALfloat val
);
123 void (*SetParamfv
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, const ALfloat
*vals
);
125 void (*GetParami
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALint
*val
);
126 void (*GetParamiv
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALint
*vals
);
127 void (*GetParamf
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALfloat
*val
);
128 void (*GetParamfv
)(struct ALfilter
*filter
, ALCcontext
*context
, ALenum param
, ALfloat
*vals
);
134 #define ALfilter_SetParami(x, c, p, v) ((x)->SetParami((x),(c),(p),(v)))
135 #define ALfilter_SetParamiv(x, c, p, v) ((x)->SetParamiv((x),(c),(p),(v)))
136 #define ALfilter_SetParamf(x, c, p, v) ((x)->SetParamf((x),(c),(p),(v)))
137 #define ALfilter_SetParamfv(x, c, p, v) ((x)->SetParamfv((x),(c),(p),(v)))
139 #define ALfilter_GetParami(x, c, p, v) ((x)->GetParami((x),(c),(p),(v)))
140 #define ALfilter_GetParamiv(x, c, p, v) ((x)->GetParamiv((x),(c),(p),(v)))
141 #define ALfilter_GetParamf(x, c, p, v) ((x)->GetParamf((x),(c),(p),(v)))
142 #define ALfilter_GetParamfv(x, c, p, v) ((x)->GetParamfv((x),(c),(p),(v)))
144 inline void LockFiltersRead(ALCdevice
*device
)
145 { LockUIntMapRead(&device
->FilterMap
); }
146 inline void UnlockFiltersRead(ALCdevice
*device
)
147 { UnlockUIntMapRead(&device
->FilterMap
); }
148 inline void LockFiltersWrite(ALCdevice
*device
)
149 { LockUIntMapWrite(&device
->FilterMap
); }
150 inline void UnlockFiltersWrite(ALCdevice
*device
)
151 { UnlockUIntMapWrite(&device
->FilterMap
); }
153 inline struct ALfilter
*LookupFilter(ALCdevice
*device
, ALuint id
)
154 { return (struct ALfilter
*)LookupUIntMapKeyNoLock(&device
->FilterMap
, id
); }
155 inline struct ALfilter
*RemoveFilter(ALCdevice
*device
, ALuint id
)
156 { return (struct ALfilter
*)RemoveUIntMapKeyNoLock(&device
->FilterMap
, id
); }
158 ALvoid
ReleaseALFilters(ALCdevice
*device
);