468 lines
12 KiB
C++
468 lines
12 KiB
C++
#include <windows.h>
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#include <mmreg.h>
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#include <msacm.h>
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#include "../nu/ns_wc.h"
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#include "resource.h"
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#include "wmsdk.h" // for IWMWriterSink
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#include "AudioCoderWMA.h"
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#include <cassert>
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#include <exception>
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#include "../nu/AutoLock.h"
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#include "../nu/AutoWide.h"
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#include "../Winamp/strutil.h"
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#include "../Agave/Language/api_language.h"
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/* TODO: implement 2-pass encoding via IWMWriterPreprocess */
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int config_bitrate, config_samplerate, config_nch;
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// New globals for encoder query
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class CustomIndexStatus : public IWMStatusCallback
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{
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public:
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CustomIndexStatus( HANDLE _done ) : done(_done), IWMStatusCallback(), refcount(1)
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{}
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// IUnknown methods
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public:
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virtual ULONG STDMETHODCALLTYPE AddRef()
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{
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return ++refcount;
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}
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virtual ULONG STDMETHODCALLTYPE Release()
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{
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// If we go to zero, who cares?
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return --refcount;
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}
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virtual HRESULT STDMETHODCALLTYPE QueryInterface(REFIID iid, void **ppvObject)
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{
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HRESULT hRetval = E_NOINTERFACE;
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if (IID_IWMStatusCallback == iid)
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{
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*ppvObject = static_cast<IWMStatusCallback *>(this);
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hRetval = S_OK;
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}
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else
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{
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*ppvObject = NULL;
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}
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return hRetval;
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}
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// IWMStatusCallback methods
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public:
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HRESULT STDMETHODCALLTYPE OnStatus( WMT_STATUS Status, HRESULT hr, WMT_ATTR_DATATYPE dwType, BYTE* pValue, void* pvContext )
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{
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switch ( Status )
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{
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case WMT_CLOSED:
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// You may want to deal with the HRESULT value passed with the status.
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// If you do, you should do it here.
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// Signal the event.
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SetEvent(done);
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break;
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}
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return S_OK;
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}
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protected:
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ULONG refcount;
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HANDLE done;
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};
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// Our custom buffer object, used by the writer sink.
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AudioCoderWMA::AudioCoderWMA(int numchannels, int samplerate, int bitspersamp, configtype *cfg, char *configfile) : AudioCoder()
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{
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lastByteCount=0;
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writerAdvanced=0;
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begin_writing = false;
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error = WMA_NO_ERROR;
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sink = NULL;
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// Get globals from Winamp.ini config file
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config_bitrate = cfg->config_bitrate;
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config_samplerate = cfg->config_samplesSec;
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config_nch = cfg->config_nch;
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timeunits_per_byte = ( ( (10000000.0) / (double)samplerate ) / (double)numchannels ) / ( (double)bitspersamp / 8.0 );
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//char t[100] = {0};
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//wsprintf(t,"%d", timeunits_per_byte);
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//::MessageBox(NULL, t, t, MB_OK);
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input_bytecount = 0;
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HRESULT hr = CreateAndConfigureWriter(numchannels, samplerate, bitspersamp, configfile);
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if ( FAILED(hr) )
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{
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error = WMA_CANT_CREATE_WRITER;
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}
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}
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AudioCoderWMA::~AudioCoderWMA()
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{
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if (writer)
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{
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if ( begin_writing )
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{
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begin_writing = false;
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writer->EndWriting();
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}
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writer->Release();
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writer = NULL;
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}
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if (writerAdvanced)
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{
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writerAdvanced->Release();
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writerAdvanced=0;
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}
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if (sink)
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{
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sink->Release();
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sink=0;
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}
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}
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int AudioCoderWMA::GetLastError()
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{
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return error;
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}
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void AudioCoderWMA::PrepareToFinish()
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{
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// We don't want to kill the objects here, because there might still be data in the pipeline.
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if (writer && begin_writing)
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{
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begin_writing = false;
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// Tell WM that we're done giving it input data.
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writer->EndWriting();
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// TODO: do we have to wait for this to finish?
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}
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}
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void AudioCoderWMA::OnFinished(const wchar_t *wfname)
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{
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//
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// Okay, here we need to go back and index the file we just wrote so it's seekable.
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//
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// From: http://msdn.microsoft.com/library/default.asp?url=/library/en-us/wmform/htm/toconfiguretheindexer.asp
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// And: http://msdn.microsoft.com/library/default.asp?url=/library/en-us/wmform/htm/toindexanasffile.asp
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IWMIndexer* pBaseIndexer = NULL;
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IWMIndexer2* pMyIndexer = NULL;
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// Create an indexer.
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WMCreateIndexer(&pBaseIndexer);
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// Retrieve an IWMIndexer2 interface pointer for the indexer just created.
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pBaseIndexer->QueryInterface(IID_IWMIndexer2, (void **) & pMyIndexer);
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// Release the base indexer.
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pBaseIndexer->Release();
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pBaseIndexer = NULL;
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// Configure the indexer to create a timecode-based index.
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pMyIndexer->Configure(0, // Stream Number, use all.
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WMT_IT_PRESENTATION_TIME, // Indexer type.
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NULL, // Index interval, use default.
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NULL); // Index type, use default.
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// Create an event for asynchronous calls.
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HANDLE done = CreateEvent(NULL, TRUE, FALSE, NULL);
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// Give that to the status object
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CustomIndexStatus status( done );
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// Start the indexer.
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pMyIndexer->StartIndexing(tempFilename, &status, NULL);
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// Wait for the indexer to finish.
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WaitForSingleObject(done, INFINITE);
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// Release the remaining interface.
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pMyIndexer->Release();
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pMyIndexer = NULL;
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// Cleanup
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CloseHandle( done );
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DeleteFileW(wfname);
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MoveFileW(tempFilename, wfname);
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}
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int AudioCoderWMA::Encode(int framepos, void *in, int in_avail, int *in_used, void *out, int out_avail)
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{
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HRESULT hr = S_OK;
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int retval = 0; // number of bytes written into "out"
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*in_used = 0; // number of bytes read from "in"
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if ( !framepos && !in_avail )
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{
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int x = 0;
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x++;
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}
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assert(writer);
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// Hopefully, at the end of the stream, we still get called with "Encode" until we return 0?
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if (in_avail)
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{
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// Allocate an INSSBuffer of the proper size to hold all the data.
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INSSBuffer* pSample = NULL;
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if (FAILED(writer->AllocateSample(in_avail, &pSample))) return -1;
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// Get its internal memory buffer
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DWORD newBufferLength;
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pSample->GetLength(&newBufferLength);
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assert(newBufferLength == in_avail);
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BYTE *pdwBuffer = NULL;
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if (FAILED(pSample->GetBuffer(&pdwBuffer))) return -1;
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memcpy(pdwBuffer, in, in_avail); // Send all the available bytes in the input buffer into the IWMWriter,
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pSample->SetLength(in_avail); // Tell the buffer object how much we used
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QWORD timeunits = (QWORD)( (double)input_bytecount * timeunits_per_byte ); // Compute the current timecode
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// And stuff it into the writer
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hr = writer->WriteSample(0, timeunits, 0, pSample);
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if (FAILED(hr))
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{
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}
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else
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{
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// Increment the bytecount to be able to calculate the next timecode
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input_bytecount += in_avail;
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// And tell the host we used up all the available input data.
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*in_used = in_avail;
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}
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// Release immediately
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pSample->Release();
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}
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WM_WRITER_STATISTICS stats;
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writerAdvanced->GetStatistics(0, &stats);
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retval = (int)(stats.qwByteCount - lastByteCount);
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retval = min(retval, out_avail);
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lastByteCount+=retval;
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memset(out, 0, retval); // so we don't write random memory to disk
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return retval;
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}
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HRESULT AudioCoderWMA::SelectAndLoadResampler(int numchannels, int samplerate, int bitspersamp)
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{
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DWORD inCount = 0;
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BOOL success = false;
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//wsprintf(junk,"IN Chan=%d, SRate=%d, BPS=%d", numchannels, samplerate,bitspersamp);
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//MessageBox(NULL, junk, "INPUT FMT", MB_OK);
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// First get the number of input streams
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HRESULT hr = writer->GetInputCount(&inCount);
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if(!FAILED(hr)){
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//wsprintf(junk, "Input Count = %d", inCount);
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//MessageBox(NULL, junk, "DEBUG", MB_OK);
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// Now get the number of input formats we can resample for
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DWORD fmtCount = 0;
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hr = writer->GetInputFormatCount(0, &fmtCount);
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if(!FAILED(hr)){
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//wsprintf(junk, "Format Count = %d", fmtCount);
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//MessageBox(NULL, junk, "DEBUG", MB_OK);
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// Now cycle through and find the one that matches our input fmt
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for(size_t i = 0;i < fmtCount;i++){
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IWMInputMediaProps* pProps = NULL;
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hr = writer->GetInputFormat(0, (DWORD)i, &pProps);
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if(!FAILED(hr)){
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DWORD cbSize = 0;
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// Get the size of the media type structure.
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pProps->GetMediaType(NULL, &cbSize);
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// Allocate memory for the media type structure.
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WM_MEDIA_TYPE* pType = (WM_MEDIA_TYPE*) new BYTE[cbSize];
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if(pType != NULL){
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WAVEFORMATEX* pwave = NULL;
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// Get the media type structure.
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hr = pProps->GetMediaType(pType, &cbSize);
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// Check that the format data is present.
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if (pType->cbFormat >= sizeof(WAVEFORMATEX)){
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pwave = (WAVEFORMATEX*)pType->pbFormat;
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//wsprintf(junk, "Cnannels = %d, SPerSec = %d, AvgBPS = %d, BPS = %d BALIGN = %d",
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// pwave->nChannels,
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// pwave->nSamplesPerSec,
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// pwave->nAvgBytesPerSec,
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// pwave->wBitsPerSample,
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// pwave->nBlockAlign);
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//MessageBox(NULL, junk, "DEBUG", MB_OK);
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}
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else{
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break;
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}
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// Try to match the channels/samplerate/and bits/samp
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if((pwave->nChannels == numchannels) && (pwave->nSamplesPerSec == samplerate) && (pwave->wBitsPerSample == bitspersamp)){
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writer->SetInputProps(0, pProps);
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success = true;
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break;
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}
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}
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}
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}
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}
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}
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if(success != 1){
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wchar_t junk[FILETITLE_SIZE] = {0};
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wsprintfW(junk,WASABI_API_LNGSTRINGW(IDS_CANNOT_FIND_INPUT_FORMATTER),
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numchannels, samplerate,bitspersamp);
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MessageBoxW(NULL, junk, WASABI_API_LNGSTRINGW(IDS_WARNING), MB_OK);
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}
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if (success)
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return S_OK;
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else if (FAILED(hr)) // if we have an error code, return it
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return hr;
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else
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return E_FAIL;
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}
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HRESULT AudioCoderWMA::CreateAndConfigureWriter(WORD numchannels, WORD samplerate, WORD bitspersamp, char *configfile)
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{
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// First, create the writer.
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HRESULT hr = WMCreateWriter( NULL, &writer );
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if ( !FAILED(hr) )
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{
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// Create and Configure a stream profile with the given wave limits.
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WAVEFORMATEX WaveLimits =
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{
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WAVE_FORMAT_PCM,
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numchannels,
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samplerate,
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samplerate * numchannels * bitspersamp / (DWORD)8,
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numchannels * bitspersamp / (DWORD)8,
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bitspersamp,
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0
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};
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IWMProfile* pProfile = NULL;
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hr = CreateAndConfigureProfile(&WaveLimits, &pProfile, configfile);
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if ( !FAILED(hr) )
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{
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// Set the profile into the writer
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hr = writer->SetProfile( pProfile );
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if ( !FAILED(hr) )
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{
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// Go get the input resampler and load it to the profile
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hr = SelectAndLoadResampler(numchannels, samplerate, bitspersamp);
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if (!FAILED(hr))
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{
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wchar_t tempPath[MAX_PATH] = {0};
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GetTempPathW(MAX_PATH,tempPath);
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GetTempFileNameW(tempPath, L"wma", 0, tempFilename);
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// Make the custom data sink object
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WMCreateWriterFileSink(&sink);
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//sink = new CustomWMWriterSink;
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if ( sink )
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{
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sink->Open(tempFilename);
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HRESULT hr;
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// From MSDN: http://msdn.microsoft.com/library/default.asp?url=/library/en-us/wmform/htm/addingsinkstothewriter.asp
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IWMWriterSink* pSinkBase = NULL;
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hr = writer->QueryInterface( IID_IWMWriterAdvanced, (void **) & writerAdvanced );
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if ( !FAILED(hr) )
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{
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hr = sink->QueryInterface( IID_IWMWriterSink, (void**) & pSinkBase );
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if ( !FAILED(hr) )
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{
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// Stuff the custom data sink into the writer.
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hr = writerAdvanced->AddSink(pSinkBase);
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if ( !FAILED(hr) )
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{
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// And let the writer initialize itself for output.
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hr = writer->BeginWriting();
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if ( !FAILED(hr) )
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{
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begin_writing = true;
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}
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}
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else
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{
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error = WMA_CANT_ADD_SINK;
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}
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}
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else
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{
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error = WMA_CANT_QUERY_SINK_INTERFACE;
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}
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}
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else
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{
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error = WMA_CANT_QUERY_WRITER_INTERFACE;
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}
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}
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else
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{
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error = WMA_CANT_MAKE_CUSTOM_SINK;
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}
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}
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}
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}
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}
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return hr;
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}
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HRESULT AudioCoderWMA::CreateAndConfigureProfile(WAVEFORMATEX* pWaveLimits, IWMProfile** ppProfile, char *configfile)
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{
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IWMProfileManager* pProfileMgr = NULL;
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// Instantiate a profile manager object.
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HRESULT hr = WMCreateProfileManager(&pProfileMgr);
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if ( !FAILED(hr) )
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{
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/* SAVE
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// Create the empty profile.
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//hr = pProfileMgr->CreateEmptyProfile(WMT_VER_9_0, ppProfile);
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if ( !FAILED(hr) ){
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IWMCodecInfo3 *codecInfo = NULL;
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hr = pProfileMgr->QueryInterface(&codecInfo);
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if(!FAILED(hr)){
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// Find the proper IWMStreamConfig that matches the WAVEFORMATEX data.
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IWMStreamConfig* pStreamConfig = NULL;
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//hr = FindAudioFormat(WMMEDIASUBTYPE_WMAudioV2, pProfileMgr, pWaveLimits, config_bitrate * 1000, FALSE, &pStreamConfig);
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hr = codecInfo->GetCodecFormat(WMMEDIATYPE_Audio, config_encOffset, config_formatOffset, &pStreamConfig);
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if ( !FAILED(hr) ){
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// Config the stream.
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// hr = pStreamConfig->SetBitrate( config_bitrate );
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hr = pStreamConfig->SetConnectionName( L"enc_wma" );
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hr = pStreamConfig->SetStreamName( L"enc_wma" );
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hr = pStreamConfig->SetStreamNumber( 1 );
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// Stuff it into the profile
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hr = (*ppProfile)->AddStream( pStreamConfig );
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}
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}
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}
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*/
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if ( !FAILED(hr) ){
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// Load the .prx file into the writer
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if(configfile == NULL){
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hr = E_FAIL;
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}
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else{
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wchar_t cstring[4000] = {0};
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GetPrivateProfileStructW(L"audio_wma", L"profile", cstring, sizeof(cstring)/sizeof(*cstring), AutoWide(configfile));
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hr = pProfileMgr->LoadProfileByData(cstring, ppProfile);
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if(hr != S_OK){
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hr = E_FAIL;
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}
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}
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}
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pProfileMgr->Release();
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}
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return hr;
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} |