225 lines
4.3 KiB
C++
225 lines
4.3 KiB
C++
/* $Header: /cvs/root/winamp/vlb/block.cpp,v 1.1 2009/04/28 20:21:08 audiodsp Exp $ */
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/***************************************************************************\
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*
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* Copyright 2000-2002 Dolby Laboratories, Inc. All Rights
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* Reserved. Do not copy. Do not distribute.
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* Confidential information.
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*
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* (C) copyright Fraunhofer - IIS (1998)
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* All Rights Reserved
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*
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* filename: block.cpp
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* project : MPEG-2 AAC Decoder
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* contents/description: base class for CLongBlock, CShortBlock
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*
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\***************************************************************************/
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#include <math.h> // pow()
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#include "block.h"
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#include "bitstream.h"
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#include "channelinfo.h"
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CBlock::CBlock (CChannelInfo &info)
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: m_IcsInfo (info)
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{
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m_LongWindow [0] = m_OnlyLongWindowSine ;
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m_ShortWindow [0] = m_OnlyShortWindowSine ;
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#ifdef ONLY_SINE_WINDOW
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m_LongWindow [1] = m_OnlyLongWindowSine ;
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m_ShortWindow [1] = m_OnlyShortWindowSine ;
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#else
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m_LongWindow [1] = m_OnlyLongWindowKBD ;
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m_ShortWindow [1] = m_OnlyShortWindowKBD ;
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#endif
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}
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CBlock::~CBlock ()
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{
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}
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int CBlock::DecodeHuffmanWord (CDolbyBitStream &bs, const unsigned int (*CodeBook) [HuffmanEntries])
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{
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unsigned int val, len ;
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unsigned int index = 0, bits = HuffmanBits ;
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while (true)
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{
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val = CodeBook [index][bs.Get (HuffmanBits)] ;
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len = val >> 16 ;
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if (len == 0)
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{
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index = val & 0xFFFF ;
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bits += HuffmanBits ;
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continue ;
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}
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else
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{
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if (len != bits)
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{
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bs.PushBack (bits - len) ;
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}
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val &= 0xFFFF ;
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break ;
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}
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}
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return val ;
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}
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int CBlock::GetEscape (CDolbyBitStream &bs, const int q)
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{
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int i, off, neg ;
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if (q < 0)
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{
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if (q != -16) return q ;
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neg = 1 ;
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}
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else
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{
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if (q != +16) return q ;
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neg = 0;
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}
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for (i = 4 ; ; i++)
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{
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if (bs.Get (1) == 0)
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break ;
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}
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if (i > 16)
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{
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off = bs.Get (i - 16) << 16 ;
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off |= bs.Get (16) ;
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}
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else
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{
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off = bs.Get (i) ;
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}
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i = off + (1 << i) ;
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if (neg) i = -i ;
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return i ;
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}
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int CBlock::UnpackIndex (int idx, int *qp, const CodeBookDescription *hcb)
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{
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if (hcb->Dimension == 4)
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{
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int index = idx << 2 ;
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qp [0] = hcb->NTuples [index] ;
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qp [1] = hcb->NTuples [index + 1] ;
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qp [2] = hcb->NTuples [index + 2] ;
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qp [3] = hcb->NTuples [index + 3] ;
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}
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else
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{
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int index = idx << 1 ;
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qp [0] = hcb->NTuples [index] ;
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qp [1] = hcb->NTuples [index + 1] ;
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}
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return hcb->Dimension ;
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}
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float CBlock::InverseQuantize (int q)
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{
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if (q > 0)
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{
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if (q < InverseQuantTableSize)
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{
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return (m_InverseQuantTable [q]) ;
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}
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else
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{
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return (static_cast<float>(pow (static_cast<float>(q), 4.0F / 3.0F))) ;
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}
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}
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else
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{
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q = -q ;
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if (q < InverseQuantTableSize)
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{
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return (-m_InverseQuantTable [q]) ;
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}
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else
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{
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return (static_cast<float>(-pow (static_cast<float>(q), 4.0F / 3.0F))) ;
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}
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}
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}
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void CBlock::Read (CDolbyBitStream &bs, const int global_gain)
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{
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ReadSectionData (bs) ;
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ReadScaleFactorData (bs, global_gain) ;
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m_PulseData.Read (bs) ;
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m_Tns.Read (m_IcsInfo, bs) ;
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CVLBBitSequence GainControlDataPresent (1) ;
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GainControlDataPresent.Read (bs) ;
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if (GainControlDataPresent)
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{
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throw EUnimplemented () ;
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}
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ReadSpectralData (bs) ;
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}
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void CBlock::ApplyTools (void)
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{
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m_Tns.Apply (m_IcsInfo, *this) ;
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}
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CBlock &operator+= (CBlock &lhs, CBlock &rhs)
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{
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// operator+= sums up the spectral bins of two blocks
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// in the frequency domain (must switch together)
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// add two long blocks
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if (lhs.m_IcsInfo.IsLongBlock () && rhs.m_IcsInfo.IsLongBlock ())
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{
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if (lhs.m_IcsInfo.GetWindowShape () == rhs.m_IcsInfo.GetWindowShape ())
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{
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for (int i = 0 ; i < CLongBlock::MaximumBins ; i++)
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{
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lhs.AccessSpectralData () [i] += rhs.AccessSpectralData () [i] ;
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}
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}
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}
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// add two short blocks
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else if (lhs.m_IcsInfo.IsShortBlock () && rhs.m_IcsInfo.IsShortBlock ())
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{
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if (lhs.m_IcsInfo.GetWindowShape () == rhs.m_IcsInfo.GetWindowShape ())
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{
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for (int win = 0 ; win < CShortBlock::MaximumWindows ; win++)
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{
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for (int i = 0 ; i < CShortBlock::MaximumBins ; i++)
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{
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lhs.AccessSpectralData (win) [i] += rhs.AccessSpectralData (win) [i] ;
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}
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}
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}
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}
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return lhs ;
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}
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