- fixed data types git-svn-id: http://moon:8086/svn/software/trunk/libsrc/wav@959 b431acfa-c32f-4a4a-93f1-934dc6c82436
349 lines
8.8 KiB
C
Executable File
349 lines
8.8 KiB
C
Executable File
/******************************************************************************/
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/* Speicher, Laden und Erzeugen von WAV und PCM Dateien
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/*
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/* Datum : 27.03.2002
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/* Autor : Jens Ahrensfeld
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/* Datei : wav.c
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/*
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/******************************************************************************/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "wav.h"
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/******************************************************************************/
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/* C definitions
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/******************************************************************************/
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void WavInit(struct _sWAV *pObj, uint32_t nSamplesPerSec, uint16_t nBits, uint16_t nChannels, uint16_t format)
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{
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WavSetFormat(pObj, nSamplesPerSec, nBits, nChannels, format);
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pObj->m_FileType = FILETYPE_RAW;
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pObj->m_FileSize = 0;
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pObj->m_HeaderSize = 0;
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pObj->m_DataSize = 0;
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pObj->pHndWavFile = 0;
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pObj->m_numSamples = 0;
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}
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/******************************************************************************/
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uint32_t WavSetFormat(struct _sWAV *pObj, uint32_t nSamplesPerSec, uint16_t nBits, uint16_t nChannels, uint16_t format)
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{
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pObj->m_Format.wFormatTag = format;
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pObj->m_Format.nChannels = nChannels;
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pObj->m_Format.wBitsPerSample = nBits;
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pObj->m_Format.nBlockAlign = (nChannels * nBits)/ 8;
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pObj->m_Format.nSamplesPerSec = nSamplesPerSec;
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pObj->m_Format.nAvgBytesPerSec = (uint32_t)pObj->m_Format.nBlockAlign * nSamplesPerSec;
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pObj->m_Format.cbSize = 0;
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pObj->m_nChannels = pObj->m_Format.nChannels;
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pObj->m_SampleRate = pObj->m_Format.nSamplesPerSec;
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pObj->m_nBits = pObj->m_Format.wBitsPerSample;
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return 0;
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}
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/******************************************************************************/
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uint32_t WavOpen (struct _sWAV *pObj, char* FileName)
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{
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uint32_t stat;
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//Wav-File �ffnen
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strcpy(pObj->m_Name, FileName);
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if (strlen(FileName) < 1)
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return -1;
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pObj->pHndWavFile = fopen (pObj->m_Name,"rb");
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if (pObj->pHndWavFile == 0)
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return -1;
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stat=ReadHeader(pObj);
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if (stat != 0)
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{
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pObj->m_FileType = FILETYPE_RAW;
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fseek(pObj->pHndWavFile, 0L, SEEK_END);
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pObj->m_DataSize = ftell(pObj->pHndWavFile);
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pObj->m_FileSize = pObj->m_DataSize;
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pObj->m_numSamples = pObj->m_DataSize/pObj->m_Format.nBlockAlign;
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fseek(pObj->pHndWavFile, 0L, SEEK_SET);
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pObj->WREAD = 1;
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return 0;
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}
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pObj->m_numSamples = pObj->m_DataSize /pObj->m_Format.nBlockAlign;
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pObj->m_FileType = FILETYPE_WAV;
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pObj->WREAD = 1;
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return 0;
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}
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/******************************************************************************/
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uint32_t WavClose(struct _sWAV *pObj)
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{
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if (!pObj->WREAD && (pObj->m_FileType == FILETYPE_WAV))
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WriteHeader(pObj);
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fclose(pObj->pHndWavFile);
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return 0;
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}
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/******************************************************************************/
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uint32_t WavCreate (struct _sWAV *pObj, char *fileName, uint32_t fileType)
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{
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pObj->m_FileType = fileType;
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strcpy(pObj->m_Name, fileName);
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//Wav-File �ffnen
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pObj->pHndWavFile = fopen (pObj->m_Name,"wb");
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if (pObj->pHndWavFile == 0)
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return -1;
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pObj->WREAD = 0;
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if (pObj->m_FileType == FILETYPE_WAV)
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WriteHeader(pObj);
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return 0;
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}
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/******************************************************************************/
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uint32_t WavRead(struct _sWAV *pObj, void *data, uint32_t nSamples)
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{
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int32_t count;
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count = fread(data, pObj->m_Format.nBlockAlign, nSamples, pObj->pHndWavFile);
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return count;
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}
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/******************************************************************************/
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uint32_t WavWrite(struct _sWAV *pObj, void *data, uint32_t nSamples)
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{
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uint32_t count;
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fseek(pObj->pHndWavFile, 0L, SEEK_END);
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count = fwrite(data, pObj->m_Format.nBlockAlign, nSamples, pObj->pHndWavFile);
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pObj->m_DataSize = pObj->m_DataSize + count*pObj->m_Format.nBlockAlign;
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pObj->m_numSamples = count;
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pObj->m_FileSize = pObj->m_DataSize;
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if (pObj->m_FileType == FILETYPE_WAV)
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pObj->m_FileSize += pObj->m_HeaderSize + 20;
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return count;
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}
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/******************************************************************************/
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uint32_t ReadHeader (struct _sWAV *pObj)
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{
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char buf[80];
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int32_t err;
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// 1. 'RIFF' abpr�fen
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fread(buf, sizeof(char), 4,pObj->pHndWavFile);
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buf[4]=0;
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if (strcmp (buf,"RIFF"))
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return -1;
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// 2. FILESIZE ermitteln
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fread(&pObj->m_FileSize, sizeof(uint32_t), 1,pObj->pHndWavFile);
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// 3. 'WAVEfmt' abpr�fen
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fread(buf, sizeof(char), 8,pObj->pHndWavFile);
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buf[8]=0;
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if (strcmp (buf,"WAVEfmt "))
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return -1;
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// 3. HeaderSize ermitteln
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fread(&pObj->m_HeaderSize, sizeof(pObj->m_HeaderSize), 1,pObj->pHndWavFile);
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// 4. Den ganzen Infoblock einlesen
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fread(&pObj->m_Format, pObj->m_HeaderSize, 1,pObj->pHndWavFile);
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// 5. 'data' abpr�fen
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fseek(pObj->pHndWavFile,(int32_t)(pObj->m_HeaderSize+20), SEEK_SET);
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err = -1;
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do
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{
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fread(buf, sizeof(char), 4, pObj->pHndWavFile);
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buf[4]=0;
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// 6. Datenl�nge ermitteln
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fread(&pObj->m_DataSize, sizeof(pObj->m_DataSize), 1,pObj->pHndWavFile);
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if (!strcmp (buf,"data"))
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{
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err = 0;
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break;
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}
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fseek(pObj->pHndWavFile,(int32_t)(pObj->m_DataSize), SEEK_CUR);
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} while (!feof(pObj->pHndWavFile));
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pObj->m_nChannels = pObj->m_Format.nChannels;
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pObj->m_SampleRate = pObj->m_Format.nSamplesPerSec;
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pObj->m_nBits = pObj->m_Format.wBitsPerSample;
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return err;
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}
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/******************************************************************************/
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uint32_t WriteHeader (struct _sWAV *pObj)
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{
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pObj->m_HeaderSize = bs;
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pObj->m_FileSize = pObj->m_HeaderSize + pObj->m_DataSize + 20;
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fseek(pObj->pHndWavFile,0L, SEEK_SET);
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// 1. 'RIFF' schreiben
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fwrite("RIFF",sizeof(char), 4, pObj->pHndWavFile);
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// 2. FILESIZE schreiben
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fwrite(&pObj->m_FileSize, sizeof(pObj->m_FileSize), 1, pObj->pHndWavFile);
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// 3. 'WAVEfmt ' schreiben
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fwrite("WAVEfmt ", sizeof(char), 8, pObj->pHndWavFile);
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// 3. HeaderSize schreiben
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fwrite(&pObj->m_HeaderSize, sizeof(pObj->m_HeaderSize), 1, pObj->pHndWavFile);
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// 4. Infoblock schreiben
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fwrite(&pObj->m_Format, pObj->m_HeaderSize, 1, pObj->pHndWavFile);
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// 5. 'data' schreiben
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fseek(pObj->pHndWavFile, (int32_t)(pObj->m_HeaderSize+20), SEEK_SET);
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fwrite("data",sizeof(char), 4, pObj->pHndWavFile);
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// 6. Datenl�nge schreiben
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fwrite(&pObj->m_DataSize, sizeof(pObj->m_DataSize), 1, pObj->pHndWavFile);
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return 0;
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}
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/******************************************************************************/
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uint16_t WavGetnBits(struct _sWAV *pObj)
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{
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return pObj->m_Format.wBitsPerSample;
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}
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uint32_t WavGetRate(struct _sWAV *pObj)
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{
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return pObj->m_Format.nSamplesPerSec;
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}
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uint16_t WavGetnChannels(struct _sWAV *pObj)
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{
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return pObj->m_Format.nChannels;
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}
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char* WavGetFileName(struct _sWAV *pObj)
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{
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return pObj->m_Name;
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}
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void WavDeIlvd(struct _sWAV *pObj, int16_t *pIn, int16_t **ppOut, uint32_t len)
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{
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int j, nChannels;
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uint32_t i;
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nChannels = pObj->m_Format.nChannels;
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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ppOut[j][i] = *(pIn++);
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}
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}
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}
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void WavDeIlvdDouble(struct _sWAV *pObj, int16_t *pIn, double **ppOut, uint32_t len)
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{
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int j, nChannels, nBits;
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uint32_t i;
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double kNorm;
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nChannels = pObj->m_Format.nChannels;
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nBits = pObj->m_Format.wBitsPerSample;
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kNorm = 1.0/((1 << (nBits-1))-1);
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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ppOut[j][i] = (double)(*(pIn++) * kNorm);
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}
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}
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}
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void WavDeIlvdFloat(struct _sWAV *pObj, int16_t *pIn, float **ppOut, uint32_t len)
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{
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int j, nChannels, nBits;
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uint32_t i;
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float kNorm;
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nChannels = pObj->m_Format.nChannels;
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nBits = pObj->m_Format.wBitsPerSample;
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kNorm = 1.0f/((1 << (nBits-1))-1);
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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ppOut[j][i] = (float)(*(pIn++) * kNorm);
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}
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}
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}
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void WavIlvd(struct _sWAV *pObj, int16_t **ppIn, int16_t *pOut, uint32_t len)
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{
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int j, nChannels;
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uint32_t i;
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nChannels = pObj->m_Format.nChannels;
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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*(pOut++) = ppIn[j][i];
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}
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}
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}
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void WavIlvdDouble(struct _sWAV *pObj, double **ppIn, int16_t *pOut, uint32_t len)
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{
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int j, nChannels, nBits;
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double kNorm;
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uint32_t i;
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nChannels = pObj->m_Format.nChannels;
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nBits = pObj->m_Format.wBitsPerSample;
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kNorm = (1 << (nBits-1))-1;
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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*(pOut++) = (int16_t)(ppIn[j][i] * kNorm);
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}
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}
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}
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void WavIlvdFloat(struct _sWAV *pObj, float **ppIn, int16_t *pOut, uint32_t len)
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{
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int j, nChannels, nBits;
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float kNorm;
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uint32_t i;
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nChannels = pObj->m_Format.nChannels;
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nBits = pObj->m_Format.wBitsPerSample;
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kNorm = (float)(1 << (nBits-1))-1;
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for (i=0; i < len; i++)
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{
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for (j=0; j < nChannels; j++)
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{
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*(pOut++) = (int16_t)(ppIn[j][i] * kNorm);
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}
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}
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}
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