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/* This file is part of the KDE project.
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Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies).
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This library is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 2.1 or 3 of the License.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this library. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "qaudiocdreader.h"
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#include <dshow.h>
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#include <initguid.h>
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#include <winioctl.h> // needed for FILE_DEVICE_CD_ROM etc
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#define IOCTL_CDROM_READ_TOC CTL_CODE(FILE_DEVICE_CD_ROM, 0x0000, METHOD_BUFFERED, FILE_READ_ACCESS)
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#define IOCTL_CDROM_RAW_READ CTL_CODE(FILE_DEVICE_CD_ROM, 0x000F, METHOD_OUT_DIRECT, FILE_READ_ACCESS)
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QT_BEGIN_NAMESPACE
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#ifndef QT_NO_PHONON_MEDIACONTROLLER
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namespace Phonon
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{
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namespace DS9
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{
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// {CA46BFE1-D55B-4adf-B803-BC2B9AD57824}
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DEFINE_GUID(IID_ITitleInterface,
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0xca46bfe1, 0xd55b, 0x4adf, 0xb8, 0x3, 0xbc, 0x2b, 0x9a, 0xd5, 0x78, 0x24);
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struct TRACK_DATA {
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UCHAR Reserved;
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UCHAR Control : 4;
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UCHAR Adr : 4;
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UCHAR TrackNumber;
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UCHAR Reserved1;
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UCHAR Address[4];
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};
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struct CDROM_TOC {
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UCHAR Length[2];
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UCHAR FirstTrack;
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UCHAR LastTrack;
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TRACK_DATA TrackData[100];
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};
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struct WaveStructure
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{
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WaveStructure();
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char riff[4];
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qint32 chunksize;
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char wave[4];
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char fmt[4];
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const qint32 chunksize2;
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const quint16 formatTag;
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const quint16 nChannels;
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const quint32 nSamplesPerSec;
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const quint32 nAvgBytesPerSec;
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const quint16 nBlockAlign;
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const quint16 bitsPerSample;
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char data[4];
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qint32 dataLength;
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};
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enum TRACK_MODE_TYPE {
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YellowMode2,
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XAForm2,
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CDDA
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};
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struct RAW_READ_INFO {
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LARGE_INTEGER DiskOffset;
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ULONG SectorCount;
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TRACK_MODE_TYPE TrackMode;
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};
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class QAudioCDReader : public QAsyncReader, public ITitleInterface
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{
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public:
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QAudioCDReader(QBaseFilter *parent, QChar drive = QChar());
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~QAudioCDReader();
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//reimplementation from IUnknown
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STDMETHODIMP_(ULONG) AddRef();
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STDMETHODIMP_(ULONG) Release();
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STDMETHODIMP Length(LONGLONG *,LONGLONG *);
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STDMETHODIMP QueryInterface(REFIID iid, void** out);
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QList<qint64> titles() const;
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protected:
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HRESULT read(LONGLONG pos, LONG length, BYTE *buffer, LONG *actual);
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private:
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HANDLE m_cddrive;
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CDROM_TOC m_toc;
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WaveStructure m_waveHeader;
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qint64 m_trackAddress;
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};
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#define SECTOR_SIZE 2352
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#define NB_SECTORS_READ 20
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static const AM_MEDIA_TYPE audioCDMediaType = { MEDIATYPE_Stream, MEDIASUBTYPE_WAVE, TRUE, FALSE, 1, GUID_NULL, 0, 0, 0};
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int addressToSectors(UCHAR address[4])
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{
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return ((address[0] * 60 + address[1]) * 60 + address[2]) * 75 + address[3] - 150;
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}
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WaveStructure::WaveStructure() : chunksize(0), chunksize2(16),
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formatTag(WAVE_FORMAT_PCM), nChannels(2), nSamplesPerSec(44100), nAvgBytesPerSec(176400), nBlockAlign(4), bitsPerSample(16),
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dataLength(0)
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{
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qMemCopy(riff, "RIFF", 4);
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qMemCopy(wave, "WAVE", 4);
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qMemCopy(fmt, "fmt ", 4);
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qMemCopy(data, "data", 4);
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}
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QAudioCDReader::QAudioCDReader(QBaseFilter *parent, QChar drive) : QAsyncReader(parent, QVector<AM_MEDIA_TYPE>() << audioCDMediaType)
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{
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//now open the cd-drive
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QString path;
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if (drive.isNull()) {
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path = QString::fromLatin1("\\\\.\\Cdrom0");
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} else {
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path = QString::fromLatin1("\\\\.\\%1:").arg(drive);
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}
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m_cddrive = ::CreateFile((const wchar_t *)path.utf16(), GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, 0, NULL);
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qMemSet(&m_toc, 0, sizeof(CDROM_TOC));
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//read the TOC
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DWORD bytesRead = 0;
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bool tocRead = ::DeviceIoControl(m_cddrive, IOCTL_CDROM_READ_TOC, 0, 0, &m_toc, sizeof(CDROM_TOC), &bytesRead, 0);
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if (!tocRead) {
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qWarning("unable to load the TOC from the CD");
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return;
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}
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m_trackAddress = addressToSectors(m_toc.TrackData[0].Address);
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const qint32 nbSectorsToRead = (addressToSectors(m_toc.TrackData[m_toc.LastTrack + 1 - m_toc.FirstTrack].Address)
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- m_trackAddress);
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const qint32 dataLength = nbSectorsToRead * SECTOR_SIZE;
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m_waveHeader.chunksize = 4 + (8 + m_waveHeader.chunksize2) + (8 + dataLength);
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m_waveHeader.dataLength = dataLength;
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}
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QAudioCDReader::~QAudioCDReader()
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{
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::CloseHandle(m_cddrive);
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}
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STDMETHODIMP_(ULONG) QAudioCDReader::AddRef()
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{
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return QAsyncReader::AddRef();
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}
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STDMETHODIMP_(ULONG) QAudioCDReader::Release()
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{
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return QAsyncReader::Release();
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}
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STDMETHODIMP QAudioCDReader::Length(LONGLONG *total,LONGLONG *available)
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{
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const LONGLONG length = sizeof(WaveStructure) + m_waveHeader.dataLength;
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if (total) {
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*total = length;
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}
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if (available) {
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*available = length;
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}
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return S_OK;
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}
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STDMETHODIMP QAudioCDReader::QueryInterface(REFIID iid, void** out)
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{
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if (!out) {
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return E_POINTER;
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}
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if (iid == IID_ITitleInterface) {
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//we reroute that to the pin
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*out = static_cast<ITitleInterface*>(this);
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AddRef();
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return S_OK;
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} else {
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return QAsyncReader::QueryInterface(iid, out);
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}
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}
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HRESULT QAudioCDReader::read(LONGLONG pos, LONG length, BYTE *buffer, LONG *actual)
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{
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LONG nbRead = 0;
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if (actual) {
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*actual = 0;
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}
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if (pos < sizeof(WaveStructure)) {
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//we first copy the content of the structure
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nbRead = qMin(LONG(sizeof(WaveStructure) - pos), length);
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qMemCopy(buffer, reinterpret_cast<char*>(&m_waveHeader) + pos, nbRead);
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}
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const LONGLONG posInTrack = pos - sizeof(WaveStructure) + nbRead;
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const int bytesLeft = qMin(m_waveHeader.dataLength - posInTrack, LONGLONG(length - nbRead));
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if (bytesLeft > 0) {
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//we need to read again
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const int surplus = posInTrack % SECTOR_SIZE; //how many bytes too much at the beginning
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const int firstSector = posInTrack / SECTOR_SIZE,
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lastSector = (posInTrack + length - 1) / SECTOR_SIZE;
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const int sectorsNeeded = lastSector - firstSector + 1;
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int sectorsRead = 0;
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QByteArray ba(sectorsNeeded * SECTOR_SIZE, 0);
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RAW_READ_INFO ReadInfo;
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ReadInfo.TrackMode = CDDA; // Always use CDDA (numerical: 2)
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ReadInfo.DiskOffset.QuadPart = (m_trackAddress + firstSector) * 2048;
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ReadInfo.SectorCount = qMin(sectorsNeeded - sectorsRead, NB_SECTORS_READ);
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while (ReadInfo.SectorCount) {
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DWORD dummy = 0;
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if (::DeviceIoControl( m_cddrive, IOCTL_CDROM_RAW_READ,
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&ReadInfo, sizeof(ReadInfo),
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ba.data() + sectorsRead * SECTOR_SIZE,
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ReadInfo.SectorCount * SECTOR_SIZE,
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&dummy, NULL ) )
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{
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ReadInfo.DiskOffset.QuadPart += ReadInfo.SectorCount * 2048;
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sectorsRead += ReadInfo.SectorCount;
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ReadInfo.SectorCount = qMin(sectorsNeeded - sectorsRead, NB_SECTORS_READ);
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}else {
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qWarning("an error occurred while reading from the media");
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return S_FALSE;
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}
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}
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//consume bytes on the buffer
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qMemCopy(buffer + nbRead, ba.data() + surplus, bytesLeft);
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//at this point we have all we need in the buffer
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nbRead += bytesLeft;
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}
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if (actual) {
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*actual = nbRead;
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}
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return nbRead == length ? S_OK : S_FALSE;
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}
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QList<qint64> QAudioCDReader::titles() const
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{
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QList<qint64> ret;
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ret << 0;
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for(int i = m_toc.FirstTrack; i <= m_toc.LastTrack ; ++i) {
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const uchar *address = m_toc.TrackData[i].Address;
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ret << ((address[0] * 60 + address[1]) * 60 + address[2]) * 1000 + address[3]*1000/75 - 2000;
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}
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return ret;
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}
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QAudioCDPlayer::QAudioCDPlayer() : QBaseFilter(CLSID_NULL)
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{
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new QAudioCDReader(this);
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}
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QAudioCDPlayer::~QAudioCDPlayer()
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{
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}
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STDMETHODIMP QAudioCDPlayer::QueryInterface(REFIID iid, void** out)
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{
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if (iid == IID_ITitleInterface) {
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//we reroute that to the pin
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return pins().first()->QueryInterface(iid, out);
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} else {
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return QBaseFilter::QueryInterface(iid, out);
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}
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}
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}
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}
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#endif //QT_NO_PHONON_MEDIACONTROLLER
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QT_END_NAMESPACE
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