233 lines
6.0 KiB
C++
233 lines
6.0 KiB
C++
#include "main.h"
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#include "GainLayer.h"
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#include <malloc.h>
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#include <math.h>
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#include <locale.h>
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#include "api.h"
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static void FillFloat(float *floatBuf, void *samples, size_t bps, size_t numSamples, size_t numChannels, float preamp)
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{
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switch (bps)
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{
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case 8:
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{
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unsigned __int8 *samples8 = (unsigned __int8 *)samples;
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size_t totalSamples = numSamples * numChannels;
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for (size_t x = 0; x != totalSamples; x ++)
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{
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floatBuf[x] = (float)(samples8[x] - 128) * preamp;
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}
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}
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break;
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case 16:
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{
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short *samples16 = (short *)samples;
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size_t totalSamples = numSamples * numChannels;
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for (size_t x = 0; x != totalSamples; x ++)
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{
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floatBuf[x] = (float)samples16[x] * preamp;
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}
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}
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break;
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case 24:
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{
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unsigned __int8 *samples8 = (unsigned __int8 *)samples;
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size_t totalSamples = numSamples * numChannels;
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for (size_t x = 0; x != totalSamples; x ++)
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{
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long temp = (((long)samples8[0]) << 8);
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temp = temp | (((long)samples8[1]) << 16);
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temp = temp | (((long)samples8[2]) << 24);
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floatBuf[x] = (float)temp * preamp;
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samples8 += 3;
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}
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}
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break;
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}
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}
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inline static float fastclip(float x, const float a, const float b)
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{
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float x1 = (float)fabs (x - a);
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float x2 = (float)fabs (x - b);
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x = x1 + (a + b);
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x -= x2;
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x *= 0.5f;
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return (x);
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}
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#define PA_CLIP_( val, min, max )\
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{ val = ((val) < (min)) ? (min) : (((val) > (max)) ? (max) : (val)); }
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void Float32_To_Int16_Clip(
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void *destinationBuffer, signed int destinationStride,
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void *sourceBuffer, signed int sourceStride,
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unsigned int count)
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{
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float *src = (float*)sourceBuffer;
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signed short *dest = (signed short*)destinationBuffer;
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while ( count-- )
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{
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long samp = lrint(*src);
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PA_CLIP_( samp, -0x8000, 0x7FFF );
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*dest = (signed short) samp;
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src += sourceStride;
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dest += destinationStride;
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}
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}
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inline static void clip(double &x, double a, double b)
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{
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double x1 = fabs (x - a);
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double x2 = fabs (x - b);
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x = x1 + (a + b);
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x -= x2;
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x *= 0.5;
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}
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void Float32_To_Int24_Clip(
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void *destinationBuffer, signed int destinationStride,
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void *sourceBuffer, signed int sourceStride,
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unsigned int count)
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{
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float *src = (float*)sourceBuffer;
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unsigned char *dest = (unsigned char*)destinationBuffer;
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while ( count-- )
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{
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/* convert to 32 bit and drop the low 8 bits */
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double scaled = *src;
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clip( scaled, -2147483648., 2147483647. );
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signed long temp = (signed long) scaled;
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dest[0] = (unsigned char)(temp >> 8);
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dest[1] = (unsigned char)(temp >> 16);
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dest[2] = (unsigned char)(temp >> 24);
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src += sourceStride;
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dest += destinationStride * 3;
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}
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}
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static void FillSamples(void *samples, float *floatBuf, size_t bps, size_t numSamples, size_t numChannels)
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{
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switch (bps)
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{
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case 16:
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Float32_To_Int16_Clip(samples, 1, floatBuf, 1, numSamples*numChannels);
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break;
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case 24:
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Float32_To_Int24_Clip(samples, 1, floatBuf, 1, numSamples*numChannels);
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break;
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}
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}
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float GetGain(WMInformation *info, bool allowDefault)
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{
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if (AGAVE_API_CONFIG && AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain", false))
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{
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float dB = 0, peak = 1.0f;
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wchar_t gain[64]=L"", peakVal[64]=L"";
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switch (AGAVE_API_CONFIG->GetUnsigned(playbackConfigGroupGUID, L"replaygain_source", 0))
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{
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case 0: // track
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info->GetAttribute(L"replaygain_track_gain", gain, 64);
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if (!gain[0] && !AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain_preferred_only", false))
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info->GetAttribute(L"replaygain_album_gain", gain, 64);
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info->GetAttribute(L"replaygain_track_peak", peakVal, 64);
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if (!peakVal[0] && !AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain_preferred_only", false))
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info->GetAttribute(L"replaygain_album_peak", peakVal, 64);
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break;
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case 1:
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info->GetAttribute(L"replaygain_album_gain", gain, 64);
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if (!gain[0] && !AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain_preferred_only", false))
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info->GetAttribute(L"replaygain_track_gain", gain, 64);
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info->GetAttribute(L"replaygain_album_peak", peakVal, 64);
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if (!peakVal[0] && !AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain_preferred_only", false))
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info->GetAttribute(L"replaygain_track_peak", peakVal, 64);
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break;
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}
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_locale_t C_locale = WASABI_API_LNG->Get_C_NumericLocale();
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if (gain[0])
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{
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if (gain[0] == L'+')
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dB = static_cast<float>(_wtof_l(&gain[1],C_locale));
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else
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dB = static_cast<float>(_wtof_l(gain,C_locale));
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}
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else if (allowDefault)
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{
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dB = AGAVE_API_CONFIG->GetFloat(playbackConfigGroupGUID, L"non_replaygain", -6.0);
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return powf(10.0f, dB / 20.0f);
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}
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if (peakVal[0])
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{
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peak = static_cast<float>(_wtof_l(peakVal,C_locale));
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}
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switch (AGAVE_API_CONFIG->GetUnsigned(playbackConfigGroupGUID, L"replaygain_mode", 1))
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{
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case 0: // apply gain
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return powf(10.0f, dB / 20.0f);
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case 1: // apply gain, but don't clip
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return min(powf(10.0f, dB / 20.0f), 1.0f / peak);
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case 2: // normalize
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return 1.0f / peak;
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case 3: // prevent clipping
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if (peak > 1.0f)
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return 1.0f / peak;
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else
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return 1.0f;
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}
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}
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return 1.0f; // no gain
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}
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void GainLayer::AudioDataReceived(void *_data, unsigned long sizeBytes, DWORD timestamp)
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{
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if (enabled)
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{
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size_t samples = audio->AudioBytesToSamples(sizeBytes);
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int channels = audio->Channels();
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if (floatSize < (samples * channels))
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{
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delete [] floatData;
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floatSize = samples * channels;
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floatData = new float[floatSize];
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}
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if (outSize < sizeBytes)
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{
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delete [] outData;
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outSize=sizeBytes;
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outData = (void *)new __int8[sizeBytes];
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}
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FillFloat(floatData, _data, audio->BitSize(), samples , channels, replayGain);
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FillSamples(outData, floatData, audio->BitSize(), samples , channels);
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WMHandler::AudioDataReceived(outData, sizeBytes, timestamp);
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}
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else
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WMHandler::AudioDataReceived(_data, sizeBytes, timestamp);
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}
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void GainLayer::Opened()
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{
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enabled= (AGAVE_API_CONFIG && AGAVE_API_CONFIG->GetBool(playbackConfigGroupGUID, L"replaygain", false));
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if (enabled)
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replayGain = GetGain(info, true);
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WMHandler::Opened();
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}
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