///////////////////////////////////////////////////////////////////////////////////// // ATSCtsimpl.h : // Copyright (c) Microsoft Corporation 1999. #ifndef ATSCTSIMPL_H #define ATSCTSIMPL_H #include "errsupp.h" #include "analogtvtsimpl.h" #include "ATSCChannelTuneRequest.h" namespace BDATuningModel { template class ATL_NO_VTABLE IATSCTSImpl : public IAnalogTVTSImpl, public IMPEG2TuneRequestSupport { public: IATSCTSImpl() : m_MinMinorChannel(-1), m_MaxMinorChannel(-1), m_MinPhysicalChannel(-1), m_MaxPhysicalChannel(-1) {} virtual ~IATSCTSImpl() {} typedef IAnalogTVTSImpl basetype; BEGIN_PROP_MAP(IATSCTSImpl) CHAIN_PROP_MAP(basetype) PROP_DATA_ENTRY("Min Minor Channel", m_MinMinorChannel, VT_I4) PROP_DATA_ENTRY("Max Minor Channel", m_MaxMinorChannel, VT_I4) PROP_DATA_ENTRY("Min Physical Channel", m_MinPhysicalChannel, VT_I4) PROP_DATA_ENTRY("Max Physical Channel", m_MaxPhysicalChannel, VT_I4) END_PROPERTY_MAP() long m_MinMinorChannel; long m_MaxMinorChannel; long m_MinPhysicalChannel; long m_MaxPhysicalChannel; // override standard ITuningSpaceImpl STDMETHOD(put_DefaultLocator)(ILocator *pLoc) { if (pLoc) { PQATSCLocator p(pLoc); if (!p) { return DISP_E_TYPEMISMATCH; } } return basetype::put_DefaultLocator(pLoc); } // IATSCTuningSpace STDMETHOD(get_MinMinorChannel)(long *pVal) { if (!pVal) { return E_POINTER; } ATL_LOCKT(); *pVal = m_MinMinorChannel; return NOERROR; } STDMETHOD(put_MinMinorChannel)(long newVal) { ATL_LOCKT(); if (newVal > m_MaxMinorChannel) { return ImplReportError(__uuidof(T), IDS_E_INVALIDARG, __uuidof(IATSCTuningSpace), E_INVALIDARG); } m_MinMinorChannel = newVal; MARK_DIRTY(T); return NOERROR; } STDMETHOD(get_MaxMinorChannel)(long *pVal) { if (!pVal) { return E_POINTER; } ATL_LOCKT(); *pVal = m_MaxMinorChannel; return NOERROR; } STDMETHOD(put_MaxMinorChannel)(long newVal) { ATL_LOCKT(); if (newVal < m_MinMinorChannel) { return ImplReportError(__uuidof(T), IDS_E_INVALIDARG, __uuidof(IATSCTuningSpace), E_INVALIDARG); } m_MaxMinorChannel = newVal; MARK_DIRTY(T); return NOERROR; } STDMETHOD(get_MinPhysicalChannel)(long *pVal) { if (!pVal) { return E_POINTER; } ATL_LOCKT(); *pVal = m_MinPhysicalChannel; return NOERROR; } STDMETHOD(put_MinPhysicalChannel)(long newVal) { ATL_LOCKT(); if (newVal > m_MaxPhysicalChannel) { return ImplReportError(__uuidof(T), IDS_E_INVALIDARG, __uuidof(IATSCTuningSpace), E_INVALIDARG); } m_MinPhysicalChannel = newVal; MARK_DIRTY(T); return NOERROR; } STDMETHOD(get_MaxPhysicalChannel)(long *pVal) { if (!pVal) { return E_POINTER; } ATL_LOCKT(); *pVal = m_MaxPhysicalChannel; return NOERROR; } STDMETHOD(put_MaxPhysicalChannel)(long newVal) { ATL_LOCKT(); if (newVal < m_MinPhysicalChannel) { return ImplReportError(__uuidof(T), IDS_E_INVALIDARG, __uuidof(IATSCTuningSpace), E_INVALIDARG); } m_MaxPhysicalChannel = newVal; MARK_DIRTY(T); return NOERROR; } STDMETHOD(Clone) (ITuningSpace **ppTS) { if (!ppTS) { return E_POINTER; } *ppTS = NULL; ATL_LOCKT(); try { HRESULT hr = basetype::Clone(ppTS); if (FAILED(hr)) { return hr; } T* pt = static_cast(*ppTS); pt->m_MinMinorChannel = m_MinMinorChannel; pt->m_MaxMinorChannel = m_MaxMinorChannel; pt->m_MinPhysicalChannel = m_MinPhysicalChannel; pt->m_MaxPhysicalChannel = m_MaxPhysicalChannel; return NOERROR; } CATCHCOM_CLEANUP(if (*ppTS) { (*ppTS)->Release(); *ppTS = NULL; } ); } }; }; // namespace #endif // ATSCTSIMPL_H // end of file -- ATSCtsimpl.h