306 lines
8.1 KiB
C
306 lines
8.1 KiB
C
/*
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* $QNXtpLicenseC:
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* Copyright 2007, QNX Software Systems. All Rights Reserved.
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*
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* You must obtain a written license from and pay applicable license fees to QNX
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* Software Systems before you may reproduce, modify or distribute this software,
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* or any work that includes all or part of this software. Free development
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* licenses are available for evaluation and non-commercial purposes. For more
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* information visit http://licensing.qnx.com or email licensing@qnx.com.
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*
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* This file may contain contributions from others. Please review this entire
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* file for other proprietary rights or license notices, as well as the QNX
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* Development Suite License Guide at http://licensing.qnx.com/license-guide/
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* for other information.
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* $
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*/
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/* lzo_dict.h -- dictionary definitions for the the LZO library
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This file is part of the LZO real-time data compression library.
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Copyright (C) 1996-1999 Markus Franz Xaver Johannes Oberhumer
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Markus F.X.J. Oberhumer
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markus.oberhumer@jk.uni-linz.ac.at
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*/
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/* WARNING: this file should *not* be used by applications. It is
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part of the implementation of the library and is subject
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to change.
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*/
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#ifndef __LZO_DICT_H
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#define __LZO_DICT_H
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#ifdef __cplusplus
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extern "C" {
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#endif
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/***********************************************************************
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// dictionary size
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************************************************************************/
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/* dictionary needed for compression */
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#if !defined(D_BITS) && defined(DBITS)
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# define D_BITS DBITS
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#endif
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#if !defined(D_BITS)
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# error D_BITS is not defined
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#endif
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#if (D_BITS < 16)
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# define D_SIZE LZO_SIZE(D_BITS)
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# define D_MASK LZO_MASK(D_BITS)
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#else
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# define D_SIZE LZO_USIZE(D_BITS)
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# define D_MASK LZO_UMASK(D_BITS)
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#endif
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#define D_HIGH ((D_MASK >> 1) + 1)
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/* dictionary depth */
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#if !defined(DD_BITS)
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# define DD_BITS 0
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#endif
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#define DD_SIZE LZO_SIZE(DD_BITS)
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#define DD_MASK LZO_MASK(DD_BITS)
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/* dictionary length */
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#if !defined(DL_BITS)
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# define DL_BITS (D_BITS - DD_BITS)
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#endif
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#if (DL_BITS < 16)
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# define DL_SIZE LZO_SIZE(DL_BITS)
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# define DL_MASK LZO_MASK(DL_BITS)
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#else
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# define DL_SIZE LZO_USIZE(DL_BITS)
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# define DL_MASK LZO_UMASK(DL_BITS)
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#endif
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#if (D_BITS != DL_BITS + DD_BITS)
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# error D_BITS does not match
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#endif
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#if (D_BITS < 8 || D_BITS > 18)
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# error invalid D_BITS
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#endif
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#if (DL_BITS < 8 || DL_BITS > 20)
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# error invalid DL_BITS
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#endif
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#if (DD_BITS < 0 || DD_BITS > 6)
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# error invalid DD_BITS
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#endif
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#if !defined(DL_MIN_LEN)
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# define DL_MIN_LEN 3
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#endif
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#if !defined(DL_SHIFT)
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# define DL_SHIFT ((DL_BITS + (DL_MIN_LEN - 1)) / DL_MIN_LEN)
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#endif
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/***********************************************************************
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// dictionary access
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************************************************************************/
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#define LZO_HASH_GZIP 1
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#define LZO_HASH_GZIP_INCREMENTAL 2
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#define LZO_HASH_LZO_INCREMENTAL_A 3
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#define LZO_HASH_LZO_INCREMENTAL_B 4
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#if !defined(LZO_HASH)
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# error choose a hashing strategy
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#endif
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#if (DL_MIN_LEN == 3)
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# define _DV2_A(p,shift1,shift2) \
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(((( (lzo_uint32)((p)[0]) << shift1) ^ (p)[1]) << shift2) ^ (p)[2])
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# define _DV2_B(p,shift1,shift2) \
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(((( (lzo_uint32)((p)[2]) << shift1) ^ (p)[1]) << shift2) ^ (p)[0])
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# define _DV3_B(p,shift1,shift2,shift3) \
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((_DV2_B((p)+1,shift1,shift2) << (shift3)) ^ (p)[0])
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#elif (DL_MIN_LEN == 2)
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# define _DV2_A(p,shift1,shift2) \
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(( (lzo_uint32)(p[0]) << shift1) ^ p[1])
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# define _DV2_B(p,shift1,shift2) \
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(( (lzo_uint32)(p[1]) << shift1) ^ p[2])
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#else
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# error invalid DL_MIN_LEN
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#endif
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#define _DV_A(p,shift) _DV2_A(p,shift,shift)
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#define _DV_B(p,shift) _DV2_B(p,shift,shift)
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#define DA2(p,s1,s2) \
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(((((lzo_uint32)((p)[2]) << (s2)) + (p)[1]) << (s1)) + (p)[0])
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#define DS2(p,s1,s2) \
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(((((lzo_uint32)((p)[2]) << (s2)) - (p)[1]) << (s1)) - (p)[0])
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#define DX2(p,s1,s2) \
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(((((lzo_uint32)((p)[2]) << (s2)) ^ (p)[1]) << (s1)) ^ (p)[0])
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#define DA3(p,s1,s2,s3) ((DA2((p)+1,s2,s3) << (s1)) + (p)[0])
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#define DS3(p,s1,s2,s3) ((DS2((p)+1,s2,s3) << (s1)) - (p)[0])
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#define DX3(p,s1,s2,s3) ((DX2((p)+1,s2,s3) << (s1)) ^ (p)[0])
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#define DMS(v,s) ((lzo_uint) (((v) & (D_MASK >> (s))) << (s)))
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#define DM(v) DMS(v,0)
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#if (LZO_HASH == LZO_HASH_GZIP)
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/* hash function like in gzip/zlib (deflate) */
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# define _DINDEX(dv,p) (_DV_A((p),DL_SHIFT))
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#elif (LZO_HASH == LZO_HASH_GZIP_INCREMENTAL)
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/* incremental hash like in gzip/zlib (deflate) */
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# define __LZO_HASH_INCREMENTAL
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# define DVAL_FIRST(dv,p) dv = _DV_A((p),DL_SHIFT)
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# define DVAL_NEXT(dv,p) dv = (((dv) << DL_SHIFT) ^ p[2])
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# define _DINDEX(dv,p) (dv)
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# define DVAL_LOOKAHEAD DL_MIN_LEN
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#elif (LZO_HASH == LZO_HASH_LZO_INCREMENTAL_A)
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/* incremental LZO hash version A */
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# define __LZO_HASH_INCREMENTAL
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# define DVAL_FIRST(dv,p) dv = _DV_A((p),5)
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# define DVAL_NEXT(dv,p) \
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dv ^= (lzo_uint32)(p[-1]) << (2*5); dv = (((dv) << 5) ^ p[2])
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# define _DINDEX(dv,p) ((0x9f5f * (dv)) >> 5)
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# define DVAL_LOOKAHEAD DL_MIN_LEN
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#elif (LZO_HASH == LZO_HASH_LZO_INCREMENTAL_B)
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/* incremental LZO hash version B */
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# define __LZO_HASH_INCREMENTAL
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# define DVAL_FIRST(dv,p) dv = _DV_B((p),5)
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# define DVAL_NEXT(dv,p) \
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dv ^= p[-1]; dv = (((dv) >> 5) ^ ((lzo_uint32)(p[2]) << (2*5)))
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# define _DINDEX(dv,p) ((0x9f5f * (dv)) >> 5)
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# define DVAL_LOOKAHEAD DL_MIN_LEN
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#else
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# error choose a hashing strategy
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#endif
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#ifndef DINDEX
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#define DINDEX(dv,p) ((lzo_uint)((_DINDEX(dv,p)) & DL_MASK) << DD_BITS)
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#endif
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#if !defined(DINDEX1) && defined(D_INDEX1)
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#define DINDEX1 D_INDEX1
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#endif
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#if !defined(DINDEX2) && defined(D_INDEX2)
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#define DINDEX2 D_INDEX2
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#endif
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#if !defined(__LZO_HASH_INCREMENTAL)
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# define DVAL_FIRST(dv,p) ((void) 0)
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# define DVAL_NEXT(dv,p) ((void) 0)
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# define DVAL_LOOKAHEAD 0
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#endif
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#if !defined(DVAL_ASSERT)
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#if defined(__LZO_HASH_INCREMENTAL) && !defined(NDEBUG)
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static void DVAL_ASSERT(lzo_uint32 dv, const lzo_byte *p)
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{
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lzo_uint32 df;
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DVAL_FIRST(df,(p));
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assert(DINDEX(dv,p) == DINDEX(df,p));
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}
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#else
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# define DVAL_ASSERT(dv,p) ((void) 0)
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#endif
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#endif
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/***********************************************************************
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// dictionary updating
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************************************************************************/
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#if defined(LZO_DICT_USE_PTR)
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# define DENTRY(p,in) (p)
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# define GINDEX(m_pos,m_off,dict,dindex,in) m_pos = dict[dindex]
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#else
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# define DENTRY(p,in) ((lzo_uint) ((p)-(in)))
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# define GINDEX(m_pos,m_off,dict,dindex,in) m_off = dict[dindex]
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#endif
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#if (DD_BITS == 0)
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# define UPDATE_D(dict,drun,dv,p,in) dict[ DINDEX(dv,p) ] = DENTRY(p,in)
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# define UPDATE_I(dict,drun,index,p,in) dict[index] = DENTRY(p,in)
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# define UPDATE_P(ptr,drun,p,in) (ptr)[0] = DENTRY(p,in)
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#else
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# define UPDATE_D(dict,drun,dv,p,in) \
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dict[ DINDEX(dv,p) + drun++ ] = DENTRY(p,in); drun &= DD_MASK
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# define UPDATE_I(dict,drun,index,p,in) \
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dict[ (index) + drun++ ] = DENTRY(p,in); drun &= DD_MASK
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# define UPDATE_P(ptr,drun,p,in) \
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(ptr) [ drun++ ] = DENTRY(p,in); drun &= DD_MASK
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#endif
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/***********************************************************************
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// test for a match
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************************************************************************/
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#if defined(LZO_DICT_USE_PTR)
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/* m_pos is either NULL or a valid pointer */
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#define LZO_CHECK_MPOS_DET(m_pos,m_off,in,ip,max_offset) \
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(m_pos == NULL || (m_off = (lzo_moff_t) (ip - m_pos)) > max_offset)
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/* m_pos may point anywhere... */
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#define LZO_CHECK_MPOS_NON_DET(m_pos,m_off,in,ip,max_offset) \
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(BOUNDS_CHECKING_OFF_IN_EXPR( \
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(PTR_LT(m_pos,in) || \
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(m_off = (lzo_moff_t) PTR_DIFF(ip,m_pos)) <= 0 || \
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m_off > max_offset) ))
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#else
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#define LZO_CHECK_MPOS_DET(m_pos,m_off,in,ip,max_offset) \
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(m_off == 0 || \
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((m_off = (lzo_moff_t) ((ip)-(in)) - m_off) > max_offset) || \
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(m_pos = (ip) - (m_off), 0) )
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#define LZO_CHECK_MPOS_NON_DET(m_pos,m_off,in,ip,max_offset) \
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((lzo_moff_t) ((ip)-(in)) <= m_off || \
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((m_off = (lzo_moff_t) ((ip)-(in)) - m_off) > max_offset) || \
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(m_pos = (ip) - (m_off), 0) )
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#endif
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#if defined(LZO_DETERMINISTIC)
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# define LZO_CHECK_MPOS LZO_CHECK_MPOS_DET
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#else
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# define LZO_CHECK_MPOS LZO_CHECK_MPOS_NON_DET
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#endif
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#ifdef __cplusplus
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} /* extern "C" */
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#endif
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#endif /* already included */
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/*
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vi:ts=4
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*/
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