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// Copyright (c) 2006-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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// e32test\multimedia\t_soundwav.cpp
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// Record wav to a file "t_soundwav filename [rate] [channels] [seconds]" where filename does not exist.
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// Play a wav file "t_soundwav filename" where filename exists.
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//
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//
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/**
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@file Shared chunk sound driver WAV file player and recorder utility.
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*/
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#include <e32test.h>
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#include <e32def.h>
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#include <e32def_private.h>
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#include "t_soundutils.h"
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#include <f32file.h>
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#define CHECK(aValue) {Test(aValue);}
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#define CHECK_NOERROR(aValue) { TInt v=(aValue); if(v) { Test.Printf(_L("Error value = %d\n"),v); Test(EFalse,__LINE__); }}
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#define CHECK_EQUAL(aValue1,aValue2) { TInt v1=(aValue1); TInt v2=(aValue2); if(v1!=v2) { Test.Printf(_L("Error value = %d\n"),v1); Test(EFalse,__LINE__); }}
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_LIT(KSndLddFileName,"ESOUNDSC.LDD");
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_LIT(KSndPddFileName,"SOUNDSC.PDD");
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RTest Test(_L("T_SOUNDWAV"));
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RSoundSc TxSoundDevice;
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RSoundSc RxSoundDevice;
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TSoundFormatsSupportedV02Buf RecordCapsBuf;
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TSoundFormatsSupportedV02Buf PlayCapsBuf;
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TCurrentSoundFormatV02Buf PlayFormatBuf;
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TCurrentSoundFormatV02Buf RecordFormatBuf;
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TBuf<256> CommandLine;
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RFs Fs;
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//
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// This is the WAV header structure used for playing and recording files
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//
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struct WAVEheader
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{
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char ckID[4]; // chunk id 'RIFF'
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TUint32 ckSize; // chunk size
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char wave_ckID[4]; // wave chunk id 'WAVE'
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char fmt_ckID[4]; // format chunk id 'fmt '
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TUint32 fmt_ckSize; // format chunk size
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TUint16 formatTag; // format tag currently pcm
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TUint16 nChannels; // number of channels
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TUint32 nSamplesPerSec; // sample rate in hz
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TUint32 nAvgBytesPerSec; // average bytes per second
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TUint16 nBlockAlign; // number of bytes per sample
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TUint16 nBitsPerSample; // number of bits in a sample
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char data_ckID[4]; // data chunk id 'data'
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TUint32 data_ckSize; // length of data chunk
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};
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LOCAL_C TInt SamplesPerSecondToRate(TInt aRateInSamplesPerSecond,TSoundRate& aRate)
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{
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switch (aRateInSamplesPerSecond)
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{
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case 7350: aRate=ESoundRate7350Hz; break;
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case 8000: aRate=ESoundRate8000Hz; break;
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case 8820: aRate=ESoundRate8820Hz; break;
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case 9600: aRate=ESoundRate9600Hz; break;
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case 11025: aRate=ESoundRate11025Hz; break;
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case 12000: aRate=ESoundRate12000Hz; break;
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case 14700: aRate=ESoundRate14700Hz; break;
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case 16000: aRate=ESoundRate16000Hz; break;
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case 22050: aRate=ESoundRate22050Hz; break;
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case 24000: aRate=ESoundRate24000Hz; break;
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case 29400: aRate=ESoundRate29400Hz; break;
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case 32000: aRate=ESoundRate32000Hz; break;
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case 44100: aRate=ESoundRate44100Hz; break;
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case 48000: aRate=ESoundRate48000Hz; break;
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default: return(KErrArgument);
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};
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return(KErrNone);
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}
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LOCAL_C TInt RecordBufferSizeInBytes(TCurrentSoundFormatV02& aFormat)
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{
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switch (aFormat.iRate)
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{
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case ESoundRate7350Hz: return(8192);
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case ESoundRate8000Hz: return(8192);
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case ESoundRate8820Hz: return(12288);
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case ESoundRate9600Hz: return(12288);
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case ESoundRate11025Hz: return(12288);
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case ESoundRate12000Hz: return(12288);
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case ESoundRate14700Hz: return(12288);
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case ESoundRate16000Hz: return(12288);
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case ESoundRate22050Hz: return(16384);
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case ESoundRate24000Hz: return(16384);
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case ESoundRate29400Hz: return(24576);
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case ESoundRate32000Hz: return(24576);
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case ESoundRate44100Hz: return(32768);
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case ESoundRate48000Hz: return(32768);
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default: return(32768);
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};
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}
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LOCAL_C TInt Load()
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{
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TInt r;
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Test.Start(_L("Load sound PDD"));
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r=User::LoadPhysicalDevice(KSndPddFileName);
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if (r==KErrNotFound)
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{
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Test.End();
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return(r);
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}
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CHECK(r==KErrNone || r==KErrAlreadyExists);
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Test.Next(_L("Load sound LDD"));
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r=User::LoadLogicalDevice(KSndLddFileName);
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CHECK(r==KErrNone || r==KErrAlreadyExists);
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Test.End();
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return(KErrNone);
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}
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LOCAL_C TInt WavPlay()
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{
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RChunk chunk;
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// Parse the commandline and get a filename to use
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TLex l(CommandLine);
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TFileName thisfile=RProcess().FileName();
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TPtrC token=l.NextToken();
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if (token.MatchF(thisfile)==0)
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token.Set(l.NextToken());
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if (token.Length()==0)
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{
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// No args, skip to end
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Test.Printf(_L("Invalid configuration\r\n"));
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return(KErrArgument);
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}
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Test.Next(_L("Play Wav file"));
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// Assume that the argument is a WAV filename
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TFileName wavFilename=token;
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TInt r;
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RFile source;
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r = source.Open(Fs,wavFilename,EFileRead);
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if (r!=KErrNone)
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{
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Test.Printf(_L("Open failed(%d)\r\n"), r);
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return(r);
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}
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// Read the pcm header
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WAVEheader header;
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TPtr8 headerDes((TUint8 *)&header,sizeof(struct WAVEheader),sizeof(struct WAVEheader));
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r = source.Read(headerDes);
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if (r!=KErrNone)
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{
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source.Close();
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return(r);
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}
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Test.Printf(_L("Header Read %d bytes\r\n"),headerDes.Size());
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if (headerDes.Size() != sizeof(struct WAVEheader)) // EOF
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{
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Test.Printf(_L("Couldn't read a header(%d bytes)\r\n"),headerDes.Size());
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source.Close();
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return(KErrCorrupt);
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}
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Test.Printf(_L("Header rate:%d channels:%d tag:%d bits:%d (%d bytes/s) align %d datalen:%d fmt_ckSize:%d ckSize:%d\n"),
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header.nSamplesPerSec, header.nChannels, header.formatTag, header.nBitsPerSample,
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header.nAvgBytesPerSec, header.nBlockAlign, header.data_ckSize, header.fmt_ckSize, header.ckSize);
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if (header.formatTag != 1) // not pcm
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{
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Test.Printf(_L("Format not PCM(%d)\r\n"),header.formatTag);
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source.Close();
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return(KErrNotSupported);
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}
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if (header.nBitsPerSample != 16) // not 16 bit
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{
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Test.Printf(_L("Format not 16 bit PCM(%d bits)\r\n"),header.nBitsPerSample);
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source.Close();
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return(KErrNotSupported);
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}
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TSoundRate rate;
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if (SamplesPerSecondToRate(header.nSamplesPerSec,rate)!=KErrNone)
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{
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Test.Printf(_L("Format specifies a rate not supported(%d)\r\n"),header.nSamplesPerSec);
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source.Close();
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return(KErrNotSupported);
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}
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TxSoundDevice.AudioFormat(PlayFormatBuf); // Read back the current setting which must be valid.
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PlayFormatBuf().iChannels = header.nChannels;
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PlayFormatBuf().iRate = rate;
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PlayFormatBuf().iEncoding = ESoundEncoding16BitPCM;
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// Set the play buffer configuration.
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TInt bufSize=BytesPerSecond(PlayFormatBuf())/8; // Large enough to hold 1/8th second of data.
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bufSize&=~(header.nBlockAlign-1); // Keep the buffer length a multiple of the bytes per sample (assumes 16bitPCM, 1 or 2 chans).
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if (PlayCapsBuf().iRequestMinSize)
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bufSize&=~(PlayCapsBuf().iRequestMinSize-1); // Keep the buffer length valid for the driver.
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TTestSharedChunkBufConfig bufferConfig;
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bufferConfig.iNumBuffers=3;
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bufferConfig.iBufferSizeInBytes=bufSize;
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bufferConfig.iFlags=0;
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PrintBufferConf(bufferConfig,Test);
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TPckg<TTestSharedChunkBufConfig> bufferConfigBuf(bufferConfig);
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r=TxSoundDevice.SetBufferChunkCreate(bufferConfigBuf,chunk);
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if (r!=KErrNone)
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{
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Test.Printf(_L("Buffer configuration not supported(%d)\r\n"),r);
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source.Close();
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return(r);
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}
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TxSoundDevice.GetBufferConfig(bufferConfigBuf); // Read back the configuration - to get the buffer offsets
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CHECK(bufferConfig.iBufferSizeInBytes==bufSize);
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// Set the audio play configuration.
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TxSoundDevice.SetVolume(KSoundMaxVolume - (KSoundMaxVolume / 4)); // set volume to 75%
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PrintConfig(PlayFormatBuf(),Test);
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r=TxSoundDevice.SetAudioFormat(PlayFormatBuf);
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if (r!=KErrNone)
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{
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Test.Printf(_L("Format not supported\r\n"));
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source.Close();
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chunk.Close();
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return(r);
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}
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TxSoundDevice.ResetBytesTransferred();
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TInt32 bytesToPlay = header.data_ckSize;
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TTime starttime;
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starttime.HomeTime();
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TRequestStatus stat[3];
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TPtr8* tPtr[3];
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TInt i;
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for (i=0;i<3;i++)
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tPtr[i]=new TPtr8(NULL,0);
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// Start off by issuing a play request for each buffer (assuming that the file is long enough). Use the full size
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// of each buffer.
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TInt stillToRead=bytesToPlay;
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TInt stillNotPlayed=bytesToPlay;
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TUint flags;
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for (i=0 ; i<3 ; i++)
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{
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// Setup the descriptor for reading in the data from the file.
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tPtr[i]->Set(chunk.Base()+bufferConfig.iBufferOffsetList[i],0,bufSize);
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// If there is still data to read to play then read this into the descriptor
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// and then write it to the driver.
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if (stillToRead)
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{
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r=source.Read(*tPtr[i],Min(stillToRead,bufSize));
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if (r!=KErrNone)
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{
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Test.Printf(_L("Initial file read error(%d)\r\n"),r);
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source.Close();
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chunk.Close();
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return(r);
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}
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stillToRead-=tPtr[i]->Length();
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flags=(stillToRead>0)?0:KSndFlagLastSample;
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TxSoundDevice.PlayData(stat[i],bufferConfig.iBufferOffsetList[i],tPtr[i]->Length(),flags);
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}
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else
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stat[i]=KRequestPending;
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}
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FOREVER
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{
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// Wait for any one of the outstanding play requests to complete.
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User::WaitForAnyRequest();
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// Work out which buffer this applies to
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for (i=0 ; i<3 ; i++)
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{
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if (stat[i]!=KRequestPending)
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break;
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}
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if (i>=3)
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{
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Test.Printf(_L("I/O error\r\n"));
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source.Close();
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chunk.Close();
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return(KErrGeneral);
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}
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// Check that the transfer was succesful and whether we have now played all the file.
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if (stat[i]!=KErrNone)
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{
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Test.Printf(_L("Play error(%d)\r\n"),stat[i].Int());
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source.Close();
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chunk.Close();
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return(stat[i].Int());
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}
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Test.Printf(_L("Played %d bytes(%d) - %d\r\n"),tPtr[i]->Length(),i,stat[i].Int());
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stillNotPlayed-=tPtr[i]->Length();
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CHECK(stillNotPlayed>=0);
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if (!stillNotPlayed)
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break;
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// Still more to be played so read the next part of the file into the descriptor for this
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// buffer and then write it to the driver.
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if (stillToRead)
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{
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TInt len=Min(stillToRead,bufSize);
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// If we've got to the end of the file and the driver is particular about the request length then
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// zero fill the entire buffer so we can play extra zeros after the last sample from the file.
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if (len<bufSize && PlayCapsBuf().iRequestMinSize)
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tPtr[i]->FillZ(bufSize);
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// Read the next part of the file
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r=source.Read(*tPtr[i],len); // This will alter the length of the descriptor
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if (r!=KErrNone)
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{
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Test.Printf(_L("File read error(%d)\r\n"),r);
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source.Close();
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chunk.Close();
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return(r);
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}
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stillToRead-=tPtr[i]->Length();
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// If we've got to the end of the file and the driver is particular about the request length then
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// round up the length to the next valid boundary. This is OK since we zero filled.
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if (tPtr[i]->Length() < bufSize && PlayCapsBuf().iRequestMinSize)
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{
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TUint m=PlayCapsBuf().iRequestMinSize-1;
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len=(tPtr[i]->Length() + m) & ~m;
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}
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// Write it to the driver.
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flags=(stillToRead>0)?0:KSndFlagLastSample;
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TxSoundDevice.PlayData(stat[i],bufferConfig.iBufferOffsetList[i],len,flags);
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}
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else
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stat[i]=KRequestPending;
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}
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// Delete all the variables again.
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for (i=0 ; i<3 ; i++)
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delete tPtr[i];
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TTime endtime;
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endtime.HomeTime();
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Test.Printf(_L("Done playing\r\n"));
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Test.Printf(_L("Bytes played = %d\r\n"),TxSoundDevice.BytesTransferred());
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Test.Printf(_L("Delta time = %d\r\n"),endtime.Int64()-starttime.Int64());
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chunk.Close();
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source.Close();
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return(KErrNone);
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}
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LOCAL_C TInt WavRecord()
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{
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// Parse the commandline and get a filename to use
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TLex l(CommandLine);
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TParse destinationName;
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if (destinationName.SetNoWild(l.NextToken(),0,0)!=KErrNone)
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{
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Test.Printf(_L("No arg, skipping\r\n"));
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return(KErrArgument);
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}
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Test.Next(_L("Record Wav file"));
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// Open the file for writing
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TInt r;
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RFile destination;
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r = destination.Replace(Fs,destinationName.FullName(),EFileWrite);
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if (r!=KErrNone)
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{
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|
394 |
Test.Printf(_L("Open file for write failed(%d)\n"), r);
|
|
395 |
return(r);
|
|
396 |
}
|
|
397 |
Test.Printf(_L("File opened for write\r\n"));
|
|
398 |
|
|
399 |
Test.Next(_L("Preparing to record"));
|
|
400 |
|
|
401 |
// Get the rate
|
|
402 |
TLex cl(l.NextToken());
|
|
403 |
TUint32 tmpRate;
|
|
404 |
TSoundRate rate;
|
|
405 |
r = cl.Val(tmpRate,EDecimal);
|
|
406 |
if (r == KErrNone && (r=SamplesPerSecondToRate(tmpRate,rate))==KErrNone)
|
|
407 |
{
|
|
408 |
Test.Printf(_L("Parsed rate: %d\r\n"), tmpRate);
|
|
409 |
RecordFormatBuf().iRate = rate;
|
|
410 |
}
|
|
411 |
else
|
|
412 |
{
|
|
413 |
Test.Printf(_L("Parse rate failed(%d)\r\n"),r);
|
|
414 |
RecordFormatBuf().iRate = ESoundRate32000Hz;
|
|
415 |
}
|
|
416 |
|
|
417 |
// Get number of channels
|
|
418 |
TLex cl_chan(l.NextToken());
|
|
419 |
TUint32 tmpChannels;
|
|
420 |
r = cl_chan.Val(tmpChannels,EDecimal);
|
|
421 |
if (r == KErrNone)
|
|
422 |
{
|
|
423 |
Test.Printf(_L("Parsed %d channels\r\n"),tmpChannels);
|
|
424 |
RecordFormatBuf().iChannels = tmpChannels;
|
|
425 |
}
|
|
426 |
else
|
|
427 |
{
|
|
428 |
Test.Printf(_L("Parse channels failed(%d)\r\n"), r);
|
|
429 |
RecordFormatBuf().iChannels = 2;
|
|
430 |
}
|
|
431 |
|
|
432 |
RecordFormatBuf().iEncoding = ESoundEncoding16BitPCM;
|
|
433 |
|
|
434 |
// Set the record buffer configuration.
|
|
435 |
RChunk chunk;
|
|
436 |
TTestSharedChunkBufConfig bufferConfig;
|
|
437 |
bufferConfig.iNumBuffers=4;
|
|
438 |
bufferConfig.iBufferSizeInBytes=RecordBufferSizeInBytes(RecordFormatBuf());
|
|
439 |
if (RecordCapsBuf().iRequestMinSize)
|
|
440 |
bufferConfig.iBufferSizeInBytes&=~(RecordCapsBuf().iRequestMinSize-1); // Keep the buffer length valid for the driver.
|
|
441 |
bufferConfig.iFlags=0;
|
|
442 |
PrintBufferConf(bufferConfig,Test);
|
|
443 |
TPckg<TTestSharedChunkBufConfig> bufferConfigBuf(bufferConfig);
|
|
444 |
r=RxSoundDevice.SetBufferChunkCreate(bufferConfigBuf,chunk);
|
|
445 |
if (r!=KErrNone)
|
|
446 |
{
|
|
447 |
Test.Printf(_L("Buffer configuration not supported(%d)\r\n"),r);
|
|
448 |
return(r);
|
|
449 |
}
|
|
450 |
|
|
451 |
// Set the audio record configuration.
|
|
452 |
RxSoundDevice.SetVolume(KSoundMaxVolume);
|
|
453 |
PrintConfig(RecordFormatBuf(),Test);
|
|
454 |
r=RxSoundDevice.SetAudioFormat(RecordFormatBuf);
|
|
455 |
if (r!=KErrNone)
|
|
456 |
{
|
|
457 |
Test.Printf(_L("Format not supported\r\n"));
|
|
458 |
return(r);
|
|
459 |
}
|
|
460 |
|
|
461 |
// Get length in seconds
|
|
462 |
TLex cl_seconds(l.NextToken());
|
|
463 |
TUint32 tmpSeconds;
|
|
464 |
r = cl_seconds.Val(tmpSeconds,EDecimal);
|
|
465 |
if (r == KErrNone)
|
|
466 |
{
|
|
467 |
Test.Printf(_L("Parsed %d seconds\r\n"),tmpSeconds);
|
|
468 |
}
|
|
469 |
else
|
|
470 |
{
|
|
471 |
Test.Printf(_L("Parse seconds failed(%d)\r\n"),r);
|
|
472 |
tmpSeconds=10;
|
|
473 |
}
|
|
474 |
TInt bytesToRecord = BytesPerSecond(RecordFormatBuf())*tmpSeconds;
|
|
475 |
|
|
476 |
Test.Next(_L("Recording..."));
|
|
477 |
|
|
478 |
// Lay down a file header
|
|
479 |
WAVEheader header;
|
|
480 |
TPtr8 headerDes((TUint8 *)&header, sizeof(struct WAVEheader), sizeof(struct WAVEheader));
|
|
481 |
|
|
482 |
// "RIFF"
|
|
483 |
header.ckID[0] = 'R'; header.ckID[1] = 'I';
|
|
484 |
header.ckID[2] = 'F'; header.ckID[3] = 'F';
|
|
485 |
// "WAVE"
|
|
486 |
header.wave_ckID[0] = 'W'; header.wave_ckID[1] = 'A';
|
|
487 |
header.wave_ckID[2] = 'V'; header.wave_ckID[3] = 'E';
|
|
488 |
// "fmt "
|
|
489 |
header.fmt_ckID[0] = 'f'; header.fmt_ckID[1] = 'm';
|
|
490 |
header.fmt_ckID[2] = 't'; header.fmt_ckID[3] = ' ';
|
|
491 |
// "data"
|
|
492 |
header.data_ckID[0] = 'd'; header.data_ckID[1] = 'a';
|
|
493 |
header.data_ckID[2] = 't'; header.data_ckID[3] = 'a';
|
|
494 |
|
|
495 |
header.nChannels = (TUint16)RecordFormatBuf().iChannels;
|
|
496 |
header.nSamplesPerSec = RateInSamplesPerSecond(RecordFormatBuf().iRate);
|
|
497 |
header.nBitsPerSample = 16;
|
|
498 |
header.nBlockAlign = TUint16((RecordFormatBuf().iChannels == 2) ? 4 : 2);
|
|
499 |
header.formatTag = 1; // type 1 is PCM
|
|
500 |
header.fmt_ckSize = 16;
|
|
501 |
header.nAvgBytesPerSec = BytesPerSecond(RecordFormatBuf());
|
|
502 |
header.data_ckSize = bytesToRecord;
|
|
503 |
header.ckSize = bytesToRecord + sizeof(struct WAVEheader) - 8;
|
|
504 |
|
|
505 |
Test.Printf(_L("Header rate:%d channels:%d tag:%d bits:%d (%d bytes/s) align %d datalen:%d fmt_ckSize:%d ckSize:%d\r\n"),
|
|
506 |
header.nSamplesPerSec, header.nChannels, header.formatTag, header.nBitsPerSample,
|
|
507 |
header.nAvgBytesPerSec, header.nBlockAlign, header.data_ckSize, header.fmt_ckSize, header.ckSize, sizeof(struct WAVEheader));
|
|
508 |
|
|
509 |
r = destination.Write(headerDes);
|
|
510 |
|
|
511 |
TRequestStatus stat;
|
|
512 |
TInt length;
|
|
513 |
TPtrC8 buf;
|
|
514 |
|
|
515 |
// Start off by issuing a record request.
|
|
516 |
TTime starttime;
|
|
517 |
starttime.HomeTime();
|
|
518 |
TInt bytesRecorded = 0;
|
|
519 |
RxSoundDevice.RecordData(stat,length);
|
|
520 |
|
|
521 |
FOREVER
|
|
522 |
{
|
|
523 |
// Wait for the outstanding record request to complete.
|
|
524 |
User::WaitForAnyRequest();
|
|
525 |
if (stat==KRequestPending)
|
|
526 |
return(KErrGeneral);
|
|
527 |
|
|
528 |
// Check whether the record request was succesful.
|
|
529 |
TInt retOffset=stat.Int();
|
|
530 |
if (retOffset<0)
|
|
531 |
{
|
|
532 |
Test.Printf(_L("Record failed(%d)\r\n"),retOffset);
|
|
533 |
return(retOffset);
|
|
534 |
}
|
|
535 |
|
|
536 |
// Successfully recorded another buffer so write the recorded data to the record file and release the buffer.
|
|
537 |
buf.Set((const TUint8*)(chunk.Base()+retOffset),length);
|
|
538 |
r=destination.Write(buf);
|
|
539 |
if (r!=KErrNone)
|
|
540 |
{
|
|
541 |
Test.Printf(_L("File write failed(%d)\r\n"),r);
|
|
542 |
return(r);
|
|
543 |
}
|
|
544 |
r=RxSoundDevice.ReleaseBuffer(retOffset);
|
|
545 |
if (r!=KErrNone)
|
|
546 |
{
|
|
547 |
Test.Printf(_L("Release buffer failed(%d)\r\n"),r);
|
|
548 |
return(r);
|
|
549 |
}
|
|
550 |
|
|
551 |
Test.Printf(_L("Recorded %d more bytes - %d\r\n"),length,retOffset);
|
|
552 |
|
|
553 |
// Check whether we have now recorded all the data. If more to record then queue a further request
|
|
554 |
bytesRecorded+=length;
|
|
555 |
if (bytesRecorded<bytesToRecord)
|
|
556 |
RxSoundDevice.RecordData(stat,length);
|
|
557 |
else
|
|
558 |
break;
|
|
559 |
}
|
|
560 |
|
|
561 |
RxSoundDevice.CancelRecordData(); // Stop the driver from recording.
|
|
562 |
|
|
563 |
TTime endtime;
|
|
564 |
endtime.HomeTime();
|
|
565 |
|
|
566 |
TInt64 elapsedTime = endtime.Int64()-starttime.Int64(); // us
|
|
567 |
Test.Printf(_L("Delta time = %d\r\n"),I64LOW(elapsedTime));
|
|
568 |
Test.Printf(_L("Seconds in buffer: %d (%d)\r\n"), bytesRecorded / header.nAvgBytesPerSec, (bytesRecorded / header.nAvgBytesPerSec)*1000000);
|
|
569 |
|
|
570 |
if (I64LOW(elapsedTime) <= (bytesRecorded / header.nAvgBytesPerSec)*1000000)
|
|
571 |
{
|
|
572 |
Test.Printf(_L("Time travelling; record took less time than it should have done\r\n"));
|
|
573 |
return(KErrGeneral);
|
|
574 |
}
|
|
575 |
|
|
576 |
chunk.Close();
|
|
577 |
destination.Close();
|
|
578 |
|
|
579 |
Test.Printf(_L("Record finished\r\n"));
|
|
580 |
return(KErrNone);
|
|
581 |
}
|
|
582 |
|
|
583 |
// Quick test block to write the output of the signal generator to a file.
|
|
584 |
// You'll need to comment out the reference to playdata in writetone and link
|
|
585 |
// the function into the command line processing (search on this function name).
|
|
586 |
/*
|
|
587 |
LOCAL_C void TestWaveformGenerator()
|
|
588 |
{
|
|
589 |
|
|
590 |
Test.Next(_L("Testing waveform generator"));
|
|
591 |
// Parse the commandline and get a filename to use
|
|
592 |
TLex l(CommandLine);
|
|
593 |
TParse destinationName;
|
|
594 |
if (destinationName.SetNoWild(l.NextToken(),0,0)!=KErrNone)
|
|
595 |
{
|
|
596 |
Test.Printf(_L("No arg, skipping\r\n"));
|
|
597 |
return;
|
|
598 |
}
|
|
599 |
|
|
600 |
// Open the file for writing
|
|
601 |
TInt r;
|
|
602 |
RFile destination;
|
|
603 |
r = destination.Replace(Fs,destinationName.FullName(),EFileWrite);
|
|
604 |
if (r!=KErrNone)
|
|
605 |
{
|
|
606 |
Test.Printf(_L("Open file for write failed(%d)\r\n"), r);
|
|
607 |
}
|
|
608 |
|
|
609 |
Test.Printf(_L("File opened for write\r\n"));
|
|
610 |
Test.Next(_L("Preparing to record data"));
|
|
611 |
|
|
612 |
// Get the rate
|
|
613 |
TLex cl(l.NextToken());
|
|
614 |
TUint32 tmpRate;
|
|
615 |
TSoundRate rate;
|
|
616 |
r = cl.Val(tmpRate,EDecimal);
|
|
617 |
if (r == KErrNone && (r=SamplesPerSecondToRate(tmpRate,rate))==KErrNone)
|
|
618 |
{
|
|
619 |
Test.Printf(_L("Parsed rate: %d\r\n"), tmpRate);
|
|
620 |
PlayFormatBuf().iRate = rate;
|
|
621 |
}
|
|
622 |
else
|
|
623 |
{
|
|
624 |
Test.Printf(_L("Parse rate failed(%d)\r\n"),r);
|
|
625 |
PlayFormatBuf().iRate = ESoundRate32000Hz;
|
|
626 |
}
|
|
627 |
|
|
628 |
// Get number of channels
|
|
629 |
TLex cl_chan(l.NextToken());
|
|
630 |
TUint32 tmpChannels;
|
|
631 |
r = cl_chan.Val(tmpChannels,EDecimal);
|
|
632 |
if (r == KErrNone)
|
|
633 |
{
|
|
634 |
Test.Printf(_L("Parsed %d channels\r\n"),tmpChannels);
|
|
635 |
PlayFormatBuf().iChannels = tmpChannels;
|
|
636 |
}
|
|
637 |
else
|
|
638 |
{
|
|
639 |
Test.Printf(_L("Parse channels failed(%d)\r\n"), r);
|
|
640 |
PlayFormatBuf().iChannels = 2;
|
|
641 |
}
|
|
642 |
|
|
643 |
PlayFormatBuf().iEncoding = ESoundEncoding16BitPCM;
|
|
644 |
PrintConfig(PlayFormatBuf(),Test);
|
|
645 |
|
|
646 |
TInt bufferSize=BytesPerSecond(PlayFormatBuf())/8;
|
|
647 |
TUint8* buffer = (TUint8*)User::Alloc(bufferSize*sizeof(TUint8));
|
|
648 |
if (buffer==NULL)
|
|
649 |
{
|
|
650 |
Test.Printf(_L("Out of memory\r\n"));
|
|
651 |
return;
|
|
652 |
}
|
|
653 |
TPtr8 bufferDes(buffer,bufferSize,bufferSize);
|
|
654 |
|
|
655 |
Test.Next(_L("Recording..."));
|
|
656 |
TInt i = BytesPerSecond(PlayFormatBuf())*10/bufferSize;
|
|
657 |
TInt bytesToRecord = i * bufferSize;
|
|
658 |
|
|
659 |
// Lay down a file header
|
|
660 |
WAVEheader header;
|
|
661 |
TPtr8 headerDes((TUint8 *)&header, sizeof(struct WAVEheader), sizeof(struct WAVEheader));
|
|
662 |
|
|
663 |
// "RIFF"
|
|
664 |
header.ckID[0] = 'R'; header.ckID[1] = 'I';
|
|
665 |
header.ckID[2] = 'F'; header.ckID[3] = 'F';
|
|
666 |
// "WAVE"
|
|
667 |
header.wave_ckID[0] = 'W'; header.wave_ckID[1] = 'A';
|
|
668 |
header.wave_ckID[2] = 'V'; header.wave_ckID[3] = 'E';
|
|
669 |
// "fmt "
|
|
670 |
header.fmt_ckID[0] = 'f'; header.fmt_ckID[1] = 'm';
|
|
671 |
header.fmt_ckID[2] = 't'; header.fmt_ckID[3] = ' ';
|
|
672 |
// "data"
|
|
673 |
header.data_ckID[0] = 'd'; header.data_ckID[1] = 'a';
|
|
674 |
header.data_ckID[2] = 't'; header.data_ckID[3] = 'a';
|
|
675 |
|
|
676 |
header.nChannels = PlayFormatBuf().iChannels;
|
|
677 |
header.nSamplesPerSec = RateInSamplesPerSecond(PlayFormatBuf().iRate);
|
|
678 |
header.nBitsPerSample = 16;
|
|
679 |
header.nBlockAlign = 4;
|
|
680 |
header.formatTag = 1;
|
|
681 |
header.fmt_ckSize = 16;
|
|
682 |
header.nAvgBytesPerSec = BytesPerSecond(PlayFormatBuf());
|
|
683 |
header.data_ckSize = bytesToRecord;
|
|
684 |
header.ckSize = bytesToRecord + sizeof(struct WAVEheader) - 8;
|
|
685 |
|
|
686 |
Test.Printf(_L("Header rate:%d channels:%d tag:%d bits:%d (%d bytes/s) align %d datalen:%d fmt_ckSize:%d ckSize:%d\r\n"),
|
|
687 |
header.nSamplesPerSec, header.nChannels, header.formatTag, header.nBitsPerSample,
|
|
688 |
header.nAvgBytesPerSec, header.nBlockAlign, header.data_ckSize, header.fmt_ckSize, header.ckSize);
|
|
689 |
|
|
690 |
r = destination.Write(headerDes);
|
|
691 |
|
|
692 |
MakeSineTable(PlayFormatBuf());
|
|
693 |
SetToneFrequency(440,PlayFormatBuf()); // 'A'
|
|
694 |
|
|
695 |
while(--i>0)
|
|
696 |
{
|
|
697 |
WriteTone(bufferDes,PlayFormatBuf());
|
|
698 |
r = destination.Write(bufferDes);
|
|
699 |
if (r!=KErrNone)
|
|
700 |
{
|
|
701 |
Test.Printf(_L("Write failed(%d)\r\n"),r);
|
|
702 |
break;
|
|
703 |
}
|
|
704 |
}
|
|
705 |
Test.Printf(_L("Finished\r\n"));
|
|
706 |
|
|
707 |
delete buffer;
|
|
708 |
destination.Close();
|
|
709 |
}
|
|
710 |
*/
|
|
711 |
LOCAL_C void TestUnloadDrivers()
|
|
712 |
{
|
|
713 |
TInt r=User::FreeLogicalDevice(KDevSoundScName);
|
|
714 |
Test.Printf(_L("Unloading %S.LDD - %d\r\n"),&KDevSoundScName,r);
|
|
715 |
CHECK_NOERROR(r);
|
|
716 |
|
|
717 |
TName pddName(KDevSoundScName);
|
|
718 |
_LIT(KPddWildcardExtension,".*");
|
|
719 |
pddName.Append(KPddWildcardExtension);
|
|
720 |
TFindPhysicalDevice findPD(pddName);
|
|
721 |
TFullName findResult;
|
|
722 |
r=findPD.Next(findResult);
|
|
723 |
while (r==KErrNone)
|
|
724 |
{
|
|
725 |
r=User::FreePhysicalDevice(findResult);
|
|
726 |
Test.Printf(_L("Unloading %S.PDD - %d\r\n"),&findResult,r);
|
|
727 |
CHECK_NOERROR(r);
|
|
728 |
findPD.Find(pddName); // Reset the find handle now that we have deleted something from the container.
|
|
729 |
r=findPD.Next(findResult);
|
|
730 |
}
|
|
731 |
}
|
|
732 |
|
|
733 |
TInt E32Main()
|
|
734 |
{
|
|
735 |
TInt r;
|
|
736 |
|
|
737 |
__UHEAP_MARK;
|
|
738 |
|
|
739 |
Test.Title();
|
|
740 |
|
|
741 |
Test.Start(_L("Load"));
|
|
742 |
if (Load()==KErrNotFound)
|
|
743 |
{
|
|
744 |
Test.Printf(_L("Shared chunk sound driver not supported - test skipped\r\n"));
|
|
745 |
Test.End();
|
|
746 |
Test.Close();
|
|
747 |
__UHEAP_MARKEND;
|
|
748 |
return(KErrNone);
|
|
749 |
}
|
|
750 |
|
|
751 |
__KHEAP_MARK;
|
|
752 |
|
|
753 |
Test.Next(_L("Open playback channel"));
|
|
754 |
r = TxSoundDevice.Open(KSoundScTxUnit0);
|
|
755 |
if (r!=KErrNone)
|
|
756 |
{
|
|
757 |
Test.Printf(_L("Open playback channel error(%d)\r\n"),r);
|
|
758 |
Test(0);
|
|
759 |
}
|
|
760 |
|
|
761 |
Test.Next(_L("Open record channel"));
|
|
762 |
r = RxSoundDevice.Open(KSoundScRxUnit0);
|
|
763 |
if (r!=KErrNone)
|
|
764 |
{
|
|
765 |
Test.Printf(_L("Open record channel error(%d)\r\n"),r);
|
|
766 |
Test(0);
|
|
767 |
}
|
|
768 |
|
|
769 |
Test.Next(_L("Query play formats supported"));
|
|
770 |
TxSoundDevice.Caps(PlayCapsBuf);
|
|
771 |
TSoundFormatsSupportedV02 playCaps=PlayCapsBuf();
|
|
772 |
PrintCaps(playCaps,Test);
|
|
773 |
|
|
774 |
Test.Next(_L("Query record formats supported"));
|
|
775 |
RxSoundDevice.Caps(RecordCapsBuf);
|
|
776 |
TSoundFormatsSupportedV02 recordCaps=RecordCapsBuf();
|
|
777 |
PrintCaps(recordCaps,Test);
|
|
778 |
|
|
779 |
Test.Next(_L("Connect to the file server"));
|
|
780 |
r = Fs.Connect();
|
|
781 |
if (r!=KErrNone)
|
|
782 |
{
|
|
783 |
Test.Printf(_L("Connect to the file server error(%d)\r\n"),r);
|
|
784 |
Test(0);
|
|
785 |
}
|
|
786 |
|
|
787 |
if (User::CommandLineLength())
|
|
788 |
{
|
|
789 |
User::CommandLine(CommandLine);
|
|
790 |
TLex l(CommandLine);
|
|
791 |
TPtrC token=l.NextToken();
|
|
792 |
|
|
793 |
TInt count=0;
|
|
794 |
while (token.Length()!=0)
|
|
795 |
{
|
|
796 |
++count;
|
|
797 |
token.Set(l.NextToken());
|
|
798 |
}
|
|
799 |
Test.Printf(_L("Command line %d parameters\r\n"),count);
|
|
800 |
|
|
801 |
if (count==1) // If 1 parameter try playing a file
|
|
802 |
r=WavPlay();
|
|
803 |
else if (count) // If there is more than 1 parameter, try recording
|
|
804 |
r=WavRecord();
|
|
805 |
|
|
806 |
//TestWaveformGenerator();
|
|
807 |
|
|
808 |
}
|
|
809 |
|
|
810 |
Fs.Close();
|
|
811 |
|
|
812 |
Test.Next(_L("Close channels"));
|
|
813 |
RxSoundDevice.Close();
|
|
814 |
TxSoundDevice.Close();
|
|
815 |
|
|
816 |
__KHEAP_MARKEND;
|
|
817 |
|
|
818 |
// Now that both the channels are closed, unload the LDD and the PDDs.
|
|
819 |
TestUnloadDrivers();
|
|
820 |
|
|
821 |
Test(r==KErrNone);
|
|
822 |
|
|
823 |
Test.End();
|
|
824 |
Test.Close();
|
|
825 |
|
|
826 |
Cleanup();
|
|
827 |
|
|
828 |
__UHEAP_MARKEND;
|
|
829 |
|
|
830 |
return(KErrNone);
|
|
831 |
}
|