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- Update disclaimer in all source files. - Increment library version in each FDK sub-module. Bug 9428126 Change-Id: I490b96d4ee472246b01483202b0bb4f1e9c2a5d7
481 lines
17 KiB
C++
481 lines
17 KiB
C++
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/* -----------------------------------------------------------------------------------------------------------
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Software License for The Fraunhofer FDK AAC Codec Library for Android
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© Copyright 1995 - 2013 Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V.
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All rights reserved.
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1. INTRODUCTION
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The Fraunhofer FDK AAC Codec Library for Android ("FDK AAC Codec") is software that implements
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the MPEG Advanced Audio Coding ("AAC") encoding and decoding scheme for digital audio.
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This FDK AAC Codec software is intended to be used on a wide variety of Android devices.
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AAC's HE-AAC and HE-AAC v2 versions are regarded as today's most efficient general perceptual
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audio codecs. AAC-ELD is considered the best-performing full-bandwidth communications codec by
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independent studies and is widely deployed. AAC has been standardized by ISO and IEC as part
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of the MPEG specifications.
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Patent licenses for necessary patent claims for the FDK AAC Codec (including those of Fraunhofer)
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may be obtained through Via Licensing (www.vialicensing.com) or through the respective patent owners
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individually for the purpose of encoding or decoding bit streams in products that are compliant with
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the ISO/IEC MPEG audio standards. Please note that most manufacturers of Android devices already license
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these patent claims through Via Licensing or directly from the patent owners, and therefore FDK AAC Codec
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software may already be covered under those patent licenses when it is used for those licensed purposes only.
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Commercially-licensed AAC software libraries, including floating-point versions with enhanced sound quality,
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are also available from Fraunhofer. Users are encouraged to check the Fraunhofer website for additional
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applications information and documentation.
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2. COPYRIGHT LICENSE
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Redistribution and use in source and binary forms, with or without modification, are permitted without
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payment of copyright license fees provided that you satisfy the following conditions:
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You must retain the complete text of this software license in redistributions of the FDK AAC Codec or
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your modifications thereto in source code form.
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You must retain the complete text of this software license in the documentation and/or other materials
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provided with redistributions of the FDK AAC Codec or your modifications thereto in binary form.
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You must make available free of charge copies of the complete source code of the FDK AAC Codec and your
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modifications thereto to recipients of copies in binary form.
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The name of Fraunhofer may not be used to endorse or promote products derived from this library without
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prior written permission.
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You may not charge copyright license fees for anyone to use, copy or distribute the FDK AAC Codec
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software or your modifications thereto.
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Your modified versions of the FDK AAC Codec must carry prominent notices stating that you changed the software
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and the date of any change. For modified versions of the FDK AAC Codec, the term
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"Fraunhofer FDK AAC Codec Library for Android" must be replaced by the term
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"Third-Party Modified Version of the Fraunhofer FDK AAC Codec Library for Android."
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3. NO PATENT LICENSE
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NO EXPRESS OR IMPLIED LICENSES TO ANY PATENT CLAIMS, including without limitation the patents of Fraunhofer,
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ARE GRANTED BY THIS SOFTWARE LICENSE. Fraunhofer provides no warranty of patent non-infringement with
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respect to this software.
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You may use this FDK AAC Codec software or modifications thereto only for purposes that are authorized
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by appropriate patent licenses.
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4. DISCLAIMER
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This FDK AAC Codec software is provided by Fraunhofer on behalf of the copyright holders and contributors
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"AS IS" and WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES, including but not limited to the implied warranties
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of merchantability and fitness for a particular purpose. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE for any direct, indirect, incidental, special, exemplary, or consequential damages,
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including but not limited to procurement of substitute goods or services; loss of use, data, or profits,
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or business interruption, however caused and on any theory of liability, whether in contract, strict
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liability, or tort (including negligence), arising in any way out of the use of this software, even if
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advised of the possibility of such damage.
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5. CONTACT INFORMATION
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Fraunhofer Institute for Integrated Circuits IIS
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Attention: Audio and Multimedia Departments - FDK AAC LL
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Am Wolfsmantel 33
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91058 Erlangen, Germany
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www.iis.fraunhofer.de/amm
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amm-info@iis.fraunhofer.de
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----------------------------------------------------------------------------------------------------------- */
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/*************************** Fraunhofer IIS FDK Tools ***********************
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Author(s): M. Lohwasser
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Description: common bitbuffer read/write routines
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******************************************************************************/
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#include "FDK_bitbuffer.h"
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#include "genericStds.h"
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#include "common_fix.h"
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#include "fixminmax.h"
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const UINT BitMask [32+1] =
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{
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0x0, 0x1, 0x3, 0x7,
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0xf, 0x1f, 0x3f, 0x7f,
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0xff, 0x1ff, 0x3ff, 0x7ff,
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0xfff, 0x1fff, 0x3fff, 0x7fff,
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0xffff, 0x1ffff, 0x3ffff, 0x7ffff,
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0xfffff, 0x1fffff, 0x3fffff, 0x7fffff,
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0xffffff, 0x1ffffff, 0x3ffffff, 0x7ffffff,
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0xfffffff, 0x1fffffff, 0x3fffffff, 0x7fffffff,
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0xffffffff
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};
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const UINT *const RESTRICT pBitMask = BitMask;
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void FDK_CreateBitBuffer (HANDLE_FDK_BITBUF *hBitBuf, UCHAR *pBuffer,
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UINT bufSize)
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{
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FDK_InitBitBuffer (*hBitBuf, pBuffer, bufSize, 0);
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FDKmemclear((*hBitBuf)->Buffer, bufSize*sizeof(UCHAR));
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}
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void FDK_DeleteBitBuffer (HANDLE_FDK_BITBUF hBitBuf) { ; }
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void FDK_InitBitBuffer (HANDLE_FDK_BITBUF hBitBuf, UCHAR *pBuffer,
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UINT bufSize, UINT validBits)
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{
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hBitBuf->ValidBits = validBits ;
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hBitBuf->ReadOffset = 0 ;
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hBitBuf->WriteOffset = 0 ;
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hBitBuf->BitCnt = 0 ;
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hBitBuf->BitNdx = 0 ;
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hBitBuf->Buffer = pBuffer ;
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hBitBuf->bufSize = bufSize ;
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hBitBuf->bufBits = (bufSize << 3) ;
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#if defined(FDK_DEBUG) || defined(DEBUG)
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/*assure bufsize (2^n) */
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if (bufSize!=0) {
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UINT x = 0, n=bufSize;
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for (x=0; n>0; x++,n>>=1) {}
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if ( bufSize != (1<<(x-1)) ) {
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FDKprintfErr("Error: bufSizein FDK_InitBitBuffer() != (2^n), %d\n", bufSize);
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}
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}
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#endif
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}
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void FDK_ResetBitBuffer ( HANDLE_FDK_BITBUF hBitBuf )
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{
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hBitBuf->ValidBits = 0 ;
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hBitBuf->ReadOffset = 0 ;
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hBitBuf->WriteOffset = 0 ;
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hBitBuf->BitCnt = 0 ;
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hBitBuf->BitNdx = 0 ;
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}
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INT FDK_get (HANDLE_FDK_BITBUF hBitBuf, const UINT numberOfBits)
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{
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UINT byteOffset = hBitBuf->BitNdx >> 3 ;
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UINT bitOffset = hBitBuf->BitNdx & 0x07 ;
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hBitBuf->BitNdx = (hBitBuf->BitNdx + numberOfBits) & (hBitBuf->bufBits - 1) ;
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hBitBuf->BitCnt += numberOfBits ;
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hBitBuf->ValidBits -= numberOfBits ;
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UINT byteMask = hBitBuf->bufSize - 1 ;
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UINT tx = (hBitBuf->Buffer [ byteOffset & byteMask] << 24) |
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(hBitBuf->Buffer [(byteOffset+1) & byteMask] << 16) |
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(hBitBuf->Buffer [(byteOffset+2) & byteMask] << 8) |
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hBitBuf->Buffer [(byteOffset+3) & byteMask];
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if (bitOffset)
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{
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tx <<= bitOffset;
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tx |= hBitBuf->Buffer [(byteOffset+4) & byteMask] >> (8-bitOffset);
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}
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return (tx >> (32 - numberOfBits)) ;
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}
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INT FDK_get32 (HANDLE_FDK_BITBUF hBitBuf)
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{
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UINT BitNdx = hBitBuf->BitNdx + 32;
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if (BitNdx <= hBitBuf->bufBits)
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{
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hBitBuf->BitNdx = BitNdx;
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hBitBuf->BitCnt += 32;
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hBitBuf->ValidBits -= 32;
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UINT byteOffset = (BitNdx-1) >> 3;
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UINT cache = (hBitBuf->Buffer[(byteOffset-3)] << 24) |
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(hBitBuf->Buffer[(byteOffset-2)] << 16) |
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(hBitBuf->Buffer[(byteOffset-1)] << 8) |
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hBitBuf->Buffer[(byteOffset-0)];
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if ( (BitNdx = (BitNdx&7)) != 0 ) {
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cache = (cache >> (8-BitNdx)) | ((UINT)hBitBuf->Buffer [byteOffset-4] << (24+BitNdx));
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}
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return (cache) ;
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}
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else
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{
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/* exotic path, used only at the end of the buffer, when wrapping around */
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int nBits = (INT)hBitBuf->bufBits-(INT)hBitBuf->BitNdx;
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UINT cache = FDK_get (hBitBuf,nBits)<< (32-nBits);
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cache |= (FDK_get (hBitBuf,32-nBits));
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return (cache);
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}
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}
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INT FDK_getBwd (HANDLE_FDK_BITBUF hBitBuf, const UINT numberOfBits)
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{
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UINT byteOffset = hBitBuf->BitNdx >> 3 ;
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UINT bitOffset = hBitBuf->BitNdx & 0x07 ;
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UINT byteMask = hBitBuf->bufSize - 1 ;
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int i;
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hBitBuf->BitNdx = (hBitBuf->BitNdx - numberOfBits) & (hBitBuf->bufBits - 1) ;
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hBitBuf->BitCnt -= numberOfBits ;
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hBitBuf->ValidBits += numberOfBits ;
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UINT tx = hBitBuf->Buffer [(byteOffset-3) & byteMask] << 24 |
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hBitBuf->Buffer [(byteOffset-2) & byteMask] << 16 |
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hBitBuf->Buffer [(byteOffset-1) & byteMask] << 8 |
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hBitBuf->Buffer [ byteOffset & byteMask] ;
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UINT txa = 0x0;
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tx >>= (8 - bitOffset) ;
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if (bitOffset && numberOfBits > 24)
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{
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tx |= hBitBuf->Buffer [(byteOffset-4) & byteMask] << (24 + bitOffset) ;
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}
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/* in place turn around */
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for (i = 0; i < 16; i++) {
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UINT bitMaskR = 0x00000001 << i;
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UINT bitMaskL = 0x80000000 >> i;
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txa |= (tx & bitMaskR) << (31 - (i<<1));
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txa |= (tx & bitMaskL) >> (31 - (i<<1));
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}
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return (txa >> (32 - numberOfBits)) ;
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}
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void FDK_put (HANDLE_FDK_BITBUF hBitBuf, UINT value, const UINT numberOfBits)
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{
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UINT byteOffset = hBitBuf->BitNdx >> 3 ;
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UINT bitOffset = hBitBuf->BitNdx & 0x07 ;
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hBitBuf->BitNdx = (hBitBuf->BitNdx + numberOfBits) & (hBitBuf->bufBits - 1) ;
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hBitBuf->BitCnt += numberOfBits ;
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hBitBuf->ValidBits += numberOfBits ;
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UINT byteMask = hBitBuf->bufSize - 1 ;
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UINT tmp = value<<(32-numberOfBits)>>bitOffset;
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UINT mask = ~BitMask[(32-bitOffset)] | (BitMask [(32-numberOfBits)] >> bitOffset) ;
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hBitBuf->Buffer [ byteOffset & byteMask] = (hBitBuf->Buffer [ byteOffset & byteMask]&(mask>>24)) | (UCHAR)(tmp>>24);
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hBitBuf->Buffer [(byteOffset+1) & byteMask] = (hBitBuf->Buffer [(byteOffset+1) & byteMask]&(mask>>16)) | (UCHAR)(tmp>>16);
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hBitBuf->Buffer [(byteOffset+2) & byteMask] = (hBitBuf->Buffer [(byteOffset+2) & byteMask]&(mask>>8)) | (UCHAR)(tmp>>8);
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hBitBuf->Buffer [(byteOffset+3) & byteMask] = (hBitBuf->Buffer [(byteOffset+3) & byteMask]&(mask)) | (UCHAR)(tmp);
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if (bitOffset && numberOfBits > 24)
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{
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hBitBuf->Buffer [(byteOffset+4) & byteMask] = (UCHAR)(value<<(40-numberOfBits)>>bitOffset) |
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( hBitBuf->Buffer [(byteOffset+4) & byteMask] & BitMask[(40-numberOfBits-bitOffset)] ) ;
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}
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}
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void FDK_putBwd (HANDLE_FDK_BITBUF hBitBuf, UINT value, const UINT numberOfBits)
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{
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UINT byteOffset = hBitBuf->BitNdx >> 3 ;
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UINT bitOffset = 7 - (hBitBuf->BitNdx & 0x07) ;
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UINT byteMask = hBitBuf->bufSize - 1 ;
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UINT mask = ~(BitMask[numberOfBits] << bitOffset) ;
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UINT tmp = 0x0000;
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int i;
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hBitBuf->BitNdx = (hBitBuf->BitNdx - numberOfBits) & (hBitBuf->bufBits - 1) ;
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hBitBuf->BitCnt -= numberOfBits ;
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hBitBuf->ValidBits -= numberOfBits ;
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/* in place turn around */
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for (i = 0; i < 16; i++) {
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UINT bitMaskR = 0x00000001 << i;
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UINT bitMaskL = 0x80000000 >> i;
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tmp |= (value & bitMaskR) << (31 - (i<<1));
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tmp |= (value & bitMaskL) >> (31 - (i<<1));
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}
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value = tmp;
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tmp = value>>(32-numberOfBits)<<bitOffset;
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hBitBuf->Buffer [ byteOffset & byteMask] = (hBitBuf->Buffer [ byteOffset & byteMask]&(mask)) | (UCHAR)(tmp);
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hBitBuf->Buffer [(byteOffset-1) & byteMask] = (hBitBuf->Buffer [(byteOffset-1) & byteMask]&(mask>>8)) | (UCHAR)(tmp>>8);
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hBitBuf->Buffer [(byteOffset-2) & byteMask] = (hBitBuf->Buffer [(byteOffset-2) & byteMask]&(mask>>16)) | (UCHAR)(tmp>>16);
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hBitBuf->Buffer [(byteOffset-3) & byteMask] = (hBitBuf->Buffer [(byteOffset-3) & byteMask]&(mask>>24)) | (UCHAR)(tmp>>24);
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if ((bitOffset + numberOfBits) > 32)
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{
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hBitBuf->Buffer [(byteOffset-4) & byteMask] = (UCHAR)(value>>(64-numberOfBits-bitOffset)) |
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( hBitBuf->Buffer [(byteOffset-4) & byteMask] & ~(BitMask[bitOffset] >> (32-numberOfBits)) ) ;
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}
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}
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void FDK_pushBack (HANDLE_FDK_BITBUF hBitBuf, const UINT numberOfBits, UCHAR config)
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{
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hBitBuf->BitCnt -= numberOfBits ;
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hBitBuf->ValidBits += (config==0) ? numberOfBits : (-(INT)numberOfBits) ;
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hBitBuf->BitNdx = (hBitBuf->BitNdx - numberOfBits) & (hBitBuf->bufBits - 1) ;
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}
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void FDK_pushForward (HANDLE_FDK_BITBUF hBitBuf, const UINT numberOfBits, UCHAR config)
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{
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hBitBuf->BitCnt += numberOfBits ;
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hBitBuf->ValidBits -= (config==0) ? numberOfBits : (-(INT)numberOfBits) ;
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hBitBuf->BitNdx = (hBitBuf->BitNdx + numberOfBits) & (hBitBuf->bufBits - 1) ;
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}
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void FDK_byteAlign (HANDLE_FDK_BITBUF hBitBuf, UCHAR config)
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{
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INT alignment = hBitBuf->BitCnt & 0x07 ;
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if (alignment)
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{
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if (config==0)
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FDK_pushForward (hBitBuf, 8 - alignment, config) ; /* BS_READER */
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else
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FDK_put (hBitBuf,0 , 8 - alignment) ; /* BS_WRITER */
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}
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hBitBuf->BitCnt = 0 ;
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}
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UINT FDK_getValidBits (HANDLE_FDK_BITBUF hBitBuf)
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{
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return hBitBuf->ValidBits;
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}
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INT FDK_getFreeBits (HANDLE_FDK_BITBUF hBitBuf)
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{
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return (hBitBuf->bufBits - hBitBuf->ValidBits) ;
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}
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void FDK_setBitCnt (HANDLE_FDK_BITBUF hBitBuf, const UINT value)
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{
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hBitBuf->BitCnt = value ;
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}
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INT FDK_getBitCnt (HANDLE_FDK_BITBUF hBitBuf)
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{
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return hBitBuf->BitCnt ;
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}
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void FDK_Feed(HANDLE_FDK_BITBUF hBitBuf,
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UCHAR *RESTRICT inputBuffer,
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const UINT bufferSize,
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UINT *bytesValid)
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{
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inputBuffer = &inputBuffer [bufferSize - *bytesValid] ;
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UINT bTotal = 0 ;
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UINT bToRead = (hBitBuf->bufBits - hBitBuf->ValidBits) >> 3 ;
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UINT noOfBytes = fMin(bToRead, *bytesValid); //(bToRead < *bytesValid) ? bToRead : *bytesValid ;
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while (noOfBytes > 0)
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{
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/* split read to buffer size */
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bToRead = hBitBuf->bufSize - hBitBuf->ReadOffset ;
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bToRead = fMin(bToRead, noOfBytes); //(bToRead < noOfBytes) ? bToRead : noOfBytes ;
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/* copy 'bToRead' bytes from 'ptr' to inputbuffer */
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FDKmemcpy(&hBitBuf->Buffer[hBitBuf->ReadOffset], inputBuffer, bToRead*sizeof(UCHAR));
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/* add noOfBits to number of valid bits in buffer */
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hBitBuf->ValidBits += bToRead << 3 ;
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bTotal += bToRead ;
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inputBuffer += bToRead ;
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hBitBuf->ReadOffset = (hBitBuf->ReadOffset + bToRead) & (hBitBuf->bufSize - 1) ;
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noOfBytes -= bToRead ;
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}
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*bytesValid -= bTotal ;
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}
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void CopyAlignedBlock (HANDLE_FDK_BITBUF h_BitBufSrc, UCHAR *RESTRICT dstBuffer, UINT bToRead)
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{
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UINT byteOffset = h_BitBufSrc->BitNdx >> 3 ;
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const UINT byteMask = h_BitBufSrc->bufSize - 1 ;
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UCHAR *RESTRICT pBBB = h_BitBufSrc->Buffer;
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for (UINT i = 0 ; i < bToRead ; i++)
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{
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dstBuffer[i] = pBBB[(byteOffset+i) & byteMask] ;
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}
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bToRead <<= 3 ;
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h_BitBufSrc->BitNdx = (h_BitBufSrc->BitNdx + bToRead) & (h_BitBufSrc->bufBits - 1) ;
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h_BitBufSrc->BitCnt += bToRead ;
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h_BitBufSrc->ValidBits -= bToRead ;
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}
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void FDK_Copy (HANDLE_FDK_BITBUF h_BitBufDst, HANDLE_FDK_BITBUF h_BitBufSrc, UINT *bytesValid)
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{
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INT bTotal = 0;
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/* limit noOfBytes to valid bytes in src buffer and available bytes in dst buffer */
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UINT bToRead = h_BitBufSrc->ValidBits >> 3 ;
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UINT noOfBytes = fMin(bToRead, *bytesValid); //(*bytesValid < bToRead) ? *bytesValid : bToRead ;
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bToRead = FDK_getFreeBits(h_BitBufDst);
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noOfBytes = fMin(bToRead, noOfBytes); //(bToRead < noOfBytes) ? bToRead : noOfBytes;
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while (noOfBytes > 0)
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{
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/* Split Read to buffer size */
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bToRead = h_BitBufDst->bufSize - h_BitBufDst->ReadOffset ;
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bToRead = fMin(noOfBytes, bToRead); //(noOfBytes < bToRead) ? noOfBytes : bToRead ;
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/* copy 'bToRead' bytes from buffer to buffer */
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if (!(h_BitBufSrc->BitNdx & 0x07)) {
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CopyAlignedBlock (h_BitBufSrc, h_BitBufDst->Buffer + h_BitBufDst->ReadOffset, bToRead) ;
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} else {
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for (UINT i = 0; i < bToRead; i++)
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{
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h_BitBufDst->Buffer [h_BitBufDst->ReadOffset + i] = (UCHAR)FDK_get(h_BitBufSrc,8);
|
|
}
|
|
}
|
|
|
|
/* add noOfBits to number of valid bits in buffer */
|
|
h_BitBufDst->ValidBits += bToRead << 3 ;
|
|
bTotal += bToRead;
|
|
|
|
h_BitBufDst->ReadOffset = (h_BitBufDst->ReadOffset + bToRead) & (h_BitBufDst->bufSize-1);
|
|
noOfBytes -= bToRead;
|
|
}
|
|
|
|
*bytesValid -=bTotal;
|
|
}
|
|
|
|
void FDK_Fetch (HANDLE_FDK_BITBUF hBitBuf, UCHAR *outBuf, UINT *writeBytes)
|
|
{
|
|
UCHAR *RESTRICT outputBuffer = outBuf;
|
|
UINT bTotal = 0 ;
|
|
|
|
UINT bToWrite = (hBitBuf->ValidBits) >> 3 ;
|
|
UINT noOfBytes = fMin(bToWrite, *writeBytes); //(bToWrite < *writeBytes) ? bToWrite : *writeBytes ;
|
|
|
|
while (noOfBytes > 0)
|
|
{
|
|
/* split write to buffer size */
|
|
bToWrite = hBitBuf->bufSize - hBitBuf->WriteOffset ;
|
|
bToWrite = fMin(bToWrite, noOfBytes); //(bToWrite < noOfBytes) ? bToWrite : noOfBytes ;
|
|
|
|
/* copy 'bToWrite' bytes from bitbuffer to outputbuffer */
|
|
FDKmemcpy(outputBuffer, &hBitBuf->Buffer[hBitBuf->WriteOffset], bToWrite*sizeof(UCHAR));
|
|
|
|
/* sub noOfBits from number of valid bits in buffer */
|
|
hBitBuf->ValidBits -= bToWrite << 3 ;
|
|
bTotal += bToWrite ;
|
|
outputBuffer += bToWrite ;
|
|
|
|
hBitBuf->WriteOffset = (hBitBuf->WriteOffset + bToWrite) & (hBitBuf->bufSize - 1) ;
|
|
noOfBytes -= bToWrite ;
|
|
}
|
|
|
|
*writeBytes = bTotal ;
|
|
}
|
|
|