📄 tconverter_fxp.cpp
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/* ***** BEGIN LICENSE BLOCK *****
* Version: RCSL 1.0/RPSL 1.0
*
* Portions Copyright (c) 1995-2002 RealNetworks, Inc. All Rights Reserved.
*
* The contents of this file, and the files included with this file, are
* subject to the current version of the RealNetworks Public Source License
* Version 1.0 (the "RPSL") available at
* http://www.helixcommunity.org/content/rpsl unless you have licensed
* the file under the RealNetworks Community Source License Version 1.0
* (the "RCSL") available at http://www.helixcommunity.org/content/rcsl,
* in which case the RCSL will apply. You may also obtain the license terms
* directly from RealNetworks. You may not use this file except in
* compliance with the RPSL or, if you have a valid RCSL with RealNetworks
* applicable to this file, the RCSL. Please see the applicable RPSL or
* RCSL for the rights, obligations and limitations governing use of the
* contents of the file.
*
* This file is part of the Helix DNA Technology. RealNetworks is the
* developer of the Original Code and owns the copyrights in the portions
* it created.
*
* This file, and the files included with this file, is distributed and made
* available on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
* EXPRESS OR IMPLIED, AND REALNETWORKS HEREBY DISCLAIMS ALL SUCH WARRANTIES,
* INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, FITNESS
* FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
*
* Technology Compatibility Kit Test Suite(s) Location:
* http://www.helixcommunity.org/content/tck
*
* Contributor(s):
*
* ***** END LICENSE BLOCK ***** */
/*****************************************************************************
* Includes
*/
#include "tconverter_fxp.h"
/*****************************************************************************
* CHXTimestampConverterFXP Class
*/
/*****************************************************************************
* ReInit
* if CvtType == FACTORS, ulVal1 is HXA Factor, ulVal2 is RTP Factor
* if CvtType == SAMPLES, ulVal1 is Sample Rate
*/
void CHXTimestampConverterFXP::ReInit(ConversionType cvtType,
UINT32 ulVal1,
UINT32 ulVal2)
{
if (cvtType == FACTORS)
{
m_hxaTime.ulBase = ulVal1; // HXFactor
m_rtpTime.ulBase = ulVal2; // RTPFactor
}
else
{
m_hxaTime.ulBase = 1000; // HXFactor = 1000 samples/sec
m_rtpTime.ulBase = ulVal1; // RTPFactor
}
m_hxaTime.lQ = 0;
m_hxaTime.lR = 0;
m_hxaTime.ulRef = 0;
m_hxaTime.ulAnchor = 0;
m_hxaTime.ulHalfBase = m_hxaTime.ulBase / 2;
m_rtpTime.lQ = 0;
m_rtpTime.lR = 0;
m_rtpTime.ulRef = 0;
m_rtpTime.ulAnchor = 0;
m_rtpTime.ulHalfBase = m_rtpTime.ulBase / 2;
}
/*****************************************************************************
* timeConvert
*/
ULONG32 CHXTimestampConverterFXP::timeConvert(ULONG32 ulT1,
TimeCoordinate& T1,
TimeCoordinate& T2)
{
LONG32 lSamples;
LONG32 ldQ;
LONG32 ldR;
// Compute the change in samples (+ or -)
lSamples = ulT1 - T1.ulRef;
T1.ulRef = ulT1;
// Compute the Quant in Common Base (+ or -)
// and remainder in samples (always +)
T1.lR += lSamples; // Could become - at this moment
ldQ = ((LONG32) (T1.lR - T1.ulBase)) / ((LONG32) T1.ulBase);
ldR = ldQ * ((LONG32) T1.ulBase);
T1.lR -= ldR; // Always yields +
T1.lQ += ldQ; // + or -
// Convert the number of samples accumulate from anchor point to
// other timebase
return ((ULONG32) (T2.ulAnchor +
(T1.lQ * T2.ulBase) +
(T1.lR * T2.ulBase + T1.ulHalfBase) / T1.ulBase));
}
/*****************************************************************************
* setAnchor
*/
void CHXTimestampConverterFXP::setHXAnchor(UINT32 ulHXAnchor)
{
m_hxaTime.ulRef = m_hxaTime.ulAnchor = ulHXAnchor;
m_rtpTime.ulRef = m_rtpTime.ulAnchor = timeConvertRaw(ulHXAnchor, m_hxaTime, m_rtpTime);
m_rtpTime.lQ = m_rtpTime.lR = 0;
m_hxaTime.lQ = m_hxaTime.lR = 0;
}
void CHXTimestampConverterFXP::setRTPAnchor(UINT32 ulRTPAnchor)
{
m_rtpTime.ulRef = m_rtpTime.ulAnchor = ulRTPAnchor;
m_hxaTime.ulRef = m_hxaTime.ulAnchor = timeConvertRaw(ulRTPAnchor, m_rtpTime, m_hxaTime);
m_rtpTime.lQ = m_rtpTime.lR = 0;
m_hxaTime.lQ = m_hxaTime.lR = 0;
}
void CHXTimestampConverterFXP::setAnchor(UINT32 ulHXAnchor, UINT32 ulRTPAnchor)
{
m_hxaTime.ulRef = m_hxaTime.ulAnchor = ulHXAnchor;
m_rtpTime.ulRef = m_rtpTime.ulAnchor = ulRTPAnchor;
m_rtpTime.lQ = m_rtpTime.lR = 0;
m_hxaTime.lQ = m_hxaTime.lR = 0;
}
/*****************************************************************************
* assignment
*/
CHXTimestampConverterFXP& CHXTimestampConverterFXP::operator=(const CHXTimestampConverterFXP& lhs)
{
m_hxaTime = lhs.m_hxaTime;
m_rtpTime = lhs.m_rtpTime;
return *this;
}
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