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-rw-r--r--Alc/hrtf.c12
1 files changed, 6 insertions, 6 deletions
diff --git a/Alc/hrtf.c b/Alc/hrtf.c
index 0185a113..cd413ccd 100644
--- a/Alc/hrtf.c
+++ b/Alc/hrtf.c
@@ -70,7 +70,7 @@ static void CalcAzIndices(ALuint evidx, ALfloat az, ALuint *azidx, ALfloat *azmu
az = (F_PI*2.0f + az) * azCount[evidx] / (F_PI*2.0f);
azidx[0] = fastf2u(az) % azCount[evidx];
azidx[1] = (azidx[0] + 1) % azCount[evidx];
- *azmu = az - aluFloor(az);
+ *azmu = az - floorf(az);
}
// Calculates the normalized HRTF transition factor (delta) from the changes
@@ -84,7 +84,7 @@ ALfloat CalcHrtfDelta(ALfloat oldGain, ALfloat newGain, const ALfloat olddir[3],
// Calculate the normalized dB gain change.
newGain = maxf(newGain, 0.0001f);
oldGain = maxf(oldGain, 0.0001f);
- gainChange = aluFabs(aluLog10(newGain / oldGain) / aluLog10(0.0001f));
+ gainChange = fabsf(log10f(newGain / oldGain) / log10f(0.0001f));
// Calculate the normalized listener to source angle change when there is
// enough gain to notice it.
@@ -94,9 +94,9 @@ ALfloat CalcHrtfDelta(ALfloat oldGain, ALfloat newGain, const ALfloat olddir[3],
// No angle change when the directions are equal or degenerate (when
// both have zero length).
if(newdir[0]-olddir[0] || newdir[1]-olddir[1] || newdir[2]-olddir[2])
- angleChange = aluAcos(olddir[0]*newdir[0] +
- olddir[1]*newdir[1] +
- olddir[2]*newdir[2]) / F_PI;
+ angleChange = acosf(olddir[0]*newdir[0] +
+ olddir[1]*newdir[1] +
+ olddir[2]*newdir[2]) / F_PI;
}
@@ -217,7 +217,7 @@ ALuint GetMovingHrtfCoeffs(const struct Hrtf *Hrtf, ALfloat elevation, ALfloat a
ridx[3] = evOffset[evidx[1]] + ((azCount[evidx[1]]-azidx[1]) % azCount[evidx[1]]);
// Calculate the stepping parameters.
- delta = maxf(aluFloor(delta*(Hrtf->sampleRate*0.015f) + 0.5f), 1.0f);
+ delta = maxf(floorf(delta*(Hrtf->sampleRate*0.015f) + 0.5f), 1.0f);
step = 1.0f / delta;
// Calculate the normalized and attenuated target HRIR coefficients using