371 lines
10 KiB
C++
371 lines
10 KiB
C++
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#include "main.h"
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#include <math.h>
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#include "../ReplayGainAnalysis/gain_analysis.h"
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#include "api__ml_rg.h"
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#include <shlwapi.h>
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#include <strsafe.h>
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#include <locale.h>
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#pragma intrinsic(fabs)
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static inline float fastmax(float x, float a)
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{
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x -= a;
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x += (float)fabs(x);
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x *= 0.5f;
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x += a;
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return (x);
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}
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static HMODULE rgLib = 0;
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typedef int(*INITGAINANALYSIS)(void *context, long samplefreq);
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static INITGAINANALYSIS InitGainAnalysis = 0;
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typedef int(*ANALYZESAMPLES)(void *context, const float * left_samples, const float * right_samples, size_t num_samples, int num_channels);
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static ANALYZESAMPLES AnalyzeSamples = 0;
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typedef int(*RESETSAMPLEFREQUENCY)(void *context, long samplefreq);
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static RESETSAMPLEFREQUENCY ResetSampleFrequency = 0;
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typedef float(*GETTITLEGAIN)(void *context);
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static GETTITLEGAIN GetTitleGain = 0;
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typedef float(*GETALBUMGAIN)(void *context);
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static GETALBUMGAIN GetAlbumGain = 0;
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typedef void *(* CREATERGCONTEXT)();
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static CREATERGCONTEXT CreateRGContext = 0;
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typedef void(*FREERGCONTEXT)(void *context);
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static FREERGCONTEXT FreeRGContext = 0;
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void LoadRG()
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{
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if (rgLib)
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return ;
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wchar_t path[MAX_PATH] = {0};
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PathCombineW(path, (wchar_t*)SendMessage(plugin.hwndWinampParent, WM_WA_IPC, 0, IPC_GETSHAREDDLLDIRECTORYW), L"ReplayGainAnalysis.dll");
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rgLib = LoadLibraryW(path);
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if (rgLib)
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{
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InitGainAnalysis = (INITGAINANALYSIS)GetProcAddress(rgLib, "WAInitGainAnalysis");
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AnalyzeSamples = (ANALYZESAMPLES)GetProcAddress(rgLib, "WAAnalyzeSamples");
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GetTitleGain = (GETTITLEGAIN)GetProcAddress(rgLib, "WAGetTitleGain");
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ResetSampleFrequency = (RESETSAMPLEFREQUENCY)GetProcAddress(rgLib, "WAResetSampleFrequency");
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GetAlbumGain = (GETALBUMGAIN)GetProcAddress(rgLib, "WAGetAlbumGain");
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CreateRGContext = (CREATERGCONTEXT)GetProcAddress(rgLib, "WACreateRGContext");
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FreeRGContext = (FREERGCONTEXT)GetProcAddress(rgLib, "WAFreeRGContext");
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}
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}
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void *CreateRG()
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{
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LoadRG();
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return CreateRGContext();
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}
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void DestroyRG(void *context)
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{
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FreeRGContext(context);
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}
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#define CHUNKSIZE 16384
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static void CalculateRG_float(void *context, ifc_audiostream *decoder, AudioParameters *parameters, wchar_t track_gain[64], wchar_t track_peak[64], ProgressCallback *callback, int *killSwitch, float &albumPeak)
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{
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float data[2*CHUNKSIZE] = {0};
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float right[CHUNKSIZE] = {0};
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float peak = 0;
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if (parameters->channels > 2)
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{
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char titleStr[32] = {0};
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MessageBoxA(GetDialogBoxParent(),
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WASABI_API_LNGSTRING(IDS_TOO_MANY_CHANNELS),
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WASABI_API_LNGSTRING_BUF(IDS_REPLAYGAIN,titleStr,32),
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MB_OK);
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decodeFile->CloseAudio(decoder);
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return ;
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}
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ResetSampleFrequency(context, parameters->sampleRate);
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if (callback) callback->InformSize((parameters->sizeBytes == -1) ? 0 : parameters->sizeBytes);
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while (1)
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{
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if (*killSwitch)
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{
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decodeFile->CloseAudio(decoder);
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return ;
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}
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int error=0;
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size_t bytesRead = decoder->ReadAudio((void *)data, sizeof(data), killSwitch, &error);
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if (*killSwitch)
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{
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decodeFile->CloseAudio(decoder);
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return ;
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}
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else if (error)
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{
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break;
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}
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if (callback) callback->Progress(bytesRead);
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size_t samples = bytesRead / sizeof(*data);
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if (!samples)
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break;
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for (size_t i = 0;i != samples;i++)
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{
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peak = fastmax(peak, (float)fabs(data[i]));
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data[i] *= 32768.0f;
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}
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albumPeak = fastmax(peak, albumPeak);
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if (parameters->channels == 1)
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AnalyzeSamples(context, data, NULL, samples, 1);
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else
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{
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size_t samples2 = samples / 2;
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for (size_t i = 0;i != samples2;i++)
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{
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data[i] = data[i * 2];
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right[i] = data[i * 2 + 1];
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}
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AnalyzeSamples(context, data, right, samples2, 2);
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}
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}
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decodeFile->CloseAudio(decoder);
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float gain = GetTitleGain(context);
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if (gain != GAIN_NOT_ENOUGH_SAMPLES)
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{
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_locale_t C_locale = WASABI_API_LNG->Get_C_NumericLocale();
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_snwprintf_l(track_gain, 64, L"%-+.2f dB", C_locale, gain);
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_snwprintf_l(track_peak, 64, L"%-.9f", C_locale, peak);
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}
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}
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static void FillFloat(float *left, float *right, void *samples, size_t bps, size_t numSamples, size_t numChannels, float &peak, float &albumPeak, float gain)
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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 t = 0;
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for (size_t x = 0; x != numSamples; x ++)
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{
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left[x] = (float)(samples8[t++] - 128) * 256.0f * gain;
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if (numChannels == 2)
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{
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right[x] = (float)(samples8[t++] - 128) * 256.0f* gain;
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}
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else
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right[x] = left[x];
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peak = fastmax(peak, (float)fabs(left[x]));
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peak = fastmax(peak, (float)fabs(right[x]));
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albumPeak=fastmax(albumPeak, peak);
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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 t = 0;
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if (numChannels == 1)
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{
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for (size_t x = 0; x != numSamples; x ++)
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{
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left[x] = (float)samples16[t++] * gain;
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right[x] = left[x];
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peak = fastmax(peak, (float)fabs(left[x]));
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albumPeak=fastmax(albumPeak, peak);
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}
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}
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else if (numChannels == 2)
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{
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for (size_t x = 0; x != numSamples; x ++)
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{
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left[x] = (float)samples16[t++] * gain ;
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right[x] = (float)samples16[t++] * gain;
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peak = fastmax(peak, (float)fabs(left[x]));
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peak = fastmax(peak, (float)fabs(right[x]));
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albumPeak=fastmax(albumPeak, peak);
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}
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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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for (size_t x = 0; x != numSamples; 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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left[x] = (float)temp* gain / 65536.0f;
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samples8 += 3;
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if (numChannels == 2)
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{
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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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right[x] = (float)temp* gain / 65536.0f;
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samples8 += 3;
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}
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else
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right[x] = left[x];
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peak = fastmax(peak, (float)fabs(left[x]));
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peak = fastmax(peak, (float)fabs(right[x]));
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albumPeak=fastmax(albumPeak, peak);
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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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#undef CHUNKSIZE
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#define CHUNKSIZE 4096
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static void CalculateRG_pcm(void *context, ifc_audiostream *decoder, AudioParameters *parameters, wchar_t track_gain[64], wchar_t track_peak[64], ProgressCallback *callback, int *killSwitch, float &albumPeak)
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{
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char data[4*2*CHUNKSIZE] = {0};
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float left[CHUNKSIZE] = {0};
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float right[CHUNKSIZE] = {0};
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float peak = 0;
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if (parameters->channels > 2)
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{
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char titleStr[32];
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MessageBoxA(GetDialogBoxParent(),
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WASABI_API_LNGSTRING(IDS_TOO_MANY_CHANNELS),
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WASABI_API_LNGSTRING_BUF(IDS_REPLAYGAIN,titleStr,32),
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MB_OK);
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decodeFile->CloseAudio(decoder);
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return ;
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}
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int padded_bits = (parameters->bitsPerSample + 7) & (~7);
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albumPeak *= 32768.0f;
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ResetSampleFrequency(context, parameters->sampleRate);
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if (callback) callback->InformSize((parameters->sizeBytes == -1) ? 0 : parameters->sizeBytes);
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while (1)
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{
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if (*killSwitch)
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{
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decodeFile->CloseAudio(decoder);
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return ;
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}
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int error=0;
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size_t bytesRead = decoder->ReadAudio((void *)data, 4096 * parameters->channels * (padded_bits / 8), killSwitch, &error);
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if (*killSwitch)
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{
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decodeFile->CloseAudio(decoder);
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return ;
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}
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else if (error)
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{
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break;
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}
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if (callback) callback->Progress(bytesRead);
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size_t samples = bytesRead / (padded_bits / 8);
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if (!samples)
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break;
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FillFloat(left, right, data, padded_bits, samples / parameters->channels, parameters->channels, peak, albumPeak, (float)pow(2., (double)(padded_bits - parameters->bitsPerSample)));
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size_t samples2 = samples / 2;
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AnalyzeSamples(context, left, right, samples2, 2);
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}
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decodeFile->CloseAudio(decoder);
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float gain = GetTitleGain(context);
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if (gain != GAIN_NOT_ENOUGH_SAMPLES)
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{
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StringCchPrintfW(track_gain, 64, L"%-+.2f dB", gain);
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StringCchPrintfW(track_peak, 64, L"%-.9f", peak / 32768.0f);
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}
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albumPeak /= 32768.0f;
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}
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void CalculateRG(void *context, const wchar_t *filename, wchar_t track_gain[64], wchar_t track_peak[64], ProgressCallback *callback, int *killSwitch, float &albumPeak)
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{
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LoadRG();
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if (!rgLib)
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{
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char titleStr[32] = {0};
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MessageBoxA(GetDialogBoxParent(),
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WASABI_API_LNGSTRING(IDS_NOT_ABLE_TO_OPEN_RG_DLL),
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WASABI_API_LNGSTRING_BUF(IDS_REPLAYGAIN,titleStr,32),
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MB_OK);
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return ;
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}
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wchar_t dummy[64] = {0};
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if (!GetFileInfo(filename, L"replaygain_track_gain", dummy, 64)) // check if the plugin even supports replaygain
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return ;
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/*
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TODO: want to do something like this, but have to do it on the main thread (ugh)
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if (!_wcsnicmp(dummy, "-24601", 6))
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{
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SetFileInfo(itr->filename, L"replaygain_track_gain", L"");
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SetFileInfo(itr->filename, L"replaygain_track_peak", L"");
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SetFileInfo(itr->filename, L"replaygain_album_gain", L"");
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SetFileInfo(itr->filename, L"replaygain_album_peak", L"");
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WriteFileInfo();
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}
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*/
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AudioParameters parameters;
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parameters.flags = AUDIOPARAMETERS_FLOAT | AUDIOPARAMETERS_MAXCHANNELS | AUDIOPARAMETERS_MAXSAMPLERATE;
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parameters.channels = 2;
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parameters.sampleRate = 192000;
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ifc_audiostream *decoder = decodeFile->OpenAudioBackground(filename, ¶meters);
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if (decoder)
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CalculateRG_float(context, decoder, ¶meters, track_gain, track_peak, callback, killSwitch, albumPeak);
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else
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{
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// try PCM
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memset(¶meters, 0, sizeof(AudioParameters));
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parameters.flags = AUDIOPARAMETERS_MAXCHANNELS | AUDIOPARAMETERS_MAXSAMPLERATE;
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parameters.channels = 2;
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parameters.sampleRate = 192000;
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ifc_audiostream *decoder = decodeFile->OpenAudioBackground(filename, ¶meters);
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if (decoder)
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CalculateRG_pcm(context, decoder, ¶meters, track_gain, track_peak, callback, killSwitch, albumPeak);
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}
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}
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void CalculateAlbumRG(void *context, wchar_t album_gain[64], wchar_t album_peak[64], float &albumPeak)
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{
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float gain = GetAlbumGain(context);
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if (gain != GAIN_NOT_ENOUGH_SAMPLES)
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{
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/*StringCchPrintfW(album_gain, 64, L"%-+.2f dB", gain);
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StringCchPrintfW(album_peak, 64, L"%-.9f", albumPeak);*/
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_locale_t C_locale = WASABI_API_LNG->Get_C_NumericLocale();
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_snwprintf_l(album_gain, 64, L"%-+.2f dB", C_locale, gain);
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_snwprintf_l(album_peak, 64, L"%-.9f", C_locale, albumPeak);
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}
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}
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void StartRG(void *context)
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{
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LoadRG();
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if (!rgLib)
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{
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char titleStr[32] = {0};
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MessageBoxA(GetDialogBoxParent(),
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WASABI_API_LNGSTRING(IDS_NOT_ABLE_TO_OPEN_RG_DLL),
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WASABI_API_LNGSTRING_BUF(IDS_REPLAYGAIN,titleStr,32),
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MB_OK);
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return ;
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}
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InitGainAnalysis(context, 44100); // since this is most common. We'll reset it before doing a real calculation anyway
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}
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